test_solver_ADY¶
test.ASC_SOLVER.test_solver_ADY
This is a pytest module needing documentation
Functions
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This is a pytest needing documentation |
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This is a pytest needing documentation |
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Test that runs the plotting code for H2. |
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This is a pytest needing documentation |
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This is a pytest needing documentation |
Details
- T_calc_H2(folder)[source]¶
This is a pytest needing documentation
code
1@pytest.mark.parametrize( 2 'folder', 3 [ 4 #'ExampleModels_rescale', 5 'ExampleModels', 6 'ExampleModels_working', 7 'ExampleModels_working_F3', 8 'ExampleModels_newFOM', 9 'ExampleModels_newFOM_F3', 10 'ExampleModels_DARMFOM', 11 ] 12) 13def T_calc_H2(folder): 14 sysB = get_systemB(folder = folder) 15 io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function 16 17 if '_F3' in folder: 18 FOM_out = ["F3.out", "F2.out"] 19 else: 20 FOM_out = ["FBNS.out", "F2.out"] 21 wn_in = ["S.in", "O.in"] 22 control_in = ["U.in"] 23 meas_out = ["T.out"] 24 25 # currently NO-OP and could be removed 26 sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) 27 sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) 28 29 # Scale the DARM output 30 if 'DARM.out' in sysB.sys.outputs.keys(): 31 print('scaling DARM') 32 DARM_scale_factor = strain2m * SNR_intg_factor 33 sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) 34 35 params = {} 36 if folder == 'ExampleModels': 37 params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale 38 elif folder == 'ExampleModels_newFOM_F3': 39 params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale 40 else: 41 params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale 42 #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale 43 44 results_H2_bare = compute.calcOpt( 45 sysB.sys, 46 control_in, 47 wn_in, 48 meas_out, 49 FOM_out, 50 params, 51 solver="LQG", 52 plant_orig=sysB.orig_plant, 53 ) 54 55 print("Length of H2 results: ", len(results_H2_bare)) 56 57 58 plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi 59 results_H2 = compute.calcFullResults( 60 results_H2_bare, 61 colormap="jet", 62 plot_omega=plotting_omega, 63 io_scales = io_scales, 64 ) 65 66 ofile = "results_H2_ADY.pkl" 67 tfile = tjoin(ofile) 68 buzzutil.save_results(results_H2, tfile) 69 70 ffile = fjoin(folder, ofile) 71 buzzutil.save_results(results_H2, ffile) 72 73 # copy to the data directory if it is missing 74 dfile = fjoin(folder, ofile) 75 76 # should not copy into rootdir, especially for parametrized test 77 # should this be for ffile? 78 # if not os.path.exists(ofile): 79 # import shutil 80 # shutil.copy(tfile, ofile) 81 82 print("Now running plot test") 83 T_plot_H2(folder=folder, dfile=tfile)
pytest information
This code is wrapped in a pytest function using conventions detailed in pytest_conventions. The full name of this test, as known by the documentation, is:
test.ASC_SOLVER.test_solver_ADY.T_calc_H2The full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_calc_H2[ExampleModels_DARMFOM]
output
status: failed duration: 9.846s Captured stderr call 0%| | 0/15 [00:00<?, ?it/s] 7%|▋ | 1/15 [00:01<00:19, 1.37s/it] 13%|█▎ | 2/15 [00:01<00:11, 1.09it/s] 20%|██ | 3/15 [00:02<00:08, 1.49it/s] 27%|██▋ | 4/15 [00:03<00:07, 1.44it/s] 33%|███▎ | 5/15 [00:03<00:06, 1.56it/s] 40%|████ | 6/15 [00:04<00:05, 1.60it/s] 47%|████▋ | 7/15 [00:04<00:04, 1.75it/s] 53%|█████▎ | 8/15 [00:05<00:03, 1.85it/s] 60%|██████ | 9/15 [00:06<00:04, 1.44it/s] 67%|██████▋ | 10/15 [00:06<00:03, 1.55it/s] 73%|███████▎ | 11/15 [00:07<00:02, 1.55it/s] 80%|████████ | 12/15 [00:08<00:02, 1.37it/s] 87%|████████▋ | 13/15 [00:09<00:01, 1.28it/s] 87%|████████▋ | 13/15 [00:09<00:01, 1.34it/s] captured errors: folder = 'ExampleModels_DARMFOM' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale > results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:110: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:141: in calcOpt Ctrl = solvers.LQGsolverset(SPOFF_sc, z2=FOM_out, y=meas_out, w=wn_in, u=control_in) /builds/buzz/src/buzz/solvers.py:681: in LQGsolverset K, P = lqe(SO_Kal_Red, A, B1, C2, D21) /builds/buzz/src/buzz/solvers.py:392: in lqe P = scipy.linalg.solve_continuous_are(A.T, C2.T, B1 @ B1.T, RN, e=E, s=S) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ a = array([[-6.94278226e-02, 1.08352455e+00, 4.31348972e-02, ..., -1.26901193e-05, -9.00715523e-05, 5.00948733e... [-9.85507285e-08, -1.67851319e-07, 9.12110885e-08, ..., 7.38712769e+01, 2.97731934e+01, -1.11347052e+02]]) b = array([[ 8.14997637e+03], [ 1.05552702e+04], [-4.12223247e+03], [-9.55730652e+02], [-3.870...51184682e-01], [-1.32549132e-01], [ 2.07920754e-02], [ 8.34938596e-02], [ 6.14655117e-03]]) q = array([[-5.03103793e-01, -6.51584279e-01, 2.54468320e-01, ..., 0.00000000e+00, 0.00000000e+00, -1.20567785e... [-1.20567785e-03, -5.22652350e-04, 2.04115522e-04, ..., 0.00000000e+00, 0.00000000e+00, 9.99999033e-01]]) r = array([[-2073522.38085972], [ 0. ], [ 0. ], [ 0. ], ... ], [ 0. ], [ 0. ], [ 0. ], [ 0. ]]) e = array([[1., 0., 0., ..., 0., 0., 0.], [0., 1., 0., ..., 0., 0., 0.], [0., 0., 1., ..., 0., 0., 0.], ..., [0., 0., 0., ..., 1., 0., 0.], [0., 0., 0., ..., 0., 1., 0.], [0., 0., 0., ..., 0., 0., 1.]]) s = array([5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 5., 4., 6., 7., 6., 7., 4., 7., 6., 5., 5., 7., 6., 6., 6., 7., 7., 5., 5., 6., 5., 5., 6., 5., 5., 5., 4., 3., 2., 2., 2., 2., 2.]) balanced = True def solve_continuous_are(a, b, q, r, e=None, s=None, balanced=True): r""" Solves the continuous-time algebraic Riccati equation (CARE). The CARE is defined as .. math:: X A + A^H X - X B R^{-1} B^H X + Q = 0 The limitations for a solution to exist are : * All eigenvalues of :math:`A` on the right half plane, should be controllable. * The associated hamiltonian pencil (See Notes), should have eigenvalues sufficiently away from the imaginary axis. Moreover, if ``e`` or ``s`` is not precisely ``None``, then the generalized version of CARE .. math:: E^HXA + A^HXE - (E^HXB + S) R^{-1} (B^HXE + S^H) + Q = 0 is solved. When omitted, ``e`` is assumed to be the identity and ``s`` is assumed to be the zero matrix with sizes compatible with ``a`` and ``b``, respectively. Parameters ---------- a : (M, M) array_like Square matrix b : (M, N) array_like Input q : (M, M) array_like Input r : (N, N) array_like Nonsingular square matrix e : (M, M) array_like, optional Nonsingular square matrix s : (M, N) array_like, optional Input balanced : bool, optional The boolean that indicates whether a balancing step is performed on the data. The default is set to True. Returns ------- x : (M, M) ndarray Solution to the continuous-time algebraic Riccati equation. Raises ------ LinAlgError For cases where the stable subspace of the pencil could not be isolated. See Notes section and the references for details. See Also -------- solve_discrete_are : Solves the discrete-time algebraic Riccati equation Notes ----- The equation is solved by forming the extended hamiltonian matrix pencil, as described in [1]_, :math:`H - \lambda J` given by the block matrices :: [ A 0 B ] [ E 0 0 ] [-Q -A^H -S ] - \lambda * [ 0 E^H 0 ] [ S^H B^H R ] [ 0 0 0 ] and using a QZ decomposition method. In this algorithm, the fail conditions are linked to the symmetry of the product :math:`U_2 U_1^{-1}` and condition number of :math:`U_1`. Here, :math:`U` is the 2m-by-m matrix that holds the eigenvectors spanning the stable subspace with 2-m rows and partitioned into two m-row matrices. See [1]_ and [2]_ for more details. In order to improve the QZ decomposition accuracy, the pencil goes through a balancing step where the sum of absolute values of :math:`H` and :math:`J` entries (after removing the diagonal entries of the sum) is balanced following the recipe given in [3]_. .. versionadded:: 0.11.0 References ---------- .. [1] P. van Dooren , "A Generalized Eigenvalue Approach For Solving Riccati Equations.", SIAM Journal on Scientific and Statistical Computing, Vol.2(2), :doi:`10.1137/0902010` .. [2] A.J. Laub, "A Schur Method for Solving Algebraic Riccati Equations.", Massachusetts Institute of Technology. Laboratory for Information and Decision Systems. LIDS-R ; 859. Available online : http://hdl.handle.net/1721.1/1301 .. [3] P. Benner, "Symplectic Balancing of Hamiltonian Matrices", 2001, SIAM J. Sci. Comput., 2001, Vol.22(5), :doi:`10.1137/S1064827500367993` Examples -------- Given `a`, `b`, `q`, and `r` solve for `x`: >>> import numpy as np >>> from scipy import linalg >>> a = np.array([[4, 3], [-4.5, -3.5]]) >>> b = np.array([[1], [-1]]) >>> q = np.array([[9, 6], [6, 4.]]) >>> r = 1 >>> x = linalg.solve_continuous_are(a, b, q, r) >>> x array([[ 21.72792206, 14.48528137], [ 14.48528137, 9.65685425]]) >>> np.allclose(a.T.dot(x) + x.dot(a)-x.dot(b).dot(b.T).dot(x), -q) True """ # Validate input arguments a, b, q, r, e, s, m, n, r_or_c, gen_are = _are_validate_args( a, b, q, r, e, s, 'care') H = np.empty((2*m+n, 2*m+n), dtype=r_or_c) H[:m, :m] = a H[:m, m:2*m] = 0. H[:m, 2*m:] = b H[m:2*m, :m] = -q H[m:2*m, m:2*m] = -a.conj().T H[m:2*m, 2*m:] = 0. if s is None else -s H[2*m:, :m] = 0. if s is None else s.conj().T H[2*m:, m:2*m] = b.conj().T H[2*m:, 2*m:] = r if gen_are and e is not None: J = block_diag(e, e.conj().T, np.zeros_like(r, dtype=r_or_c)) else: J = block_diag(np.eye(2*m), np.zeros_like(r, dtype=r_or_c)) if balanced: # xGEBAL does not remove the diagonals before scaling. Also # to avoid destroying the Symplectic structure, we follow Ref.3 M = np.abs(H) + np.abs(J) np.fill_diagonal(M, 0.) _, (sca, _) = matrix_balance(M, separate=1, permute=0) # do we need to bother? if not np.allclose(sca, np.ones_like(sca)): # Now impose diag(D,inv(D)) from Benner where D is # square root of s_i/s_(n+i) for i=0,.... sca = np.log2(sca) # NOTE: Py3 uses "Bankers Rounding: round to the nearest even" !! s = np.round((sca[m:2*m] - sca[:m])/2) sca = 2 ** np.r_[s, -s, sca[2*m:]] # Elementwise multiplication via broadcasting. elwisescale = sca[:, None] * np.reciprocal(sca) H *= elwisescale J *= elwisescale # Deflate the pencil to 2m x 2m ala Ref.1, eq.(55) q, r = qr(H[:, -n:]) H = q[:, n:].conj().T.dot(H[:, :2*m]) J = q[:2*m, n:].conj().T.dot(J[:2*m, :2*m]) # Decide on which output type is needed for QZ out_str = 'real' if r_or_c == float else 'complex' _, _, _, _, _, u = ordqz(H, J, sort='lhp', overwrite_a=True, overwrite_b=True, check_finite=False, output=out_str) # Get the relevant parts of the stable subspace basis if e is not None: u, _ = qr(np.vstack((e.dot(u[:m, :m]), u[m:, :m]))) u00 = u[:m, :m] u10 = u[m:, :m] # Solve via back-substituion after checking the condition of u00 up, ul, uu = lu(u00) if 1/cond(uu) < np.spacing(1.): > raise LinAlgError('Failed to find a finite solution.') E numpy.linalg.LinAlgError: Failed to find a finite solution. /opt/conda/lib/python3.12/site-packages/scipy/linalg/_solvers.py:505: LinAlgErrorT_calc_H2[ExampleModels]
output
Length of H2 results: 30 Captured stderr call 0%| | 0/30 [00:00<?, ?it/s] 3%|▎ | 1/30 [00:00<00:12, 2.32it/s] 7%|▋ | 2/30 [00:00<00:10, 2.56it/s] 10%|█ | 3/30 [00:01<00:11, 2.38it/s] 13%|█▎ | 4/30 [00:01<00:09, 2.87it/s] 17%|█▋ | 5/30 [00:01<00:08, 2.79it/s] 20%|██ | 6/30 [00:02<00:08, 2.94it/s] 23%|██▎ | 7/30 [00:02<00:08, 2.78it/s] 27%|██▋ | 8/30 [00:03<00:09, 2.21it/s] 30%|███ | 9/30 [00:03<00:10, 1.96it/s] 33%|███▎ | 10/30 [00:04<00:11, 1.69it/s] 37%|███▋ | 11/30 [00:05<00:13, 1.38it/s] 40%|████ | 12/30 [00:06<00:13, 1.38it/s] 43%|████▎ | 13/30 [00:06<00:10, 1.58it/s] 47%|████▋ | 14/30 [00:07<00:08, 1.79it/s] 50%|█████ | 15/30 [00:07<00:08, 1.77it/s] 53%|█████▎ | 16/30 [00:08<00:10, 1.38it/s] 57%|█████▋ | 17/30 [00:09<00:09, 1.44it/s] 60%|██████ | 18/30 [00:10<00:08, 1.39it/s] 63%|██████▎ | 19/30 [00:10<00:07, 1.40it/s] 67%|██████▋ | 20/30 [00:11<00:06, 1.50it/s] 70%|███████ | 21/30 [00:11<00:05, 1.68it/s] 73%|███████▎ | 22/30 [00:12<00:04, 1.60it/s] 77%|███████▋ | 23/30 [00:14<00:06, 1.07it/s] 80%|████████ | 24/30 [00:15<00:05, 1.13it/s] 83%|████████▎ | 25/30 [00:16<00:05, 1.08s/it] 87%|████████▋ | 26/30 [00:17<00:04, 1.04s/it] 90%|█████████ | 27/30 [00:18<00:03, 1.02s/it] 93%|█████████▎| 28/30 [00:19<00:01, 1.16it/s] 97%|█████████▋| 29/30 [00:19<00:00, 1.27it/s] 100%|██████████| 30/30 [00:20<00:00, 1.20it/s] 100%|██████████| 30/30 [00:20<00:00, 1.46it/s] 0%| | 0/30 [00:00<?, ?it/s] 0%| | 0/30 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) print("Length of H2 results: ", len(results_H2_bare)) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi > results_H2 = compute.calcFullResults( results_H2_bare, colormap="jet", plot_omega=plotting_omega, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:125: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 1.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 38 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_H2[ExampleModels_newFOM]
output
