ua_types.h 26 KB

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  1. /*
  2. * Copyright (C) 2013-2015 the contributors as stated in the AUTHORS file
  3. *
  4. * This file is part of open62541. open62541 is free software: you can
  5. * redistribute it and/or modify it under the terms of the GNU Lesser General
  6. * Public License, version 3 (as published by the Free Software Foundation) with
  7. * a static linking exception as stated in the LICENSE file provided with
  8. * open62541.
  9. *
  10. * open62541 is distributed in the hope that it will be useful, but WITHOUT ANY
  11. * WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
  12. * A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more
  13. * details.
  14. */
  15. #ifndef UA_TYPES_H_
  16. #define UA_TYPES_H_
  17. #ifdef __cplusplus
  18. extern "C" {
  19. #endif
  20. #ifndef UA_FFI_BINDINGS
  21. #include <stdbool.h>
  22. #include <inttypes.h>
  23. #endif
  24. #include "ua_config.h"
  25. #include "ua_statuscodes.h"
  26. /* Indicates that an array has the length 0 (NULL indicates an non-defined array of length -1)*/
  27. #define UA_EMPTY_ARRAY_SENTINEL ((void*)0x01)
  28. /****************************/
  29. /* Builtin Type Definitions */
  30. /****************************/
  31. #define UA_BUILTIN_TYPES_COUNT 25
  32. /** Boolean: A two-state logical value (true or false) */
  33. typedef bool UA_Boolean;
  34. #define UA_TRUE true
  35. #define UA_FALSE false
  36. /** SByte: An integer value between -128 and 127 */
  37. typedef int8_t UA_SByte;
  38. #define UA_SBYTE_MAX 127
  39. #define UA_SBYTE_MIN (-128)
  40. /** Byte: An integer value between 0 and 256 */
  41. typedef uint8_t UA_Byte;
  42. #define UA_BYTE_MAX 256
  43. #define UA_BYTE_MIN 0
  44. /** Int16: An integer value between -32 768 and 32 767 */
  45. typedef int16_t UA_Int16;
  46. #define UA_INT16_MAX 32767
  47. #define UA_INT16_MIN (-32768)
  48. /** UInt16: An integer value between 0 and 65 535 */
  49. typedef uint16_t UA_UInt16;
  50. #define UA_UINT16_MAX 65535
  51. #define UA_UINT16_MIN 0
  52. /** Int32: An integer value between -2 147 483 648 and 2 147 483 647 */
  53. typedef int32_t UA_Int32;
  54. #define UA_INT32_MAX 2147483647
  55. #define UA_INT32_MIN (-2147483648)
  56. /** UInt32: An integer value between 0 and 4 294 967 295 */
  57. typedef uint32_t UA_UInt32;
  58. #define UA_UINT32_MAX 4294967295
  59. #define UA_UINT32_MIN 0
  60. /** Int64: An integer value between -10 223 372 036 854 775 808 and 9 223 372 036 854 775 807 */
  61. typedef int64_t UA_Int64;
  62. #define UA_INT64_MAX (int64_t)9223372036854775807
  63. #define UA_INT64_MIN ((int64_t)-9223372036854775808)
  64. /** UInt64: An integer value between 0 and 18 446 744 073 709 551 615 */
  65. typedef uint64_t UA_UInt64;
  66. #define UA_UINT64_MAX (int64_t)18446744073709551615
  67. #define UA_UINT64_MIN (int64_t)0
  68. /** Float: An IEEE single precision (32 bit) floating point value */
  69. typedef float UA_Float;
  70. /** Double: An IEEE double precision (64 bit) floating point value */
  71. typedef double UA_Double;
  72. /********************************************/
  73. /* String: A sequence of Unicode characters */
  74. /********************************************/
  75. typedef struct {
  76. size_t length; // The length of the string
  77. UA_Byte *data; // The string's content (not null-terminated)
  78. } UA_String;
  79. UA_EXPORT extern const UA_String UA_STRING_NULL;
  80. static UA_INLINE UA_String UA_STRING(char *chars) {
  81. UA_String str; str.length = strlen(chars);
  82. str.data = (UA_Byte*)chars; return str; }
  83. #define UA_STRING_ALLOC(CHARS) UA_String_fromChars(CHARS)
  84. /** Copies the content on the heap. Returns a null-string when alloc fails */
  85. UA_String UA_EXPORT UA_String_fromChars(char const src[]) UA_FUNC_ATTR_WARN_UNUSED_RESULT;
  86. UA_Boolean UA_EXPORT UA_String_equal(const UA_String *s1, const UA_String *s2);
  87. /*********************************/
