ua_types.c 36 KB

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  1. #include <stdio.h> // printf
  2. #include <stdlib.h> // alloc, free, vsnprintf
  3. #include <string.h>
  4. #include <stdarg.h> // va_start, va_end
  5. #include <time.h>
  6. #include <sys/time.h>
  7. #include "util/ua_util.h"
  8. #include "ua_types.h"
  9. #include "ua_types_encoding_binary.h"
  10. #include "ua_namespace_0.h"
  11. #include "inttypes.h"
  12. /************/
  13. /* Built-In */
  14. /************/
  15. /* Boolean */
  16. UA_Int32 UA_Boolean_init(UA_Boolean *p) {
  17. if(p == UA_NULL) return UA_ERROR;
  18. *p = UA_FALSE;
  19. return UA_SUCCESS;
  20. }
  21. UA_TYPE_DELETE_DEFAULT(UA_Boolean)
  22. UA_TYPE_DELETEMEMBERS_NOACTION(UA_Boolean)
  23. UA_TYPE_NEW_DEFAULT(UA_Boolean)
  24. UA_TYPE_COPY_DEFAULT(UA_Boolean)
  25. void UA_Boolean_print(const UA_Boolean *p, FILE *stream) {
  26. if(p == UA_NULL || stream == UA_NULL) return;
  27. if(*p) fprintf(stream, "UA_TRUE");
  28. else fprintf(stream, "UA_FALSE");
  29. }
  30. /* SByte */
  31. UA_TYPE_DEFAULT(UA_SByte)
  32. void UA_SByte_print(const UA_SByte *p, FILE *stream) {
  33. if(p == UA_NULL || stream == UA_NULL) return;
  34. UA_SByte x = *p;
  35. fprintf(stream, "%s%x\n", x<0?"-":"", x<0?-x:x);
  36. }
  37. /* Byte */
  38. UA_TYPE_DEFAULT(UA_Byte)
  39. void UA_Byte_print(const UA_Byte *p, FILE *stream) {
  40. if(p == UA_NULL || stream == UA_NULL) return;
  41. fprintf(stream, "%x", *p);
  42. }
  43. /* Int16 */
  44. UA_TYPE_DEFAULT(UA_Int16)
  45. void UA_Int16_print(const UA_Int16 *p, FILE *stream) {
  46. if(p == UA_NULL || stream == UA_NULL) return;
  47. fprintf(stream, "%d", *p);
  48. }
  49. /* UInt16 */
  50. UA_TYPE_DEFAULT(UA_UInt16)
  51. void UA_UInt16_print(const UA_UInt16 *p, FILE *stream) {
  52. if(p == UA_NULL || stream == UA_NULL) return;
  53. fprintf(stream, "%u", *p);
  54. }
  55. /* Int32 */
  56. UA_TYPE_DEFAULT(UA_Int32)
  57. void UA_Int32_print(const UA_Int32 *p, FILE *stream) {
  58. if(p == UA_NULL || stream == UA_NULL) return;
  59. fprintf(stream, "%d", *p);
  60. }
  61. /* UInt32 */
  62. UA_TYPE_DEFAULT(UA_UInt32)
  63. void UA_UInt32_print(const UA_UInt32 *p, FILE *stream) {
  64. if(p == UA_NULL || stream == UA_NULL) return;
  65. fprintf(stream, "%u", *p);
  66. }
  67. /* Int64 */
  68. UA_TYPE_DEFAULT(UA_Int64)
  69. void UA_Int64_print(const UA_Int64 *p, FILE *stream) {
  70. if(p == UA_NULL || stream == UA_NULL) return;
  71. fprintf(stream, "%" PRIi64, *p);
  72. }
  73. /* UInt64 */
  74. UA_TYPE_DEFAULT(UA_UInt64)
  75. void UA_UInt64_print(const UA_UInt64 *p, FILE *stream) {
  76. if(p == UA_NULL || stream == UA_NULL) return;
  77. fprintf(stream, "%" PRIu64, *p);
  78. }
  79. /* Float */
  80. UA_TYPE_DEFAULT(UA_Float)
  81. void UA_Float_print(const UA_Float *p, FILE *stream) {
  82. if(p == UA_NULL || stream == UA_NULL) return;
  83. fprintf(stream, "%f", *p);
  84. }
  85. /* Double */
  86. UA_TYPE_DEFAULT(UA_Double)
  87. void UA_Double_print(const UA_Double *p, FILE *stream) {
  88. if(p == UA_NULL || stream == UA_NULL) return;
  89. fprintf(stream, "%f", *p);
  90. }
  91. /* String */
  92. UA_TYPE_NEW_DEFAULT(UA_String)
  93. UA_Int32 UA_String_init(UA_String *p) {
  94. if(p == UA_NULL) return UA_ERROR;
  95. p->length = -1;
  96. p->data = UA_NULL;
  97. return UA_SUCCESS;
  98. }
  99. UA_TYPE_DELETE_DEFAULT(UA_String)
  100. UA_Int32 UA_String_deleteMembers(UA_String *p) {
  101. UA_Int32 retval = UA_SUCCESS;
  102. if(p!= UA_NULL && p->data != UA_NULL) {
  103. retval |= UA_free(p->data);
  104. p->data = UA_NULL;
  105. p->length = -1;
  106. }
  107. return retval;
  108. }
  109. UA_Int32 UA_String_copy(UA_String const *src, UA_String *dst) {
  110. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  111. UA_Int32 retval = UA_SUCCESS;
  112. dst->data = UA_NULL;
  113. dst->length = -1;
  114. if(src->length > 0) {
  115. retval |= UA_alloc((void **)&dst->data, src->length);
  116. if(retval == UA_SUCCESS) {
  117. retval |= UA_memcpy((void *)dst->data, src->data, src->length);
  118. dst->length = src->length;
  119. }
  120. }
  121. return retval;
  122. }
  123. void UA_String_print(const UA_String *p, FILE *stream) {
  124. if(p == UA_NULL || stream == UA_NULL) return;
  125. fprintf(stream, "(UA_String){%d,", p->length);
  126. if(p->data != UA_NULL)
  127. fprintf(stream, "\"%.*s\"}", p->length, p->data);
  128. else
  129. fprintf(stream, "UA_NULL}");
  130. }
  131. UA_Int32 UA_String_copycstring(char const *src, UA_String *dst) {
  132. UA_Int32 retval = UA_SUCCESS;
  133. dst->length = strlen(src);
  134. dst->data = UA_NULL;
  135. if(dst->length > 0) {
  136. retval |= UA_alloc((void **)&dst->data, dst->length);
  137. if(retval == UA_SUCCESS)
  138. retval |= UA_memcpy((void *)dst->data, src, dst->length);
  139. }
  140. return retval;
  141. }
  142. #define UA_STRING_COPYPRINTF_BUFSIZE 1024
  143. UA_Int32 UA_String_copyprintf(char const *fmt, UA_String *dst, ...) {
  144. UA_Int32 retval = UA_SUCCESS;
  145. char src[UA_STRING_COPYPRINTF_BUFSIZE];
  146. UA_Int32 len;
  147. va_list ap;
  148. va_start(ap, dst);
  149. #pragma GCC diagnostic push
  150. #pragma GCC diagnostic ignored "-Wformat-nonliteral"
  151. // vsnprintf should only take a literal and no variable to be secure
