15e76c431SBarry Smith #ifndef lint 2*a9581db2SBarry Smith static char vcid[] = "$Id: ls.c,v 1.8 1995/04/17 14:59:15 curfman Exp bsmith $"; 35e76c431SBarry Smith #endif 45e76c431SBarry Smith 55e76c431SBarry Smith #include <math.h> 6fbe28522SBarry Smith #include "ls.h" 75e42470aSBarry Smith 85e42470aSBarry Smith /* 95e42470aSBarry Smith Implements a line search variant of Newton's Method 105e76c431SBarry Smith for solving systems of nonlinear equations. 115e76c431SBarry Smith 125e76c431SBarry Smith Input parameters: 135e42470aSBarry Smith . snes - nonlinear context obtained from SNESCreate() 145e76c431SBarry Smith 155e42470aSBarry Smith Output Parameters: 165e42470aSBarry Smith . its - Number of global iterations until termination. 175e76c431SBarry Smith 185e76c431SBarry Smith Notes: 195e42470aSBarry Smith See SNESCreate() and SNESSetUp() for information on the definition and 205e76c431SBarry Smith initialization of the nonlinear solver context. 215e76c431SBarry Smith 225e76c431SBarry Smith This implements essentially a truncated Newton method with a 235e76c431SBarry Smith line search. By default a cubic backtracking line search 245e76c431SBarry Smith is employed, as described in the text "Numerical Methods for 255e76c431SBarry Smith Unconstrained Optimization and Nonlinear Equations" by Dennis 265e42470aSBarry Smith and Schnabel. See the examples in src/snes/examples. 275e76c431SBarry Smith */ 285e76c431SBarry Smith 295e42470aSBarry Smith int SNESSolve_LS( SNES snes, int *outits ) 305e76c431SBarry Smith { 315e42470aSBarry Smith SNES_LS *neP = (SNES_LS *) snes->data; 326b5873e3SBarry Smith int maxits, i, history_len,ierr,lits; 336b5873e3SBarry Smith double fnorm, gnorm, xnorm, ynorm, *history; 345e42470aSBarry Smith Vec Y, X, F, G, W, TMP; 355e76c431SBarry Smith 365e42470aSBarry Smith history = snes->conv_hist; /* convergence history */ 375e42470aSBarry Smith history_len = snes->conv_hist_len; /* convergence history length */ 385e42470aSBarry Smith maxits = snes->max_its; /* maximum number of iterations */ 395e42470aSBarry Smith X = snes->vec_sol; /* solution vector */ 405e42470aSBarry Smith F = snes->vec_res; /* residual vector */ 415e42470aSBarry Smith Y = snes->work[0]; /* work vectors */ 425e42470aSBarry Smith G = snes->work[1]; 435e42470aSBarry Smith W = snes->work[2]; 445e76c431SBarry Smith 455e42470aSBarry Smith ierr = SNESComputeInitialGuess(snes,X); CHKERR(ierr); /* X <- X_0 */ 465e42470aSBarry Smith VecNorm( X, &xnorm ); /* xnorm = || X || */ 47*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,X,F); CHKERR(ierr); /* (+/-) F(X) */ 485e42470aSBarry Smith VecNorm(F, &fnorm ); /* fnorm <- || F || */ 495e42470aSBarry Smith snes->norm = fnorm; 505e76c431SBarry Smith if (history && history_len > 0) history[0] = fnorm; 51fbe28522SBarry Smith if (snes->Monitor) (*snes->Monitor)(snes,0,X,F,fnorm,snes->monP); 525e76c431SBarry Smith 535e76c431SBarry Smith for ( i=0; i<maxits; i++ ) { 545e42470aSBarry Smith snes->iter = i+1; 555e76c431SBarry Smith 565e76c431SBarry Smith /* Solve J Y = -F, where J is Jacobian matrix */ 575e42470aSBarry Smith (*snes->ComputeJacobian)(X,&snes->jacobian,snes->jacP); 585e42470aSBarry Smith ierr = SLESSetOperators(snes->sles,snes->jacobian,snes->jacobian,0); 595e42470aSBarry Smith ierr = SLESSolve(snes->sles,F,Y,&lits); CHKERR(ierr); 605e42470aSBarry Smith ierr = (*neP->LineSearch)(snes, X, F, G, Y, W, fnorm, &ynorm, &gnorm ); 615e76c431SBarry Smith 625e76c431SBarry Smith TMP = F; F = G; G = TMP; 635e76c431SBarry Smith TMP = X; X = Y; Y = TMP; 645e76c431SBarry Smith fnorm = gnorm; 655e76c431SBarry Smith 665e42470aSBarry Smith snes->norm = fnorm; 675e76c431SBarry Smith if (history && history_len > i+1) history[i+1] = fnorm; 685e42470aSBarry Smith VecNorm( X, &xnorm ); /* xnorm = || X || */ 69fbe28522SBarry Smith if (snes->Monitor) (*snes->Monitor)(snes,i+1,X,F,fnorm,snes->monP); 705e76c431SBarry Smith 715e76c431SBarry Smith /* Test for convergence */ 725e42470aSBarry Smith if ((*snes->Converged)( snes, xnorm, ynorm, fnorm,snes->cnvP )) { 735e42470aSBarry Smith if (X != snes->vec_sol) VecCopy( X, snes->vec_sol ); 745e76c431SBarry Smith break; 755e76c431SBarry Smith } 765e76c431SBarry Smith } 775e76c431SBarry Smith if (i == maxits) i--; 785e42470aSBarry Smith *outits = i+1; 795e42470aSBarry Smith return 0; 805e76c431SBarry Smith } 815e76c431SBarry Smith /* ------------------------------------------------------------ */ 825e76c431SBarry Smith /*ARGSUSED*/ 835e42470aSBarry Smith int SNESSetUp_LS(SNES snes ) 845e76c431SBarry Smith { 855e42470aSBarry Smith int ierr; 865e42470aSBarry Smith snes->nwork = 3; 875e42470aSBarry Smith ierr = VecGetVecs( snes->vec_sol, snes->nwork,&snes->work ); CHKERR(ierr); 885e42470aSBarry Smith PLogObjectParents(snes,snes->nwork,snes->work ); 895e42470aSBarry Smith return 0; 905e76c431SBarry Smith } 915e76c431SBarry Smith /* ------------------------------------------------------------ */ 925e76c431SBarry Smith /*ARGSUSED*/ 935e42470aSBarry Smith int SNESDestroy_LS(PetscObject obj) 945e76c431SBarry Smith { 955e42470aSBarry Smith SNES snes = (SNES) obj; 965e42470aSBarry Smith SLESDestroy(snes->sles); 975e42470aSBarry Smith VecFreeVecs(snes->work, snes->nwork ); 985e42470aSBarry Smith PLogObjectDestroy(obj); 995e42470aSBarry Smith PETSCHEADERDESTROY(obj); 1005e42470aSBarry Smith return 0; 1015e76c431SBarry Smith } 1025e42470aSBarry Smith /*@ 1030de89847SLois Curfman McInnes SNESDefaultMonitor - Default SNES monitoring routine. Prints the 1045e42470aSBarry Smith residual norm at each iteration. 1055e42470aSBarry Smith 1065e42470aSBarry Smith Input Parameters: 1070de89847SLois Curfman McInnes . snes - the SNES context 1080de89847SLois Curfman McInnes . its - iteration number 1095e42470aSBarry Smith . x - current iterate 1105e42470aSBarry Smith . f - current residual (+/-) 1110de89847SLois Curfman McInnes . fnorm - 2-norm residual value (may be estimated) 1120de89847SLois Curfman McInnes . dummy - unused context 1135e42470aSBarry Smith 1145e42470aSBarry Smith Notes: 1155e42470aSBarry Smith f is either the residual or its negative, depending on the user's 116*a9581db2SBarry Smith preference, as set with SNESSetFunction(). 117a67c8522SLois Curfman McInnes 118a67c8522SLois Curfman McInnes .keywords: SNES, nonlinear, default, monitor, residual, norm 119a67c8522SLois Curfman McInnes 120a67c8522SLois Curfman McInnes .seealso: SNESSetMonitor() 1215e42470aSBarry Smith @*/ 1225e42470aSBarry Smith int SNESDefaultMonitor(SNES snes,int its, Vec x,Vec f,double fnorm,void *dummy) 1235e42470aSBarry Smith { 1245e42470aSBarry Smith fprintf( stdout, "iter = %d, residual norm %g \n",its,fnorm); 1255e42470aSBarry Smith return 0; 1265e42470aSBarry Smith } 1275e42470aSBarry Smith 1285e42470aSBarry Smith /*@ 1295e42470aSBarry Smith SNESDefaultConverged - Default test for monitoring the convergence 1300de89847SLois Curfman McInnes of the SNES solvers. 1315e42470aSBarry Smith 1325e42470aSBarry Smith Input Parameters: 1330de89847SLois Curfman McInnes . snes - the SNES context 1345e42470aSBarry Smith . xnorm - 2-norm of current iterate 1355e42470aSBarry Smith . pnorm - 2-norm of current step 1365e42470aSBarry Smith . fnorm - 2-norm of residual 1370de89847SLois Curfman McInnes . dummy - unused context 1385e42470aSBarry Smith 1395e42470aSBarry Smith Returns: 1405e42470aSBarry Smith $ 2 if ( fnorm < atol ), 1415e42470aSBarry Smith $ 3 if ( pnorm < xtol*xnorm ), 1425e42470aSBarry Smith $ -2 if ( nres > max_res ), 1435e42470aSBarry Smith $ 0 otherwise, 1445e42470aSBarry Smith 1455e42470aSBarry Smith where 1465e42470aSBarry Smith $ atol - absolute residual norm tolerance, 