1eb910715SAlp Dener #include <petsctaolinesearch.h> 2eb910715SAlp Dener #include <../src/tao/bound/impls/bnk/bnk.h> 3eb910715SAlp Dener 4eb910715SAlp Dener #include <petscksp.h> 5eb910715SAlp Dener 6e031d6f5SAlp Dener static const char *BNK_PC[64] = {"none", "ahess", "bfgs", "petsc"}; 7e031d6f5SAlp Dener static const char *BFGS_SCALE[64] = {"ahess", "phess", "bfgs"}; 8e031d6f5SAlp Dener static const char *BNK_INIT[64] = {"constant", "direction", "interpolation"}; 9e031d6f5SAlp Dener static const char *BNK_UPDATE[64] = {"step", "reduction", "interpolation"}; 10e031d6f5SAlp Dener static const char *BNK_AS[64] = {"none", "bertsekas"}; 11e031d6f5SAlp Dener 12e031d6f5SAlp Dener /*------------------------------------------------------------*/ 13e031d6f5SAlp Dener 14eb910715SAlp Dener /* Routine for BFGS preconditioner */ 15eb910715SAlp Dener 16eb910715SAlp Dener PetscErrorCode MatLMVMSolveShell(PC pc, Vec b, Vec x) 17eb910715SAlp Dener { 18eb910715SAlp Dener PetscErrorCode ierr; 19eb910715SAlp Dener Mat M; 20eb910715SAlp Dener 21eb910715SAlp Dener PetscFunctionBegin; 22eb910715SAlp Dener PetscValidHeaderSpecific(pc,PC_CLASSID,1); 23eb910715SAlp Dener PetscValidHeaderSpecific(b,VEC_CLASSID,2); 24eb910715SAlp Dener PetscValidHeaderSpecific(x,VEC_CLASSID,3); 25eb910715SAlp Dener ierr = PCShellGetContext(pc,(void**)&M);CHKERRQ(ierr); 265e9b73cbSAlp Dener ierr = MatLMVMSolve(M, b, x);CHKERRQ(ierr); 27eb910715SAlp Dener PetscFunctionReturn(0); 28eb910715SAlp Dener } 29eb910715SAlp Dener 30df278d8fSAlp Dener /*------------------------------------------------------------*/ 31df278d8fSAlp Dener 32df278d8fSAlp Dener /* Routine for initializing the KSP solver, the BFGS preconditioner, and the initial trust radius estimation */ 33df278d8fSAlp Dener 34c0f10754SAlp Dener PetscErrorCode TaoBNKInitialize(Tao tao, PetscInt initType, PetscBool *needH) 35eb910715SAlp Dener { 36eb910715SAlp Dener PetscErrorCode ierr; 37eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 38eb910715SAlp Dener PC pc; 39eb910715SAlp Dener 400a4511e9SAlp Dener PetscReal f_min, ftrial, prered, actred, kappa, sigma; 41eb910715SAlp Dener PetscReal tau, tau_1, tau_2, tau_max, tau_min, max_radius; 42e031d6f5SAlp Dener PetscReal resnorm, delta; 43eb910715SAlp Dener 44*c4b75bccSAlp Dener PetscInt n,N,nDiff; 45eb910715SAlp Dener 46eb910715SAlp Dener PetscInt i_max = 5; 47eb910715SAlp Dener PetscInt j_max = 1; 48eb910715SAlp Dener PetscInt i, j; 49eb910715SAlp Dener 50eb910715SAlp Dener PetscFunctionBegin; 5128017e9fSAlp Dener /* Project the current point onto the feasible set */ 5228017e9fSAlp Dener ierr = TaoComputeVariableBounds(tao);CHKERRQ(ierr); 53e031d6f5SAlp Dener ierr = TaoSetVariableBounds(bnk->bncg, tao->XL, tao->XU);CHKERRQ(ierr); 5428017e9fSAlp Dener ierr = TaoLineSearchSetVariableBounds(tao->linesearch,tao->XL,tao->XU);CHKERRQ(ierr); 5528017e9fSAlp Dener 5628017e9fSAlp Dener /* Project the initial point onto the feasible region */ 57*c4b75bccSAlp Dener ierr = TaoBoundSolution(tao->XL, tao->XU, tao->solution, &nDiff);CHKERRQ(ierr); 5828017e9fSAlp Dener 5928017e9fSAlp Dener /* Check convergence criteria */ 6028017e9fSAlp Dener ierr = TaoComputeObjectiveAndGradient(tao, tao->solution, &bnk->f, bnk->unprojected_gradient);CHKERRQ(ierr); 6161be54a6SAlp Dener ierr = TaoBNKEstimateActiveSet(tao, bnk->as_type);CHKERRQ(ierr); 6261be54a6SAlp Dener ierr = VecCopy(bnk->unprojected_gradient, tao->gradient);CHKERRQ(ierr); 6361be54a6SAlp Dener ierr = VecISSet(tao->gradient, bnk->active_idx, 0.0);CHKERRQ(ierr); 6408752603SAlp Dener ierr = VecNorm(tao->gradient,NORM_2,&bnk->gnorm);CHKERRQ(ierr); 6528017e9fSAlp Dener if (PetscIsInfOrNanReal(bnk->f) || PetscIsInfOrNanReal(bnk->gnorm)) SETERRQ(PETSC_COMM_SELF,1, "User provided compute function generated Inf or NaN"); 6628017e9fSAlp Dener 67c0f10754SAlp Dener /* Test the initial point for convergence */ 68e031d6f5SAlp Dener ierr = VecFischer(tao->solution, bnk->unprojected_gradient, tao->XL, tao->XU, bnk->Gwork);CHKERRQ(ierr); 69e031d6f5SAlp Dener ierr = VecNorm(bnk->Gwork, NORM_2, &resnorm);CHKERRQ(ierr); 70e031d6f5SAlp Dener ierr = TaoLogConvergenceHistory(tao,bnk->f,resnorm,0.0,tao->ksp_its);CHKERRQ(ierr); 71e031d6f5SAlp Dener ierr = TaoMonitor(tao,tao->niter,bnk->f,resnorm,0.0,1.0);CHKERRQ(ierr); 72c0f10754SAlp Dener ierr = (*tao->ops->convergencetest)(tao,tao->cnvP);CHKERRQ(ierr); 73c0f10754SAlp Dener if (tao->reason != TAO_CONTINUE_ITERATING) PetscFunctionReturn(0); 74c0f10754SAlp Dener 75e031d6f5SAlp Dener /* Reset KSP stopping reason counters */ 76eb910715SAlp Dener bnk->ksp_atol = 0; 77eb910715SAlp Dener bnk->ksp_rtol = 0; 78eb910715SAlp Dener bnk->ksp_dtol = 0; 79eb910715SAlp Dener bnk->ksp_ctol = 0; 80eb910715SAlp Dener bnk->ksp_negc = 0; 81eb910715SAlp Dener bnk->ksp_iter = 0; 82eb910715SAlp Dener bnk->ksp_othr = 0; 83eb910715SAlp Dener 84e031d6f5SAlp Dener /* Reset accepted step type counters */ 85e031d6f5SAlp Dener bnk->tot_cg_its = 0; 86e031d6f5SAlp Dener bnk->newt = 0; 87e031d6f5SAlp Dener bnk->bfgs = 0; 88e031d6f5SAlp Dener bnk->sgrad = 0; 89e031d6f5SAlp Dener bnk->grad = 0; 90e031d6f5SAlp Dener 91fed79b8eSAlp Dener /* Initialize the Hessian perturbation */ 92fed79b8eSAlp Dener bnk->pert = bnk->sval; 93fed79b8eSAlp Dener 94937a31a1SAlp Dener /* Reset initial steplength to zero (this helps BNCG reset its direction internally) */ 95937a31a1SAlp Dener ierr = VecSet(tao->stepdirection, 0.0);CHKERRQ(ierr); 96937a31a1SAlp Dener 97e031d6f5SAlp Dener /* Allocate the vectors needed for the BFGS approximation */ 98e031d6f5SAlp Dener if (BNK_PC_BFGS == bnk->pc_type) { 99e031d6f5SAlp Dener if (!bnk->M) { 100eb910715SAlp Dener ierr = VecGetLocalSize(tao->solution,&n);CHKERRQ(ierr); 101eb910715SAlp Dener ierr = VecGetSize(tao->solution,&N);CHKERRQ(ierr); 102eb910715SAlp Dener ierr = MatCreateLMVM(((PetscObject)tao)->comm,n,N,&bnk->M);CHKERRQ(ierr); 103eb910715SAlp Dener ierr = MatLMVMAllocateVectors(bnk->M,tao->solution);CHKERRQ(ierr); 104eb910715SAlp Dener } 105e031d6f5SAlp Dener if (bnk->bfgs_scale_type != BFGS_SCALE_BFGS && !bnk->Diag) { 106e031d6f5SAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Diag);CHKERRQ(ierr); 1075e9b73cbSAlp Dener } 108e031d6f5SAlp Dener } 109e031d6f5SAlp Dener 110e031d6f5SAlp Dener /* Prepare the min/max vectors for safeguarding diagonal scales */ 11162675beeSAlp Dener ierr = VecSet(bnk->Diag_min, bnk->dmin);CHKERRQ(ierr); 11262675beeSAlp Dener ierr = VecSet(bnk->Diag_max, bnk->dmax);CHKERRQ(ierr); 113eb910715SAlp Dener 114eb910715SAlp Dener /* Modify the preconditioner to use the bfgs approximation */ 115eb910715SAlp Dener ierr = KSPGetPC(tao->ksp, &pc);CHKERRQ(ierr); 116eb910715SAlp Dener switch(bnk->pc_type) { 117eb910715SAlp Dener case BNK_PC_NONE: 118eb910715SAlp Dener ierr = PCSetType(pc, PCNONE);CHKERRQ(ierr); 119eb910715SAlp Dener ierr = PCSetFromOptions(pc);CHKERRQ(ierr); 120eb910715SAlp Dener break; 121eb910715SAlp Dener 122eb910715SAlp Dener case BNK_PC_AHESS: 123eb910715SAlp Dener ierr = PCSetType(pc, PCJACOBI);CHKERRQ(ierr); 124eb910715SAlp Dener ierr = PCSetFromOptions(pc);CHKERRQ(ierr); 125eb910715SAlp Dener ierr = PCJacobiSetUseAbs(pc,PETSC_TRUE);CHKERRQ(ierr); 126eb910715SAlp Dener break; 127eb910715SAlp Dener 128eb910715SAlp Dener case BNK_PC_BFGS: 129eb910715SAlp Dener ierr = PCSetType(pc, PCSHELL);CHKERRQ(ierr); 130eb910715SAlp Dener ierr = PCSetFromOptions(pc);CHKERRQ(ierr); 131eb910715SAlp Dener ierr = PCShellSetName(pc, "bfgs");CHKERRQ(ierr); 132eb910715SAlp Dener ierr = PCShellSetContext(pc, bnk->M);CHKERRQ(ierr); 133eb910715SAlp Dener ierr = PCShellSetApply(pc, MatLMVMSolveShell);CHKERRQ(ierr); 134eb910715SAlp Dener break; 135eb910715SAlp Dener 136eb910715SAlp Dener default: 137eb910715SAlp Dener /* Use the pc method set by pc_type */ 138eb910715SAlp Dener break; 139eb910715SAlp Dener } 140eb910715SAlp Dener 141eb910715SAlp Dener /* Initialize trust-region radius. The initialization is only performed 142eb910715SAlp Dener when we are using Nash, Steihaug-Toint or the Generalized Lanczos method. */ 143c0f10754SAlp Dener *needH = PETSC_TRUE; 144eb910715SAlp Dener if (bnk->is_nash || bnk->is_stcg || bnk->is_gltr) { 14562675beeSAlp Dener switch(initType) { 146eb910715SAlp Dener case BNK_INIT_CONSTANT: 147eb910715SAlp Dener /* Use the initial radius specified */ 148c0f10754SAlp Dener tao->trust = tao->trust0; 149eb910715SAlp Dener break; 150eb910715SAlp Dener 151eb910715SAlp Dener case BNK_INIT_INTERPOLATION: 152c0f10754SAlp Dener /* Use interpolation based on the initial Hessian */ 153eb910715SAlp Dener max_radius = 0.0; 15408752603SAlp Dener tao->trust = tao->trust0; 155eb910715SAlp Dener for (j = 0; j < j_max; ++j) { 1560a4511e9SAlp Dener f_min = bnk->f; 157eb910715SAlp Dener sigma = 0.0; 158eb910715SAlp Dener 159c0f10754SAlp Dener if (*needH) { 16062602cfbSAlp Dener /* Compute the Hessian at the new step, and extract the inactive subsystem */ 161e031d6f5SAlp Dener ierr = TaoBNKComputeHessian(tao);CHKERRQ(ierr); 16208752603SAlp Dener ierr = TaoBNKEstimateActiveSet(tao, BNK_AS_NONE);CHKERRQ(ierr); 16328017e9fSAlp Dener if (bnk->inactive_idx) { 1642ab2a32cSAlp Dener ierr = MatCreateSubMatrix(tao->hessian, bnk->inactive_idx, bnk->inactive_idx, MAT_INITIAL_MATRIX, &bnk->H_inactive);CHKERRQ(ierr); 16528017e9fSAlp Dener } else { 16608752603SAlp Dener ierr = MatDuplicate(tao->hessian, MAT_COPY_VALUES, &bnk->H_inactive);CHKERRQ(ierr); 16728017e9fSAlp Dener } 168c0f10754SAlp Dener *needH = PETSC_FALSE; 169eb910715SAlp Dener } 170eb910715SAlp Dener 171eb910715SAlp Dener for (i = 0; i < i_max; ++i) { 17262602cfbSAlp Dener /* Take a steepest descent step and snap it to bounds */ 17362602cfbSAlp Dener ierr = VecCopy(tao->solution, bnk->Xold);CHKERRQ(ierr); 17462602cfbSAlp Dener ierr = VecAXPY(tao->solution, -tao->trust/bnk->gnorm, tao->gradient);CHKERRQ(ierr); 175*c4b75bccSAlp Dener ierr = TaoBoundSolution(tao->XL, tao->XU, tao->solution,&nDiff);CHKERRQ(ierr); 176*c4b75bccSAlp Dener if (nDiff > 0) { 177*c4b75bccSAlp Dener /* Solution bounding changed variables so let's recompute the step we actually accepted */ 178eb910715SAlp Dener ierr = VecCopy(tao->solution, bnk->W);CHKERRQ(ierr); 17962602cfbSAlp Dener ierr = VecAXPY(bnk->W, -1.0, bnk->Xold);CHKERRQ(ierr); 180*c4b75bccSAlp Dener } 18162602cfbSAlp Dener /* Compute the objective at the trial */ 18262602cfbSAlp Dener ierr = TaoComputeObjective(tao, tao->solution, &ftrial);CHKERRQ(ierr); 18362602cfbSAlp Dener ierr = VecCopy(bnk->Xold, tao->solution);CHKERRQ(ierr); 184eb910715SAlp Dener if (PetscIsInfOrNanReal(ftrial)) { 185eb910715SAlp Dener tau = bnk->gamma1_i; 186eb910715SAlp Dener } else { 1870a4511e9SAlp Dener if (ftrial < f_min) { 1880a4511e9SAlp Dener f_min = ftrial; 189eb910715SAlp Dener sigma = -tao->trust / bnk->gnorm; 190eb910715SAlp Dener } 19108752603SAlp Dener 192770b7498SAlp Dener /* Compute the predicted and actual reduction */ 1932ab2a32cSAlp Dener if (bnk->inactive_idx) { 19408752603SAlp Dener ierr = VecGetSubVector(bnk->W, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 19508752603SAlp Dener ierr = VecGetSubVector(bnk->Xwork, bnk->inactive_idx, &bnk->inactive_work);CHKERRQ(ierr); 1962ab2a32cSAlp Dener } else { 19708752603SAlp Dener bnk->X_inactive = bnk->W; 19808752603SAlp Dener bnk->inactive_work = bnk->Xwork; 1992ab2a32cSAlp Dener } 20008752603SAlp Dener ierr = MatMult(bnk->H_inactive, bnk->X_inactive, bnk->inactive_work);CHKERRQ(ierr); 20108752603SAlp Dener ierr = VecDot(bnk->X_inactive, bnk->inactive_work, &prered);CHKERRQ(ierr); 2022ab2a32cSAlp