server.c 13 KB

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  1. /*
  2. * This work is licensed under a Creative Commons CCZero 1.0 Universal License.
  3. * See http://creativecommons.org/publicdomain/zero/1.0/ for more information.
  4. */
  5. #ifdef UA_NO_AMALGAMATION
  6. # include <time.h>
  7. # include "ua_types.h"
  8. # include "ua_server.h"
  9. # include "logger_stdout.h"
  10. # include "networklayer_tcp.h"
  11. #else
  12. # include "open62541.h"
  13. #endif
  14. #include <signal.h>
  15. #include <errno.h> // errno, EINTR
  16. #include <stdio.h>
  17. #include <stdlib.h>
  18. #include <string.h>
  19. #ifdef _MSC_VER
  20. # include <io.h> //access
  21. #else
  22. # include <unistd.h> //access
  23. #endif
  24. #define __USE_XOPEN2K
  25. #ifdef UA_MULTITHREADING
  26. # include <pthread.h>
  27. #endif
  28. /****************************/
  29. /* Server-related variables */
  30. /****************************/
  31. UA_Boolean running = 1;
  32. UA_Logger logger;
  33. /*************************/
  34. /* Read-only data source */
  35. /*************************/
  36. static UA_StatusCode readTimeData(void *handle, UA_Boolean sourceTimeStamp, const UA_NumericRange *range, UA_DataValue *value) {
  37. if(range) {
  38. value->hasStatus = UA_TRUE;
  39. value->status = UA_STATUSCODE_BADINDEXRANGEINVALID;
  40. return UA_STATUSCODE_GOOD;
  41. }
  42. UA_DateTime *currentTime = UA_DateTime_new();
  43. if(!currentTime)
  44. return UA_STATUSCODE_BADOUTOFMEMORY;
  45. *currentTime = UA_DateTime_now();
  46. value->value.type = &UA_TYPES[UA_TYPES_DATETIME];
  47. value->value.arrayLength = -1;
  48. value->value.data = currentTime;
  49. value->hasValue = UA_TRUE;
  50. if(sourceTimeStamp) {
  51. value->hasSourceTimestamp = UA_TRUE;
  52. value->sourceTimestamp = *currentTime;
  53. }
  54. return UA_STATUSCODE_GOOD;
  55. }
  56. /*****************************/
  57. /* Read-only CPU temperature */
  58. /* Only on Linux */
  59. /*****************************/
  60. FILE* temperatureFile = NULL;
  61. static UA_StatusCode readTemperature(void *handle, UA_Boolean sourceTimeStamp, const UA_NumericRange *range, UA_DataValue *value) {
  62. if(range) {
  63. value->hasStatus = UA_TRUE;
  64. value->status = UA_STATUSCODE_BADINDEXRANGEINVALID;
  65. return UA_STATUSCODE_GOOD;
  66. }
  67. UA_Double* currentTemperature = UA_Double_new();
  68. if(!currentTemperature)
  69. return UA_STATUSCODE_BADOUTOFMEMORY;
  70. rewind(temperatureFile);
  71. fflush(temperatureFile);
  72. if(fscanf(temperatureFile, "%lf", currentTemperature) != 1){
  73. UA_LOG_WARNING(logger, UA_LOGCATEGORY_USERLAND, "Can not parse temperature");
  74. exit(1);
  75. }
  76. *currentTemperature /= 1000.0;
  77. value->sourceTimestamp = UA_DateTime_now();
  78. value->hasSourceTimestamp = UA_TRUE;
  79. value->value.type = &UA_TYPES[UA_TYPES_DOUBLE];
  80. value->value.arrayLength = -1;
  81. value->value.data = currentTemperature;
  82. value->value.arrayDimensionsSize = -1;
  83. value->value.arrayDimensions = NULL;
  84. value->hasValue = UA_TRUE;
  85. return UA_STATUSCODE_GOOD;
  86. }
  87. /*************************/
  88. /* Read-write status led */
  89. /*************************/
  90. #ifdef UA_MULTITHREADING
  91. pthread_rwlock_t writeLock;
  92. #endif
  93. FILE* triggerFile = NULL;
  94. FILE* ledFile = NULL;
  95. UA_Boolean ledStatus = 0;
  96. static UA_StatusCode readLedStatus(void *handle, UA_Boolean sourceTimeStamp, const UA_NumericRange *range, UA_DataValue *value) {