1470de89847SLois Curfman McInnes $ set with SNESSetAbsoluteTolerance() 1485e42470aSBarry Smith $ max_res - maximum number of residual evaluations, 1490de89847SLois Curfman McInnes $ set with SNESSetMaxResidualEvaluations() 1505e42470aSBarry Smith $ nres - number of residual evaluations 1515e42470aSBarry Smith $ xtol - relative residual norm tolerance, 1520de89847SLois Curfman McInnes $ set with SNESSetRelativeTolerance() 1535e42470aSBarry Smith 1540de89847SLois Curfman McInnes .keywords: SNES, nonlinear, default, converged, convergence 1555e42470aSBarry Smith 1560de89847SLois Curfman McInnes .seealso: SNESSetConvergenceTest() 1575e42470aSBarry Smith @*/ 1585e42470aSBarry Smith int SNESDefaultConverged(SNES snes,double xnorm,double pnorm,double fnorm, 1595e42470aSBarry Smith void *dummy) 1605e42470aSBarry Smith { 1615e42470aSBarry Smith if (fnorm < snes->atol) { 162a67c8522SLois Curfman McInnes PLogInfo((PetscObject)snes, 163a67c8522SLois Curfman McInnes "Converged due to absolute residual norm %g < %g\n",fnorm,snes->atol); 1645e42470aSBarry Smith return 2; 1655e42470aSBarry Smith } 1665e42470aSBarry Smith if (pnorm < snes->xtol*(xnorm)) { 167a67c8522SLois Curfman McInnes PLogInfo((PetscObject)snes, 168a67c8522SLois Curfman McInnes "Converged due to small update length %g < %g*%g\n", 1695e42470aSBarry Smith pnorm,snes->xtol,xnorm); 1705e42470aSBarry Smith return 3; 1715e42470aSBarry Smith } 172a67c8522SLois Curfman McInnes if (snes->nresids > snes->max_resids) { 173a67c8522SLois Curfman McInnes PLogInfo((PetscObject)snes, 174a67c8522SLois Curfman McInnes "Exceeded maximum number of residual evaluations: %d > %d\n", 175a67c8522SLois Curfman McInnes snes->nresids, snes->max_resids ); 176a67c8522SLois Curfman McInnes return -2; 177a67c8522SLois Curfman McInnes } 1785e42470aSBarry Smith return 0; 1795e42470aSBarry Smith } 1805e42470aSBarry Smith 1815e76c431SBarry Smith /* ------------------------------------------------------------ */ 1825e76c431SBarry Smith /*ARGSUSED*/ 1835e76c431SBarry Smith /*@ 1845e42470aSBarry Smith SNESNoLineSearch - This routine is not a line search at all; 1855e76c431SBarry Smith it simply uses the full Newton step. Thus, this routine is intended 1865e76c431SBarry Smith to serve as a template and is not recommended for general use. 1875e76c431SBarry Smith 1885e76c431SBarry Smith Input Parameters: 1895e42470aSBarry Smith . snes - nonlinear context 1905e76c431SBarry Smith . x - current iterate 1915e76c431SBarry Smith . f - residual evaluated at x 1925e76c431SBarry Smith . y - search direction (contains new iterate on output) 1935e76c431SBarry Smith . w - work vector 1945e76c431SBarry Smith . fnorm - 2-norm of f 1955e76c431SBarry Smith 1965e76c431SBarry Smith Output parameters: 1975e76c431SBarry Smith . g - residual evaluated at new iterate y 1985e76c431SBarry Smith . y - new iterate (contains search direction on input) 1995e76c431SBarry Smith . gnorm - 2-norm of g 2005e76c431SBarry Smith . ynorm - 2-norm of search length 2015e76c431SBarry Smith 2025e76c431SBarry Smith Returns: 2035e76c431SBarry Smith 1, indicating success of the step. 2045e76c431SBarry Smith 20528ae5a21SLois Curfman McInnes .keywords: SNES, nonlinear, line search, cubic 20628ae5a21SLois Curfman McInnes 207f59ffdedSLois Curfman McInnes .seealso: SNESCubicLineSearch(), SNESQuadraticLineSearch(), 208f59ffdedSLois Curfman McInnes .seealso: SNESSetLineSearchRoutine() 2095e76c431SBarry Smith @*/ 2105e42470aSBarry Smith int SNESNoLineSearch(SNES snes, Vec x, Vec f, Vec g, Vec y, Vec w, 2115e42470aSBarry Smith double fnorm, double *ynorm, double *gnorm ) 2125e76c431SBarry Smith { 2135e42470aSBarry Smith int ierr; 2145e42470aSBarry Smith Scalar one = 1.0; 2155e42470aSBarry Smith VecNorm(y, ynorm ); /* ynorm = || y || */ 2165e42470aSBarry Smith VecAXPY(&one, x, y ); /* y <- x + y */ 217*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,y,g); CHKERR(ierr); 2185e42470aSBarry Smith VecNorm( g, gnorm ); /* gnorm = || g || */ 2195e76c431SBarry Smith return 1; 2205e76c431SBarry Smith } 2215e76c431SBarry Smith /* ------------------------------------------------------------------ */ 2225e76c431SBarry Smith /*@ 223f59ffdedSLois Curfman McInnes SNESCubicLineSearch - This routine performs a cubic line search and 224f59ffdedSLois Curfman McInnes is the default line search method. 