// // Generated file, do not edit! Created by nedtool 5.6 from AEMessage.msg. // // Disable warnings about unused variables, empty switch stmts, etc: #ifdef _MSC_VER # pragma warning(disable:4101) # pragma warning(disable:4065) #endif #if defined(__clang__) # pragma clang diagnostic ignored "-Wshadow" # pragma clang diagnostic ignored "-Wconversion" # pragma clang diagnostic ignored "-Wunused-parameter" # pragma clang diagnostic ignored "-Wc++98-compat" # pragma clang diagnostic ignored "-Wunreachable-code-break" # pragma clang diagnostic ignored "-Wold-style-cast" #elif defined(__GNUC__) # pragma GCC diagnostic ignored "-Wshadow" # pragma GCC diagnostic ignored "-Wconversion" # pragma GCC diagnostic ignored "-Wunused-parameter" # pragma GCC diagnostic ignored "-Wold-style-cast" # pragma GCC diagnostic ignored "-Wsuggest-attribute=noreturn" # pragma GCC diagnostic ignored "-Wfloat-conversion" #endif #include #include #include "AEMessage_m.h" namespace omnetpp { // Template pack/unpack rules. They are declared *after* a1l type-specific pack functions for multiple reasons. // They are in the omnetpp namespace, to allow them to be found by argument-dependent lookup via the cCommBuffer argument // Packing/unpacking an std::vector template void doParsimPacking(omnetpp::cCommBuffer *buffer, const std::vector& v) { int n = v.size(); doParsimPacking(buffer, n); for (int i = 0; i < n; i++) doParsimPacking(buffer, v[i]); } template void doParsimUnpacking(omnetpp::cCommBuffer *buffer, std::vector& v) { int n; doParsimUnpacking(buffer, n); v.resize(n); for (int i = 0; i < n; i++) doParsimUnpacking(buffer, v[i]); } // Packing/unpacking an std::list template void doParsimPacking(omnetpp::cCommBuffer *buffer, const std::list& l) { doParsimPacking(buffer, (int)l.size()); for (typename std::list::const_iterator it = l.begin(); it != l.end(); ++it) doParsimPacking(buffer, (T&)*it); } template void doParsimUnpacking(omnetpp::cCommBuffer *buffer, std::list& l) { int n; doParsimUnpacking(buffer, n); for (int i=0; i void doParsimPacking(omnetpp::cCommBuffer *buffer, const std::set& s) { doParsimPacking(buffer, (int)s.size()); for (typename std::set::const_iterator it = s.begin(); it != s.end(); ++it) doParsimPacking(buffer, *it); } template void doParsimUnpacking(omnetpp::cCommBuffer *buffer, std::set& s) { int n; doParsimUnpacking(buffer, n); for (int i=0; i void doParsimPacking(omnetpp::cCommBuffer *buffer, const std::map& m) { doParsimPacking(buffer, (int)m.size()); for (typename std::map::const_iterator it = m.begin(); it != m.end(); ++it) { doParsimPacking(buffer, it->first); doParsimPacking(buffer, it->second); } } template void doParsimUnpacking(omnetpp::cCommBuffer *buffer, std::map& m) { int n; doParsimUnpacking(buffer, n); for (int i=0; i void doParsimArrayPacking(omnetpp::cCommBuffer *b, const T *t, int n) { for (int i = 0; i < n; i++) doParsimPacking(b, t[i]); } template void doParsimArrayUnpacking(omnetpp::cCommBuffer *b, T *t, int n) { for (int i = 0; i < n; i++) doParsimUnpacking(b, t[i]); } // Default rule to prevent compiler from choosing base class' doParsimPacking() function template void doParsimPacking(omnetpp::cCommBuffer *, const T& t) { throw omnetpp::cRuntimeError("Parsim error: No doParsimPacking() function for type %s", omnetpp::opp_typename(typeid(t))); } template void doParsimUnpacking(omnetpp::cCommBuffer *, T& t) { throw omnetpp::cRuntimeError("Parsim error: No doParsimUnpacking() function for type %s", omnetpp::opp_typename(typeid(t))); } } // namespace omnetpp // forward template std::ostream& operator<<(std::ostream& out, const std::vector& vec); // Template rule which fires if a struct or class doesn't have operator<< template inline std::ostream& operator<<(std::ostream& out,const T&) {return out;} // operator<< for std::vector template inline std::ostream& operator<<(std::ostream& out, const std::vector& vec) { out.put('{'); for(typename std::vector::const_iterator it = vec.begin(); it != vec.end(); ++it) { if (it != vec.begin()) { out.put(','); out.put(' '); } out << *it; } out.put('}'); char buf[32]; sprintf(buf, " (size=%u)", (unsigned int)vec.size()); out.write(buf, strlen(buf)); return out; } Register_Class(AEMessage) AEMessage::AEMessage(const char *name, short kind) : ::omnetpp::cMessage(name,kind) { this->queryID = 0; this->URI = 0; this->data = 0; this->op_code = 0; this->maxHop = 0; } AEMessage::AEMessage(const