  97. if(range)
  98. return UA_STATUSCODE_BADINDEXRANGEINVALID;
  99. UA_StatusCode retval = UA_Variant_setScalarCopy(&value->value, &ledStatus, &UA_TYPES[UA_TYPES_BOOLEAN]);
  100. if(retval != UA_STATUSCODE_GOOD)
  101. return retval;
  102. if(sourceTimeStamp) {
  103. value->sourceTimestamp = UA_DateTime_now();
  104. value->hasSourceTimestamp = UA_TRUE;
  105. }
  106. return UA_STATUSCODE_GOOD;
  107. }
  108. static UA_StatusCode writeLedStatus(void *handle, const UA_Variant *data, const UA_NumericRange *range) {
  109. if(range)
  110. return UA_STATUSCODE_BADINDEXRANGEINVALID;
  111. #ifdef UA_MULTITHREADING
  112. pthread_rwlock_wrlock(&writeLock);
  113. #endif
  114. if(data->data)
  115. ledStatus = *(UA_Boolean*)data->data;
  116. if(triggerFile)
  117. fseek(triggerFile, 0, SEEK_SET);
  118. if(ledFile) {
  119. if(ledStatus == 1)
  120. fprintf(ledFile, "%s", "1");
  121. else
  122. fprintf(ledFile, "%s", "0");
  123. fflush(ledFile);
  124. }
  125. #ifdef UA_MULTITHREADING
  126. pthread_rwlock_unlock(&writeLock);
  127. #endif
  128. return UA_STATUSCODE_GOOD;
  129. }
  130. #ifdef ENABLE_METHODCALLS
  131. static UA_StatusCode getMonitoredItems(const UA_NodeId objectId, const UA_Variant *input, UA_Variant *output) {
  132. UA_String tmp = UA_STRING("Hello World");
  133. UA_Variant_setScalarCopy(output, &tmp, &UA_TYPES[UA_TYPES_STRING]);
  134. printf("getMonitoredItems was called\n");
  135. return UA_STATUSCODE_GOOD;
  136. }
  137. #endif
  138. static void stopHandler(int sign) {
  139. UA_LOG_INFO(logger, UA_LOGCATEGORY_SERVER, "Received Ctrl-C\n");
  140. running = 0;
  141. }
  142. static UA_ByteString loadCertificate(void) {
  143. UA_ByteString certificate = UA_STRING_NULL;
  144. FILE *fp = NULL;
  145. if(!(fp=fopen("server_cert.der", "rb"))) {
  146. errno = 0; // we read errno also from the tcp layer...
  147. return certificate;
  148. }
  149. fseek(fp, 0, SEEK_END);
  150. certificate.length = ftell(fp);
  151. certificate.data = malloc(certificate.length*sizeof(UA_Byte));
  152. if(!certificate.data)
  153. return certificate;
  154. fseek(fp, 0, SEEK_SET);
  155. if(fread(certificate.data, sizeof(UA_Byte), certificate.length, fp) < (size_t)certificate.length)
  156. UA_ByteString_deleteMembers(&certificate); // error reading the cert
  157. fclose(fp);
  158. return certificate;
  159. }
  160. int main(int argc, char** argv) {
  161. signal(SIGINT, stopHandler); /* catches ctrl-c */
  162. #ifdef UA_MULTITHREADING
  163. pthread_rwlock_init(&writeLock, 0);
  164. #endif
  165. UA_Server *server = UA_Server_new(UA_ServerConfig_standard);
  166. logger = Logger_Stdout_new();
  167. UA_Server_setLogger(server, logger);
  168. UA_ByteString certificate = loadCertificate();
  169. UA_Server_setServerCertificate(server, certificate);
  170. UA_ByteString_deleteMembers(&certificate);
  171. UA_Server_addNetworkLayer(server, ServerNetworkLayerTCP_new(UA_ConnectionConfig_standard, 16664));
  172. // add node with the datetime data source
  173. UA_DataSource dateDataSource = (UA_DataSource) {.handle = NULL, .read = readTimeData, .write = NULL};
  174. const UA_QualifiedName dateName = UA_QUALIFIEDNAME(1, "current time");
  175. UA_Server_addDataSourceVariableNode(server, dateDataSource, dateName, UA_NODEID_NULL,
  176. UA_NODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  177. #ifndef _WIN32
  178. //cpu temperature monitoring for linux machines