  88. /* DateTime: An instance in time */
  89. /*********************************/
  90. /* A DateTime value is encoded as a 64-bit signed integer which represents the
  91. number of 100 nanosecond intervals since January 1, 1601 (UTC) */
  92. typedef UA_Int64 UA_DateTime;
  93. UA_DateTime UA_EXPORT UA_DateTime_now(void); ///> The current time
  94. typedef struct UA_DateTimeStruct {
  95. UA_UInt16 nanoSec;
  96. UA_UInt16 microSec;
  97. UA_UInt16 milliSec;
  98. UA_UInt16 sec;
  99. UA_UInt16 min;
  100. UA_UInt16 hour;
  101. UA_UInt16 day;
  102. UA_UInt16 month;
  103. UA_UInt16 year;
  104. } UA_DateTimeStruct;
  105. UA_DateTimeStruct UA_EXPORT UA_DateTime_toStruct(UA_DateTime time);
  106. UA_String UA_EXPORT UA_DateTime_toString(UA_DateTime time);
  107. /**************************************************************************/
  108. /* Guid: A 16 byte value that can be used as a globally unique identifier */
  109. /**************************************************************************/
  110. typedef struct {
  111. UA_UInt32 data1;
  112. UA_UInt16 data2;
  113. UA_UInt16 data3;
  114. UA_Byte data4[8];
  115. } UA_Guid;
  116. UA_Boolean UA_EXPORT UA_Guid_equal(const UA_Guid *g1, const UA_Guid *g2);
  117. UA_Guid UA_EXPORT UA_Guid_random(UA_UInt32 *seed);
  118. /************************************/
  119. /* ByteString: A sequence of octets */
  120. /************************************/
  121. typedef UA_String UA_ByteString;
  122. static UA_INLINE UA_Boolean UA_ByteString_equal(const UA_ByteString *string1, const UA_ByteString *string2) {
  123. return UA_String_equal((const UA_String*)string1, (const UA_String*)string2); }
  124. /* Allocates memory of size length for the bytestring. The content is not set to zero. */
  125. UA_StatusCode UA_EXPORT UA_ByteString_allocBuffer(UA_ByteString *bs, size_t length) UA_FUNC_ATTR_WARN_UNUSED_RESULT;
  126. UA_EXPORT extern const UA_ByteString UA_BYTESTRING_NULL;
  127. static UA_INLINE UA_ByteString UA_BYTESTRING(char *chars) {
  128. UA_ByteString str; str.length = strlen(chars); str.data = (UA_Byte*)chars; return str; }
  129. static UA_INLINE UA_ByteString UA_BYTESTRING_ALLOC(const char *chars) {
  130. UA_String str = UA_String_fromChars(chars); UA_ByteString bstr;
  131. bstr.length = str.length; bstr.data = str.data; return bstr;
  132. }
  133. /******************************/
  134. /* XmlElement: An XML element */
  135. /******************************/
  136. typedef UA_String UA_XmlElement;
  137. /*****************************************************************************/
  138. /* NodeId: An identifier for a node in the address space of an OPC UA Server */
  139. /*****************************************************************************/
  140. enum UA_NodeIdType {
  141. UA_NODEIDTYPE_NUMERIC = 0, ///< On the wire, this can be 0,1,2 for numeric nodeids of different sizes
  142. UA_NODEIDTYPE_STRING = 3,
  143. UA_NODEIDTYPE_GUID = 4,
  144. UA_NODEIDTYPE_BYTESTRING = 5
  145. };
  146. typedef struct {
  147. UA_UInt16 namespaceIndex;
  148. enum UA_NodeIdType identifierType;
  149. union {
  150. UA_UInt32 numeric;
  151. UA_String string;
  152. UA_Guid guid;
  153. UA_ByteString byteString;
  154. } identifier;
  155. } UA_NodeId;
  156. UA_EXPORT extern const UA_NodeId UA_NODEID_NULL;
  157. static UA_INLINE UA_Boolean UA_NodeId_isNull(const UA_NodeId *p) {
  158. return (p->namespaceIndex == 0 && p->identifierType == UA_NODEIDTYPE_NUMERIC &&
  159. p->identifier.numeric == 0);
  160. }
  161. UA_Boolean UA_EXPORT UA_NodeId_equal(const UA_NodeId *n1, const UA_NodeId *n2);
  162. static UA_INLINE UA_NodeId UA_NODEID_NUMERIC(UA_UInt16 nsIndex, UA_Int32 identifier) {
  163. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_NUMERIC;
  164. id.identifier.numeric = identifier; return id; }
  165. static UA_INLINE UA_NodeId UA_NODEID_STRING(UA_UInt16 nsIndex, char *chars) {
  166. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_STRING;
