added server2_client.h

This commit is contained in:
Lasan Mahaliyana
2026-02-28 22:16:29 +05:30
parent e02807a27e
commit 6040a367ac
@@ -0,0 +1,409 @@
/*
* This file was automatically generated by sdbus-c++-xml2cpp; DO NOT EDIT!
*/
#ifndef __sdbuscpp___home_lasan_Dev_nearby_latest_internal_platform_implementation_linux_generated_dbus_avahi_server2_client_h__proxy__H__
#define __sdbuscpp___home_lasan_Dev_nearby_latest_internal_platform_implementation_linux_generated_dbus_avahi_server2_client_h__proxy__H__
#include <sdbus-c++/sdbus-c++.h>
#include <string>
#include <tuple>
namespace org {
namespace freedesktop {
namespace Avahi {
class Server_proxy
{
public:
static constexpr const char* INTERFACE_NAME = "org.freedesktop.Avahi.Server";
protected:
Server_proxy(sdbus::IProxy& proxy)
: proxy_(&proxy)
{
proxy_->uponSignal("StateChanged").onInterface(INTERFACE_NAME).call([this](const int32_t& state, const std::string& error){ this->onStateChanged(state, error); });
}
Server_proxy(const Server_proxy&) = delete;
Server_proxy& operator=(const Server_proxy&) = delete;
Server_proxy(Server_proxy&&) = default;
Server_proxy& operator=(Server_proxy&&) = default;
~Server_proxy() = default;
virtual void onStateChanged(const int32_t& state, const std::string& error) = 0;
virtual void onResolveServiceReply(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const std::string& host, const int32_t& aprotocol, const std::string& address, const uint16_t& port, const std::vector<std::vector<uint8_t>>& txt, const uint32_t& flags, const sdbus::Error* error) = 0;
public:
std::string GetVersionString()
{
std::string result;
proxy_->callMethod("GetVersionString").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
uint32_t GetAPIVersion()
{
uint32_t result;
proxy_->callMethod("GetAPIVersion").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetHostName()
{
std::string result;
proxy_->callMethod("GetHostName").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
void SetHostName(const std::string& name)
{
proxy_->callMethod("SetHostName").onInterface(INTERFACE_NAME).withArguments(name);
}
std::string GetHostNameFqdn()
{
std::string result;
proxy_->callMethod("GetHostNameFqdn").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetDomainName()
{
std::string result;
proxy_->callMethod("GetDomainName").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
bool IsNSSSupportAvailable()
{
bool result;
proxy_->callMethod("IsNSSSupportAvailable").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
int32_t GetState()
{
int32_t result;
proxy_->callMethod("GetState").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
uint32_t GetLocalServiceCookie()
{
uint32_t result;
proxy_->callMethod("GetLocalServiceCookie").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetAlternativeHostName(const std::string& name)
{
std::string result;
proxy_->callMethod("GetAlternativeHostName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::string GetAlternativeServiceName(const std::string& name)
{
std::string result;
proxy_->callMethod("GetAlternativeServiceName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::string GetNetworkInterfaceNameByIndex(const int32_t& index)
{
std::string result;
proxy_->callMethod("GetNetworkInterfaceNameByIndex").onInterface(INTERFACE_NAME).withArguments(index).storeResultsTo(result);
return result;
}
int32_t GetNetworkInterfaceIndexByName(const std::string& name)
{
int32_t result;
proxy_->callMethod("GetNetworkInterfaceIndexByName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::tuple<int32_t, int32_t, std::string, int32_t, std::string, uint32_t> ResolveHostName(const int32_t& interface, const int32_t& protocol, const std::string& name, const int32_t& aprotocol, const uint32_t& flags)
{
std::tuple<int32_t, int32_t, std::string, int32_t, std::string, uint32_t> result;
proxy_->callMethod("ResolveHostName").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, aprotocol, flags).storeResultsTo(result);
return result;
}
std::tuple<int32_t, int32_t, int32_t, std::string, std::string, uint32_t> ResolveAddress(const int32_t& interface, const int32_t& protocol, const std::string& address, const uint32_t& flags)
{
std::tuple<int32_t, int32_t, int32_t, std::string, std::string, uint32_t> result;
proxy_->callMethod("ResolveAddress").onInterface(INTERFACE_NAME).withArguments(interface, protocol, address, flags).storeResultsTo(result);
return result;
}
sdbus::PendingAsyncCall ResolveService(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const int32_t& aprotocol, const uint32_t& flags)
{
return proxy_->callMethodAsync("ResolveService").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, type, domain, aprotocol, flags).uponReplyInvoke([this](const sdbus::Error* error, const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const std::string& host, const int32_t& aprotocol, const std::string& address, const uint16_t& port, const std::vector<std::vector<uint8_t>>& txt, const uint32_t& flags){ this->onResolveServiceReply(interface, protocol, name, type, domain, host, aprotocol, address, port, txt, flags, error); });
