HMacro.h 105 KB

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  1. /*****************************************************************************
  2. * HMacro.h
  3. *****************************************************************************
  4. *
  5. * Project: HALCON/libhalcon
  6. * Description: Definition of macros
  7. *
  8. * (c) 1996-2020 by MVTec Software GmbH
  9. * www.mvtec.com
  10. *
  11. *****************************************************************************/
  12. #ifndef HMACRO_H
  13. #define HMACRO_H
  14. /*
  15. * HALCON traditionally used 'FAST' instead of 'HC_FAST', but that clashes
  16. * with VxWorks.
  17. */
  18. #if !defined(__vxworks) && defined(FAST) && !defined(HC_FAST)
  19. # define HC_FAST
  20. #endif
  21. /*
  22. * If SMALL is defined, file names and line number information should not be
  23. * included in the binary.
  24. */
  25. #ifndef SMALL
  26. # define H__FILE__ __FILE__
  27. # define H__LINE__ __LINE__
  28. #else
  29. # define H__FILE__ ""
  30. # define H__LINE__ -1
  31. #endif
  32. #define HDFImage(VAR, IMAGE_IN, KOOR) \
  33. { \
  34. VAR = 0.0; \
  35. switch ((IMAGE_IN)->kind) \
  36. { \
  37. case BYTE_IMAGE: \
  38. VAR = (double)(IMAGE_IN)->pixel.b[KOOR]; \
  39. break; \
  40. case INT1_IMAGE: \
  41. VAR = (double)(IMAGE_IN)->pixel.i[KOOR]; \
  42. break; \
  43. case INT2_IMAGE: \
  44. VAR = (double)(IMAGE_IN)->pixel.s.p[KOOR]; \
  45. break; \
  46. case UINT2_IMAGE: \
  47. VAR = (double)(IMAGE_IN)->pixel.u.p[KOOR]; \
  48. break; \
  49. case DIR_IMAGE: \
  50. VAR = (double)(IMAGE_IN)->pixel.d[KOOR]; \
  51. break; \
  52. case CYCLIC_IMAGE: \
  53. VAR = (double)(IMAGE_IN)->pixel.z[KOOR]; \
  54. break; \
  55. case INT4_IMAGE: \
  56. VAR = (double)(IMAGE_IN)->pixel.l[KOOR]; \
  57. break; \
  58. case INT8_IMAGE: \
  59. VAR = (double)(IMAGE_IN)->pixel.i8[KOOR]; \
  60. break; \
  61. case FLOAT_IMAGE: \
  62. VAR = (double)(IMAGE_IN)->pixel.f[KOOR]; \
  63. break; \
  64. case COMPLEX_IMAGE: \
  65. return (H_ERR_WITFO); /* wrong image type */ \
  66. case VF_IMAGE: \
  67. return (H_ERR_WITFO); /* wrong image type */ \
  68. default: \
  69. return (H_ERR_NIIT); /* not implemented image type */ \
  70. } \
  71. }
  72. #define HAbsImage(VAR, IMAGE_IN, KOOR) \
  73. switch ((IMAGE_IN)->kind) \
  74. { \
  75. case BYTE_IMAGE: \
  76. VAR = ABS((double)(IMAGE_IN)->pixel.b[KOOR]); \
  77. break; \
  78. default:; \
  79. }
  80. #define HImageFD(IMAGE_OUT, VAR, KOOR) \
  81. switch ((IMAGE_OUT)->kind) \
  82. { \
  83. case BYTE_IMAGE: \
  84. { \
  85. HINT HHH; \
  86. HHH = HIRound(VAR); \
  87. if (HHH > 255) \
  88. HHH = 255; \
  89. else if (HHH < 0) \
  90. HHH = 0; \
  91. (IMAGE_OUT)->pixel.b[KOOR] = (HBYTE)HHH; \
  92. break; \
  93. } \
  94. case CYCLIC_IMAGE: \
  95. (IMAGE_OUT)->pixel.z[KOOR] = HMOD(HLRound(VAR), (HINT)(UCHAR_MAX + 1)); \
  96. break; \
  97. case INT1_IMAGE: \
  98. { \
  99. HINT HHH; \
  100. HHH = HIRound(VAR); \
  101. if (HHH > INT1_MAX) \
  102. HHH = INT1_MAX; \
  103. else if (HHH < INT1_MIN) \
  104. HHH = INT1_MIN; \
  105. (IMAGE_OUT)->pixel.i[KOOR] = (INT1)HHH; \
  106. break; \
  107. } \
  108. case INT2_IMAGE: \
  109. { \
  110. double DDD = (VAR); \
  111. if (DDD > (double)INT2_MAX) \
  112. DDD = INT2_MAX; \
  113. else if (DDD < INT2_MIN) \
  114. DDD = INT2_MIN; \
  115. (IMAGE_OUT)->pixel.s.p[KOOR] = (INT2)HLRound(DDD); \
  116. break; \
  117. } \
  118. case UINT2_IMAGE: \
  119. { \
  120. double DDD = (VAR); \
  121. if (DDD > (double)UINT2_MAX) \
  122. DDD = UINT2_MAX; \
  123. else if (DDD < 0) \
  124. DDD = 0; \
  125. (IMAGE_OUT)->pixel.s.p[KOOR] = (UINT2)HLRound(DDD); \
  126. break; \
  127. } \
  128. case LONG_IMAGE: \
  129. { \
  130. double DDD = (VAR); \
  131. if (DDD > (double)INT4_MAX) \
  132. DDD = INT4_MAX; \
  133. else if (DDD < INT4_MIN) \
  134. DDD = INT4_MIN; \
  135. (IMAGE_OUT)->pixel.l[KOOR] = (INT4)HLRound(DDD); \
  136. break; \
  137. } \
  138. case INT8_IMAGE: \
  139. { \
  140. double DDD = (VAR); \
  141. if (DDD > (double)HINT8_MAX) \
  142. DDD = (double)HINT8_MAX; \
  143. else if (DDD < HINT8_MIN) \
  144. DDD = HINT8_MIN; \
  145. (IMAGE_OUT)->pixel.i8[KOOR] = (HINT8)HI8Round(DDD); \
  146. break; \
  147. } \
  148. case FLOAT_IMAGE: \
  149. { \
  150. double DDD = (VAR); \
  151. if (DDD > (double)FLT_MAX) \
  152. DDD = FLT_MAX; \
  153. else if (DDD < -(double)FLT_MAX) \
  154. DDD = -(double)FLT_MAX; \
  155. (IMAGE_OUT)->pixel.f[KOOR] = (float)DDD; \
  156. break; \
  157. } \
  158. case COMPLEX_IMAGE: \
  159. { \
  160. double DDD = (VAR); \
  161. if (DDD > (double)FLT_MAX) \
  162. DDD = FLT_MAX; \
  163. else if (DDD < -(double)FLT_MAX) \
  164. DDD = -(double)FLT_MAX; \
  165. (IMAGE_OUT)->pixel.c[KOOR].re = (float)DDD; \
  166. (IMAGE_OUT)->pixel.c[KOOR].im = (float)0.0; \
  167. break; \
  168. } \
  169. case DIR_IMAGE: \
  170. return (H_ERR_WITFO); \
  171. case VF_IMAGE: \
  172. return (H_ERR_WITFO); /* wrong image type */ \
  173. default: \
  174. return (H_ERR_NIIT); /* not implemented image type */ \
  175. }
  176. #define HCkFilterSize(IMAGE_WIDTH, IMAGE_HEIGHT, FILTER_WIDTH, FILTER_HEIGHT) \
  177. if (((IMAGE_WIDTH) < ((FILTER_WIDTH) >> 1) + 1) || \
  178. ((IMAGE_HEIGHT) < ((FILTER_HEIGHT) >> 1) + 1)) \
  179. return (H_ERR_FSEIS);
  180. #define HCkFilterSize_2(IMAGE_WIDTH, IMAGE_HEIGHT, FILTER_WIDTH_2, \
  181. FILTER_HEIGHT_2) \
  182. if (((IMAGE_WIDTH) < (FILTER_WIDTH_2) + 1) || \
  183. ((IMAGE_HEIGHT) < (FILTER_HEIGHT_2) + 1)) \
  184. return (H_ERR_FSEIS);
  185. #define DIST(PIX, PIX2, ABSDIF, IMAGE_IN_KIND) \
  186. switch (IMAGE_IN_KIND) \
  187. { \
  188. case BYTE_IMAGE: \
  189. case LONG_IMAGE: \
  190. case INT8_IMAGE: \
  191. case INT1_IMAGE: \
  192. case INT2_IMAGE: \
  193. case UINT2_IMAGE: \
  194. case FLOAT_IMAGE: \
  195. ABSDIF = ABS((PIX) - (PIX2)); \
  196. break; \
  197. case CYCLIC_IMAGE: \
  198. { \
  199. double dmax, dmaxh; \
  200. dmax = (double)UCHAR_MAX + 1.; \
  201. dmaxh = (double)(int)(dmax / 2.); \
  202. ABSDIF = ABS((PIX) - (PIX2)); \
  203. if ((ABSDIF) > dmaxh) \
  204. ABSDIF = dmax - (ABSDIF); \
  205. } \
  206. break; \
  207. case DIR_IMAGE: \
  208. if ((PIX) > 200. || (PIX2) > 200.) \
  209. ABSDIF = (double)UCHAR_MAX; \
  210. else \
  211. { \
  212. ABSDIF = ABS((PIX) - (PIX2)); \
  213. if ((ABSDIF) > 90.) \
  214. ABSDIF = 181. - (ABSDIF); \
  215. } \
  216. break; \
  217. default: \
  218. return (H_ERR_NIIT); \
  219. }
  220. #define HiType2iIDX(iTYPE, iIDX) \
  221. switch (iTYPE) \
  222. { \
  223. case UNDEF_IMAGE: \
  224. iIDX = iUNDEF; \
  225. break; \
  226. case BYTE_IMAGE: \
  227. iIDX = iBYTE; \
  228. break; \
  229. case INT4_IMAGE: \
  230. iIDX = iINT4; \
  231. break; \
  232. case FLOAT_IMAGE: \
  233. iIDX = iFLOAT; \
  234. break; \
  235. case DIR_IMAGE: \
  236. iIDX = iDIR; \
  237. break; \
  238. case CYCLIC_IMAGE: \
  239. iIDX = iCYCLIC; \
  240. break; \
  241. case INT1_IMAGE: \
  242. iIDX = iINT1; \
  243. break; \
  244. case COMPLEX_IMAGE: \
  245. iIDX = iCOMPLEX; \
  246. break; \
  247. case INT2_IMAGE: \
  248. iIDX = iINT2; \
  249. break; \
  250. case UINT2_IMAGE: \
  251. iIDX = iUINT2; \
  252. break; \
  253. case VF_IMAGE: \
  254. iIDX = iVF; \
  255. break; \
  256. default: \
  257. iIDX = UNDEF_IMAGE; \
  258. break; \
  259. }
  260. #define HMOD(VAL, VALMAX) \
  261. (((VAL) < 0) \
  262. ? ((unsigned char)(((VALMAX) - (-(VAL) % (VALMAX))) % (VALMAX))) \
  263. : ((unsigned char)((VAL) % (VALMAX))))
  264. /* Grauwertkomponente eines Graubildes */
  265. #define IMAGE_INDEX 1
  266. #define HBitImageSize(WIDTH, HEIGHT) (size_t)((HIMGCNT)WIDTH * HEIGHT / 8 + 1)
  267. #define WarningCompl(Proc) \
  268. (void)printf("warning: is_compl not yet full implemented (%s)\n", Proc)
  269. /*****************************************************************************
  270. * Routines for freeing and reallocating "permanent","local", or "temporary"
  271. * memory.