Dener if (bnk->inactive_idx) { 20308752603SAlp Dener ierr = VecRestoreSubVector(bnk->W, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 20408752603SAlp Dener ierr = VecRestoreSubVector(bnk->Xwork, bnk->inactive_idx, &bnk->inactive_work);CHKERRQ(ierr); 2052ab2a32cSAlp Dener } 206eb910715SAlp Dener prered = tao->trust * (bnk->gnorm - 0.5 * tao->trust * prered / (bnk->gnorm * bnk->gnorm)); 207eb910715SAlp Dener actred = bnk->f - ftrial; 20808752603SAlp Dener if ((PetscAbsScalar(actred) <= bnk->epsilon) && 20908752603SAlp Dener (PetscAbsScalar(prered) <= bnk->epsilon)) { 210eb910715SAlp Dener kappa = 1.0; 21108752603SAlp Dener } 21208752603SAlp Dener else { 213eb910715SAlp Dener kappa = actred / prered; 214eb910715SAlp Dener } 215eb910715SAlp Dener 216eb910715SAlp Dener tau_1 = bnk->theta_i * bnk->gnorm * tao->trust / (bnk->theta_i * bnk->gnorm * tao->trust + (1.0 - bnk->theta_i) * prered - actred); 217eb910715SAlp Dener tau_2 = bnk->theta_i * bnk->gnorm * tao->trust / (bnk->theta_i * bnk->gnorm * tao->trust - (1.0 + bnk->theta_i) * prered + actred); 218eb910715SAlp Dener tau_min = PetscMin(tau_1, tau_2); 219eb910715SAlp Dener tau_max = PetscMax(tau_1, tau_2); 220eb910715SAlp Dener 221eb910715SAlp Dener if (PetscAbsScalar(kappa - 1.0) <= bnk->mu1_i) { 222eb910715SAlp Dener /* Great agreement */ 223eb910715SAlp Dener max_radius = PetscMax(max_radius, tao->trust); 224eb910715SAlp Dener 225eb910715SAlp Dener if (tau_max < 1.0) { 226eb910715SAlp Dener tau = bnk->gamma3_i; 22708752603SAlp Dener } 22808752603SAlp Dener else if (tau_max > bnk->gamma4_i) { 229eb910715SAlp Dener tau = bnk->gamma4_i; 23008752603SAlp Dener } 23108752603SAlp Dener else { 232eb910715SAlp Dener tau = tau_max; 233eb910715SAlp Dener } 23408752603SAlp Dener } 23508752603SAlp Dener else if (PetscAbsScalar(kappa - 1.0) <= bnk->mu2_i) { 236eb910715SAlp Dener /* Good agreement */ 237eb910715SAlp Dener max_radius = PetscMax(max_radius, tao->trust); 238eb910715SAlp Dener 239eb910715SAlp Dener if (tau_max < bnk->gamma2_i) { 240eb910715SAlp Dener tau = bnk->gamma2_i; 241eb910715SAlp Dener } else if (tau_max > bnk->gamma3_i) { 242eb910715SAlp Dener tau = bnk->gamma3_i; 243eb910715SAlp Dener } else { 244eb910715SAlp Dener tau = tau_max; 245eb910715SAlp Dener } 24608752603SAlp Dener } 24708752603SAlp Dener else { 248eb910715SAlp Dener /* Not good agreement */ 249eb910715SAlp Dener if (tau_min > 1.0) { 250eb910715SAlp Dener tau = bnk->gamma2_i; 251eb910715SAlp Dener } else if (tau_max < bnk->gamma1_i) { 252eb910715SAlp Dener tau = bnk->gamma1_i; 253eb910715SAlp Dener } else if ((tau_min < bnk->gamma1_i) && (tau_max >= 1.0)) { 254eb910715SAlp Dener tau = bnk->gamma1_i; 25508752603SAlp Dener } else if ((tau_1 >= bnk->gamma1_i) && (tau_1 < 1.0) && 25608752603SAlp Dener ((tau_2 < bnk->gamma1_i) || (tau_2 >= 1.0))) { 257eb910715SAlp Dener tau = tau_1; 25808752603SAlp Dener } else if ((tau_2 >= bnk->gamma1_i) && (tau_2 < 1.0) && 25908752603SAlp Dener ((tau_1 < bnk->gamma1_i) || (tau_2 >= 1.0))) { 260eb910715SAlp Dener tau = tau_2; 261eb910715SAlp Dener } else { 262eb910715SAlp Dener tau = tau_max; 263eb910715SAlp Dener } 264eb910715SAlp Dener } 265eb910715SAlp Dener } 266eb910715SAlp Dener tao->trust = tau * tao->trust; 267eb910715SAlp Dener } 268eb910715SAlp Dener 2690a4511e9SAlp Dener if (f_min < bnk->f) { 270937a31a1SAlp Dener /* We accidentally found a solution better than the initial, so accept it */ 2710a4511e9SAlp Dener bnk->f = f_min; 272937a31a1SAlp Dener ierr = VecCopy(tao->solution, bnk->Xold);CHKERRQ(ierr); 273eb910715SAlp Dener ierr = VecAXPY(tao->solution,sigma,tao->gradient);CHKERRQ(ierr); 274*c4b75bccSAlp Dener ierr = TaoBoundSolution(tao->XL, tao->XU, tao->solution, &nDiff);CHKERRQ(ierr); 275937a31a1SAlp Dener ierr = VecCopy(tao->solution, tao->stepdirection);CHKERRQ(ierr); 276937a31a1SAlp Dener ierr = VecAXPY(tao->stepdirection, -1.0, bnk->Xold);CHKERRQ(ierr); 27709164190SAlp Dener ierr = TaoComputeGradient(tao,tao->solution,bnk->unprojected_gradient);CHKERRQ(ierr); 27861be54a6SAlp Dener ierr = TaoBNKEstimateActiveSet(tao, bnk->as_type);CHKERRQ(ierr); 27961be54a6SAlp Dener ierr = VecCopy(bnk->unprojected_gradient, tao->gradient);CHKERRQ(ierr); 28061be54a6SAlp Dener ierr = VecISSet(tao->gradient, bnk->active_idx, 0.0);CHKERRQ(ierr); 281937a31a1SAlp Dener /* Compute gradient at the new iterate and flip switch to compute the Hessian later */ 282*c4b75bccSAlp Dener ierr = VecNorm(tao->gradient, NORM_2, &bnk->gnorm);CHKERRQ(ierr); 283eb910715SAlp Dener if (PetscIsInfOrNanReal(bnk->gnorm)) SETERRQ(PETSC_COMM_SELF,1, "User provided compute gradient generated Inf or NaN"); 284c0f10754SAlp Dener *needH = PETSC_TRUE; 285937a31a1SAlp Dener /* Test the new step for convergence */ 286e031d6f5SAlp Dener ierr = VecFischer(tao->solution, bnk->unprojected_gradient, tao->XL, tao->XU, bnk->Gwork);CHKERRQ(ierr); 287e031d6f5SAlp Dener ierr = VecNorm(bnk->Gwork, NORM_2, &resnorm);CHKERRQ(ierr); 288e031d6f5SAlp Dener ierr = TaoLogConvergenceHistory(tao,bnk->f,resnorm,0.0,tao->ksp_its);CHKERRQ(ierr); 289e031d6f5SAlp Dener ierr = TaoMonitor(tao,tao->niter,bnk->f,resnorm,0.0,1.0);CHKERRQ(ierr); 290eb910715SAlp Dener ierr = (*tao->ops->convergencetest)(tao,tao->cnvP);CHKERRQ(ierr); 291eb910715SAlp Dener if (tao->reason != TAO_CONTINUE_ITERATING) PetscFunctionReturn(0); 292937a31a1SAlp Dener /* active BNCG recycling early because we have a stepdirection computed */ 293937a31a1SAlp Dener ierr = TaoBNCGSetRecycleFlag(bnk->bncg, PETSC_TRUE);CHKERRQ(ierr); 294eb910715SAlp Dener } 295eb910715SAlp Dener } 296eb910715SAlp Dener tao->trust = PetscMax(tao->trust, max_radius); 297e031d6f5SAlp Dener 298e031d6f5SAlp Dener /* Ensure that the trust radius is within the limits */ 299e031d6f5SAlp Dener tao->trust = PetscMax(tao->trust, bnk->min_radius); 300e031d6f5SAlp Dener tao->trust = PetscMin(tao->trust, bnk->max_radius); 301eb910715SAlp Dener break; 302eb910715SAlp Dener 303eb910715SAlp Dener default: 304eb910715SAlp Dener /* Norm of the first direction will initialize radius */ 305eb910715SAlp Dener tao->trust = 0.0; 306eb910715SAlp Dener break; 307eb910715SAlp Dener } 308eb910715SAlp Dener } 309e031d6f5SAlp Dener 310eb910715SAlp Dener /* Set initial scaling for the BFGS preconditioner 311eb910715SAlp Dener This step is done after computing the initial trust-region radius 312eb910715SAlp Dener since the function value may have decreased */ 313eb910715SAlp Dener if (BNK_PC_BFGS == bnk->pc_type) { 3149b6ef848SAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 315eb910715SAlp Dener ierr = MatLMVMSetDelta(bnk->M,delta);CHKERRQ(ierr); 316eb910715SAlp Dener } 317eb910715SAlp Dener PetscFunctionReturn(0); 318eb910715SAlp Dener } 319eb910715SAlp Dener 320df278d8fSAlp Dener /*------------------------------------------------------------*/ 321df278d8fSAlp Dener 32262675beeSAlp Dener /* Routine for computing the Hessian and preparing the preconditioner at the new iterate */ 32362675beeSAlp Dener 32462675beeSAlp Dener PetscErrorCode TaoBNKComputeHessian(Tao tao) 32562675beeSAlp Dener { 32662675beeSAlp Dener PetscErrorCode ierr; 32762675beeSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 328*c4b75bccSAlp Dener PetscBool diagExists; 329*c4b75bccSAlp Dener PetscReal delta; 33062675beeSAlp Dener 33162675beeSAlp Dener PetscFunctionBegin; 33262675beeSAlp Dener /* Compute the Hessian */ 33362675beeSAlp Dener ierr = TaoComputeHessian(tao,tao->solution,tao->hessian,tao->hessian_pre);CHKERRQ(ierr); 33462675beeSAlp Dener /* Add a correction to the BFGS preconditioner */ 33562675beeSAlp Dener if (BNK_PC_BFGS == bnk->pc_type) { 33662675beeSAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 33762675beeSAlp Dener /* Update the BFGS diagonal scaling */ 338*c4b75bccSAlp Dener ierr = MatHasOperation(tao->hessian, MATOP_GET_DIAGONAL, &diagExists);CHKERRQ(ierr); 339*c4b75bccSAlp Dener if (BFGS_SCALE_AHESS == bnk->bfgs_scale_type && diagExists) { 34062675beeSAlp Dener ierr = MatGetDiagonal(tao->hessian, bnk->Diag);CHKERRQ(ierr); 34162675beeSAlp Dener ierr = VecAbs(bnk->Diag);CHKERRQ(ierr); 34262675beeSAlp Dener ierr = VecMedian(bnk->Diag_min, bnk->Diag, bnk->Diag_max, bnk->Diag);CHKERRQ(ierr); 34362675beeSAlp Dener ierr = VecReciprocal(bnk->Diag);CHKERRQ(ierr); 34462675beeSAlp Dener ierr = MatLMVMSetScale(bnk->M,bnk->Diag);CHKERRQ(ierr); 345*c4b75bccSAlp Dener } else { 346*c4b75bccSAlp Dener /* Fall back onto stand-alone BFGS scaling */ 347*c4b75bccSAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 348*c4b75bccSAlp Dener ierr = MatLMVMSetDelta(bnk->M,delta);CHKERRQ(ierr); 34962675beeSAlp Dener } 35062675beeSAlp Dener } 35162675beeSAlp Dener PetscFunctionReturn(0); 35262675beeSAlp Dener } 35362675beeSAlp Dener 35462675beeSAlp Dener /*------------------------------------------------------------*/ 35562675beeSAlp Dener 3562f75a4aaSAlp Dener /* Routine for estimating the active set */ 3572f75a4aaSAlp Dener 35808752603SAlp Dener PetscErrorCode TaoBNKEstimateActiveSet(Tao tao, PetscInt asType) 3592f75a4aaSAlp Dener { 3602f75a4aaSAlp Dener PetscErrorCode ierr; 3612f75a4aaSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 362*c4b75bccSAlp Dener PetscBool hessComputed, diagExists; 3632f75a4aaSAlp Dener 3642f75a4aaSAlp Dener PetscFunctionBegin; 36508752603SAlp Dener switch (asType) { 3662f75a4aaSAlp Dener case BNK_AS_NONE: 3672f75a4aaSAlp Dener ierr = ISDestroy(&bnk->inactive_idx);CHKERRQ(ierr); 3682f75a4aaSAlp Dener ierr = VecWhichInactive(tao->XL, tao->solution, bnk->unprojected_gradient, tao->XU, PETSC_TRUE, &bnk->inactive_idx);CHKERRQ(ierr); 3692f75a4aaSAlp Dener ierr = ISDestroy(&bnk->active_idx);CHKERRQ(ierr); 3702f75a4aaSAlp Dener ierr = ISComplementVec(bnk->inactive_idx, tao->solution, &bnk->active_idx);CHKERRQ(ierr); 3712f75a4aaSAlp Dener break; 3722f75a4aaSAlp Dener 3732f75a4aaSAlp Dener case BNK_AS_BERTSEKAS: 3742f75a4aaSAlp Dener /* Compute the trial step vector with which we will estimate the active set at the next iteration */ 3752f75a4aaSAlp Dener if (BNK_PC_BFGS == bnk->pc_type) { 3762f75a4aaSAlp Dener /* If the BFGS preconditioner matrix is available, we will construct a trial step with it */ 3775e9b73cbSAlp Dener ierr = MatLMVMSetInactive(bnk->M, NULL);CHKERRQ(ierr); 3782f75a4aaSAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, bnk->W);CHKERRQ(ierr); 3792f75a4aaSAlp Dener } else { 38061be54a6SAlp Dener ierr = MatAssembled(tao->hessian, &hessComputed);CHKERRQ(ierr); 381*c4b75bccSAlp Dener ierr = MatHasOperation(tao->hessian, MATOP_GET_DIAGONAL, &diagExists);CHKERRQ(ierr); 382*c4b75bccSAlp Dener if (hessComputed && diagExists) { 3839b6ef848SAlp Dener /* BFGS preconditioner doesn't exist so let's invert the absolute diagonal of the Hessian instead onto the gradient */ 3842f75a4aaSAlp Dener ierr = MatGetDiagonal(tao->hessian, bnk->Xwork);CHKERRQ(ierr); 3859b6ef848SAlp Dener ierr = VecAbs(bnk->Xwork);CHKERRQ(ierr); 3869b6ef848SAlp Dener ierr = VecMedian(bnk->Diag_min, bnk->Xwork, bnk->Diag_max, bnk->Xwork);CHKERRQ(ierr); 3872f75a4aaSAlp Dener ierr = VecReciprocal(bnk->Xwork);CHKERRQ(ierr);CHKERRQ(ierr); 3882f75a4aaSAlp Dener ierr = VecPointwiseMult(bnk->W, bnk->Xwork, bnk->unprojected_gradient);CHKERRQ(ierr); 38961be54a6SAlp Dener } else { 390*c4b75bccSAlp Dener /* If the Hessian or its diagonal does not exist, we will simply use gradient step */ 39161be54a6SAlp Dener ierr = VecCopy(bnk->unprojected_gradient, bnk->W);CHKERRQ(ierr); 39261be54a6SAlp Dener } 3932f75a4aaSAlp Dener } 3942f75a4aaSAlp Dener ierr = VecScale(bnk->W, -1.0);CHKERRQ(ierr); 395*c4b75bccSAlp Dener ierr = TaoEstimateActiveBounds(tao->solution, tao->XL, tao->XU, bnk->unprojected_gradient, bnk->W, bnk->Xwork, bnk->as_step, &bnk->as_tol, &bnk->active_lower, &bnk->active_upper, &bnk->active_fixed, &bnk->active_idx, &bnk->inactive_idx);CHKERRQ(ierr); 396*c4b75bccSAlp Dener break; 3972f75a4aaSAlp Dener 3982f75a4aaSAlp Dener default: 3992f75a4aaSAlp Dener break; 4002f75a4aaSAlp Dener } 4012f75a4aaSAlp Dener PetscFunctionReturn(0); 4022f75a4aaSAlp Dener } 4032f75a4aaSAlp Dener 4042f75a4aaSAlp Dener /*------------------------------------------------------------*/ 4052f75a4aaSAlp Dener 4062f75a4aaSAlp Dener /* Routine for bounding the step direction */ 4072f75a4aaSAlp Dener 4082f75a4aaSAlp Dener PetscErrorCode TaoBNKBoundStep(Tao tao, Vec step) 4092f75a4aaSAlp Dener { 4102f75a4aaSAlp Dener PetscErrorCode ierr; 4112f75a4aaSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 4122f75a4aaSAlp Dener 4132f75a4aaSAlp Dener PetscFunctionBegin; 4142f75a4aaSAlp Dener switch (bnk->as_type) { 4152f75a4aaSAlp Dener case BNK_AS_NONE: 416*c4b75bccSAlp Dener if (bnk->active_idx) { 417*c4b75bccSAlp Dener ierr = VecISSet(step, bnk->active_idx, 0.0);CHKERRQ(ierr); 418*c4b75bccSAlp Dener } 4192f75a4aaSAlp Dener break; 4202f75a4aaSAlp Dener 4212f75a4aaSAlp Dener case BNK_AS_BERTSEKAS: 422*c4b75bccSAlp Dener ierr = TaoBoundStep(tao->solution, tao->XL, tao->XU, bnk->active_lower, bnk->active_upper, bnk->active_fixed, 1.0, step);CHKERRQ(ierr); 4232f75a4aaSAlp Dener break; 4242f75a4aaSAlp Dener 4252f75a4aaSAlp Dener default: 4262f75a4aaSAlp Dener break; 4272f75a4aaSAlp Dener } 4282f75a4aaSAlp Dener PetscFunctionReturn(0); 4292f75a4aaSAlp Dener } 4302f75a4aaSAlp Dener 431e031d6f5SAlp Dener /*------------------------------------------------------------*/ 432e031d6f5SAlp Dener 433e031d6f5SAlp Dener /* Routine for taking a finite number of BNCG iterations to 434e031d6f5SAlp Dener accelerate Newton convergence. 435e031d6f5SAlp Dener 436e031d6f5SAlp Dener In practice, this approach simply trades off Hessian evaluations 437e031d6f5SAlp Dener for more gradient evaluations. 438e031d6f5SAlp Dener */ 439e031d6f5SAlp Dener 440c0f10754SAlp Dener PetscErrorCode TaoBNKTakeCGSteps(Tao tao, PetscBool *terminate) 441c0f10754SAlp Dener { 442c0f10754SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 443c0f10754SAlp Dener PetscErrorCode ierr; 444c0f10754SAlp Dener 445c0f10754SAlp Dener PetscFunctionBegin; 446c0f10754SAlp Dener *terminate = PETSC_FALSE; 447c0f10754SAlp Dener if (bnk->max_cg_its > 0) { 448*c4b75bccSAlp Dener /* Copy the current function value (important vectors are already shared) */ 449c0f10754SAlp Dener bnk->bncg_ctx->f = bnk->f; 450c0f10754SAlp Dener /* Take some small finite number of BNCG iterations */ 451c0f10754SAlp Dener ierr = TaoSolve(bnk->bncg);CHKERRQ(ierr); 452c0f10754SAlp Dener /* Add the number of gradient and function evaluations to the total */ 453c0f10754SAlp Dener tao->nfuncs += bnk->bncg->nfuncs; 454c0f10754SAlp Dener tao->nfuncgrads += bnk->bncg->nfuncgrads; 455c0f10754SAlp Dener tao->ngrads += bnk->bncg->ngrads; 456c0f10754SAlp Dener tao->nhess += bnk->bncg->nhess; 457e031d6f5SAlp Dener bnk->tot_cg_its += bnk->bncg->niter; 458*c4b75bccSAlp Dener /* Extract the BNCG function value out and save it into BNK */ 459c0f10754SAlp Dener bnk->f = bnk->bncg_ctx->f; 460c0f10754SAlp Dener if (bnk->bncg->reason == TAO_CONVERGED_GATOL || bnk->bncg->reason == TAO_CONVERGED_GRTOL || bnk->bncg->reason == TAO_CONVERGED_GTTOL || bnk->bncg->reason == TAO_CONVERGED_MINF) { 461c0f10754SAlp Dener *terminate = PETSC_TRUE; 46261be54a6SAlp Dener } else { 46361be54a6SAlp Dener ierr = TaoBNKEstimateActiveSet(tao, bnk->as_type); 464c0f10754SAlp Dener } 465c0f10754SAlp Dener } 466c0f10754SAlp Dener PetscFunctionReturn(0); 467c0f10754SAlp Dener } 468c0f10754SAlp Dener 4692f75a4aaSAlp Dener /*------------------------------------------------------------*/ 4702f75a4aaSAlp Dener 471c0f10754SAlp Dener /* Routine for computing the Newton step. */ 472df278d8fSAlp Dener 47362675beeSAlp Dener PetscErrorCode TaoBNKComputeStep(Tao tao, PetscBool shift, KSPConvergedReason *ksp_reason) 474eb910715SAlp Dener { 475eb910715SAlp Dener PetscErrorCode ierr; 476eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 477eb910715SAlp Dener 478e465cd6fSAlp Dener PetscReal delta; 479eb910715SAlp Dener PetscInt bfgsUpdates = 0; 480eb910715SAlp Dener PetscInt kspits; 481*c4b75bccSAlp Dener PetscBool diagExists; 482eb910715SAlp Dener 483eb910715SAlp Dener PetscFunctionBegin; 4845e9b73cbSAlp Dener /* Prepare the reduced sub-matrices for the inactive set */ 4852f75a4aaSAlp Dener if (BNK_PC_BFGS == bnk->pc_type) { ierr = MatLMVMSetInactive(bnk->M, bnk->inactive_idx);CHKERRQ(ierr); } 4862f75a4aaSAlp Dener if (bnk->inactive_idx) { 4875e9b73cbSAlp Dener ierr = MatDestroy(&bnk->H_inactive); 4885e9b73cbSAlp Dener ierr = MatCreateSubMatrix(tao->hessian, bnk->inactive_idx, bnk->inactive_idx, MAT_INITIAL_MATRIX, &bnk->H_inactive);CHKERRQ(ierr); 489eb3ba6a7SAlp Dener if (tao->hessian == tao->hessian_pre) { 490eb3ba6a7SAlp Dener bnk->Hpre_inactive = bnk->H_inactive; 491eb3ba6a7SAlp Dener } else { 4925e9b73cbSAlp Dener ierr = MatDestroy(&bnk->Hpre_inactive); 4935e9b73cbSAlp Dener ierr = MatCreateSubMatrix(tao->hessian_pre, bnk->inactive_idx, bnk->inactive_idx, MAT_INITIAL_MATRIX, &bnk->Hpre_inactive);CHKERRQ(ierr); 494eb3ba6a7SAlp Dener } 4952f75a4aaSAlp Dener } else { 49662675beeSAlp Dener ierr = MatDestroy(&bnk->H_inactive); 49762675beeSAlp Dener ierr = MatDuplicate(tao->hessian, MAT_COPY_VALUES, &bnk->H_inactive); 49862675beeSAlp Dener if (tao->hessian == tao->hessian_pre) { 49962675beeSAlp Dener bnk->Hpre_inactive = bnk->H_inactive; 50062675beeSAlp Dener } else { 50162675beeSAlp Dener ierr = MatDestroy(&bnk->Hpre_inactive); 50262675beeSAlp Dener ierr = MatDuplicate(tao->hessian_pre, MAT_COPY_VALUES, &bnk->Hpre_inactive); 50362675beeSAlp Dener } 50462675beeSAlp Dener } 50562675beeSAlp Dener 50662675beeSAlp Dener /* Shift the reduced Hessian matrix */ 50762675beeSAlp Dener if ((shift) && (bnk->pert > 0)) { 50862675beeSAlp Dener ierr = MatShift(bnk->H_inactive, bnk->pert);CHKERRQ(ierr); 50962675beeSAlp Dener if (bnk->H_inactive != bnk->Hpre_inactive) { 51062675beeSAlp Dener ierr = MatShift(bnk->Hpre_inactive, bnk->pert);CHKERRQ(ierr); 51162675beeSAlp Dener } 51262675beeSAlp Dener } 51362675beeSAlp Dener 51462675beeSAlp Dener /* Update the diagonal scaling for the BFGS preconditioner, this time with the Hessian perturbation */ 51562675beeSAlp Dener if ((BNK_PC_BFGS == bnk->pc_type) && (BFGS_SCALE_PHESS == bnk->bfgs_scale_type)) { 516*c4b75bccSAlp Dener ierr = MatHasOperation(bnk->H_inactive, MATOP_GET_DIAGONAL, &diagExists);CHKERRQ(ierr); 517*c4b75bccSAlp Dener if (diagExists) { 51862675beeSAlp Dener /* Obtain diagonal for the bfgs preconditioner */ 5195e9b73cbSAlp Dener ierr = VecSet(bnk->Diag, 1.0);CHKERRQ(ierr); 5205e9b73cbSAlp Dener if (bnk->inactive_idx) { 5215e9b73cbSAlp Dener ierr = VecGetSubVector(bnk->Diag, bnk->inactive_idx, &bnk->Diag_red);CHKERRQ(ierr); 5225e9b73cbSAlp Dener } else { 5235e9b73cbSAlp Dener bnk->Diag_red = bnk->Diag; 5245e9b73cbSAlp Dener } 5255e9b73cbSAlp Dener ierr = MatGetDiagonal(bnk->H_inactive, bnk->Diag_red);CHKERRQ(ierr); 5265e9b73cbSAlp Dener if (bnk->inactive_idx) { 5275e9b73cbSAlp Dener ierr = VecRestoreSubVector(bnk->Diag, bnk->inactive_idx, &bnk->Diag_red);CHKERRQ(ierr); 5285e9b73cbSAlp Dener } 52962675beeSAlp Dener ierr = VecAbs(bnk->Diag);CHKERRQ(ierr); 53062675beeSAlp Dener ierr = VecMedian(bnk->Diag_min, bnk->Diag, bnk->Diag_max, bnk->Diag);CHKERRQ(ierr); 53162675beeSAlp Dener ierr = VecReciprocal(bnk->Diag);CHKERRQ(ierr); 53262675beeSAlp Dener ierr = MatLMVMSetScale(bnk->M,bnk->Diag);CHKERRQ(ierr); 533*c4b75bccSAlp Dener } else { 534*c4b75bccSAlp Dener /* Fall back onto stand-alone BFGS scaling */ 535*c4b75bccSAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 536*c4b75bccSAlp Dener ierr = MatLMVMSetDelta(bnk->M,delta);CHKERRQ(ierr); 537*c4b75bccSAlp Dener } 5382f75a4aaSAlp Dener } 53909164190SAlp Dener 540eb910715SAlp Dener /* Solve the Newton system of equations */ 541937a31a1SAlp Dener tao->ksp_its = 0; 5422f75a4aaSAlp Dener ierr = VecSet(tao->stepdirection, 0.0);CHKERRQ(ierr); 5435e9b73cbSAlp Dener ierr = KSPReset(tao->ksp);CHKERRQ(ierr); 54409164190SAlp Dener ierr = KSPSetOperators(tao->ksp,bnk->H_inactive,bnk->Hpre_inactive);CHKERRQ(ierr); 5455e9b73cbSAlp Dener ierr = VecCopy(bnk->unprojected_gradient, bnk->Gwork);CHKERRQ(ierr); 5465e9b73cbSAlp Dener if (bnk->inactive_idx) { 5475e9b73cbSAlp Dener ierr = VecGetSubVector(bnk->Gwork, bnk->inactive_idx, &bnk->G_inactive);CHKERRQ(ierr); 5485e9b73cbSAlp Dener ierr = VecGetSubVector(tao->stepdirection, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 5495e9b73cbSAlp Dener } else { 5505e9b73cbSAlp Dener bnk->G_inactive = bnk->unprojected_gradient; 5515e9b73cbSAlp Dener bnk->X_inactive = tao->stepdirection; 55228017e9fSAlp Dener } 553eb910715SAlp Dener if (bnk->is_nash || bnk->is_stcg || bnk->is_gltr) { 554fed79b8eSAlp Dener ierr = KSPCGSetRadius(tao->ksp,tao->trust);CHKERRQ(ierr); 5555e9b73cbSAlp Dener ierr = KSPSolve(tao->ksp, bnk->G_inactive, bnk->X_inactive);CHKERRQ(ierr); 556eb910715SAlp Dener ierr = KSPGetIterationNumber(tao->ksp,&kspits);CHKERRQ(ierr); 557eb910715SAlp Dener tao->ksp_its+=kspits; 558eb910715SAlp Dener tao->ksp_tot_its+=kspits; 559080d2917SAlp Dener ierr = KSPCGGetNormD(tao->ksp,&bnk->dnorm);CHKERRQ(ierr); 560eb910715SAlp Dener 561eb910715SAlp Dener if (0.0 == tao->trust) { 562eb910715SAlp Dener /* Radius was uninitialized; use the norm of the direction */ 563080d2917SAlp Dener if (bnk->dnorm > 0.0) { 564080d2917SAlp Dener tao->trust = bnk->dnorm; 565eb910715SAlp Dener 566eb910715SAlp Dener /* Modify the radius if it is too large or small */ 567eb910715SAlp Dener tao->trust = PetscMax(tao->trust, bnk->min_radius); 568eb910715SAlp Dener tao->trust = PetscMin(tao->trust, bnk->max_radius); 569eb910715SAlp Dener } else { 570eb910715SAlp Dener /* The direction was bad; set radius to default value and re-solve 571eb910715SAlp Dener the trust-region subproblem to get a direction */ 572eb910715SAlp Dener tao->trust = tao->trust0; 573eb910715SAlp Dener 574eb910715SAlp Dener /* Modify the radius if it is too large or small */ 575eb910715SAlp Dener tao->trust = PetscMax(tao->trust, bnk->min_radius); 576eb910715SAlp Dener tao->trust = PetscMin(tao->trust, bnk->max_radius); 577eb910715SAlp Dener 578fed79b8eSAlp Dener ierr = KSPCGSetRadius(tao->ksp,tao->trust);CHKERRQ(ierr); 5795e9b73cbSAlp Dener ierr = KSPSolve(tao->ksp, bnk->G_inactive, bnk->X_inactive);CHKERRQ(ierr); 580eb910715SAlp Dener ierr = KSPGetIterationNumber(tao->ksp,&kspits);CHKERRQ(ierr); 581eb910715SAlp Dener tao->ksp_its+=kspits; 582eb910715SAlp Dener tao->ksp_tot_its+=kspits; 583080d2917SAlp Dener ierr = KSPCGGetNormD(tao->ksp,&bnk->dnorm);CHKERRQ(ierr); 584eb910715SAlp Dener 585080d2917SAlp Dener if (bnk->dnorm == 0.0) SETERRQ(PETSC_COMM_SELF,1, "Initial direction zero"); 586eb910715SAlp Dener } 587eb910715SAlp Dener } 588eb910715SAlp Dener } else { 5895e9b73cbSAlp Dener ierr = KSPSolve(tao->ksp, bnk->G_inactive, bnk->X_inactive);CHKERRQ(ierr); 590eb910715SAlp Dener ierr = KSPGetIterationNumber(tao->ksp, &kspits);CHKERRQ(ierr); 591eb910715SAlp Dener tao->ksp_its += kspits; 592eb910715SAlp Dener tao->ksp_tot_its+=kspits; 593eb910715SAlp Dener } 5945e9b73cbSAlp Dener /* Restore sub vectors back */ 