  167. id.identifier.string = UA_STRING(chars); return id; }
  168. static UA_INLINE UA_NodeId UA_NODEID_STRING_ALLOC(UA_UInt16 nsIndex, const char *chars) {
  169. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_STRING;
  170. id.identifier.string = UA_STRING_ALLOC(chars); return id; }
  171. static UA_INLINE UA_NodeId UA_NODEID_GUID(UA_UInt16 nsIndex, UA_Guid guid) {
  172. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_GUID;
  173. id.identifier.guid = guid; return id; }
  174. static UA_INLINE UA_NodeId UA_NODEID_BYTESTRING(UA_UInt16 nsIndex, char *chars) {
  175. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_BYTESTRING;
  176. id.identifier.byteString = UA_BYTESTRING(chars); return id; }
  177. static UA_INLINE UA_NodeId UA_NODEID_BYTESTRING_ALLOC(UA_UInt16 nsIndex, const char *chars) {
  178. UA_NodeId id; id.namespaceIndex = nsIndex; id.identifierType = UA_NODEIDTYPE_BYTESTRING;
  179. id.identifier.byteString = UA_BYTESTRING_ALLOC(chars); return id; }
  180. /**********************************************************************************************/
  181. /* ExpandedNodeId: A NodeId that allows the namespace URI to be specified instead of an index */
  182. /**********************************************************************************************/
  183. typedef struct {
  184. UA_NodeId nodeId;
  185. UA_String namespaceUri;
  186. UA_UInt32 serverIndex;
  187. } UA_ExpandedNodeId;
  188. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_NUMERIC(UA_UInt16 nsIndex, UA_Int32 identifier) {
  189. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_NUMERIC(nsIndex, identifier);
  190. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  191. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_STRING(UA_UInt16 nsIndex, char *chars) {
  192. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_STRING(nsIndex, chars);
  193. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  194. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_STRING_ALLOC(UA_UInt16 nsIndex, const char *chars) {
  195. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_STRING_ALLOC(nsIndex, chars);
  196. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  197. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_STRING_GUID(UA_UInt16 nsIndex, UA_Guid guid) {
  198. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_GUID(nsIndex, guid);
  199. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  200. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_BYTESTRING(UA_UInt16 nsIndex, char *chars) {
  201. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_BYTESTRING(nsIndex, chars);
  202. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  203. static UA_INLINE UA_ExpandedNodeId UA_EXPANDEDNODEID_BYTESTRING_ALLOC(UA_UInt16 nsIndex, const char *chars) {
  204. UA_ExpandedNodeId id; id.nodeId = UA_NODEID_BYTESTRING_ALLOC(nsIndex, chars);
  205. id.serverIndex = 0; id.namespaceUri = UA_STRING_NULL; return id; }
  206. /**************************************************/
  207. /* QualifiedName: A name qualified by a namespace */
  208. /**************************************************/
  209. typedef struct {
  210. UA_UInt16 namespaceIndex;
  211. UA_String name;
  212. } UA_QualifiedName;
  213. static UA_INLINE UA_QualifiedName UA_QUALIFIEDNAME(UA_UInt16 nsIndex, char *chars) {
  214. UA_QualifiedName qn; qn.namespaceIndex = nsIndex; qn.name = UA_STRING(chars); return qn; }
  215. static UA_INLINE UA_QualifiedName UA_QUALIFIEDNAME_ALLOC(UA_UInt16 nsIndex, const char *chars) {
  216. UA_QualifiedName qn; qn.namespaceIndex = nsIndex; qn.name = UA_STRING_ALLOC(chars); return qn; }
  217. /*************************************************************************/
  218. /* LocalizedText: Human readable text with an optional locale identifier */
  219. /*************************************************************************/
  220. typedef struct {
  221. UA_String locale;
  222. UA_String text;
  223. } UA_LocalizedText;
  224. static UA_INLINE UA_LocalizedText UA_LOCALIZEDTEXT(char *locale, char *text) {
