var_struct.cpp
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CPP
275 行
// var_struct.cpp,v 1.22 2003/08/14 22:45:36 parsons Exp
// ============================================================================
//
// = LIBRARY
// TAO/tests/Param_Test
//
// = FILENAME
// var_struct.cpp
//
// = DESCRIPTION
// test variable sized structures
//
// = AUTHORS
// Aniruddha Gokhale
//
// ============================================================================
#include "helper.h"
#include "var_struct.h"
ACE_RCSID (Param_Test,
var_struct,
"var_struct.cpp,v 1.22 2003/08/14 22:45:36 parsons Exp")
// ************************************************************************
// Test_Var_Struct
// ************************************************************************
Test_Var_Struct::Test_Var_Struct (void)
: opname_ (CORBA::string_dup ("test_var_struct")),
inout_ (new Param_Test::Var_Struct),
out_ (new Param_Test::Var_Struct),
ret_ (new Param_Test::Var_Struct)
{
}
Test_Var_Struct::~Test_Var_Struct (void)
{
CORBA::string_free (this->opname_);
this->opname_ = 0;
// the other data members will be freed as they are "_var"s and objects
// (rather than pointers to objects)
}
const char *
Test_Var_Struct::opname (void) const
{
return this->opname_;
}
void
Test_Var_Struct::dii_req_invoke (CORBA::Request *req
ACE_ENV_ARG_DECL)
{
req->add_in_arg ("s1") <<= this->in_;
req->add_inout_arg ("s2") <<= this->inout_.in ();
req->add_out_arg ("s3") <<= this->out_.in ();
req->set_return_type (Param_Test::_tc_Var_Struct);
req->invoke (ACE_ENV_SINGLE_ARG_PARAMETER);
ACE_CHECK;
Param_Test::Var_Struct *tmp;
req->return_value () >>= tmp;
this->ret_ = new Param_Test::Var_Struct (*tmp);
CORBA::NamedValue_ptr o2 =
req->arguments ()->item (1 ACE_ENV_ARG_PARAMETER);
ACE_CHECK;
*o2->value () >>= tmp;
this->inout_ = new Param_Test::Var_Struct (*tmp);
CORBA::NamedValue_ptr o3 =
req->arguments ()->item (2 ACE_ENV_ARG_PARAMETER);
ACE_CHECK;
*o3->value () >>= tmp;
this->out_ = new Param_Test::Var_Struct (*tmp);
}
int
Test_Var_Struct::init_parameters (Param_Test_ptr
ACE_ENV_ARG_DECL_NOT_USED)
{
Generator *gen = GENERATOR::instance (); // value generator
// get some sequence length (not more than 10)
CORBA::ULong len = (CORBA::ULong) (gen->gen_long () % 10) + 1;
this->in_.dbl = 3.14159;
this->in_.dummy1 = gen->gen_string ();
this->in_.boole = gen->gen_short () % 2;
this->in_.dummy2 = gen->gen_string ();
this->in_.shrt = gen->gen_short ();
// set the length of the sequence
this->in_.seq.length (len);
// now set each individual element
for (CORBA::ULong i = 0; i < this->in_.seq.length (); i++)
{
// generate some arbitrary string to be filled into the ith location in
// the sequence
char *str = gen->gen_string ();
this->in_.seq[i] = str;
}
this->inout_->dbl = 0.0;
this->inout_->dummy1 = CORBA::string_dup ("");
this->inout_->boole = 0;
this->inout_->dummy2 = CORBA::string_dup ("");
this->inout_->shrt = 0;
// set the length of the sequence
this->inout_->seq.length (0);
return 0;
}
int
Test_Var_Struct::reset_parameters (void)
{
this->inout_ = new Param_Test::Var_Struct; // delete the previous ones
this->out_ = new Param_Test::Var_Struct;
this->ret_ = new Param_Test::Var_Struct;
this->inout_->dbl = 0.0;
this->inout_->dummy1 = CORBA::string_dup ("");
this->inout_->boole = 0;
this->inout_->dummy2 = CORBA::string_dup ("");
this->inout_->shrt = 0;
// set the length of the sequence
this->inout_->seq.length (0);
return 0;
}
int
Test_Var_Struct::run_sii_test (Param_Test_ptr objref
ACE_ENV_ARG_DECL)
{
ACE_TRY
{
Param_Test::Var_Struct_out out (this->out_.out ());