Length of H2 results: 15 Captured stderr call 0%| | 0/15 [00:00<?, ?it/s] 7%|▋ | 1/15 [00:00<00:13, 1.04it/s] 13%|█▎ | 2/15 [00:01<00:10, 1.20it/s] 20%|██ | 3/15 [00:02<00:08, 1.44it/s] 27%|██▋ | 4/15 [00:02<00:06, 1.66it/s] 33%|███▎ | 5/15 [00:03<00:06, 1.52it/s] 40%|████ | 6/15 [00:04<00:06, 1.43it/s] 47%|████▋ | 7/15 [00:04<00:04, 1.69it/s] 53%|█████▎ | 8/15 [00:05<00:05, 1.38it/s] 60%|██████ | 9/15 [00:06<00:05, 1.16it/s] 67%|██████▋ | 10/15 [00:07<00:04, 1.08it/s] 73%|███████▎ | 11/15 [00:08<00:03, 1.06it/s] 80%|████████ | 12/15 [00:09<00:02, 1.30it/s] 87%|████████▋ | 13/15 [00:09<00:01, 1.39it/s] 93%|█████████▎| 14/15 [00:11<00:00, 1.13it/s] 100%|██████████| 15/15 [00:11<00:00, 1.32it/s] 100%|██████████| 15/15 [00:11<00:00, 1.30it/s] 0%| | 0/15 [00:00<?, ?it/s] 0%| | 0/15 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_newFOM' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) print("Length of H2 results: ", len(results_H2_bare)) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi > results_H2 = compute.calcFullResults( results_H2_bare, colormap="jet", plot_omega=plotting_omega, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:125: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 100.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 42 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_H2[ExampleModels_newFOM_F3]
output
Length of H2 results: 30 Captured stderr call 0%| | 0/30 [00:00<?, ?it/s] 3%|▎ | 1/30 [00:00<00:07, 4.12it/s] 7%|▋ | 2/30 [00:00<00:08, 3.47it/s] 10%|█ | 3/30 [00:00<00:08, 3.28it/s] 13%|█▎ | 4/30 [00:01<00:09, 2.75it/s] 17%|█▋ | 5/30 [00:02<00:14, 1.68it/s] 20%|██ | 6/30 [00:02<00:13, 1.73it/s] 23%|██▎ | 7/30 [00:03<00:11, 2.02it/s] 27%|██▋ | 8/30 [00:03<00:09, 2.41it/s] 30%|███ | 9/30 [00:04<00:13, 1.61it/s] 33%|███▎ | 10/30 [00:04<00:10, 1.89it/s] 37%|███▋ | 11/30 [00:05<00:08, 2.13it/s] 40%|████ | 12/30 [00:05<00:10, 1.80it/s] 43%|████▎ | 13/30 [00:07<00:14, 1.16it/s] 47%|████▋ | 14/30 [00:07<00:11, 1.41it/s] 50%|█████ | 15/30 [00:08<00:09, 1.62it/s] 53%|█████▎ | 16/30 [00:09<00:09, 1.52it/s] 57%|█████▋ | 17/30 [00:09<00:08, 1.61it/s] 60%|██████ | 18/30 [00:10<00:07, 1.62it/s] 63%|██████▎ | 19/30 [00:10<00:05, 1.87it/s] 67%|██████▋ | 20/30 [00:11<00:06, 1.63it/s] 70%|███████ | 21/30 [00:11<00:05, 1.58it/s] 73%|███████▎ | 22/30 [00:12<00:04, 1.69it/s] 77%|███████▋ | 23/30 [00:12<00:03, 1.91it/s] 80%|████████ | 24/30 [00:14<00:04, 1.20it/s] 83%|████████▎ | 25/30 [00:14<00:03, 1.41it/s] 87%|████████▋ | 26/30 [00:15<00:02, 1.72it/s] 90%|█████████ | 27/30 [00:15<00:01, 1.92it/s] 93%|█████████▎| 28/30 [00:16<00:01, 1.69it/s] 97%|█████████▋| 29/30 [00:16<00:00, 1.91it/s] 100%|██████████| 30/30 [00:17<00:00, 1.97it/s] 100%|██████████| 30/30 [00:17<00:00, 1.76it/s] 0%| | 0/30 [00:00<?, ?it/s] 0%| | 0/30 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_newFOM_F3' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) print("Length of H2 results: ", len(results_H2_bare)) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi > results_H2 = compute.calcFullResults( results_H2_bare, colormap="jet", plot_omega=plotting_omega, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:125: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 1.0, 'F2_gain': 1.0, 'FOM_out': ['F3.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 38 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_H2[ExampleModels_working_F3]
output
Length of H2 results: 15 Captured stderr call 0%| | 0/15 [00:00<?, ?it/s] 7%|▋ | 1/15 [00:01<00:18, 1.32s/it] 13%|█▎ | 2/15 [00:02<00:16, 1.23s/it] 20%|██ | 3/15 [00:03<00:10, 1.11it/s] 27%|██▋ | 4/15 [00:03<00:08, 1.24it/s] 33%|███▎ | 5/15 [00:04<00:07, 1.32it/s] 40%|████ | 6/15 [00:04<00:06, 1.40it/s] 47%|████▋ | 7/15 [00:05<00:06, 1.27it/s] 53%|█████▎ | 8/15 [00:06<00:04, 1.54it/s] 60%|██████ | 9/15 [00:07<00:04, 1.35it/s] 67%|██████▋ | 10/15 [00:08<00:05, 1.01s/it] 73%|███████▎ | 11/15 [00:09<00:03, 1.11it/s] 80%|████████ | 12/15 [00:09<00:02, 1.32it/s] 87%|████████▋ | 13/15 [00:10<00:01, 1.38it/s] 93%|█████████▎| 14/15 [00:10<00:00, 1.58it/s] 100%|██████████| 15/15 [00:11<00:00, 1.64it/s] 100%|██████████| 15/15 [00:11<00:00, 1.30it/s] 0%| | 0/15 [00:00<?, ?it/s] 0%| | 0/15 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_working_F3' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) print("Length of H2 results: ", len(results_H2_bare)) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi > results_H2 = compute.calcFullResults( results_H2_bare, colormap="jet", plot_omega=plotting_omega, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:125: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 100.0, 'F2_gain': 1.0, 'FOM_out': ['F3.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 40 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_H2[ExampleModels_working]
output
Length of H2 results: 15 Captured stderr call 0%| | 0/15 [00:00<?, ?it/s] 7%|▋ | 1/15 [00:00<00:13, 1.06it/s] 13%|█▎ | 2/15 [00:01<00:11, 1.11it/s] 20%|██ | 3/15 [00:02<00:08, 1.49it/s] 27%|██▋ | 4/15 [00:02<00:06, 1.62it/s] 33%|███▎ | 5/15 [00:03<00:05, 1.90it/s] 40%|████ | 6/15 [00:03<00:04, 1.96it/s] 47%|████▋ | 7/15 [00:04<00:04, 1.61it/s] 53%|█████▎ | 8/15 [00:04<00:04, 1.71it/s] 60%|██████ | 9/15 [00:05<00:03, 1.66it/s] 67%|██████▋ | 10/15 [00:06<00:02, 1.81it/s] 73%|███████▎ | 11/15 [00:07<00:03, 1.15it/s] 80%|████████ | 12/15 [00:08<00:02, 1.33it/s] 87%|████████▋ | 13/15 [00:09<00:01, 1.16it/s] 93%|█████████▎| 14/15 [00:09<00:00, 1.19it/s] 100%|██████████| 15/15 [00:10<00:00, 1.31it/s] 100%|██████████| 15/15 [00:10<00:00, 1.42it/s] 0%| | 0/15 [00:00<?, ?it/s] 0%| | 0/15 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_working' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_H2(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] control_in = ["U.in"] meas_out = ["T.out"] # currently NO-OP and could be removed sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale elif folder == 'ExampleModels_newFOM_F3': params["F1_gain"] = np.geomspace(1e-0, 1e6, 30) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(1e2, 1e6, 15) * 1/FBNS_scale #params["F1_gain"] = np.geomspace(1e2, 5e7, 30) * 1/FBNS_scale results_H2_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, solver="LQG", plant_orig=sysB.orig_plant, ) print("Length of H2 results: ", len(results_H2_bare)) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi > results_H2 = compute.calcFullResults( results_H2_bare, colormap="jet", plot_omega=plotting_omega, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:125: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 100.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 42 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeError
- T_calc_HiB(folder)[source]¶
This is a pytest needing documentation
code
1@pytest.mark.parametrize( 2 'folder', 3 [ 4 #'ExampleModels_rescale', 5 'ExampleModels', 6 'ExampleModels_working', 7 'ExampleModels_working_F3', 8 'ExampleModels_newFOM', 9 'ExampleModels_newFOM_F3', 10 'ExampleModels_DARMFOM', 11 ] 12) 13def T_calc_HiB(folder): 14 sysB = get_systemB(folder = folder) 15 io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function 16 17 if '_F3' in folder: 18 FOM_out = ["F3.out", "F2.out"] 19 else: 20 FOM_out = ["FBNS.out", "F2.out"] 21 wn_in = ["S.in", "O.in"] 22 Zinf = ["Zinf.in"] 23 control_in = ["U.in"] 24 meas_out = ["T.out"] 25 26 sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) 27 sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) 28 29 # Scale the DARM output 30 if 'DARM.out' in sysB.sys.outputs.keys(): 31 print('scaling DARM') 32 DARM_scale_factor = strain2m * SNR_intg_factor 33 sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) 34 35 params = {} 36 if folder == 'ExampleModels': 37 params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 38 # elif folder == 'ExampleModels_newFOM_F3': 39 # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale 40 else: 41 params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale 42 #params["F1_gain"] = np.array([0.09146101038546522]) 43 44 params["igsq_capture"] = [ 45 1e-4, # gain-100 limit 46 1.8e-2, # 1 deg, around gain-10 47 1e-1, # 6 deg 48 0.20, # 11.5 deg 49 0.3, # 17 deg 50 0.5, # 30 deg 51 0.7653668647301797, # 45 deg 52 0.85, # 50.0 deg 53 0.90, # 53.5 deg 54 0.95, # 56.5 deg 55 # above this it gets very hairy 56 # these are 10 solutions 57 ] 58 59 # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) 60 # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) 61 62 plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi 63 results_Hib_bare = compute.calcOpt( 64 sysB.sys, 65 control_in, 66 wn_in, 67 meas_out, 68 FOM_out, 69 params, 70 Zinf=Zinf, 71 solver="HB", 72 plant_orig=sysB.orig_plant, 73 BH_solver = BH1solverset, 74 debug_mode=True, 75 ) 76 77 print("Calculating Full Results Now:") 78 results_Hib = compute.calcFullResults( 79 results_Hib_bare, 80 colormap="RdYlGn", 81 plot_omega=plotting_omega, 82 color_param="igsq", 83 label=False, 84 io_scales = io_scales, 85 ) 86 87 ofile = "results_Hib_ADY.pkl" 88 tfile = tjoin(ofile) 89 buzzutil.save_results(results_Hib, tfile) 90 91 ffile = fjoin(folder, ofile) 92 buzzutil.save_results(results_Hib, ffile) 93 94 # TODO, should also check if the data is identical and warn that it should be copied 95 # copy to the data directory if it is missing 96 dfile = fjoin(folder, ofile) 97 # should not save into the root folder for parametrized test - Lee 98 # if not os.path.exists(ofile): 99 # import shutil 100 # shutil.copy(tfile, ofile) 101 102 print("Now running plot test") 103 T_plot_HiB(folder=folder, dfile=tfile)
pytest information
This code is wrapped in a pytest function using conventions detailed in pytest_conventions. The full name of this test, as known by the documentation, is:
test.ASC_SOLVER.test_solver_ADY.T_calc_HiBThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_calc_HiB[ExampleModels_newFOM]
output
LPL [] MPL [] eq37 Before S: 7869.951747145676 eq37 S: 4.3374092114005687e-07 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Reset #1, asq_eff=1.2e+00, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.7e+00, igsq=0.85 Reset #2, asq_eff=1.3e+00, igsq=0.85 Reset #3, asq_eff=1.2e+00, igsq=0.85 Reset #4, asq_eff=1.2e+00, igsq=0.85 Reset #5, asq_eff=1.1e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #6, asq_eff=1.1e+00, igsq=0.85 Reset #7, asq_eff=1.1e+00, igsq=0.85 Reset #8, asq_eff=1.1e+00, igsq=0.85 Reset #9, asq_eff=1.1e+00, igsq=0.85 Reset #10, asq_eff=1.1e+00, igsq=0.85 Reset #11, asq_eff=1.1e+00, igsq=0.85 Reset #12, asq_eff=1.1e+00, igsq=0.85 Reset #13, asq_eff=1.1e+00, igsq=0.85 Reset #14, asq_eff=1.1e+00, igsq=0.85 Reset #15, asq_eff=1.1e+00, igsq=0.85 Reset #16, asq_eff=1.1e+00, igsq=0.85 Reset #17, asq_eff=1.1e+00, igsq=0.85 Reset #18, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #19, asq_eff=1.1e+00, igsq=0.85 Reset #20, asq_eff=1.1e+00, igsq=0.85 Reset #21, asq_eff=1.1e+00, igsq=0.85 Reset #22, asq_eff=1.1e+00, igsq=0.85 Reset #23, asq_eff=1.1e+00, igsq=0.85 Reset #24, asq_eff=1.1e+00, igsq=0.85 Reset #25, asq_eff=1.1e+00, igsq=0.85 Reset #26, asq_eff=1.1e+00, igsq=0.85 Reset #27, asq_eff=1.1e+00, igsq=0.85 Reset #28, asq_eff=1.1e+00, igsq=0.85 Reset #29, asq_eff=1.1e+00, igsq=0.85 Reset #30, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #31, asq_eff=1.1e+00, igsq=0.85 Reset #32, asq_eff=1.1e+00, igsq=0.85 Reset #33, asq_eff=1.1e+00, igsq=0.85 Reset #34, asq_eff=1.1e+00, igsq=0.85 Reset #35, asq_eff=1.1e+00, igsq=0.85 Reset #36, asq_eff=1.1e+00, igsq=0.85 Reset #37, asq_eff=1.1e+00, igsq=0.85 Reset #38, asq_eff=1.1e+00, igsq=0.85 Reset #39, asq_eff=1.1e+00, igsq=0.85 Reset #40, asq_eff=1.1e+00, igsq=0.85 Reset #41, asq_eff=1.1e+00, igsq=0.85 Reset #42, asq_eff=1.1e+00, igsq=0.85 Reset #43, asq_eff=1.1e+00, igsq=0.85 Reset #44, asq_eff=1.1e+00, igsq=0.85 Reset #45, asq_eff=1.1e+00, igsq=0.85 Reset #46, asq_eff=1.1e+00, igsq=0.85 Reset #47, asq_eff=1.1e+00, igsq=0.85 Reset #48, asq_eff=1.1e+00, igsq=0.85 Reset #49, asq_eff=1.1e+00, igsq=0.85 Reset #50, asq_eff=1.1e+00, igsq=0.85 Reset #51, asq_eff=1.1e+00, igsq=0.85 Reset #52, asq_eff=1.1e+00, igsq=0.85 Reset #53, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #54, asq_eff=1.1e+00, igsq=0.85 Reset #55, asq_eff=1.0e+00, igsq=0.85 Reset #56, asq_eff=1.0e+00, igsq=0.85 Reset #57, asq_eff=1.0e+00, igsq=0.85 Reset #58, asq_eff=1.1e+00, igsq=0.85 Reset #59, asq_eff=1.0e+00, igsq=0.85 Reset #60, asq_eff=1.0e+00, igsq=0.85 Reset #61, asq_eff=1.0e+00, igsq=0.85 Reset #62, asq_eff=1.0e+00, igsq=0.85 Reset #63, asq_eff=1.0e+00, igsq=0.85 Reset #64, asq_eff=1.0e+00, igsq=0.85 Reset #65, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #66, asq_eff=1.0e+00, igsq=0.85 Reset #67, asq_eff=1.0e+00, igsq=0.85 Reset #68, asq_eff=1.0e+00, igsq=0.85 Reset #69, asq_eff=1.0e+00, igsq=0.85 Reset #70, asq_eff=1.0e+00, igsq=0.85 Reset #71, asq_eff=1.0e+00, igsq=0.85 Reset #72, asq_eff=1.0e+00, igsq=0.85 Reset #73, asq_eff=1.0e+00, igsq=0.85 Reset #74, asq_eff=1.0e+00, igsq=0.85 Reset #75, asq_eff=1.0e+00, igsq=0.85 Reset #76, asq_eff=1.0e+00, igsq=0.85 Reset #77, asq_eff=1.0e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=1.