AEMessage& other) : ::omnetpp::cMessage(other) { copy(other); } AEMessage::~AEMessage() { } AEMessage& AEMessage::operator=(const AEMessage& other) { if (this==&other) return *this; ::omnetpp::cMessage::operator=(other); copy(other); return *this; } void AEMessage::copy(const AEMessage& other) { this->queryID = other.queryID; this->URI = other.URI; this->feature_type = other.feature_type; this->data = other.data; this->op_code = other.op_code; this->maxHop = other.maxHop; } void AEMessage::parsimPack(omnetpp::cCommBuffer *b) const { ::omnetpp::cMessage::parsimPack(b); doParsimPacking(b,this->queryID); doParsimPacking(b,this->URI); doParsimPacking(b,this->feature_type); doParsimPacking(b,this->data); doParsimPacking(b,this->op_code); doParsimPacking(b,this->maxHop); } void AEMessage::parsimUnpack(omnetpp::cCommBuffer *b) { ::omnetpp::cMessage::parsimUnpack(b); doParsimUnpacking(b,this->queryID); doParsimUnpacking(b,this->URI); doParsimUnpacking(b,this->feature_type); doParsimUnpacking(b,this->data); doParsimUnpacking(b,this->op_code); doParsimUnpacking(b,this->maxHop); } int AEMessage::getQueryID() const { return this->queryID; } void AEMessage::setQueryID(int queryID) { this->queryID = queryID; } int AEMessage::getURI() const { return this->URI; } void AEMessage::setURI(int URI) { this->URI = URI; } const char * AEMessage::getFeature_type() const { return this->feature_type.c_str(); } void AEMessage::setFeature_type(const char * feature_type) { this->feature_type = feature_type; } int AEMessage::getData() const { return this->data; } void AEMessage::setData(int data) { this->data = data; } int AEMessage::getOp_code() const { return this->op_code; } void AEMessage::setOp_code(int op_code) { this->op_code = op_code; } int AEMessage::getMaxHop() const { return this->maxHop; } void AEMessage::setMaxHop(int maxHop) { this->maxHop = maxHop; } class AEMessageDescriptor : public omnetpp::cClassDescriptor { private: mutable const char **propertynames; public: AEMessageDescriptor(); virtual ~AEMessageDescriptor(); virtual bool doesSupport(omnetpp::cObject *obj) const override; virtual const char **getPropertyNames() const override; virtual const char *getProperty(const char *propertyname) const override; virtual int getFieldCount() const override; virtual const char *getFieldName(int field) const override; virtual int findField(const char *fieldName) const override; virtual unsigned int getFieldTypeFlags(int field) const override; virtual const char *getFieldTypeString(int field) const override; virtual const char **getFieldPropertyNames(int field) const override; virtual const char *getFieldProperty(int field, const char *propertyname) const override; virtual int getFieldArraySize(void *object, int field) const override; virtual const char *getFieldDynamicTypeString(void *object, int field, int i) const override; virtual std::string getFieldValueAsString(void *object, int field, int i) const override; virtual bool setFieldValueAsString(void *object, int field, int i, const char *value) const override; virtual const char *getFieldStructName(int field) const override; virtual void *getFieldStructValuePointer(void *object, int field, int i) const override; }; Register_ClassDescriptor(AEMessageDescriptor) AEMessageDescriptor::AEMessageDescriptor() : omnetpp::cClassDescriptor("AEMessage", "omnetpp::cMessage") { propertynames = nullptr; } AEMessageDescriptor::~AEMessageDescriptor() { delete[] propertynames; } bool AEMessageDescriptor::doesSupport(omnetpp::cObject *obj) const { return dynamic_cast(obj)!=nullptr; } const char **AEMessageDescriptor::getPropertyNames() const { if (!propertynames) { static const char *names[] = { nullptr }; omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); const char **basenames = basedesc ? basedesc->getPropertyNames() : nullptr; propertynames = mergeLists(basenames, names); } return propertynames; } const char *AEMessageDescriptor::getProperty(const char *propertyname) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); return basedesc ? basedesc->getProperty(propertyname) : nullptr; } int AEMessageDescriptor::getFieldCount() const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); return basedesc ? 