42 #ifndef BELOS_MINRES_SOLMGR_HPP
43 #define BELOS_MINRES_SOLMGR_HPP
62 #ifdef BELOS_TEUCHOS_TIME_MONITOR
66 #include "Teuchos_StandardParameterEntryValidators.hpp"
114 template<
class ScalarType,
class MV,
class OP>
205 if (defaultParams_.
is_null()) {
208 return defaultParams_;
226 return Teuchos::tuple (timerSolve_);
273 problem_->setProblem ();
360 MagnitudeType convtol_;
363 MagnitudeType achievedTol_;
402 template<
class ScalarType,
class MV,
class OP>
407 using Teuchos::parameterList;
410 using Teuchos::rcpFromRef;
412 typedef MagnitudeType
MT;
416 RCP<ParameterList> pl = parameterList (
"MINRES");
418 pl->set (
"Convergence Tolerance", MST::squareroot (MST::eps()),
419 "Relative residual tolerance that needs to be achieved by "
420 "the iterative solver, in order for the linear system to be "
421 "declared converged.",
422 rcp (
new EnhancedNumberValidator<MT> (MST::zero(), MST::rmax())));
423 pl->set (
"Maximum Iterations", static_cast<int>(1000),
424 "Maximum number of iterations allowed for each right-hand "
426 rcp (
new EnhancedNumberValidator<int> (0, INT_MAX)));
427 pl->set (
"Num Blocks", static_cast<int> (-1),
428 "Ignored, but permitted, for compatibility with other Belos "
430 pl->set (
"Block Size", static_cast<int> (1),
431 "Number of vectors in each block. WARNING: The current "
432 "implementation of MINRES only accepts a block size of 1, "
433 "since it can only solve for 1 right-hand side at a time.",
434 rcp (
new EnhancedNumberValidator<int> (1, 1)));
436 "The type(s) of solver information that should "
437 "be written to the output stream.");
439 "What style is used for the solver information written "
440 "to the output stream.");
441 pl->set (
"Output Frequency", static_cast<int>(-1),
442 "How often (in terms of number of iterations) intermediate "
443 "convergence information should be written to the output stream."
445 pl->set (
"Output Stream", rcpFromRef(std::cout),
446 "A reference-counted pointer to the output stream where all "
447 "solver output is sent. The output stream defaults to stdout.");
448 pl->set (
"Timer Label", std::string(
"Belos"),
449 "The string to use as a prefix for the timer labels.");
456 template<
class ScalarType,
class MV,
class OP>
466 parametersSet_ (false)
472 template<
class ScalarType,
class MV,
class OP>
478 parametersSet_ (false)
481 "MinresSolMgr: The version of the constructor "
482 "that takes a LinearProblem to solve was given a "
483 "null LinearProblem.");
487 template<
class ScalarType,
class MV,
class OP>
494 "MINRES requires that you have provided a nonnull LinearProblem to the "
495 "solver manager, before you call the solve() method.");
498 "MINRES requires a LinearProblem object with a non-null operator (the "
502 "MINRES requires a LinearProblem object with a non-null right-hand side.");
505 "MINRES requires that before you give it a LinearProblem to solve, you "
506 "must first call the linear problem's setProblem() method.");
509 template<
class ScalarType,
class MV,
class OP>
515 using Teuchos::parameterList;
518 using Teuchos::rcpFromRef;
525 if (params_.is_null()) {
526 params_ = parameterList (*getValidParameters());
528 RCP<ParameterList> pl = params;
535 blockSize_ = pl->get<
int> (
"Block Size");
536 verbosity_ = pl->get<
int> (
"Verbosity");
537 outputStyle_ = pl->get<
int> (
"Output Style");
538 outputFreq_ = pl->get<
int>(
"Output Frequency");
539 outputStream_ = pl->get<RCP<std::ostream> > (
"Output Stream");
540 convtol_ = pl->get<MagnitudeType> (
"Convergence Tolerance");
541 maxIters_ = pl->get<
int> (
"Maximum Iterations");
549 const string newLabel = pl->get<
string> (
"Timer Label");
551 if (newLabel != label_ || timerSolve_.is_null()) {
553 #ifdef BELOS_TEUCHOS_TIME_MONITOR
554 const string solveLabel = label_ +
": MinresSolMgr total solve time";
556 if (! timerSolve_.is_null()) {
558 timerSolve_ = Teuchos::null;
561 #endif // BELOS_TEUCHOS_TIME_MONITOR
566 bool recreatedPrinter =
false;
567 if (printer_.is_null()) {
569 recreatedPrinter =
true;
572 printer_->setVerbosity (verbosity_);
574 printer_->setOStream (outputStream_);
585 const bool allocatedConvergenceTests =