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=6.5e+00, igsq=0.9 Reset #2, asq_eff=6.0e+00, igsq=0.9 Reset #3, asq_eff=5.7e+00, igsq=0.9 Reset #4, asq_eff=5.4e+00, igsq=0.9 Reset #5, asq_eff=5.1e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=5.08e+00, N_step=116 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=2.5e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.2e+01, igsq=0.95 Reset #5, asq_eff=2.1e+01, igsq=0.95 Reset #6, asq_eff=2.1e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.09e+01, N_step=113 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 LPL [] MPL [] eq37 Before S: 37632.250915137505 eq37 S: 1.1332189539189923e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=3.3e+00, igsq=0.85 Reset #2, asq_eff=3.0e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=3.02e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=9.9e+00, igsq=0.9 Reset #3, asq_eff=9.5e+00, igsq=0.9 Reset #4, asq_eff=8.9e+00, igsq=0.9 Reset #5, asq_eff=8.7e+00, igsq=0.9 Reset #6, asq_eff=8.7e+00, igsq=0.9 Reset #7, asq_eff=8.7e+00, igsq=0.9 Reset #8, asq_eff=8.6e+00, igsq=0.9 Reset #9, asq_eff=8.7e+00, igsq=0.9 Reset #10, asq_eff=8.6e+00, igsq=0.9 Reset #11, asq_eff=8.7e+00, igsq=0.9 Reset #12, asq_eff=8.6e+00, igsq=0.9 Reset #13, asq_eff=8.7e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #14, asq_eff=8.6e+00, igsq=0.9 Reset #15, asq_eff=8.5e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #16, asq_eff=8.6e+00, igsq=0.9 Reset #17, asq_eff=8.5e+00, igsq=0.9 Reset #18, asq_eff=8.6e+00, igsq=0.9 Reset #19, asq_eff=8.5e+00, igsq=0.9 Reset #20, asq_eff=8.6e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=8.57e+00, N_step=153 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.6e+01, igsq=0.95 Reset #4, asq_eff=2.6e+01, igsq=0.95 Reset #5, asq_eff=2.5e+01, igsq=0.95 Reset #6, asq_eff=2.5e+01, igsq=0.95 Reset #7, asq_eff=2.5e+01, igsq=0.95 Reset #8, asq_eff=2.5e+01, igsq=0.95 Reset #9, asq_eff=2.5e+01, igsq=0.95 Reset #10, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.5e+01, igsq=0.95 Reset #12, asq_eff=2.5e+01, igsq=0.95 Reset #13, asq_eff=2.5e+01, igsq=0.95 Reset #14, asq_eff=2.5e+01, igsq=0.95 Reset #15, asq_eff=2.5e+01, igsq=0.95 Reset #16, asq_eff=2.5e+01, igsq=0.95 Non-optimal solve at igsq=9.50e-01 and asq=2.48e+01, N_step=138 K_usable is not stable Results list length: 8 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 K_usable is not stable Results list length: 13 LPL [] MPL [] eq37 Before S: 179948.57772067082 eq37 S: 2.925877955560994e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=6.5e+00, igsq=0.0001 Reset #2, asq_eff=7.1e+00, igsq=0.0001 Reset #3, asq_eff=4.8e+00, igsq=0.0001 Reset #4, asq_eff=4.7e+00, igsq=0.0001 Reset #5, asq_eff=4.8e+00, igsq=0.0001 Reset #6, asq_eff=4.7e+00, igsq=0.0001 Reset #7, asq_eff=4.8e+00, igsq=0.0001 Reset #8, asq_eff=4.7e+00, igsq=0.0001 Steps remaining: 77, asq_eff=4.6e+00, igsq=0.0001 Reset #9, asq_eff=4.8e+00, igsq=0.0001 Reset #10, asq_eff=4.6e+00, igsq=0.0001 Reset #11, asq_eff=4.6e+00, igsq=0.0001 Reset #12, asq_eff=4.5e+00, igsq=0.0001 Reset #13, asq_eff=4.5e+00, igsq=0.0001 Reset #14, asq_eff=4.5e+00, igsq=0.0001 Reset #15, asq_eff=4.5e+00, igsq=0.0001 Reset #16, asq_eff=4.5e+00, igsq=0.0001 Steps remaining: 72, asq_eff=4.2e+00, igsq=0.0001 Reset #17, asq_eff=4.2e+00, igsq=0.0001 Reset #18, asq_eff=4.3e+00, igsq=0.0001 Reset #19, asq_eff=4.3e+00, igsq=0.0001 Reset #20, asq_eff=4.3e+00, igsq=0.0001 Reset #21, asq_eff=4.2e+00, igsq=0.0001 Reset #22, asq_eff=4.3e+00, igsq=0.0001 Reset #23, asq_eff=3.5e+00, igsq=0.0001 Steps remaining: 62, asq_eff=3.4e+00, igsq=0.0001 Reset #24, asq_eff=3.4e+00, igsq=0.0001 Reset #25, asq_eff=3.5e+00, igsq=0.0001 Reset #26, asq_eff=3.4e+00, igsq=0.0001 Reset #27, asq_eff=3.5e+00, igsq=0.0001 Reset #28, asq_eff=3.4e+00, igsq=0.0001 Reset #29, asq_eff=3.2e+00, igsq=0.0001 Reset #30, asq_eff=3.1e+00, igsq=0.0001 Reset #31, asq_eff=3.1e+00, igsq=0.0001 Reset #32, asq_eff=3.1e+00, igsq=0.0001 Reset #33, asq_eff=3.1e+00, igsq=0.0001 Reset #34, asq_eff=3.1e+00, igsq=0.0001 Reset #35, asq_eff=3.1e+00, igsq=0.0001 Reset #36, asq_eff=3.2e+00, igsq=0.0001 Reset #37, asq_eff=3.2e+00, igsq=0.0001 Reset #38, asq_eff=3.2e+00, igsq=0.0001 Reset #39, asq_eff=3.3e+00, igsq=0.0001 Steps remaining: 55, asq_eff=3.0e+00, igsq=0.0001 Reset #40, asq_eff=3.1e+00, igsq=0.0001 Reset #41, asq_eff=3.0e+00, igsq=0.0001 Reset #42, asq_eff=3.1e+00, igsq=0.0001 Reset #43, asq_eff=3.1e+00, igsq=0.0001 Reset #44, asq_eff=3.1e+00, igsq=0.0001 Reset #45, asq_eff=3.1e+00, igsq=0.0001 Reset #46, asq_eff=3.1e+00, igsq=0.0001 Reset #47, asq_eff=3.1e+00, igsq=0.0001 Reset #48, asq_eff=3.2e+00, igsq=0.0001 Reset #49, asq_eff=3.2e+00, igsq=0.0001 Steps remaining: 58, asq_eff=3.1e+00, igsq=0.0001 Reset #50, asq_eff=3.2e+00, igsq=0.0001 Reset #51, asq_eff=2.8e+00, igsq=0.0001 Reset #52, asq_eff=2.7e+00, igsq=0.0001 Reset #53, asq_eff=2.7e+00, igsq=0.0001 Reset #54, asq_eff=2.7e+00, igsq=0.0001 Reset #55, asq_eff=2.7e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=2.63e+00, N_step=302 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.4e+00, igsq=0.85 Reset #4, asq_eff=4.3e+00, igsq=0.85 Reset #5, asq_eff=4.3e+00, igsq=0.85 Reset #6, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.25e+00, N_step=118 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=5.0e+01, igsq=0.9 Reset #2, asq_eff=2.8e+01, igsq=0.9 Reset #3, asq_eff=2.2e+01, igsq=0.9 Reset #4, asq_eff=2.3e+01, igsq=0.9 Steps remaining: 130, asq_eff=1.6e+01, igsq=0.9 Reset #5, asq_eff=1.4e+01, igsq=0.9 Reset #6, asq_eff=1.3e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.34e+01, N_step=138 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.3e+01, igsq=0.95 Reset #3, asq_eff=2.9e+01, igsq=0.95 Reset #4, asq_eff=2.7e+01, igsq=0.95 Reset #5, asq_eff=2.6e+01, igsq=0.95 Reset #6, asq_eff=2.6e+01, igsq=0.95 Reset #7, asq_eff=2.6e+01, igsq=0.95 Reset #8, asq_eff=2.6e+01, igsq=0.95 Reset #9, asq_eff=2.6e+01, igsq=0.95 Reset #10, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.6e+01, igsq=0.95 Reset #12, asq_eff=2.6e+01, igsq=0.95 Reset #13, asq_eff=2.6e+01, igsq=0.95 Reset #14, asq_eff=2.6e+01, igsq=0.95 Reset #15, asq_eff=2.6e+01, igsq=0.95 Reset #16, asq_eff=2.6e+01, igsq=0.95 Reset #17, asq_eff=2.6e+01, igsq=0.95 Reset #18, asq_eff=2.6e+01, igsq=0.95 Reset #19, asq_eff=2.6e+01, igsq=0.95 Reset #20, asq_eff=2.6e+01, igsq=0.95 Reset #21, asq_eff=2.6e+01, igsq=0.95 Reset #22, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #23, asq_eff=2.6e+01, igsq=0.95 Reset #24, asq_eff=2.6e+01, igsq=0.95 Reset #25, asq_eff=2.6e+01, igsq=0.95 Reset #26, asq_eff=2.6e+01, igsq=0.95 Reset #27, asq_eff=2.6e+01, igsq=0.95 Reset #28, asq_eff=2.6e+01, igsq=0.95 Reset #29, asq_eff=2.6e+01, igsq=0.95 Reset #30, asq_eff=2.6e+01, igsq=0.95 Reset #31, asq_eff=2.6e+01, igsq=0.95 Reset #32, asq_eff=2.6e+01, igsq=0.95 Reset #33, asq_eff=2.6e+01, igsq=0.95 Reset #34, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #35, asq_eff=2.6e+01, igsq=0.95 Reset #36, asq_eff=2.6e+01, igsq=0.95 Reset #37, asq_eff=2.6e+01, igsq=0.95 Reset #38, asq_eff=2.6e+01, igsq=0.95 Reset #39, asq_eff=2.6e+01, igsq=0.95 Reset #40, asq_eff=2.6e+01, igsq=0.95 Reset #41, asq_eff=2.6e+01, igsq=0.95 Reset #42, asq_eff=2.6e+01, igsq=0.95 Reset #43, asq_eff=2.6e+01, igsq=0.95 Reset #44, asq_eff=2.6e+01, igsq=0.95 Reset #45, asq_eff=2.6e+01, igsq=0.95 Reset #46, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #47, asq_eff=2.6e+01, igsq=0.95 Reset #48, asq_eff=2.6e+01, igsq=0.95 Reset #49, asq_eff=2.6e+01, igsq=0.95 Reset #50, asq_eff=2.6e+01, igsq=0.95 Reset #51, asq_eff=2.6e+01, igsq=0.95 Reset #52, asq_eff=2.6e+01, igsq=0.95 Reset #53, asq_eff=2.6e+01, igsq=0.95 Reset #54, asq_eff=2.6e+01, igsq=0.95 Reset #55, asq_eff=2.6e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.61e+01, N_step=236 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 K_usable is not stable Results list length: 18 K_usable is not stable Results list length: 19 LPL [] MPL [] eq37 Before S: 860472.4238174664 eq37 S: 7.268977307434505e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=8.4e+00, igsq=0.0001 Reset #3, asq_eff=5.2e+00, igsq=0.0001 Reset #4, asq_eff=5.1e+00, igsq=0.0001 Reset #5, asq_eff=4.9e+00, igsq=0.0001 Steps remaining: 78, asq_eff=4.7e+00, igsq=0.0001 Reset #6, asq_eff=4.6e+00, igsq=0.0001 Reset #7, asq_eff=4.7e+00, igsq=0.0001 Reset #8, asq_eff=4.6e+00, igsq=0.0001 Reset #9, asq_eff=4.6e+00, igsq=0.0001 Reset #10, asq_eff=4.4e+00, igsq=0.0001 Reset #11, asq_eff=4.4e+00, igsq=0.0001 Reset #12, asq_eff=4.4e+00, igsq=0.0001 Reset #13, asq_eff=4.3e+00, igsq=0.0001 Reset #14, asq_eff=4.4e+00, igsq=0.0001 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.0001 Reset #15, asq_eff=4.2e+00, igsq=0.0001 Reset #16, asq_eff=4.3e+00, igsq=0.0001 Reset #17, asq_eff=4.3e+00, igsq=0.0001 Reset #18, asq_eff=4.2e+00, igsq=0.0001 Reset #19, asq_eff=4.2e+00, igsq=0.0001 Reset #20, asq_eff=4.3e+00, igsq=0.0001 Reset #21, asq_eff=4.1e+00, igsq=0.0001 Reset #22, asq_eff=4.0e+00, igsq=0.0001 Reset #23, asq_eff=4.1e+00, igsq=0.0001 Reset #24, asq_eff=4.1e+00, igsq=0.0001 Reset #25, asq_eff=4.2e+00, igsq=0.0001 Reset #26, asq_eff=4.1e+00, igsq=0.0001 Reset #27, asq_eff=4.1e+00, igsq=0.0001 Reset #28, asq_eff=4.1e+00, igsq=0.0001 Reset #29, asq_eff=4.1e+00, igsq=0.0001 Reset #30, asq_eff=4.0e+00, igsq=0.0001 Steps remaining: 65, asq_eff=3.7e+00, igsq=0.0001 Reset #31, asq_eff=3.8e+00, igsq=0.0001 Reset #32, asq_eff=3.8e+00, igsq=0.0001 Reset #33, asq_eff=3.7e+00, igsq=0.0001 Reset #34, asq_eff=3.5e+00, igsq=0.0001 Reset #35, asq_eff=3.3e+00, igsq=0.0001 Reset #36, asq_eff=3.4e+00, igsq=0.0001 Reset #37, asq_eff=3.3e+00, igsq=0.0001 Steps remaining: 60, asq_eff=3.3e+00, igsq=0.0001 Reset #38, asq_eff=3.4e+00, igsq=0.0001 Reset #39, asq_eff=3.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=3.35e+00, N_step=249 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.8e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #8, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #9, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #10, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #11, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #12, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #13, asq_eff=1.0e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.03e+00, N_step=143 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.8e+01, igsq=0.85 Reset #2, asq_eff=1.4e+01, igsq=0.85 Reset #3, asq_eff=1.3e+01, igsq=0.85 Reset #4, asq_eff=1.3e+01, igsq=0.85 Reset #5, asq_eff=1.2e+01, igsq=0.85 Reset #6, asq_eff=1.2e+01, igsq=0.85 Reset #7, asq_eff=1.2e+01, igsq=0.85 Reset #8, asq_eff=1.2e+01, igsq=0.85 Steps remaining: 122, asq_eff=1.1e+01, igsq=0.85 Reset #9, asq_eff=8.2e+00, igsq=0.85 Reset #10, asq_eff=7.9e+00, igsq=0.85 Reset #11, asq_eff=7.3e+00, igsq=0.85 Steps remaining: 99, asq_eff=7.1e+00, igsq=0.85 Reset #12, asq_eff=5.5e+00, igsq=0.85 Reset #13, asq_eff=4.8e+00, igsq=0.85 Reset #14, asq_eff=4.7e+00, igsq=0.85 Steps remaining: 77, asq_eff=4.6e+00, igsq=0.85 Reset #15, asq_eff=4.6e+00, igsq=0.85 Reset #16, asq_eff=4.7e+00, igsq=0.85 Reset #17, asq_eff=4.6e+00, igsq=0.85 Reset #18, asq_eff=4.7e+00, igsq=0.85 Reset #19, asq_eff=4.6e+00, igsq=0.85 Reset #20, asq_eff=4.7e+00, igsq=0.85 Reset #21, asq_eff=4.7e+00, igsq=0.85 Reset #22, asq_eff=4.7e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.65e+00, N_step=204 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=5.0e+01, igsq=0.9 Reset #2, asq_eff=5.4e+01, igsq=0.9 Reset #3, asq_eff=1.1e+01, igsq=0.9 Reset #4, asq_eff=1.1e+01, igsq=0.9 Reset #5, asq_eff=1.0e+01, igsq=0.9 Reset #6, asq_eff=1.1e+01, igsq=0.9 Reset #7, asq_eff=1.0e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.05e+01, N_step=130 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.2e+01, igsq=0.95 Reset #6, asq_eff=2.2e+01, igsq=0.95 Reset #7, asq_eff=2.2e+01, igsq=0.95 Reset #8, asq_eff=2.2e+01, igsq=0.95 Reset #9, asq_eff=2.2e+01, igsq=0.95 Reset #10, asq_eff=2.2e+01, igsq=0.95 Reset #11, asq_eff=2.2e+01, igsq=0.95 Reset #12, asq_eff=2.2e+01, igsq=0.95 Reset #13, asq_eff=2.2e+01, igsq=0.95 Reset #14, asq_eff=2.2e+01, igsq=0.95 Reset #15, asq_eff=2.2e+01, igsq=0.95 Reset #16, asq_eff=2.2e+01, igsq=0.95 Reset #17, asq_eff=2.2e+01, igsq=0.95 Reset #18, asq_eff=2.2e+01, igsq=0.95 Reset #19, asq_eff=2.2e+01, igsq=0.95 Reset #20, asq_eff=2.2e+01, igsq=0.95 Reset #21, asq_eff=2.2e+01, igsq=0.95 Reset #22, asq_eff=2.2e+01, igsq=0.95 Reset #23, asq_eff=2.2e+01, igsq=0.95 Reset #24, asq_eff=2.2e+01, igsq=0.95 Reset #25, asq_eff=2.2e+01, igsq=0.95 Reset #26, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.18e+01, N_step=165 K_usable is not stable Results list length: 20 K_usable is not stable Results list length: 21 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 LPL [] MPL [] eq37 Before S: 4114578.6066810265 eq37 S: 1.7045282641715127e-05 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=9.1e+00, igsq=0.0001 Reset #2, asq_eff=6.0e+00, igsq=0.0001 Reset #3, asq_eff=5.7e+00, igsq=0.0001 Reset #4, asq_eff=5.6e+00, igsq=0.0001 Reset #5, asq_eff=5.4e+00, igsq=0.0001 Reset #6, asq_eff=5.4e+00, igsq=0.0001 Reset #7, asq_eff=5.3e+00, igsq=0.0001 Steps remaining: 83, asq_eff=5.2e+00, igsq=0.0001 Reset #8, asq_eff=5.2e+00, igsq=0.0001 Reset #9, asq_eff=5.2e+00, igsq=0.0001 Reset #10, asq_eff=5.1e+00, igsq=0.0001 Reset #11, asq_eff=4.9e+00, igsq=0.0001 Reset #12, asq_eff=4.9e+00, igsq=0.0001 Reset #13, asq_eff=4.9e+00, igsq=0.0001 Reset #14, asq_eff=4.8e+00, igsq=0.0001 Reset #15, asq_eff=4.8e+00, igsq=0.0001 Reset #16, asq_eff=4.7e+00, igsq=0.0001 Reset #17, asq_eff=4.6e+00, igsq=0.0001 Reset #18, asq_eff=4.4e+00, igsq=0.0001 Reset #19, asq_eff=4.4e+00, igsq=0.0001 Reset #20, asq_eff=4.5e+00, igsq=0.0001 Reset #21, asq_eff=4.5e+00, igsq=0.0001 Reset #22, asq_eff=4.6e+00, igsq=0.0001 Reset #23, asq_eff=4.6e+00, igsq=0.0001 Reset #24, asq_eff=4.7e+00, igsq=0.0001 Reset #25, asq_eff=4.7e+00, igsq=0.0001 Reset #26, asq_eff=4.8e+00, igsq=0.0001 Reset #27, asq_eff=4.8e+00, igsq=0.0001 Reset #28, asq_eff=4.8e+00, igsq=0.0001 Reset #29, asq_eff=4.8e+00, igsq=0.0001 Reset #30, asq_eff=4.8e+00, igsq=0.0001 Reset #31, asq_eff=4.7e+00, igsq=0.0001 Steps remaining: 75, asq_eff=4.4e+00, igsq=0.0001 Reset #32, asq_eff=4.4e+00, igsq=0.0001 Reset #33, asq_eff=4.4e+00, igsq=0.0001 Reset #34, asq_eff=4.3e+00, igsq=0.0001 Reset #35, asq_eff=4.4e+00, igsq=0.0001 Reset #36, asq_eff=4.4e+00, igsq=0.0001 Reset #37, asq_eff=4.4e+00, igsq=0.0001 Reset #38, asq_eff=4.3e+00, igsq=0.0001 Steps remaining: 73, asq_eff=4.2e+00, igsq=0.0001 Reset #39, asq_eff=4.4e+00, igsq=0.0001 Reset #40, asq_eff=4.4e+00, igsq=0.0001 Reset #41, asq_eff=4.4e+00, igsq=0.0001 Reset #42, asq_eff=4.2e+00, igsq=0.0001 Reset #43, asq_eff=4.3e+00, igsq=0.0001 Reset #44, asq_eff=4.3e+00, igsq=0.0001 Reset #45, asq_eff=4.4e+00, igsq=0.0001 Steps remaining: 72, asq_eff=4.2e+00, igsq=0.0001 Reset #46, asq_eff=4.3e+00, igsq=0.0001 Reset #47, asq_eff=4.