  152. len = vsnprintf(src, UA_STRING_COPYPRINTF_BUFSIZE, fmt, ap);
  153. #pragma GCC diagnostic pop
  154. va_end(ap);
  155. if(len < 0) { // FIXME: old glibc 2.0 would return -1 when truncated
  156. dst->length = 0;
  157. dst->data = UA_NULL;
  158. retval = UA_ERR_INVALID_VALUE;
  159. } else {
  160. // since glibc 2.1 vsnprintf returns len that would have resulted if buf were large enough
  161. dst->length = ( len > UA_STRING_COPYPRINTF_BUFSIZE ? UA_STRING_COPYPRINTF_BUFSIZE : len );
  162. retval |= UA_alloc((void **)&dst->data, dst->length);
  163. if(retval == UA_SUCCESS)
  164. retval |= UA_memcpy((void *)dst->data, src, dst->length);
  165. }
  166. return retval;
  167. }
  168. UA_Int32 UA_String_equal(const UA_String *string1, const UA_String *string2) {
  169. UA_Int32 retval;
  170. if(string1->length == 0 && string2->length == 0)
  171. retval = UA_EQUAL;
  172. else if(string1->length == -1 && string2->length == -1)
  173. retval = UA_EQUAL;
  174. else if(string1->length != string2->length)
  175. retval = UA_NOT_EQUAL;
  176. else {
  177. // casts are needed to overcome signed warnings
  178. UA_Int32 is = strncmp((char const *)string1->data, (char const *)string2->data, string1->length);
  179. retval = (is == 0) ? UA_EQUAL : UA_NOT_EQUAL;
  180. }
  181. return retval;
  182. }
  183. void UA_String_printf(char const *label, const UA_String *string) {
  184. printf("%s {Length=%d, Data=%.*s}\n", label, string->length,
  185. string->length, (char *)string->data);
  186. }
  187. void UA_String_printx(char const *label, const UA_String *string) {
  188. if(string == UA_NULL) {
  189. printf("%s {NULL}\n", label); return;
  190. }
  191. printf("%s {Length=%d, Data=", label, string->length);
  192. if(string->length > 0) {
  193. for(UA_Int32 i = 0;i < string->length;i++) {
  194. printf("%c%d", i == 0 ? '{' : ',', (string->data)[i]);
  195. // if (i > 0 && !(i%20)) { printf("\n\t"); }
  196. }
  197. } else
  198. printf("{");
  199. printf("}}\n");
  200. }
  201. void UA_String_printx_hex(char const *label, const UA_String *string) {
  202. printf("%s {Length=%d, Data=", label, string->length);
  203. if(string->length > 0) {
  204. for(UA_Int32 i = 0;i < string->length;i++)
  205. printf("%c%x", i == 0 ? '{' : ',', (string->data)[i]);
  206. } else
  207. printf("{");
  208. printf("}}\n");
  209. }
  210. /* DateTime */
  211. UA_TYPE_AS(UA_DateTime, UA_Int64)
  212. // Number of seconds from 1 Jan. 1601 00:00 to 1 Jan 1970 00:00 UTC
  213. #define FILETIME_UNIXTIME_BIAS_SEC 11644473600LL
  214. // Factors
  215. #define HUNDRED_NANOSEC_PER_USEC 10LL
  216. #define HUNDRED_NANOSEC_PER_SEC (HUNDRED_NANOSEC_PER_USEC * 1000000LL)
  217. // IEC 62541-6 §5.2.2.5 A DateTime value shall be encoded as a 64-bit signed integer
  218. // which represents the number of 100 nanosecond intervals since January 1, 1601 (UTC).
  219. UA_DateTime UA_DateTime_now() {
  220. UA_DateTime dateTime;
  221. struct timeval tv;
  222. gettimeofday(&tv, UA_NULL);
  223. dateTime = (tv.tv_sec + FILETIME_UNIXTIME_BIAS_SEC)
  224. * HUNDRED_NANOSEC_PER_SEC + tv.tv_usec * HUNDRED_NANOSEC_PER_USEC;
  225. return dateTime;
  226. }
  227. UA_DateTimeStruct UA_DateTime_toStruct(UA_DateTime time) {
  228. UA_DateTimeStruct dateTimeStruct;
  229. //calcualting the the milli-, micro- and nanoseconds
  230. UA_DateTime timeTemp;
  231. timeTemp = (time-((time/10)*10))*100; //getting the last digit -> *100 for the 100 nanaseconds resolution
  232. dateTimeStruct.nanoSec = timeTemp; //123 456 7 -> 700 nanosec;
  233. timeTemp = (time-((time/10000)*10000))/10;
  234. dateTimeStruct.microSec = timeTemp; //123 456 7 -> 456 microsec
  235. timeTemp = (time-((time/10000000)*10000000))/10000;
  236. dateTimeStruct.milliSec = timeTemp; //123 456 7 -> 123 millisec
  237. //calculating the unix time with #include <time.h>
  238. time_t timeInSec = time/10000000; //converting the nanoseconds time in unixtime
  239. struct tm ts;
  240. ts = *gmtime(&timeInSec);
  241. //strftime(buf, sizeof(buf), "%a %Y-%m-%d %H:%M:%S %Z", &ts);
  242. //printf("%s\n", buf);
  243. dateTimeStruct.sec = ts.tm_sec;
  244. dateTimeStruct.min = ts.tm_min;
  245. dateTimeStruct.hour = ts.tm_hour;
  246. dateTimeStruct.day = ts.tm_mday;
  247. dateTimeStruct.mounth = ts.tm_mon+1;
  248. dateTimeStruct.year = ts.tm_year + 1900;
  249. return dateTimeStruct;
  250. }
  251. UA_Int32 UA_DateTime_toString(UA_DateTime time, UA_String *timeString) {
  252. char *charBuf = (char *)(*timeString).data;
  253. UA_DateTimeStruct tSt = UA_DateTime_toStruct(time);
  254. sprintf(charBuf, "%2d/%2d/%4d %2d:%2d:%2d.%3d.%3d.%3d", tSt.mounth, tSt.day, tSt.year,
  255. tSt.hour, tSt.min, tSt.sec, tSt.milliSec, tSt.microSec, tSt.nanoSec);
  256. return UA_SUCCESS;
  257. }
  258. /* Guid */
  259. UA_TYPE_DELETE_DEFAULT(UA_Guid)
  260. UA_Int32 UA_Guid_deleteMembers(UA_Guid *p) {
  261. return UA_SUCCESS;
  262. }
  263. UA_Int32 UA_Guid_equal(const UA_Guid *g1, const UA_Guid *g2) {
  264. return memcmp(g1, g2, sizeof(UA_Guid));
  265. }
  266. UA_Int32 UA_Guid_init(UA_Guid *p) {
  267. if(p == UA_NULL) return UA_ERROR;
  268. p->data1 = 0;
  269. p->data2 = 0;
  270. p->data3 = 0;
  271. memset(p->data4, 8, sizeof(UA_Byte));
  272. return UA_SUCCESS;
  273. }
  274. UA_TYPE_NEW_DEFAULT(UA_Guid)
  275. UA_Int32 UA_Guid_copy(UA_Guid const *src, UA_Guid *dst) {