586 impConvTest_.is_null() || expConvTest_.is_null();
590 if (impConvTest_.is_null()) {
591 impConvTest_ =
rcp (
new res_norm_type (convtol_));
592 impConvTest_->defineResForm (res_norm_type::Implicit,
TwoNorm);
597 impConvTest_->setTolerance (convtol_);
602 if (expConvTest_.is_null()) {
603 expConvTest_ =
rcp (
new res_norm_type (convtol_));
604 expConvTest_->defineResForm (res_norm_type::Explicit,
TwoNorm);
609 expConvTest_->setTolerance (convtol_);
615 bool needToRecreateFullStatusTest = sTest_.is_null();
619 if (convTest_.is_null() || allocatedConvergenceTests) {
620 convTest_ =
rcp (
new combo_type (combo_type::SEQ, impConvTest_, expConvTest_));
621 needToRecreateFullStatusTest =
true;
628 if (maxIterTest_.is_null()) {
630 needToRecreateFullStatusTest =
true;
632 maxIterTest_->setMaxIters (maxIters_);
643 if (needToRecreateFullStatusTest) {
644 sTest_ =
rcp (
new combo_type (combo_type::OR, maxIterTest_, convTest_));
651 if (outputTest_.is_null() || needToRecreateFullStatusTest || recreatedPrinter) {
653 outputTest_ = stoFactory.
create (printer_, sTest_, outputFreq_,
656 outputTest_->setOutputFrequency (outputFreq_);
660 outputTest_->setSolverDesc (std::string (
" MINRES "));
663 parametersSet_ =
true;
665 if (verbosity_ &
Debug) {
668 std::ostream& dbg = printer_->stream (Debug);
669 dbg <<
"MINRES parameters:" << endl << params_ << endl;
674 template<
class ScalarType,
class MV,
class OP>
679 using Teuchos::rcp_const_cast;
682 if (! parametersSet_) {
683 setParameters (params_);
685 std::ostream& dbg = printer_->stream (
Debug);
687 #ifdef BELOS_TEUCHOS_TIME_MONITOR
689 #endif // BELOS_TEUCHOS_TIME_MONITOR
692 validateProblem (problem_);
695 outputTest_->reset();
700 const int numRHS2Solve = MVT::GetNumberVecs (*(problem_->getRHS()));
705 RCP<iter_type> minres_iter =
706 rcp (
new iter_type (problem_, printer_, outputTest_, *params_));
712 std::vector<int> notConverged;
713 std::vector<int> currentIndices(1);
718 for (
int currentRHS = 0; currentRHS < numRHS2Solve; ++currentRHS) {
723 currentIndices[0] = currentRHS;
724 problem_->setLSIndex (currentIndices);
726 dbg <<
"-- Current right-hand side index being solved: "
727 << currentRHS << endl;
730 minres_iter->resetNumIters();
732 outputTest_->resetNumCalls();
738 newstate.
Y = MVT::CloneViewNonConst (*(rcp_const_cast<MV> (problem_->getInitResVec())), currentIndices);
739 minres_iter->initializeMinres (newstate);
745 minres_iter->iterate();
748 if (convTest_->getStatus() ==
Passed) {
749 dbg <<
"---- Converged after " << maxIterTest_->getNumIters()
750 <<
" iterations" << endl;
754 else if (maxIterTest_->getStatus() ==
Passed) {
755 dbg <<
"---- Did not converge after " << maxIterTest_->getNumIters()
756 <<
" iterations" << endl;
758 notConverged.push_back (currentRHS);
765 "Belos::MinresSolMgr::solve(): iterations neither converged, "
766 "nor reached the maximum number of iterations " << maxIters_
767 <<
". That means something went wrong.");
769 }
catch (
const std::exception &e) {
771 <<
"Error! Caught std::exception in MinresIter::iterate() at "
772 <<
"iteration " << minres_iter->getNumIters() << endl
781 problem_->setCurrLS();
785 numIters_ += maxIterTest_->getNumIters();
793 #ifdef BELOS_TEUCHOS_TIME_MONITOR
800 #endif // BELOS_TEUCHOS_TIME_MONITOR
812 const std::vector<MagnitudeType>* pTestValues = expConvTest_->getTestValue();
813 if (pTestValues == NULL || pTestValues->size() < 1) {
814 pTestValues = impConvTest_->getTestValue();
817 "Belos::MinresSolMgr::solve(): The implicit convergence test's getTestValue() "
818 "method returned NULL. Please report this bug to the Belos developers.");
820 "Belos::MinresSolMgr::solve(): The implicit convergence test's getTestValue() "
821 "method returned a vector of length zero. Please report this bug to the "
822 "Belos developers.");
827 achievedTol_ = *std::max_element (pTestValues->begin(), pTestValues->end());
830 if (notConverged.size() > 0) {
838 template<
class ScalarType,
class MV,
class OP>
841 std::ostringstream oss;
842 oss <<
"Belos::MinresSolMgr< "
Collection of types and exceptions used within the Belos solvers.