  272. *****************************************************************************/
  273. #ifndef _LIntStatic
  274. # define HFreeGeneral(PROC_HANDLE, VOID_PTR) \
  275. (HTraceMemory ? HXFreeGeneralMemCheck(PROC_HANDLE, (void*)VOID_PTR, \
  276. H__FILE__, (INT4_8)H__LINE__) \
  277. : HXFreeGeneral(PROC_HANDLE, (void*)VOID_PTR))
  278. #else
  279. /* in case of static language interfaces, do not use HTraceMemory to allow
  280. * delayed loading */
  281. # define HFreeGeneral(PROC_HANDLE, VOID_PTR) \
  282. HXFreeGeneral(PROC_HANDLE, (void*)VOID_PTR)
  283. #endif
  284. #define HReallocGeneral(PROC_HANDLE, VOID_PTR, SIZE, NEW_PTR) \
  285. HXReallocGeneral(PROC_HANDLE, (void*)(VOID_PTR), SIZE, (void*)(NEW_PTR), \
  286. H__FILE__, (INT4_8)H__LINE__)
  287. #define HFreeRLGeneral(PROC_HANDLE, REGION) \
  288. HXFreeRLGeneral(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  289. #define HReallocRLNumGeneral(PROC_HANDLE, REGION, SIZE, NEW_REGION) \
  290. HXReallocRLNumGeneral(PROC_HANDLE, REGION, SIZE, NEW_REGION, H__FILE__, \
  291. (INT4_8)H__LINE__)
  292. /*****************************************************************************
  293. * Routines for allocating "permanent" memory from the heap. This memory is
  294. * _not_ freed automatically after each call to a HALCON operator.
  295. *****************************************************************************/
  296. #ifndef _LIntStatic
  297. # define HAlloc(PROC_HANDLE, SIZE, VOID_PTR) \
  298. (HTraceMemory \
  299. ? HXAllocMemCheck(PROC_HANDLE, SIZE, H__FILE__, (INT4_8)H__LINE__, \
  300. H_GLOBAL_ALLOC, (void*)(VOID_PTR)) \
  301. : HXAlloc(PROC_HANDLE, SIZE, (void*)(VOID_PTR)))
  302. #else
  303. /* in case of static language interfaces, do not use HTraceMemory to allow
  304. * delayed loading */
  305. # define HAlloc(PROC_HANDLE, SIZE, VOID_PTR) \
  306. HXAlloc(PROC_HANDLE, SIZE, (void*)(VOID_PTR))
  307. #endif
  308. #define HIsAligned(VOID_PTR, ALIGNMENT) (((UINT4_8)ptr & (ALIGNMENT - 1)) == 0)
  309. #ifndef _LIntStatic
  310. # define HAllocAlign(PROC_HANDLE, SIZE, ALIGNMENT, VOID_PTR) \
  311. (HTraceMemory \
  312. ? HXAllocAlignMemCheck(PROC_HANDLE, SIZE, ALIGNMENT, H__FILE__, \
  313. (INT4_8)H__LINE__, H_GLOBAL_ALLOC, \
  314. (void*)(VOID_PTR)) \
  315. : HXAllocAlign(PROC_HANDLE, SIZE, ALIGNMENT, (void*)(VOID_PTR)))
  316. #else
  317. /* in case of static language interfaces, do not use HTraceMemory to allow
  318. * delayed loading */
  319. # define HAllocAlign(PROC_HANDLE, SIZE, ALIGNMENT, VOID_PTR) \
  320. HXAllocAlign(PROC_HANDLE, SIZE, ALIGNMENT, (void*)(VOID_PTR))
  321. #endif
  322. #define HRealloc(PROC_HANDLE, VOID_PTR, SIZE, NEW_PTR) \
  323. HXRealloc(PROC_HANDLE, (void*)(VOID_PTR), SIZE, (void*)(NEW_PTR), \
  324. H__FILE__, (INT4_8)H__LINE__)
  325. #define HReallocToGlobal(PROC_HANDLE, VOID_PTR, SIZE, NEW_PTR) \
  326. HXReallocToGlobal(PROC_HANDLE, (void*)(VOID_PTR), SIZE, (void*)(NEW_PTR), \
  327. H__FILE__, (INT4_8)H__LINE__)
  328. #ifndef _LIntStatic
  329. # define HFree(PROC_HANDLE, VOID_PTR) \
  330. (HTraceMemory ? HXFreeMemCheck(PROC_HANDLE, (void*)(VOID_PTR), H__FILE__, \
  331. (INT4_8)H__LINE__) \
  332. : HXFree(PROC_HANDLE, (void*)(VOID_PTR)))
  333. #else
  334. /* in case of static language interfaces, do not use HTraceMemory to allow
  335. * delayed loading */
  336. # define HFree(PROC_HANDLE, VOID_PTR) HXFree(PROC_HANDLE, (void*)(VOID_PTR))
  337. #endif
  338. #define HAllocRLNum(PROC_HANDLE, REGION, SIZE) \
  339. HXAllocRLNum(PROC_HANDLE, REGION, SIZE, H__FILE__, (INT4_8)H__LINE__)
  340. #define HReallocRLNum(PROC_HANDLE, REGION, SIZE, NEW_REGION) \
  341. HXReallocRLNum(PROC_HANDLE, REGION, SIZE, NEW_REGION, H__FILE__, \
  342. (INT4_8)H__LINE__)
  343. #define HReallocRLNumToGlobal(PROC_HANDLE, REGION, SIZE, NEW_REGION) \
  344. HXReallocRLNumToGlobal(PROC_HANDLE, REGION, SIZE, NEW_REGION, H__FILE__, \
  345. (INT4_8)H__LINE__)
  346. #define HAllocRL(PROC_HANDLE, REGION) \
  347. HXAllocRL(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  348. #define HFreeRL(PROC_HANDLE, REGION) \
  349. HXFreeRL(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  350. /*****************************************************************************
  351. * Routines for allocating temporary memory from a "stack" of memory. This
  352. * memory is freed automatically after each call to a HALCON operator.
  353. *****************************************************************************/
  354. #define HAllocTmp(PROC_HANDLE, PTR, SIZE) \
  355. HXAllocTmp(PROC_HANDLE, (void*)(PTR), SIZE, H__FILE__, (INT4_8)H__LINE__)
  356. #define HAllocTmpAlign(PROC_HANDLE, PTR, SIZE, ALIGNMENT) \
  357. HXAllocTmpAlign(PROC_HANDLE, (void*)(PTR), SIZE, ALIGNMENT, H__FILE__, \
  358. (INT4_8)H__LINE__)
  359. #define HAllocDomainImageTmp(PROC_HANDLE, MEM_PTR, IMAGE_PTR, REGION, WIDTH, \
  360. HEIGHT, BYTE_PER_PIXEL, BORDER_ROWS, \
  361. BORDER_BYTES) \
  362. HXAllocDomainImageTmp(PROC_HANDLE, (void*)(MEM_PTR), (void*)(IMAGE_PTR), \
  363. REGION, WIDTH, HEIGHT, BYTE_PER_PIXEL, BORDER_ROWS, \
  364. BORDER_BYTES, H__FILE__, (INT4_8)H__LINE__)
  365. #define HFreeTmp(PROC_HANDLE, VOID_PTR) \
  366. HXFreeTmp(PROC_HANDLE, (void*)(VOID_PTR), H__FILE__, (INT4_8)H__LINE__)
  367. #define HFreeNTmp(PROC_HANDLE, NUM) \
  368. HXFreeNTmp(PROC_HANDLE, NUM, H__FILE__, (INT4_8)H__LINE__)
  369. #define HFreeAllTmp(PROC_HANDLE) \
  370. HXFreeAllTmp(PROC_HANDLE, H__FILE__, (INT4_8)H__LINE__)
  371. #define HFreeUpToTmp(PROC_HANDLE, VOID_PTR) \
  372. HXFreeUpToTmp(PROC_HANDLE, (void*)(VOID_PTR), H__FILE__, (INT4_8)H__LINE__)
  373. #define HFreeUpToTmpExcl(PROC_HANDLE, VOID_PTR) \
  374. HXFreeUpToTmpExcl(PROC_HANDLE, (void*)(VOID_PTR), H__FILE__, \
  375. (INT4_8)H__LINE__)
  376. #define HAllocRLNumTmp(PROC_HANDLE, REGION, SIZE) \
  377. HXAllocRLNumTmp(PROC_HANDLE, REGION, SIZE, H__FILE__, (INT4_8)H__LINE__)
  378. #define HAllocRLTmp(PROC_HANDLE, REGION) \
  379. HXAllocRLTmp(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  380. #define HFreeRLTmp(PROC_HANDLE, REGION) \
  381. HXFreeRLTmp(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  382. #define HTestTmp(PROC_HANDLE, VOID_PTR) \
  383. HXTestTmp(PROC_HANDLE, VOID_PTR, H__FILE__, (INT4_8)H__LINE__, TRUE)
  384. #define HTestPtr(VOID_PTR) HXTestPtr(VOID_PTR, H__FILE__, (INT4_8)H__LINE__)
  385. #define HTestAllTmp(VOID_PTR) \
  386. HXTestAllTmp(VOID_PTR, H__FILE__, (INT4_8)H__LINE__)
  387. /*****************************************************************************
  388. * Routines for allocating temporary memory from the heap. This memory is
  389. * freed automatically after each call to a HALCON operator.
  390. *****************************************************************************/
  391. #define HAllocLocal(PROC_HANDLE, SIZE, VOID_PTR) \
  392. HXAllocLocal(PROC_HANDLE, SIZE, H__FILE__, (INT4_8)H__LINE__, \
  393. (void*)(VOID_PTR))
  394. /*
  395. * HAllocLocalGC: Operator local, garbage collecting mermory allocation. In
  396. * comparison to HAllocLocal, HAllocLocalGC does not prompt low error messages
  397. * when freeing memory if HDoLowErrors and HTraceMemory are turned on.