  276. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  277. UA_Int32 retval = UA_SUCCESS;
  278. retval |= UA_memcpy((void *)dst, (void *)src, sizeof(UA_Guid));
  279. return retval;
  280. }
  281. void UA_Guid_print(const UA_Guid *p, FILE *stream) {
  282. if(p == UA_NULL || stream == UA_NULL) return;
  283. fprintf(stream, "(UA_Guid){%u, %u %u {%x,%x,%x,%x,%x,%x,%x,%x}}", p->data1, p->data2, p->data3, p->data4[0],
  284. p->data4[1], p->data4[2], p->data4[3], p->data4[4], p->data4[5], p->data4[6], p->data4[7]);
  285. }
  286. /* ByteString */
  287. UA_TYPE_AS(UA_ByteString, UA_String)
  288. UA_Int32 UA_ByteString_equal(const UA_ByteString *string1, const UA_ByteString *string2) {
  289. return UA_String_equal((const UA_String *)string1, (const UA_String *)string2);
  290. }
  291. void UA_ByteString_printf(char *label, const UA_ByteString *string) {
  292. UA_String_printf(label, (UA_String *)string);
  293. }
  294. void UA_ByteString_printx(char *label, const UA_ByteString *string) {
  295. UA_String_printx(label, (UA_String *)string);
  296. }
  297. void UA_ByteString_printx_hex(char *label, const UA_ByteString *string) {
  298. UA_String_printx_hex(label, (UA_String *)string);
  299. }
  300. UA_Byte UA_Byte_securityPoliceNoneData[] = "http://opcfoundation.org/UA/SecurityPolicy#None";
  301. // sizeof()-1 : discard the implicit null-terminator of the c-char-string
  302. UA_ByteString UA_ByteString_securityPoliceNone = { sizeof(UA_Byte_securityPoliceNoneData)-1, UA_Byte_securityPoliceNoneData };
  303. UA_Int32 UA_ByteString_newMembers(UA_ByteString *p, UA_Int32 length) {
  304. UA_Int32 retval = UA_SUCCESS;
  305. if((retval |= UA_alloc((void **)&p->data, length)) == UA_SUCCESS)
  306. p->length = length;
  307. else {
  308. p->length = -1;
  309. p->data = UA_NULL;
  310. }
  311. return retval;
  312. }
  313. /* XmlElement */
  314. UA_TYPE_AS(UA_XmlElement, UA_ByteString)
  315. /* NodeId */
  316. UA_Int32 UA_NodeId_init(UA_NodeId *p) {
  317. if(p == UA_NULL) return UA_ERROR;
  318. p->encodingByte = UA_NODEIDTYPE_TWOBYTE;
  319. p->namespace = 0;
  320. memset(&p->identifier, 0, sizeof(p->identifier));
  321. return UA_SUCCESS;
  322. }
  323. UA_TYPE_NEW_DEFAULT(UA_NodeId)
  324. UA_Int32 UA_NodeId_copy(UA_NodeId const *src, UA_NodeId *dst) {
  325. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  326. UA_Int32 retval = UA_SUCCESS;
  327. retval |= UA_Byte_copy(&src->encodingByte, &dst->encodingByte);
  328. switch(src->encodingByte & UA_NODEIDTYPE_MASK) {
  329. case UA_NODEIDTYPE_TWOBYTE:
  330. case UA_NODEIDTYPE_FOURBYTE:
  331. case UA_NODEIDTYPE_NUMERIC:
  332. // nothing to do
  333. retval |= UA_UInt16_copy(&src->namespace, &dst->namespace);
  334. retval |= UA_UInt32_copy(&src->identifier.numeric, &dst->identifier.numeric);
  335. break;
  336. case UA_NODEIDTYPE_STRING: // Table 6, second entry
  337. retval |= UA_String_copy(&src->identifier.string, &dst->identifier.string);
  338. break;
  339. case UA_NODEIDTYPE_GUID: // Table 6, third entry
  340. retval |= UA_Guid_copy(&src->identifier.guid, &dst->identifier.guid);
  341. break;
  342. case UA_NODEIDTYPE_BYTESTRING: // Table 6, "OPAQUE"
  343. retval |= UA_ByteString_copy(&src->identifier.byteString, &dst->identifier.byteString);
  344. break;
  345. }
  346. return retval;
  347. }
  348. UA_Boolean UA_NodeId_isBasicType(UA_NodeId const *id) {
  349. return (id->namespace == 0 && id->identifier.numeric <= UA_DIAGNOSTICINFO);
  350. }
  351. UA_TYPE_DELETE_DEFAULT(UA_NodeId)
  352. UA_Int32 UA_NodeId_deleteMembers(UA_NodeId *p) {
  353. UA_Int32 retval = UA_SUCCESS;
  354. if(p == UA_NULL) return retval;
  355. switch(p->encodingByte & UA_NODEIDTYPE_MASK) {
  356. case UA_NODEIDTYPE_TWOBYTE:
  357. case UA_NODEIDTYPE_FOURBYTE:
  358. case UA_NODEIDTYPE_NUMERIC:
  359. // nothing to do
  360. break;
  361. case UA_NODEIDTYPE_STRING: // Table 6, second entry
  362. retval |= UA_String_deleteMembers(&p->identifier.string);
  363. break;
  364. case UA_NODEIDTYPE_GUID: // Table 6, third entry
  365. retval |= UA_Guid_deleteMembers(&p->identifier.guid);
  366. break;
  367. case UA_NODEIDTYPE_BYTESTRING: // Table 6, "OPAQUE"
  368. retval |= UA_ByteString_deleteMembers(&p->identifier.byteString);
  369. break;
  370. }
  371. return retval;
  372. }
  373. void UA_NodeId_print(const UA_NodeId *p, FILE *stream) {
  374. if(p == UA_NULL || stream == UA_NULL) return;
  375. fprintf(stream, "(UA_NodeId){");
  376. switch(p->encodingByte & UA_NODEIDTYPE_MASK) {
  377. case UA_NODEIDTYPE_TWOBYTE:
  378. fprintf(stream, "UA_NODEIDTYPE_TWOBYTE");
  379. break;
  380. case UA_NODEIDTYPE_FOURBYTE:
  381. fprintf(stream, "UA_NODEIDTYPE_FOURBYTE");
  382. break;
  383. case UA_NODEIDTYPE_NUMERIC:
  384. fprintf(stream, "UA_NODEIDTYPE_NUMERIC");
  385. break;
  386. case UA_NODEIDTYPE_STRING:
  387. fprintf(stream, "UA_NODEIDTYPE_STRING");
  388. break;
  389. case UA_NODEIDTYPE_BYTESTRING:
  390. fprintf(stream, "UA_NODEIDTYPE_BYTESTRING");
  391. break;
  392. case UA_NODEIDTYPE_GUID:
  393. fprintf(stream, "UA_NODEIDTYPE_GUID");
  394. break;
  395. default:
  396. fprintf(stream, "ERROR");
  397. break;
  398. }
  399. fprintf(stream,",%u,", p->namespace);
  400. switch(p->encodingByte & UA_NODEIDTYPE_MASK) {
  401. case UA_NODEIDTYPE_TWOBYTE:
  402. case UA_NODEIDTYPE_FOURBYTE:
