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#include "tao/Messaging/AMH_Response_Handler.h"
#include "tao/TAO_Server_Request.h"
#include "tao/Transport.h"
#include "tao/CDR.h"
#include "tao/ORB_Core.h"
#include "tao/ORB.h"
#include "tao/GIOP_Message_Base.h"
#include "tao/Pluggable_Messaging_Utils.h"
#include "tao/GIOP_Utils.h"
#include "tao/debug.h"
#include "tao/Buffer_Allocator_T.h"
#include "tao/SystemException.h"
#include "tao/PortableServer/ForwardRequestC.h"
#include "ace/Copy_Disabled.h"
TAO_BEGIN_VERSIONED_NAMESPACE_DECL
TAO_AMH_Response_Handler::TAO_AMH_Response_Handler ()
: reply_status_ (GIOP::NO_EXCEPTION)
, mesg_base_ (0)
, request_id_ (0)
, response_expected_ (0)
, transport_ (0)
, orb_core_ (0)
, argument_flag_ (1)
, rh_reply_status_ (TAO_RS_UNINITIALIZED)
, allocator_ (0)
{
}
TAO_AMH_Response_Handler::~TAO_AMH_Response_Handler ()
{
this->transport_->remove_reference ();
// Since we are destroying the object we put a huge lock around the
// whole destruction process (just paranoid).
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
if (this->response_expected_ == 0) //oneway ?
{
return;
}
// If the ResponseHandler is being destroyed before a reply has
// been sent to the client, we send a system exception
// CORBA::NO_RESPONSE, with minor code to indicate the problem.
if (this->rh_reply_status_ == TAO_RS_SENT)
{
return;
}
}
// If sending the exception to the client fails, then we just give
// up, release the transport and return.
try
{
CORBA::NO_RESPONSE ex (CORBA::SystemException::_tao_minor_code
(TAO_AMH_REPLY_LOCATION_CODE,
EFAULT),
CORBA::COMPLETED_NO);
this->_tao_rh_send_exception (ex);
}
catch (...)
{
}
}
void
TAO_AMH_Response_Handler::init(TAO_ServerRequest &server_request,
TAO_AMH_BUFFER_ALLOCATOR* allocator)
{
mesg_base_ = server_request.mesg_base_;
request_id_ = server_request.request_id_;
response_expected_ = server_request.response_expected_;
transport_ = server_request.transport ();
orb_core_ = server_request.orb_core ();
allocator_ = allocator;
TAO_GIOP_Message_Version v;
server_request.outgoing()->get_version(v);
this->_tao_out.set_version(v.major, v.minor);
this->transport_->assign_translators (0, &this->_tao_out);
this->transport_->add_reference ();
}
void
TAO_AMH_Response_Handler::_tao_rh_init_reply ()
{
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
if (this->rh_reply_status_ != TAO_RS_UNINITIALIZED)
{
// Looks like someone is trying to call an AMH method
// more than once
//
// We assume that the servant has already processed the
// request and is now trying to send back the reply. Hence we
// say that the operation has completed but let the server
// anyway that it is not doing something right.
throw ::CORBA::BAD_INV_ORDER
(CORBA::SystemException::_tao_minor_code
(TAO_AMH_REPLY_LOCATION_CODE,
EEXIST),
CORBA::COMPLETED_YES);
}
}
// Construct our reply generator.
TAO_Pluggable_Reply_Params_Base reply_params;
reply_params.request_id_ = this->request_id_;
reply_params.service_context_notowned (&(this->reply_service_context_.service_info ()));
reply_params.argument_flag_ = this->argument_flag_;
reply_params.reply_status (this->reply_status_);
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
this->mesg_base_->generate_reply_header (this->_tao_out, reply_params);
// We are done initialising the reply
this->rh_reply_status_ = TAO_RS_INITIALIZED;
}
}
void
TAO_AMH_Response_Handler::_tao_rh_send_reply ()
{
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
// If the reply has not been initialised, raise an exception to the
// server-app saying it is not doing something right.
if (this->rh_reply_status_ != TAO_RS_INITIALIZED)
{
throw ::CORBA::BAD_INV_ORDER (
CORBA::SystemException::_tao_minor_code (
TAO_AMH_REPLY_LOCATION_CODE,
ENOTSUP),
CORBA::COMPLETED_YES);
}
this->rh_reply_status_ = TAO_RS_SENDING;
}
// Send the message.
int result = this->transport_->send_message (this->_tao_out,
0,
0,
TAO_Message_Semantics (TAO_Message_Semantics::TAO_REPLY));
if (result == -1)
{
if (TAO_debug_level > 0)
{
// No exception but some kind of error, yet a response
// is required.