this->ret_ = objref->test_var_struct (this->in_,
this->inout_.inout (),
out
ACE_ENV_ARG_PARAMETER);
ACE_TRY_CHECK;
return 0;
}
ACE_CATCHANY
{
ACE_PRINT_EXCEPTION (ACE_ANY_EXCEPTION,
"Test_Var_Struct::run_sii_test\n");
}
ACE_ENDTRY;
return -1;
}
CORBA::Boolean
Test_Var_Struct::check_validity (void)
{
CORBA::Boolean flag = 0;
if (this->in_.dbl == this->inout_->dbl &&
this->in_.dbl == this->out_->dbl &&
this->in_.dbl == this->ret_->dbl &&
(!ACE_OS::strcmp (this->in_.dummy1, this->inout_->dummy1)) &&
(!ACE_OS::strcmp (this->in_.dummy1, this->out_->dummy1)) &&
(!ACE_OS::strcmp (this->in_.dummy1, this->ret_->dummy1)) &&
this->in_.boole == this->inout_->boole &&
this->in_.boole == this->out_->boole &&
this->in_.boole == this->ret_->boole &&
(!ACE_OS::strcmp (this->in_.dummy2, this->inout_->dummy2)) &&
(!ACE_OS::strcmp (this->in_.dummy2, this->out_->dummy2)) &&
(!ACE_OS::strcmp (this->in_.dummy2, this->ret_->dummy2)) &&
this->in_.shrt == this->inout_->shrt &&
this->in_.shrt == this->out_->shrt &&
this->in_.shrt == this->ret_->shrt &&
(this->in_.seq.length () == this->inout_->seq.length ()) &&
(this->in_.seq.length () == this->out_->seq.length ()) &&
(this->in_.seq.length () == this->ret_->seq.length ()))
{
flag = 1; // assume all are equal
// lengths are same. Now compare the contents
for (CORBA::ULong i=0; i < this->in_.seq.length () && flag; i++)
{
if (ACE_OS::strcmp (this->in_.seq[i], this->inout_->seq[i]) ||
ACE_OS::strcmp (this->in_.seq[i], this->out_->seq[i]) ||
ACE_OS::strcmp (this->in_.seq[i], this->ret_->seq[i]))
// not equal
flag = 0;
}
}
return flag;
}
CORBA::Boolean
Test_Var_Struct::check_validity (CORBA::Request_ptr )
{
return this->check_validity ();
}
void
Test_Var_Struct::print_values (void)
{
ACE_DEBUG ((LM_DEBUG,
"\n*=*=*=*=*=*=*=*=*=*=\n"
"in_.dummy1 = %s\n"
"inout_.dummy1 = %s\n"
"out_.dummy1 = %s\n"
"ret_.dummy1 = %s\n",
this->in_.dummy1.in (),
this->inout_->dummy1.in (),
this->out_->dummy1.in (),
this->ret_->dummy1.in ()));
ACE_DEBUG ((LM_DEBUG,
"\n*=*=*=*=*=*=*=*=*=*=\n"
"in_.dummy2 = %s\n"
"inout_.dummy2 = %s\n"
"out_.dummy2 = %s\n"
"ret_.dummy2 = %s\n",
this->in_.dummy2.in (),
this->inout_->dummy2.in (),
this->out_->dummy2.in (),
this->ret_->dummy2.in ()));
CORBA::ULong i;
ACE_DEBUG ((LM_DEBUG, "\n*=*=*=*=*=*=*=*=*=*=\n"));
for (i=0; i < this->in_.seq.length (); i++)
{
ACE_DEBUG ((LM_DEBUG,
"Element #%d\n"
"in.seq : %s\n",
i,
(this->in_.seq[i]? (const char *)this->in_.seq[i]:"<nul>")));
}
ACE_DEBUG ((LM_DEBUG, "\n*=*=*=*=*=*=*=*=*=*=\n"));
for (i=0; this->inout_.ptr () && (i < this->inout_->seq.length ()); i++)
{
ACE_DEBUG ((LM_DEBUG,
"Element #%d\n"
"inout : %s\n",
i,
(this->inout_->seq[i]? (const char *)this->inout_->seq[i]:"<nul>")));
}
if (!this->inout_.ptr ())
ACE_DEBUG ((LM_DEBUG, "\ninout struct does not exist\n"));
ACE_DEBUG ((LM_DEBUG, "\n*=*=*=*=*=*=*=*=*=*=\n"));
for (i=0; this->out_.ptr () && (i < this->out_->seq.length ()); i++)
{
ACE_DEBUG ((LM_DEBUG,
"Element #%d\n"
"in : %s\n",
i,
(this->out_->seq[i]? (const char *)this->out_->seq[i]:"<nul>")));
}
if (!this->out_.ptr ())
ACE_DEBUG ((LM_DEBUG, "\nout struct is NUL\n"));
ACE_DEBUG ((LM_DEBUG, "\n*=*=*=*=*=*=*=*=*=*=\n"));
for (i=0; this->ret_.ptr () && (i < this->ret_->seq.length ()); i++)
{
ACE_DEBUG ((LM_DEBUG,
"Element #%d\n"
"in : %s\n",
i,
(this->ret_->seq[i]? (const char *)this->ret_->seq[i]:"<nul>")));
}
if (!this->ret_.ptr ())
ACE_DEBUG ((LM_DEBUG, "\nret struct is NUL\n"));
ACE_DEBUG ((LM_DEBUG, "\n*=*=*=*=*=*=*=*=*=*=\n"));
}
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