sc::SelfConsistentExtrapolation(3) | Library Functions Manual | sc::SelfConsistentExtrapolation(3) |
sc::SelfConsistentExtrapolation - The SelfConsistentExtrapolation abstract class is used to iteratively solve equations requiring a self consistent solution, such as,.
#include <scextrap.h>
Inherits sc::SavableState.
Inherited by sc::DIIS.
SelfConsistentExtrapolation (StateIn &)
SelfConsistentExtrapolation (const Ref< KeyVal >
&)
The only keyword read is tolerance#, which is usually not needed since the
objects using SelfConsistentExtrapolation should set the tolerances
as needed. void save_data_state (StateOut &)
Save the base classes (with save_data_state) and the members in the same order
that the StateIn CTOR initializes them. void set_tolerance
(double t)
double tolerance ()
double error ()
int converged ()
virtual int extrapolate (const Ref< SCExtrapData >
&data, const Ref< SCExtrapError > &error)=0
virtual void start_extrapolation ()
virtual void reinitialize ()=0
Public Member Functions inherited from sc::SavableState
SavableState & operator= (const SavableState &)
void save_state (StateOut &)
Save the state of the object as specified by the StateOut object. void
save_object_state (StateOut &)
This can be used for saving state when the exact type of the object is known
for both the save and the restore. virtual void save_vbase_state
(StateOut &)
Save the virtual bases for the object.
Public Member Functions inherited from sc::DescribedClass
DescribedClass (const DescribedClass &)
DescribedClass & operator= (const DescribedClass
&)
ClassDesc * class_desc () const throw ()
This returns the unique pointer to the ClassDesc corresponding to the
given type_info object. const char * class_name () const
Return the name of the object's exact type. int class_version () const
Return the version of the class. virtual void print (std::ostream
&=ExEnv::out0()) const
Print the object.
Public Member Functions inherited from sc::RefCount
int lock_ptr () const
Lock this object. int unlock_ptr () const
Unlock this object. void use_locks (bool inVal)
start and stop using locks on this object refcount_t nreference ()
const
Return the reference count. refcount_t reference ()
Increment the reference count and return the new count. refcount_t
dereference ()
Decrement the reference count and return the new count. int managed ()
const
void unmanage ()
Turn off the reference counting mechanism for this object. int managed
() const
Return 1 if the object is managed. Otherwise return 0.
Public Member Functions inherited from sc::Identity
Identifier identifier ()
Return the Identifier for this argument.
void set_error (double e)
Protected Member Functions inherited from sc::SavableState
SavableState (const SavableState &)
SavableState (StateIn &)
Each derived class StateIn CTOR handles the restore corresponding to
calling save_object_state, save_vbase_state, and save_data_state listed
above.
Protected Member Functions inherited from sc::RefCount
RefCount (const RefCount &)
RefCount & operator= (const RefCount &)
Static Public Member Functions inherited from
sc::SavableState
static void save_state (SavableState *s, StateOut &)
static SavableState * restore_state (StateIn &si)
Restores objects saved with save_state. static SavableState *
key_restore_state (StateIn &si, const char *keyword)
Like restore_state, but keyword is used to override values while restoring.
static SavableState * dir_restore_state (StateIn
&si, const char *objectname, const char *keyword=0)
The SelfConsistentExtrapolation abstract class is used to iteratively solve equations requiring a self consistent solution, such as,.
The only keyword read is tolerance#, which is usually not needed since the objects using SelfConsistentExtrapolation should set the tolerances as needed.
Save the base classes (with save_data_state) and the members in the same order that the StateIn CTOR initializes them. This must be implemented by the derived class if the class has data.
Reimplemented from sc::SavableState.
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