A force field effector. More...
#include "physxForceField.h"
Public Member Functions | |
virtual TypeHandle | force_init_type () |
PhysxForceFieldShapeGroup * | get_include_shape_group () const |
const char * | get_name () const |
unsigned int | get_num_shape_groups () const |
PhysxScene * | get_scene () const |
PhysxForceFieldShapeGroup * | get_shape_group (unsigned int idx) const |
virtual TypeHandle | get_type () const |
void | link (NxForceField *ptr) |
void | ls () const |
void | ls (std::ostream &out, int indent_level=0) const |
NxForceField * | ptr () const |
void | release () |
void | set_name (const char *name) |
void | unlink () |
Public Member Functions inherited from TypedReferenceCount | |
TypedReferenceCount (const TypedReferenceCount ©) | |
void | operator= (const TypedReferenceCount ©) |
Public Member Functions inherited from TypedObject | |
TypedObject (const TypedObject ©)=default | |
TypedObject * | as_typed_object () |
Returns the object, upcast (if necessary) to a TypedObject pointer. More... | |
const TypedObject * | as_typed_object () const |
Returns the object, upcast (if necessary) to a TypedObject pointer. More... | |
int | get_best_parent_from_Set (const std::set< int > &) const |
int | get_type_index () const |
Returns the internal index number associated with this object's TypeHandle, a unique number for each different type. More... | |
bool | is_exact_type (TypeHandle handle) const |
Returns true if the current object is the indicated type exactly. More... | |
bool | is_of_type (TypeHandle handle) const |
Returns true if the current object is or derives from the indicated type. More... | |
TypedObject & | operator= (const TypedObject ©)=default |
Public Member Functions inherited from ReferenceCount | |
int | get_ref_count () const |
WeakReferenceList * | get_weak_list () const |
Returns the WeakReferenceList associated with this ReferenceCount object. More... | |
bool | has_weak_list () const |
Returns true if this particular ReferenceCount object has a WeakReferenceList created, false otherwise. More... | |
void | local_object () |
This function should be called, once, immediately after creating a new instance of some ReferenceCount-derived object on the stack. More... | |
void | ref () const |
Explicitly increments the reference count. More... | |
bool | ref_if_nonzero () const |
Atomically increases the reference count of this object if it is not zero. More... | |
bool | test_ref_count_integrity () const |
Does some easy checks to make sure that the reference count isn't completely bogus. More... | |
bool | test_ref_count_nonzero () const |
Does some easy checks to make sure that the reference count isn't zero, or completely bogus. More... | |
virtual bool | unref () const |
Explicitly decrements the reference count. More... | |
WeakReferenceList * | weak_ref () |
Adds the indicated PointerToVoid as a weak reference to this object. More... | |
void | weak_unref () |
Removes the indicated PointerToVoid as a weak reference to this object. More... | |
Static Public Member Functions | |
static TypeHandle | get_class_type () |
static void | init_type () |
Static Public Member Functions inherited from PhysxObject | |
static TypeHandle | get_class_type () |
static void | init_type () |
Static Public Member Functions inherited from TypedReferenceCount | |
static TypeHandle | get_class_type () |
static void | init_type () |
Static Public Member Functions inherited from TypedObject | |
static TypeHandle | get_class_type () |
static void | init_type () |
This function is declared non-inline to work around a compiler bug in g++ 2.96. More... | |
Static Public Member Functions inherited from ReferenceCount | |
static TypeHandle | get_class_type () |
static void | init_type () |
Public Attributes | |
get_num_shape_groups | |
get_shape_group | |
Public Attributes inherited from TypedObject | |
get_type | |
Public Attributes inherited from ReferenceCount | |
get_ref_count | |
Returns the current reference count. More... | |
A force field effector.
Instances of this object automate the application of forces onto rigid bodies, fluid, soft bodies and cloth. Force fields allow you to implement for example gusts of wind, dust devils, vacuum cleaners or anti-gravity zones.
Definition at line 33 of file physxForceField.h.