git-svn-id: http://moon:8086/svn/matlab/trunk@91 801c6759-fa7c-4059-a304-17956f83a07c
79 lines
2.4 KiB
Matlab
79 lines
2.4 KiB
Matlab
clear all
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nInst = 500;
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nVars = 200;
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X = randn(nInst,nVars);
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w = randn(nVars,1);
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y = sign(X*w + randn(nInst,1));
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w_init = zeros(nVars,1);
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funObj = @(w)LogisticLoss(w,X,y);
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fprintf('\nRunning Steepest Descent\n');
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options.Method = 'sd';
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Cyclic Steepest Descent\n');
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options.Method = 'csd';
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Conjugate Gradient\n');
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options.Method = 'cg';
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Scaled Conjugate Gradient\n');
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options.Method = 'scg';
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Conjugate Gradient (Diagonal preconditioner)\n');
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options.Method = 'pcg';
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options.precFunc = @LogisticDiagPrecond;
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Conjugate Gradient (L-BFGS preconditioner)\n');
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options.Method = 'pcg';
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options.precFunc = [];
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Hessian-Free Newton w/ numerical Hessian-Vector products\n');
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options.Method = 'newton0';
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Hessian-Free Newton w/ numerical Hessian-Vector products (Diagonal preconditioner)\n');
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options.Method = 'pnewton0';
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options.precFunc = @LogisticDiagPrecond;
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Hessian-Free Newton w/ numerical Hessian-Vector products (L-BFGS preconditioner)\n');
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options.Method = 'pnewton0';
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options.precFunc = [];
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Hessian-Free Newton w/ analytic Hessian-Vector products\n');
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options.Method = 'newton0';
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options.HvFunc = @LogisticHv;
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Hessian-Free Newton w/ analytic Hessian-Vector products (Diagonal preconditioner)\n');
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options.Method = 'pnewton0';
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options.HvFunc = @LogisticHv;
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options.precFunc = @LogisticDiagPrecond;
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause;
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fprintf('\nRunning Preconditioned Hessian-Free Newton w/ analytic Hessian-Vector products (L-BFGS preconditioner)\n');
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options.Method = 'pnewton0';
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options.precFunc = [];
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options.HvFunc = @LogisticHv;
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minFunc(@LogisticLoss,w_init,options,X,y);
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pause; |