2255e76c431SBarry Smith 2265e76c431SBarry Smith Input Parameters: 2275e42470aSBarry Smith . snes - nonlinear context 2285e76c431SBarry Smith . x - current iterate 2295e76c431SBarry Smith . f - residual evaluated at x 2305e76c431SBarry Smith . y - search direction (contains new iterate on output) 2315e76c431SBarry Smith . w - work vector 2325e76c431SBarry Smith . fnorm - 2-norm of f 2335e76c431SBarry Smith 2345e76c431SBarry Smith Output parameters: 2355e76c431SBarry Smith . g - residual evaluated at new iterate y 2365e76c431SBarry Smith . y - new iterate (contains search direction on input) 2375e76c431SBarry Smith . gnorm - 2-norm of g 2385e76c431SBarry Smith . ynorm - 2-norm of search length 2395e76c431SBarry Smith 2405e76c431SBarry Smith Returns: 2415e76c431SBarry Smith 1 if the line search succeeds; 0 if the line search fails. 2425e76c431SBarry Smith 2435e76c431SBarry Smith Notes: 2445e76c431SBarry Smith This line search is taken from "Numerical Methods for Unconstrained 2455e76c431SBarry Smith Optimization and Nonlinear Equations" by Dennis and Schnabel, page 325. 2465e76c431SBarry Smith 24728ae5a21SLois Curfman McInnes .keywords: SNES, nonlinear, line search, cubic 24828ae5a21SLois Curfman McInnes 249f59ffdedSLois Curfman McInnes .seealso: SNESNoLineSearch(), SNESNoLineSearch(), SNESSetLineSearchRoutine() 2505e76c431SBarry Smith @*/ 2515e42470aSBarry Smith int SNESCubicLineSearch(SNES snes, Vec x, Vec f, Vec g, Vec y, Vec w, 2525e42470aSBarry Smith double fnorm, double *ynorm, double *gnorm ) 2535e76c431SBarry Smith { 2545e42470aSBarry Smith double steptol, initslope; 2555e42470aSBarry Smith double lambdaprev, gnormprev; 2565e76c431SBarry Smith double a, b, d, t1, t2; 2576b5873e3SBarry Smith #if defined(PETSC_COMPLEX) 2585e42470aSBarry Smith Scalar cinitslope,clambda; 2596b5873e3SBarry Smith #endif 2605e42470aSBarry Smith int ierr,count; 2615e42470aSBarry Smith SNES_LS *neP = (SNES_LS *) snes->data; 2625e42470aSBarry Smith Scalar one = 1.0,scale; 2635e42470aSBarry Smith double maxstep,minlambda,alpha,lambda,lambdatemp; 2645e76c431SBarry Smith 2655e76c431SBarry Smith alpha = neP->alpha; 2665e76c431SBarry Smith maxstep = neP->maxstep; 2675e76c431SBarry Smith steptol = neP->steptol; 2685e76c431SBarry Smith 2695e42470aSBarry Smith VecNorm(y, ynorm ); 2705e76c431SBarry Smith if (*ynorm > maxstep) { /* Step too big, so scale back */ 2715e42470aSBarry Smith scale = maxstep/(*ynorm); 2726b5873e3SBarry Smith #if defined(PETSC_COMPLEX) 2736b5873e3SBarry Smith PLogInfo((PetscObject)snes,"Scaling step by %g\n",real(scale)); 2746b5873e3SBarry Smith #else 2755e42470aSBarry Smith PLogInfo((PetscObject)snes,"Scaling step by %g\n",scale); 2766b5873e3SBarry Smith #endif 2775e42470aSBarry Smith VecScale(&scale, y ); 2785e76c431SBarry Smith *ynorm = maxstep; 2795e76c431SBarry Smith } 2805e76c431SBarry Smith minlambda = steptol/(*ynorm); 2815e42470aSBarry Smith #if defined(PETSC_COMPLEX) 2825e42470aSBarry Smith VecDot(f, y, &cinitslope ); 2835e42470aSBarry Smith initslope = real(cinitslope); 2845e42470aSBarry Smith #else 2855e42470aSBarry Smith VecDot(f, y, &initslope ); 2865e42470aSBarry Smith #endif 2875e76c431SBarry Smith if (initslope > 0.0) initslope = -initslope; 2885e76c431SBarry Smith if (initslope == 0.0) initslope = -1.0; 2895e76c431SBarry Smith 2905e42470aSBarry