  179. if((temperatureFile = fopen("/sys/class/thermal/thermal_zone0/temp", "r"))) {
  180. // add node with the data source
  181. UA_DataSource temperatureDataSource = (UA_DataSource) {.handle = NULL, .read = readTemperature, .write = NULL};
  182. const UA_QualifiedName tempName = UA_QUALIFIEDNAME(1, "cpu temperature");
  183. UA_Server_addDataSourceVariableNode(server, temperatureDataSource, tempName, UA_NODEID_NULL,
  184. UA_NODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  185. }
  186. //LED control for rpi
  187. if(access("/sys/class/leds/led0/trigger", F_OK ) != -1 || access("/sys/class/leds/led0/brightness", F_OK ) != -1) {
  188. if((triggerFile = fopen("/sys/class/leds/led0/trigger", "w")) && (ledFile = fopen("/sys/class/leds/led0/brightness", "w"))) {
  189. //setting led mode to manual
  190. fprintf(triggerFile, "%s", "none");
  191. fflush(triggerFile);
  192. //turning off led initially
  193. fprintf(ledFile, "%s", "1");
  194. fflush(ledFile);
  195. // add node with the LED status data source
  196. UA_DataSource ledStatusDataSource = (UA_DataSource) {.handle = NULL, .read = readLedStatus, .write = writeLedStatus};
  197. const UA_QualifiedName statusName = UA_QUALIFIEDNAME(0, "status LED");
  198. UA_Server_addDataSourceVariableNode(server, ledStatusDataSource, statusName, UA_NODEID_NULL,
  199. UA_NODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER),
  200. UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  201. } else {
  202. UA_LOG_WARNING(logger, UA_LOGCATEGORY_USERLAND, "[Raspberry Pi] LED file exist, but I have no access (try to run server with sudo)");
  203. }
  204. }
  205. #endif
  206. // add a static variable node to the adresspace
  207. UA_Variant *myIntegerVariant = UA_Variant_new();
  208. UA_Int32 myInteger = 42;
  209. UA_Variant_setScalarCopy(myIntegerVariant, &myInteger, &UA_TYPES[UA_TYPES_INT32]);
  210. const UA_QualifiedName myIntegerName = UA_QUALIFIEDNAME(1, "the answer");
  211. const UA_NodeId myIntegerNodeId = UA_NODEID_STRING(1, "the.answer");
  212. UA_NodeId parentNodeId = UA_NODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER);
  213. UA_NodeId parentReferenceNodeId = UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES);
  214. UA_Server_addVariableNode(server, myIntegerVariant, myIntegerName,
  215. myIntegerNodeId, parentNodeId, parentReferenceNodeId);
  216. /**************/
  217. /* Demo Nodes */
  218. /**************/
  219. #define DEMOID 50000
  220. UA_Server_addObjectNode(server,UA_QUALIFIEDNAME(1, "Demo"), UA_NODEID_NUMERIC(1, DEMOID), UA_NODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER),
  221. UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES), UA_NODEID_NUMERIC(0, UA_NS0ID_FOLDERTYPE));
  222. #define SCALARID 50001
  223. UA_Server_addObjectNode(server,UA_QUALIFIEDNAME(1, "Scalar"), UA_NODEID_NUMERIC(1, SCALARID), UA_NODEID_NUMERIC(1, DEMOID),
  224. UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES), UA_NODEID_NUMERIC(0, UA_NS0ID_FOLDERTYPE));
  225. #define ARRAYID 50002
  226. UA_Server_addObjectNode(server,UA_QUALIFIEDNAME(1, "Array"), UA_NODEID_NUMERIC(1, ARRAYID), UA_NODEID_NUMERIC(1, DEMOID),
  227. UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES), UA_NODEID_NUMERIC(0, UA_NS0ID_FOLDERTYPE));
  228. #define MATRIXID 50003
  229. UA_Server_addObjectNode(server,UA_QUALIFIEDNAME(1, "Matrix"), UA_NODEID_NUMERIC(1, MATRIXID), UA_NODEID_NUMERIC(1, DEMOID),
  230. UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES), UA_NODEID_NUMERIC(0, UA_NS0ID_FOLDERTYPE));
