- IEC 61850 client: added support for non-thread mode (IedConnection_createEx, IedConnection_tick)
- added example for non-thread mode client and asynchronous APIpull/93/head
parent
5ed474a44a
commit
388337a60d
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LIBIEC_HOME=../..
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PROJECT_BINARY_NAME = client_example_async
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PROJECT_SOURCES = client_example_async.c
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include $(LIBIEC_HOME)/make/target_system.mk
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include $(LIBIEC_HOME)/make/stack_includes.mk
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all: $(PROJECT_BINARY_NAME)
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include $(LIBIEC_HOME)/make/common_targets.mk
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$(PROJECT_BINARY_NAME): $(PROJECT_SOURCES) $(LIB_NAME)
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$(CC) $(CFLAGS) $(LDFLAGS) -o $(PROJECT_BINARY_NAME) $(PROJECT_SOURCES) $(INCLUDES) $(LIB_NAME) $(LDLIBS)
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clean:
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rm -f $(PROJECT_BINARY_NAME)
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set(iec61850_client_no_thread_SRCS
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client_example_no_thread.c
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)
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IF(WIN32)
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set_source_files_properties(${iec61850_client_no_thread_SRCS}
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PROPERTIES LANGUAGE CXX)
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ENDIF(WIN32)
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add_executable(iec61850_client_no_thread
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${iec61850_client_no_thread_SRCS}
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)
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target_link_libraries(iec61850_client_no_thread
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iec61850
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)
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LIBIEC_HOME=../..
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PROJECT_BINARY_NAME = client_example_no_thread
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PROJECT_SOURCES = client_example_no_thread.c
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include $(LIBIEC_HOME)/make/target_system.mk
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include $(LIBIEC_HOME)/make/stack_includes.mk
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all: $(PROJECT_BINARY_NAME)
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include $(LIBIEC_HOME)/make/common_targets.mk
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$(PROJECT_BINARY_NAME): $(PROJECT_SOURCES) $(LIB_NAME)
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$(CC) $(CFLAGS) $(LDFLAGS) -o $(PROJECT_BINARY_NAME) $(PROJECT_SOURCES) $(INCLUDES) $(LIB_NAME) $(LDLIBS)
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clean:
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rm -f $(PROJECT_BINARY_NAME)
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/*
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* client_example_no_thread.c
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*
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* Shows how to use IedConnection in non-thread mode together with the asynchronous client API
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*
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* NOTE:
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* - in non-thread mode only asynchronous service functions can be used!
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* - the IedConnection_tick function has to be called periodically
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* - the asynchronous API returns service results by callback functions
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*
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* This example is intended to be used with server_example_basic_io.
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*/
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#include "iec61850_client.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include "hal_thread.h"
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static ClientDataSet clientDataSet = NULL;
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static void
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printValue(char* name, MmsValue* value)
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{
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char buf[1000];
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MmsValue_printToBuffer(value, buf, 1000);
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printf("%s: %s\n", name, buf);
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}
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/* callback function for IedConnection_readObjectAsync */
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static void
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readObjectHandler (uint32_t invokeId, void* parameter, IedClientError err, MmsValue* value)
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{
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if (err == IED_ERROR_OK) {
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printValue((char*) parameter, value);
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MmsValue_delete(value);
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}
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else {
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printf("Failed to read object %s (err=%i)\n", (char*) parameter, err);
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}
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}
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/* callback function for IedConnection_readDataSetValuesAsync */
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static void
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readDataSetHandler(uint32_t invokeId, void* parameter, IedClientError err, ClientDataSet dataSet)
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{
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if (err == IED_ERROR_OK) {
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clientDataSet = dataSet;
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printf("Data set has %d entries\n", ClientDataSet_getDataSetSize(dataSet));
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MmsValue* values = ClientDataSet_getValues(dataSet);
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if (MmsValue_getType(values) == MMS_ARRAY) {
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int i;
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for (i = 0; i < MmsValue_getArraySize(values); i++) {
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printf(" [%i]", i);
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printValue("", MmsValue_getElement(values, i));
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}
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}
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}
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else {
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printf("Failed to read data set (err=%i)\n", err);
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}
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}
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static void
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writeDataSetHandler(uint32_t invokeId, void* parameter, IedClientError err, LinkedList /* <MmsValue*> */accessResults)
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{
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if (err == IED_ERROR_OK) {
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if (accessResults) {
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int i = 0;
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LinkedList element = LinkedList_getNext(accessResults);
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while (element) {
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MmsValue* accessResultValue = LinkedList_getData(element);
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printf(" access-result[%i]", i);
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printValue("", accessResultValue);
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element = LinkedList_getNext(element);
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i++;
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}
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LinkedList_destroyDeep(accessResults, (LinkedListValueDeleteFunction) MmsValue_delete);
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}
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}
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else {
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printf("Failed to write data set (err=%i)\n", err);