  225. UA_LocalizedText lt; lt.locale = UA_STRING(locale);
  226. lt.text = UA_STRING(text); return lt; }
  227. static UA_INLINE UA_LocalizedText UA_LOCALIZEDTEXT_ALLOC(const char *locale, const char *text) {
  228. UA_LocalizedText lt; lt.locale = UA_STRING_ALLOC(locale);
  229. lt.text = UA_STRING_ALLOC(text); return lt; }
  230. /* Forward Declaration of UA_DataType */
  231. struct UA_DataType;
  232. typedef struct UA_DataType UA_DataType;
  233. /********************************************************************************/
  234. /* ExtensionObject: A structure that contains an application specific data type */
  235. /* that may not be recognized by the receiver */
  236. /********************************************************************************/
  237. typedef struct {
  238. enum {
  239. UA_EXTENSIONOBJECT_ENCODED_NOBODY = 0,
  240. UA_EXTENSIONOBJECT_ENCODED_BYTESTRING = 1,
  241. UA_EXTENSIONOBJECT_ENCODED_XML = 2,
  242. UA_EXTENSIONOBJECT_DECODED = 3, ///< There is a pointer to the decoded data
  243. UA_EXTENSIONOBJECT_DECODED_NODELETE = 4 ///< Don't delete the decoded data at the lifecycle end
  244. } encoding;
  245. union {
  246. struct {
  247. UA_NodeId typeId; ///< The nodeid of the datatype
  248. UA_ByteString body; ///< The bytestring of the encoded data
  249. } encoded;
  250. struct {
  251. const UA_DataType *type;
  252. void *data;
  253. } decoded;
  254. } content;
  255. } UA_ExtensionObject;
  256. /*********************************************/
  257. /* Variant: Stores (arrays of) any data type */
  258. /*********************************************/
  259. /* Variant semantics:
  260. - arrayLength == 0 && data == NULL: no existing data
  261. - arrayLength == 0 && data == 0x01: array of length 0
  262. - arrayLength == 0 && data > 0x01: scalar value
  263. - arrayLength > 0: array of the given length
  264. */
  265. typedef struct {
  266. const UA_DataType *type; // The data type description
  267. enum {
  268. UA_VARIANT_DATA, /* The data has the same lifecycle as the variant */
  269. UA_VARIANT_DATA_NODELETE, /* The data is "borrowed" by the variant and shall not be
  270. deleted at the end of the variant's lifecycle. */
  271. } storageType;
  272. size_t arrayLength; // The number of elements in the data array
  273. void *data; // Points to the scalar or array data
  274. size_t arrayDimensionsSize; // The number of dimensions the data-array has
  275. UA_UInt32 *arrayDimensions; // The length of each dimension of the data-array
  276. } UA_Variant;
  277. /**
  278. * Returns true if the variant contains a scalar value. Note that empty variants contain an array of
  279. * length -1 (undefined).
  280. *
  281. * @param v The variant
  282. * @return Does the variant contain a scalar value.
  283. */
  284. static UA_INLINE UA_Boolean UA_Variant_isScalar(const UA_Variant *v) {
  285. return (v->arrayLength == 0 && v->data > UA_EMPTY_ARRAY_SENTINEL); }
  286. /**
  287. * Set the variant to a scalar value that already resides in memory. The value takes on the
  288. * lifecycle of the variant and is deleted with it.
  289. *
  290. * @param v The variant
  291. * @param p A pointer to the value data
  292. * @param type The datatype of the value in question
  293. */
  294. void UA_EXPORT UA_Variant_setScalar(UA_Variant *v, void * UA_RESTRICT p, const UA_DataType *type);
  295. /**
  296. * Set the variant to a scalar value that is copied from an existing variable.
  297. *
  298. * @param v The variant
  299. * @param p A pointer to the value data
  300. * @param type The datatype of the value
  301. * @return Indicates whether the operation succeeded or returns an error code
  302. */
  303. UA_StatusCode UA_EXPORT UA_Variant_setScalarCopy(UA_Variant *v, const void *p, const UA_DataType *type);
  304. /**
  305. * Set the variant to an array that already resides in memory. The array takes on the lifecycle of
  306. * the variant and is deleted with it.