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=4.27e+00, N_step=281 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=2.3e+00, igsq=0.2 Reset #2, asq_eff=1.3e+00, igsq=0.2 Reset #3, asq_eff=1.3e+00, igsq=0.2 Reset #4, asq_eff=1.3e+00, igsq=0.2 Reset #5, asq_eff=1.3e+00, igsq=0.2 Reset #6, asq_eff=1.2e+00, igsq=0.2 Steps remaining: 8, asq_eff=1.2e+00, igsq=0.2 Reset #7, asq_eff=1.1e+00, igsq=0.2 Reset #8, asq_eff=1.1e+00, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=1.12e+00, N_step=132 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Non-optimal solve at igsq=5.00e-01 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=6.5e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.5e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.3e+00, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=7.0e+01, igsq=0.85 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.85 Reset #2, asq_eff=7.6e+01, igsq=0.85 Reset #3, asq_eff=6.7e+01, igsq=0.85 Reset #4, asq_eff=3.8e+01, igsq=0.85 Reset #5, asq_eff=3.4e+01, igsq=0.85 Steps remaining: 177, asq_eff=3.3e+01, igsq=0.85 Reset #6, asq_eff=2.9e+01, igsq=0.85 Reset #7, asq_eff=2.6e+01, igsq=0.85 Steps remaining: 152, asq_eff=2.0e+01, igsq=0.85 Reset #8, asq_eff=2.1e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=2.08e+01, N_step=156 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.80e+01, N_step=98 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=2.7e+02, igsq=0.95 Steps remaining: 28, asq_eff=1.2e+02, igsq=0.95 Reset #2, asq_eff=1.3e+02, igsq=0.95 Reset #3, asq_eff=9.5e+01, igsq=0.95 Reset #4, asq_eff=9.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=9.26e+01, N_step=106 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 LPL [] MPL [] eq37 Before S: 19674946.39661376 eq37 S: 0.00014001149358547048 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=3.6e+01, igsq=0.0001 Reset #2, asq_eff=3.9e+01, igsq=0.0001 Reset #3, asq_eff=1.2e+01, igsq=0.0001 Reset #4, asq_eff=1.3e+01, igsq=0.0001 Reset #5, asq_eff=1.2e+01, igsq=0.0001 Reset #6, asq_eff=1.2e+01, igsq=0.0001 Reset #7, asq_eff=1.2e+01, igsq=0.0001 Reset #8, asq_eff=1.2e+01, igsq=0.0001 Reset #9, asq_eff=1.2e+01, igsq=0.0001 Reset #10, asq_eff=1.3e+01, igsq=0.0001 Reset #11, asq_eff=1.3e+01, igsq=0.0001 Reset #12, asq_eff=1.2e+01, igsq=0.0001 Reset #13, asq_eff=1.2e+01, igsq=0.0001 Reset #14, asq_eff=1.2e+01, igsq=0.0001 Steps remaining: 121, asq_eff=1.1e+01, igsq=0.0001 Reset #15, asq_eff=1.1e+01, igsq=0.0001 Reset #16, asq_eff=1.0e+01, igsq=0.0001 Reset #17, asq_eff=1.0e+01, igsq=0.0001 Reset #18, asq_eff=9.1e+00, igsq=0.0001 Reset #19, asq_eff=8.9e+00, igsq=0.0001 Reset #20, asq_eff=8.8e+00, igsq=0.0001 Reset #21, asq_eff=8.7e+00, igsq=0.0001 Reset #22, asq_eff=8.8e+00, igsq=0.0001 Reset #23, asq_eff=8.9e+00, igsq=0.0001 Reset #24, asq_eff=9.0e+00, igsq=0.0001 Reset #25, asq_eff=8.7e+00, igsq=0.0001 Reset #26, asq_eff=8.6e+00, igsq=0.0001 Reset #27, asq_eff=8.7e+00, igsq=0.0001 Reset #28, asq_eff=8.8e+00, igsq=0.0001 Reset #29, asq_eff=8.9e+00, igsq=0.0001 Reset #30, asq_eff=9.0e+00, igsq=0.0001 Reset #31, asq_eff=9.0e+00, igsq=0.0001 Reset #32, asq_eff=9.0e+00, igsq=0.0001 Reset #33, asq_eff=9.0e+00, igsq=0.0001 Reset #34, asq_eff=9.0e+00, igsq=0.0001 Reset #35, asq_eff=8.2e+00, igsq=0.0001 Reset #36, asq_eff=8.1e+00, igsq=0.0001 Reset #37, asq_eff=7.9e+00, igsq=0.0001 Reset #38, asq_eff=7.8e+00, igsq=0.0001 Reset #39, asq_eff=7.4e+00, igsq=0.0001 Reset #40, asq_eff=6.8e+00, igsq=0.0001 Reset #41, asq_eff=6.9e+00, igsq=0.0001 Reset #42, asq_eff=6.7e+00, igsq=0.0001 Reset #43, asq_eff=6.7e+00, igsq=0.0001 Steps remaining: 94, asq_eff=6.5e+00, igsq=0.0001 Reset #44, asq_eff=6.7e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=6.65e+00, N_step=276 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Reset #1, asq_eff=2.3e+00, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=2.3e+00, igsq=0.2 Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=111 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Reset #1, asq_eff=2.3e+00, igsq=0.3 Reset #2, asq_eff=1.8e+00, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Reset #1, asq_eff=1.7e+00, igsq=0.5 Reset #2, asq_eff=1.3e+00, igsq=0.5 Reset #3, asq_eff=1.2e+00, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Reset #1, asq_eff=7.0e+01, igsq=0.7653668647301797 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.7653668647301797 Reset #2, asq_eff=2.8e+01, igsq=0.7653668647301797 Reset #3, asq_eff=7.4e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=7.38e+00, N_step=120 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=1.4e+02, igsq=0.85 Steps remaining: 26, asq_eff=8.3e+01, igsq=0.85 Reset #2, asq_eff=2.0e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.96e+01, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=9.9e+01, igsq=0.9 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.9 Reset #2, asq_eff=9.1e+01, igsq=0.9 Reset #3, asq_eff=7.3e+01, igsq=0.9 Reset #4, asq_eff=7.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=7.17e+01, N_step=104 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.9e+01, igsq=0.95 Reset #3, asq_eff=3.7e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=3.71e+01, N_step=101 K_usable is not stable Results list length: 28 K_usable is not stable Results list length: 29 K_usable is not stable Results list length: 30 K_usable is not stable Results list length: 31 Calculating Full Results Now: Captured stderr call 0%| | 0/6 [00:00<?, ?it/s] 17%|█▋ | 1/6 [08:44<43:40, 524.05s/it] 33%|███▎ | 2/6 [16:26<32:31, 487.75s/it] 50%|█████ | 3/6 [26:06<26:29, 529.95s/it] 67%|██████▋ | 4/6 [36:21<18:46, 563.34s/it] 83%|████████▎ | 5/6 [46:10<09:32, 572.81s/it] 100%|██████████| 6/6 [55:22<00:00, 565.60s/it] 100%|██████████| 6/6 [55:22<00:00, 553.71s/it] 0%| | 0/31 [00:00<?, ?it/s] 0%| | 0/31 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_newFOM' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 40.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 40 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_HiB[ExampleModels_newFOM_F3]
output
LPL [] MPL [] eq37 Before S: 7869.938650147261 eq37 S: 1.1305166014655562e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.7e+00, igsq=0.85 Reset #2, asq_eff=1.3e+00, igsq=0.85 Reset #3, asq_eff=1.2e+00, igsq=0.85 Reset #4, asq_eff=1.2e+00, igsq=0.85 Reset #5, asq_eff=1.1e+00, igsq=0.85 Reset #6, asq_eff=1.1e+00, igsq=0.85 Reset #7, asq_eff=1.1e+00, igsq=0.85 Reset #8, asq_eff=1.1e+00, igsq=0.85 Reset #9, asq_eff=1.1e+00, igsq=0.85 Reset #10, asq_eff=1.1e+00, igsq=0.85 Reset #11, asq_eff=1.1e+00, igsq=0.85 Reset #12, asq_eff=1.1e+00, igsq=0.85 Reset #13, asq_eff=1.1e+00, igsq=0.85 Reset #14, asq_eff=1.1e+00, igsq=0.85 Reset #15, asq_eff=1.1e+00, igsq=0.85 Reset #16, asq_eff=1.1e+00, igsq=0.85 Reset #17, asq_eff=1.1e+00, igsq=0.85 Reset #18, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #19, asq_eff=1.1e+00, igsq=0.85 Reset #20, asq_eff=1.1e+00, igsq=0.85 Reset #21, asq_eff=1.1e+00, igsq=0.85 Reset #22, asq_eff=1.1e+00, igsq=0.85 Reset #23, asq_eff=1.1e+00, igsq=0.85 Reset #24, asq_eff=1.1e+00, igsq=0.85 Reset #25, asq_eff=1.1e+00, igsq=0.85 Reset #26, asq_eff=1.1e+00, igsq=0.85 Reset #27, asq_eff=1.1e+00, igsq=0.85 Reset #28, asq_eff=1.1e+00, igsq=0.85 Reset #29, asq_eff=1.1e+00, igsq=0.85 Reset #30, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #31, asq_eff=1.1e+00, igsq=0.85 Reset #32, asq_eff=1.1e+00, igsq=0.85 Reset #33, asq_eff=1.1e+00, igsq=0.85 Reset #34, asq_eff=1.1e+00, igsq=0.85 Reset #35, asq_eff=1.1e+00, igsq=0.85 Reset #36, asq_eff=1.1e+00, igsq=0.85 Reset #37, asq_eff=1.1e+00, igsq=0.85 Reset #38, asq_eff=1.1e+00, igsq=0.85 Reset #39, asq_eff=1.1e+00, igsq=0.85 Reset #40, asq_eff=1.1e+00, igsq=0.85 Reset #41, asq_eff=1.1e+00, igsq=0.85 Reset #42, asq_eff=1.1e+00, igsq=0.85 Reset #43, asq_eff=1.1e+00, igsq=0.85 Reset #44, asq_eff=1.1e+00, igsq=0.85 Reset #45, asq_eff=1.1e+00, igsq=0.85 Reset #46, asq_eff=1.1e+00, igsq=0.85 Reset #47, asq_eff=1.1e+00, igsq=0.85 Reset #48, asq_eff=1.1e+00, igsq=0.85 Reset #49, asq_eff=1.1e+00, igsq=0.85 Reset #50, asq_eff=1.1e+00, igsq=0.85 Reset #51, asq_eff=1.1e+00, igsq=0.85 Reset #52, asq_eff=1.1e+00, igsq=0.85 Reset #53, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #54, asq_eff=1.1e+00, igsq=0.85 Reset #55, asq_eff=1.0e+00, igsq=0.85 Reset #56, asq_eff=1.1e+00, igsq=0.85 Reset #57, asq_eff=1.0e+00, igsq=0.85 Reset #58, asq_eff=1.1e+00, igsq=0.85 Reset #59, asq_eff=1.0e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #60, asq_eff=1.1e+00, igsq=0.85 Reset #61, asq_eff=1.0e+00, igsq=0.85 Reset #62, asq_eff=1.1e+00, igsq=0.85 Reset #63, asq_eff=1.0e+00, igsq=0.85 Reset #64, asq_eff=1.0e+00, igsq=0.85 Reset #65, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #66, asq_eff=1.0e+00, igsq=0.85 Reset #67, asq_eff=1.0e+00, igsq=0.85 Reset #68, asq_eff=1.0e+00, igsq=0.85 Reset #69, asq_eff=1.0e+00, igsq=0.85 Reset #70, asq_eff=1.0e+00, igsq=0.85 Reset #71, asq_eff=1.0e+00, igsq=0.85 Reset #72, asq_eff=1.0e+00, igsq=0.85 Reset #73, asq_eff=1.0e+00, igsq=0.85 Reset #74, asq_eff=1.0e+00, igsq=0.85 Reset #75, asq_eff=1.0e+00, igsq=0.85 Reset #76, asq_eff=1.0e+00, igsq=0.85 Reset #77, asq_eff=1.0e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=1.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=6.5e+00, igsq=0.9 Reset #2, asq_eff=6.0e+00, igsq=0.9 Reset #3, asq_eff=5.7e+00, igsq=0.9 Reset #4, asq_eff=5.4e+00, igsq=0.9 Reset #5, asq_eff=5.4e+00, igsq=0.9 Reset #6, asq_eff=5.5e+00, igsq=0.9 Reset #7, asq_eff=5.1e+00, igsq=0.9 Reset #8, asq_eff=5.1e+00, igsq=0.9 Steps remaining: 81, asq_eff=5.0e+00, igsq=0.9 Reset #9, asq_eff=5.1e+00, igsq=0.9 Reset #10, asq_eff=5.0e+00, igsq=0.9 Reset #11, asq_eff=5.0e+00, igsq=0.9 Reset #12, asq_eff=5.1e+00, igsq=0.9 Reset #13, asq_eff=5.0e+00, igsq=0.9 Reset #14, asq_eff=5.0e+00, igsq=0.9 Reset #15, asq_eff=4.9e+00, igsq=0.9 Reset #16, asq_eff=4.9e+00, igsq=0.9 Reset #17, asq_eff=4.9e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #18, asq_eff=4.9e+00, igsq=0.9 Reset #19, asq_eff=4.8e+00, igsq=0.9 Steps remaining: 78, asq_eff=4.7e+00, igsq=0.9 Reset #20, asq_eff=4.9e+00, igsq=0.9 Reset #21, asq_eff=4.8e+00, igsq=0.9 Reset #22, asq_eff=4.9e+00, igsq=0.9 Reset #23, asq_eff=4.8e+00, igsq=0.9 Reset #24, asq_eff=4.9e+00, igsq=0.9 Reset #25, asq_eff=4.8e+00, igsq=0.9 Reset #26, asq_eff=4.9e+00, igsq=0.9 Reset #27, asq_eff=4.7e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=4.72e+00, N_step=175 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=7.0e+01, igsq=0.95 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.1e+01, igsq=0.95 Reset #6, asq_eff=2.1e+01, igsq=0.95 Reset #7, asq_eff=2.1e+01, igsq=0.95 Reset #8, asq_eff=2.1e+01, igsq=0.95 Reset #9, asq_eff=2.1e+01, igsq=0.95 Reset #10, asq_eff=2.1e+01, igsq=0.95 Reset #11, asq_eff=2.1e+01, igsq=0.95 Reset #12, asq_eff=2.1e+01, igsq=0.95 Reset #13, asq_eff=2.1e+01, igsq=0.95 Reset #14, asq_eff=2.1e+01, igsq=0.95 Reset #15, asq_eff=2.1e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.07e+01, N_step=140 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 LPL [] MPL [] eq37 Before S: 37632.177506541106 eq37 S: 2.618565156886644e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=2.1e+00, igsq=0.0001 Reset #3, asq_eff=1.6e+00, igsq=0.0001 Reset #4, asq_eff=1.6e+00, igsq=0.0001 Steps remaining: 20, asq_eff=1.5e+00, igsq=0.0001 Reset #5, asq_eff=1.6e+00, igsq=0.0001 Reset #6, asq_eff=1.4e+00, igsq=0.0001 Reset #7, asq_eff=1.3e+00, igsq=0.0001 Reset #8, asq_eff=1.4e+00, igsq=0.0001 Reset #9, asq_eff=1.3e+00, igsq=0.0001 Reset #10, asq_eff=1.3e+00, igsq=0.0001 Steps remaining: 10, asq_eff=1.2e+00, igsq=0.0001 Reset #11, asq_eff=1.2e+00, igsq=0.0001 Reset #12, asq_eff=1.2e+00, igsq=0.0001 Reset #13, asq_eff=1.2e+00, igsq=0.0001 Reset #14, asq_eff=1.2e+00, igsq=0.0001 Reset #15, asq_eff=1.2e+00, igsq=0.0001 Reset #16, asq_eff=1.2e+00, igsq=0.0001 Reset #17, asq_eff=1.2e+00, igsq=0.0001 Reset #18, asq_eff=1.2e+00, igsq=0.0001 Reset #19, asq_eff=1.2e+00, igsq=0.0001 Reset #20, asq_eff=1.2e+00, igsq=0.0001 Steps remaining: 10, asq_eff=1.2e+00, igsq=0.0001 Reset #21, asq_eff=1.2e+00, igsq=0.0001 Reset #22, asq_eff=1.2e+00, igsq=0.0001 Reset #23, asq_eff=1.2e+00, igsq=0.0001 Reset #24, asq_eff=1.2e+00, igsq=0.0001 Reset #25, asq_eff=1.2e+00, igsq=0.0001 Reset #26, asq_eff=1.2e+00, igsq=0.0001 Reset #27, asq_eff=1.2e+00, igsq=0.0001 Reset #28, asq_eff=1.2e+00, igsq=0.0001 Reset #29, asq_eff=1.2e+00, igsq=0.0001 Reset #30, asq_eff=1.1e+00, igsq=0.0001 Reset #31, asq_eff=1.1e+00, igsq=0.0001 Reset #32, asq_eff=1.1e+00, igsq=0.0001 Reset #33, asq_eff=1.2e+00, igsq=0.0001 Reset #34, asq_eff=1.2e+00, igsq=0.0001 Reset #35, asq_eff=1.2e+00, igsq=0.0001 Reset #36, asq_eff=1.1e+00, igsq=0.0001 Reset #37, asq_eff=1.1e+00, igsq=0.0001 Steps remaining: 5, asq_eff=1.1e+00, igsq=0.0001 Reset #38, asq_eff=1.1e+00, igsq=0.0001 Reset #39, asq_eff=1.1e+00, igsq=0.0001 