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Base class for band matrix distributed systems of equations. More...
#include <DistributedBandSPDLinSOE.h>
Public Member Functions | |
int | addA (const Matrix &, const ID &, double fact=1.0) |
First tests that loc and M are of compatible sizes; if not a warning message is printed and a \(-1\) is returned. More... | |
int | addB (const Vector &, const ID &, const double &fact=1.0) |
assemblies v multiplied by factor into vector B. More... | |
int | setB (const Vector &, const double &fact=1.0) |
Sets B= v*fact. More... | |
int | setSize (Graph &theGraph) |
Sets the size of the system from the number of vertices in the graph. More... | |
int | solve (void) |
Computes the solution of the system of equations. More... | |
const Vector & | getB (void) const |
Returns the Vector object created for \(b\). | |
int | sendSelf (Communicator &) |
Send the object. More... | |
int | recvSelf (const Communicator &) |
Receive the object. More... | |
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virtual void | zeroA (void) |
Zeros the entries in the 1d array for \(A\) and marks the system as not having been factored. More... | |
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bool | getFactored (void) const |
void | setFactored (bool b) |
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virtual int | getNumEqn (void) const |
Return the current size of the system. | |
virtual void | zeroB (void) |
Zeros the entries in the 1d array for \(b\). | |
virtual void | zeroX (void) |
Zeros the entries in the 1d array for \(x\). | |
virtual void | zero (void) |
Zeros the entries in the 1d array for \(x\) and \(b\). | |
virtual int | addB (const Vector &, const double &fact=1.0) |
add v multiplied by factor to vector B. More... | |
virtual void | setX (int loc, double value) |
If loc is within the range of \(x\), sets \(x(loc) = value\). | |
virtual void | setX (const Vector &x) |
Assigns \(x\). | |
virtual const Vector & | getX (void) const |
Returns the Vector object created for \(x\). | |
virtual Vector & | getX (void) |
Returns the Vector object created for \(x\). | |
virtual Vector & | getB (void) |
Returns the Vector object created for \(b\). | |
virtual double | normRHS (void) const |
Returns the 2-norm of the vector \(x\). | |
void | receiveB (const Communicator &) |
void | receiveX (const Communicator &) |
void | receiveBX (const Communicator &) |
void | sendB (Communicator &) const |
void | sendBX (Communicator &) const |
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virtual | ~LinearSOE (void) |
Destructor. | |
virtual double | getDeterminant (void) |
Returns the determinant of the system matrix. | |
virtual double | getRCond (const char &norm='1') |
Returns the reciprocal of the condition number. More... | |
LinearSOESolver * | getSolver (void) |
Returns a pointer to the solver. | |
LinearSOESolver & | newSolver (const std::string &) |
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int | checkSize (Graph &theGraph) const |
Check number of DOFs in the graph. | |
virtual void | save (void) const |
Stores the matrices and vectors in a temporal file. | |
virtual void | restore (void) |
Restore the matrices and vectors from a temporal file. | |
virtual boost::python::list | getAPy (void) const |
Return a Python list containing the rows of the system matrix. | |
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MovableObject (int classTag, int dbTag) | |
Constructor. More... | |
MovableObject (int classTag) | |
Constructor. More... | |
MovableObject (const MovableObject &) | |
Copy constructor. Doesn't copy the dbTag. | |
MovableObject & | operator= (const MovableObject &) |
Assignment operator. Doesn't copy the dbTag. | |
int | getClassTag (void) const |
Return the class identifier. | |
int | getDbTag (void) const |
Return the object identifier in the database. | |
int | getDbTag (Communicator &) |
Return the object identifier in the database. | |
void | setDbTag (int dbTag) |
Sets the object identifier in the database. | |
void | setDbTag (Communicator &) |
Sets the object identifier in the database if not already set. More... | |
virtual int | setParameter (const std::vector< std::string > &argv, Parameter ¶m) |
Sets the value param to the parameter argv . | |
virtual int | updateParameter (int parameterID, Information &info) |
Updates the parameter identified by parameterID with info . | |
virtual int | activateParameter (int parameterID) |
Activates the parameter identified by parameterID . | |
virtual int | setVariable (const std::string &variable, Information &) |
Set the value of the variable idenfified by var . | |
virtual int | getVariable (const std::string &variable, Information &) |