5955e9b73cbSAlp Dener if (bnk->inactive_idx) { 5965e9b73cbSAlp Dener ierr = VecRestoreSubVector(bnk->Gwork, bnk->inactive_idx, &bnk->G_inactive);CHKERRQ(ierr); 5975e9b73cbSAlp Dener ierr = VecRestoreSubVector(tao->stepdirection, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 5985e9b73cbSAlp Dener } 599770b7498SAlp Dener /* Make sure the safeguarded fall-back step is zero for actively bounded variables */ 600fed79b8eSAlp Dener ierr = VecScale(tao->stepdirection, -1.0);CHKERRQ(ierr); 6012f75a4aaSAlp Dener ierr = TaoBNKBoundStep(tao, tao->stepdirection);CHKERRQ(ierr); 602770b7498SAlp Dener 603770b7498SAlp Dener /* Record convergence reasons */ 604e465cd6fSAlp Dener ierr = KSPGetConvergedReason(tao->ksp, ksp_reason);CHKERRQ(ierr); 605e465cd6fSAlp Dener if (KSP_CONVERGED_ATOL == *ksp_reason) { 606770b7498SAlp Dener ++bnk->ksp_atol; 607e465cd6fSAlp Dener } else if (KSP_CONVERGED_RTOL == *ksp_reason) { 608770b7498SAlp Dener ++bnk->ksp_rtol; 609e465cd6fSAlp Dener } else if (KSP_CONVERGED_CG_CONSTRAINED == *ksp_reason) { 610770b7498SAlp Dener ++bnk->ksp_ctol; 611e465cd6fSAlp Dener } else if (KSP_CONVERGED_CG_NEG_CURVE == *ksp_reason) { 612770b7498SAlp Dener ++bnk->ksp_negc; 613e465cd6fSAlp Dener } else if (KSP_DIVERGED_DTOL == *ksp_reason) { 614770b7498SAlp Dener ++bnk->ksp_dtol; 615e465cd6fSAlp Dener } else if (KSP_DIVERGED_ITS == *ksp_reason) { 616770b7498SAlp Dener ++bnk->ksp_iter; 617770b7498SAlp Dener } else { 618770b7498SAlp Dener ++bnk->ksp_othr; 619770b7498SAlp Dener } 620fed79b8eSAlp Dener 621fed79b8eSAlp Dener /* Make sure the BFGS preconditioner is healthy */ 622fed79b8eSAlp Dener if (bnk->pc_type == BNK_PC_BFGS) { 623fed79b8eSAlp Dener ierr = MatLMVMGetUpdates(bnk->M, &bfgsUpdates);CHKERRQ(ierr); 624e465cd6fSAlp Dener if ((KSP_DIVERGED_INDEFINITE_PC == *ksp_reason) && (bfgsUpdates > 1)) { 625fed79b8eSAlp Dener /* Preconditioner is numerically indefinite; reset the approximation. */ 6269b6ef848SAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 627eb910715SAlp Dener ierr = MatLMVMSetDelta(bnk->M,delta);CHKERRQ(ierr); 628eb910715SAlp Dener ierr = MatLMVMReset(bnk->M);CHKERRQ(ierr); 62909164190SAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 630eb910715SAlp Dener } 631fed79b8eSAlp Dener } 632e465cd6fSAlp Dener PetscFunctionReturn(0); 633e465cd6fSAlp Dener } 634eb910715SAlp Dener 63562675beeSAlp Dener /*------------------------------------------------------------*/ 63662675beeSAlp Dener 6375e9b73cbSAlp Dener /* Routine for recomputing the predicted reduction for a given step vector */ 6385e9b73cbSAlp Dener 6395e9b73cbSAlp Dener PetscErrorCode TaoBNKRecomputePred(Tao tao, Vec S, PetscReal *prered) 6405e9b73cbSAlp Dener { 6415e9b73cbSAlp Dener PetscErrorCode ierr; 6425e9b73cbSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 6435e9b73cbSAlp Dener 6445e9b73cbSAlp Dener PetscFunctionBegin; 6455e9b73cbSAlp Dener /* Extract subvectors associated with the inactive set */ 6465e9b73cbSAlp Dener if (bnk->inactive_idx){ 6475e9b73cbSAlp Dener ierr = VecGetSubVector(tao->stepdirection, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 6485e9b73cbSAlp Dener ierr = VecGetSubVector(bnk->Xwork, bnk->inactive_idx, &bnk->inactive_work);CHKERRQ(ierr); 6495e9b73cbSAlp Dener ierr = VecGetSubVector(bnk->Gwork, bnk->inactive_idx, &bnk->G_inactive);CHKERRQ(ierr); 6505e9b73cbSAlp Dener } else { 6515e9b73cbSAlp Dener bnk->X_inactive = tao->stepdirection; 6525e9b73cbSAlp Dener bnk->inactive_work = bnk->Xwork; 6535e9b73cbSAlp Dener bnk->G_inactive = bnk->Gwork; 6545e9b73cbSAlp Dener } 6555e9b73cbSAlp Dener /* Recompute the predicted decrease based on the quadratic model */ 6565e9b73cbSAlp Dener ierr = MatMult(bnk->H_inactive, bnk->X_inactive, bnk->inactive_work);CHKERRQ(ierr); 6575e9b73cbSAlp Dener ierr = VecAYPX(bnk->inactive_work, -0.5, bnk->G_inactive);CHKERRQ(ierr); 6585e9b73cbSAlp Dener ierr = VecDot(bnk->inactive_work, bnk->X_inactive, prered); 6595e9b73cbSAlp Dener /* Restore the sub vectors */ 6605e9b73cbSAlp Dener if (bnk->inactive_idx){ 6615e9b73cbSAlp Dener ierr = VecRestoreSubVector(tao->stepdirection, bnk->inactive_idx, &bnk->X_inactive);CHKERRQ(ierr); 6625e9b73cbSAlp Dener ierr = VecRestoreSubVector(bnk->Xwork, bnk->inactive_idx, &bnk->inactive_work);CHKERRQ(ierr); 6635e9b73cbSAlp Dener ierr = VecRestoreSubVector(bnk->Gwork, bnk->inactive_idx, &bnk->G_inactive);CHKERRQ(ierr); 6645e9b73cbSAlp Dener } 6655e9b73cbSAlp Dener PetscFunctionReturn(0); 6665e9b73cbSAlp Dener } 6675e9b73cbSAlp Dener 6685e9b73cbSAlp Dener /*------------------------------------------------------------*/ 6695e9b73cbSAlp Dener 67062675beeSAlp Dener /* Routine for ensuring that the Newton step is a descent direction. 67162675beeSAlp Dener 67262675beeSAlp Dener The step direction falls back onto BFGS, scaled gradient and gradient steps 67362675beeSAlp Dener in the event that the Newton step fails the test. 67462675beeSAlp Dener */ 67562675beeSAlp Dener 676e465cd6fSAlp Dener PetscErrorCode TaoBNKSafeguardStep(Tao tao, KSPConvergedReason ksp_reason, PetscInt *stepType) 677e465cd6fSAlp Dener { 678e465cd6fSAlp Dener PetscErrorCode ierr; 679e465cd6fSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 680e465cd6fSAlp Dener 681e465cd6fSAlp Dener PetscReal gdx, delta, e_min; 682e465cd6fSAlp Dener PetscInt bfgsUpdates; 683e465cd6fSAlp Dener 684e465cd6fSAlp Dener PetscFunctionBegin; 685080d2917SAlp Dener ierr = VecDot(tao->stepdirection, tao->gradient, &gdx);CHKERRQ(ierr); 686eb910715SAlp Dener if ((gdx >= 0.0) || PetscIsInfOrNanReal(gdx)) { 687eb910715SAlp Dener /* Newton step is not descent or direction produced Inf or NaN 688eb910715SAlp Dener Update the perturbation for next time */ 689eb910715SAlp Dener if (bnk->pert <= 0.0) { 690eb910715SAlp Dener /* Initialize the perturbation */ 691eb910715SAlp Dener bnk->pert = PetscMin(bnk->imax, PetscMax(bnk->imin, bnk->imfac * bnk->gnorm)); 692eb910715SAlp Dener if (bnk->is_gltr) { 693eb910715SAlp Dener ierr = KSPCGGLTRGetMinEig(tao->ksp,&e_min);CHKERRQ(ierr); 694eb910715SAlp Dener bnk->pert = PetscMax(bnk->pert, -e_min); 695eb910715SAlp Dener } 696eb910715SAlp Dener } else { 697eb910715SAlp Dener /* Increase the perturbation */ 698eb910715SAlp Dener bnk->pert = PetscMin(bnk->pmax, PetscMax(bnk->pgfac * bnk->pert, bnk->pmgfac * bnk->gnorm)); 699eb910715SAlp Dener } 700eb910715SAlp Dener 701eb910715SAlp Dener if (BNK_PC_BFGS != bnk->pc_type) { 702eb910715SAlp Dener /* We don't have the bfgs matrix around and updated 703eb910715SAlp Dener Must use gradient direction in this case */ 704080d2917SAlp Dener ierr = VecCopy(tao->gradient, tao->stepdirection);CHKERRQ(ierr); 705eb910715SAlp Dener *stepType = BNK_GRADIENT; 706eb910715SAlp Dener } else { 707eb910715SAlp Dener /* Attempt to use the BFGS direction */ 7082ab2a32cSAlp Dener ierr = MatLMVMSetInactive(bnk->M, NULL);CHKERRQ(ierr); 70909164190SAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 710eb910715SAlp Dener 7118d5ead36SAlp Dener /* Check for success (descent direction) 7128d5ead36SAlp Dener NOTE: Negative gdx here means not a descent direction because 7138d5ead36SAlp Dener the fall-back step is missing a negative sign. */ 714080d2917SAlp Dener ierr = VecDot(tao->gradient, tao->stepdirection, &gdx);CHKERRQ(ierr); 7158d5ead36SAlp Dener if ((gdx <= 0) || PetscIsInfOrNanReal(gdx)) { 716eb910715SAlp Dener /* BFGS direction is not descent or direction produced not a number 717eb910715SAlp Dener We can assert bfgsUpdates > 1 in this case because 718eb910715SAlp Dener the first solve produces the scaled gradient direction, 719eb910715SAlp Dener which is guaranteed to be descent */ 720eb910715SAlp Dener 721eb910715SAlp Dener /* Use steepest descent direction (scaled) */ 7229b6ef848SAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 723eb910715SAlp Dener ierr = MatLMVMSetDelta(bnk->M, delta);CHKERRQ(ierr); 724eb910715SAlp Dener ierr = MatLMVMReset(bnk->M);CHKERRQ(ierr); 72509164190SAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 72609164190SAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 727eb910715SAlp Dener 728eb910715SAlp Dener *stepType = BNK_SCALED_GRADIENT; 729eb910715SAlp Dener } else { 730770b7498SAlp Dener ierr = MatLMVMGetUpdates(bnk->M, &bfgsUpdates);CHKERRQ(ierr); 731eb910715SAlp Dener if (1 == bfgsUpdates) { 732eb910715SAlp Dener /* The first BFGS direction is always the scaled gradient */ 733eb910715SAlp Dener *stepType = BNK_SCALED_GRADIENT; 734eb910715SAlp Dener } else { 735eb910715SAlp Dener *stepType = BNK_BFGS; 736eb910715SAlp Dener } 737eb910715SAlp Dener } 738eb910715SAlp Dener } 7398d5ead36SAlp Dener /* Make sure the safeguarded fall-back step is zero for actively bounded variables */ 7408d5ead36SAlp Dener ierr = VecScale(tao->stepdirection, -1.0);CHKERRQ(ierr); 7412f75a4aaSAlp Dener ierr = TaoBNKBoundStep(tao, tao->stepdirection);CHKERRQ(ierr); 742eb910715SAlp Dener } else { 743eb910715SAlp Dener /* Computed Newton step is descent */ 744eb910715SAlp Dener switch (ksp_reason) { 745eb910715SAlp Dener case KSP_DIVERGED_NANORINF: 746eb910715SAlp Dener case KSP_DIVERGED_BREAKDOWN: 747eb910715SAlp Dener case KSP_DIVERGED_INDEFINITE_MAT: 748eb910715SAlp Dener case KSP_DIVERGED_INDEFINITE_PC: 749eb910715SAlp Dener case KSP_CONVERGED_CG_NEG_CURVE: 750eb910715SAlp Dener /* Matrix or preconditioner is indefinite; increase perturbation */ 751eb910715SAlp Dener if (bnk->pert <= 0.0) { 752eb910715SAlp Dener /* Initialize the perturbation */ 753eb910715SAlp Dener bnk->pert = PetscMin(bnk->imax, PetscMax(bnk->imin, bnk->imfac * bnk->gnorm)); 754eb910715SAlp Dener if (bnk->is_gltr) { 755eb910715SAlp Dener ierr = KSPCGGLTRGetMinEig(tao->ksp, &e_min);CHKERRQ(ierr); 756eb910715SAlp Dener bnk->pert = PetscMax(bnk->pert, -e_min); 757eb910715SAlp Dener } 758eb910715SAlp Dener } else { 759eb910715SAlp Dener /* Increase the perturbation */ 760eb910715SAlp Dener bnk->pert = PetscMin(bnk->pmax, PetscMax(bnk->pgfac * bnk->pert, bnk->pmgfac * bnk->gnorm)); 761eb910715SAlp Dener } 762eb910715SAlp Dener break; 763eb910715SAlp Dener 764eb910715SAlp Dener default: 765eb910715SAlp Dener /* Newton step computation is good; decrease perturbation */ 766eb910715SAlp Dener bnk->pert = PetscMin(bnk->psfac * bnk->pert, bnk->pmsfac * bnk->gnorm); 767eb910715SAlp Dener if (bnk->pert < bnk->pmin) { 768eb910715SAlp Dener bnk->pert = 0.0; 769eb910715SAlp Dener } 770eb910715SAlp Dener break; 771eb910715SAlp Dener } 772fed79b8eSAlp Dener *stepType = BNK_NEWTON; 773eb910715SAlp Dener } 774eb910715SAlp Dener PetscFunctionReturn(0); 775eb910715SAlp Dener } 776eb910715SAlp Dener 777df278d8fSAlp Dener /*------------------------------------------------------------*/ 778df278d8fSAlp Dener 779df278d8fSAlp Dener /* Routine for performing a bound-projected More-Thuente line search. 780df278d8fSAlp Dener 781df278d8fSAlp Dener Includes fallbacks to BFGS, scaled gradient, and unscaled gradient steps if the 782df278d8fSAlp Dener Newton step does not produce a valid step length. 