Reset #40, asq_eff=1.1e+00, igsq=0.0001 Reset #41, asq_eff=1.1e+00, igsq=0.0001 Reset #42, asq_eff=1.1e+00, igsq=0.0001 Reset #43, asq_eff=1.2e+00, igsq=0.0001 Reset #44, asq_eff=1.2e+00, igsq=0.0001 Reset #45, asq_eff=1.2e+00, igsq=0.0001 Reset #46, asq_eff=1.2e+00, igsq=0.0001 Steps remaining: 7, asq_eff=1.1e+00, igsq=0.0001 Reset #47, asq_eff=1.2e+00, igsq=0.0001 Reset #48, asq_eff=1.1e+00, igsq=0.0001 Reset #49, asq_eff=1.1e+00, igsq=0.0001 Reset #50, asq_eff=1.1e+00, igsq=0.0001 Reset #51, asq_eff=1.1e+00, igsq=0.0001 Reset #52, asq_eff=1.1e+00, igsq=0.0001 Reset #53, asq_eff=1.1e+00, igsq=0.0001 Reset #54, asq_eff=1.0e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=1.01e+00, N_step=304 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=3.3e+00, igsq=0.85 Reset #2, asq_eff=3.0e+00, igsq=0.85 Reset #3, asq_eff=2.9e+00, igsq=0.85 Reset #4, asq_eff=2.8e+00, igsq=0.85 Reset #5, asq_eff=2.7e+00, igsq=0.85 Reset #6, asq_eff=2.7e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Non-optimal solve at igsq=8.50e-01 and asq=2.66e+00, N_step=120 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=9.9e+00, igsq=0.9 Reset #3, asq_eff=9.5e+00, igsq=0.9 Reset #4, asq_eff=8.9e+00, igsq=0.9 Reset #5, asq_eff=8.7e+00, igsq=0.9 Reset #6, asq_eff=8.7e+00, igsq=0.9 Reset #7, asq_eff=8.7e+00, igsq=0.9 Reset #8, asq_eff=8.7e+00, igsq=0.9 Reset #9, asq_eff=8.7e+00, igsq=0.9 Steps remaining: 108, asq_eff=8.5e+00, igsq=0.9 Reset #10, asq_eff=8.6e+00, igsq=0.9 Reset #11, asq_eff=8.7e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=8.65e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.6e+01, igsq=0.95 Reset #4, asq_eff=2.6e+01, igsq=0.95 Reset #5, asq_eff=2.5e+01, igsq=0.95 Reset #6, asq_eff=2.5e+01, igsq=0.95 Reset #7, asq_eff=2.5e+01, igsq=0.95 Reset #8, asq_eff=2.5e+01, igsq=0.95 Reset #9, asq_eff=2.5e+01, igsq=0.95 Reset #10, asq_eff=2.5e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.48e+01, N_step=123 K_usable is not stable Results list length: 8 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 K_usable is not stable Results list length: 13 LPL [] MPL [] eq37 Before S: 179948.13522097064 eq37 S: 3.234085139095645e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=4.6e+00, igsq=0.0001 Reset #2, asq_eff=4.2e+00, igsq=0.0001 Reset #3, asq_eff=4.4e+00, igsq=0.0001 Reset #4, asq_eff=4.5e+00, igsq=0.0001 Reset #5, asq_eff=4.4e+00, igsq=0.0001 Reset #6, asq_eff=3.9e+00, igsq=0.0001 Steps remaining: 67, asq_eff=3.8e+00, igsq=0.0001 Reset #7, asq_eff=3.9e+00, igsq=0.0001 Reset #8, asq_eff=3.5e+00, igsq=0.0001 Reset #9, asq_eff=3.5e+00, igsq=0.0001 Reset #10, asq_eff=3.5e+00, igsq=0.0001 Reset #11, asq_eff=3.4e+00, igsq=0.0001 Reset #12, asq_eff=3.4e+00, igsq=0.0001 Reset #13, asq_eff=3.4e+00, igsq=0.0001 Reset #14, asq_eff=3.4e+00, igsq=0.0001 Steps remaining: 61, asq_eff=3.4e+00, igsq=0.0001 Reset #15, asq_eff=3.4e+00, igsq=0.0001 Reset #16, asq_eff=3.2e+00, igsq=0.0001 Reset #17, asq_eff=3.3e+00, igsq=0.0001 Reset #18, asq_eff=3.3e+00, igsq=0.0001 Reset #19, asq_eff=3.2e+00, igsq=0.0001 Reset #20, asq_eff=3.2e+00, igsq=0.0001 Reset #21, asq_eff=2.9e+00, igsq=0.0001 Reset #22, asq_eff=3.0e+00, igsq=0.0001 Reset #23, asq_eff=3.0e+00, igsq=0.0001 Reset #24, asq_eff=3.0e+00, igsq=0.0001 Reset #25, asq_eff=3.0e+00, igsq=0.0001 Reset #26, asq_eff=3.0e+00, igsq=0.0001 Reset #27, asq_eff=3.0e+00, igsq=0.0001 Reset #28, asq_eff=3.0e+00, igsq=0.0001 Reset #29, asq_eff=2.8e+00, igsq=0.0001 Reset #30, asq_eff=2.8e+00, igsq=0.0001 Reset #31, asq_eff=2.8e+00, igsq=0.0001 Steps remaining: 52, asq_eff=2.8e+00, igsq=0.0001 Reset #32, asq_eff=2.9e+00, igsq=0.0001 Reset #33, asq_eff=2.9e+00, igsq=0.0001 Reset #34, asq_eff=2.9e+00, igsq=0.0001 Reset #35, asq_eff=2.9e+00, igsq=0.0001 Reset #36, asq_eff=2.9e+00, igsq=0.0001 Reset #37, asq_eff=2.8e+00, igsq=0.0001 Reset #38, asq_eff=2.8e+00, igsq=0.0001 Reset #39, asq_eff=2.7e+00, igsq=0.0001 Steps remaining: 50, asq_eff=2.7e+00, igsq=0.0001 Reset #40, asq_eff=2.7e+00, igsq=0.0001 Reset #41, asq_eff=2.6e+00, igsq=0.0001 Reset #42, asq_eff=2.5e+00, igsq=0.0001 Reset #43, asq_eff=2.5e+00, igsq=0.0001 Reset #44, asq_eff=2.5e+00, igsq=0.0001 Reset #45, asq_eff=2.5e+00, igsq=0.0001 Reset #46, asq_eff=2.5e+00, igsq=0.0001 Reset #47, asq_eff=2.5e+00, igsq=0.0001 Steps remaining: 46, asq_eff=2.5e+00, igsq=0.0001 Reset #48, asq_eff=2.4e+00, igsq=0.0001 Reset #49, asq_eff=2.4e+00, igsq=0.0001 Reset #50, asq_eff=2.4e+00, igsq=0.0001 Reset #51, asq_eff=2.5e+00, igsq=0.0001 Reset #52, asq_eff=2.5e+00, igsq=0.0001 Reset #53, asq_eff=2.3e+00, igsq=0.0001 Reset #54, asq_eff=2.3e+00, igsq=0.0001 Reset #55, asq_eff=2.3e+00, igsq=0.0001 Steps remaining: 42, asq_eff=2.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=2.23e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.00e+00, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.4e+00, igsq=0.85 Reset #4, asq_eff=4.3e+00, igsq=0.85 Reset #5, asq_eff=4.3e+00, igsq=0.85 Reset #6, asq_eff=4.2e+00, igsq=0.85 Reset #7, asq_eff=4.3e+00, igsq=0.85 Reset #8, asq_eff=4.2e+00, igsq=0.85 Reset #9, asq_eff=4.3e+00, igsq=0.85 Reset #10, asq_eff=4.2e+00, igsq=0.85 Reset #11, asq_eff=4.3e+00, igsq=0.85 Reset #12, asq_eff=4.2e+00, igsq=0.85 Reset #13, asq_eff=4.2e+00, igsq=0.85 Reset #14, asq_eff=4.2e+00, igsq=0.85 Reset #15, asq_eff=4.3e+00, igsq=0.85 Reset #16, asq_eff=4.2e+00, igsq=0.85 Reset #17, asq_eff=4.2e+00, igsq=0.85 Reset #18, asq_eff=4.2e+00, igsq=0.85 Reset #19, asq_eff=4.2e+00, igsq=0.85 Reset #20, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #21, asq_eff=4.2e+00, igsq=0.85 Reset #22, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #23, asq_eff=4.2e+00, igsq=0.85 Reset #24, asq_eff=4.2e+00, igsq=0.85 Reset #25, asq_eff=4.2e+00, igsq=0.85 Reset #26, asq_eff=4.2e+00, igsq=0.85 Reset #27, asq_eff=4.2e+00, igsq=0.85 Reset #28, asq_eff=4.2e+00, igsq=0.85 Reset #29, asq_eff=4.2e+00, igsq=0.85 Reset #30, asq_eff=4.2e+00, igsq=0.85 Reset #31, asq_eff=4.2e+00, igsq=0.85 Reset #32, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #33, asq_eff=4.2e+00, igsq=0.85 Reset #34, asq_eff=4.2e+00, igsq=0.85 Reset #35, asq_eff=4.2e+00, igsq=0.85 Reset #36, asq_eff=4.2e+00, igsq=0.85 Reset #37, asq_eff=4.2e+00, igsq=0.85 Reset #38, asq_eff=4.2e+00, igsq=0.85 Reset #39, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #40, asq_eff=4.2e+00, igsq=0.85 Reset #41, asq_eff=4.2e+00, igsq=0.85 Reset #42, asq_eff=4.2e+00, igsq=0.85 Reset #43, asq_eff=4.2e+00, igsq=0.85 Reset #44, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #45, asq_eff=4.2e+00, igsq=0.85 Reset #46, asq_eff=4.2e+00, igsq=0.85 Reset #47, asq_eff=4.2e+00, igsq=0.85 Reset #48, asq_eff=4.2e+00, igsq=0.85 Reset #49, asq_eff=4.2e+00, igsq=0.85 Reset #50, asq_eff=4.2e+00, igsq=0.85 Reset #51, asq_eff=4.2e+00, igsq=0.85 Reset #52, asq_eff=4.2e+00, igsq=0.85 Reset #53, asq_eff=4.2e+00, igsq=0.85 Reset #54, asq_eff=4.2e+00, igsq=0.85 Reset #55, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #56, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #57, asq_eff=4.1e+00, igsq=0.85 Reset #58, asq_eff=4.2e+00, igsq=0.85 Reset #59, asq_eff=4.1e+00, igsq=0.85 Reset #60, asq_eff=4.2e+00, igsq=0.85 Reset #61, asq_eff=4.1e+00, igsq=0.85 Reset #62, asq_eff=4.2e+00, igsq=0.85 Reset #63, asq_eff=4.1e+00, igsq=0.85 Reset #64, asq_eff=4.2e+00, igsq=0.85 Reset #65, asq_eff=4.1e+00, igsq=0.85 Reset #66, asq_eff=4.2e+00, igsq=0.85 Reset #67, asq_eff=4.1e+00, igsq=0.85 Reset #68, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #69, asq_eff=4.1e+00, igsq=0.85 Reset #70, asq_eff=4.2e+00, igsq=0.85 Reset #71, asq_eff=4.1e+00, igsq=0.85 Reset #72, asq_eff=4.2e+00, igsq=0.85 Reset #73, asq_eff=4.1e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #74, asq_eff=4.2e+00, igsq=0.85 Reset #75, asq_eff=4.1e+00, igsq=0.85 Reset #76, asq_eff=4.2e+00, igsq=0.85 Reset #77, asq_eff=4.1e+00, igsq=0.85 Reset #78, asq_eff=4.2e+00, igsq=0.85 Reset #79, asq_eff=4.1e+00, igsq=0.85 Reset #80, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=4.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Reset #2, asq_eff=1.7e+01, igsq=0.9 Reset #3, asq_eff=1.3e+01, igsq=0.9 Reset #4, asq_eff=1.3e+01, igsq=0.9 Reset #5, asq_eff=1.2e+01, igsq=0.9 Reset #6, asq_eff=1.1e+01, igsq=0.9 Reset #7, asq_eff=1.1e+01, igsq=0.9 Reset #8, asq_eff=1.1e+01, igsq=0.9 Reset #9, asq_eff=1.1e+01, igsq=0.9 Reset #10, asq_eff=1.1e+01, igsq=0.9 Reset #11, asq_eff=1.1e+01, igsq=0.9 Reset #12, asq_eff=1.1e+01, igsq=0.9 Reset #13, asq_eff=1.1e+01, igsq=0.9 Reset #14, asq_eff=1.1e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.09e+01, N_step=143 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.3e+01, igsq=0.95 Reset #3, asq_eff=2.9e+01, igsq=0.95 Reset #4, asq_eff=2.7e+01, igsq=0.95 Reset #5, asq_eff=2.6e+01, igsq=0.95 Reset #6, asq_eff=2.6e+01, igsq=0.95 Reset #7, asq_eff=2.6e+01, igsq=0.95 Reset #8, asq_eff=2.6e+01, igsq=0.95 Reset #9, asq_eff=2.6e+01, igsq=0.95 Reset #10, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.6e+01, igsq=0.95 Reset #12, asq_eff=2.6e+01, igsq=0.95 Reset #13, asq_eff=2.6e+01, igsq=0.95 Reset #14, asq_eff=2.6e+01, igsq=0.95 Reset #15, asq_eff=2.6e+01, igsq=0.95 Reset #16, asq_eff=2.6e+01, igsq=0.95 Reset #17, asq_eff=2.6e+01, igsq=0.95 Reset #18, asq_eff=2.6e+01, igsq=0.95 Reset #19, asq_eff=2.6e+01, igsq=0.95 Reset #20, asq_eff=2.6e+01, igsq=0.95 Reset #21, asq_eff=2.6e+01, igsq=0.95 Reset #22, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #23, asq_eff=2.6e+01, igsq=0.95 Reset #24, asq_eff=2.6e+01, igsq=0.95 Reset #25, asq_eff=2.6e+01, igsq=0.95 Reset #26, asq_eff=2.6e+01, igsq=0.95 Reset #27, asq_eff=2.6e+01, igsq=0.95 Reset #28, asq_eff=2.6e+01, igsq=0.95 Reset #29, asq_eff=2.6e+01, igsq=0.95 Reset #30, asq_eff=2.6e+01, igsq=0.95 Reset #31, asq_eff=2.6e+01, igsq=0.95 Reset #32, asq_eff=2.6e+01, igsq=0.95 Reset #33, asq_eff=2.6e+01, igsq=0.95 Reset #34, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #35, asq_eff=2.6e+01, igsq=0.95 Reset #36, asq_eff=2.6e+01, igsq=0.95 Reset #37, asq_eff=2.6e+01, igsq=0.95 Reset #38, asq_eff=2.6e+01, igsq=0.95 Reset #39, asq_eff=2.6e+01, igsq=0.95 Reset #40, asq_eff=2.6e+01, igsq=0.95 Reset #41, asq_eff=2.6e+01, igsq=0.95 Reset #42, asq_eff=2.6e+01, igsq=0.95 Reset #43, asq_eff=2.6e+01, igsq=0.95 Reset #44, asq_eff=2.6e+01, igsq=0.95 Reset #45, asq_eff=2.6e+01, igsq=0.95 Reset #46, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #47, asq_eff=2.6e+01, igsq=0.95 Reset #48, asq_eff=2.6e+01, igsq=0.95 Reset #49, asq_eff=2.6e+01, igsq=0.95 Reset #50, asq_eff=2.6e+01, igsq=0.95 Reset #51, asq_eff=2.6e+01, igsq=0.95 Reset #52, asq_eff=2.6e+01, igsq=0.95 Reset #53, asq_eff=2.6e+01, igsq=0.95 Reset #54, asq_eff=2.6e+01, igsq=0.95 Reset #55, asq_eff=2.6e+01, igsq=0.95 Reset #56, asq_eff=2.6e+01, igsq=0.95 Reset #57, asq_eff=2.6e+01, igsq=0.95 Reset #58, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #59, asq_eff=2.6e+01, igsq=0.95 Reset #60, asq_eff=2.6e+01, igsq=0.95 Reset #61, asq_eff=2.6e+01, igsq=0.95 Reset #62, asq_eff=2.6e+01, igsq=0.95 Reset #63, asq_eff=2.6e+01, igsq=0.95 Reset #64, asq_eff=2.6e+01, igsq=0.95 Reset #65, asq_eff=2.6e+01, igsq=0.95 Reset #66, asq_eff=2.6e+01, igsq=0.95 Reset #67, asq_eff=2.6e+01, igsq=0.95 Reset #68, asq_eff=2.6e+01, igsq=0.95 Reset #69, asq_eff=2.6e+01, igsq=0.95 Reset #70, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #71, asq_eff=2.6e+01, igsq=0.95 Reset #72, asq_eff=2.6e+01, igsq=0.95 Reset #73, asq_eff=2.6e+01, igsq=0.95 Reset #74, asq_eff=2.6e+01, igsq=0.95 Reset #75, asq_eff=2.6e+01, igsq=0.95 Reset #76, asq_eff=2.6e+01, igsq=0.95 Reset #77, asq_eff=2.6e+01, igsq=0.95 Reset #78, asq_eff=2.6e+01, igsq=0.95 Reset #79, asq_eff=2.6e+01, igsq=0.95 Reset #80, asq_eff=2.6e+01, igsq=0.95 Reset #81, asq_eff=2.6e+01, igsq=0.95 Reset #82, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Non-optimal solve at igsq=9.50e-01 and asq=2.49e+01, N_step=301 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 K_usable is not stable Results list length: 18 LPL [] MPL [] eq37 Before S: 860469.2442192244 eq37 S: 8.678411327729532e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=6.5e+00, igsq=0.0001 Reset #2, asq_eff=7.1e+00, igsq=0.0001 Reset #3, asq_eff=6.2e+00, igsq=0.0001 Reset #4, asq_eff=6.4e+00, igsq=0.0001 Reset #5, asq_eff=6.3e+00, igsq=0.0001 Reset #6, asq_eff=6.4e+00, igsq=0.0001 Reset #7, asq_eff=6.3e+00, igsq=0.0001 Reset #8, asq_eff=6.1e+00, igsq=0.0001 Steps remaining: 90, asq_eff=6.0e+00, igsq=0.0001 Reset #9, asq_eff=5.3e+00, igsq=0.0001 Reset #10, asq_eff=5.3e+00, igsq=0.0001 Reset #11, asq_eff=5.3e+00, igsq=0.0001 Reset #12, asq_eff=5.3e+00, igsq=0.0001 Reset #13, asq_eff=5.4e+00, igsq=0.0001 Reset #14, asq_eff=5.2e+00, igsq=0.0001 Reset #15, asq_eff=5.3e+00, igsq=0.0001 Steps remaining: 83, asq_eff=5.2e+00, igsq=0.0001 Reset #16, asq_eff=5.3e+00, igsq=0.0001 Reset #17, asq_eff=5.4e+00, igsq=0.0001 Reset #18, asq_eff=4.8e+00, igsq=0.0001 Reset #19, asq_eff=4.6e+00, igsq=0.0001 Reset #20, asq_eff=4.6e+00, igsq=0.0001 Reset #21, asq_eff=4.7e+00, igsq=0.0001 Reset #22, asq_eff=4.7e+00, igsq=0.0001 Reset #23, asq_eff=4.8e+00, igsq=0.0001 Reset #24, asq_eff=4.6e+00, igsq=0.0001 Reset #25, asq_eff=4.6e+00, igsq=0.0001 Reset #26, asq_eff=4.6e+00, igsq=0.0001 Reset #27, asq_eff=4.7e+00, igsq=0.0001 Reset #28, asq_eff=4.7e+00, igsq=0.0001 Reset #29, asq_eff=4.7e+00, igsq=0.0001 Reset #30, asq_eff=4.7e+00, igsq=0.0001 Reset #31, asq_eff=4.8e+00, igsq=0.0001 Reset #32, asq_eff=4.3e+00, igsq=0.0001 Reset #33, asq_eff=4.0e+00, igsq=0.0001 Reset #34, asq_eff=4.0e+00, igsq=0.0001 Reset #35, asq_eff=4.1e+00, igsq=0.0001 Reset #36, asq_eff=4.1e+00, igsq=0.0001 Reset #37, asq_eff=4.0e+00, igsq=0.0001 Reset #38, asq_eff=3.9e+00, igsq=0.0001 Reset #39, asq_eff=3.8e+00, igsq=0.0001 Reset #40, asq_eff=3.8e+00, igsq=0.0001 Reset #41, asq_eff=3.6e+00, igsq=0.0001 Reset #42, asq_eff=3.6e+00, igsq=0.0001 Reset #43, asq_eff=3.7e+00, igsq=0.0001 Reset #44, asq_eff=3.7e+00, igsq=0.0001 Reset #45, asq_eff=3.8e+00, igsq=0.0001 Reset #46, asq_eff=3.8e+00, igsq=0.0001 Reset #47, asq_eff=3.8e+00, igsq=0.0001 Reset #48, asq_eff=3.8e+00, igsq=0.0001 Reset #49, asq_eff=3.6e+00, igsq=0.0001 Reset #50, asq_eff=3.6e+00, igsq=0.0001 Steps remaining: 62, asq_eff=3.4e+00, igsq=0.0001 Reset #51, asq_eff=3.5e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=3.47e+00, N_step=303 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=2.3e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.3e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.2e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.1e+00, igsq=0.7653668647301797 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.0e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.04e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.8e+00, igsq=0.85 Reset #4, asq_eff=4.7e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.72e+00, N_step=111 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.2e+01, igsq=0.9 Reset #3, asq_eff=1.1e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.13e+01, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.2e+01, igsq=0.95 Reset #6, asq_eff=2.2e+01, igsq=0.95 Reset #7, asq_eff=2.2e+01, igsq=0.95 Reset #8, asq_eff=2.2e+01, igsq=0.95 Reset #9, asq_eff=2.2e+01, igsq=0.95 Reset #10, asq_eff=2.2e+01, igsq=0.95 Reset #11, asq_eff=2.2e+01, igsq=0.95 Reset #12, asq_eff=2.2e+01, igsq=0.95 Reset #13, asq_eff=2.2e+01, igsq=0.95 Reset #14, asq_eff=2.2e+01, igsq=0.95 Reset #15, asq_eff=2.2e+01, igsq=0.95 Reset #16, asq_eff=2.2e+01, igsq=0.95 Reset #17, asq_eff=2.2e+01, igsq=0.95 Reset #18, asq_eff=2.2e+01, igsq=0.95 Reset #19, asq_eff=2.2e+01, igsq=0.95 Reset #20, asq_eff=2.2e+01, igsq=0.95 Reset #21, asq_eff=2.2e+01, igsq=0.95 Reset #22, asq_eff=2.2e+01, igsq=0.95 Reset #23, asq_eff=2.2e+01, igsq=0.95 Reset #24, asq_eff=2.2e+01, igsq=0.95 Reset #25, asq_eff=2.2e+01, igsq=0.95 Reset #26, asq_eff=2.2e+01, igsq=0.95 Reset #27, asq_eff=2.2e+01, igsq=0.95 Reset #28, asq_eff=2.2e+01, igsq=0.95 Reset #29, asq_eff=2.2e+01, igsq=0.95 Reset #30, asq_eff=2.2e+01, igsq=0.95 Reset #31, asq_eff=2.2e+01, igsq=0.95 Reset #32, asq_eff=2.2e+01, igsq=0.95 Reset #33, asq_eff=2.2e+01, igsq=0.95 Reset #34, asq_eff=2.2e+01, igsq=0.95 Reset #35, asq_eff=2.2e+01, igsq=0.95 Reset #36, asq_eff=2.2e+01, igsq=0.95 Reset #37, asq_eff=2.2e+01, igsq=0.95 Reset #38, asq_eff=2.2e+01, igsq=0.95 Reset #39, asq_eff=2.2e+01, igsq=0.95 Reset #40, asq_eff=2.2e+01, igsq=0.95 Reset #41, asq_eff=2.2e+01, igsq=0.95 Reset #42, asq_eff=2.2e+01, igsq=0.95 Reset #43, asq_eff=2.2e+01, igsq=0.95 Reset #44, asq_eff=2.2e+01, igsq=0.95 Reset #45, asq_eff=2.2e+01, igsq=0.95 Steps remaining: 154, asq_eff=2.1e+01, igsq=0.95 Reset #46, asq_eff=2.2e+01, igsq=0.95 Reset #47, asq_eff=2.2e+01, igsq=0.95 Reset #48, asq_eff=2.2e+01, igsq=0.95 Reset #49, asq_eff=2.2e+01, igsq=0.95 Reset #50, asq_eff=2.2e+01, igsq=0.95 Reset #51, asq_eff=2.2e+01, igsq=0.95 Reset #52, asq_eff=2.2e+01, igsq=0.95 Reset #53, asq_eff=2.2e+01, igsq=0.95 Reset #54, asq_eff=2.2e+01, igsq=0.95 Reset #55, asq_eff=2.2e+01, igsq=0.95 Reset #56, asq_eff=2.2e+01, igsq=0.95 Reset #57, asq_eff=2.2e+01, igsq=0.95 Steps remaining: 154, asq_eff=2.1e+01, igsq=0.95 Reset #58, asq_eff=2.2e+01, igsq=0.95 Reset #59, asq_eff=2.2e+01, igsq=0.95 Reset #60, asq_eff=2.2e+01, igsq=0.95 Reset #61, asq_eff=2.2e+01, igsq=0.95 Reset #62, asq_eff=2.2e+01, igsq=0.95 Reset #63, asq_eff=2.2e+01, igsq=0.95 Reset #64, asq_eff=2.2e+01, igsq=0.95 Reset #65, asq_eff=2.2e+01, igsq=0.95 Reset #66, asq_eff=2.2e+01, igsq=0.95 Reset #67, asq_eff=2.2e+01, igsq=0.95 Reset #68, asq_eff=2.2e+01, igsq=0.95 Reset #69, asq_eff=2.2e+01, igsq=0.95 Reset #70, asq_eff=2.2e+01, igsq=0.95 Reset #71, asq_eff=2.2e+01, igsq=0.95 Reset #72, asq_eff=2.2e+01, igsq=0.95 Reset #73, asq_eff=2.2e+01, igsq=0.95 Reset #74, asq_eff=2.2e+01, igsq=0.95 Reset #75, asq_eff=2.2e+01, igsq=0.95 Reset #76, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.18e+01, N_step=292 K_usable is not stable Results list length: 19 K_usable is not stable Results list length: 20 K_usable is not stable Results list length: 21 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 LPL [] MPL [] eq37 Before S: 4114559.5564905773 eq37 S: 4.4123087958301806e-05 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=9.1e+00, igsq=0.0001 Reset #2, asq_eff=9.9e+00, igsq=0.0001 Reset #3, asq_eff=1.0e+01, igsq=0.0001 Reset #4, asq_eff=8.9e+00, igsq=0.0001 Reset #5, asq_eff=8.3e+00, igsq=0.0001 Reset #6, asq_eff=8.2e+00, igsq=0.0001 Steps remaining: 103, asq_eff=7.7e+00, igsq=0.0001 Reset #7, asq_eff=8.0e+00, igsq=0.0001 Reset #8, asq_eff=8.0e+00, igsq=0.0001 Reset #9, asq_eff=7.8e+00, igsq=0.0001 Reset #10, asq_eff=7.9e+00, igsq=0.0001 Reset #11, asq_eff=8.0e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=7.97e+00, N_step=139 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.8e+01, igsq=0.85 Reset #2, asq_eff=6.0e+00, igsq=0.85 Reset #3, asq_eff=5.7e+00, igsq=0.85 Reset #4, asq_eff=4.5e+00, igsq=0.85 Reset #5, asq_eff=4.5e+00, igsq=0.85 Reset #6, asq_eff=4.4e+00, igsq=0.85 Reset #7, asq_eff=4.5e+00, igsq=0.85 Reset #8, asq_eff=4.4e+00, igsq=0.85 Reset #9, asq_eff=4.5e+00, igsq=0.85 Reset #10, asq_eff=4.5e+00, igsq=0.85 Reset #11, asq_eff=4.5e+00, igsq=0.85 Reset #12, asq_eff=4.5e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.52e+00, N_step=139 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.2e+01, igsq=0.9 Reset #3, asq_eff=1.0e+01, igsq=0.9 Reset #4, asq_eff=1.0e+01, igsq=0.9 Reset #5, asq_eff=9.8e+00, igsq=0.9 Reset #6, asq_eff=9.7e+00, igsq=0.9 Reset #7, asq_eff=9.8e+00, igsq=0.9 Reset #8, asq_eff=9.7e+00, igsq=0.9 Reset #9, asq_eff=9.8e+00, igsq=0.9 Steps remaining: 114, asq_eff=9.6e+00, igsq=0.9 Reset #10, asq_eff=9.7e+00, igsq=0.9 Reset #11, asq_eff=9.8e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=9.83e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=2.5e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.1e+01, igsq=0.95 Reset #5, asq_eff=2.0e+01, igsq=0.95 Reset #6, asq_eff=2.0e+01, igsq=0.95 Reset #7, asq_eff=2.0e+01, igsq=0.95 Reset #8, asq_eff=2.0e+01, igsq=0.95 Reset #9, asq_eff=2.0e+01, igsq=0.95 Steps remaining: 151, asq_eff=2.0e+01, igsq=0.95 Reset #10, asq_eff=2.0e+01, igsq=0.95 Reset #11, asq_eff=2.0e+01, igsq=0.95 Reset #12, asq_eff=2.0e+01, igsq=0.95 Reset #13, asq_eff=2.0e+01, igsq=0.95 Reset #14, asq_eff=2.0e+01, igsq=0.95 Reset #15, asq_eff=2.0e+01, igsq=0.95 Reset #16, asq_eff=2.0e+01, igsq=0.95 Reset #17, asq_eff=2.0e+01, igsq=0.95 Reset #18, asq_eff=2.0e+01, igsq=0.95 Reset #19, asq_eff=2.0e+01, igsq=0.95 Reset #20, asq_eff=2.0e+01, igsq=0.95 Reset #21, asq_eff=2.0e+01, igsq=0.95 Reset #22, asq_eff=2.0e+01, igsq=0.95 Reset #23, asq_eff=2.0e+01, igsq=0.95 Reset #24, asq_eff=2.0e+01, igsq=0.95 Reset #25, asq_eff=2.0e+01, igsq=0.95 Reset #26, asq_eff=2.0e+01, igsq=0.95 Reset #27, asq_eff=2.0e+01, igsq=0.95 Reset #28, asq_eff=2.0e+01, igsq=0.95 Reset #29, asq_eff=2.0e+01, igsq=0.95 Reset #30, asq_eff=2.0e+01, igsq=0.95 Reset #31, asq_eff=2.0e+01, igsq=0.95 Reset #32, asq_eff=2.0e+01, igsq=0.95 Reset #33, asq_eff=2.0e+01, igsq=0.95 Reset #34, asq_eff=2.0e+01, igsq=0.95 Reset #35, asq_eff=2.0e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Reset #36, asq_eff=2.0e+01, igsq=0.95 Reset #37, asq_eff=2.0e+01, igsq=0.95 Reset #38, asq_eff=2.0e+01, igsq=0.95 Reset #39, asq_eff=2.0e+01, igsq=0.95 Reset #40, asq_eff=2.0e+01, igsq=0.95 Reset #41, asq_eff=2.0e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.02e+01, N_step=207 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 K_usable is not stable Results list length: 28 K_usable is not stable Results list length: 29 LPL [] MPL [] eq37 Before S: 19674846.586927786 eq37 S: 0.00023643945350624877 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.8e+01, igsq=0.0001 Reset #2, asq_eff=1.4e+01, igsq=0.0001 Reset #3, asq_eff=1.1e+01, igsq=0.0001 Reset #4, asq_eff=1.1e+01, igsq=0.0001 Reset #5, asq_eff=1.1e+01, igsq=0.0001 Reset #6, asq_eff=1.1e+01, igsq=0.0001 Reset #7, asq_eff=1.1e+01, igsq=0.0001 Reset #8, asq_eff=1.0e+01, igsq=0.0001 Reset #9, asq_eff=9.5e+00, igsq=0.0001 Reset #10, asq_eff=9.4e+00, igsq=0.0001 Reset #11, asq_eff=9.1e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=9.13e+00, N_step=144 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=2.5e+01, igsq=0.7653668647301797 Reset #2, asq_eff=4.2e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.7e+00, igsq=0.7653668647301797 Steps remaining: 11, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #8, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #9, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #10, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #11, asq_eff=1.6e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.62e+00, N_step=146 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.3e+01, igsq=0.85 Reset #2, asq_eff=6.0e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=5.96e+00, N_step=108 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.4e+01, igsq=0.9 Reset #3, asq_eff=1.3e+01, igsq=0.9 Reset #4, asq_eff=1.2e+01, igsq=0.9 Reset #5, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Reset #6, asq_eff=1.2e+01, igsq=0.9 Reset #7, asq_eff=1.2e+01, igsq=0.9 Reset #8, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.2e+01, igsq=0.9 Reset #9, asq_eff=1.2e+01, igsq=0.9 Reset #10, asq_eff=1.2e+01, igsq=0.9 Reset #11, asq_eff=1.2e+01, igsq=0.9 Reset #12, asq_eff=1.2e+01, igsq=0.9 Reset #13, asq_eff=1.2e+01, igsq=0.9 Reset #14, asq_eff=1.2e+01, igsq=0.9 Reset #15, asq_eff=1.2e+01, igsq=0.9 Reset #16, asq_eff=1.2e+01, igsq=0.9 Reset #17, asq_eff=1.2e+01, igsq=0.9 Reset #18, asq_eff=1.2e+01, igsq=0.9 Reset #19, asq_eff=1.2e+01, igsq=0.9 Reset #20, asq_eff=1.2e+01, igsq=0.9 Reset #21, asq_eff=1.2e+01, igsq=0.9 Reset #22, asq_eff=1.2e+01, igsq=0.9 Reset #23, asq_eff=1.2e+01, igsq=0.9 Reset #24, asq_eff=1.2e+01, igsq=0.9 Reset #25, asq_eff=1.2e+01, igsq=0.9 Reset #26, asq_eff=1.2e+01, igsq=0.9 Reset #27, asq_eff=1.2e+01, igsq=0.9 Reset #28, asq_eff=1.2e+01, igsq=0.9 Reset #29, asq_eff=1.2e+01, igsq=0.9 Reset #30, asq_eff=1.2e+01, igsq=0.9 Reset #31, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #32, asq_eff=1.2e+01, igsq=0.9 Reset #33, asq_eff=1.2e+01, igsq=0.9 Reset #34, asq_eff=1.2e+01, igsq=0.9 Reset #35, asq_eff=1.2e+01, igsq=0.9 Reset #36, asq_eff=1.2e+01, igsq=0.9 Reset #37, asq_eff=1.2e+01, igsq=0.9 Reset #38, asq_eff=1.2e+01, igsq=0.9 Reset #39, asq_eff=1.2e+01, igsq=0.9 Reset #40, asq_eff=1.2e+01, igsq=0.9 Reset #41, asq_eff=1.2e+01, igsq=0.9 Reset #42, asq_eff=1.2e+01, igsq=0.9 Reset #43, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #44, asq_eff=1.2e+01, igsq=0.9 Reset #45, asq_eff=1.2e+01, igsq=0.9 Reset #46, asq_eff=1.2e+01, igsq=0.9 Reset #47, asq_eff=1.2e+01, igsq=0.9 Reset #48, asq_eff=1.2e+01, igsq=0.9 Reset #49, asq_eff=1.2e+01, igsq=0.9 Reset #50, asq_eff=1.2e+01, igsq=0.9 Reset #51, asq_eff=1.2e+01, igsq=0.9 Reset #52, asq_eff=1.2e+01, igsq=0.9 Reset #53, asq_eff=1.2e+01, igsq=0.9 Reset #54, asq_eff=1.2e+01, igsq=0.9 Reset #55, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #56, asq_eff=1.2e+01, igsq=0.9 Reset #57, asq_eff=1.2e+01, igsq=0.9 Reset #58, asq_eff=1.2e+01, igsq=0.9 Reset #59, asq_eff=1.2e+01, igsq=0.9 Reset #60, asq_eff=1.2e+01, igsq=0.9 Reset #61, asq_eff=1.2e+01, igsq=0.9 Reset #62, asq_eff=1.2e+01, igsq=0.9 Reset #63, asq_eff=1.2e+01, igsq=0.9 Reset #64, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #65, asq_eff=1.2e+01, igsq=0.9 Reset #66, asq_eff=1.2e+01, igsq=0.9 Reset #67, asq_eff=1.2e+01, igsq=0.9 Reset #68, asq_eff=1.2e+01, igsq=0.9 Reset #69, asq_eff=1.2e+01, igsq=0.9 Reset #70, asq_eff=1.2e+01, igsq=0.9 Reset #71, asq_eff=1.2e+01, igsq=0.9 Reset #72, asq_eff=1.2e+01, igsq=0.9 Reset #73, asq_eff=1.2e+01, igsq=0.9 Reset #74, asq_eff=1.2e+01, igsq=0.9 Reset #75, asq_eff=1.2e+01, igsq=0.9 Reset #76, asq_eff=1.2e+01, igsq=0.9 Reset #77, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.17e+01, N_step=300 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=5.0e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Non-optimal solve at igsq=9.50e-01 and asq=2.23e+01, N_step=105 K_usable is not stable Results list length: 30 K_usable is not stable Results list length: 31 K_usable is not stable Results list length: 32 K_usable is not stable Results list length: 33 K_usable is not stable Results list length: 34 Calculating Full Results Now: Captured stderr call 0%| | 0/6 [00:00<?, ?it/s] 17%|█▋ | 1/6 [08:53<44:25, 533.08s/it] 33%|███▎ | 2/6 [17:26<34:45, 521.25s/it] 50%|█████ | 3/6 [28:49<29:45, 595.17s/it] 67%|██████▋ | 4/6 [38:46<19:51, 595.85s/it] 83%|████████▎ | 5/6 [47:23<09:27, 567.55s/it] 100%|██████████| 6/6 [55:49<00:00, 546.53s/it] 100%|██████████| 6/6 [55:49<00:00, 558.20s/it] 0%| | 0/34 [00:00<?, ?it/s] 0%| | 0/34 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_newFOM_F3' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 40.0, 'F2_gain': 1.0, 'FOM_out': ['F3.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 40 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_HiB[ExampleModels_DARMFOM]
output