Smith VecCopy(y, w ); 2915e42470aSBarry Smith VecAXPY(&one, x, w ); 292*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,w,g); CHKERR(ierr); 2935e42470aSBarry Smith VecNorm(g, gnorm ); 2945e76c431SBarry Smith if (*gnorm <= fnorm + alpha*initslope) { /* Sufficient reduction */ 2955e42470aSBarry Smith VecCopy(w, y ); 2965e42470aSBarry Smith PLogInfo((PetscObject)snes,"Using full step\n"); 2975e42470aSBarry Smith return 0; 2985e76c431SBarry Smith } 2995e76c431SBarry Smith 3005e76c431SBarry Smith /* Fit points with quadratic */ 3015e76c431SBarry Smith lambda = 1.0; count = 0; 3025e76c431SBarry Smith lambdatemp = -initslope/(2.0*(*gnorm - fnorm - initslope)); 3035e76c431SBarry Smith lambdaprev = lambda; 3045e76c431SBarry Smith gnormprev = *gnorm; 3055e76c431SBarry Smith if (lambdatemp <= .1*lambda) { 3065e76c431SBarry Smith lambda = .1*lambda; 3075e76c431SBarry Smith } else lambda = lambdatemp; 3085e42470aSBarry Smith VecCopy(x, w ); 3095e42470aSBarry Smith #if defined(PETSC_COMPLEX) 3105e42470aSBarry Smith clambda = lambda; VecAXPY(&clambda, y, w ); 3115e42470aSBarry Smith #else 3125e42470aSBarry Smith VecAXPY(&lambda, y, w ); 3135e42470aSBarry Smith #endif 314*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,w,g); CHKERR(ierr); 3155e42470aSBarry Smith VecNorm(g, gnorm ); 3165e76c431SBarry Smith if (*gnorm <= fnorm + alpha*initslope) { /* sufficient reduction */ 3175e42470aSBarry Smith VecCopy(w, y ); 3185e42470aSBarry Smith PLogInfo((PetscObject)snes,"Quadratically determined step, lambda %g\n",lambda); 3195e42470aSBarry Smith return 0; 3205e76c431SBarry Smith } 3215e76c431SBarry Smith 3225e76c431SBarry Smith /* Fit points with cubic */ 3235e76c431SBarry Smith count = 1; 3245e76c431SBarry Smith while (1) { 3255e76c431SBarry Smith if (lambda <= minlambda) { /* bad luck; use full step */ 3265e42470aSBarry Smith PLogInfo((PetscObject)snes,"Unable to find good step length! %d \n",count); 3275e42470aSBarry Smith PLogInfo((PetscObject)snes, "f %g fnew %g ynorm %g lambda %g \n", 3285e76c431SBarry Smith fnorm,*gnorm, *ynorm,lambda); 3295e42470aSBarry Smith VecCopy(w, y ); 3305e76c431SBarry Smith return 0; 3315e76c431SBarry Smith } 3325e76c431SBarry Smith t1 = *gnorm - fnorm - lambda*initslope; 3335e76c431SBarry Smith t2 = gnormprev - fnorm - lambdaprev*initslope; 3345e76c431SBarry Smith a = (t1/(lambda*lambda) - 3355e76c431SBarry Smith t2/(lambdaprev*lambdaprev))/(lambda-lambdaprev); 3365e76c431SBarry Smith b = (-lambdaprev*t1/(lambda*lambda) + 3375e76c431SBarry Smith lambda*t2/(lambdaprev*lambdaprev))/(lambda-lambdaprev); 3385e76c431SBarry Smith d = b*b - 3*a*initslope; 3395e76c431SBarry Smith if (d < 0.0) d = 0.0; 3405e76c431SBarry Smith if (a == 0.0) { 3415e76c431SBarry Smith lambdatemp = -initslope/(2.0*b); 3425e76c431SBarry Smith } else { 3435e76c431SBarry Smith lambdatemp = (-b + sqrt(d))/(3.0*a); 3445e76c431SBarry Smith } 3455e76c431SBarry Smith if (lambdatemp > .5*lambda) { 3465e76c431SBarry Smith lambdatemp = .5*lambda; 3475e76c431SBarry Smith } 3485e76c431SBarry Smith lambdaprev = lambda; 3495e76c431SBarry Smith gnormprev = *gnorm; 3505e76c431SBarry Smith if (lambdatemp <= .1*lambda) { 3515e76c431SBarry Smith lambda = .1*lambda; 3525e76c431SBarry Smith } 3535e76c431SBarry Smith else lambda = lambdatemp; 3545e42470aSBarry Smith VecCopy( x, w ); 3555e42470aSBarry Smith #if defined(PETSC_COMPLEX) 3565e42470aSBarry Smith VecAXPY(&clambda, y, w ); 3575e42470aSBarry Smith #else 3585e42470aSBarry Smith VecAXPY(&lambda, y, w ); 3595e42470aSBarry Smith #endif 360*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,w,g); CHKERR(ierr); 3615e42470aSBarry Smith VecNorm(g, gnorm ); 3625e76c431SBarry Smith if (*gnorm <= fnorm + alpha*initslope) { /* is reduction enough */ 3635e42470aSBarry Smith VecCopy(w, y ); 3645e42470aSBarry Smith PLogInfo((PetscObject)snes,"Cubically determined step, lambda %g\n",lambda); 3655e42470aSBarry Smith return 0; 3665e76c431SBarry Smith } 3675e76c431SBarry Smith count++; 3685e76c431SBarry Smith } 3695e42470aSBarry Smith return 0; 3705e76c431SBarry Smith } 3715e42470aSBarry Smith /*@ 3725e42470aSBarry Smith SNESQuadraticLineSearch - This routine performs a cubic line search. 