  398. */
  399. #define HAllocLocalGC(PROC_HANDLE, SIZE, VOID_PTR) \
  400. HXAllocLocalGC(PROC_HANDLE, SIZE, H__FILE__, (INT4_8)H__LINE__, \
  401. (void*)(VOID_PTR))
  402. #define HAllocLocalAlign(PROC_HANDLE, SIZE, ALIGNMENT, VOID_PTR) \
  403. HXAllocLocalAlign(PROC_HANDLE, SIZE, ALIGNMENT, H__FILE__, \
  404. (INT4_8)H__LINE__, (void*)(VOID_PTR))
  405. #define HReallocLocal(PROC_HANDLE, VOID_PTR, SIZE, NEW_PTR) \
  406. HXReallocLocal(PROC_HANDLE, (void*)(VOID_PTR), SIZE, (void*)(NEW_PTR), \
  407. H__FILE__, (INT4_8)H__LINE__)
  408. #define HFreeLocal(PROC_HANDLE, VOID_PTR) \
  409. HXFreeLocal(PROC_HANDLE, (void*)(VOID_PTR), H__FILE__, (INT4_8)H__LINE__)
  410. #define HAllocRLNumLocal(PROC_HANDLE, REGION, SIZE) \
  411. HXAllocRLNumLocal(PROC_HANDLE, REGION, SIZE, H__FILE__, (INT4_8)H__LINE__)
  412. #define HReallocRLNumLocal(PROC_HANDLE, REGION, SIZE, NEW_REGION) \
  413. HXReallocRLNumLocal(PROC_HANDLE, REGION, SIZE, NEW_REGION, H__FILE__, \
  414. (INT4_8)H__LINE__)
  415. #define HAllocRLLocal(PROC_HANDLE, REGION) \
  416. HXAllocRLLocal(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  417. #define HFreeRLLocal(PROC_HANDLE, REGION) \
  418. HXFreeRLLocal(PROC_HANDLE, REGION, H__FILE__, (INT4_8)H__LINE__)
  419. #ifndef ABS
  420. # define ABS(A) (((A) >= 0) ? (A) : (-(A)))
  421. #endif
  422. /* Umwandlung Bogenmass in Grad und zurueck */
  423. #define RadToDeg(x) (double)(x) * 57.295779513082
  424. #define DegToRad(x) (double)(x) / 57.295779513082
  425. #define HIRound(Val) \
  426. (((Val) < 0.0) ? ((HINT)((Val)-0.5)) : ((HINT)((Val) + 0.5)))
  427. #define HI4Round(Val) \
  428. (((Val) < 0.0) ? ((INT4)((Val)-0.5)) : ((INT4)((Val) + 0.5)))
  429. #define HLRound(Val) \
  430. (((Val) < 0.0) ? ((INT4_8)((Val)-0.5)) : ((INT4_8)((Val) + 0.5)))
  431. #define HI8Round(Val) \
  432. (((Val) < 0.0) ? ((HINT8)((Val)-0.5)) : ((HINT8)((Val) + 0.5)))
  433. #define HIMGCOORRound(Val) \
  434. (((Val) < 0.0) ? ((HIMGCOOR)((Val)-0.5)) : ((HIMGCOOR)((Val) + 0.5)))
  435. #define HFIRound(Val) \
  436. (((Val) < 0.0f) ? ((HINT)((Val)-0.5f)) : ((HINT)((Val) + 0.5f)))
  437. /*
  438. * Edge handling for images by mirroring.
  439. *
  440. * IMPORTANT: 'width' and 'height' are assumed to be defined for any code
  441. * using these macros
  442. */
  443. #define BR(ROW) \
  444. (((ROW) < 0) ? (-(ROW)) \
  445. : (((ROW) >= height) ? (height - (ROW) + height - 2) : (ROW)))
  446. #define BC(COL) \
  447. (((COL) < 0) ? (-(COL)) \
  448. : (((COL) >= width) ? (width - (COL) + width - 2) : (COL)))
  449. /*
  450. * Optimized variants of the BR and BC macros above when the bound to check
  451. * against (upper or lower) is known by the caller.
  452. */
  453. #define BRL(ROW) (((ROW) < 0) ? -(ROW) : (ROW))
  454. #define BRU(ROW) (((ROW) >= height) ? (height - (ROW) + height - 2) : (ROW))
  455. #define BCL(COL) (((COL) < 0) ? -(COL) : (COL))
  456. #define BCU(COL) (((COL) >= width) ? (width - (COL) + width - 2) : (COL))
  457. /* Hrlregion */
  458. #define HRLReset(RL) \
  459. { \
  460. (RL)->feature.def.all = 0; \
  461. (RL)->feature.shape = 0; \
  462. (RL)->is_compl = FALSE; \
  463. (RL)->num = 0; \
  464. (RL)->rl = (Hrun*)(((HBYTE*)(void*)&(RL)->rl) + sizeof((RL)->rl)); \
  465. }
  466. #define HRLSize(NumRuns) \
  467. ((size_t)((NumRuns) * sizeof(Hrun) + (sizeof(Hrlregion))))
  468. /* Binaerbild */
  469. #define HTestBit(D, P) ((D)[(P) >> 3] & (1 << (7 - ((P)&7))))
  470. #define HDelBit(D, P) (D)[(P) >> 3] &= (UINT1)(~(1 << (7 - ((P)&7))))
  471. #define HSetBit(D, P) (D)[(P) >> 3] |= (UINT1)(1 << (7 - ((P)&7)))
  472. /* Koordinaten */
  473. #define HLinCoor(L, C, W) (((INT4_8)(L) * (INT4_8)(W)) + (INT4_8)(C))
  474. #define HXLinCoor(L, C, W) HLinCoor(L, C, W)
  475. #define HCol(K, W) (HIMGCOOR)(((K) % (W)))
  476. #define HRow(K, W) (HIMGCOOR)(((K) / (W)))
  477. #define CB(RL, I, W) HLinCoor((RL)[I].l, (RL)[I].cb, W)
  478. #define CE(RL, I, W) HLinCoor((RL)[I].l, (RL)[I].ce, W)
  479. #define FLinCoor(R, C, H) ((C) * (H) + (R))
  480. /* misc */
  481. #ifndef SGN
  482. # define SGN(X) (((X) == 0) ? 0 : (((X) > 0) ? 1 : (-1)))
  483. #endif
  484. #ifndef ODD
  485. # define ODD(X) ((X) % 2)
  486. #endif
  487. #ifndef EVEN
  488. # define EVEN(X) (!((X) % 2))
  489. #endif
  490. #ifndef MIN
  491. # define MIN(X, Y) (((X) > (Y)) ? (Y) : (X))
  492. #endif
  493. #ifndef MAX
  494. # define MAX(X, Y) (((X) > (Y)) ? (X) : (Y))
  495. #endif
  496. #define DToINT4_8(Val) \
  497. ((Val) < (double)INT4_8_MIN \
  498. ? INT4_8_MIN \
  499. : ((Val) < INT_4_8_MAXDOUBLE \
  500. ? (INT4_8)(Val) \
  501. : (((INT4_8_MIN == (INT4_8)(Val)) && ((Val) > 0)) \
  502. ? INT4_8_MAX \
  503. : ((INT4_8)(Val)))))
  504. #define DToINT4(Val) \
  505. ((INT4)MIN((double)INT4_MAX, MAX((double)INT4_MIN, (Val))))
  506. #define DToINT2(Val) \
  507. ((INT2)MIN((double)INT2_MAX, MAX((double)INT2_MIN, (Val))))
  508. #define DToINT(Val) ((HINT)MIN((double)INT_MAX, MAX((double)INT_MIN, (Val))))
  509. #define HInsideImage(R, C, WIDTH, HEIGHT) \
  510. ((((R) >= 0) && ((C) >= 0) && ((R) < (HEIGHT)) && ((C) < (WIDTH))) ? TRUE \
  511. : FALSE)
  512. #if !defined HCkP
  513. # if !defined(NO_SPY) && !defined(HC_FAST)
  514. # define HCkP(Proc) XHCkP(Proc)
  515. # define XHCkP(Proc) \
  516. do \
  517. { \
  518. Herror _H_ERR; \
  519. Herror _H_ERR_P; \
  520. if (IOGetSpyProcCallSwitch()) \
  521. IOSpyProcCall(#Proc, __LINE__, __FILE__); \
  522. if (HIsError(_H_ERR = (Proc))) \
  523. { \
  524. if (HIsError(_H_ERR_P = \
  525. HProcessErr(#Proc, _H_ERR, __LINE__, __FILE__))) \
  526. return (_H_ERR_P); \
  527. return (_H_ERR); \
  528. } \
  529. } while (0)
  530. # else
  531. # define HCkP(Proc) XHCkP(Proc)
  532. # define XHCkP(Proc) \
  533. do \
  534. { \
  535. Herror _H_ERR; \
  536. if (HIsError(_H_ERR = (Proc))) \
  537. { \
  538. return (_H_ERR); \
  539. } \
  540. } while (0)
  541. # endif
  542. #endif /* if not defined HCkP */
  543. #if !defined(NO_SPY) && !defined(HC_FAST)
  544. # define HCkPCloseFile(Proc, File) XHCkPCloseFile(Proc, File)
  545. # define XHCkPCloseFile(Proc, File) \
  546. do \
  547. { \
  548. Herror ERR; \
  549. Herror H_ERR_P; \
  550. if (IOGetSpyProcCallSwitch()) \
  551. IOSpyProcCall(#Proc, __LINE__, __FILE__); \
  552. if ((ERR = (Proc)) != H_MSG_OK) \
  553. { \
  554. fclose(File); \
  555. if ((H_ERR_P = HProcessErr(#Proc, ERR, __LINE__, __FILE__)) != \
  556. H_MSG_OK) \
  557. return (H_ERR_P); \
  558. return (ERR); \
  559. } \
  560. } while (0)
  561. #else
  562. # define HCkPCloseFile(Proc, File) XHCkPCloseFile(Proc, File)
  563. # define XHCkPCloseFile(Proc, File) \
  564. do \
  565. { \
  566. Herror ERR; \
  567. if ((ERR = (Proc)) != H_MSG_OK) \
  568. { \
  569. fclose(File); \
  570. return (ERR); \
  571. } \
  572. } while (0)
  573. #endif
  574. #if !defined(NO_SPY) && !defined(HC_FAST)
  575. # define HCkPasync(Proc, GapingFlag, ComplFlag, ErrFlag) \
  576. do \
  577. { \
  578. Herror ERR, H_ERR_P; \
  579. if (IOGetSpyProcCallSwitch()) \
  580. IOSpyProcCall(#Proc, __LINE__, __FILE__); \
  581. if ((ERR = Proc) != H_MSG_OK) \
  582. { \
  583. if ((H_ERR_P = HProcessErr(#Proc, ERR, __LINE__, __FILE__)) != \
  584. H_MSG_OK) \
  585. { \
  586. if (GapingFlag == FALSE) \
  587. { \
  588. *ErrFlag = H_ERR_P; \
  589. *ComplFlag = TRUE; \
  590. } \
  591. return (H_ERR_P); \
  592. } \
  593. if (GapingFlag == FALSE) \
  594. { \
  595. *ErrFlag = ERR; \
  596. *ComplFlag = TRUE; \
  597. } \
  598. return (ERR); \
  599. } \
  600. } while (0)
  601. #else
  602. # define HCkPasync(Proc, GapingFlag, ComplFlag, ErrFlag) \
  603. do \
  604. { \
  605. Herror ERR; \
  606. if ((ERR = Proc) != H_MSG_OK) \
  607. { \
  608. if (GapingFlag == FALSE) \
  609. { \
  610. *ErrFlag = ERR; \
  611. *ComplFlag = TRUE; \
  612. } \
  613. return (ERR); \
  614. } \
  615. } while (0)
  616. #endif
  617. #define HCkE(ERR) XHCkE(ERR)
  618. #if defined(HC_FAST) || defined(NO_SPY)
  619. # define XHCkE(ERR) \
  620. { \
  621. if (ERR != H_MSG_OK) \
  622. return (ERR); \
  623. }
  624. #else
  625. # define XHCkE(ERR) \
  626. do \
  627. { \
  628. if (ERR != H_MSG_OK) \
  629. { \
  630. if (IOGetSpyProcCallSwitch()) \
  631. (void)HProcessErr("-", ERR, __LINE__, __FILE__); \
  632. return (ERR); \
  633. } \
  634. } while (0)
  635. #endif
  636. #define HCkPME(ERR, PROC) XHCkPME(ERR, PROC)
  637. #if defined(HC_FAST) || defined(NO_SPY)
  638. # define XHCkPME(ERR, PROC) \
  639. do \
  640. { \
  641. Herror _terr; \
  642. if (H_MSG_OK != (_terr = (PROC))) \
  643. (ERR) = _terr; \
  644. } while (0)
  645. #else
  646. # define XHCkPME(ERR, PROC) \
  647. { \
  648. Herror _terr; \
  649. if (H_MSG_OK != (_terr = (PROC))) \
  650. { \
  651. if (IOGetSpyProcCallSwitch()) \
  652. (void)HProcessErr("-", ERR, __LINE__, __FILE__); \
  653. (ERR) = _terr; \
  654. } \
  655. }
  656. #endif
  657. #define HCkNoObj(PROC_HANDLE) \
  658. do \
  659. { \
  660. HBOOL BOOL_PTR; \
  661. if ((HNoInpObj(PROC_HANDLE, &BOOL_PTR) != H_MSG_OK) || \
  662. (BOOL_PTR == TRUE)) \
  663. { \
  664. Herror N_OBJ_RESULT; \
  665. HReadGV(PROC_HANDLE, HGNoObjResult, &N_OBJ_RESULT); \
  666. return (N_OBJ_RESULT); \
  667. } \
  668. } while (0)