Return the value of the variable idenfified by var . | |
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DistributedBase (void) | |
Constructor. | |
virtual | ~DistributedBase (void) |
Destructor. | |
virtual DbTagData & | getDbTagData (void) const |
Returns a vector to store class dbTags. | |
const int & | getDbTagDataPos (const int &i) const |
Returns the data at the i-th position. | |
void | setDbTagDataPos (const int &i, const int &v) |
Sets the data at the i-th position. | |
void | inicComm (const int &dataSize) const |
Initializes communication. | |
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CommandEntity (CommandEntity *owr=nullptr) | |
Default constructor. | |
CommandEntity * | Owner (void) |
Return a pointer to the object owner. | |
const CommandEntity * | Owner (void) const |
Return un puntero al objeto propietario de ESTE. | |
const StandardOutputWrapper & | getStandardOutputWrapper (void) const |
Return the regular output stream wrapper. | |
StandardOutputWrapper & | getStandardOutputWrapper (void) |
Return the regular output stream wrapper. | |
const std::string & | getLogFileName (void) const |
Returns log file name. | |
void | setLogFileName (const std::string &) |
Sets log file name. | |
const std::string & | getErrFileName (void) const |
Returns err file name. | |
void | setErrFileName (const std::string &) |
Sets error file name. | |
const std::string & | getOutputFileName (void) const |
Returns regular output file name. | |
void | setOutputFileName (const std::string &) |
Sets regular output file name. | |
boost::python::object | evalPy (boost::python::object dict, const std::string &) |
Return the Python object that results from evaluating the argument. | |
boost::python::object | execPy (boost::python::object dict, const std::string &) |
Return the Python objects that results from executing the code in the string argument. | |
boost::python::object | execFilePy (boost::python::object dict, const std::string &) |
Return the Python object that results from executing the code in the file. | |
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EntityWithProperties (EntityWithProperties *owr=nullptr) | |
Default constructor. | |
void | clearPyProps (void) |
Clear python properties map. | |
bool | hasPyProp (const std::string &) |
Returns true if property exists. | |
boost::python::object | getPyProp (const std::string &str) |
Return the Python object with the name being passed as parameter. | |
void | setPyProp (std::string str, boost::python::object val) |
Sets/appends a value tho the Python object's dictionary. | |
void | copyPropsFrom (const EntityWithProperties &) |
Copy the properties from the argument. | |
boost::python::list | getPropNames (void) const |
Return the names of the object properties weightings. | |
const PythonDict & | getPropertiesDict (void) const |
Return a std::map container with the properties of the object. | |
boost::python::dict | getPyDict (void) const |
Return a Python dictionary containing the object members values. | |
void | setPyDict (const boost::python::dict &) |
Set the values of the object members from a Python dictionary. | |
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EntityWithOwner (EntityWithOwner *owr=nullptr) | |
Default constructor. | |
EntityWithOwner (const EntityWithOwner &) | |
Copy constructor. | |
EntityWithOwner & | operator= (const EntityWithOwner &) |
Assignment operator. | |
virtual bool | operator== (const EntityWithOwner &) const |
Comparison operator. | |
virtual | ~EntityWithOwner (void) |
Virtual destructor. | |
virtual std::string | getClassName (void) const |
Returns demangled class name. | |
void | set_owner (EntityWithOwner *owr) |
Assigns the owner of the object. | |
EntityWithOwner * | Owner (void) |
const EntityWithOwner * | Owner (void) const |
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int | setChannels (const ChannelQueue &) |
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DistributedObj (const ChannelQueue &theC) | |
int | getNumChannels (void) const |
Return the number of channels. | |
bool | buscaCanal (const Communicator &, int &) |
int | setProcessID (int processTag) |
int | setChannel (Channel *) |
int | setChannels (const ChannelQueue &theChannels) |
Protected Member Functions | |
void | calcBand (Graph &) |
Compute the values of numSubD y numSuperD. | |
DistributedBandSPDLinSOE (SolutionStrategy *) | |
SystemOfEqn * | getCopy (void) const |
Virtual constructor. | |
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void | inicA (const size_t &) |
bool | setSolver (LinearSOESolver *) |
Set pointer to solver. More... | |
BandSPDLinSOE (SolutionStrategy *) | |