3735e76c431SBarry Smith 3745e42470aSBarry Smith Input Parameters: 375f59ffdedSLois Curfman McInnes . snes - the SNES context 3765e42470aSBarry Smith . x - current iterate 3775e42470aSBarry Smith . f - residual evaluated at x 3785e42470aSBarry Smith . y - search direction (contains new iterate on output) 3795e42470aSBarry Smith . w - work vector 3805e42470aSBarry Smith . fnorm - 2-norm of f 3815e42470aSBarry Smith 3825e42470aSBarry Smith Output parameters: 3835e42470aSBarry Smith . g - residual evaluated at new iterate y 3845e42470aSBarry Smith . y - new iterate (contains search direction on input) 3855e42470aSBarry Smith . gnorm - 2-norm of g 3865e42470aSBarry Smith . ynorm - 2-norm of search length 3875e42470aSBarry Smith 3885e42470aSBarry Smith Returns: 3895e42470aSBarry Smith 1 if the line search succeeds; 0 if the line search fails. 3905e42470aSBarry Smith 3915e42470aSBarry Smith Notes: 392f59ffdedSLois Curfman McInnes Use SNESSetLineSearchRoutine() 393f59ffdedSLois Curfman McInnes to set this routine within the SNES_NLS method. 3945e42470aSBarry Smith 395f59ffdedSLois Curfman McInnes .keywords: SNES, nonlinear, quadratic, line search 396f59ffdedSLois Curfman McInnes 397f59ffdedSLois Curfman McInnes .seealso: SNESCubicLineSearch(), SNESNoLineSearch(), SNESSetLineSearchRoutine() 3985e42470aSBarry Smith @*/ 3995e42470aSBarry Smith int SNESQuadraticLineSearch(SNES snes, Vec x, Vec f, Vec g, Vec y, Vec w, 4005e42470aSBarry Smith double fnorm, double *ynorm, double *gnorm ) 4015e76c431SBarry Smith { 4025e42470aSBarry Smith double steptol, initslope; 4035e42470aSBarry Smith double lambdaprev, gnormprev; 4046b5873e3SBarry Smith #if defined(PETSC_COMPLEX) 4055e42470aSBarry Smith Scalar cinitslope,clambda; 4066b5873e3SBarry Smith #endif 4075e42470aSBarry Smith int ierr,count; 4085e42470aSBarry Smith SNES_LS *neP = (SNES_LS *) snes->data; 4095e42470aSBarry Smith Scalar one = 1.0,scale; 4105e42470aSBarry Smith double maxstep,minlambda,alpha,lambda,lambdatemp; 4115e76c431SBarry Smith 4125e42470aSBarry Smith alpha = neP->alpha; 4135e42470aSBarry Smith maxstep = neP->maxstep; 4145e42470aSBarry Smith steptol = neP->steptol; 4155e76c431SBarry Smith 4165e42470aSBarry Smith VecNorm(y, ynorm ); 4175e42470aSBarry Smith if (*ynorm > maxstep) { /* Step too big, so scale back */ 4185e42470aSBarry Smith scale = maxstep/(*ynorm); 4195e42470aSBarry Smith VecScale(&scale, y ); 4205e42470aSBarry Smith *ynorm = maxstep; 4215e76c431SBarry Smith } 4225e42470aSBarry Smith minlambda = steptol/(*ynorm); 4235e42470aSBarry Smith #if defined(PETSC_COMPLEX) 4245e42470aSBarry Smith VecDot(f, y, &cinitslope ); 4255e42470aSBarry Smith initslope = real(cinitslope); 4265e42470aSBarry Smith #else 4275e42470aSBarry Smith VecDot(f, y, &initslope ); 4285e42470aSBarry Smith #endif 4295e42470aSBarry Smith if (initslope > 0.0) initslope = -initslope; 4305e42470aSBarry Smith if (initslope == 0.0) initslope = -1.0; 4315e42470aSBarry Smith 4325e42470aSBarry Smith VecCopy(y, w ); 4335e42470aSBarry Smith VecAXPY(&one, x, w ); 434*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,w,g); CHKERR(ierr); 4355e42470aSBarry Smith VecNorm(g, gnorm ); 4365e42470aSBarry Smith if (*gnorm <= fnorm + alpha*initslope) { /* Sufficient reduction */ 4375e42470aSBarry Smith VecCopy(w, y ); 4385e42470aSBarry Smith PLogInfo((PetscObject)snes,"Using full step\n"); 4395e42470aSBarry Smith return 0; 4405e42470aSBarry Smith } 4415e42470aSBarry Smith 4425e42470aSBarry