  669. #define HCkSingleInputObj(PROC_HANDLE, OBJ_NUM) \
  670. HCkP(HPCheckSingleInputObject(PROC_HANDLE, OBJ_NUM))
  671. #define HCkOnlySqr(width, height) \
  672. if (!HIs2Pot(width) || (!HIs2Pot(height))) \
  673. return (H_ERR_NPOT)
  674. #define HIsError(ERR) ((ERR) != H_MSG_OK)
  675. #define HIsMessage(ERR) ((ERR) == H_MSG_OK)
  676. #ifdef HC_FAST
  677. # define HCkRL(PROC_HANDLE, RL, PROC, IN_OUT)
  678. #else
  679. # define HCkRL(PROC_HANDLE, RL, PROC, IN_OUT) \
  680. do \
  681. { \
  682. Herror H_ERR_RL; \
  683. INT4 CHECK_F; \
  684. HReadGV(PROC_HANDLE, HGcheck, &CHECK_F); \
  685. if (CHECK_F & CHECK_CHORD) \
  686. { \
  687. H_ERR_RL = HRLTest(PROC_HANDLE, RL, FALSE); \
  688. if (H_ERR_RL != H_MSG_OK) \
  689. { \
  690. (void)fprintf(stderr, "runlength error (%s) %s: #%u\n", IN_OUT, \
  691. PROC, H_ERR_RL); \
  692. (void)fprintf(stderr, "runlength data dump in file: <<%s>>\n", \
  693. RL_DUMP); \
  694. HCkP(HRLDump(PROC_HANDLE, RL, RL_DUMP)); \
  695. return (H_ERR_RL); \
  696. } \
  697. } \
  698. } while (0)
  699. #endif
  700. #define LongToNet(L, N) \
  701. { \
  702. unsigned char* HH; \
  703. HH = (unsigned char*)&(N); \
  704. HH[0] = ((L) >> 24) & 255; \
  705. HH[1] = ((L) >> 16) & 255; \
  706. HH[2] = ((L) >> 8) & 255; \
  707. HH[3] = (L)&255; \
  708. }
  709. #define NetToLong(N, L) \
  710. { \
  711. unsigned char* HH; \
  712. HH = (unsigned char*)&(N); \
  713. L = ((INT4)(HH[0]) << 24) | ((INT4)(HH[1]) << 16) | \
  714. ((INT4)(HH[2]) << 8) | ((INT4)(HH[3])); \
  715. }
  716. #define ShortToNet(S, N) \
  717. { \
  718. unsigned char* HH; \
  719. HH = (unsigned char*)&(N); \
  720. HH[0] = ((S) >> 8) & 255; \
  721. HH[1] = (S)&255; \
  722. }
  723. #define NetToShort(N, S) \
  724. { \
  725. unsigned char* HH; \
  726. HH = (unsigned char*)&(N); \
  727. S = ((short)(HH[0]) << 8) | ((short)(HH[1])); \
  728. }
  729. #define HAllocStringMem(PROC_HANDLE, SIZE) \
  730. HCkP(HPAllocStringMem(PROC_HANDLE, (size_t)SIZE))
  731. /* macros for accessing input ctrl parameters
  732. * - without copying
  733. * - with type and/or number check
  734. *===========================================================================*/
  735. #define HGetCParNum(PROC_HANDLE, Par, Num) \
  736. { \
  737. Herror ERR; \
  738. ERR = HPGetCParNum(PROC_HANDLE, Par, Num); \
  739. if (ERR != H_MSG_OK) \
  740. return (ERR); \
  741. }
  742. #if !defined(NO_SPY) && !defined(SMALL)
  743. # define HGetPElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  744. do \
  745. { \
  746. Herror _ERR; \
  747. _ERR = HPGetPElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N); \
  748. if (_ERR != H_MSG_OK) \
  749. return (_ERR); \
  750. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(INT4_8**)(ELEM), *(INT4_8*)(N), \
  751. LONG_PAR, TRUE); \
  752. if (_ERR != H_MSG_OK) \
  753. return (_ERR); \
  754. } while (0)
  755. #else
  756. # define HGetPElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  757. HCkP(HPGetPElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  758. #endif
  759. #if !defined(NO_SPY) && !defined(SMALL)
  760. # define HGetPElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  761. do \
  762. { \
  763. Herror _ERR; \
  764. _ERR = HPGetPElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N); \
  765. if (_ERR != H_MSG_OK) \
  766. return (_ERR); \
  767. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(double**)(ELEM), *(INT4_8*)(N), \
  768. DOUBLE_PAR, TRUE); \
  769. if (_ERR != H_MSG_OK) \
  770. return (_ERR); \
  771. } while (0)
  772. #else
  773. # define HGetPElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  774. HCkP(HPGetPElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  775. #endif
  776. #if !defined(NO_SPY) && !defined(SMALL)
  777. # define HGetPElemS(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  778. do \
  779. { \
  780. Herror _ERR; \
  781. _ERR = HPGetPElemS(PROC_HANDLE, PAR, CONVERT, ELEM, N); \
  782. if (_ERR != H_MSG_OK) \
  783. return (_ERR); \
  784. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(char***)(ELEM), *(INT4_8*)(N), \
  785. STRING_PAR, TRUE); \
  786. if (_ERR != H_MSG_OK) \
  787. return (_ERR); \
  788. } while (0)
  789. #else
  790. # define HGetPElemS(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  791. HCkP(HPGetPElemS(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  792. #endif
  793. /* Retrives a single handle from an input parameter */
  794. #define HGetCElemH1(PROC_HANDLE, PAR, HTYPE, ELEM) \
  795. HCkP(HPGetPElemH(PROC_HANDLE, PAR, HTYPE, 1, (void**)ELEM, NULL, FALSE))
  796. /* Retrives all handles from an input parameter. The returned array contains
  797. * pointers to the data stored in the handles. It is freed automatically
  798. * when the operator finishes. */
  799. #define HGetCElemH(PROC_HANDLE, PAR, HTYPE, ELEM, N) \
  800. HCkP(HPGetPElemH(PROC_HANDLE, PAR, HTYPE, -1, (void**)ELEM, N, TRUE))
  801. /* Retrives given number of handles from an input parameter. The returned array
  802. * contains pointers to the data stored in the handles. It is freed
  803. * automatically when the operator finishes. */
  804. #define HGetCElemHN(PROC_HANDLE, PAR, HTYPE, N, ELEM) \
  805. HCkP(HPGetPElemH(PROC_HANDLE, PAR, HTYPE, N, ELEM, TRUE))
  806. #if !defined(NO_SPY) && !defined(SMALL)
  807. # define HGetPElem(PROC_HANDLE, PAR, ELEM, N, TYPE) \
  808. do \
  809. { \
  810. Herror _ERR; \
  811. HPGetPElem(PROC_HANDLE, PAR, ELEM, N, TYPE); \
  812. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(void**)(ELEM), *(INT4_8*)(N), \
  813. *(HINT*)(TYPE), TRUE); \
  814. if (_ERR != H_MSG_OK) \
  815. return (_ERR); \
  816. } while (0)
  817. #else
  818. # define HGetPElem(PROC_HANDLE, PAR, ELEM, N, TYPE) \
  819. HPGetPElem(PROC_HANDLE, PAR, ELEM, N, TYPE)
  820. #endif
  821. #if !defined(NO_SPY) && !defined(SMALL)
  822. # define HGetElemL(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  823. do \
  824. { \
  825. Herror _ERR; \
  826. _ERR = HPGetElemL(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N); \
  827. if (_ERR != H_MSG_OK) \
  828. return (_ERR); \
  829. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(INT4_8**)(ELEM), *(INT4_8*)(N), \
  830. LONG_PAR, TRUE); \
  831. if (_ERR != H_MSG_OK) \
  832. return (_ERR); \
  833. } while (0)
  834. #else
  835. # define HGetElemL(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  836. HCkP(HPGetElemL(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N))
  837. #endif
  838. #if !defined(NO_SPY) && !defined(SMALL)
  839. # define HGetElemD(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  840. do \
  841. { \
  842. Herror _ERR; \
  843. _ERR = HPGetElemD(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N); \
  844. if (_ERR != H_MSG_OK) \
  845. return (_ERR); \
  846. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(double**)(ELEM), *(INT4_8*)(N), \
  847. DOUBLE_PAR, TRUE); \
  848. if (_ERR != H_MSG_OK) \
  849. return (_ERR); \
  850. } while (0)
  851. #else
  852. # define HGetElemD(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  853. HCkP(HPGetElemD(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N))
  854. #endif
  855. #if !defined(NO_SPY) && !defined(SMALL)
  856. # define HGetElemS(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  857. do \
  858. { \
  859. Herror _ERR; \
  860. _ERR = HPGetElemS(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N); \
  861. if (_ERR != H_MSG_OK) \
  862. return (_ERR); \
  863. _ERR = IOSpyElem(PROC_HANDLE, PAR, *(char***)(ELEM), *(INT4_8*)(N), \
  864. STRING_PAR, TRUE); \
  865. if (_ERR != H_MSG_OK) \
  866. return (_ERR); \
  867. } while (0)
  868. #else
  869. # define HGetElemS(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N) \
  870. HCkP(HPGetElemS(PROC_HANDLE, PAR, CONVERT, MEM_TYPE, ELEM, N))
  871. #endif
  872. #if !defined(NO_SPY) && !defined(SMALL)
  873. # define HCopyElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  874. do \
  875. { \
  876. Herror _ERR; \
  877. _ERR = HPCopyElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N); \
  878. if (_ERR != H_MSG_OK) \
  879. return (_ERR); \
  880. _ERR = \
  881. IOSpyElem(PROC_HANDLE, PAR, ELEM, *(INT4_8*)(N), LONG_PAR, TRUE); \
  882. if (_ERR != H_MSG_OK) \
  883. return (_ERR); \
  884. } while (0)
  885. #else
  886. # define HCopyElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  887. HCkP(HPCopyElemL(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  888. #endif
  889. #if !defined(NO_SPY) && !defined(SMALL)
  890. # define HCopyElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  891. do \
  892. { \
  893. Herror _ERR; \
  894. _ERR = HPCopyElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N); \
  895. if (_ERR != H_MSG_OK) \
  896. return (_ERR); \
  897. _ERR = \
  898. IOSpyElem(PROC_HANDLE, PAR, ELEM, *(INT4_8*)(N), DOUBLE_PAR, TRUE); \
  899. if (_ERR != H_MSG_OK) \
  900. return (_ERR); \
  901. } while (0)
  902. #else
  903. # define HCopyElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  904. HCkP(HPCopyElemD(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  905. #endif
  906. /*
  907. * Note: since there is no easy way to implement the SPY functionality
  908. * for HCopyElemF, we don't bother.
