__DIRECTOR__ renamed Swig::Director

SWIG_DIRECTOR_EXCEPTION renamed Swig::DirectorException (similarly for derived classes)


git-svn-id: https://swig.svn.sourceforge.net/svnroot/swig/trunk@5138 626c5289-ae23-0410-ae9c-e8d60b6d4f22
This commit is contained in:
William S Fulton 2003-09-22 20:13:42 +00:00
commit f569dd135d
20 changed files with 507 additions and 496 deletions

View file

@ -15,125 +15,128 @@
#include <string>
/* simple thread abstraction for pthreads or win32 */
namespace Swig {
/* simple thread abstraction for pthreads on win32 */
#ifdef __THREAD__
#define __PTHREAD__
#if defined(_WIN32) || defined(__WIN32__)
#define pthread_mutex_lock EnterCriticalSection
#define pthread_mutex_unlock LeaveCriticalSection
#define pthread_mutex_t CRITICAL_SECTION
#define MUTEX_INIT(var) CRITICAL_SECTION var
#else
#include <pthread.h>
#define MUTEX_INIT(var) pthread_mutex_t var = PTHREAD_MUTEX_INITIALIZER
#endif
#endif
/* director base class */
class __DIRECTOR__ {
private:
/* pointer to the wrapped ocaml object */
CAML_VALUE _self;
/* flag indicating whether the object is owned by ocaml or c++ */
mutable int _disown;
/* shared flag for breaking recursive director calls */
static int _up;
#ifdef __PTHREAD__
/* locks for sharing the _up flag in a threaded environment */
static pthread_mutex_t _mutex_up;
static int _mutex_active;
static pthread_t _mutex_thread;
#endif
/* reset the _up flag once the routing direction has been determined */
#ifdef __PTHREAD__
void __clear_up() const {
__DIRECTOR__::_up = 0;
__DIRECTOR__::_mutex_active = 0;
pthread_mutex_unlock(&_mutex_up);
}
#define __PTHREAD__
#if defined(_WIN32) || defined(__WIN32__)
#define pthread_mutex_lock EnterCriticalSection
#define pthread_mutex_unlock LeaveCriticalSection
#define pthread_mutex_t CRITICAL_SECTION
#define MUTEX_INIT(var) CRITICAL_SECTION var
#else
void __clear_up() const {
__DIRECTOR__::_up = 0;
}
#include <pthread.h>
#define MUTEX_INIT(var) pthread_mutex_t var = PTHREAD_MUTEX_INITIALIZER
#endif
#endif
public:
/* wrap a ocaml object, optionally taking ownership */
__DIRECTOR__(CAML_VALUE self, int disown): _self(self), _disown(disown) {
/* director base class */
class Director {
private:
/* pointer to the wrapped ocaml object */
CAML_VALUE _self;
/* flag indicating whether the object is owned by ocaml or c++ */
mutable int _disown;
/* shared flag for breaking recursive director calls */
static int _up;
#ifdef __PTHREAD__
/* locks for sharing the _up flag in a threaded environment */
static pthread_mutex_t _mutex_up;
static int _mutex_active;
static pthread_t _mutex_thread;
#endif
/* reset the _up flag once the routing direction has been determined */
#ifdef __PTHREAD__
void __clear_up() const {
Swig::Director::_up = 0;
Swig::Director::_mutex_active = 0;
pthread_mutex_unlock(&_mutex_up);
}
#else
void __clear_up() const {
Swig::Director::_up = 0;
}
#endif
public:
/* wrap a ocaml object, optionally taking ownership */
Director(CAML_VALUE self, int disown): _self(self), _disown(disown) {
register_global_root(&_self);
}
/* discard our reference at destruction */
virtual ~__DIRECTOR__() {
}
/* discard our reference at destruction */
virtual ~Director() {
remove_global_root(&_self);
__disown();
// Disown is safe here because we're just divorcing a reference that
// points to us.
}
/* return a pointer to the wrapped ocaml object */
CAML_VALUE __get_self() const {
return callback(*caml_named_value("caml_director_get_self"),_self);
}
}
/* get the _up flag to determine if the method call should be routed
* to the c++ base class or through the wrapped ocaml object
*/
/* return a pointer to the wrapped ocaml object */
CAML_VALUE __get_self() const {
return callback(*caml_named_value("caml_director_get_self"),_self);
}
/* get the _up flag to determine if the method call should be routed
* to the c++ base class or through the wrapped ocaml object
*/
#ifdef __PTHREAD__
int __get_up() const {
if (__DIRECTOR__::_mutex_active) {
if (pthread_equal(__DIRECTOR__::_mutex_thread, pthread_self())) {
int up = _up;
__clear_up();
return up;
}
int __get_up() const {
if (Swig::Director::_mutex_active) {
if (pthread_equal(Swig::Director::_mutex_thread, pthread_self())) {
int up = _up;
__clear_up();
return up;
}
}
return 0;
}
}
#else
int __get_up() const {
int __get_up() const {
int up = _up;
_up = 0;
return up;
}
}
#endif
/* set the _up flag if the next method call should be directed to
* the c++ base class rather than the wrapped ocaml object
*/
/* set the _up flag if the next method call should be directed to
* the c++ base class rather than the wrapped ocaml object
*/
#ifdef __PTHREAD__
void __set_up() const {
pthread_mutex_lock(&__DIRECTOR__::_mutex_up);
__DIRECTOR__::_mutex_thread = pthread_self();
__DIRECTOR__::_mutex_active = 1;
__DIRECTOR__::_up = 1;
}
void __set_up() const {
pthread_mutex_lock(&Swig::Director::_mutex_up);
Swig::Director::_mutex_thread = pthread_self();
Swig::Director::_mutex_active = 1;
Swig::Director::_up = 1;
}
#else
void __set_up() const {
__DIRECTOR__::_up = 1;
}
void __set_up() const {
Swig::Director::_up = 1;
}
#endif
/* acquire ownership of the wrapped ocaml object (the sense of "disown"
* is from ocaml) */
void __disown() const {
if (!_disown) {
_disown=1;
callback(*caml_named_value("caml_obj_disown"),_self);
}
}
};
int __DIRECTOR__::_up = 0;
/* acquire ownership of the wrapped ocaml object (the sense of "disown"
* is from ocaml) */
void __disown() const {
if (!_disown) {
_disown=1;
callback(*caml_named_value("caml_obj_disown"),_self);
}
}
};
int Swig::Director::_up = 0;
#ifdef __PTHREAD__
MUTEX_INIT(__DIRECTOR__::_mutex_up);
pthread_t __DIRECTOR__::_mutex_thread;
int __DIRECTOR__::_mutex_active = 0;
MUTEX_INIT(Swig::Director::_mutex_up);
pthread_t Swig::Director::_mutex_thread;
int Swig::Director::_mutex_active = 0;
#endif
}
#endif /* __cplusplus */
%}