  403. case UA_NODEIDTYPE_NUMERIC:
  404. fprintf(stream, ".identifier.numeric=%u", p->identifier.numeric);
  405. break;
  406. case UA_NODEIDTYPE_STRING:
  407. fprintf(stream, ".identifier.string=%.*s", p->identifier.string.length, p->identifier.string.data);
  408. break;
  409. case UA_NODEIDTYPE_BYTESTRING:
  410. fprintf(stream, ".identifier.byteString=%.*s", p->identifier.byteString.length, p->identifier.byteString.data);
  411. break;
  412. case UA_NODEIDTYPE_GUID:
  413. fprintf(stream, ".identifer.guid=");
  414. UA_Guid_print(&p->identifier.guid, stream);
  415. break;
  416. default:
  417. fprintf(stream, "ERROR");
  418. break;
  419. }
  420. fprintf(stream, "}");
  421. }
  422. void UA_NodeId_printf(char *label, const UA_NodeId *node) {
  423. UA_Int32 l;
  424. printf("%s {encodingByte=%d, namespace=%d,", label, (int)( node->encodingByte), (int)(node->namespace));
  425. switch(node->encodingByte & UA_NODEIDTYPE_MASK) {
  426. case UA_NODEIDTYPE_TWOBYTE:
  427. case UA_NODEIDTYPE_FOURBYTE:
  428. case UA_NODEIDTYPE_NUMERIC:
  429. printf("identifier=%d\n", node->identifier.numeric);
  430. break;
  431. case UA_NODEIDTYPE_STRING:
  432. l = ( node->identifier.string.length < 0 ) ? 0 : node->identifier.string.length;
  433. printf("identifier={length=%d, data=%.*s}",
  434. node->identifier.string.length, l,
  435. (char *)(node->identifier.string.data));
  436. break;
  437. case UA_NODEIDTYPE_BYTESTRING:
  438. l = ( node->identifier.byteString.length < 0 ) ? 0 : node->identifier.byteString.length;
  439. printf("identifier={Length=%d, data=%.*s}",
  440. node->identifier.byteString.length, l,
  441. (char *)(node->identifier.byteString.data));
  442. break;
  443. case UA_NODEIDTYPE_GUID:
  444. printf(
  445. "guid={data1=%d, data2=%d, data3=%d, data4={length=%d, data=%.*s}}",
  446. node->identifier.guid.data1, node->identifier.guid.data2,
  447. node->identifier.guid.data3, 8,
  448. 8,
  449. (char *)(node->identifier.guid.data4));
  450. break;
  451. default:
  452. printf("ups! shit happens");
  453. break;
  454. }
  455. printf("}\n");
  456. }
  457. UA_Int32 UA_NodeId_equal(const UA_NodeId *n1, const UA_NodeId *n2) {
  458. if(n1 == UA_NULL || n2 == UA_NULL || n1->encodingByte != n2->encodingByte || n1->namespace != n2->namespace)
  459. return UA_NOT_EQUAL;
  460. switch(n1->encodingByte & UA_NODEIDTYPE_MASK) {
  461. case UA_NODEIDTYPE_TWOBYTE:
  462. case UA_NODEIDTYPE_FOURBYTE:
  463. case UA_NODEIDTYPE_NUMERIC:
  464. if(n1->identifier.numeric == n2->identifier.numeric)
  465. return UA_EQUAL;
  466. else
  467. return UA_NOT_EQUAL;
  468. case UA_NODEIDTYPE_STRING:
  469. return UA_String_equal(&n1->identifier.string, &n2->identifier.string);
  470. case UA_NODEIDTYPE_GUID:
  471. return UA_Guid_equal(&n1->identifier.guid, &n2->identifier.guid);
  472. case UA_NODEIDTYPE_BYTESTRING:
  473. return UA_ByteString_equal(&n1->identifier.byteString, &n2->identifier.byteString);
  474. }
  475. return UA_NOT_EQUAL;
  476. }
  477. UA_Boolean UA_NodeId_isNull(const UA_NodeId *p) {
  478. switch(p->encodingByte & UA_NODEIDTYPE_MASK) {
  479. case UA_NODEIDTYPE_TWOBYTE:
  480. if(p->identifier.numeric != 0) return UA_FALSE;
  481. break;
  482. case UA_NODEIDTYPE_FOURBYTE:
  483. case UA_NODEIDTYPE_NUMERIC:
  484. if(p->namespace != 0 || p->identifier.numeric != 0) return UA_FALSE;
  485. break;
  486. case UA_NODEIDTYPE_STRING:
  487. if(p->namespace != 0 || p->identifier.string.length != 0) return UA_FALSE;
  488. break;
  489. case UA_NODEIDTYPE_GUID:
  490. if(p->namespace != 0 ||
  491. memcmp(&p->identifier.guid, (char[sizeof(UA_Guid)]) { 0 }, sizeof(UA_Guid)) != 0) return UA_FALSE;
  492. break;
  493. case UA_NODEIDTYPE_BYTESTRING:
  494. if(p->namespace != 0 || p->identifier.byteString.length != 0) return UA_FALSE;
  495. break;
  496. default:
  497. return UA_FALSE;
  498. }
  499. return UA_TRUE;
  500. }
  501. /* ExpandedNodeId */
  502. UA_TYPE_DELETE_DEFAULT(UA_ExpandedNodeId)
  503. UA_Int32 UA_ExpandedNodeId_deleteMembers(UA_ExpandedNodeId *p) {
  504. UA_Int32 retval = UA_SUCCESS;
  505. if(p == UA_NULL) return retval;
  506. retval |= UA_NodeId_deleteMembers(&p->nodeId);
  507. retval |= UA_String_deleteMembers(&p->namespaceUri);
  508. return retval;
  509. }
  510. UA_Int32 UA_ExpandedNodeId_init(UA_ExpandedNodeId *p) {
  511. if(p == UA_NULL) return UA_ERROR;
  512. UA_NodeId_init(&p->nodeId);
  513. UA_String_init(&p->namespaceUri);
  514. p->serverIndex = 0;
  515. return UA_SUCCESS;
  516. }
  517. UA_TYPE_NEW_DEFAULT(UA_ExpandedNodeId)
  518. UA_Int32 UA_ExpandedNodeId_copy(UA_ExpandedNodeId const *src, UA_ExpandedNodeId *dst) {
  519. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  520. UA_Int32 retval = UA_SUCCESS;
  521. UA_String_copy(&src->namespaceUri, &dst->namespaceUri);
  522. UA_NodeId_copy(&src->nodeId, &dst->nodeId);
  523. UA_UInt32_copy(&src->serverIndex, &dst->serverIndex);
  524. return retval;
  525. }
  526. void UA_ExpandedNodeId_print(const UA_ExpandedNodeId *p, FILE *stream) {
  527. if(p == UA_NULL || stream == UA_NULL) return;
  528. fprintf(stream, "(UA_ExpandedNodeId){");
  529. UA_NodeId_print(&p->nodeId, stream);
  530. fprintf(stream, ",");
  531. UA_String_print(&p->namespaceUri, stream);
  532. fprintf(stream, ",");
  533. UA_UInt32_print(&p->serverIndex, stream);
