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FaultCohesiveKin.i
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FaultCohesiveKin.i
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// -*- C++ -*-
//
// ----------------------------------------------------------------------
//
// Brad T. Aagaard, U.S. Geological Survey
// Charles A. Williams, GNS Science
// Matthew G. Knepley, University of Chicago
//
// This code was developed as part of the Computational Infrastructure
// for Geodynamics (http://geodynamics.org).
//
// Copyright (c) 2010-2012 University of California, Davis
//
// See COPYING for license information.
//
// ----------------------------------------------------------------------
//
/** @file modulesrc/faults/FaultCohesiveKin.i
*
* @brief Python interface to C++ FaultCohesiveKin object.
*/
namespace pylith {
namespace faults {
class FaultCohesiveKin : public FaultCohesiveLagrange
{ // class FaultCohesiveKin
// PUBLIC METHODS /////////////////////////////////////////////////
public :
/// Default constructor.
FaultCohesiveKin(void);
/// Destructor.
virtual
~FaultCohesiveKin(void);
/// Deallocate PETSc and local data structures.
virtual
void deallocate(void);
/** Set kinematic earthquake sources.
*
* @param names Array of kinematic earthquake source names.
* @param numNames Number of earthquake sources.
* @param sources Array of kinematic earthquake sources.
* @param numSources Number of earthquake sources.
*/
%apply(const char* const* string_list, const int list_len){
(const char* const* names,
const int numNames)
};
void eqsrcs(const char* const* names,
const int numNames,
EqKinSrc** sources,
const int numSources);
%clear(const char* const* names, const int numNames);
/** Initialize fault. Determine orientation and setup boundary
* condition parameters.
*
* @param mesh Finite-element mesh.
* @param upDir Direction perpendicular to along-strike direction that is
* not collinear with fault normal (usually "up" direction but could
* be up-dip direction; applies to fault surfaces in 2-D and 3-D).
*/
void initialize(const pylith::topology::Mesh& mesh,
const PylithScalar upDir[3]);
/** Integrate contributions to residual term (r) for operator that
* do not require assembly across cells, vertices, or processors.
*
* @param residual Field containing values for residual
* @param t Current time
* @param fields Solution fields
*/
void integrateResidual(const pylith::topology::Field<pylith::topology::Mesh>& residual,
const PylithScalar t,
pylith::topology::SolutionFields* const fields);
/** Get vertex field associated with integrator.
*
* @param name Name of cell field.
* @param fields Solution fields.
* @returns Vertex field.
*/
const pylith::topology::Field<pylith::topology::SubMesh>&
vertexField(const char* name,
const pylith::topology::SolutionFields* fields =0);
/** Get cell field associated with integrator.
*
* @param name Name of cell field.
* @param fields Solution fields.
* @returns Cell field.
*/
const pylith::topology::Field<pylith::topology::SubMesh>&
cellField(const char* name,
const pylith::topology::SolutionFields* fields =0);
}; // class FaultCohesiveKin
} // faults
} // pylith
// End of file