Constructor. More... | |
BandSPDLinSOE (SolutionStrategy *, int classTag) | |
Constructor. More... | |
BandSPDLinSOE (SolutionStrategy *, int N, int bandwidth, BandSPDLinSolver *the_Solver=nullptr) | |
Constructor. More... | |
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FactoredSOEBase (SolutionStrategy *, int classTag, int N=0) | |
Constructor. More... | |
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void | inic (const size_t &) |
1d arrays containing coefficients of B and X More... | |
const double & | getB (const size_t &i) const |
double & | getB (const size_t &i) |
const double & | getX (const size_t &i) const |
double & | getX (const size_t &i) |
double * | getPtrB (void) |
const double * | getPtrB (void) const |
double * | getPtrX (void) |
const double * | getPtrX (void) const |
LinearSOEData (SolutionStrategy *, int classTag, int N=0) | |
Constructor. More... | |
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int | setSolverSize (void) |
invoke setSize() on the Solver | |
LinearSOE (SolutionStrategy *, int classTag) | |
Constructor. More... | |
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virtual AnalysisModel * | getAnalysisModelPtr (void) |
Returns a pointer to the analysis model. | |
virtual const AnalysisModel * | getAnalysisModelPtr (void) const |
Returns a const pointer to the analysis model. | |
SystemOfEqn (SolutionStrategy *, int classTag) | |
Constructor. More... | |
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template<class T > | |
void | string_to (T &, const std::string &) const |
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bool | isEqual (const EntityWithProperties &) const |
Return true if both objects are equal. | |
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virtual bool | isEqual (const EntityWithOwner &) const |
Return true if both objects are equal. | |
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void | setupMyB (const std::size_t &, const std::size_t &) |
int | addB (const int &size, const Vector &, const ID &, const double &) |
int | setB (const int &size, const Vector &, const double &) |
void | zeroB (void) |
int | sendBArecvBX (LinearSOEData &, const bool &, double *, const int &, ID &) |
int | recvBAsendBX (FactoredSOEBase &) const |
int | sendResultsBack (FactoredSOEBase &, ID &) |
int | recvXA (FactoredSOEBase &, const bool &, double *A, const int &, ID &) |
DistributedBandLinSOE (void) | |
Default constructor. | |
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int | sendGraph (Graph &, ID &) |
Collect graph, send it off, vector back containing size of system, etc. More... | |
int | getSubGraphs (Graph &) |
From each distributed SOE recv it's graph and merge them into primary graph. | |
int | sendSizeData (const ID &) |
To each distributed SOE send the size data and merge them into primary graph. | |
void | calcLocalMap (const int &) |
int | getSendID (Communicator &) |
int | send (Communicator &) |
int | receive (const Communicator &) |
DistributedLinSOE (void) | |
Default constructor. | |
Friends | |
class | SolutionStrategy |
class | BandSPDLinLapackSolver |
Additional Inherited Members | |
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typedef std::map< std::string, boost::python::object > | PythonDict |
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static void | resetStandardOutput (void) |
Reset the standard output streams to its defaults buffers. | |
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static int | getVerbosityLevel (void) |
Get the value of the verbosity level. | |
static void | setVerbosityLevel (const int &) |
Set the value of the verbosity level. | |
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static CommandEntity * | entcmd_cast (boost::any &data) |
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int | half_band |
Vector | A |
Storage for the matrix. | |
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bool | factored |
True if the system is factored. | |
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int | size |
Vector | B |
order of A | |
Vector | X |
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std::string | tmpFileName |
File name to store matrices. | |
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std::vector< double > | workArea |
std::vector< double > | myB |
Vector | myVectB |
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std::vector< ID > | localCol |
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int | processID |
ChannelQueue | theChannels |
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static int | verbosity = 1 |
Object that owns THIS ONE. More... | |
Base class for band matrix distributed systems of equations.