  909. */
  910. #define HCopyElemF(PROC_HANDLE, PAR, CONVERT, ELEM, N) \
  911. HCkP(HPCopyElemF(PROC_HANDLE, PAR, CONVERT, ELEM, N))
  912. /* HGetPParN:
  913. * specify the exact number of the read parameter (any type)
  914. *---------------------------------------------------------------------------*/
  915. #if !defined(NO_SPY) && !defined(SMALL)
  916. # define HGetPParN(PROC_HANDLE, PAR, NUM, VAL) \
  917. { \
  918. INT4_8 _NUM; \
  919. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, &_NUM); \
  920. if (ERR != H_MSG_OK) \
  921. return ERR; \
  922. if (NUM != _NUM) \
  923. return (H_ERR_WIPN1 - 1) + (PAR); \
  924. ERR = IOSpyCPar(PROC_HANDLE, PAR, *VAL, _NUM, TRUE); \
  925. if (ERR != H_MSG_OK) \
  926. return ERR; \
  927. }
  928. #else
  929. # define HGetPParN(PROC_HANDLE, PAR, NUM, VAL) \
  930. { \
  931. INT4_8 _NUM; \
  932. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, &_NUM); \
  933. if (ERR != H_MSG_OK) \
  934. return ERR; \
  935. if (NUM != _NUM) \
  936. return (H_ERR_WIPN1 - 1) + (PAR); \
  937. }
  938. #endif
  939. /* HGetPParMM:
  940. * the value number of the read parameter is expected to be within a
  941. * certain range
  942. *---------------------------------------------------------------------------*/
  943. #if !defined(NO_SPY) && !defined(SMALL)
  944. # define HGetPParMM(PROC_HANDLE, PAR, MIN, MAX, VAL, NUM) \
  945. { \
  946. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  947. if (ERR != H_MSG_OK) \
  948. return ERR; \
  949. if (*NUM < MIN || *NUM > MAX) \
  950. return (H_ERR_WIPN1 - 1) + (PAR); \
  951. ERR = IOSpyCPar(PROC_HANDLE, PAR, *VAL, *(NUM), TRUE); \
  952. if (ERR != H_MSG_OK) \
  953. return ERR; \
  954. }
  955. #else
  956. # define HGetPParMM(PROC_HANDLE, PAR, MIN, MAX, VAL, NUM) \
  957. { \
  958. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  959. if (ERR != H_MSG_OK) \
  960. return ERR; \
  961. if (*NUM < MIN || *NUM > MAX) \
  962. return (H_ERR_WIPN1 - 1) + (PAR); \
  963. }
  964. #endif
  965. /* HGetPParT:
  966. * specify the expected type(s) of the read parameter
  967. *---------------------------------------------------------------------------*/
  968. #if !defined(NO_SPY) && !defined(SMALL)
  969. # define HGetPParT(PROC_HANDLE, PAR, TYPE, VAL, NUM) \
  970. { \
  971. INT4_8 _IDX; \
  972. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  973. if (ERR != H_MSG_OK) \
  974. return ERR; \
  975. for (_IDX = 0; _IDX < *(NUM); _IDX++) \
  976. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  977. return (H_ERR_WIPT1 - 1) + (PAR); \
  978. ERR = IOSpyCPar(PROC_HANDLE, PAR, *(VAL), *(NUM), TRUE); \
  979. if (ERR != H_MSG_OK) \
  980. return ERR; \
  981. }
  982. #else
  983. # define HGetPParT(PROC_HANDLE, PAR, TYPE, VAL, NUM) \
  984. { \
  985. INT4_8 _IDX; \
  986. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  987. if (ERR != H_MSG_OK) \
  988. return ERR; \
  989. for (_IDX = 0; _IDX < *(NUM); _IDX++) \
  990. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  991. return (H_ERR_WIPT1 - 1) + (PAR); \
  992. }
  993. #endif
  994. /* HGetPParTN:
  995. * specify the exact number and the expected type(s) of the read parameter
  996. *---------------------------------------------------------------------------*/
  997. #if !defined(NO_SPY) && !defined(SMALL)
  998. # define HGetPParTN(PROC_HANDLE, PAR, TYPE, NUM, VAL) \
  999. { \
  1000. INT4_8 _IDX, _NUM; \
  1001. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, &_NUM); \
  1002. if (ERR != H_MSG_OK) \
  1003. return ERR; \
  1004. if ((NUM) != _NUM) \
  1005. return (H_ERR_WIPN1 - 1) + (PAR); \
  1006. for (_IDX = 0; _IDX < _NUM; _IDX++) \
  1007. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  1008. return (H_ERR_WIPT1 - 1) + (PAR); \
  1009. ERR = IOSpyCPar(PROC_HANDLE, PAR, *(VAL), _NUM, TRUE); \
  1010. if (ERR != H_MSG_OK) \
  1011. return ERR; \
  1012. }
  1013. #else
  1014. # define HGetPParTN(PROC_HANDLE, PAR, TYPE, NUM, VAL) \
  1015. { \
  1016. INT4_8 _IDX, _NUM; \
  1017. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, &_NUM); \
  1018. if (ERR != H_MSG_OK) \
  1019. return ERR; \
  1020. if ((NUM) != _NUM) \
  1021. return (H_ERR_WIPN1 - 1) + (PAR); \
  1022. for (_IDX = 0; _IDX < _NUM; _IDX++) \
  1023. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  1024. return (H_ERR_WIPT1 - 1) + (PAR); \
  1025. }
  1026. #endif
  1027. /* HGetPParTMM:
  1028. * specify a range for the number of the read parameters as well as
  1029. * the expected type(s)
  1030. *---------------------------------------------------------------------------*/
  1031. #if !defined(NO_SPY) && !defined(SMALL)
  1032. # define HGetPParTMM(PROC_HANDLE, PAR, TYPE, MIN, MAX, VAL, NUM) \
  1033. { \
  1034. INT4_8 _IDX; \
  1035. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  1036. if (ERR != H_MSG_OK) \
  1037. return ERR; \
  1038. if (*(NUM) < MIN || *(NUM) > MAX) \
  1039. return (H_ERR_WIPN1 - 1) + (PAR); \
  1040. for (_IDX = 0; _IDX < *(NUM); _IDX++) \
  1041. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  1042. return (H_ERR_WIPT1 - 1) + (PAR); \
  1043. ERR = IOSpyCPar(PROC_HANDLE, PAR, *(VAL), *(NUM), TRUE); \
  1044. if (ERR != H_MSG_OK) \
  1045. return ERR; \
  1046. }
  1047. #else
  1048. # define HGetPParTMM(PROC_HANDLE, PAR, TYPE, MIN, MAX, VAL, NUM) \
  1049. { \
  1050. INT4_8 _IDX; \
  1051. Herror ERR = HPGetPPar(PROC_HANDLE, PAR, VAL, NUM); \
  1052. if (ERR != H_MSG_OK) \
  1053. return ERR; \
  1054. if (*(NUM) < MIN || *(NUM) > MAX) \
  1055. return (H_ERR_WIPN1 - 1) + (PAR); \
  1056. for (_IDX = 0; _IDX < *(NUM); _IDX++) \
  1057. if (((TYPE) & (*(VAL))[_IDX].type) == 0) \
  1058. return (H_ERR_WIPT1 - 1) + (PAR); \
  1059. }
  1060. #endif
  1061. #if !defined(NO_SPY) && !defined(SMALL)
  1062. # define HGetPPar(PROC_HANDLE, P, V, N) \
  1063. { \
  1064. Herror ERR; \
  1065. ERR = HPGetPPar(PROC_HANDLE, P, V, N); \
  1066. if (ERR != H_MSG_OK) \
  1067. return (ERR); \
  1068. ERR = IOSpyCPar(PROC_HANDLE, P, *V, *N, TRUE); \
  1069. if (ERR != H_MSG_OK) \
  1070. return (ERR); \
  1071. }
  1072. #else
  1073. # define HGetPPar(PROC_HANDLE, P, V, N) \
  1074. { \
  1075. Herror ERR; \
  1076. ERR = HPGetPPar(PROC_HANDLE, P, V, N); \
  1077. if (ERR != H_MSG_OK) \
  1078. return (ERR); \
  1079. }
  1080. #endif
  1081. #if !defined(NO_SPY) && !defined(SMALL)
  1082. # define HGetPar(PROC_HANDLE, Par, Kind, Val, Num) \
  1083. { \
  1084. Herror ERR; \
  1085. ERR = HPGetPar(PROC_HANDLE, Par, ANY_ELEM, Kind, Val, (INT4_8)0, \
  1086. (INT4_8)10000000, Num); \
  1087. if (ERR != H_MSG_OK) \
  1088. return (ERR); \
  1089. ERR = IOSpyCPar(PROC_HANDLE, Index, Val, *(Num), TRUE); \
  1090. if (ERR != H_MSG_OK) \
  1091. return (ERR); \
  1092. }
  1093. #else
  1094. # define HGetPar(Par, Kind, Val, Num) \
  1095. { \
  1096. Herror ERR; \