Smith /* Fit points with quadratic */ 4435e42470aSBarry Smith lambda = 1.0; count = 0; 4445e42470aSBarry Smith count = 1; 4455e42470aSBarry Smith while (1) { 4465e42470aSBarry Smith if (lambda <= minlambda) { /* bad luck; use full step */ 4475e42470aSBarry Smith PLogInfo((PetscObject)snes,"Unable to find good step length! %d \n",count); 4485e42470aSBarry Smith PLogInfo((PetscObject)snes, "f %g fnew %g ynorm %g lambda %g \n", 4495e42470aSBarry Smith fnorm,*gnorm, *ynorm,lambda); 4505e42470aSBarry Smith VecCopy(w, y ); 4515e42470aSBarry Smith return 0; 4525e42470aSBarry Smith } 4535e42470aSBarry Smith lambdatemp = -initslope/(2.0*(*gnorm - fnorm - initslope)); 4545e42470aSBarry Smith lambdaprev = lambda; 4555e42470aSBarry Smith gnormprev = *gnorm; 4565e42470aSBarry Smith if (lambdatemp <= .1*lambda) { 4575e42470aSBarry Smith lambda = .1*lambda; 4585e42470aSBarry Smith } else lambda = lambdatemp; 4595e42470aSBarry Smith VecCopy(x, w ); 4605e42470aSBarry Smith #if defined(PETSC_COMPLEX) 4615e42470aSBarry Smith clambda = lambda; VecAXPY(&clambda, y, w ); 4625e42470aSBarry Smith #else 4635e42470aSBarry Smith VecAXPY(&lambda, y, w ); 4645e42470aSBarry Smith #endif 465*a9581db2SBarry Smith ierr = SNESComputeFunction(snes,w,g); CHKERR(ierr); 4665e42470aSBarry Smith VecNorm(g, gnorm ); 4675e42470aSBarry Smith if (*gnorm <= fnorm + alpha*initslope) { /* sufficient reduction */ 4685e42470aSBarry Smith VecCopy(w, y ); 4695e42470aSBarry Smith PLogInfo((PetscObject)snes,"Quadratically determined step, lambda %g\n",lambda); 4705e42470aSBarry Smith return 0; 4715e42470aSBarry Smith } 4725e42470aSBarry Smith count++; 4735e42470aSBarry Smith } 4745e42470aSBarry Smith 4755e42470aSBarry Smith return 0; 4765e76c431SBarry Smith } 4775e76c431SBarry Smith /* ------------------------------------------------------------ */ 4785e76c431SBarry Smith /*@C 4795e42470aSBarry Smith SNESSetLineSearchRoutine - Sets the line search routine to be used 480fbe28522SBarry Smith by the method SNES_LS. 4815e76c431SBarry Smith 4825e76c431SBarry Smith Input Parameters: 4835e42470aSBarry Smith . snes - nonlinear context obtained from NLCreate() 4845e76c431SBarry Smith . func - pointer to int function 4855e76c431SBarry Smith 4865e76c431SBarry Smith Possible routines: 487f59ffdedSLois Curfman McInnes . SNESCubicLineSearch() - default line search 488f59ffdedSLois Curfman McInnes . SNESQuadraticLineSearch() - quadratic line search 489f59ffdedSLois Curfman McInnes . SNESNoLineSearch() - the full Newton step (actually not a line search) 4905e76c431SBarry Smith 4915e76c431SBarry Smith Calling sequence of func: 492f59ffdedSLois Curfman McInnes func (SNES snes, Vec x, Vec f, Vec g, Vec y, 4935e42470aSBarry Smith Vec w, double fnorm, double *ynorm, double *gnorm) 4945e76c431SBarry Smith 4955e76c431SBarry Smith Input parameters for func: 4965e42470aSBarry Smith . snes - nonlinear context 4975e76c431SBarry Smith . x - current iterate 4985e76c431SBarry Smith . f - residual evaluated at x 4995e76c431SBarry Smith . y - search direction (contains new iterate on output) 5005e76c431SBarry Smith . w - work vector 5015e76c431SBarry Smith . fnorm - 2-norm of f 5025e76c431SBarry Smith 5035e76c431SBarry Smith Output parameters for func: 5045e76c431SBarry Smith . g - residual evaluated at new iterate y 5055e76c431SBarry Smith . y - new iterate (contains search direction on input) 5065e76c431SBarry Smith . gnorm - 2-norm of g 5075e76c431SBarry Smith . ynorm - 2-norm of search length 5085e76c431SBarry Smith 5095e76c431SBarry Smith Returned by func: 5105e76c431SBarry Smith 1 if the line search succeeds; 0 if the line search fails. 