  231. UA_UInt32 id = 51000; //running id in namespace 0
  232. for(UA_UInt32 type = 0; UA_IS_BUILTIN(type); type++) {
  233. if(type == UA_TYPES_VARIANT || type == UA_TYPES_DIAGNOSTICINFO)
  234. continue;
  235. //add a scalar node for every built-in type
  236. void *value = UA_new(&UA_TYPES[type]);
  237. UA_Variant *variant = UA_Variant_new();
  238. UA_Variant_setScalar(variant, value, &UA_TYPES[type]);
  239. char name[15];
  240. sprintf(name, "%02d", type);
  241. UA_QualifiedName qualifiedName = UA_QUALIFIEDNAME(1, name);
  242. UA_Server_addVariableNode(server, variant, qualifiedName, UA_NODEID_NUMERIC(1, ++id),
  243. UA_NODEID_NUMERIC(1, SCALARID), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  244. //add an array node for every built-in type
  245. UA_Variant *arrayvar = UA_Variant_new();
  246. UA_Variant_setArray(arrayvar, UA_Array_new(&UA_TYPES[type], 10), 10, &UA_TYPES[type]);
  247. UA_Server_addVariableNode(server, arrayvar, qualifiedName, UA_NODEID_NUMERIC(1, ++id),
  248. UA_NODEID_NUMERIC(1, ARRAYID), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  249. //add an matrix node for every built-in type
  250. arrayvar = UA_Variant_new();
  251. void* myMultiArray = UA_Array_new(&UA_TYPES[type],9);
  252. arrayvar->arrayDimensions = UA_Array_new(&UA_TYPES[UA_TYPES_INT32],2);
  253. arrayvar->arrayDimensions[0] = 3;
  254. arrayvar->arrayDimensions[1] = 3;
  255. arrayvar->arrayDimensionsSize = 2;
  256. arrayvar->arrayLength = 9;
  257. arrayvar->data = myMultiArray;
  258. arrayvar->type = &UA_TYPES[type];
  259. UA_Server_addVariableNode(server, arrayvar, qualifiedName, UA_NODEID_NUMERIC(1, ++id),
  260. UA_NODEID_NUMERIC(1, MATRIXID), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES));
  261. }
  262. #ifdef ENABLE_METHODCALLS
  263. UA_Argument inputArguments;
  264. UA_Argument_init(&inputArguments);
  265. inputArguments.arrayDimensionsSize = -1;
  266. inputArguments.arrayDimensions = NULL;
  267. inputArguments.dataType = UA_TYPES[UA_TYPES_STRING].typeId;
  268. inputArguments.description = UA_LOCALIZEDTEXT("en_US", "A String");
  269. inputArguments.name = UA_STRING("Input an integer");
  270. inputArguments.valueRank = -1;
  271. UA_Argument outputArguments;
  272. UA_Argument_init(&outputArguments);
  273. outputArguments.arrayDimensionsSize = -1;
  274. outputArguments.arrayDimensions = NULL;
  275. outputArguments.dataType = UA_TYPES[UA_TYPES_STRING].typeId;
  276. outputArguments.description = UA_LOCALIZEDTEXT("en_US", "A String");
  277. outputArguments.name = UA_STRING("Input an integer");
  278. outputArguments.valueRank = -1;
  279. UA_Server_addMethodNode(server, UA_QUALIFIEDNAME(1,"ping"), UA_NODEID_NUMERIC(1,62541),
  280. UA_EXPANDEDNODEID_NUMERIC(0, UA_NS0ID_OBJECTSFOLDER), UA_NODEID_NUMERIC(0, UA_NS0ID_ORGANIZES),
  281. &getMonitoredItems, 1, &inputArguments, 1, &outputArguments);
  282. #endif
  283. //start server
  284. UA_StatusCode retval = UA_Server_run(server, 1, &running); //blocks until running=false
  285. //ctrl-c received -> clean up
  286. UA_Server_delete(server);
  287. if(temperatureFile)
  288. fclose(temperatureFile);
  289. if(triggerFile) {
  290. fseek(triggerFile, 0, SEEK_SET);
  291. //setting led mode to default
  292. fprintf(triggerFile, "%s", "mmc0");
  293. fclose(triggerFile);
  294. }
  295. if(ledFile)
  296. fclose(ledFile);
  297. #ifdef UA_MULTITHREADING
  298. pthread_rwlock_destroy(&writeLock);
  299. #endif
  300. return retval;
  301. }