  534. fprintf(stream, "}");
  535. }
  536. UA_Boolean UA_ExpandedNodeId_isNull(const UA_ExpandedNodeId *p) {
  537. return UA_NodeId_isNull(&p->nodeId);
  538. }
  539. /* StatusCode */
  540. UA_TYPE_AS(UA_StatusCode, UA_UInt32)
  541. /* QualifiedName */
  542. UA_TYPE_DELETE_DEFAULT(UA_QualifiedName)
  543. UA_Int32 UA_QualifiedName_deleteMembers(UA_QualifiedName *p) {
  544. UA_Int32 retval = UA_SUCCESS;
  545. if(p == UA_NULL) return retval;
  546. retval |= UA_String_deleteMembers(&p->name);
  547. return retval;
  548. }
  549. UA_Int32 UA_QualifiedName_init(UA_QualifiedName *p) {
  550. if(p == UA_NULL) return UA_ERROR;
  551. UA_String_init(&p->name);
  552. p->namespaceIndex = 0;
  553. return UA_SUCCESS;
  554. }
  555. UA_TYPE_NEW_DEFAULT(UA_QualifiedName)
  556. UA_Int32 UA_QualifiedName_copy(UA_QualifiedName const *src, UA_QualifiedName *dst) {
  557. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  558. UA_Int32 retval = UA_SUCCESS;
  559. retval |= UA_String_copy(&src->name, &dst->name);
  560. retval |= UA_UInt16_copy(&src->namespaceIndex, &dst->namespaceIndex);
  561. return retval;
  562. }
  563. void UA_QualifiedName_print(const UA_QualifiedName *p, FILE *stream) {
  564. if(p == UA_NULL || stream == UA_NULL) return;
  565. fprintf(stream, "(UA_QualifiedName){");
  566. UA_UInt16_print(&p->namespaceIndex, stream);
  567. fprintf(stream, ",");
  568. UA_String_print(&p->name, stream);
  569. fprintf(stream, "}");
  570. }
  571. void UA_QualifiedName_printf(char const *label, const UA_QualifiedName *qn) {
  572. printf("%s {NamespaceIndex=%u, Length=%d, Data=%.*s}\n", label, qn->namespaceIndex,
  573. qn->name.length, qn->name.length, (char *)qn->name.data);
  574. }
  575. /* LocalizedText */
  576. UA_TYPE_DELETE_DEFAULT(UA_LocalizedText)
  577. UA_Int32 UA_LocalizedText_deleteMembers(UA_LocalizedText *p) {
  578. if(p == UA_NULL) return UA_SUCCESS;
  579. UA_Int32 retval = UA_SUCCESS;
  580. retval |= UA_String_deleteMembers(&p->locale);
  581. retval |= UA_String_deleteMembers(&p->text);
  582. return retval;
  583. }
  584. UA_Int32 UA_LocalizedText_init(UA_LocalizedText *p) {
  585. if(p == UA_NULL) return UA_ERROR;
  586. UA_String_init(&p->locale);
  587. UA_String_init(&p->text);
  588. return UA_SUCCESS;
  589. }
  590. UA_TYPE_NEW_DEFAULT(UA_LocalizedText)
  591. UA_Int32 UA_LocalizedText_copycstring(char const *src, UA_LocalizedText *dst) {
  592. if(dst == UA_NULL) return UA_ERROR;
  593. UA_LocalizedText_init(dst);
  594. UA_Int32 retval = UA_SUCCESS;
  595. retval |= UA_String_copycstring("EN", &dst->locale); // TODO: Are language codes upper case?
  596. if(retval != UA_SUCCESS) return retval;
  597. retval |= UA_String_copycstring(src, &dst->text);
  598. return retval;
  599. }
  600. UA_Int32 UA_LocalizedText_copy(UA_LocalizedText const *src, UA_LocalizedText *dst) {
  601. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  602. UA_Int32 retval = UA_SUCCESS;
  603. retval |= UA_LocalizedText_init(dst);
  604. retval |= UA_String_copy(&src->locale, &dst->locale);
  605. if(retval != UA_SUCCESS) return retval;
  606. retval |= UA_String_copy(&src->text, &dst->text);
  607. return retval;
  608. }
  609. void UA_LocalizedText_print(const UA_LocalizedText *p, FILE *stream) {
  610. if(p == UA_NULL || stream == UA_NULL) return;
  611. fprintf(stream, "(UA_LocalizedText){");
  612. UA_String_print(&p->locale, stream);
  613. fprintf(stream, ",");
  614. UA_String_print(&p->text, stream);
  615. fprintf(stream, "}");
  616. }
  617. /* ExtensionObject */
  618. UA_TYPE_DELETE_DEFAULT(UA_ExtensionObject)
  619. UA_Int32 UA_ExtensionObject_deleteMembers(UA_ExtensionObject *p) {
  620. UA_Int32 retval = UA_SUCCESS;
  621. if(p == UA_NULL) return retval;
  622. retval |= UA_NodeId_deleteMembers(&p->typeId);
  623. retval |= UA_ByteString_deleteMembers(&p->body);
  624. return retval;
  625. }
  626. UA_Int32 UA_ExtensionObject_init(UA_ExtensionObject *p) {
  627. if(p == UA_NULL) return UA_ERROR;
  628. UA_ByteString_init(&p->body);
  629. p->encoding = 0;
  630. UA_NodeId_init(&p->typeId);
  631. return UA_SUCCESS;
  632. }
  633. UA_TYPE_NEW_DEFAULT(UA_ExtensionObject)
  634. UA_Int32 UA_ExtensionObject_copy(UA_ExtensionObject const *src, UA_ExtensionObject *dst) {
  635. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  636. UA_Int32 retval = UA_SUCCESS;
  637. retval |= UA_Byte_copy(&src->encoding, &dst->encoding);
  638. retval |= UA_ByteString_copy(&src->body, &dst->body);
  639. retval |= UA_NodeId_copy(&src->typeId, &dst->typeId);
  640. return retval;
  641. }
  642. void UA_ExtensionObject_print(const UA_ExtensionObject *p, FILE *stream) {
  643. if(p == UA_NULL || stream == UA_NULL) return;
  644. fprintf(stream, "(UA_ExtensionObject){");
  645. UA_NodeId_print(&p->typeId, stream);
  646. if(p->encoding == UA_EXTENSIONOBJECT_ENCODINGMASK_BODYISBYTESTRING){
  647. fprintf(stream, ",UA_EXTENSIONOBJECT_ENCODINGMASK_BODYISBYTESTRING,");
  648. } else if(p->encoding == UA_EXTENSIONOBJECT_ENCODINGMASK_BODYISXML) {
  649. fprintf(stream, ",UA_EXTENSIONOBJECT_ENCODINGMASK_BODYISXML,");
  650. } else {
  651. fprintf(stream, ",UA_EXTENSIONOBJECT_ENCODINGMASK_NOBODYISENCODED,");
  652. }
  653. UA_ByteString_print(&p->body, stream);
  654. fprintf(stream, "}");
  655. }
  656. /* DataValue */
  657. UA_TYPE_DELETE_DEFAULT(UA_DataValue)