  1097. ERR = HPGetPar(Par, ANY_ELEM, Kind, Val, (INT4_8)0, (INT4_8)10000000, \
  1098. Num); \
  1099. if (ERR != H_MSG_OK) \
  1100. return (ERR); \
  1101. }
  1102. #endif
  1103. #if !defined(NO_SPY) && !defined(SMALL)
  1104. # define HGetSPar(PROC_HANDLE, Index, Type, Val, N) \
  1105. { \
  1106. INT4_8 _HN; \
  1107. Herror ERR; \
  1108. ERR = HPGetCPar(PROC_HANDLE, Index, Type, Val, (INT4_8)(N), \
  1109. (INT4_8)(N), &_HN); \
  1110. if (ERR != H_MSG_OK) \
  1111. return (ERR); \
  1112. ERR = IOSpyCPar(PROC_HANDLE, Index, Val, _HN, TRUE); \
  1113. if (ERR != H_MSG_OK) \
  1114. return (ERR); \
  1115. }
  1116. #else
  1117. # define HGetSPar(PROC_HANDLE, Index, Type, Val, N) \
  1118. { \
  1119. INT4_8 _HN; \
  1120. Herror ERR; \
  1121. ERR = HPGetCPar(PROC_HANDLE, Index, Type, Val, (INT4_8)(N), \
  1122. (INT4_8)(N), &_HN); \
  1123. if (ERR != H_MSG_OK) \
  1124. return (ERR); \
  1125. }
  1126. #endif
  1127. #if !defined(NO_SPY) && !defined(SMALL)
  1128. # define HGetCPar(PROC_HANDLE, Index, InpType, Val, Min, Max, ResNum) \
  1129. { \
  1130. Herror ERR; \
  1131. ERR = HPGetCPar(PROC_HANDLE, Index, InpType, Val, (INT4_8)(Min), \
  1132. (INT4_8)(Max), ResNum); \
  1133. if (ERR != H_MSG_OK) \
  1134. return (ERR); \
  1135. ERR = IOSpyCPar(PROC_HANDLE, Index, Val, (INT4_8)*ResNum, TRUE); \
  1136. if (ERR != H_MSG_OK) \
  1137. return (ERR); \
  1138. }
  1139. #else
  1140. # define HGetCPar(PROC_HANDLE, Index, InpType, Val, Min, Max, ResNum) \
  1141. { \
  1142. Herror ERR; \
  1143. ERR = HPGetCPar(PROC_HANDLE, Index, InpType, Val, (INT4_8)(Min), \
  1144. (INT4_8)(Max), ResNum); \
  1145. if (ERR != H_MSG_OK) \
  1146. return (ERR); \
  1147. }
  1148. #endif
  1149. #if !defined(NO_SPY) && !defined(SMALL)
  1150. # define HGetFPar(PROC_HANDLE, Index, Type, Val, Num) \
  1151. { \
  1152. int _HT; \
  1153. INT4_8 _HN; \
  1154. Herror ERR; \
  1155. ERR = HPGetPar(PROC_HANDLE, Index, Type, &_HT, Val, (INT4_8)(Num), \
  1156. (INT4_8)(Num), &_HN); \
  1157. if (ERR != H_MSG_OK) \
  1158. return (ERR); \
  1159. ERR = IOSpyPar(PROC_HANDLE, Index, _HT, Val, _HN, TRUE); \
  1160. if (ERR != H_MSG_OK) \
  1161. return (ERR); \
  1162. }
  1163. #else
  1164. # define HGetFPar(PROC_HANDLE, Index, Type, Val, Num) \
  1165. { \
  1166. int _HT; \
  1167. INT4_8 _HN; \
  1168. Herror ERR; \
  1169. ERR = HPGetPar(PROC_HANDLE, Index, Type, &_HT, Val, (INT4_8)(Num), \
  1170. (INT4_8)(Num), &_HN); \
  1171. if (ERR != H_MSG_OK) \
  1172. return (ERR); \
  1173. }
  1174. #endif
  1175. #if !defined(NO_SPY) && !defined(SMALL)
  1176. # define HGetEPar(PROC_HANDLE, Index, InpType, ResType, Val, Min, Max, Num) \
  1177. { \
  1178. Herror ERR; \
  1179. ERR = HPGetPar(PROC_HANDLE, Index, InpType, ResType, Val, \
  1180. (INT4_8)(Min), (INT4_8)(Max), Num); \
  1181. if (ERR != H_MSG_OK) \
  1182. return (ERR); \
  1183. ERR = IOSpyPar(PROC_HANDLE, Index, *ResType, Val, (INT4_8)*Num, TRUE); \
  1184. if (ERR != H_MSG_OK) \
  1185. return (ERR); \
  1186. }
  1187. #else
  1188. # define HGetEPar(PROC_HANDLE, Index, InpType, ResType, Val, Min, Max, Num) \
  1189. { \
  1190. Herror ERR; \
  1191. ERR = HPGetPar(PROC_HANDLE, Index, InpType, ResType, Val, \
  1192. (INT4_8)(Min), (INT4_8)(Max), Num); \
  1193. if (ERR != H_MSG_OK) \
  1194. return (ERR); \
  1195. }
  1196. #endif
  1197. /* macros for accessing ctrl output parameters
  1198. *===========================================================================*/
  1199. #define HPutPElem(PROC_HANDLE, PAR, ELEM, NUM, TYPE) \
  1200. do \
  1201. { \
  1202. HCkP(HPPutPElem(PROC_HANDLE, PAR, ELEM, NUM, TYPE)); \
  1203. } while (0)
  1204. #define HPutElem(PROC_HANDLE, PAR, ELEM, NUM, TYPE) \
  1205. do \
  1206. { \
  1207. HCkP(HPPutElem(PROC_HANDLE, PAR, ELEM, NUM, TYPE)); \
  1208. } while (0)
  1209. #if !defined(NO_SPY) && !defined(SMALL)
  1210. # define HPutPar(PROC_HANDLE, P, K, V, N) \
  1211. { \
  1212. Herror ERR; \
  1213. ERR = IOSpyPar(PROC_HANDLE, P, K, V, (INT4_8)(N), FALSE); \
  1214. if (ERR != H_MSG_OK) \
  1215. return (ERR); \
  1216. ERR = HPPutPar(PROC_HANDLE, P, K, V, (INT4_8)(N)); \
  1217. if (ERR != H_MSG_OK) \
  1218. return (ERR); \
  1219. }
  1220. #else
  1221. # define HPutPar(PROC_HANDLE, P, K, V, N) \
  1222. { \
  1223. Herror ERR; \
  1224. ERR = HPPutPar(PROC_HANDLE, P, K, V, (INT4_8)(N)); \
  1225. if (ERR != H_MSG_OK) \
  1226. return (ERR); \
  1227. }
  1228. #endif
  1229. #if !defined(NO_SPY) && !defined(SMALL)
  1230. # define HPutCPar(PROC_HANDLE, P, V, N) \
  1231. { \
  1232. Herror ERR; \
  1233. ERR = IOSpyCPar(PROC_HANDLE, P, V, (INT4_8)N, FALSE); \
  1234. if (ERR != H_MSG_OK) \
  1235. return (ERR); \
  1236. ERR = HPPutCPar(PROC_HANDLE, P, V, (INT4_8)(N)); \
  1237. if (ERR != H_MSG_OK) \
  1238. return (ERR); \
  1239. }
  1240. #else
  1241. # define HPutCPar(PROC_HANDLE, P, V, N) \
  1242. { \
  1243. Herror ERR; \
  1244. ERR = HPPutCPar(PROC_HANDLE, P, V, (INT4_8)(N)); \
  1245. if (ERR != H_MSG_OK) \
  1246. return (ERR); \
  1247. }
  1248. #endif
  1249. #if !defined(NO_SPY) && !defined(SMALL)
  1250. # define HPutPPar(PROC_HANDLE, P, V, N) \
  1251. { \
  1252. Herror ERR; \
  1253. ERR = IOSpyCPar(PROC_HANDLE, P, V, (INT4_8)N, FALSE); \
  1254. if (ERR != H_MSG_OK) \
  1255. return (ERR); \
  1256. ERR = HPPutPPar(PROC_HANDLE, P, V, N); \
  1257. if (ERR != H_MSG_OK) \
  1258. return (ERR); \
  1259. }
  1260. #else
  1261. # define HPutPPar(PROC_HANDLE, P, V, N) \
  1262. { \
  1263. Herror ERR; \
  1264. ERR = HPPutPPar(PROC_HANDLE, P, V, N); \
  1265. if (ERR != H_MSG_OK) \
  1266. return (ERR); \
  1267. }
  1268. #endif
  1269. /* Write NUM handle references in the output control PAR.
  1270. * HANDLETYPE is the type of the corresponding handles (const HhandleInfo*).
  1271. * ELEM points to an array that holds NUM elements.
  1272. *
  1273. * IMPORTANT: The output control variable gains ownership of all pointers that
  1274. * are in ELEM. When aborting an operator with an error,
  1275. * those values MUST NOT be cleared inside the operator's code,
  1276. * but will be cleared automatically when cleaning the output
  1277. * control variable.
  1278. */
  1279. #define HPutElemH(PROC_HANDLE, PAR, ELEM, NUM, HANDLETYPE) \
  1280. do \
  1281. { \
  1282. HCkP(HPPutElemH(PROC_HANDLE, PAR, ELEM, NUM, HANDLETYPE)); \
  1283. } while (0)
  1284. /* Allocates one handle in the output control parameter PAR.
  1285. * HANDLETYPE is the type of the corresponding handles (const HhandleInfo*).
  1286. * ELEM is modified to point to where the new tool can be allocated.
  1287. *
  1288. * IMPORTANT: The output control variable gains ownership of the pointer in
  1289. * ELEM. When aborting an operator with an error,
  1290. * the value MUST NOT be cleared inside the operator's code,
  1291. * but will be cleared automatically when cleaning the output
  1292. * control variable.