LPL [] MPL [] eq37 Before S: 5459.057901382968 eq37 S: 1.0645576117746095e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=4.6e+00, igsq=0.0001 Reset #2, asq_eff=2.1e+00, igsq=0.0001 Reset #3, asq_eff=1.3e+00, igsq=0.0001 Reset #4, asq_eff=1.4e+00, igsq=0.0001 Reset #5, asq_eff=1.3e+00, igsq=0.0001 Reset #6, asq_eff=1.3e+00, igsq=0.0001 Reset #7, asq_eff=1.4e+00, igsq=0.0001 Reset #8, asq_eff=1.4e+00, igsq=0.0001 Reset #9, asq_eff=1.3e+00, igsq=0.0001 Reset #10, asq_eff=1.1e+00, igsq=0.0001 Reset #11, asq_eff=1.1e+00, igsq=0.0001 Reset #12, asq_eff=1.1e+00, igsq=0.0001 Steps remaining: 4, asq_eff=1.1e+00, igsq=0.0001 Reset #13, asq_eff=1.1e+00, igsq=0.0001 Reset #14, asq_eff=1.1e+00, igsq=0.0001 Reset #15, asq_eff=1.1e+00, igsq=0.0001 Reset #16, asq_eff=1.1e+00, igsq=0.0001 Reset #17, asq_eff=1.1e+00, igsq=0.0001 Reset #18, asq_eff=1.1e+00, igsq=0.0001 Reset #19, asq_eff=1.1e+00, igsq=0.0001 Reset #20, asq_eff=1.0e+00, igsq=0.0001 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=3.3e+00, igsq=0.85 Reset #2, asq_eff=2.5e+00, igsq=0.85 Reset #3, asq_eff=2.4e+00, igsq=0.85 Reset #4, asq_eff=2.3e+00, igsq=0.85 Reset #5, asq_eff=2.3e+00, igsq=0.85 Reset #6, asq_eff=2.2e+00, igsq=0.85 Reset #7, asq_eff=2.2e+00, igsq=0.85 Steps remaining: 38, asq_eff=2.1e+00, igsq=0.85 Reset #8, asq_eff=2.2e+00, igsq=0.85 Reset #9, asq_eff=2.2e+00, igsq=0.85 Reset #10, asq_eff=2.2e+00, igsq=0.85 Reset #11, asq_eff=2.2e+00, igsq=0.85 Reset #12, asq_eff=2.2e+00, igsq=0.85 Reset #13, asq_eff=2.2e+00, igsq=0.85 Reset #14, asq_eff=2.2e+00, igsq=0.85 Reset #15, asq_eff=2.2e+00, igsq=0.85 Reset #16, asq_eff=2.2e+00, igsq=0.85 Reset #17, asq_eff=2.2e+00, igsq=0.85 Reset #18, asq_eff=2.2e+00, igsq=0.85 Reset #19, asq_eff=2.2e+00, igsq=0.85 Steps remaining: 38, asq_eff=2.1e+00, igsq=0.85 Reset #20, asq_eff=2.2e+00, igsq=0.85 Reset #21, asq_eff=2.1e+00, igsq=0.85 Reset #22, asq_eff=2.2e+00, igsq=0.85 Reset #23, asq_eff=2.1e+00, igsq=0.85 Reset #24, asq_eff=2.2e+00, igsq=0.85 Reset #25, asq_eff=2.1e+00, igsq=0.85 Reset #26, asq_eff=2.2e+00, igsq=0.85 Reset #27, asq_eff=2.1e+00, igsq=0.85 Reset #28, asq_eff=2.1e+00, igsq=0.85 Reset #29, asq_eff=2.1e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=2.14e+00, N_step=180 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.2e+01, igsq=0.9 Reset #3, asq_eff=8.7e+00, igsq=0.9 Reset #4, asq_eff=8.2e+00, igsq=0.9 Reset #5, asq_eff=8.1e+00, igsq=0.9 Reset #6, asq_eff=8.0e+00, igsq=0.9 Reset #7, asq_eff=8.0e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Non-optimal solve at igsq=9.00e-01 and asq=7.96e+00, N_step=121 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.6e+01, igsq=0.95 Reset #4, asq_eff=2.6e+01, igsq=0.95 Reset #5, asq_eff=2.5e+01, igsq=0.95 Reset #6, asq_eff=2.5e+01, igsq=0.95 Reset #7, asq_eff=2.5e+01, igsq=0.95 Reset #8, asq_eff=2.5e+01, igsq=0.95 Reset #9, asq_eff=2.5e+01, igsq=0.95 Reset #10, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.5e+01, igsq=0.95 Reset #12, asq_eff=2.5e+01, igsq=0.95 Reset #13, asq_eff=2.5e+01, igsq=0.95 Reset #14, asq_eff=2.5e+01, igsq=0.95 Reset #15, asq_eff=2.5e+01, igsq=0.95 Reset #16, asq_eff=2.5e+01, igsq=0.95 Reset #17, asq_eff=2.5e+01, igsq=0.95 Reset #18, asq_eff=2.5e+01, igsq=0.95 Reset #19, asq_eff=2.5e+01, igsq=0.95 Reset #20, asq_eff=2.5e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Non-optimal solve at igsq=9.50e-01 and asq=2.48e+01, N_step=148 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 LPL [] MPL [] eq37 Before S: 26104.234063724256 eq37 S: 1.4467805749492867e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=9.1e+00, igsq=0.0001 Reset #2, asq_eff=6.0e+00, igsq=0.0001 Reset #3, asq_eff=5.7e+00, igsq=0.0001 Reset #4, asq_eff=5.8e+00, igsq=0.0001 Reset #5, asq_eff=5.9e+00, igsq=0.0001 Reset #6, asq_eff=5.8e+00, igsq=0.0001 Reset #7, asq_eff=5.8e+00, igsq=0.0001 Reset #8, asq_eff=5.8e+00, igsq=0.0001 Reset #9, asq_eff=5.8e+00, igsq=0.0001 Reset #10, asq_eff=5.7e+00, igsq=0.0001 Reset #11, asq_eff=5.8e+00, igsq=0.0001 Reset #12, asq_eff=5.6e+00, igsq=0.0001 Reset #13, asq_eff=5.7e+00, igsq=0.0001 Reset #14, asq_eff=5.5e+00, igsq=0.0001 Reset #15, asq_eff=5.6e+00, igsq=0.0001 Reset #16, asq_eff=5.6e+00, igsq=0.0001 Reset #17, asq_eff=5.6e+00, igsq=0.0001 Steps remaining: 86, asq_eff=5.5e+00, igsq=0.0001 Reset #18, asq_eff=5.2e+00, igsq=0.0001 Reset #19, asq_eff=4.9e+00, igsq=0.0001 Reset #20, asq_eff=4.8e+00, igsq=0.0001 Reset #21, asq_eff=4.7e+00, igsq=0.0001 Reset #22, asq_eff=4.8e+00, igsq=0.0001 Steps remaining: 74, asq_eff=4.3e+00, igsq=0.0001 Reset #23, asq_eff=4.5e+00, igsq=0.0001 Reset #24, asq_eff=4.5e+00, igsq=0.0001 Reset #25, asq_eff=4.6e+00, igsq=0.0001 Reset #26, asq_eff=4.6e+00, igsq=0.0001 Reset #27, asq_eff=4.5e+00, igsq=0.0001 Reset #28, asq_eff=4.5e+00, igsq=0.0001 Reset #29, asq_eff=4.5e+00, igsq=0.0001 Reset #30, asq_eff=4.5e+00, igsq=0.0001 Reset #31, asq_eff=4.6e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=4.56e+00, N_step=211 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.3e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #8, asq_eff=1.1e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.09e+00, N_step=127 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=9.1e+00, igsq=0.85 Reset #2, asq_eff=7.1e+00, igsq=0.85 Reset #3, asq_eff=6.2e+00, igsq=0.85 Reset #4, asq_eff=6.1e+00, igsq=0.85 Reset #5, asq_eff=5.9e+00, igsq=0.85 Reset #6, asq_eff=5.8e+00, igsq=0.85 Reset #7, asq_eff=5.9e+00, igsq=0.85 Reset #8, asq_eff=5.8e+00, igsq=0.85 Reset #9, asq_eff=5.9e+00, igsq=0.85 Reset #10, asq_eff=5.8e+00, igsq=0.85 Reset #11, asq_eff=5.9e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=5.90e+00, N_step=130 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Reset #2, asq_eff=1.7e+01, igsq=0.9 Reset #3, asq_eff=1.6e+01, igsq=0.9 Reset #4, asq_eff=1.5e+01, igsq=0.9 Reset #5, asq_eff=1.5e+01, igsq=0.9 Reset #6, asq_eff=1.5e+01, igsq=0.9 Reset #7, asq_eff=1.4e+01, igsq=0.9 Reset #8, asq_eff=1.5e+01, igsq=0.9 Reset #9, asq_eff=1.4e+01, igsq=0.9 Reset #10, asq_eff=1.5e+01, igsq=0.9 Steps remaining: 134, asq_eff=1.4e+01, igsq=0.9 Reset #11, asq_eff=1.4e+01, igsq=0.9 Reset #12, asq_eff=1.5e+01, igsq=0.9 Reset #13, asq_eff=1.4e+01, igsq=0.9 Reset #14, asq_eff=1.5e+01, igsq=0.9 Reset #15, asq_eff=1.4e+01, igsq=0.9 Reset #16, asq_eff=1.5e+01, igsq=0.9 Reset #17, asq_eff=1.4e+01, igsq=0.9 Reset #18, asq_eff=1.5e+01, igsq=0.9 Reset #19, asq_eff=1.4e+01, igsq=0.9 Reset #20, asq_eff=1.5e+01, igsq=0.9 Reset #21, asq_eff=1.4e+01, igsq=0.9 Reset #22, asq_eff=1.5e+01, igsq=0.9 Steps remaining: 134, asq_eff=1.4e+01, igsq=0.9 Reset #23, asq_eff=1.4e+01, igsq=0.9 Reset #24, asq_eff=1.5e+01, igsq=0.9 Reset #25, asq_eff=1.4e+01, igsq=0.9 Reset #26, asq_eff=1.5e+01, igsq=0.9 Reset #27, asq_eff=1.4e+01, igsq=0.9 Reset #28, asq_eff=1.5e+01, igsq=0.9 Reset #29, asq_eff=1.4e+01, igsq=0.9 Reset #30, asq_eff=1.5e+01, igsq=0.9 Reset #31, asq_eff=1.5e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.47e+01, N_step=176 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=5.0e+01, igsq=0.95 Reset #2, asq_eff=3.9e+01, igsq=0.95 Reset #3, asq_eff=3.4e+01, igsq=0.95 Reset #4, asq_eff=3.3e+01, igsq=0.95 Reset #5, asq_eff=3.3e+01, igsq=0.95 Reset #6, asq_eff=3.3e+01, igsq=0.95 Reset #7, asq_eff=3.4e+01, igsq=0.95 Reset #8, asq_eff=3.3e+01, igsq=0.95 Reset #9, asq_eff=3.3e+01, igsq=0.95 Reset #10, asq_eff=3.3e+01, igsq=0.95 Reset #11, asq_eff=3.3e+01, igsq=0.95 Steps remaining: 176, asq_eff=3.2e+01, igsq=0.95 Reset #12, asq_eff=3.3e+01, igsq=0.95 Reset #13, asq_eff=3.3e+01, igsq=0.95 Reset #14, asq_eff=3.3e+01, igsq=0.95 Reset #15, asq_eff=3.3e+01, igsq=0.95 Reset #16, asq_eff=3.3e+01, igsq=0.95 Reset #17, asq_eff=3.3e+01, igsq=0.95 Reset #18, asq_eff=3.3e+01, igsq=0.95 Reset #19, asq_eff=3.3e+01, igsq=0.95 Reset #20, asq_eff=3.3e+01, igsq=0.95 Reset #21, asq_eff=3.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=3.30e+01, N_step=149 K_usable is not stable Results list length: 8 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 LPL [] MPL [] eq37 Before S: 124826.09752378288 eq37 S: 4.471024655445616e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=1.2e+01, igsq=0.0001 Reset #3, asq_eff=8.7e+00, igsq=0.0001 Reset #4, asq_eff=8.6e+00, igsq=0.0001 Reset #5, asq_eff=8.1e+00, igsq=0.0001 Reset #6, asq_eff=8.0e+00, igsq=0.0001 Steps remaining: 104, asq_eff=7.9e+00, igsq=0.0001 Reset #7, asq_eff=8.1e+00, igsq=0.0001 Reset #8, asq_eff=8.0e+00, igsq=0.0001 Reset #9, asq_eff=8.1e+00, igsq=0.0001 Reset #10, asq_eff=7.9e+00, igsq=0.0001 Reset #11, asq_eff=8.0e+00, igsq=0.0001 Reset #12, asq_eff=7.7e+00, igsq=0.0001 Reset #13, asq_eff=7.6e+00, igsq=0.0001 Reset #14, asq_eff=7.6e+00, igsq=0.0001 Steps remaining: 100, asq_eff=7.3e+00, igsq=0.0001 Reset #15, asq_eff=7.5e+00, igsq=0.0001 Reset #16, asq_eff=7.6e+00, igsq=0.0001 Reset #17, asq_eff=7.6e+00, igsq=0.0001 Reset #18, asq_eff=7.7e+00, igsq=0.0001 Reset #19, asq_eff=7.8e+00, igsq=0.0001 Reset #20, asq_eff=7.4e+00, igsq=0.0001 Reset #21, asq_eff=7.5e+00, igsq=0.0001 Reset #22, asq_eff=7.3e+00, igsq=0.0001 Reset #23, asq_eff=7.2e+00, igsq=0.0001 Reset #24, asq_eff=7.3e+00, igsq=0.0001 Reset #25, asq_eff=7.4e+00, igsq=0.0001 Reset #26, asq_eff=7.4e+00, igsq=0.0001 Reset #27, asq_eff=7.5e+00, igsq=0.0001 Reset #28, asq_eff=7.6e+00, igsq=0.0001 Reset #29, asq_eff=7.6e+00, igsq=0.0001 Reset #30, asq_eff=7.6e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=7.57e+00, N_step=204 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=4.6e+00, igsq=0.7653668647301797 Reset #2, asq_eff=3.6e+00, igsq=0.7653668647301797 Reset #3, asq_eff=3.2e+00, igsq=0.7653668647301797 Reset #4, asq_eff=3.0e+00, igsq=0.7653668647301797 Reset #5, asq_eff=2.9e+00, igsq=0.7653668647301797 Reset #6, asq_eff=2.9e+00, igsq=0.7653668647301797 Reset #7, asq_eff=2.9e+00, igsq=0.7653668647301797 Reset #8, asq_eff=2.9e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=2.90e+00, N_step=125 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.3e+01, igsq=0.85 Reset #2, asq_eff=1.2e+01, igsq=0.85 Reset #3, asq_eff=1.1e+01, igsq=0.85 Reset #4, asq_eff=1.2e+01, igsq=0.85 Reset #5, asq_eff=1.1e+01, igsq=0.85 Reset #6, asq_eff=1.1e+01, igsq=0.85 Reset #7, asq_eff=1.1e+01, igsq=0.85 Reset #8, asq_eff=1.1e+01, igsq=0.85 Reset #9, asq_eff=1.1e+01, igsq=0.85 Reset #10, asq_eff=1.1e+01, igsq=0.85 Reset #11, asq_eff=1.1e+01, igsq=0.85 Reset #12, asq_eff=1.1e+01, igsq=0.85 Reset #13, asq_eff=1.1e+01, igsq=0.85 Reset #14, asq_eff=1.1e+01, igsq=0.85 Reset #15, asq_eff=1.1e+01, igsq=0.85 Reset #16, asq_eff=1.1e+01, igsq=0.85 Reset #17, asq_eff=1.1e+01, igsq=0.85 Reset #18, asq_eff=1.1e+01, igsq=0.85 Reset #19, asq_eff=1.1e+01, igsq=0.85 Reset #20, asq_eff=1.1e+01, igsq=0.85 Reset #21, asq_eff=1.1e+01, igsq=0.85 Steps remaining: 118, asq_eff=1.0e+01, igsq=0.85 Reset #22, asq_eff=1.1e+01, igsq=0.85 Reset #23, asq_eff=1.1e+01, igsq=0.85 Reset #24, asq_eff=1.1e+01, igsq=0.85 Reset #25, asq_eff=1.1e+01, igsq=0.85 Reset #26, asq_eff=1.1e+01, igsq=0.85 Reset #27, asq_eff=1.1e+01, igsq=0.85 Reset #28, asq_eff=1.1e+01, igsq=0.85 Reset #29, asq_eff=1.1e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.07e+01, N_step=173 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=2.5e+01, igsq=0.9 Reset #2, asq_eff=2.3e+01, igsq=0.9 Reset #3, asq_eff=2.2e+01, igsq=0.9 Reset #4, asq_eff=2.2e+01, igsq=0.9 Reset #5, asq_eff=2.2e+01, igsq=0.9 Reset #6, asq_eff=2.1e+01, igsq=0.9 Reset #7, asq_eff=2.2e+01, igsq=0.9 Reset #8, asq_eff=2.1e+01, igsq=0.9 Reset #9, asq_eff=2.2e+01, igsq=0.9 Reset #10, asq_eff=2.1e+01, igsq=0.9 Reset #11, asq_eff=2.2e+01, igsq=0.9 Steps remaining: 154, asq_eff=2.1e+01, igsq=0.9 Reset #12, asq_eff=2.1e+01, igsq=0.9 Reset #13, asq_eff=2.2e+01, igsq=0.9 Reset #14, asq_eff=2.1e+01, igsq=0.9 Reset #15, asq_eff=2.2e+01, igsq=0.9 Reset #16, asq_eff=2.1e+01, igsq=0.9 Reset #17, asq_eff=2.2e+01, igsq=0.9 Reset #18, asq_eff=2.1e+01, igsq=0.9 Reset #19, asq_eff=2.2e+01, igsq=0.9 Non-optimal solve at igsq=9.00e-01 and asq=2.16e+01, N_step=145 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=5.0e+01, igsq=0.95 Reset #2, asq_eff=4.6e+01, igsq=0.95 Reset #3, asq_eff=4.4e+01, igsq=0.95 Reset #4, asq_eff=4.1e+01, igsq=0.95 Reset #5, asq_eff=4.0e+01, igsq=0.95 Reset #6, asq_eff=4.0e+01, igsq=0.95 Reset #7, asq_eff=4.0e+01, igsq=0.95 Reset #8, asq_eff=4.0e+01, igsq=0.95 Reset #9, asq_eff=4.1e+01, igsq=0.95 Reset #10, asq_eff=4.0e+01, igsq=0.95 Reset #11, asq_eff=4.1e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #12, asq_eff=4.0e+01, igsq=0.95 Reset #13, asq_eff=4.1e+01, igsq=0.95 Reset #14, asq_eff=4.0e+01, igsq=0.95 Reset #15, asq_eff=4.1e+01, igsq=0.95 Reset #16, asq_eff=4.0e+01, igsq=0.95 Reset #17, asq_eff=4.1e+01, igsq=0.95 Reset #18, asq_eff=4.0e+01, igsq=0.95 Reset #19, asq_eff=4.0e+01, igsq=0.95 Reset #20, asq_eff=4.0e+01, igsq=0.95 Reset #21, asq_eff=4.1e+01, igsq=0.95 Reset #22, asq_eff=4.0e+01, igsq=0.95 Reset #23, asq_eff=4.1e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #24, asq_eff=4.0e+01, igsq=0.95 Reset #25, asq_eff=4.1e+01, igsq=0.95 Reset #26, asq_eff=4.0e+01, igsq=0.95 Reset #27, asq_eff=4.1e+01, igsq=0.95 Reset #28, asq_eff=4.0e+01, igsq=0.95 Reset #29, asq_eff=4.1e+01, igsq=0.95 Reset #30, asq_eff=4.0e+01, igsq=0.95 Reset #31, asq_eff=4.1e+01, igsq=0.95 Reset #32, asq_eff=4.0e+01, igsq=0.95 Reset #33, asq_eff=4.1e+01, igsq=0.95 Reset #34, asq_eff=4.0e+01, igsq=0.95 Reset #35, asq_eff=4.1e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #36, asq_eff=4.0e+01, igsq=0.95 Reset #37, asq_eff=4.1e+01, igsq=0.95 Reset #38, asq_eff=4.0e+01, igsq=0.95 