  658. UA_Int32 UA_DataValue_deleteMembers(UA_DataValue *p) {
  659. UA_Int32 retval = UA_SUCCESS;
  660. if(p == UA_NULL) return retval;
  661. UA_Variant_deleteMembers(&p->value);
  662. return retval;
  663. }
  664. UA_Int32 UA_DataValue_init(UA_DataValue *p) {
  665. if(p == UA_NULL) return UA_ERROR;
  666. p->encodingMask = 0;
  667. p->serverPicoseconds = 0;
  668. UA_DateTime_init(&p->serverTimestamp);
  669. p->sourcePicoseconds = 0;
  670. UA_DateTime_init(&p->sourceTimestamp);
  671. UA_StatusCode_init(&p->status);
  672. UA_Variant_init(&p->value);
  673. return UA_SUCCESS;
  674. }
  675. UA_TYPE_NEW_DEFAULT(UA_DataValue)
  676. UA_Int32 UA_DataValue_copy(UA_DataValue const *src, UA_DataValue *dst) {
  677. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  678. UA_Int32 retval = UA_SUCCESS;
  679. UA_Byte_copy(&src->encodingMask, &dst->encodingMask);
  680. UA_Int16_copy(&src->serverPicoseconds, &dst->serverPicoseconds);
  681. UA_DateTime_copy(&src->serverTimestamp, &dst->serverTimestamp);
  682. UA_Int16_copy(&src->sourcePicoseconds, &dst->sourcePicoseconds);
  683. UA_DateTime_copy(&src->sourceTimestamp, &dst->sourceTimestamp);
  684. UA_StatusCode_copy(&src->status, &dst->status);
  685. UA_Variant_copy(&src->value, &dst->value);
  686. return retval;
  687. }
  688. void UA_DataValue_print(const UA_DataValue *p, FILE *stream) {
  689. if(p == UA_NULL || stream == UA_NULL) return;
  690. fprintf(stream, "(UA_DataValue){");
  691. UA_Byte_print(&p->encodingMask, stream);
  692. fprintf(stream, ",");
  693. UA_Variant_print(&p->value, stream);
  694. fprintf(stream, ",");
  695. UA_StatusCode_print(&p->status, stream);
  696. fprintf(stream, ",");
  697. UA_DateTime_print(&p->sourceTimestamp, stream);
  698. fprintf(stream, ",");
  699. UA_Int16_print(&p->sourcePicoseconds, stream);
  700. fprintf(stream, ",");
  701. UA_DateTime_print(&p->serverTimestamp, stream);
  702. fprintf(stream, ",");
  703. UA_Int16_print(&p->serverPicoseconds, stream);
  704. fprintf(stream, "}");
  705. }
  706. /* Variant */
  707. UA_TYPE_DELETE_DEFAULT(UA_Variant)
  708. UA_Int32 UA_Variant_deleteMembers(UA_Variant *p) {
  709. UA_Int32 retval = UA_SUCCESS;
  710. if(p == UA_NULL) return retval;
  711. UA_Boolean hasDimensions = p->arrayDimensions != UA_NULL;
  712. if(p->data != UA_NULL) {
  713. retval |= UA_Array_delete(p->data, p->arrayLength, p->vt);
  714. p->data = UA_NULL;
  715. }
  716. if(hasDimensions) {
  717. UA_free(p->arrayDimensions);
  718. p->arrayDimensions = UA_NULL;
  719. }
  720. return retval;
  721. }
  722. UA_Int32 UA_Variant_init(UA_Variant *p) {
  723. if(p == UA_NULL) return UA_ERROR;
  724. p->arrayLength = -1; // no element, p->data == UA_NULL
  725. p->data = UA_NULL;
  726. p->arrayDimensions = UA_NULL;
  727. p->arrayDimensionsLength = -1;
  728. p->vt = &UA_.types[UA_INVALIDTYPE];
  729. return UA_SUCCESS;
  730. }
  731. UA_TYPE_NEW_DEFAULT(UA_Variant)
  732. UA_Int32 UA_Variant_copy(UA_Variant const *src, UA_Variant *dst) {
  733. if(src == UA_NULL || dst == UA_NULL)
  734. return UA_ERROR;
  735. UA_Int32 retval = UA_SUCCESS;
  736. dst->vt = src->vt;
  737. retval |= UA_Int32_copy(&src->arrayLength, &dst->arrayLength);
  738. retval |= UA_Int32_copy(&src->arrayDimensionsLength, &dst->arrayDimensionsLength);
  739. retval |= UA_Array_copy(src->data, src->arrayLength, src->vt, &dst->data);
  740. UA_Boolean hasDimensions = src->arrayDimensions != UA_NULL;
  741. if(hasDimensions)
  742. retval |= UA_Array_copy(src->arrayDimensions, src->arrayDimensionsLength,
  743. &UA_.types[UA_INT32], (void **)&dst->arrayDimensions);
  744. return retval;
  745. }
  746. void UA_Variant_print(const UA_Variant *p, FILE *stream) {
  747. if(p == UA_NULL || stream == UA_NULL) return;
  748. UA_UInt32 ns0id = UA_ns0ToVTableIndex(&p->vt->typeId);
  749. fprintf(stream, "(UA_Variant){/*%s*/", p->vt->name);
  750. if(p->vt == &UA_.types[ns0id])
  751. fprintf(stream, "UA_.types[%d]", ns0id);
  752. else if(p->vt == &UA_borrowed_.types[ns0id])
  753. fprintf(stream, "UA_borrowed_.types[%d]", ns0id);
  754. else
  755. fprintf(stream, "ERROR (not a builtin type)");
  756. UA_Int32_print(&p->arrayLength, stream);
  757. fprintf(stream, ",");
  758. UA_Array_print(p->data, p->arrayLength, p->vt, stream);
  759. fprintf(stream, ",");
  760. UA_Int32_print(&p->arrayDimensionsLength, stream);
  761. fprintf(stream, ",");
  762. UA_Array_print(p->arrayDimensions, p->arrayDimensionsLength, &UA_.types[UA_INT32], stream);
  763. fprintf(stream, "}");
  764. }
  765. UA_Int32 UA_Variant_copySetValue(UA_Variant *v, UA_VTable_Entry *vt, const void *value) {
  766. if(v == UA_NULL || vt == UA_NULL || value == UA_NULL)
  767. return UA_ERROR;
  768. UA_Variant_init(v);
  769. v->vt = vt;
  770. v->arrayLength = 1; // no array but a single entry
  771. UA_Int32 retval = UA_SUCCESS;
  772. retval |= vt->new(&v->data);
  773. if(retval == UA_SUCCESS)
  774. retval |= vt->copy(value, v->data);
  775. return retval;
  776. }
  777. UA_Int32 UA_Variant_copySetArray(UA_Variant *v, UA_VTable_Entry *vt, UA_Int32 arrayLength, const void *array) {
  778. if(v == UA_NULL || vt == UA_NULL || array == UA_NULL)
  779. return UA_ERROR;
  780. UA_Variant_init(v);
  781. v->vt = vt;
  782. v->arrayLength = arrayLength;
  783. return UA_Array_copy(array, arrayLength, vt, &v->data);