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}
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}
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static void
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reportCallbackFunction(void* parameter, ClientReport report)
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{
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MmsValue* dataSetValues = ClientReport_getDataSetValues(report);
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printf("received report for %s\n", ClientReport_getRcbReference(report));
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int i;
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for (i = 0; i < 4; i++) {
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ReasonForInclusion reason = ClientReport_getReasonForInclusion(report, i);
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if (reason != IEC61850_REASON_NOT_INCLUDED) {
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printf(" GGIO1.SPCSO%i.stVal: %i (included for reason %i)\n", i,
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MmsValue_getBoolean(MmsValue_getElement(dataSetValues, i)), reason);
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}
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}
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}
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static void
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getControlVariableVarSpecHandler(uint32_t invokeId, void* parameter, IedClientError err, MmsVariableSpecification* spec)
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{
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if (err == IED_ERROR_OK) {
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MmsVariableSpecification** ctlVarSpec = (MmsVariableSpecification**)parameter;
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*ctlVarSpec = spec;
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}
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else {
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printf("Failed to get variable specification for object %s (err=%i)\n", (char*) parameter, err);
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}
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}
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static void
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getVarSpecHandler (uint32_t invokeId, void* parameter, IedClientError err, MmsVariableSpecification* spec)
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{
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if (err == IED_ERROR_OK) {
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printf("variable: %s has type %d\n", (char*) parameter, MmsVariableSpecification_getType(spec));
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MmsVariableSpecification_destroy(spec);
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}
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else {
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printf("Failed to get variable specification for object %s (err=%i)\n", (char*) parameter, err);
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}
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}
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/* callback function for service functions IedConnection_getLogicalDeviceVariablesAsync, IedConnection_getLogicalDeviceDataSetsAsync */
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static void
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getNameListHandler(uint32_t invokeId, void* parameter, IedClientError err, LinkedList nameList, bool moreFollows)
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{
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if (err != IED_ERROR_OK) {
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printf("Get name list error: %d\n", err);
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}
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else {
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char* ldName = (char*) parameter;
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LinkedList element = LinkedList_getNext(nameList);
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while (element) {
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char* variableName = (char*) LinkedList_getData(element);
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printf(" %s/%s\n", ldName, variableName);
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element = LinkedList_getNext(element);
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}
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LinkedList_destroy(nameList);
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free(ldName);
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}
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}
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/* callback function for IedConnection_getServerDirectoryAsync */
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static void
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getServerDirectoryHandler(uint32_t invokeId, void* parameter, IedClientError err, LinkedList nameList, bool moreFollows)
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{
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IedConnection con = (IedConnection) parameter;
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if (err != IED_ERROR_OK) {
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printf("Get server directory error: %d\n", err);
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}
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else {
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LinkedList element = LinkedList_getNext(nameList);
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/* Call logical device variables for each logical node */
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while (element) {
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char* ldName = (char*) LinkedList_getData(element);
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printf("LD: %s variables:\n", ldName);
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IedConnection_getLogicalDeviceVariablesAsync(con, &err, ldName, NULL, NULL, getNameListHandler, strdup(ldName));
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printf("LD: %s data sets:\n", ldName);
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IedConnection_getLogicalDeviceDataSetsAsync(con, &err, ldName, NULL, NULL, getNameListHandler, strdup(ldName));
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element = LinkedList_getNext(element);
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}
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LinkedList_destroy(nameList);
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}
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}
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static void
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controlActionHandler(uint32_t invokeId, void* parameter, IedClientError err, ControlActionType type, bool success)
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{
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printf("control: ID: %d type: %i err: %d success: %i\n", invokeId, type, err, success);
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}
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static void
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stateChangedHandler(void* parameter, IedConnection connection, IedConnectionState newState)
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{
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}
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static void waitWithTick(IedConnection con, int waitMs)
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{
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uint64_t startTime = Hal_getTimeInMs();
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while (Hal_getTimeInMs() < (startTime + (uint64_t) waitMs))
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{
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if (IedConnection_tick(con) == true)
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Thread_sleep(10);
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}
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}
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int
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main(int argc, char** argv) {
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char* hostname;
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int tcpPort = 102;
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if (argc > 1)
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hostname = argv[1];
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else
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hostname = "localhost";
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if (argc > 2)
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tcpPort = atoi(argv[2]);
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IedClientError error;
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/* create new IedConnection with non-thread mode */