}
sdbus::ObjectPath EntryGroupNew()
{
sdbus::ObjectPath result;
proxy_->callMethod("EntryGroupNew").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
sdbus::ObjectPath DomainBrowserNew(const int32_t& interface, const int32_t& protocol, const std::string& domain, const int32_t& btype, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("DomainBrowserNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, domain, btype, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceTypeBrowserNew(const int32_t& interface, const int32_t& protocol, const std::string& domain, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceTypeBrowserNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, domain, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceBrowserNew(const int32_t& interface, const int32_t& protocol, const std::string& type, const std::string& domain, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceBrowserNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, type, domain, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceResolverNew(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const int32_t& aprotocol, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceResolverNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, type, domain, aprotocol, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath HostNameResolverNew(const int32_t& interface, const int32_t& protocol, const std::string& name, const int32_t& aprotocol, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("HostNameResolverNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, aprotocol, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath AddressResolverNew(const int32_t& interface, const int32_t& protocol, const std::string& address, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("AddressResolverNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, address, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath RecordBrowserNew(const int32_t& interface, const int32_t& protocol, const std::string& name, const uint16_t& clazz, const uint16_t& type, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("RecordBrowserNew").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, clazz, type, flags).storeResultsTo(result);
return result;
}
private:
sdbus::IProxy* proxy_;
};
}}} // namespaces
namespace org {
namespace freedesktop {
namespace Avahi {
class Server2_proxy
{
public:
static constexpr const char* INTERFACE_NAME = "org.freedesktop.Avahi.Server2";
protected:
Server2_proxy(sdbus::IProxy& proxy)
: proxy_(&proxy)
{
proxy_->uponSignal("StateChanged").onInterface(INTERFACE_NAME).call([this](const int32_t& state, const std::string& error){ this->onStateChanged(state, error); });
}
Server2_proxy(const Server2_proxy&) = delete;
Server2_proxy& operator=(const Server2_proxy&) = delete;
Server2_proxy(Server2_proxy&&) = default;
Server2_proxy& operator=(Server2_proxy&&) = default;
~Server2_proxy() = default;
virtual void onStateChanged(const int32_t& state, const std::string& error) = 0;
virtual void onResolveServiceReply(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const std::string& host, const int32_t& aprotocol, const std::string& address, const uint16_t& port, const std::vector<std::vector<uint8_t>>& txt, const uint32_t& flags, const sdbus::Error* error) = 0;
public:
std::string GetVersionString()
{
std::string result;
proxy_->callMethod("GetVersionString").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
uint32_t GetAPIVersion()
{
uint32_t result;
proxy_->callMethod("GetAPIVersion").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetHostName()
{
std::string result;
proxy_->callMethod("GetHostName").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
void SetHostName(const std::string& name)
{
proxy_->callMethod("SetHostName").onInterface(INTERFACE_NAME).withArguments(name);
}
std::string GetHostNameFqdn()
{
std::string result;
proxy_->callMethod("GetHostNameFqdn").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetDomainName()
{
std::string result;
proxy_->callMethod("GetDomainName").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
bool IsNSSSupportAvailable()
{
bool result;
proxy_->callMethod("IsNSSSupportAvailable").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
int32_t GetState()
{
int32_t result;
proxy_->callMethod("GetState").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
uint32_t GetLocalServiceCookie()
{
uint32_t result;
proxy_->callMethod("GetLocalServiceCookie").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
std::string GetAlternativeHostName(const std::string& name)