  784. }
  785. UA_Int32 UA_Variant_borrowSetValue(UA_Variant *v, UA_VTable_Entry *vt, const void *value) {
  786. if(v == UA_NULL || vt == UA_NULL || value == UA_NULL)
  787. return UA_ERROR;
  788. UA_Variant_init(v);
  789. v->vt = &UA_borrowed_.types[UA_ns0ToVTableIndex(&vt->typeId)];
  790. v->arrayLength = 1; // no array but a single entry
  791. v->data = (void *)value;
  792. return UA_SUCCESS;
  793. }
  794. UA_Int32 UA_Variant_borrowSetArray(UA_Variant *v, UA_VTable_Entry *vt, UA_Int32 arrayLength, const void *array) {
  795. if(v == UA_NULL || vt == UA_NULL || array == UA_NULL)
  796. return UA_ERROR;
  797. UA_Variant_init(v);
  798. v->vt = &UA_borrowed_.types[UA_ns0ToVTableIndex(&vt->typeId)];
  799. v->arrayLength = arrayLength;
  800. v->data = (void *)array;
  801. return UA_SUCCESS;
  802. }
  803. /* DiagnosticInfo */
  804. UA_TYPE_DELETE_DEFAULT(UA_DiagnosticInfo)
  805. UA_Int32 UA_DiagnosticInfo_deleteMembers(UA_DiagnosticInfo *p) {
  806. UA_Int32 retval = UA_SUCCESS;
  807. if(p == UA_NULL) return retval;
  808. if((p->encodingMask & UA_DIAGNOSTICINFO_ENCODINGMASK_INNERDIAGNOSTICINFO) && p->innerDiagnosticInfo != UA_NULL) {
  809. retval |= UA_DiagnosticInfo_delete(p->innerDiagnosticInfo);
  810. retval |= UA_String_deleteMembers(&p->additionalInfo);
  811. p->innerDiagnosticInfo = UA_NULL;
  812. }
  813. return retval;
  814. }
  815. UA_Int32 UA_DiagnosticInfo_init(UA_DiagnosticInfo *p) {
  816. if(p == UA_NULL) return UA_ERROR;
  817. UA_String_init(&p->additionalInfo);
  818. p->encodingMask = 0;
  819. p->innerDiagnosticInfo = UA_NULL;
  820. UA_StatusCode_init(&p->innerStatusCode);
  821. p->locale = 0;
  822. p->localizedText = 0;
  823. p->namespaceUri = 0;
  824. p->symbolicId = 0;
  825. return UA_SUCCESS;
  826. }
  827. UA_TYPE_NEW_DEFAULT(UA_DiagnosticInfo)
  828. UA_Int32 UA_DiagnosticInfo_copy(UA_DiagnosticInfo const *src, UA_DiagnosticInfo *dst) {
  829. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  830. UA_Int32 retval = UA_SUCCESS;
  831. retval |= UA_String_copy(&src->additionalInfo, &dst->additionalInfo);
  832. retval |= UA_Byte_copy(&src->encodingMask, &dst->encodingMask);
  833. retval |= UA_StatusCode_copy(&src->innerStatusCode, &dst->innerStatusCode);
  834. if(src->innerDiagnosticInfo) {
  835. retval |= UA_alloc((void **)&dst->innerDiagnosticInfo, sizeof(UA_DiagnosticInfo));
  836. if(retval == UA_SUCCESS)
  837. retval |= UA_DiagnosticInfo_copy(src->innerDiagnosticInfo, dst->innerDiagnosticInfo);
  838. } else
  839. dst->innerDiagnosticInfo = UA_NULL;
  840. retval |= UA_Int32_copy(&src->locale, &dst->locale);
  841. retval |= UA_Int32_copy(&src->localizedText, &dst->localizedText);
  842. retval |= UA_Int32_copy(&src->namespaceUri, &dst->namespaceUri);
  843. retval |= UA_Int32_copy(&src->symbolicId, &dst->symbolicId);
  844. return retval;
  845. }
  846. void UA_DiagnosticInfo_print(const UA_DiagnosticInfo *p, FILE *stream) {
  847. if(p == UA_NULL || stream == UA_NULL) return;
  848. fprintf(stream, "(UA_DiagnosticInfo){");
  849. UA_Byte_print(&p->encodingMask, stream);
  850. fprintf(stream, ",");
  851. UA_Int32_print(&p->symbolicId, stream);
  852. fprintf(stream, ",");
  853. UA_Int32_print(&p->namespaceUri, stream);
  854. fprintf(stream, ",");
  855. UA_Int32_print(&p->localizedText, stream);
  856. fprintf(stream, ",");
  857. UA_Int32_print(&p->locale, stream);
  858. fprintf(stream, ",");
  859. UA_String_print(&p->additionalInfo, stream);
  860. fprintf(stream, ",");
  861. UA_StatusCode_print(&p->innerStatusCode, stream);
  862. fprintf(stream, ",");
  863. if(p->innerDiagnosticInfo != UA_NULL) {
  864. fprintf(stream, "&");
  865. UA_DiagnosticInfo_print(p->innerDiagnosticInfo, stream);
  866. } else {
  867. fprintf(stream, "UA_NULL");
  868. }
  869. fprintf(stream, "}");
  870. }
  871. /* InvalidType */
  872. UA_Int32 UA_InvalidType_free(UA_InvalidType *p) {
  873. return UA_ERR_INVALID_VALUE;
  874. }
  875. UA_Int32 UA_InvalidType_delete(UA_InvalidType *p) {
  876. return UA_ERR_INVALID_VALUE;
  877. }
  878. UA_Int32 UA_InvalidType_deleteMembers(UA_InvalidType *p) {
  879. return UA_ERR_INVALID_VALUE;
  880. }
  881. UA_Int32 UA_InvalidType_init(UA_InvalidType *p) {
  882. return UA_ERR_INVALID_VALUE;
  883. }
  884. UA_Int32 UA_InvalidType_copy(UA_InvalidType const *src, UA_InvalidType *dst) {
  885. return UA_ERR_INVALID_VALUE;
  886. }
  887. UA_Int32 UA_InvalidType_new(UA_InvalidType **p) {
  888. return UA_ERR_INVALID_VALUE;
  889. }
  890. void UA_InvalidType_print(const UA_InvalidType *p, FILE *stream) {
  891. if(p == UA_NULL || stream == UA_NULL) return;
  892. fprintf(stream, "(UA_InvalidType){ERROR (invalid type)}");
  893. }
  894. /* NodeClass */
  895. UA_TYPE_AS(UA_NodeClass, UA_Int32)
  896. /* ReferenceDescription */
  897. UA_Int32 UA_ReferenceDescription_delete(UA_ReferenceDescription *p) {
  898. UA_Int32 retval = UA_SUCCESS;
  899. retval |= UA_ReferenceDescription_deleteMembers(p);
  900. retval |= UA_free(p);
  901. return retval;
  902. }
  903. UA_Int32 UA_ReferenceDescription_deleteMembers(UA_ReferenceDescription *p) {
  904. UA_Int32 retval = UA_SUCCESS;
  905. retval |= UA_NodeId_deleteMembers(&p->referenceTypeId);
  906. retval |= UA_ExpandedNodeId_deleteMembers(&p->nodeId);
  907. retval |= UA_QualifiedName_deleteMembers(&p->browseName);