  307. *
  308. * @param v The variant
  309. * @param array A pointer to the array data
  310. * @param arraySize The size of the array
  311. * @param type The datatype of the array
  312. */
  313. void UA_EXPORT
  314. UA_Variant_setArray(UA_Variant *v, void * UA_RESTRICT array, size_t arraySize, const UA_DataType *type);
  315. /**
  316. * Set the variant to an array that is copied from an existing array.
  317. *
  318. * @param v The variant
  319. * @param array A pointer to the array data
  320. * @param arraySize The size of the array
  321. * @param type The datatype of the array
  322. * @return Indicates whether the operation succeeded or returns an error code
  323. */
  324. UA_StatusCode UA_EXPORT
  325. UA_Variant_setArrayCopy(UA_Variant *v, const void *array, size_t arraySize, const UA_DataType *type);
  326. /* NumericRanges are used to indicate subsets of a (multidimensional) variant
  327. * array. NumericRange has no official type structure in the standard. On the
  328. * wire, it only exists as an encoded string, such as "1:2,0:3,5". The colon
  329. * separates min/max index and the comma separates dimensions. A single value
  330. * indicates a range with a single element (min==max). */
  331. typedef struct {
  332. size_t dimensionsSize;
  333. struct UA_NumericRangeDimension {
  334. UA_UInt32 min;
  335. UA_UInt32 max;
  336. } *dimensions;
  337. } UA_NumericRange;
  338. /**
  339. * Copy the variant, but use only a subset of the (multidimensional) array into a variant. Returns
  340. * an error code if the variant is not an array or if the indicated range does not fit.
  341. *
  342. * @param src The source variant
  343. * @param dst The target variant
  344. * @param range The range of the copied data
  345. * @return Returns UA_STATUSCODE_GOOD or an error code
  346. */
  347. UA_StatusCode UA_EXPORT
  348. UA_Variant_copyRange(const UA_Variant *src, UA_Variant *dst, const UA_NumericRange range);
  349. /**
  350. * Insert a range of data into an existing variant. The data array can't be reused afterwards if it
  351. * contains types without a fixed size (e.g. strings) since the members are moved into the variant
  352. * and take on its lifecycle.
  353. *
  354. * @param v The variant
  355. * @param dataArray The data array. The type must match the variant
  356. * @param dataArraySize The length of the data array. This is checked to match the range size.
  357. * @param range The range of where the new data is inserted
  358. * @return Returns UA_STATUSCODE_GOOD or an error code
  359. */
  360. UA_StatusCode UA_EXPORT
  361. UA_Variant_setRange(UA_Variant *v, void * UA_RESTRICT array, size_t arraySize, const UA_NumericRange range);
  362. /**
  363. * Deep-copy a range of data into an existing variant.
  364. *
  365. * @param v The variant
  366. * @param dataArray The data array. The type must match the variant
  367. * @param dataArraySize The length of the data array. This is checked to match the range size.
  368. * @param range The range of where the new data is inserted
  369. * @return Returns UA_STATUSCODE_GOOD or an error code
  370. */
  371. UA_StatusCode UA_EXPORT
  372. UA_Variant_setRangeCopy(UA_Variant *v, const void *array, size_t arraySize, const UA_NumericRange range);
  373. /**************************************************************************/
  374. /* DataValue: A data value with an associated status code and timestamps. */
  375. /**************************************************************************/
  376. typedef struct {
  377. UA_Boolean hasValue : 1;
  378. UA_Boolean hasStatus : 1;
  379. UA_Boolean hasSourceTimestamp : 1;
  380. UA_Boolean hasServerTimestamp : 1;
  381. UA_Boolean hasSourcePicoseconds : 1;
  382. UA_Boolean hasServerPicoseconds : 1;
  383. UA_Variant value;
  384. UA_StatusCode status;
  385. UA_DateTime sourceTimestamp;
  386. UA_Int16 sourcePicoseconds;
  387. UA_DateTime serverTimestamp;
  388. UA_Int16 serverPicoseconds;
  389. } UA_DataValue;
  390. /***************************************************************************/
  391. /* DiagnosticInfo: A structure that contains detailed error and diagnostic */