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virtual |
First tests that loc
and M
are of compatible sizes; if not a warning message is printed and a \(-1\) is returned.
The LinearSOE object then assembles fact
times the Matrix {M} into the matrix \(A\). The Matrix is assembled into \(A\) at the locations given by the ID object loc
, i.e. \(a_{loc(i),loc(j)} += //! fact * M(i,j)\). If the location specified is outside the range, i.e. \((-1,-1)\) the corresponding entry in M
is not added to \(A\). If fact
is equal to \(0.0\) or \(1.0\), more efficient steps are performed. Returns \(0\).
Reimplemented from XC::BandSPDLinSOE.
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virtual |
assemblies v multiplied by factor into vector B.
First tests that loc
and V
are of compatible sizes; if not a warning message is printed and a \(-1\) is returned. The LinearSOE object then assembles fact
times the Vector V
into the vector \(b\). The Vector is assembled into \(b\) at the locations given by the ID object loc
, i.e. \(b_{loc(i)} += fact * V(i)\). If a location specified is outside the range, e.g. \(-1\), the corresponding entry in V
is not added to \(b\). If fact
is equal to \(0.0\), \(1.0\) or \(-1.0\), more efficient steps are performed. Returns \(0\).
v | vector to add. |
id | row indexes. |
fact | factor that multiplies v. |
Reimplemented from XC::LinearSOEData.
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virtual |
Receive the object.
Each object has to receive the data needed to be able to recreate itself in the new process after it has been sent through cp
. If the object is an aggregation containing other objects, new objects of the correct type can be constructed using #theBroker. To return 0 if successful or a -1 if not.
Reimplemented from XC::BandSPDLinSOE.
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virtual |
Send the object.
Each object has to send the data needed to be able to reproduce that object in a remote process. The object uses the methods provided by cp
object to send the data to another channel at the remote actor, the address of the channel is set before this method is called. An object of similar type at the remote actor is invoked with a receiveSelf() to receive the data. Returns 0 if successful (successful in that the data got to the channel), or a - if no data was sent.
Reimplemented from XC::BandSPDLinSOE.
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virtual |
Sets B= v*fact.
First tests that V
and the size of the system are of compatible sizes; if not a warning message is printed and a \(-1\) is returned. The LinearSOE object then sets the vector b
to be fact
times the Vector V
. If fact
is equal to \(0.0\), \(1.0\) or \(-1.0\), more efficient steps are performed. Returns \(0\).
v | vector to add. |
fact | factor that multiplies v. |
Reimplemented from XC::LinearSOEData.
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virtual |
Sets the size of the system from the number of vertices in the graph.
The size of the system is determined by looking at the adjacency ID of each Vertex in the Graph object G
. This is done by first setting ku
equal to \(0\) and then checking for each Vertex in G
, whether any of the vertex tags in the Vertices adjacency ID results in ku
being increased. Knowing ku
and the size of the system (the number of Vertices in G
, a check to see if the previously allocated 1d arrays for \(A\), \(x\) and \(b\) are large enough. If the memory portions allocated for the 1d arrays are not big enough, the old space is returned to the heap and new space is allocated from the heap. Prints a warning message if not enough memory is available on the heap for the 1d arrays and returns a \(-1\). If memory is available, the components of the arrays are zeroed and \(A\) is marked as being unfactored. If the system size has increased, new Vector objects for \(x\) and \(b\) using the {(double *,int)} Vector constructor are created. Finally, the result of invoking setSize() on the associated Solver object is returned.
Reimplemented from XC::BandSPDLinSOE.
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virtual |
Computes the solution of the system of equations.
Causes the SystemOfEqn object to invoke solve() on the currently associated solver object. Returns a $0$ if successful, negative number if not; the actual value depending on the LinearSOESolver. To solve a linear system of equations means to find $x$ such that the equation $Ax=b$ is satisfied.
Reimplemented from XC::LinearSOE.