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IedConnection con = IedConnection_createEx(NULL, false);
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/* track connection state change */
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IedConnection_installStateChangedHandler(con, stateChangedHandler, NULL);
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/* invoke association with server */
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IedConnection_connectAsync(con, &error, hostname, tcpPort);
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if (error == IED_ERROR_OK) {
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bool success = true;
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/* Call IedConnection_tick until state is CONNECTED or CLOSED */
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while (IedConnection_getState(con) != IED_STATE_CONNECTED) {
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if (IedConnection_getState(con) == IED_STATE_CLOSED) {
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success = false;
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break;
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}
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if (IedConnection_tick(con) == true)
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Thread_sleep(10);
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}
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if (success) {
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IedConnection_getServerDirectoryAsync(con, &error, NULL, NULL, getServerDirectoryHandler, con);
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if (error != IED_ERROR_OK) {
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printf("read server directory error %i\n", error);
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}
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waitWithTick(con, 1000);
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// ClientReportControlBlock_create()
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IedConnection_readObjectAsync(con, &error, "simpleIOGenericIO/GGIO1.AnIn1.mag.f", IEC61850_FC_MX, readObjectHandler, "simpleIOGenericIO/GGIO1.AnIn1.mag.f");
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if (error != IED_ERROR_OK) {
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printf("read object error %i\n", error);
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}
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waitWithTick(con, 1000);
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IedConnection_readObjectAsync(con, &error, "simpleIOGenericIO/GGIO1.AnIn2.mag.f", IEC61850_FC_MX, readObjectHandler, "simpleIOGenericIO/GGIO1.AnIn2.mag.f");
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if (error != IED_ERROR_OK) {
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printf("read object error %i\n", error);
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}
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waitWithTick(con, 1000);
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IedConnection_getVariableSpecificationAsync(con, &error, "simpleIOGenericIO/GGIO1.AnIn1", IEC61850_FC_MX, getVarSpecHandler, "simpleIOGenericIO/GGIO1.AnIn1");
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if (error != IED_ERROR_OK) {
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printf("get variable specification error %i\n", error);
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}
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waitWithTick(con, 1000);
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IedConnection_readDataSetValuesAsync(con, &error, "simpleIOGenericIO/LLN0.Events", NULL, readDataSetHandler, NULL);
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if (error != IED_ERROR_OK) {
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printf("read data set error %i\n", error);
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}
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waitWithTick(con, 1000);
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LinkedList values = LinkedList_create();
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LinkedList_add(values, MmsValue_newBoolean(true));
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LinkedList_add(values, MmsValue_newBoolean(false));
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LinkedList_add(values, MmsValue_newBoolean(true));
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LinkedList_add(values, MmsValue_newBoolean(false));
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IedConnection_writeDataSetValuesAsync(con, &error, "simpleIOGenericIO/LLN0.Events", values, writeDataSetHandler, NULL);
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if (error != IED_ERROR_OK) {
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printf("write data set error %i\n", error);
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}
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waitWithTick(con, 1000);
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LinkedList_destroyDeep(values, (LinkedListValueDeleteFunction) MmsValue_delete);
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waitWithTick(con, 1000);
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/* Get the varibale specification for the controllable data object by online service */
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MmsVariableSpecification* ctlVarSpec = NULL;
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IedConnection_getVariableSpecificationAsync(con, &error, "simpleIOGenericIO/GGIO1.SPCSO1", IEC61850_FC_CO,
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getControlVariableVarSpecHandler, &ctlVarSpec);
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waitWithTick(con, 1000);
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if (ctlVarSpec != NULL) {
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/* ControlObjectClient_create function cannot be used in non-thread mode - use ControlObjectClient_createEx instead */
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ControlObjectClient controlClient = ControlObjectClient_createEx("simpleIOGenericIO/GGIO1.SPCSO1", con,
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CONTROL_MODEL_DIRECT_NORMAL, ctlVarSpec);
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if (controlClient != NULL) {
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ControlObjectClient_setOrigin(controlClient, "test1", CONTROL_ORCAT_AUTOMATIC_REMOTE);
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MmsValue* ctlVal = MmsValue_newBoolean(true);
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ControlObjectClient_operateAsync(controlClient, &error, ctlVal, 0, controlActionHandler, NULL);
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waitWithTick(con, 1000);
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MmsValue_delete(ctlVal);
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if (error != IED_ERROR_OK) {
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printf("Failed to send operate %i\n", error);
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}
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ControlObjectClient_destroy(controlClient);
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}
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else {
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printf("Failed to connect to control object\n");
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}
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MmsVariableSpecification_destroy(ctlVarSpec);
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}
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}
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IedConnection_releaseAsync(con, &error);
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if (error != IED_ERROR_OK) {
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printf("Release returned error: %d\n", error);
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}
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else {
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/* Call IedConnection_tick until state is CLOSED */
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while (IedConnection_getState(con) != IED_STATE_CLOSED) {
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if (IedConnection_tick(con) == true)
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Thread_sleep(10);
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}
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}
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}
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else {
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printf("Failed to connect to %s:%i\n", hostname, tcpPort);
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}
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if (clientDataSet)
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ClientDataSet_destroy(clientDataSet);
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IedConnection_destroy(con);
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}
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