  392. /* information associated with a StatusCode. */
  393. /***************************************************************************/
  394. typedef struct UA_DiagnosticInfo {
  395. UA_Boolean hasSymbolicId : 1;
  396. UA_Boolean hasNamespaceUri : 1;
  397. UA_Boolean hasLocalizedText : 1;
  398. UA_Boolean hasLocale : 1;
  399. UA_Boolean hasAdditionalInfo : 1;
  400. UA_Boolean hasInnerStatusCode : 1;
  401. UA_Boolean hasInnerDiagnosticInfo : 1;
  402. UA_Int32 symbolicId;
  403. UA_Int32 namespaceUri;
  404. UA_Int32 localizedText;
  405. UA_Int32 locale;
  406. UA_String additionalInfo;
  407. UA_StatusCode innerStatusCode;
  408. struct UA_DiagnosticInfo *innerDiagnosticInfo;
  409. } UA_DiagnosticInfo;
  410. /*************************/
  411. /* Generic Type Handling */
  412. /*************************/
  413. #define UA_MAX_TYPE_MEMBERS 13 // Maximum number of members per structured type
  414. typedef struct {
  415. #ifdef ENABLE_TYPEINTROSPECTION
  416. const char *memberName;
  417. #endif
  418. UA_UInt16 memberTypeIndex; ///< Index of the member in the datatypetable
  419. UA_Byte padding; /**< How much padding is there before this member element? For arrays this is
  420. split into 2 bytes padding before the length index (max 4 bytes) and 3
  421. bytes padding before the pointer (max 8 bytes) */
  422. UA_Boolean namespaceZero : 1; /**< The type of the member is defined in namespace zero. In this
  423. implementation, types from custom namespace may contain
  424. members from the same namespace or ns0 only.*/
  425. UA_Boolean isArray : 1; ///< The member is an array of the given type
  426. } UA_DataTypeMember;
  427. struct UA_DataType {
  428. #ifdef ENABLE_TYPEINTROSPECTION
  429. const char *typeName;
  430. #endif
  431. UA_NodeId typeId; ///< The nodeid of the type
  432. UA_UInt16 memSize; ///< Size of the struct in memory
  433. UA_UInt16 typeIndex; ///< Index of the type in the datatypetable
  434. UA_Byte membersSize; ///< How many members does the type have?
  435. UA_Boolean builtin : 1; ///< The type is "builtin" and has dedicated de- and encoding functions
  436. UA_Boolean fixedSize : 1; ///< The type (and its members) contains no pointers
  437. UA_Boolean zeroCopyable : 1; ///< The type can be copied directly off the stream (given that the endianness matches)
  438. UA_DataTypeMember members[UA_MAX_TYPE_MEMBERS];
  439. };
  440. /**
  441. * Allocates and initializes a variable of type dataType
  442. *
  443. * @param type The datatype description
  444. * @return Returns the memory location of the variable or (void*)0 if no memory is available
  445. */
  446. void UA_EXPORT * UA_new(const UA_DataType *type) UA_FUNC_ATTR_MALLOC;
  447. /**
  448. * Initializes a variable to default values
  449. *
  450. * @param p The memory location of the variable
  451. * @param type The datatype description
  452. */
  453. static UA_INLINE void UA_init(void *p, const UA_DataType *type) {
  454. memset(p, 0, type->memSize); }
  455. /**
  456. * Copies the content of two variables. If copying fails (e.g. because no memory was available for
  457. * an array), then dst is emptied and initialized to prevent memory leaks.
  458. *
  459. * @param src The memory location of the source variable
  460. * @param dst The memory location of the destination variable
  461. * @param type The datatype description
  462. * @return Indicates whether the operation succeeded or returns an error code
  463. */
  464. UA_StatusCode UA_EXPORT
  465. UA_copy(const void *src, void *dst, const UA_DataType *type) UA_FUNC_ATTR_WARN_UNUSED_RESULT;
  466. /**
  467. * Deletes the dynamically assigned content of a variable (e.g. a member-array).
  468. * Afterwards, the variable can be safely deleted without causing memory leaks.
  469. * But the variable is not initialized and may contain old data that is not
  470. * memory-relevant.
  471. *
  472. * @param p The memory location of the variable
  473. * @param type The datatype description of the variable
  474. */
  475. void UA_EXPORT UA_deleteMembers(void *p, const UA_DataType *type);
  476. /**
  477. * Deletes (frees) a variable and all of its content.