783df278d8fSAlp Dener */ 784df278d8fSAlp Dener 785937a31a1SAlp Dener PetscErrorCode TaoBNKPerformLineSearch(Tao tao, PetscInt *stepType, PetscReal *steplen, TaoLineSearchConvergedReason *reason) 786c14b763aSAlp Dener { 787c14b763aSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 788c14b763aSAlp Dener PetscErrorCode ierr; 789c14b763aSAlp Dener TaoLineSearchConvergedReason ls_reason; 790c14b763aSAlp Dener 791c14b763aSAlp Dener PetscReal e_min, gdx, delta; 792c14b763aSAlp Dener PetscInt bfgsUpdates; 793c14b763aSAlp Dener 794c14b763aSAlp Dener PetscFunctionBegin; 795c14b763aSAlp Dener /* Perform the linesearch */ 796c14b763aSAlp Dener ierr = TaoLineSearchApply(tao->linesearch, tao->solution, &bnk->f, bnk->unprojected_gradient, tao->stepdirection, steplen, &ls_reason);CHKERRQ(ierr); 797c14b763aSAlp Dener ierr = TaoAddLineSearchCounts(tao);CHKERRQ(ierr); 798c14b763aSAlp Dener 799937a31a1SAlp Dener while (ls_reason != TAOLINESEARCH_SUCCESS && ls_reason != TAOLINESEARCH_SUCCESS_USER && *stepType != BNK_GRADIENT) { 800c14b763aSAlp Dener /* Linesearch failed, revert solution */ 801c14b763aSAlp Dener bnk->f = bnk->fold; 802c14b763aSAlp Dener ierr = VecCopy(bnk->Xold, tao->solution);CHKERRQ(ierr); 803c14b763aSAlp Dener ierr = VecCopy(bnk->unprojected_gradient_old, bnk->unprojected_gradient);CHKERRQ(ierr); 804c14b763aSAlp Dener 805937a31a1SAlp Dener switch(*stepType) { 806c14b763aSAlp Dener case BNK_NEWTON: 8078d5ead36SAlp Dener /* Failed to obtain acceptable iterate with Newton step 808c14b763aSAlp Dener Update the perturbation for next time */ 809c14b763aSAlp Dener if (bnk->pert <= 0.0) { 810c14b763aSAlp Dener /* Initialize the perturbation */ 811c14b763aSAlp Dener bnk->pert = PetscMin(bnk->imax, PetscMax(bnk->imin, bnk->imfac * bnk->gnorm)); 812c14b763aSAlp Dener if (bnk->is_gltr) { 813c14b763aSAlp Dener ierr = KSPCGGLTRGetMinEig(tao->ksp,&e_min);CHKERRQ(ierr); 814c14b763aSAlp Dener bnk->pert = PetscMax(bnk->pert, -e_min); 815c14b763aSAlp Dener } 816c14b763aSAlp Dener } else { 817c14b763aSAlp Dener /* Increase the perturbation */ 818c14b763aSAlp Dener bnk->pert = PetscMin(bnk->pmax, PetscMax(bnk->pgfac * bnk->pert, bnk->pmgfac * bnk->gnorm)); 819c14b763aSAlp Dener } 820c14b763aSAlp Dener 821c14b763aSAlp Dener if (BNK_PC_BFGS != bnk->pc_type) { 822c14b763aSAlp Dener /* We don't have the bfgs matrix around and being updated 823c14b763aSAlp Dener Must use gradient direction in this case */ 824937a31a1SAlp Dener ierr = VecCopy(bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 825937a31a1SAlp Dener *stepType = BNK_GRADIENT; 826c14b763aSAlp Dener } else { 827c14b763aSAlp Dener /* Attempt to use the BFGS direction */ 828937a31a1SAlp Dener ierr = MatLMVMSetInactive(bnk->M, NULL);CHKERRQ(ierr); 829c14b763aSAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 8308d5ead36SAlp Dener /* Check for success (descent direction) 8318d5ead36SAlp Dener NOTE: Negative gdx means not a descent direction because the step here is missing a negative sign. */ 832c14b763aSAlp Dener ierr = VecDot(tao->gradient, tao->stepdirection, &gdx);CHKERRQ(ierr); 833c14b763aSAlp Dener if ((gdx <= 0) || PetscIsInfOrNanReal(gdx)) { 834c14b763aSAlp Dener /* BFGS direction is not descent or direction produced not a number 835c14b763aSAlp Dener We can assert bfgsUpdates > 1 in this case 836c14b763aSAlp Dener Use steepest descent direction (scaled) */ 8379b6ef848SAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 838c14b763aSAlp Dener ierr = MatLMVMSetDelta(bnk->M, delta);CHKERRQ(ierr); 839c14b763aSAlp Dener ierr = MatLMVMReset(bnk->M);CHKERRQ(ierr); 840c14b763aSAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 841c14b763aSAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 842c14b763aSAlp Dener 843c14b763aSAlp Dener bfgsUpdates = 1; 844937a31a1SAlp Dener *stepType = BNK_SCALED_GRADIENT; 845c14b763aSAlp Dener } else { 846c14b763aSAlp Dener ierr = MatLMVMGetUpdates(bnk->M, &bfgsUpdates);CHKERRQ(ierr); 847c14b763aSAlp Dener if (1 == bfgsUpdates) { 848c14b763aSAlp Dener /* The first BFGS direction is always the scaled gradient */ 849937a31a1SAlp Dener *stepType = BNK_SCALED_GRADIENT; 850c14b763aSAlp Dener } else { 851937a31a1SAlp Dener *stepType = BNK_BFGS; 852c14b763aSAlp Dener } 853c14b763aSAlp Dener } 854c14b763aSAlp Dener } 855c14b763aSAlp Dener break; 856c14b763aSAlp Dener 857c14b763aSAlp Dener case BNK_BFGS: 858c14b763aSAlp Dener /* Can only enter if pc_type == BNK_PC_BFGS 859c14b763aSAlp Dener Failed to obtain acceptable iterate with BFGS step 860c14b763aSAlp Dener Attempt to use the scaled gradient direction */ 8619b6ef848SAlp Dener delta = 2.0 * PetscMax(1.0, PetscAbsScalar(bnk->f)) / (bnk->gnorm*bnk->gnorm); 862c14b763aSAlp Dener ierr = MatLMVMSetDelta(bnk->M, delta);CHKERRQ(ierr); 863c14b763aSAlp Dener ierr = MatLMVMReset(bnk->M);CHKERRQ(ierr); 864c14b763aSAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 865937a31a1SAlp Dener ierr = MatLMVMSetInactive(bnk->M, NULL);CHKERRQ(ierr); 866c14b763aSAlp Dener ierr = MatLMVMSolve(bnk->M, bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 867c14b763aSAlp Dener 868c14b763aSAlp Dener bfgsUpdates = 1; 869937a31a1SAlp Dener *stepType = BNK_SCALED_GRADIENT; 870c14b763aSAlp Dener break; 871c14b763aSAlp Dener 872c14b763aSAlp Dener case BNK_SCALED_GRADIENT: 873c14b763aSAlp Dener /* Can only enter if pc_type == BNK_PC_BFGS 874c14b763aSAlp Dener The scaled gradient step did not produce a new iterate; 875937a31a1SAlp Dener reset the BFGS matrix and attemp to use the gradient direction. */ 876c14b763aSAlp Dener ierr = MatLMVMSetScale(bnk->M,0);CHKERRQ(ierr); 877c14b763aSAlp Dener ierr = MatLMVMSetDelta(bnk->M,1.0);CHKERRQ(ierr); 878c14b763aSAlp Dener ierr = MatLMVMReset(bnk->M);CHKERRQ(ierr); 879c14b763aSAlp Dener ierr = MatLMVMUpdate(bnk->M, tao->solution, bnk->unprojected_gradient);CHKERRQ(ierr); 880937a31a1SAlp Dener ierr = VecCopy(bnk->unprojected_gradient, tao->stepdirection);CHKERRQ(ierr); 881c14b763aSAlp Dener 882c14b763aSAlp Dener bfgsUpdates = 1; 883937a31a1SAlp Dener *stepType = BNK_GRADIENT; 884c14b763aSAlp Dener break; 885c14b763aSAlp Dener } 8868d5ead36SAlp Dener /* Make sure the safeguarded fall-back step is zero for actively bounded variables */ 8878d5ead36SAlp Dener ierr = VecScale(tao->stepdirection, -1.0);CHKERRQ(ierr); 8882f75a4aaSAlp Dener ierr = TaoBNKBoundStep(tao, tao->stepdirection);CHKERRQ(ierr); 889c14b763aSAlp Dener 8908d5ead36SAlp Dener /* Perform one last line search with the fall-back step */ 891c14b763aSAlp Dener ierr = TaoLineSearchApply(tao->linesearch, tao->solution, &bnk->f, bnk->unprojected_gradient, tao->stepdirection, steplen, &ls_reason);CHKERRQ(ierr); 892c14b763aSAlp Dener ierr = TaoAddLineSearchCounts(tao);CHKERRQ(ierr); 893c14b763aSAlp Dener } 894c14b763aSAlp Dener *reason = ls_reason; 895c14b763aSAlp Dener PetscFunctionReturn(0); 896c14b763aSAlp Dener } 897c14b763aSAlp Dener 898df278d8fSAlp Dener /*------------------------------------------------------------*/ 899df278d8fSAlp Dener 900df278d8fSAlp Dener /* Routine for updating the trust radius. 901df278d8fSAlp Dener 902df278d8fSAlp Dener Function features three different update methods: 903df278d8fSAlp Dener 1) Line-search step length based 904df278d8fSAlp Dener 2) Predicted decrease on the CG quadratic model 905df278d8fSAlp Dener 3) Interpolation 906df278d8fSAlp Dener */ 907df278d8fSAlp Dener 90828017e9fSAlp Dener PetscErrorCode TaoBNKUpdateTrustRadius(Tao tao, PetscReal prered, PetscReal actred, PetscInt updateType, PetscInt stepType, PetscBool *accept) 909080d2917SAlp Dener { 910080d2917SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 911080d2917SAlp Dener PetscErrorCode ierr; 912080d2917SAlp Dener 913b1c2d0e3SAlp Dener PetscReal step, kappa; 914080d2917SAlp Dener PetscReal gdx, tau_1, tau_2, tau_min, tau_max; 915080d2917SAlp Dener 916080d2917SAlp Dener PetscFunctionBegin; 917080d2917SAlp Dener /* Update trust region radius */ 918080d2917SAlp Dener *accept = PETSC_FALSE; 91928017e9fSAlp Dener switch(updateType) { 920080d2917SAlp Dener case BNK_UPDATE_STEP: 921c14b763aSAlp Dener *accept = PETSC_TRUE; /* always accept here because line search succeeded */ 922080d2917SAlp Dener if (stepType == BNK_NEWTON) { 923080d2917SAlp Dener ierr = TaoLineSearchGetStepLength(tao->linesearch, &step);CHKERRQ(ierr); 924080d2917SAlp Dener if (step < bnk->nu1) { 925080d2917SAlp Dener /* Very bad step taken; reduce radius */ 926080d2917SAlp Dener tao->trust = bnk->omega1 * PetscMin(bnk->dnorm, tao->trust); 927080d2917SAlp Dener } else if (step < bnk->nu2) { 928080d2917SAlp Dener /* Reasonably bad step taken; reduce radius */ 929080d2917SAlp Dener tao->trust = bnk->omega2 * PetscMin(bnk->dnorm, tao->trust); 930080d2917SAlp Dener } else if (step < bnk->nu3) { 931080d2917SAlp Dener /* Reasonable step was taken; leave radius alone */ 932080d2917SAlp Dener if (bnk->omega3 < 1.0) { 933080d2917SAlp Dener tao->trust = bnk->omega3 * PetscMin(bnk->dnorm, tao->trust); 934080d2917SAlp Dener } else if (bnk->omega3 > 1.0) { 935080d2917SAlp Dener tao->trust = PetscMax(bnk->omega3 * bnk->dnorm, tao->trust); 936080d2917SAlp Dener } 937080d2917SAlp Dener } else if (step < bnk->nu4) { 938080d2917SAlp Dener /* Full step taken; increase the radius */ 939080d2917SAlp Dener tao->trust = PetscMax(bnk->omega4 * bnk->dnorm, tao->trust); 940080d2917SAlp Dener } else { 941080d2917SAlp Dener /* More than full step taken; increase the radius */ 942080d2917SAlp Dener tao->trust = PetscMax(bnk->omega5 * bnk->dnorm, tao->trust); 943080d2917SAlp Dener } 944080d2917SAlp Dener } else { 945080d2917SAlp Dener /* Newton step was not good; reduce the radius */ 946080d2917SAlp Dener tao->trust = bnk->omega1 * PetscMin(bnk->dnorm, tao->trust); 947080d2917SAlp Dener } 948080d2917SAlp Dener break; 949080d2917SAlp Dener 950080d2917SAlp Dener case BNK_UPDATE_REDUCTION: 951080d2917SAlp Dener if (stepType == BNK_NEWTON) { 952b1c2d0e3SAlp Dener if (prered < 0.0) { 953fed79b8eSAlp Dener /* The predicted reduction has the wrong sign. This cannot 954fed79b8eSAlp Dener happen in infinite precision arithmetic. Step should 955fed79b8eSAlp Dener be rejected! */ 956080d2917SAlp Dener tao->trust = bnk->alpha1 * PetscMin(tao->trust, bnk->dnorm); 957fed79b8eSAlp Dener } 958fed79b8eSAlp Dener else { 959b1c2d0e3SAlp Dener if (PetscIsInfOrNanReal(actred)) { 960080d2917SAlp Dener tao->trust = bnk->alpha1 * PetscMin(tao->trust, bnk->dnorm); 961080d2917SAlp Dener } else { 9620a4511e9SAlp Dener if ((PetscAbsScalar(actred) <= PetscMax(1.0, PetscAbsScalar(bnk->f))*bnk->epsilon) && 9630a4511e9SAlp Dener (PetscAbsScalar(prered) <= PetscMax(1.0, PetscAbsScalar(bnk->f))*bnk->epsilon)) { 964080d2917SAlp Dener kappa = 1.0; 965fed79b8eSAlp Dener } 966fed79b8eSAlp Dener else { 967080d2917SAlp Dener kappa = actred / prered; 968080d2917SAlp Dener } 969fed79b8eSAlp Dener 970fed79b8eSAlp Dener /* Accept or reject the step and update radius */ 971080d2917SAlp Dener if (kappa < bnk->eta1) { 972fed79b8eSAlp Dener /* Reject the step */ 973080d2917SAlp Dener tao->trust = bnk->alpha1 * PetscMin(tao->trust, bnk->dnorm); 974fed79b8eSAlp Dener } 975fed79b8eSAlp Dener else { 976fed79b8eSAlp Dener /* Accept the step */ 977c133c014SAlp Dener *accept = PETSC_TRUE; 978c133c014SAlp Dener /* Update the trust region radius only if the computed step is at the trust radius boundary */ 9798d5ead36SAlp Dener if (bnk->dnorm == tao->trust) { 980080d2917SAlp Dener if (kappa < bnk->eta2) { 981080d2917SAlp Dener /* Marginal bad step */ 982c133c014SAlp Dener tao->trust = bnk->alpha2 * tao->trust; 983080d2917SAlp Dener } 984fed79b8eSAlp Dener else if (kappa < bnk->eta3) { 985fed79b8eSAlp Dener /* Reasonable step */ 986fed79b8eSAlp Dener tao->trust = bnk->alpha3 * tao->trust; 987fed79b8eSAlp Dener } 988fed79b8eSAlp Dener else if (kappa < bnk->eta4) { 989080d2917SAlp Dener /* Good step */ 990c133c014SAlp Dener tao->trust = bnk->alpha4 * tao->trust; 991fed79b8eSAlp Dener } 992fed79b8eSAlp Dener else { 993080d2917SAlp Dener /* Very good step */ 994c133c014SAlp Dener tao->trust = bnk->alpha5 * tao->trust; 