{
std::string result;
proxy_->callMethod("GetAlternativeHostName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::string GetAlternativeServiceName(const std::string& name)
{
std::string result;
proxy_->callMethod("GetAlternativeServiceName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::string GetNetworkInterfaceNameByIndex(const int32_t& index)
{
std::string result;
proxy_->callMethod("GetNetworkInterfaceNameByIndex").onInterface(INTERFACE_NAME).withArguments(index).storeResultsTo(result);
return result;
}
int32_t GetNetworkInterfaceIndexByName(const std::string& name)
{
int32_t result;
proxy_->callMethod("GetNetworkInterfaceIndexByName").onInterface(INTERFACE_NAME).withArguments(name).storeResultsTo(result);
return result;
}
std::tuple<int32_t, int32_t, std::string, int32_t, std::string, uint32_t> ResolveHostName(const int32_t& interface, const int32_t& protocol, const std::string& name, const int32_t& aprotocol, const uint32_t& flags)
{
std::tuple<int32_t, int32_t, std::string, int32_t, std::string, uint32_t> result;
proxy_->callMethod("ResolveHostName").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, aprotocol, flags).storeResultsTo(result);
return result;
}
std::tuple<int32_t, int32_t, int32_t, std::string, std::string, uint32_t> ResolveAddress(const int32_t& interface, const int32_t& protocol, const std::string& address, const uint32_t& flags)
{
std::tuple<int32_t, int32_t, int32_t, std::string, std::string, uint32_t> result;
proxy_->callMethod("ResolveAddress").onInterface(INTERFACE_NAME).withArguments(interface, protocol, address, flags).storeResultsTo(result);
return result;
}
sdbus::PendingAsyncCall ResolveService(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const int32_t& aprotocol, const uint32_t& flags)
{
return proxy_->callMethodAsync("ResolveService").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, type, domain, aprotocol, flags).uponReplyInvoke([this](const sdbus::Error* error, const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const std::string& host, const int32_t& aprotocol, const std::string& address, const uint16_t& port, const std::vector<std::vector<uint8_t>>& txt, const uint32_t& flags){ this->onResolveServiceReply(interface, protocol, name, type, domain, host, aprotocol, address, port, txt, flags, error); });
}
sdbus::ObjectPath EntryGroupNew()
{
sdbus::ObjectPath result;
proxy_->callMethod("EntryGroupNew").onInterface(INTERFACE_NAME).storeResultsTo(result);
return result;
}
sdbus::ObjectPath DomainBrowserPrepare(const int32_t& interface, const int32_t& protocol, const std::string& domain, const int32_t& btype, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("DomainBrowserPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, domain, btype, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceTypeBrowserPrepare(const int32_t& interface, const int32_t& protocol, const std::string& domain, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceTypeBrowserPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, domain, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceBrowserPrepare(const int32_t& interface, const int32_t& protocol, const std::string& type, const std::string& domain, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceBrowserPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, type, domain, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath ServiceResolverPrepare(const int32_t& interface, const int32_t& protocol, const std::string& name, const std::string& type, const std::string& domain, const int32_t& aprotocol, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("ServiceResolverPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, type, domain, aprotocol, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath HostNameResolverPrepare(const int32_t& interface, const int32_t& protocol, const std::string& name, const int32_t& aprotocol, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("HostNameResolverPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, aprotocol, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath AddressResolverPrepare(const int32_t& interface, const int32_t& protocol, const std::string& address, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("AddressResolverPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, address, flags).storeResultsTo(result);
return result;
}
sdbus::ObjectPath RecordBrowserPrepare(const int32_t& interface, const int32_t& protocol, const std::string& name, const uint16_t& clazz, const uint16_t& type, const uint32_t& flags)
{
sdbus::ObjectPath result;
proxy_->callMethod("RecordBrowserPrepare").onInterface(INTERFACE_NAME).withArguments(interface, protocol, name, clazz, type, flags).storeResultsTo(result);
return result;
}
private:
sdbus::IProxy* proxy_;
};
}}} // namespaces
#endif