511f59ffdedSLois Curfman McInnes 512f59ffdedSLois Curfman McInnes .keywords: SNES, nonlinear, set, line search, routine 513f59ffdedSLois Curfman McInnes 514f59ffdedSLois Curfman McInnes .seealso: SNESNoLineSearch(), SNESQuadraticLineSearch(), SNESCubicLineSearch() 5155e76c431SBarry Smith @*/ 5165e42470aSBarry Smith int SNESSetLineSearchRoutine(SNES snes,int (*func)(SNES,Vec,Vec,Vec,Vec,Vec, 5175e42470aSBarry Smith double,double *,double*) ) 5185e76c431SBarry Smith { 519fbe28522SBarry Smith if ((snes)->type == SNES_NLS) 5205e42470aSBarry Smith ((SNES_LS *)(snes->data))->LineSearch = func; 5215e42470aSBarry Smith return 0; 5225e76c431SBarry Smith } 5235e42470aSBarry Smith 5245e42470aSBarry Smith static int SNESPrintHelp_LS(SNES snes) 5255e42470aSBarry Smith { 5265e42470aSBarry Smith SNES_LS *ls = (SNES_LS *)snes->data; 5275e42470aSBarry Smith fprintf(stderr,"-snes_line_search [basic,quadratic,cubic]\n"); 5285e42470aSBarry Smith fprintf(stderr,"-snes_line_search_alpha alpha (default %g)\n",ls->alpha); 5295e42470aSBarry Smith fprintf(stderr,"-snes_line_search_maxstep max (default %g)\n",ls->maxstep); 5305e42470aSBarry Smith fprintf(stderr,"-snes_line_search_steptol tol (default %g)\n",ls->steptol); 5316b5873e3SBarry Smith return 0; 5325e42470aSBarry Smith } 5335e42470aSBarry Smith 5346b5873e3SBarry Smith #include "options.h" 5355e42470aSBarry Smith static int SNESSetFromOptions_LS(SNES snes) 5365e42470aSBarry Smith { 5375e42470aSBarry Smith SNES_LS *ls = (SNES_LS *)snes->data; 5385e42470aSBarry Smith char ver[16]; 5395e42470aSBarry Smith double tmp; 5405e42470aSBarry Smith 5415e42470aSBarry Smith if (OptionsGetDouble(0,snes->prefix,"-snes_line_search_alpa",&tmp)) { 5425e42470aSBarry Smith ls->alpha = tmp; 5435e42470aSBarry Smith } 5445e42470aSBarry Smith if (OptionsGetDouble(0,snes->prefix,"-snes_line_search_maxstep",&tmp)) { 5455e42470aSBarry Smith ls->maxstep = tmp; 5465e42470aSBarry Smith } 5475e42470aSBarry Smith if (OptionsGetDouble(0,snes->prefix,"-snes_line_search_steptol",&tmp)) { 5485e42470aSBarry Smith ls->steptol = tmp; 5495e42470aSBarry Smith } 5505e42470aSBarry Smith if (OptionsGetString(0,snes->prefix,"-snes_line_search",ver,16)) { 5515e42470aSBarry Smith if (!strcmp(ver,"basic")) { 5525e42470aSBarry Smith SNESSetLineSearchRoutine(snes,SNESNoLineSearch); 5535e42470aSBarry Smith } 5545e42470aSBarry Smith else if (!strcmp(ver,"quadratic")) { 5555e42470aSBarry Smith SNESSetLineSearchRoutine(snes,SNESQuadraticLineSearch); 5565e42470aSBarry Smith } 5575e42470aSBarry Smith else if (!strcmp(ver,"cubic")) { 5585e42470aSBarry Smith SNESSetLineSearchRoutine(snes,SNESCubicLineSearch); 5595e42470aSBarry Smith } 5605e42470aSBarry Smith else {SETERR(1,"Unknown line search?");} 5615e42470aSBarry Smith } 5625e42470aSBarry Smith return 0; 5635e42470aSBarry Smith } 5645e42470aSBarry Smith 5655e42470aSBarry Smith /* ------------------------------------------------------------ */ 5665e42470aSBarry Smith int SNESCreate_LS(SNES snes ) 5675e42470aSBarry Smith { 5685e42470aSBarry Smith SNES_LS *neP; 5695e42470aSBarry Smith 570fbe28522SBarry Smith snes->type = SNES_NLS; 5715e42470aSBarry Smith snes->Setup = SNESSetUp_LS; 5725e42470aSBarry Smith snes->Solver = SNESSolve_LS; 5735e42470aSBarry Smith snes->destroy = SNESDestroy_LS; 574fbe28522SBarry Smith snes->Monitor = 0; 5755e42470aSBarry Smith snes->Converged = SNESDefaultConverged; 5765e42470aSBarry Smith snes->PrintHelp = SNESPrintHelp_LS; 5775e42470aSBarry Smith snes->SetFromOptions = SNESSetFromOptions_LS; 5785e42470aSBarry Smith 5795e42470aSBarry Smith neP = NEW(SNES_LS); CHKPTR(neP); 5805e42470aSBarry Smith snes->data = (void *) neP; 5815e42470aSBarry Smith neP->alpha = 1.e-4; 5825e42470aSBarry Smith neP->maxstep = 1.e8; 5835e42470aSBarry Smith neP->steptol = 1.e-12; 5845e42470aSBarry Smith neP->LineSearch = SNESCubicLineSearch; 5855e42470aSBarry Smith return 0; 5865e42470aSBarry Smith } 5875e42470aSBarry Smith 5885e42470aSBarry Smith 5895e42470aSBarry Smith 5905e42470aSBarry Smith 591