995080d2917SAlp Dener } 996c133c014SAlp Dener } 997080d2917SAlp Dener } 998080d2917SAlp Dener } 999080d2917SAlp Dener } 1000080d2917SAlp Dener } else { 1001080d2917SAlp Dener /* Newton step was not good; reduce the radius */ 1002080d2917SAlp Dener tao->trust = bnk->alpha1 * PetscMin(bnk->dnorm, tao->trust); 1003080d2917SAlp Dener } 1004080d2917SAlp Dener break; 1005080d2917SAlp Dener 1006080d2917SAlp Dener default: 1007080d2917SAlp Dener if (stepType == BNK_NEWTON) { 1008b1c2d0e3SAlp Dener if (prered < 0.0) { 1009080d2917SAlp Dener /* The predicted reduction has the wrong sign. This cannot */ 1010080d2917SAlp Dener /* happen in infinite precision arithmetic. Step should */ 1011080d2917SAlp Dener /* be rejected! */ 1012080d2917SAlp Dener tao->trust = bnk->gamma1 * PetscMin(tao->trust, bnk->dnorm); 1013080d2917SAlp Dener } else { 1014b1c2d0e3SAlp Dener if (PetscIsInfOrNanReal(actred)) { 1015080d2917SAlp Dener tao->trust = bnk->gamma1 * PetscMin(tao->trust, bnk->dnorm); 1016080d2917SAlp Dener } else { 1017080d2917SAlp Dener if ((PetscAbsScalar(actred) <= bnk->epsilon) && (PetscAbsScalar(prered) <= bnk->epsilon)) { 1018080d2917SAlp Dener kappa = 1.0; 1019080d2917SAlp Dener } else { 1020080d2917SAlp Dener kappa = actred / prered; 1021080d2917SAlp Dener } 1022080d2917SAlp Dener 1023080d2917SAlp Dener ierr = VecDot(tao->gradient, tao->stepdirection, &gdx);CHKERRQ(ierr); 1024080d2917SAlp Dener tau_1 = bnk->theta * gdx / (bnk->theta * gdx - (1.0 - bnk->theta) * prered + actred); 1025080d2917SAlp Dener tau_2 = bnk->theta * gdx / (bnk->theta * gdx + (1.0 + bnk->theta) * prered - actred); 1026080d2917SAlp Dener tau_min = PetscMin(tau_1, tau_2); 1027080d2917SAlp Dener tau_max = PetscMax(tau_1, tau_2); 1028080d2917SAlp Dener 1029080d2917SAlp Dener if (kappa >= 1.0 - bnk->mu1) { 1030080d2917SAlp Dener /* Great agreement */ 1031080d2917SAlp Dener *accept = PETSC_TRUE; 1032080d2917SAlp Dener if (tau_max < 1.0) { 1033080d2917SAlp Dener tao->trust = PetscMax(tao->trust, bnk->gamma3 * bnk->dnorm); 1034080d2917SAlp Dener } else if (tau_max > bnk->gamma4) { 1035080d2917SAlp Dener tao->trust = PetscMax(tao->trust, bnk->gamma4 * bnk->dnorm); 1036080d2917SAlp Dener } else { 1037080d2917SAlp Dener tao->trust = PetscMax(tao->trust, tau_max * bnk->dnorm); 1038080d2917SAlp Dener } 1039080d2917SAlp Dener } else if (kappa >= 1.0 - bnk->mu2) { 1040080d2917SAlp Dener /* Good agreement */ 1041080d2917SAlp Dener *accept = PETSC_TRUE; 1042080d2917SAlp Dener if (tau_max < bnk->gamma2) { 1043080d2917SAlp Dener tao->trust = bnk->gamma2 * PetscMin(tao->trust, bnk->dnorm); 1044080d2917SAlp Dener } else if (tau_max > bnk->gamma3) { 1045080d2917SAlp Dener tao->trust = PetscMax(tao->trust, bnk->gamma3 * bnk->dnorm); 1046080d2917SAlp Dener } else if (tau_max < 1.0) { 1047080d2917SAlp Dener tao->trust = tau_max * PetscMin(tao->trust, bnk->dnorm); 1048080d2917SAlp Dener } else { 1049080d2917SAlp Dener tao->trust = PetscMax(tao->trust, tau_max * bnk->dnorm); 1050080d2917SAlp Dener } 1051080d2917SAlp Dener } else { 1052080d2917SAlp Dener /* Not good agreement */ 1053080d2917SAlp Dener if (tau_min > 1.0) { 1054080d2917SAlp Dener tao->trust = bnk->gamma2 * PetscMin(tao->trust, bnk->dnorm); 1055080d2917SAlp Dener } else if (tau_max < bnk->gamma1) { 1056080d2917SAlp Dener tao->trust = bnk->gamma1 * PetscMin(tao->trust, bnk->dnorm); 1057080d2917SAlp Dener } else if ((tau_min < bnk->gamma1) && (tau_max >= 1.0)) { 1058080d2917SAlp Dener tao->trust = bnk->gamma1 * PetscMin(tao->trust, bnk->dnorm); 1059080d2917SAlp Dener } else if ((tau_1 >= bnk->gamma1) && (tau_1 < 1.0) && ((tau_2 < bnk->gamma1) || (tau_2 >= 1.0))) { 1060080d2917SAlp Dener tao->trust = tau_1 * PetscMin(tao->trust, bnk->dnorm); 1061080d2917SAlp Dener } else if ((tau_2 >= bnk->gamma1) && (tau_2 < 1.0) && ((tau_1 < bnk->gamma1) || (tau_2 >= 1.0))) { 1062080d2917SAlp Dener tao->trust = tau_2 * PetscMin(tao->trust, bnk->dnorm); 1063080d2917SAlp Dener } else { 1064080d2917SAlp Dener tao->trust = tau_max * PetscMin(tao->trust, bnk->dnorm); 1065080d2917SAlp Dener } 1066080d2917SAlp Dener } 1067080d2917SAlp Dener } 1068080d2917SAlp Dener } 1069080d2917SAlp Dener } else { 1070080d2917SAlp Dener /* Newton step was not good; reduce the radius */ 1071080d2917SAlp Dener tao->trust = bnk->gamma1 * PetscMin(bnk->dnorm, tao->trust); 1072080d2917SAlp Dener } 107328017e9fSAlp Dener break; 1074080d2917SAlp Dener } 1075c133c014SAlp Dener /* Make sure the radius does not violate min and max settings */ 1076c133c014SAlp Dener tao->trust = PetscMin(tao->trust, bnk->max_radius); 1077fed79b8eSAlp Dener tao->trust = PetscMax(tao->trust, bnk->min_radius); 1078080d2917SAlp Dener PetscFunctionReturn(0); 1079080d2917SAlp Dener } 1080080d2917SAlp Dener 1081eb910715SAlp Dener /* ---------------------------------------------------------- */ 1082df278d8fSAlp Dener 108362675beeSAlp Dener PetscErrorCode TaoBNKAddStepCounts(Tao tao, PetscInt stepType) 108462675beeSAlp Dener { 108562675beeSAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 108662675beeSAlp Dener 108762675beeSAlp Dener PetscFunctionBegin; 108862675beeSAlp Dener switch (stepType) { 108962675beeSAlp Dener case BNK_NEWTON: 109062675beeSAlp Dener ++bnk->newt; 109162675beeSAlp Dener break; 109262675beeSAlp Dener case BNK_BFGS: 109362675beeSAlp Dener ++bnk->bfgs; 109462675beeSAlp Dener break; 109562675beeSAlp Dener case BNK_SCALED_GRADIENT: 109662675beeSAlp Dener ++bnk->sgrad; 109762675beeSAlp Dener break; 109862675beeSAlp Dener case BNK_GRADIENT: 109962675beeSAlp Dener ++bnk->grad; 110062675beeSAlp Dener break; 110162675beeSAlp Dener default: 110262675beeSAlp Dener break; 110362675beeSAlp Dener } 110462675beeSAlp Dener PetscFunctionReturn(0); 110562675beeSAlp Dener } 110662675beeSAlp Dener 110762675beeSAlp Dener /* ---------------------------------------------------------- */ 110862675beeSAlp Dener 11099b6ef848SAlp Dener PetscErrorCode TaoSetUp_BNK(Tao tao) 1110eb910715SAlp Dener { 1111eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 1112eb910715SAlp Dener PetscErrorCode ierr; 11139b6ef848SAlp Dener KSPType ksp_type; 1114e031d6f5SAlp Dener PetscInt i; 1115eb910715SAlp Dener 1116eb910715SAlp Dener PetscFunctionBegin; 1117*c4b75bccSAlp Dener if (!tao->gradient) { 1118*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&tao->gradient);CHKERRQ(ierr); 1119*c4b75bccSAlp Dener } 1120*c4b75bccSAlp Dener if (!tao->stepdirection) { 1121*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&tao->stepdirection);CHKERRQ(ierr); 1122*c4b75bccSAlp Dener } 1123*c4b75bccSAlp Dener if (!bnk->W) { 1124*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->W);CHKERRQ(ierr); 1125*c4b75bccSAlp Dener } 1126*c4b75bccSAlp Dener if (!bnk->Xold) { 1127*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Xold);CHKERRQ(ierr); 1128*c4b75bccSAlp Dener } 1129*c4b75bccSAlp Dener if (!bnk->Gold) { 1130*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Gold);CHKERRQ(ierr); 1131*c4b75bccSAlp Dener } 1132*c4b75bccSAlp Dener if (!bnk->Xwork) { 1133*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Xwork);CHKERRQ(ierr); 1134*c4b75bccSAlp Dener } 1135*c4b75bccSAlp Dener if (!bnk->Gwork) { 1136*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Gwork);CHKERRQ(ierr); 1137*c4b75bccSAlp Dener } 1138*c4b75bccSAlp Dener if (!bnk->unprojected_gradient) { 1139*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->unprojected_gradient);CHKERRQ(ierr); 1140*c4b75bccSAlp Dener } 1141*c4b75bccSAlp Dener if (!bnk->unprojected_gradient_old) { 1142*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->unprojected_gradient_old);CHKERRQ(ierr); 1143*c4b75bccSAlp Dener } 1144*c4b75bccSAlp Dener if (!bnk->Diag_min) { 1145*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Diag_min);CHKERRQ(ierr); 1146*c4b75bccSAlp Dener } 1147*c4b75bccSAlp Dener if (!bnk->Diag_max) { 1148*c4b75bccSAlp Dener ierr = VecDuplicate(tao->solution,&bnk->Diag_max);CHKERRQ(ierr); 1149*c4b75bccSAlp Dener } 1150e031d6f5SAlp Dener if (bnk->max_cg_its > 0) { 1151*c4b75bccSAlp Dener /* Ensure that the important common vectors are shared between BNK and embedded BNCG */ 1152*c4b75bccSAlp Dener bnk->bncg_ctx = (TAO_BNCG *)bnk->bncg->data; 1153*c4b75bccSAlp Dener ierr = PetscObjectReference((PetscObject)(bnk->unprojected_gradient));CHKERRQ(ierr); 1154*c4b75bccSAlp Dener ierr = VecDestroy(&bnk->bncg_ctx->unprojected_gradient);CHKERRQ(ierr); 1155*c4b75bccSAlp Dener bnk->bncg_ctx->unprojected_gradient = bnk->unprojected_gradient; 1156*c4b75bccSAlp Dener ierr = PetscObjectReference((PetscObject)(bnk->Gold));CHKERRQ(ierr); 1157*c4b75bccSAlp Dener ierr = VecDestroy(&bnk->bncg_ctx->G_old);CHKERRQ(ierr); 1158*c4b75bccSAlp Dener bnk->bncg_ctx->G_old = bnk->Gold; 1159*c4b75bccSAlp Dener ierr = PetscObjectReference((PetscObject)(tao->gradient));CHKERRQ(ierr); 1160*c4b75bccSAlp Dener ierr = VecDestroy(&bnk->bncg->gradient);CHKERRQ(ierr); 1161*c4b75bccSAlp Dener bnk->bncg->gradient = tao->gradient; 1162*c4b75bccSAlp Dener ierr = PetscObjectReference((PetscObject)(tao->stepdirection));CHKERRQ(ierr); 1163*c4b75bccSAlp Dener ierr = VecDestroy(&bnk->bncg->stepdirection);CHKERRQ(ierr); 1164*c4b75bccSAlp Dener bnk->bncg->stepdirection = tao->stepdirection; 1165*c4b75bccSAlp Dener ierr = TaoSetInitialVector(bnk->bncg, tao->solution);CHKERRQ(ierr); 1166*c4b75bccSAlp Dener /* Copy over some settings from BNK into BNCG */ 1167e031d6f5SAlp Dener ierr = TaoSetMaximumIterations(bnk->bncg, bnk->max_cg_its);CHKERRQ(ierr); 1168e031d6f5SAlp Dener ierr = TaoSetTolerances(bnk->bncg, tao->gatol, tao->grtol, tao->gttol);CHKERRQ(ierr); 1169e031d6f5SAlp Dener ierr = TaoSetFunctionLowerBound(bnk->bncg, tao->fmin);CHKERRQ(ierr); 1170937a31a1SAlp Dener ierr = TaoSetConvergenceTest(bnk->bncg, tao->ops->convergencetest, tao->cnvP);CHKERRQ(ierr); 1171e031d6f5SAlp Dener ierr = TaoSetObjectiveRoutine(bnk->bncg, tao->ops->computeobjective, tao->user_objP);CHKERRQ(ierr); 1172e031d6f5SAlp Dener ierr = TaoSetGradientRoutine(bnk->bncg, tao->ops->computegradient, tao->user_gradP);CHKERRQ(ierr); 1173e031d6f5SAlp Dener ierr = TaoSetObjectiveAndGradientRoutine(bnk->bncg, tao->ops->computeobjectiveandgradient, tao->user_objgradP);CHKERRQ(ierr); 1174e031d6f5SAlp Dener ierr = PetscObjectCopyFortranFunctionPointers((PetscObject)tao, (PetscObject)(bnk->bncg));CHKERRQ(ierr); 1175*c4b75bccSAlp Dener for (i=0; i<tao->numbermonitors; ++i) { 1176e031d6f5SAlp Dener ierr = TaoSetMonitor(bnk->bncg, tao->monitor[i], tao->monitorcontext[i], tao->monitordestroy[i]);CHKERRQ(ierr); 1177e031d6f5SAlp Dener ierr = PetscObjectReference((PetscObject)(tao->monitorcontext[i]));CHKERRQ(ierr); 1178e031d6f5SAlp Dener } 1179e031d6f5SAlp Dener } 1180eb910715SAlp Dener bnk->Diag = 0; 1181c0f10754SAlp Dener bnk->Diag_red = 0; 1182c0f10754SAlp Dener bnk->X_inactive = 0; 1183c0f10754SAlp Dener bnk->G_inactive = 0; 118462675beeSAlp Dener bnk->inactive_work = 0; 118562675beeSAlp Dener bnk->active_work = 0; 118662675beeSAlp Dener bnk->inactive_idx = 0; 118762675beeSAlp Dener bnk->active_idx = 0; 118862675beeSAlp Dener bnk->active_lower = 0; 118962675beeSAlp Dener bnk->active_upper = 0; 119062675beeSAlp Dener bnk->active_fixed = 0; 1191eb910715SAlp Dener bnk->M = 0; 119209164190SAlp Dener bnk->H_inactive = 0; 119309164190SAlp Dener bnk->Hpre_inactive = 0; 11949b6ef848SAlp Dener ierr = KSPGetType(tao->ksp,&ksp_type);CHKERRQ(ierr); 11959b6ef848SAlp Dener ierr = PetscStrcmp(ksp_type,KSPCGNASH,&bnk->is_nash);CHKERRQ(ierr); 11969b6ef848SAlp Dener ierr = PetscStrcmp(ksp_type,KSPCGSTCG,&bnk->is_stcg);CHKERRQ(ierr); 