  1293. */
  1294. #define HAllocOutputHandle(PROC_HANDLE, PAR, ELEM, HANDLETYPE) \
  1295. HXAllocOutputHandle(PROC_HANDLE, PAR, (void***)ELEM, HANDLETYPE)
  1296. /* macros for accessing iconic object parameters
  1297. *===========================================================================*/
  1298. #define HNumOfChannels(PROC_HANDLE, OBJ, NUM) \
  1299. HCkP(HPNumOfChannels(PROC_HANDLE, (HINT)1, (INT4_8)OBJ, NUM))
  1300. #define HAllObj(PROC_HANDLE, VAR, Hkey, I) \
  1301. I = 0; \
  1302. while ((HCheckInpObjNum(PROC_HANDLE, VAR, I + 1) == TRUE) && \
  1303. (HPGetObj(PROC_HANDLE, VAR, (INT4_8)++I, &Hkey) == H_MSG_OK) && \
  1304. (Hkey != H_UNDEFINED))
  1305. #define HAllOutpObj(PROC_HANDLE, VAR, Hkey, I) \
  1306. I = 0; \
  1307. while ((HCheckOutpObjNum(PROC_HANDLE, VAR, I + 1) == TRUE) && \
  1308. (HPGetOutpObj(PROC_HANDLE, VAR, (INT4_8)++I, &Hkey) == H_MSG_OK) && \
  1309. (Hkey != H_UNDEFINED))
  1310. #define HAllSegm(PROC_HANDLE, RL, IMAGES, MAX_CHANNELS, I) \
  1311. I = 0; \
  1312. while ((HCheckInpObjNum(PROC_HANDLE, 1, I + 1) == TRUE) && \
  1313. (HPAllSegm(PROC_HANDLE, (INT4_8)++I, RL, IMAGES, MAX_CHANNELS) == \
  1314. H_MSG_OK))
  1315. #define HAllReg(PROC_HANDLE, RL, I) \
  1316. I = 0; \
  1317. while ((HCheckInpObjNum(PROC_HANDLE, 1, I + 1) == TRUE) && \
  1318. (HPAllReg(PROC_HANDLE, (INT4_8)++I, RL) == H_MSG_OK))
  1319. #define HAllFilter(PROC_HANDLE, RL, IMA_IN, IMA_OUT, MAX_CHANNELS, I) \
  1320. I = 0; \
  1321. while ((HCheckInpObjNum(PROC_HANDLE, 1, I + 1) == TRUE) && \
  1322. (HPAllFilter(PROC_HANDLE, (INT4_8)++I, RL, IMA_IN, IMA_OUT, \
  1323. MAX_CHANNELS) == H_MSG_OK))
  1324. #define HAllComp(PROC_HANDLE, OBJ_IN, IM_IN_KEY, IM_IN, INDEX) \
  1325. HPGetComp(PROC_HANDLE, OBJ_IN, IMAGE_INDEX, &IM_IN_KEY); \
  1326. if (IM_IN_KEY == H_UNDEFINED) \
  1327. return (H_ERR_AUDI); \
  1328. for (INDEX = IMAGE_INDEX; \
  1329. (HPGetComp(PROC_HANDLE, OBJ_IN, INDEX, &IM_IN_KEY) == H_MSG_OK) && \
  1330. (IM_IN_KEY != H_UNDEFINED) && \
  1331. HPGetImage(PROC_HANDLE, IM_IN_KEY, &IM_IN) == H_MSG_OK; \
  1332. INDEX++)
  1333. #define HAllCompChecked(PROC_HANDLE, OBJ_IN, IM_IN_KEY, IM_IN, INDEX) \
  1334. HCkP(HPGetComp(PROC_HANDLE, OBJ_IN, IMAGE_INDEX, &IM_IN_KEY)); \
  1335. if (IM_IN_KEY == H_UNDEFINED) \
  1336. return (H_ERR_AUDI); \
  1337. for (INDEX = IMAGE_INDEX; \
  1338. (HPGetComp(PROC_HANDLE, OBJ_IN, INDEX, &IM_IN_KEY) == H_MSG_OK) && \
  1339. (IM_IN_KEY != H_UNDEFINED) && \
  1340. HPGetImage(PROC_HANDLE, IM_IN_KEY, &IM_IN) == H_MSG_OK; \
  1341. INDEX++)
  1342. #define HIfFirstComp(INDEX) if (INDEX == IMAGE_INDEX)
  1343. #define HAllFilter2(PROC_HANDLE, RL, IMA_IN1, IMA_IN2, IMA_OUT, MAX_CHANNELS, \
  1344. I) \
  1345. I = 0; \
  1346. while ((HCheckInpObjNum(PROC_HANDLE, 1, I + 1) == TRUE) && \
  1347. (HPAllFilter2(PROC_HANDLE, (INT4_8)++I, RL, IMA_IN1, IMA_IN2, \
  1348. IMA_OUT, MAX_CHANNELS) == H_MSG_OK))
  1349. #define HGetFRL(PROC_HANDLE, Key, region) \
  1350. HCkP(HPGetFRL(PROC_HANDLE, Key, region))
  1351. #define HGetRL(PROC_HANDLE, Key, region) \
  1352. HCkP(HPGetRL(PROC_HANDLE, Key, region))
  1353. #define HGetFDRL(PROC_HANDLE, Key, region) \
  1354. HCkP(HPGetFDRL(PROC_HANDLE, Key, region))
  1355. #define HGetDRL(PROC_HANDLE, Key, region) \
  1356. HCkP(HPGetDRL(PROC_HANDLE, Key, region))
  1357. #define HGetURL(PROC_HANDLE, Par, region) \
  1358. HCkP(HPGetURL(PROC_HANDLE, Par, region))
  1359. #define HGetImage(PROC_HANDLE, Key, Image) \
  1360. HCkP(HPGetImage(PROC_HANDLE, Key, Image))
  1361. #define HGetImageInfo(PROC_HANDLE, Key, Image) \
  1362. HCkP(HP0GetCDImage(PROC_HANDLE, Key, Image))
  1363. #define HGetDImage(PROC_HANDLE, Key, Comp, Image) \
  1364. HCkP(HPGetDImage(PROC_HANDLE, Key, Comp, Image))
  1365. #define HDelObj(PROC_HANDLE, Key) HCkP(HPDelObj(PROC_HANDLE, Key))
  1366. #define HNewRegion(PROC_HANDLE, RL) HCkP(HPNewRegion(PROC_HANDLE, RL))
  1367. #define HPushRegion(PROC_HANDLE, RL) HCkP(HPPushRegion(PROC_HANDLE, RL))
  1368. #define HPushGlobalRegion(PROC_HANDLE, RL) \
  1369. HCkP(HPPushGlobalRegion(PROC_HANDLE, RL))
  1370. #define HDupObj(PROC_HANDLE, INDEX) HCkP(HPDupObj(PROC_HANDLE, INDEX))
  1371. #define HPutDRL(PROC_HANDLE, Key, RL, KEY_PTR) \
  1372. HCkP(HPPutDRL(PROC_HANDLE, Key, RL, KEY_PTR));
  1373. #define HPutPRLComp(PROC_HANDLE, ObjKey, RL, KEY_PTR) \
  1374. HCkP(HPPutPRLComp(PROC_HANDLE, ObjKey, RL, KEY_PTR));
  1375. #define HPutRect(PROC_HANDLE, Key, W, H) \
  1376. HCkP(HPPutRect(PROC_HANDLE, Key, W, H));
  1377. #define HPutImage(PROC_HANDLE, Image, Copy, KEY_PTR) \
  1378. HCkP(HPPutImage(PROC_HANDLE, Image, Copy, KEY_PTR));
  1379. #define HPutDImage(PROC_HANDLE, Key, Comp, Image, Copy, KEY_PTR) \
  1380. HCkP(HPPutDImage(PROC_HANDLE, Key, Comp, Image, Copy, KEY_PTR));
  1381. #define HDefObj(PROC_HANDLE, Obj, Key, Comp) \
  1382. HCkP(HPDefObj(PROC_HANDLE, Obj, Key, Comp));
  1383. #define HCrObj(PROC_HANDLE, Par, KEY_PTR) \
  1384. HCkP(HPCrObj(PROC_HANDLE, Par, KEY_PTR));
  1385. #define HCopyObj(PROC_HANDLE, Key, Par, KEY_PTR) \
  1386. HCkP(HPCopyObj(PROC_HANDLE, Key, Par, KEY_PTR));
  1387. #define HGetObj(PROC_HANDLE, Par, Num, KEY_PTR) \
  1388. HCkP(HPGetObj(PROC_HANDLE, Par, (INT4_8)Num, KEY_PTR));
  1389. #define HGetObjNum(PROC_HANDLE, Par, Num) \
  1390. HCkP(HPGetObjNum(PROC_HANDLE, Par, Num));
  1391. #define HGetComp(PROC_HANDLE, Obj, CompId, Id) \
  1392. HCkP(HPGetComp(PROC_HANDLE, Obj, CompId, Id));
  1393. #define HGetXLD(PROC_HANDLE, DBKEY, TYPE, XLD) \
  1394. { \
  1395. HINT TMP_TYPE; \
  1396. HINT NUM_USES; \
  1397. Hkey* USES; \
  1398. HCkP(HPGetXLD(PROC_HANDLE, DBKEY, &TMP_TYPE, XLD, &USES, &NUM_USES)); \
  1399. if (TYPE != TMP_TYPE) \
  1400. return (H_ERR_XLDWT); \
  1401. }
  1402. #define HGetSXLD(PROC_HANDLE, DBKEY, TYPE, XLD) \
  1403. { \
  1404. HINT NUM_USES; \
  1405. Hkey* USES; \
  1406. HCkP(HPGetXLD(PROC_HANDLE, DBKEY, TYPE, XLD, &USES, &NUM_USES)); \
  1407. }
  1408. #define HCrXLD(PROC_HANDLE, PAR, XLD, TYPE, USES, NUM_USES, FREE, KEY_PTR) \
  1409. HCkP(HPCrXLD(PROC_HANDLE, PAR, XLD, TYPE, USES, NUM_USES, FREE, KEY_PTR));
  1410. /* -------- Makros for accessing HALCON operator context information ------- */
  1411. /* write a global context Variable ('normal' variable) */
  1412. #define HWriteGV(ProcHandle, Element, Value) \
  1413. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1414. (char*)NULL, (Hkey)NULL, 0))
  1415. /* write a global context Variable ('normal' variable) with index */
  1416. #define HWriteGVI(ProcHandle, Element, Value, Index) \
  1417. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1418. (char*)NULL, (Hkey)NULL, Index))
  1419. /* write a global context Variable (String) */
  1420. #define HWriteGVS(ProcHandle, Element, String) \
  1421. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1422. String, (Hkey)NULL, 0))
  1423. /* write a global context variable (String in element of Array) */
  1424. #define HWriteGVSA(ProcHandle, Element, String, Index) \
  1425. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1426. String, (Hkey)NULL, Index))
  1427. /* write a global context variable (HALCON object Key in element of Array) */
  1428. #define HWriteGVKA(ProcHandle, Element, Key, Index) \
  1429. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1430. (char*)NULL, Key, Index))
  1431. /* write a global context variable (Pointer in element of Array) */
  1432. #define HWriteGVPA(ProcHandle, Element, Pointer, Index) \
  1433. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, Pointer, (double)0, \
  1434. (char*)NULL, NULL, Index))
  1435. /* write a global context variable (element of Array) */
  1436. #define HWriteGVA(ProcHandle, Element, Value, Index) \
  1437. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1438. (char*)NULL, (Hkey)NULL, Index))
  1439. /* write a global context Variable ('normal' variable); force changement of */
  1440. /* the corresponding reference version */
  1441. #define HWriteGVR(ProcHandle, Element, Value) \
  1442. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_REF, NULL, (double)Value, \
  1443. (char*)NULL, (Hkey)NULL, 0))
  1444. /* write a global context Variable ('normal' variable) with index; */
  1445. /* force changement of the corresponding reference version */
  1446. #define HWriteGVRI(ProcHandle, Element, Value, Index) \
  1447. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_REF, NULL, (double)Value, \
  1448. (char*)NULL, (Hkey)NULL, Index))
  1449. /* read a global context Variable ('normal' variable) */
  1450. #define HReadGV(ProcHandle, Element, Buffer) \
  1451. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Buffer, (double)0, \
  1452. (char*)NULL, (Hkey)NULL, 0))
  1453. /* read a global context Variable (element of Array) */
  1454. #define HReadGVA(ProcHandle, Element, Buffer, Index) \
  1455. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Buffer, (double)0, \
  1456. (char*)NULL, (Hkey)NULL, Index))
  1457. /* read a global context Variable from reference */
  1458. #define HReadGVR(ProcHandle, Element, Buffer) \
  1459. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_REF, Buffer, (double)0, \
  1460. (char*)NULL, (Hkey)NULL, 0))
  1461. /* read a global context Variable from reference with index */
  1462. #define HReadGVRI(ProcHandle, Element, Buffer, Index) \
  1463. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_REF, Buffer, (double)0, \