  478. *
  479. * @param p The memory location of the variable
  480. * @param type The datatype description of the variable
  481. */
  482. void UA_EXPORT UA_delete(void *p, const UA_DataType *type);
  483. /********************/
  484. /* Array operations */
  485. /********************/
  486. #define MAX_ARRAY_SIZE 104857600 // arrays must be smaller than 100MB
  487. /**
  488. * Allocates and initializes an array of variables of a specific type
  489. *
  490. * @param size The requested array length
  491. * @param type The datatype description
  492. * @return Returns the memory location of the variable or (void*)0 if no memory could be allocated
  493. */
  494. void UA_EXPORT * UA_Array_new(size_t size, const UA_DataType *type) UA_FUNC_ATTR_MALLOC;
  495. /**
  496. * Allocates and copies an array. dst is set to (void*)0 if not enough memory is available.
  497. *
  498. * @param src The memory location of the source array
  499. * @param src_size The size of the array
  500. * @param dst The location of the pointer to the new array
  501. * @param type The datatype of the array members
  502. * @return Returns whether copying succeeded
  503. */
  504. UA_StatusCode UA_EXPORT
  505. UA_Array_copy(const void *src, size_t src_size, void **dst,
  506. const UA_DataType *type) UA_FUNC_ATTR_WARN_UNUSED_RESULT;
  507. /**
  508. * Deletes an array.
  509. *
  510. * @param p The memory location of the array
  511. * @param size The size of the array
  512. * @param type The datatype of the array members
  513. */
  514. void UA_EXPORT UA_Array_delete(void *p, size_t size, const UA_DataType *type);
  515. /**********************/
  516. /* Node Attribute Ids */
  517. /**********************/
  518. /* These are not generated from XML. Server *and* client need them. */
  519. typedef enum {
  520. UA_ATTRIBUTEID_NODEID = 1,
  521. UA_ATTRIBUTEID_NODECLASS = 2,
  522. UA_ATTRIBUTEID_BROWSENAME = 3,
  523. UA_ATTRIBUTEID_DISPLAYNAME = 4,
  524. UA_ATTRIBUTEID_DESCRIPTION = 5,
  525. UA_ATTRIBUTEID_WRITEMASK = 6,
  526. UA_ATTRIBUTEID_USERWRITEMASK = 7,
  527. UA_ATTRIBUTEID_ISABSTRACT = 8,
  528. UA_ATTRIBUTEID_SYMMETRIC = 9,
  529. UA_ATTRIBUTEID_INVERSENAME = 10,
  530. UA_ATTRIBUTEID_CONTAINSNOLOOPS = 11,
  531. UA_ATTRIBUTEID_EVENTNOTIFIER = 12,
  532. UA_ATTRIBUTEID_VALUE = 13,
  533. UA_ATTRIBUTEID_DATATYPE = 14,
  534. UA_ATTRIBUTEID_VALUERANK = 15,
  535. UA_ATTRIBUTEID_ARRAYDIMENSIONS = 16,
  536. UA_ATTRIBUTEID_ACCESSLEVEL = 17,
  537. UA_ATTRIBUTEID_USERACCESSLEVEL = 18,
  538. UA_ATTRIBUTEID_MINIMUMSAMPLINGINTERVAL = 19,
  539. UA_ATTRIBUTEID_HISTORIZING = 20,
  540. UA_ATTRIBUTEID_EXECUTABLE = 21,
  541. UA_ATTRIBUTEID_USEREXECUTABLE = 22
  542. } UA_AttributeId;
  543. typedef enum {
  544. UA_ACCESSLEVELMASK_READ = 0x01,
  545. UA_ACCESSLEVELMASK_WRITE = 0x02,
  546. UA_ACCESSLEVELMASK_HISTORYREAD = 0x4,
  547. UA_ACCESSLEVELMASK_HISTORYWRITE = 0x08,
  548. UA_ACCESSLEVELMASK_SEMANTICCHANGE = 0x10
  549. } UA_AccessLevelMask;
  550. /***************************/
  551. /* Random Number Generator */
  552. /***************************/
  553. /**
  554. * If UA_MULTITHREADING is enabled, then the seed is stored in thread local storage. The seed is
  555. * initialized for every thread in the server/client.
  556. */
  557. UA_EXPORT void UA_random_seed(UA_UInt64 seed);
  558. UA_EXPORT UA_UInt32 UA_random(void);
  559. #ifdef __cplusplus
  560. } // extern "C"
  561. #endif
  562. #endif /* UA_TYPES_H_ */