TAOLIB_ERROR ((
LM_ERROR,
ACE_TEXT ("TAO: (%P|%t) %p: cannot send NO_EXCEPTION reply\n"),
ACE_TEXT ("TAO_AMH_Response_Handler::_tao_rh_send_reply")
));
}
}
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
this->rh_reply_status_ = TAO_RS_SENT;
}
}
void
TAO_AMH_Response_Handler::_tao_rh_send_exception (const CORBA::Exception &ex)
{
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
if (this->rh_reply_status_ != TAO_RS_UNINITIALIZED)
{
throw ::CORBA::BAD_INV_ORDER (
CORBA::SystemException::_tao_minor_code (
TAO_AMH_REPLY_LOCATION_CODE,
ENOTSUP),
CORBA::COMPLETED_YES);
}
this->rh_reply_status_ = TAO_RS_SENDING;
}
TAO_Pluggable_Reply_Params_Base reply_params;
reply_params.request_id_ = this->request_id_;
reply_params.svc_ctx_.length (0);
reply_params.service_context_notowned (&this->reply_service_context_.service_info ());
reply_params.argument_flag_ = true;
// @@ It appears as if there should be a more efficient way to do
// this: the caller already knows this because it is part of the
// ExceptionHolder information.
#if !defined (CORBA_E_COMPACT) && !defined (CORBA_E_MICRO) && (TAO_HAS_MINIMUM_POA == 0)
const PortableServer::ForwardRequest *fr =
PortableServer::ForwardRequest::_downcast (&ex);
if (fr != 0)
{
reply_params.reply_status (GIOP::LOCATION_FORWARD);
if (this->mesg_base_->generate_reply_header (this->_tao_out,
reply_params) == -1)
{
throw ::CORBA::INTERNAL ();
}
this->_tao_out << fr->forward_reference;
}
else
#endif
{
if (CORBA::SystemException::_downcast (&ex))
{
reply_params.reply_status (GIOP::SYSTEM_EXCEPTION);
}
else
{
reply_params.reply_status (GIOP::USER_EXCEPTION);
}
if (this->mesg_base_->generate_exception_reply (this->_tao_out,
reply_params,
ex) == -1)
{
throw ::CORBA::INTERNAL ();
}
}
// Send the Exception
if (this->transport_->send_message (this->_tao_out,
0,
0,
TAO_Message_Semantics (TAO_Message_Semantics::TAO_REPLY)) == -1)
{
if (TAO_debug_level > 0)
TAOLIB_ERROR ((LM_ERROR,
ACE_TEXT ("TAO: (%P|%t|%N|%l): ")
ACE_TEXT ("TAO_AMH_Response_Handler:")
ACE_TEXT (" could not send exception reply\n")));
}
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
this->rh_reply_status_ = TAO_RS_SENT;
}
}
void
TAO_AMH_Response_Handler::_tao_rh_send_location_forward (CORBA::Object_ptr fwd,
CORBA::Boolean is_perm)
{
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
if (this->rh_reply_status_ != TAO_RS_UNINITIALIZED)
{
throw ::CORBA::BAD_INV_ORDER (
CORBA::SystemException::_tao_minor_code (
TAO_AMH_REPLY_LOCATION_CODE,
ENOTSUP),
CORBA::COMPLETED_YES);
}
this->rh_reply_status_ = TAO_RS_SENDING;
}
TAO_Pluggable_Reply_Params_Base reply_params;
reply_params.request_id_ = this->request_id_;
reply_params.svc_ctx_.length (0);
reply_params.service_context_notowned (&this->reply_service_context_.service_info ());
reply_params.argument_flag_ = true;
if (is_perm)
{
reply_params.reply_status (GIOP::LOCATION_FORWARD_PERM);
}
else
{
reply_params.reply_status (GIOP::LOCATION_FORWARD);
}
if (this->mesg_base_->generate_reply_header (this->_tao_out,
reply_params) == -1)
{
throw ::CORBA::INTERNAL ();
}
if (!(this->_tao_out << fwd))
{
if (TAO_debug_level > 0)
TAOLIB_ERROR ((LM_ERROR,
ACE_TEXT ("TAO (%P|%t) ERROR: Unable to marshal ")
ACE_TEXT ("forward reference.\n")));
return;
}
// Send the Exception
if (this->transport_->send_message (this->_tao_out,
0,
0,
TAO_Message_Semantics (TAO_Message_Semantics::TAO_REPLY)) == -1)
{
if (TAO_debug_level > 0)
TAOLIB_ERROR ((LM_ERROR,
ACE_TEXT ("TAO: (%P|%t|%N|%l): ")
ACE_TEXT ("TAO_AMH_Response_Handler: could not send ")
ACE_TEXT ("location forward reply\n")));
}
{
ACE_GUARD (TAO_SYNCH_MUTEX, ace_mon, this->mutex_);
this->rh_reply_status_ = TAO_RS_SENT;
}
}
void
TAO_AMH_Response_Handler::_remove_ref ()
{
if (--this->refcount_ == 0)
{
if (this->allocator_)
{
TAO::TAO_Buffer_Allocator<TAO_AMH_Response_Handler, TAO_AMH_BUFFER_ALLOCATOR> allocator (this->allocator_);
allocator.release (this);
}
else
{
delete this;
}
}
}
namespace TAO
{
void
ARH_Refcount_Functor::operator () (TAO_AMH_Response_Handler *arh) throw ()
{
(void) arh->_remove_ref ();
}
}
TAO_END_VERSIONED_NAMESPACE_DECL
|