  1464. (char*)NULL, (Hkey)NULL, Index))
  1465. /* initialize a global context Variable (Array) */
  1466. #define HInitGVA(ProcHandle, Element, Address) \
  1467. HCkP(HAccessGlVar(ProcHandle, Element, GV_INIT_INFO, Address, (double)0, \
  1468. (char*)NULL, (Hkey)NULL, 0))
  1469. /* get the address of a global context Variable (Array) */
  1470. #define HGetAddrGVA(ProcHandle, Element, Buffer) \
  1471. HCkP(HAccessGlVar(ProcHandle, Element, GV_GET_ADRESS, Buffer, (double)0, \
  1472. (char*)NULL, (Hkey)NULL, 0))
  1473. /* realloc the memory of a global context Variable (Array) */
  1474. #define HReallocGVA(ProcHandle, Element, NewSize) \
  1475. HCkP(HAccessGlVar(ProcHandle, Element, GV_REALLOC_A, NULL, (double)0, \
  1476. (char*)NULL, (Hkey)NULL, NewSize))
  1477. /* lock a global context mutex variable */
  1478. #if defined H_PARALLEL
  1479. # define HLockGVM(ProcHandle, Element) \
  1480. HCkP(HAccessGlVar(ProcHandle, Element, GV_LOCK, NULL, (double)0, \
  1481. (char*)NULL, (Hkey)NULL, 0))
  1482. /* lock a global context mutex variable and directly return Herror result */
  1483. # define HLockGVMdirect(ProcHandle, Element) \
  1484. HAccessGlVar(ProcHandle, Element, GV_LOCK, NULL, (double)0, (char*)NULL, \
  1485. (Hkey)NULL, 0)
  1486. /* unlock a global context mutex variable */
  1487. # define HUnlockGVM(ProcHandle, Element) \
  1488. HCkP(HAccessGlVar(ProcHandle, Element, GV_UNLOCK, NULL, (double)0, \
  1489. (char*)NULL, (Hkey)NULL, 0))
  1490. /* unlock a global context mutex variable and directly return Herror result */
  1491. # define HUnlockGVMdirect(ProcHandle, Element) \
  1492. HAccessGlVar(ProcHandle, Element, GV_UNLOCK, NULL, (double)0, \
  1493. (char*)NULL, (Hkey)NULL, 0)
  1494. #else
  1495. # define HLockGVM(ProcHandle, Element)
  1496. # define HLockGVMdirect(ProcHandle, Element) H_MSG_OK
  1497. # define HUnlockGVM(ProcHandle, Element)
  1498. # define HUnlockGVMdirect(ProcHandle, Element) H_MSG_OK
  1499. #endif
  1500. /* calculate 'bitwise OR' with the content of a global context variable */
  1501. #define HBOrGV(ProcHandle, Element, Value) \
  1502. HCkP(HAccessGlVar(ProcHandle, Element, GV_BOR_INFO, NULL, (double)Value, \
  1503. (char*)NULL, (Hkey)NULL, 0))
  1504. /* calculate 'bitwise AND' with the content of a global context variable */
  1505. #define HBAndGV(ProcHandle, Element, Value) \
  1506. HCkP(HAccessGlVar(ProcHandle, Element, GV_BAND_INFO, NULL, (double)Value, \
  1507. (char*)NULL, (Hkey)NULL, 0))
  1508. /* - - - - old Makros for accessing HALCON operator context information - - */
  1509. /* (all accesses using the old makros should be replaced by the new ones in */
  1510. /* the long term */
  1511. /* write an element of the global structure HInterInfo */
  1512. #define HWriteInterInfo(ProcHandle, Element, Value) \
  1513. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1514. (char*)NULL, (Hkey)NULL, 0))
  1515. /* write an element of the global structure HInterInfo (String) */
  1516. #define HWriteInterInfoS(ProcHandle, Element, Value) \
  1517. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1518. Value, (Hkey)NULL, 0))
  1519. /* write an element of the global structure HInterInfo (String into Array) */
  1520. #define HWriteInterInfoSA(ProcHandle, Element, Value, Index) \
  1521. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1522. Value, (Hkey)NULL, Index))
  1523. /* write an element of the global structure HInterInfo (Array element) */
  1524. #define HWriteInterInfoA(ProcHandle, Element, Value, Index) \
  1525. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1526. (char*)NULL, (Hkey)NULL, Index))
  1527. /* read an element of the global structure HInterInfo */
  1528. #define HReadInterInfo(ProcHandle, Element, Value) \
  1529. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1530. (char*)NULL, (Hkey)NULL, 0))
  1531. /* read an element of the global structure HInterInfo (Array element) */
  1532. #define HReadInterInfoA(ProcHandle, Element, Value, Index) \
  1533. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1534. (char*)NULL, (Hkey)NULL, Index))
  1535. /* initialize an element of the global structure HInterInfo (Array element) */
  1536. #define HInitInterInfoA(ProcHandle, Element, Value) \
  1537. HCkP(HAccessGlVar(ProcHandle, Element, GV_INIT_INFO, Value, (double)0, \
  1538. (char*)NULL, (Hkey)NULL, 0))
  1539. /* write an element of the global structure HSysComInfo */
  1540. #define HWriteSysComInfo(ProcHandle, Element, Value) \
  1541. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1542. (char*)NULL, (Hkey)NULL, 0))
  1543. /* write an element of the global structure HSysComInfo (String) */
  1544. #define HWriteSysComInfoS(ProcHandle, Element, Value) \
  1545. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1546. Value, (Hkey)NULL, 0))
  1547. /* write an element of the global structure HSysComInfo (String into Array) */
  1548. #define HWriteSysComInfoSA(ProcHandle, Element, Value, Index) \
  1549. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1550. Value, (Hkey)NULL, Index))
  1551. /* write an element of the global structure HSysComInfo (Array element) */
  1552. #define HWriteSysComInfoA(ProcHandle, Element, Value, Index) \
  1553. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1554. (char*)NULL, (Hkey)NULL, Index))
  1555. /* write an element of the global structure HSysInfoShared */
  1556. #define HWriteSysInfoShared(ProcHandle, Element, Value) \
  1557. HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1558. (char*)NULL, (Hkey)NULL, 0)
  1559. /* write an element of the global structure HSysInfoShared (String) */
  1560. #define HWriteSysInfoSharedS(ProcHandle, Element, Value) \
  1561. HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, Value, \
  1562. (Hkey)NULL, 0)
  1563. /* write an element of the global structure HSysInfoShared(String into Array)*/
  1564. #define HWriteSysInfoSharedSA(ProcHandle, Element, Value, Index) \
  1565. HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, Value, \
  1566. (Hkey)NULL, Index)
  1567. /* write an element of the global structure HSysComInfo (Array element) */
  1568. #define HWriteSysInfoSharedA(ProcHandle, Element, Value, Index) \
  1569. HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1570. (char*)NULL, (Hkey)NULL, Index)
  1571. /* read an element of the global structure HSysComInfo */
  1572. #define HReadSysComInfo(ProcHandle, Element, Value) \
  1573. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1574. (char*)NULL, (Hkey)NULL, 0))
  1575. /* read an element of the global structure HSysComInfo (Array element) */
  1576. #define HReadSysComInfoA(ProcHandle, Element, Value, Index) \
  1577. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1578. (char*)NULL, (Hkey)NULL, Index))
  1579. /* initialize an element of the global structure HSysComInfo (Array element) */
  1580. #define HInitSysComInfoA(ProcHandle, Element, Value) \
  1581. HCkP(HAccessGlVar(ProcHandle, Element, GV_INIT_INFO, Value, (double)0, \
  1582. (char*)NULL, (Hkey)NULL, 0))
  1583. /* write an element of the global structure HProcCallInfo */
  1584. #define HWriteProcCallInfo(ProcHandle, Element, Value) \
  1585. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1586. (char*)NULL, (Hkey)NULL, 0))
  1587. /* write an element of the global structure HProcCallInfo (String) */
  1588. #define HWriteProcCallInfoS(ProcHandle, Element, Value) \
  1589. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1590. Value, (Hkey)NULL, 0))
  1591. /* write an element of the global structure HProcCallInfo (String into Array)*/
  1592. #define HWriteProcCallInfoSA(ProcHandle, Element, Value, Index) \
  1593. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1594. Value, (Hkey)NULL, Index))
  1595. /* write an element of the global structure HProcCallInfo (Key into Array) */
  1596. #define HWriteProcCallInfoKA(ProcHandle, Element, Value, Index) \
  1597. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)0, \
  1598. (char*)NULL, Value, Index))
  1599. /* write an element of the global structure HProcCallInfo (Array element) */
  1600. #define HWriteProcCallInfoA(ProcHandle, Element, Value, Index) \
  1601. HCkP(HAccessGlVar(ProcHandle, Element, GV_WRITE_INFO, NULL, (double)Value, \
  1602. (char*)NULL, (Hkey)NULL, Index))
  1603. /* Lesen eines Elements der globalen Struktur HProcCallInfo */
  1604. #define HReadProcCallInfo(ProcHandle, Element, Value) \
  1605. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1606. (char*)NULL, (Hkey)NULL, 0))
  1607. /* read an element of the global structure HProcCallInfo */
  1608. #define HReadProcCallInfoA(ProcHandle, Element, Value, Index) \
  1609. HCkP(HAccessGlVar(ProcHandle, Element, GV_READ_INFO, Value, (double)0, \
  1610. (char*)NULL, (Hkey)NULL, Index))
  1611. /* initialize an element of the global structure HProcCallInfo (Array) */
  1612. #define HInitProcCallInfoA(ProcHandle, Element, Value) \
  1613. HCkP(HAccessGlVar(ProcHandle, Element, GV_INIT_INFO, Value, (double)0, \
  1614. (char*)NULL, (Hkey)NULL, 0))
  1615. /* get the address of an array element of the global structure HProcCallInfo */
  1616. #define HGetAdrProcCallInfoA(ProcHandle, Element, Value) \
  1617. HCkP(HAccessGlVar(ProcHandle, Element, GV_GET_ADRESS, Value, (double)0, \
  1618. (char*)NULL, (Hkey)NULL, 0))
  1619. #endif /* HMACRO_H */