11979b6ef848SAlp Dener ierr = PetscStrcmp(ksp_type,KSPCGGLTR,&bnk->is_gltr);CHKERRQ(ierr); 1198eb910715SAlp Dener PetscFunctionReturn(0); 1199eb910715SAlp Dener } 1200eb910715SAlp Dener 1201eb910715SAlp Dener /*------------------------------------------------------------*/ 1202df278d8fSAlp Dener 1203eb910715SAlp Dener static PetscErrorCode TaoDestroy_BNK(Tao tao) 1204eb910715SAlp Dener { 1205eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 1206eb910715SAlp Dener PetscErrorCode ierr; 1207eb910715SAlp Dener 1208eb910715SAlp Dener PetscFunctionBegin; 1209eb910715SAlp Dener if (tao->setupcalled) { 1210eb910715SAlp Dener ierr = VecDestroy(&bnk->W);CHKERRQ(ierr); 1211eb910715SAlp Dener ierr = VecDestroy(&bnk->Xold);CHKERRQ(ierr); 1212eb910715SAlp Dener ierr = VecDestroy(&bnk->Gold);CHKERRQ(ierr); 121309164190SAlp Dener ierr = VecDestroy(&bnk->Xwork);CHKERRQ(ierr); 121409164190SAlp Dener ierr = VecDestroy(&bnk->Gwork);CHKERRQ(ierr); 121509164190SAlp Dener ierr = VecDestroy(&bnk->unprojected_gradient);CHKERRQ(ierr); 121609164190SAlp Dener ierr = VecDestroy(&bnk->unprojected_gradient_old);CHKERRQ(ierr); 121762675beeSAlp Dener ierr = VecDestroy(&bnk->Diag_min);CHKERRQ(ierr); 121862675beeSAlp Dener ierr = VecDestroy(&bnk->Diag_max);CHKERRQ(ierr); 1219*c4b75bccSAlp Dener } 1220c0f10754SAlp Dener if (bnk->max_cg_its > 0) { 1221c0f10754SAlp Dener ierr = TaoDestroy(&bnk->bncg);CHKERRQ(ierr); 12225e9b73cbSAlp Dener } 12235e9b73cbSAlp Dener ierr = VecDestroy(&bnk->Diag);CHKERRQ(ierr); 1224eb910715SAlp Dener ierr = MatDestroy(&bnk->M);CHKERRQ(ierr); 1225*c4b75bccSAlp Dener if (bnk->Hpre_inactive != tao->hessian_pre && bnk->Hpre_inactive != bnk->H_inactive) { 1226*c4b75bccSAlp Dener ierr = MatDestroy(&bnk->Hpre_inactive);CHKERRQ(ierr); 1227*c4b75bccSAlp Dener } 1228*c4b75bccSAlp Dener if (bnk->H_inactive != tao->hessian) { 1229*c4b75bccSAlp Dener ierr = MatDestroy(&bnk->H_inactive);CHKERRQ(ierr); 1230*c4b75bccSAlp Dener } 1231eb910715SAlp Dener ierr = PetscFree(tao->data);CHKERRQ(ierr); 1232eb910715SAlp Dener PetscFunctionReturn(0); 1233eb910715SAlp Dener } 1234eb910715SAlp Dener 1235eb910715SAlp Dener /*------------------------------------------------------------*/ 1236df278d8fSAlp Dener 1237eb910715SAlp Dener static PetscErrorCode TaoSetFromOptions_BNK(PetscOptionItems *PetscOptionsObject,Tao tao) 1238eb910715SAlp Dener { 1239eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 1240eb910715SAlp Dener PetscErrorCode ierr; 1241eb910715SAlp Dener 1242eb910715SAlp Dener PetscFunctionBegin; 1243eb910715SAlp Dener ierr = PetscOptionsHead(PetscOptionsObject,"Newton line search method for unconstrained optimization");CHKERRQ(ierr); 12448d5ead36SAlp Dener ierr = PetscOptionsEList("-tao_bnk_pc_type", "pc type", "", BNK_PC, BNK_PC_TYPES, BNK_PC[bnk->pc_type], &bnk->pc_type, 0);CHKERRQ(ierr); 12458d5ead36SAlp Dener ierr = PetscOptionsEList("-tao_bnk_bfgs_scale_type", "bfgs scale type", "", BFGS_SCALE, BFGS_SCALE_TYPES, BFGS_SCALE[bnk->bfgs_scale_type], &bnk->bfgs_scale_type, 0);CHKERRQ(ierr); 12468d5ead36SAlp Dener ierr = PetscOptionsEList("-tao_bnk_init_type", "radius initialization type", "", BNK_INIT, BNK_INIT_TYPES, BNK_INIT[bnk->init_type], &bnk->init_type, 0);CHKERRQ(ierr); 12478d5ead36SAlp Dener ierr = PetscOptionsEList("-tao_bnk_update_type", "radius update type", "", BNK_UPDATE, BNK_UPDATE_TYPES, BNK_UPDATE[bnk->update_type], &bnk->update_type, 0);CHKERRQ(ierr); 12482f75a4aaSAlp Dener ierr = PetscOptionsEList("-tao_bnk_as_type", "active set estimation method", "", BNK_AS, BNK_AS_TYPES, BNK_AS[bnk->as_type], &bnk->as_type, 0);CHKERRQ(ierr); 12498d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_sval", "perturbation starting value", "", bnk->sval, &bnk->sval,NULL);CHKERRQ(ierr); 12508d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_imin", "minimum initial perturbation", "", bnk->imin, &bnk->imin,NULL);CHKERRQ(ierr); 12518d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_imax", "maximum initial perturbation", "", bnk->imax, &bnk->imax,NULL);CHKERRQ(ierr); 12528d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_imfac", "initial merit factor", "", bnk->imfac, &bnk->imfac,NULL);CHKERRQ(ierr); 12538d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_pmin", "minimum perturbation", "", bnk->pmin, &bnk->pmin,NULL);CHKERRQ(ierr); 12548d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_pmax", "maximum perturbation", "", bnk->pmax, &bnk->pmax,NULL);CHKERRQ(ierr); 12558d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_pgfac", "growth factor", "", bnk->pgfac, &bnk->pgfac,NULL);CHKERRQ(ierr); 12568d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_psfac", "shrink factor", "", bnk->psfac, &bnk->psfac,NULL);CHKERRQ(ierr); 12578d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_pmgfac", "merit growth factor", "", bnk->pmgfac, &bnk->pmgfac,NULL);CHKERRQ(ierr); 12588d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_pmsfac", "merit shrink factor", "", bnk->pmsfac, &bnk->pmsfac,NULL);CHKERRQ(ierr); 12598d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_eta1", "poor steplength; reduce radius", "", bnk->eta1, &bnk->eta1,NULL);CHKERRQ(ierr); 12608d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_eta2", "reasonable steplength; leave radius alone", "", bnk->eta2, &bnk->eta2,NULL);CHKERRQ(ierr); 12618d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_eta3", "good steplength; increase radius", "", bnk->eta3, &bnk->eta3,NULL);CHKERRQ(ierr); 12628d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_eta4", "excellent steplength; greatly increase radius", "", bnk->eta4, &bnk->eta4,NULL);CHKERRQ(ierr); 12638d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_alpha1", "", "", bnk->alpha1, &bnk->alpha1,NULL);CHKERRQ(ierr); 12648d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_alpha2", "", "", bnk->alpha2, &bnk->alpha2,NULL);CHKERRQ(ierr); 12658d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_alpha3", "", "", bnk->alpha3, &bnk->alpha3,NULL);CHKERRQ(ierr); 12668d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_alpha4", "", "", bnk->alpha4, &bnk->alpha4,NULL);CHKERRQ(ierr); 12678d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_alpha5", "", "", bnk->alpha5, &bnk->alpha5,NULL);CHKERRQ(ierr); 12688d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_nu1", "poor steplength; reduce radius", "", bnk->nu1, &bnk->nu1,NULL);CHKERRQ(ierr); 12698d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_nu2", "reasonable steplength; leave radius alone", "", bnk->nu2, &bnk->nu2,NULL);CHKERRQ(ierr); 12708d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_nu3", "good steplength; increase radius", "", bnk->nu3, &bnk->nu3,NULL);CHKERRQ(ierr); 12718d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_nu4", "excellent steplength; greatly increase radius", "", bnk->nu4, &bnk->nu4,NULL);CHKERRQ(ierr); 12728d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_omega1", "", "", bnk->omega1, &bnk->omega1,NULL);CHKERRQ(ierr); 12738d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_omega2", "", "", bnk->omega2, &bnk->omega2,NULL);CHKERRQ(ierr); 12748d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_omega3", "", "", bnk->omega3, &bnk->omega3,NULL);CHKERRQ(ierr); 12758d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_omega4", "", "", bnk->omega4, &bnk->omega4,NULL);CHKERRQ(ierr); 12768d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_omega5", "", "", bnk->omega5, &bnk->omega5,NULL);CHKERRQ(ierr); 12778d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_mu1_i", "", "", bnk->mu1_i, &bnk->mu1_i,NULL);CHKERRQ(ierr); 12788d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_mu2_i", "", "", bnk->mu2_i, &bnk->mu2_i,NULL);CHKERRQ(ierr); 12798d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma1_i", "", "", bnk->gamma1_i, &bnk->gamma1_i,NULL);CHKERRQ(ierr); 12808d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma2_i", "", "", bnk->gamma2_i, &bnk->gamma2_i,NULL);CHKERRQ(ierr); 12818d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma3_i", "", "", bnk->gamma3_i, &bnk->gamma3_i,NULL);CHKERRQ(ierr); 12828d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma4_i", "", "", bnk->gamma4_i, &bnk->gamma4_i,NULL);CHKERRQ(ierr); 12838d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_theta_i", "", "", bnk->theta_i, &bnk->theta_i,NULL);CHKERRQ(ierr); 12848d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_mu1", "", "", bnk->mu1, &bnk->mu1,NULL);CHKERRQ(ierr); 12858d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_mu2", "", "", bnk->mu2, &bnk->mu2,NULL);CHKERRQ(ierr); 12868d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma1", "", "", bnk->gamma1, &bnk->gamma1,NULL);CHKERRQ(ierr); 12878d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma2", "", "", bnk->gamma2, &bnk->gamma2,NULL);CHKERRQ(ierr); 12888d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma3", "", "", bnk->gamma3, &bnk->gamma3,NULL);CHKERRQ(ierr); 12898d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_gamma4", "", "", bnk->gamma4, &bnk->gamma4,NULL);CHKERRQ(ierr); 12908d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_theta", "", "", bnk->theta, &bnk->theta,NULL);CHKERRQ(ierr); 12918d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_min_radius", "lower bound on initial radius", "", bnk->min_radius, &bnk->min_radius,NULL);CHKERRQ(ierr); 12928d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_max_radius", "upper bound on radius", "", bnk->max_radius, &bnk->max_radius,NULL);CHKERRQ(ierr); 12938d5ead36SAlp Dener ierr = PetscOptionsReal("-tao_bnk_epsilon", "tolerance used when computing actual and predicted reduction", "", bnk->epsilon, &bnk->epsilon,NULL);CHKERRQ(ierr); 12940a4511e9SAlp Dener ierr = PetscOptionsReal("-tao_bnk_as_tol", "initial tolerance used when estimating actively bounded variables", "", bnk->as_tol, &bnk->as_tol,NULL);CHKERRQ(ierr); 12950a4511e9SAlp Dener ierr = PetscOptionsReal("-tao_bnk_as_step", "step length used when estimating actively bounded variables", "", bnk->as_step, &bnk->as_step,NULL);CHKERRQ(ierr); 1296c0f10754SAlp Dener ierr = PetscOptionsInt("-tao_bnk_max_cg_its", "number of BNCG iterations to take for each Newton step", "", bnk->max_cg_its, &bnk->max_cg_its,NULL);CHKERRQ(ierr); 1297eb910715SAlp Dener ierr = PetscOptionsTail();CHKERRQ(ierr); 1298e031d6f5SAlp Dener ierr = TaoSetFromOptions(bnk->bncg); 1299eb910715SAlp Dener ierr = TaoLineSearchSetFromOptions(tao->linesearch);CHKERRQ(ierr); 1300eb910715SAlp Dener ierr = KSPSetFromOptions(tao->ksp);CHKERRQ(ierr); 1301eb910715SAlp Dener PetscFunctionReturn(0); 1302eb910715SAlp Dener } 1303eb910715SAlp Dener 1304eb910715SAlp Dener /*------------------------------------------------------------*/ 1305df278d8fSAlp Dener 1306eb910715SAlp Dener static PetscErrorCode TaoView_BNK(Tao tao, PetscViewer viewer) 1307eb910715SAlp Dener { 1308eb910715SAlp Dener TAO_BNK *bnk = (TAO_BNK *)tao->data; 1309eb910715SAlp Dener PetscInt nrejects; 1310eb910715SAlp Dener PetscBool isascii; 1311eb910715SAlp Dener PetscErrorCode ierr; 1312eb910715SAlp Dener 1313eb910715SAlp Dener PetscFunctionBegin; 1314eb910715SAlp Dener ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&isascii);CHKERRQ(ierr); 1315eb910715SAlp Dener if (isascii) { 1316eb910715SAlp Dener ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 1317eb910715SAlp Dener if (BNK_PC_BFGS == bnk->pc_type && bnk->M) { 1318eb910715SAlp Dener ierr = MatLMVMGetRejects(bnk->M,&nrejects);CHKERRQ(ierr); 