Belos's basic output manager for sending information of select verbosity levels to the appropriate ou...
Class which manages the output and verbosity of the Belos solvers.
Teuchos::Array< Teuchos::RCP< Teuchos::Time > > getTimers() const
Return all timers for this object.
virtual ~MinresSolMgr()
Destructor.
bool is_null(const std::shared_ptr< T > &p)
int getNumIters() const override
Get the iteration count for the most recent call to solve().
#define TEUCHOS_TEST_FOR_EXCEPTION(throw_exception_test, Exception, msg)
A factory class for generating StatusTestOutput objects.
static Teuchos::RCP< const Teuchos::ParameterList > defaultParameters()
List of valid MINRES parameters and their default values.
An implementation of StatusTestResNorm using a family of residual norms.
Belos::StatusTest class for specifying a maximum number of iterations.
static std::string name()
A factory class for generating StatusTestOutput objects.
Teuchos::RCP< SolverManager< ScalarType, MV, OP > > clone() const override
clone for Inverted Injection (DII)
Traits class which defines basic operations on multivectors.
Belos::StatusTest for logically combining several status tests.
const LinearProblem< ScalarType, MV, OP > & getProblem() const override
Return the linear problem to be solved.
MinresSolMgrLinearProblemFailure(const std::string &what_arg)
A Belos::StatusTest class for specifying a maximum number of iterations.
ResetType
How to reset the solver.
MagnitudeType achievedTol() const override
Tolerance achieved by the last solve() invocation.
void setParameters(const Teuchos::RCP< Teuchos::ParameterList > ¶ms) override
Set the parameters to use when solving the linear problem.
This subclass of std::exception may be thrown from the MinresSolMgr::solve() method.
TEUCHOS_DEPRECATED RCP< T > rcp(T *p, Dealloc_T dealloc, bool owns_mem)
Pure virtual base class which describes the basic interface for a solver manager. ...
static void summarize(Ptr< const Comm< int > > comm, std::ostream &out=std::cout, const bool alwaysWriteLocal=false, const bool writeGlobalStats=true, const bool writeZeroTimers=true, const ECounterSetOp setOp=Intersection, const std::string &filter="", const bool ignoreZeroTimers=false)
MINRES linear solver solution manager.
MINRES iteration implementation.
std::string description() const override
A linear system to solve, and its associated information.
Class which describes the linear problem to be solved by the iterative solver.
Teuchos::RCP< const Teuchos::ParameterList > getValidParameters() const override
Return the list of default parameters for this object.
Structure to contain pointers to MinresIteration state variables.
void validateParametersAndSetDefaults(ParameterList const &validParamList, int const depth=1000)
ReturnType
Whether the Belos solve converged for all linear systems.
The Belos::SolverManager is a templated virtual base class that defines the basic interface that any ...
Teuchos::RCP< const Teuchos::ParameterList > getCurrentParameters() const override
Return the list of current parameters for this object.
void reset(const ResetType type) override
Reset the solver manager.
void setProblem(const Teuchos::RCP< LinearProblem< ScalarType, MV, OP > > &problem) override
Set the linear problem that needs to be solved.
Teuchos::RCP< const MV > Y
The current residual.
Teuchos::RCP< StatusTestOutput< ScalarType, MV, OP > > create(const Teuchos::RCP< OutputManager< ScalarType > > &printer, Teuchos::RCP< StatusTest< ScalarType, MV, OP > > test, int mod, int printStates)
Create the StatusTestOutput object specified by the outputStyle.
Belos::StatusTestResNorm for specifying general residual norm stopping criteria.
A class for extending the status testing capabilities of Belos via logical combinations.
MinresSolMgr()
Default constructor.
Class which defines basic traits for the operator type.
Parent class to all Belos exceptions.
Belos header file which uses auto-configuration information to include necessary C++ headers...
ReturnType solve() override
Iterate until the status test tells us to stop.
bool isLOADetected() const override
Whether a loss of accuracy was detected in the solver.