  908. retval |= UA_LocalizedText_deleteMembers(&p->displayName);
  909. retval |= UA_ExpandedNodeId_deleteMembers(&p->typeDefinition);
  910. return retval;
  911. }
  912. UA_Int32 UA_ReferenceDescription_init(UA_ReferenceDescription *p) {
  913. UA_Int32 retval = UA_SUCCESS;
  914. p->resultMask = 0;
  915. retval |= UA_NodeId_init(&p->referenceTypeId);
  916. retval |= UA_Boolean_init(&p->isForward);
  917. retval |= UA_ExpandedNodeId_init(&p->nodeId);
  918. retval |= UA_QualifiedName_init(&p->browseName);
  919. retval |= UA_LocalizedText_init(&p->displayName);
  920. retval |= UA_NodeClass_init(&p->nodeClass);
  921. retval |= UA_ExpandedNodeId_init(&p->typeDefinition);
  922. return retval;
  923. }
  924. UA_TYPE_NEW_DEFAULT(UA_ReferenceDescription)
  925. UA_Int32 UA_ReferenceDescription_copy(const UA_ReferenceDescription *src,UA_ReferenceDescription *dst) {
  926. if(src == UA_NULL || dst == UA_NULL) return UA_ERROR;
  927. UA_Int32 retval = UA_SUCCESS;
  928. memcpy(dst, src, sizeof(UA_ReferenceDescription));
  929. retval |= UA_NodeId_copy(&src->referenceTypeId,&dst->referenceTypeId);
  930. retval |= UA_ExpandedNodeId_copy(&src->nodeId,&dst->nodeId);
  931. retval |= UA_QualifiedName_copy(&src->browseName,&dst->browseName);
  932. retval |= UA_LocalizedText_copy(&src->displayName,&dst->displayName);
  933. retval |= UA_ExpandedNodeId_copy(&src->typeDefinition,&dst->typeDefinition);
  934. return retval;
  935. }
  936. void UA_ReferenceDescription_print(const UA_ReferenceDescription *p, FILE *stream) {
  937. fprintf(stream, "(UA_ReferenceDescription){");
  938. UA_UInt32_print(&p->resultMask,stream);
  939. fprintf(stream, ",");
  940. UA_NodeId_print(&p->referenceTypeId,stream);
  941. fprintf(stream, ",");
  942. UA_Boolean_print(&p->isForward,stream);
  943. fprintf(stream, ",");
  944. UA_ExpandedNodeId_print(&p->nodeId,stream);
  945. fprintf(stream, ",");
  946. UA_QualifiedName_print(&p->browseName,stream);
  947. fprintf(stream, ",");
  948. UA_LocalizedText_print(&p->displayName,stream);
  949. fprintf(stream, ",");
  950. UA_NodeClass_print(&p->nodeClass,stream);
  951. fprintf(stream, ",");
  952. UA_ExpandedNodeId_print(&p->typeDefinition,stream);
  953. fprintf(stream, "}");
  954. }
  955. /*********/
  956. /* Array */
  957. /*********/
  958. UA_Int32 UA_Array_new(void **p, UA_Int32 noElements, UA_VTable_Entry *vt) {
  959. if(vt == UA_NULL)
  960. return UA_ERROR;
  961. if(noElements <= 0) {
  962. *p = UA_NULL;
  963. return UA_SUCCESS;
  964. }
  965. // FIXME! Arrays cannot be larger than 2**20.
  966. // This was randomly chosen so that the development VM does not blow up.
  967. if(noElements > 1048576) {
  968. *p = UA_NULL;
  969. return UA_ERROR;
  970. }
  971. UA_Int32 retval = UA_SUCCESS;
  972. retval = UA_alloc(p, vt->memSize * noElements);
  973. if(retval != UA_SUCCESS)
  974. return retval;
  975. retval = UA_Array_init(*p, noElements, vt);
  976. if(retval != UA_SUCCESS) {
  977. UA_free(*p);
  978. *p = UA_NULL;
  979. }
  980. return retval;
  981. }
  982. UA_Int32 UA_Array_init(void *p, UA_Int32 noElements, UA_VTable_Entry *vt) {
  983. if(p == UA_NULL || vt == UA_NULL)
  984. return UA_ERROR;
  985. UA_Int32 retval = UA_SUCCESS;
  986. char *cp = (char *)p; // so compilers allow pointer arithmetic
  987. UA_UInt32 memSize = vt->memSize;
  988. for(UA_Int32 i = 0;i < noElements && retval == UA_SUCCESS;i++) {
  989. retval |= vt->init(cp);
  990. cp += memSize;
  991. }
  992. return retval;
  993. }
  994. UA_Int32 UA_Array_delete(void *p, UA_Int32 noElements, UA_VTable_Entry *vt) {
  995. if(p == UA_NULL)
  996. return UA_SUCCESS;
  997. if(vt == UA_NULL)
  998. return UA_ERROR;
  999. char *cp = (char *)p; // so compilers allow pointer arithmetic
  1000. UA_UInt32 memSize = vt->memSize;
  1001. UA_Int32 retval = UA_SUCCESS;
  1002. for(UA_Int32 i = 0;i < noElements;i++) {
  1003. retval |= vt->deleteMembers(cp);
  1004. cp += memSize;
  1005. }
  1006. UA_free(p);
  1007. return retval;
  1008. }
  1009. UA_Int32 UA_Array_copy(const void *src, UA_Int32 noElements, UA_VTable_Entry *vt, void **dst) {
  1010. if(src == UA_NULL || dst == UA_NULL || vt == UA_NULL)
  1011. return UA_ERROR;
  1012. UA_Int32 retval = UA_Array_new(dst, noElements, vt);
  1013. if(retval != UA_SUCCESS){
  1014. *dst = UA_NULL;
  1015. return retval;
  1016. }
  1017. char *csrc = (char *)src; // so compilers allow pointer arithmetic
  1018. char *cdst = (char *)*dst;
  1019. UA_UInt32 memSize = vt->memSize;
  1020. UA_Int32 i = 0;
  1021. for(;i < noElements && retval == UA_SUCCESS;i++) {
  1022. retval |= vt->copy(csrc, cdst);
  1023. csrc += memSize;
  1024. cdst += memSize;
  1025. }
  1026. if(retval != UA_SUCCESS) {
  1027. i--; // undo last increase
  1028. UA_Array_delete(*dst, i, vt);
  1029. *dst = UA_NULL;
  1030. }
  1031. return retval;
  1032. }
  1033. void UA_Array_print(const void *p, UA_Int32 noElements, UA_VTable_Entry *vt, FILE *stream) {
  1034. if(p == UA_NULL || vt == UA_NULL || stream == UA_NULL) return;
  1035. fprintf(stream, "(%s){", vt->name);
  1036. char *cp = (char *)p; // so compilers allow pointer arithmetic
  1037. UA_UInt32 memSize = vt->memSize;
  1038. for(UA_Int32 i=0;i < noElements;i++) {
  1039. vt->print(cp, stream);
  1040. fprintf(stream, ",");
  1041. cp += memSize;
  1042. }
  1043. }