6+basedesc->getFieldCount() : 6; } unsigned int AEMessageDescriptor::getFieldTypeFlags(int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldTypeFlags(field); field -= basedesc->getFieldCount(); } static unsigned int fieldTypeFlags[] = { FD_ISEDITABLE, FD_ISEDITABLE, FD_ISEDITABLE, FD_ISEDITABLE, FD_ISEDITABLE, FD_ISEDITABLE, }; return (field>=0 && field<6) ? fieldTypeFlags[field] : 0; } const char *AEMessageDescriptor::getFieldName(int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldName(field); field -= basedesc->getFieldCount(); } static const char *fieldNames[] = { "queryID", "URI", "feature_type", "data", "op_code", "maxHop", }; return (field>=0 && field<6) ? fieldNames[field] : nullptr; } int AEMessageDescriptor::findField(const char *fieldName) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); int base = basedesc ? basedesc->getFieldCount() : 0; if (fieldName[0]=='q' && strcmp(fieldName, "queryID")==0) return base+0; if (fieldName[0]=='U' && strcmp(fieldName, "URI")==0) return base+1; if (fieldName[0]=='f' && strcmp(fieldName, "feature_type")==0) return base+2; if (fieldName[0]=='d' && strcmp(fieldName, "data")==0) return base+3; if (fieldName[0]=='o' && strcmp(fieldName, "op_code")==0) return base+4; if (fieldName[0]=='m' && strcmp(fieldName, "maxHop")==0) return base+5; return basedesc ? basedesc->findField(fieldName) : -1; } const char *AEMessageDescriptor::getFieldTypeString(int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldTypeString(field); field -= basedesc->getFieldCount(); } static const char *fieldTypeStrings[] = { "int", "int", "string", "int", "int", "int", }; return (field>=0 && field<6) ? fieldTypeStrings[field] : nullptr; } const char **AEMessageDescriptor::getFieldPropertyNames(int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldPropertyNames(field); field -= basedesc->getFieldCount(); } switch (field) { default: return nullptr; } } const char *AEMessageDescriptor::getFieldProperty(int field, const char *propertyname) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldProperty(field, propertyname); field -= basedesc->getFieldCount(); } switch (field) { default: return nullptr; } } int AEMessageDescriptor::getFieldArraySize(void *object, int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldArraySize(object, field); field -= basedesc->getFieldCount(); } AEMessage *pp = (AEMessage *)object; (void)pp; switch (field) { default: return 0; } } const char *AEMessageDescriptor::getFieldDynamicTypeString(void *object, int field, int i) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldDynamicTypeString(object,field,i); field -= basedesc->getFieldCount(); } AEMessage *pp = (AEMessage *)object; (void)pp; switch (field) { default: return nullptr; } } std::string AEMessageDescriptor::getFieldValueAsString(void *object, int field, int i) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldValueAsString(object,field,i); field -= basedesc->getFieldCount(); } AEMessage *pp = (AEMessage *)object; (void)pp; switch (field) { case 0: return long2string(pp->getQueryID()); case 1: return long2string(pp->getURI()); case 2: return oppstring2string(pp->getFeature_type()); case 3: return long2string(pp->getData()); case 4: return long2string(pp->getOp_code()); case 5: return long2string(pp->getMaxHop()); default: return ""; } } bool AEMessageDescriptor::setFieldValueAsString(void *object, int field, int i, const char *value) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->setFieldValueAsString(object,field,i,value); field -= basedesc->getFieldCount(); } AEMessage *pp = (AEMessage *)object; (void)pp; switch (field) { case 0: pp->setQueryID(string2long(value)); return true; case 1: pp->setURI(string2long(value)); return true; case 2: pp->setFeature_type((value)); return true; case 3: pp->setData(string2long(value)); return true; case 4: pp->setOp_code(string2long(value)); return true; case 5: pp->setMaxHop(string2long(value)); return true; default: return false; } } const char *AEMessageDescriptor::getFieldStructName(int field) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldStructName(field); field -= basedesc->getFieldCount(); } switch (field) { default: return nullptr; }; } void *AEMessageDescriptor::getFieldStructValuePointer(void *object, int field, int i) const { omnetpp::cClassDescriptor *basedesc = getBaseClassDescriptor(); if (basedesc) { if (field < basedesc->getFieldCount()) return basedesc->getFieldStructValuePointer(object, field, i); field -= basedesc->getFieldCount(); } AEMessage *pp = (AEMessage *)object; (void)pp; switch (field) { default: return nullptr; } }