1319eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "Rejected matrix updates: %D\n",nrejects);CHKERRQ(ierr); 1320eb910715SAlp Dener } 1321e031d6f5SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "CG steps: %D\n", bnk->tot_cg_its);CHKERRQ(ierr); 1322eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "Newton steps: %D\n", bnk->newt);CHKERRQ(ierr); 1323eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "BFGS steps: %D\n", bnk->bfgs);CHKERRQ(ierr); 1324eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "Scaled gradient steps: %D\n", bnk->sgrad);CHKERRQ(ierr); 1325eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "Gradient steps: %D\n", bnk->grad);CHKERRQ(ierr); 1326eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, "KSP termination reasons:\n");CHKERRQ(ierr); 1327eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " atol: %D\n", bnk->ksp_atol);CHKERRQ(ierr); 1328eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " rtol: %D\n", bnk->ksp_rtol);CHKERRQ(ierr); 1329eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " ctol: %D\n", bnk->ksp_ctol);CHKERRQ(ierr); 1330eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " negc: %D\n", bnk->ksp_negc);CHKERRQ(ierr); 1331eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " dtol: %D\n", bnk->ksp_dtol);CHKERRQ(ierr); 1332eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " iter: %D\n", bnk->ksp_iter);CHKERRQ(ierr); 1333eb910715SAlp Dener ierr = PetscViewerASCIIPrintf(viewer, " othr: %D\n", bnk->ksp_othr);CHKERRQ(ierr); 1334eb910715SAlp Dener ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 1335eb910715SAlp Dener } 1336eb910715SAlp Dener PetscFunctionReturn(0); 1337eb910715SAlp Dener } 1338eb910715SAlp Dener 1339eb910715SAlp Dener /* ---------------------------------------------------------- */ 1340df278d8fSAlp Dener 1341eb910715SAlp Dener /*MC 1342eb910715SAlp Dener TAOBNK - Shared base-type for Bounded Newton-Krylov type algorithms. 134366ed3702SAlp Dener At each iteration, the BNK methods solve the symmetric 1344eb910715SAlp Dener system of equations to obtain the step diretion dk: 1345eb910715SAlp Dener Hk dk = -gk 13462b97c8d8SAlp Dener for free variables only. The step can be globalized either through 13472b97c8d8SAlp Dener trust-region methods, or a line search, or a heuristic mixture of both. 1348eb910715SAlp Dener 1349eb910715SAlp Dener Options Database Keys: 13508d5ead36SAlp Dener + -tao_bnk_pc_type - "none","ahess","bfgs","petsc" 13518d5ead36SAlp Dener . -tao_bnk_bfgs_scale_type - "ahess","phess","bfgs" 13528d5ead36SAlp Dener . -tao_bnk_init_type - "constant","direction","interpolation" 13538d5ead36SAlp Dener . -tao_bnk_update_type - "step","direction","interpolation" 13542f75a4aaSAlp Dener . -tao_bnk_as_type - "none","bertsekas" 13558d5ead36SAlp Dener . -tao_bnk_sval - perturbation starting value 13568d5ead36SAlp Dener . -tao_bnk_imin - minimum initial perturbation 13578d5ead36SAlp Dener . -tao_bnk_imax - maximum initial perturbation 13588d5ead36SAlp Dener . -tao_bnk_pmin - minimum perturbation 13598d5ead36SAlp Dener . -tao_bnk_pmax - maximum perturbation 13608d5ead36SAlp Dener . -tao_bnk_pgfac - growth factor 13618d5ead36SAlp Dener . -tao_bnk_psfac - shrink factor 13628d5ead36SAlp Dener . -tao_bnk_imfac - initial merit factor 13638d5ead36SAlp Dener . -tao_bnk_pmgfac - merit growth factor 13648d5ead36SAlp Dener . -tao_bnk_pmsfac - merit shrink factor 13658d5ead36SAlp Dener . -tao_bnk_eta1 - poor steplength; reduce radius 13668d5ead36SAlp Dener . -tao_bnk_eta2 - reasonable steplength; leave radius 13678d5ead36SAlp Dener . -tao_bnk_eta3 - good steplength; increase readius 13688d5ead36SAlp Dener . -tao_bnk_eta4 - excellent steplength; greatly increase radius 13698d5ead36SAlp Dener . -tao_bnk_alpha1 - alpha1 reduction 13708d5ead36SAlp Dener . -tao_bnk_alpha2 - alpha2 reduction 13718d5ead36SAlp Dener . -tao_bnk_alpha3 - alpha3 reduction 13728d5ead36SAlp Dener . -tao_bnk_alpha4 - alpha4 reduction 13738d5ead36SAlp Dener . -tao_bnk_alpha - alpha5 reduction 13748d5ead36SAlp Dener . -tao_bnk_mu1 - mu1 interpolation update 13758d5ead36SAlp Dener . -tao_bnk_mu2 - mu2 interpolation update 13768d5ead36SAlp Dener . -tao_bnk_gamma1 - gamma1 interpolation update 13778d5ead36SAlp Dener . -tao_bnk_gamma2 - gamma2 interpolation update 13788d5ead36SAlp Dener . -tao_bnk_gamma3 - gamma3 interpolation update 13798d5ead36SAlp Dener . -tao_bnk_gamma4 - gamma4 interpolation update 13808d5ead36SAlp Dener . -tao_bnk_theta - theta interpolation update 13818d5ead36SAlp Dener . -tao_bnk_omega1 - omega1 step update 13828d5ead36SAlp Dener . -tao_bnk_omega2 - omega2 step update 13838d5ead36SAlp Dener . -tao_bnk_omega3 - omega3 step update 13848d5ead36SAlp Dener . -tao_bnk_omega4 - omega4 step update 13858d5ead36SAlp Dener . -tao_bnk_omega5 - omega5 step update 13868d5ead36SAlp Dener . -tao_bnk_mu1_i - mu1 interpolation init factor 13878d5ead36SAlp Dener . -tao_bnk_mu2_i - mu2 interpolation init factor 13888d5ead36SAlp Dener . -tao_bnk_gamma1_i - gamma1 interpolation init factor 13898d5ead36SAlp Dener . -tao_bnk_gamma2_i - gamma2 interpolation init factor 13908d5ead36SAlp Dener . -tao_bnk_gamma3_i - gamma3 interpolation init factor 13918d5ead36SAlp Dener . -tao_bnk_gamma4_i - gamma4 interpolation init factor 13922f75a4aaSAlp Dener . -tao_bnk_theta_i - theta interpolation init factor 13932f75a4aaSAlp Dener - -tao_bnk_bound_tol - initial tolerance used in estimating bounded active variables 1394eb910715SAlp Dener 1395eb910715SAlp Dener Level: beginner 1396eb910715SAlp Dener M*/ 1397eb910715SAlp Dener 1398eb910715SAlp Dener PetscErrorCode TaoCreate_BNK(Tao tao) 1399eb910715SAlp Dener { 1400eb910715SAlp Dener TAO_BNK *bnk; 1401eb910715SAlp Dener const char *morethuente_type = TAOLINESEARCHMT; 1402eb910715SAlp Dener PetscErrorCode ierr; 1403eb910715SAlp Dener 1404eb910715SAlp Dener PetscFunctionBegin; 1405eb910715SAlp Dener ierr = PetscNewLog(tao,&bnk);CHKERRQ(ierr); 1406eb910715SAlp Dener 1407eb910715SAlp Dener tao->ops->setup = TaoSetUp_BNK; 1408eb910715SAlp Dener tao->ops->view = TaoView_BNK; 1409eb910715SAlp Dener tao->ops->setfromoptions = TaoSetFromOptions_BNK; 1410eb910715SAlp Dener tao->ops->destroy = TaoDestroy_BNK; 1411eb910715SAlp Dener 1412eb910715SAlp Dener /* Override default settings (unless already changed) */ 1413eb910715SAlp Dener if (!tao->max_it_changed) tao->max_it = 50; 1414eb910715SAlp Dener if (!tao->trust0_changed) tao->trust0 = 100.0; 1415eb910715SAlp Dener 1416eb910715SAlp Dener tao->data = (void*)bnk; 1417eb910715SAlp Dener 141866ed3702SAlp Dener /* Hessian shifting parameters */ 1419eb910715SAlp Dener bnk->sval = 0.0; 1420eb910715SAlp Dener bnk->imin = 1.0e-4; 1421eb910715SAlp Dener bnk->imax = 1.0e+2; 1422eb910715SAlp Dener bnk->imfac = 1.0e-1; 1423eb910715SAlp Dener 1424eb910715SAlp Dener bnk->pmin = 1.0e-12; 1425eb910715SAlp Dener bnk->pmax = 1.0e+2; 1426eb910715SAlp Dener bnk->pgfac = 1.0e+1; 1427eb910715SAlp Dener bnk->psfac = 4.0e-1; 1428eb910715SAlp Dener bnk->pmgfac = 1.0e-1; 1429eb910715SAlp Dener bnk->pmsfac = 1.0e-1; 1430eb910715SAlp Dener 1431eb910715SAlp Dener /* Default values for trust-region radius update based on steplength */ 1432eb910715SAlp Dener bnk->nu1 = 0.25; 1433eb910715SAlp Dener bnk->nu2 = 0.50; 1434eb910715SAlp Dener bnk->nu3 = 1.00; 1435eb910715SAlp Dener bnk->nu4 = 1.25; 1436eb910715SAlp Dener 1437eb910715SAlp Dener bnk->omega1 = 0.25; 1438eb910715SAlp Dener bnk->omega2 = 0.50; 1439eb910715SAlp Dener bnk->omega3 = 1.00; 1440eb910715SAlp Dener bnk->omega4 = 2.00; 1441eb910715SAlp Dener bnk->omega5 = 4.00; 1442eb910715SAlp Dener 1443eb910715SAlp Dener /* Default values for trust-region radius update based on reduction */ 1444eb910715SAlp Dener bnk->eta1 = 1.0e-4; 1445eb910715SAlp Dener bnk->eta2 = 0.25; 1446eb910715SAlp Dener bnk->eta3 = 0.50; 1447eb910715SAlp Dener bnk->eta4 = 0.90; 1448eb910715SAlp Dener 1449eb910715SAlp Dener bnk->alpha1 = 0.25; 1450eb910715SAlp Dener bnk->alpha2 = 0.50; 1451eb910715SAlp Dener bnk->alpha3 = 1.00; 1452eb910715SAlp Dener bnk->alpha4 = 2.00; 1453eb910715SAlp Dener bnk->alpha5 = 4.00; 1454eb910715SAlp Dener 1455eb910715SAlp Dener /* Default values for trust-region radius update based on interpolation */ 1456eb910715SAlp Dener bnk->mu1 = 0.10; 1457eb910715SAlp Dener bnk->mu2 = 0.50; 1458eb910715SAlp Dener 1459eb910715SAlp Dener bnk->gamma1 = 0.25; 1460eb910715SAlp Dener bnk->gamma2 = 0.50; 1461eb910715SAlp Dener bnk->gamma3 = 2.00; 1462eb910715SAlp Dener bnk->gamma4 = 4.00; 1463eb910715SAlp Dener 1464eb910715SAlp Dener bnk->theta = 0.05; 1465eb910715SAlp Dener 1466eb910715SAlp Dener /* Default values for trust region initialization based on interpolation */ 1467eb910715SAlp Dener bnk->mu1_i = 0.35; 1468eb910715SAlp Dener bnk->mu2_i = 0.50; 1469eb910715SAlp Dener 1470eb910715SAlp Dener bnk->gamma1_i = 0.0625; 1471eb910715SAlp Dener bnk->gamma2_i = 0.5; 1472eb910715SAlp Dener bnk->gamma3_i = 2.0; 1473eb910715SAlp Dener bnk->gamma4_i = 5.0; 1474eb910715SAlp Dener 1475eb910715SAlp Dener bnk->theta_i = 0.25; 1476eb910715SAlp Dener 1477eb910715SAlp Dener /* Remaining parameters */ 1478c0f10754SAlp Dener bnk->max_cg_its = 0; 1479eb910715SAlp Dener bnk->min_radius = 1.0e-10; 1480eb910715SAlp Dener bnk->max_radius = 1.0e10; 1481770b7498SAlp Dener bnk->epsilon = PetscPowReal(PETSC_MACHINE_EPSILON, 2.0/3.0); 14820a4511e9SAlp Dener bnk->as_tol = 1.0e-3; 14830a4511e9SAlp Dener bnk->as_step = 1.0e-3; 148462675beeSAlp Dener bnk->dmin = 1.0e-6; 148562675beeSAlp Dener bnk->dmax = 1.0e6; 1486eb910715SAlp Dener 1487e031d6f5SAlp Dener bnk->pc_type = BNK_PC_AHESS; 1488eb910715SAlp Dener bnk->bfgs_scale_type = BFGS_SCALE_PHESS; 1489eb910715SAlp Dener bnk->init_type = BNK_INIT_INTERPOLATION; 1490fed79b8eSAlp Dener bnk->update_type = BNK_UPDATE_INTERPOLATION; 14912f75a4aaSAlp Dener bnk->as_type = BNK_AS_BERTSEKAS; 1492eb910715SAlp Dener 1493e031d6f5SAlp Dener /* Create the embedded BNCG solver */ 1494e031d6f5SAlp Dener ierr = TaoCreate(PetscObjectComm((PetscObject)tao), &bnk->bncg);CHKERRQ(ierr); 1495e031d6f5SAlp Dener ierr = PetscObjectIncrementTabLevel((PetscObject)bnk->bncg, (PetscObject)tao, 1);CHKERRQ(ierr); 1496e031d6f5SAlp Dener ierr = TaoSetOptionsPrefix(bnk->bncg, "tao_bnk_");CHKERRQ(ierr); 1497e031d6f5SAlp Dener ierr = TaoSetType(bnk->bncg, TAOBNCG);CHKERRQ(ierr); 1498e031d6f5SAlp Dener 1499c0f10754SAlp Dener /* Create the line search */ 1500eb910715SAlp Dener ierr = TaoLineSearchCreate(((PetscObject)tao)->comm,&tao->linesearch);CHKERRQ(ierr); 1501eb910715SAlp Dener ierr = PetscObjectIncrementTabLevel((PetscObject)tao->linesearch, (PetscObject)tao, 1);CHKERRQ(ierr); 1502e031d6f5SAlp Dener ierr = TaoLineSearchSetOptionsPrefix(tao->linesearch,tao->hdr.prefix);CHKERRQ(ierr); 1503eb910715SAlp Dener ierr = TaoLineSearchSetType(tao->linesearch,morethuente_type);CHKERRQ(ierr); 1504eb910715SAlp Dener ierr = TaoLineSearchUseTaoRoutines(tao->linesearch,tao);CHKERRQ(ierr); 1505eb910715SAlp Dener 1506eb910715SAlp Dener /* Set linear solver to default for symmetric matrices */ 1507eb910715SAlp Dener ierr = KSPCreate(((PetscObject)tao)->comm,&tao->ksp);CHKERRQ(ierr); 1508eb910715SAlp Dener ierr = PetscObjectIncrementTabLevel((PetscObject)tao->ksp, (PetscObject)tao, 1);CHKERRQ(ierr); 1509eb910715SAlp Dener ierr = KSPSetOptionsPrefix(tao->ksp,tao->hdr.prefix);CHKERRQ(ierr); 1510eb910715SAlp Dener ierr = KSPSetType(tao->ksp,KSPCGSTCG);CHKERRQ(ierr); 1511eb910715SAlp Dener PetscFunctionReturn(0); 1512eb910715SAlp Dener } 1513