Reset #39, asq_eff=4.1e+01, igsq=0.95 Reset #40, asq_eff=4.0e+01, igsq=0.95 Reset #41, asq_eff=4.1e+01, igsq=0.95 Reset #42, asq_eff=4.0e+01, igsq=0.95 Reset #43, asq_eff=4.1e+01, igsq=0.95 Reset #44, asq_eff=4.0e+01, igsq=0.95 Reset #45, asq_eff=4.1e+01, igsq=0.95 Reset #46, asq_eff=4.0e+01, igsq=0.95 Reset #47, asq_eff=4.1e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #48, asq_eff=4.0e+01, igsq=0.95 Reset #49, asq_eff=4.1e+01, igsq=0.95 Reset #50, asq_eff=4.0e+01, igsq=0.95 Reset #51, asq_eff=4.1e+01, igsq=0.95 Reset #52, asq_eff=4.0e+01, igsq=0.95 Reset #53, asq_eff=4.1e+01, igsq=0.95 Reset #54, asq_eff=4.0e+01, igsq=0.95 Reset #55, asq_eff=4.1e+01, igsq=0.95 Reset #56, asq_eff=4.0e+01, igsq=0.95 Reset #57, asq_eff=4.1e+01, igsq=0.95 Reset #58, asq_eff=4.0e+01, igsq=0.95 Reset #59, asq_eff=4.1e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #60, asq_eff=4.0e+01, igsq=0.95 Reset #61, asq_eff=4.1e+01, igsq=0.95 Reset #62, asq_eff=4.0e+01, igsq=0.95 Reset #63, asq_eff=4.1e+01, igsq=0.95 Reset #64, asq_eff=4.0e+01, igsq=0.95 Reset #65, asq_eff=4.1e+01, igsq=0.95 Reset #66, asq_eff=4.0e+01, igsq=0.95 Reset #67, asq_eff=4.1e+01, igsq=0.95 Reset #68, asq_eff=4.0e+01, igsq=0.95 Reset #69, asq_eff=4.1e+01, igsq=0.95 Reset #70, asq_eff=4.0e+01, igsq=0.95 Reset #71, asq_eff=4.0e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #72, asq_eff=4.0e+01, igsq=0.95 Reset #73, asq_eff=4.0e+01, igsq=0.95 Reset #74, asq_eff=4.0e+01, igsq=0.95 Reset #75, asq_eff=4.0e+01, igsq=0.95 Reset #76, asq_eff=4.0e+01, igsq=0.95 Reset #77, asq_eff=4.0e+01, igsq=0.95 Reset #78, asq_eff=4.0e+01, igsq=0.95 Reset #79, asq_eff=4.0e+01, igsq=0.95 Reset #80, asq_eff=4.0e+01, igsq=0.95 Reset #81, asq_eff=4.0e+01, igsq=0.95 Reset #82, asq_eff=4.0e+01, igsq=0.95 Reset #83, asq_eff=4.0e+01, igsq=0.95 Steps remaining: 185, asq_eff=3.9e+01, igsq=0.95 Reset #84, asq_eff=4.0e+01, igsq=0.95 Non-optimal solve at igsq=9.50e-01 and asq=3.96e+01, N_step=302 K_usable is not stable Results list length: 13 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 LPL [] MPL [] eq37 Before S: 596891.1002574523 eq37 S: 6.957991109848221e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Reset #1, asq_eff=5.0e+01, igsq=0.0001 Reset #2, asq_eff=3.9e+01, igsq=0.0001 Reset #3, asq_eff=2.6e+01, igsq=0.0001 Reset #4, asq_eff=2.5e+01, igsq=0.0001 Reset #5, asq_eff=2.5e+01, igsq=0.0001 Reset #6, asq_eff=2.5e+01, igsq=0.0001 Reset #7, asq_eff=2.5e+01, igsq=0.0001 Reset #8, asq_eff=2.5e+01, igsq=0.0001 Reset #9, asq_eff=2.6e+01, igsq=0.0001 Steps remaining: 160, asq_eff=2.4e+01, igsq=0.0001 Reset #10, asq_eff=2.4e+01, igsq=0.0001 Reset #11, asq_eff=2.4e+01, igsq=0.0001 Reset #12, asq_eff=2.4e+01, igsq=0.0001 Reset #13, asq_eff=2.5e+01, igsq=0.0001 Reset #14, asq_eff=2.4e+01, igsq=0.0001 Reset #15, asq_eff=2.2e+01, igsq=0.0001 Reset #16, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 150, asq_eff=2.0e+01, igsq=0.0001 Reset #17, asq_eff=2.0e+01, igsq=0.0001 Reset #18, asq_eff=2.0e+01, igsq=0.0001 Reset #19, asq_eff=2.0e+01, igsq=0.0001 Reset #20, asq_eff=1.7e+01, igsq=0.0001 Reset #21, asq_eff=1.7e+01, igsq=0.0001 Reset #22, asq_eff=1.7e+01, igsq=0.0001 Reset #23, asq_eff=1.7e+01, igsq=0.0001 Reset #24, asq_eff=1.7e+01, igsq=0.0001 Reset #25, asq_eff=1.7e+01, igsq=0.0001 Reset #26, asq_eff=1.7e+01, igsq=0.0001 Reset #27, asq_eff=1.6e+01, igsq=0.0001 Reset #28, asq_eff=1.5e+01, igsq=0.0001 Reset #29, asq_eff=1.5e+01, igsq=0.0001 Reset #30, asq_eff=1.5e+01, igsq=0.0001 Reset #31, asq_eff=1.5e+01, igsq=0.0001 Steps remaining: 136, asq_eff=1.5e+01, igsq=0.0001 Reset #32, asq_eff=1.5e+01, igsq=0.0001 Reset #33, asq_eff=1.4e+01, igsq=0.0001 Reset #34, asq_eff=1.4e+01, igsq=0.0001 Reset #35, asq_eff=1.3e+01, igsq=0.0001 Reset #36, asq_eff=1.3e+01, igsq=0.0001 Reset #37, asq_eff=1.3e+01, igsq=0.0001 Reset #38, asq_eff=1.3e+01, igsq=0.0001 Steps remaining: 126, asq_eff=1.2e+01, igsq=0.0001 Reset #39, asq_eff=1.2e+01, igsq=0.0001 Reset #40, asq_eff=1.2e+01, igsq=0.0001 Reset #41, asq_eff=1.2e+01, igsq=0.0001 Reset #42, asq_eff=1.2e+01, igsq=0.0001 Reset #43, asq_eff=1.2e+01, igsq=0.0001 Reset #44, asq_eff=1.1e+01, igsq=0.0001 Reset #45, asq_eff=1.1e+01, igsq=0.0001 Reset #46, asq_eff=1.1e+01, igsq=0.0001 Steps remaining: 119, asq_eff=1.1e+01, igsq=0.0001 Reset #47, asq_eff=1.1e+01, igsq=0.0001 Reset #48, asq_eff=1.1e+01, igsq=0.0001 Reset #49, asq_eff=1.1e+01, igsq=0.0001 Reset #50, asq_eff=1.0e+01, igsq=0.0001 Reset #51, asq_eff=1.0e+01, igsq=0.0001 Reset #52, asq_eff=1.0e+01, igsq=0.0001 Reset #53, asq_eff=9.1e+00, igsq=0.0001 Steps remaining: 111, asq_eff=8.9e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=8.75e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Reset #1, asq_eff=2.3e+00, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Reset #1, asq_eff=2.3e+00, igsq=0.3 Reset #2, asq_eff=2.1e+00, igsq=0.3 Reset #3, asq_eff=1.1e+00, igsq=0.3 Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=3.00e-01 and asq=1.14e+00, N_step=117 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=2.5e+01, igsq=0.7653668647301797 Reset #2, asq_eff=2.0e+01, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.96e+01, N_step=101 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=2.5e+01, igsq=0.85 Reset #2, asq_eff=1.7e+01, igsq=0.85 Reset #3, asq_eff=1.6e+01, igsq=0.85 Reset #4, asq_eff=1.5e+01, igsq=0.85 Reset #5, asq_eff=1.5e+01, igsq=0.85 Reset #6, asq_eff=1.5e+01, igsq=0.85 Reset #7, asq_eff=1.5e+01, igsq=0.85 Reset #8, asq_eff=1.5e+01, igsq=0.85 Reset #9, asq_eff=1.5e+01, igsq=0.85 Reset #10, asq_eff=1.5e+01, igsq=0.85 Steps remaining: 135, asq_eff=1.5e+01, igsq=0.85 Reset #11, asq_eff=1.5e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.47e+01, N_step=127 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=3.6e+01, igsq=0.9 Reset #2, asq_eff=3.9e+01, igsq=0.9 Reset #3, asq_eff=2.6e+01, igsq=0.9 Reset #4, asq_eff=2.6e+01, igsq=0.9 Reset #5, asq_eff=2.6e+01, igsq=0.9 Reset #6, asq_eff=2.6e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=2.58e+01, N_step=113 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=7.0e+01, igsq=0.95 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.95 Reset #2, asq_eff=7.6e+01, igsq=0.95 Reset #3, asq_eff=4.8e+01, igsq=0.95 Reset #4, asq_eff=4.9e+01, igsq=0.95 Reset #5, asq_eff=4.4e+01, igsq=0.95 Reset #6, asq_eff=4.3e+01, igsq=0.95 Reset #7, asq_eff=4.4e+01, igsq=0.95 Reset #8, asq_eff=4.3e+01, igsq=0.95 Reset #9, asq_eff=4.3e+01, igsq=0.95 Reset #10, asq_eff=4.3e+01, igsq=0.95 Reset #11, asq_eff=4.4e+01, igsq=0.95 Reset #12, asq_eff=4.3e+01, igsq=0.95 Reset #13, asq_eff=4.4e+01, igsq=0.95 Reset #14, asq_eff=4.3e+01, igsq=0.95 Reset #15, asq_eff=4.4e+01, igsq=0.95 Reset #16, asq_eff=4.3e+01, igsq=0.95 Reset #17, asq_eff=4.4e+01, igsq=0.95 Reset #18, asq_eff=4.3e+01, igsq=0.95 Reset #19, asq_eff=4.4e+01, igsq=0.95 Reset #20, asq_eff=4.3e+01, igsq=0.95 Reset #21, asq_eff=4.4e+01, igsq=0.95 Steps remaining: 190, asq_eff=4.3e+01, igsq=0.95 Reset #22, asq_eff=4.3e+01, igsq=0.95 Reset #23, asq_eff=4.4e+01, igsq=0.95 Reset #24, asq_eff=4.3e+01, igsq=0.95 Reset #25, asq_eff=4.4e+01, igsq=0.95 Reset #26, asq_eff=4.3e+01, igsq=0.95 Reset #27, asq_eff=4.4e+01, igsq=0.95 Reset #28, asq_eff=4.3e+01, igsq=0.95 Reset #29, asq_eff=4.4e+01, igsq=0.95 Reset #30, asq_eff=4.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=4.31e+01, N_step=177 K_usable is not stable Results list length: 18 K_usable is not stable Results list length: 19 K_usable is not stable Results list length: 20 LPL [] MPL [] eq37 Before S: 2854195.480922072 eq37 S: 3.187888252876882e-05 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Reset #1, asq_eff=4.6e+00, igsq=0.3 Reset #2, asq_eff=3.0e+00, igsq=0.3 Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=3.00e-01 and asq=3.02e+00, N_step=107 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=1.8e+01, igsq=0.7653668647301797 Reset #2, asq_eff=1.4e+01, igsq=0.7653668647301797 Reset #3, asq_eff=1.2e+01, igsq=0.7653668647301797 Reset #4, asq_eff=1.2e+01, igsq=0.7653668647301797 Reset #5, asq_eff=1.2e+01, igsq=0.7653668647301797 Reset #6, asq_eff=1.2e+01, igsq=0.7653668647301797 Reset #7, asq_eff=1.2e+01, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.17e+01, N_step=118 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=5.4e+02, igsq=0.85 Steps remaining: 30, asq_eff=1.6e+02, igsq=0.85 Reset #2, asq_eff=2.3e+01, igsq=0.85 Reset #3, asq_eff=1.6e+01, igsq=0.85 Reset #4, asq_eff=1.6e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.62e+01, N_step=118 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=9.9e+01, igsq=0.9 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.9 Reset #2, asq_eff=3.3e+01, igsq=0.9 Reset #3, asq_eff=2.9e+01, igsq=0.9 Reset #4, asq_eff=2.7e+01, igsq=0.9 Reset #5, asq_eff=2.6e+01, igsq=0.9 Reset #6, asq_eff=2.6e+01, igsq=0.9 Reset #7, asq_eff=2.6e+01, igsq=0.9 Reset #8, asq_eff=2.6e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Failed on igsq: 0.9 Failed to find a finite solution. Non-optimal solve at igsq=9.00e-01 and asq=2.64e+01, N_step=121 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=7.0e+01, igsq=0.95 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.95 Reset #2, asq_eff=7.6e+01, igsq=0.95 Reset #3, asq_eff=6.7e+01, igsq=0.95 Reset #4, asq_eff=6.1e+01, igsq=0.95 Reset #5, asq_eff=5.3e+01, igsq=0.95 Steps remaining: 189, asq_eff=4.2e+01, igsq=0.95 Reset #6, asq_eff=4.4e+01, igsq=0.95 Reset #7, asq_eff=4.3e+01, igsq=0.95 Reset #8, asq_eff=4.4e+01, igsq=0.95 Reset #9, asq_eff=4.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=4.32e+01, N_step=134 K_usable is not stable Results list length: 21 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 LPL [] MPL [] eq37 Before S: 13648149.05281614 eq37 S: 0.0001598947787518421 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Failed on igsq: 0.1 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.1 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=1.00e-01 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=1.3e+01, igsq=0.2 Reset #2, asq_eff=5.0e+00, igsq=0.2 Reset #3, asq_eff=3.4e+00, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=3.43e+00, N_step=114 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Failed on igsq: 0.3 Failed to find a finite solution. Reset #1, asq_eff=2.5e+01, igsq=0.3 Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.3 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=3.00e-01 and asq=2.53e+01, N_step=97 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Reset #1, asq_eff=9.9e+01, igsq=0.5 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.5 Reset #2, asq_eff=9.1e+01, igsq=0.5 Reset #3, asq_eff=8.0e+01, igsq=0.5 Reset #4, asq_eff=5.3e+01, igsq=0.5 Reset #5, asq_eff=5.1e+01, igsq=0.5 Steps remaining: 190, asq_eff=4.3e+01, igsq=0.5 Reset #6, asq_eff=4.4e+01, igsq=0.5 Reset #7, asq_eff=3.7e+01, igsq=0.5 Reset #8, asq_eff=3.2e+01, igsq=0.5 Reset #9, asq_eff=3.2e+01, igsq=0.5 Reset #10, asq_eff=3.1e+01, igsq=0.5 Steps remaining: 173, asq_eff=3.0e+01, igsq=0.5 Reset #11, asq_eff=3.1e+01, igsq=0.5 Reset #12, asq_eff=3.2e+01, igsq=0.5 Failed on igsq: 0.5 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.5 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.5 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.5 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=5.00e-01 and asq=3.17e+01, N_step=158 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=3.6e+01, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=3.56e+01, N_step=96 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=3.8e+02, igsq=0.85 Reset #2, asq_eff=3.0e+02, igsq=0.85 Steps remaining: 65, asq_eff=2.5e+02, igsq=0.85 Reset #3, asq_eff=1.6e+02, igsq=0.85 Reset #4, asq_eff=1.4e+02, igsq=0.85 Reset #5, asq_eff=1.1e+02, igsq=0.85 Steps remaining: 235, asq_eff=1.0e+02, igsq=0.85 Reset #6, asq_eff=9.3e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=9.35e+01, N_step=133 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=9.9e+01, igsq=0.9 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.9 Reset #2, asq_eff=9.1e+01, igsq=0.9 Reset #3, asq_eff=7.3e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=7.33e+01, N_step=101 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=1.9e+02, igsq=0.95 Reset #2, asq_eff=1.8e+02, igsq=0.95 Steps remaining: 60, asq_eff=1.6e+02, igsq=0.95 Reset #3, asq_eff=1.4e+02, igsq=0.95 Reset #4, asq_eff=1.1e+02, igsq=0.95 Reset #5, asq_eff=1.0e+02, igsq=0.95 Reset #6, asq_eff=9.7e+01, igsq=0.95 Steps remaining: 225, asq_eff=8.6e+01, igsq=0.95 Reset #7, asq_eff=8.9e+01, igsq=0.95 Reset #8, asq_eff=9.0e+01, igsq=0.95 Reset #9, asq_eff=7.6e+01, igsq=0.95 Reset #10, asq_eff=7.7e+01, igsq=0.95 Reset #11, asq_eff=7.6e+01, igsq=0.95 Reset #12, asq_eff=7.1e+01, igsq=0.95 Reset #13, asq_eff=7.1e+01, igsq=0.95 Steps remaining: 214, asq_eff=6.9e+01, igsq=0.95 Reset #14, asq_eff=7.1e+01, igsq=0.95 Reset #15, asq_eff=6.6e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=6.60e+01, N_step=162 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 Calculating Full Results Now: Captured stderr call 0%| | 0/6 [00:00<?, ?it/s] 17%|█▋ | 1/6 [07:15<36:16, 435.38s/it] 33%|███▎ | 2/6 [16:13<33:02, 495.68s/it] 50%|█████ | 3/6 [25:01<25:32, 510.76s/it] 67%|██████▋ | 4/6 [34:27<17:44, 532.38s/it] 83%|████████▎ | 5/6 [41:19<08:09, 489.01s/it] 100%|██████████| 6/6 [50:56<00:00, 519.03s/it] 100%|██████████| 6/6 [50:56<00:00, 509.49s/it] 0%| | 0/27 [00:00<?, ?it/s] 0%| | 0/27 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_DARMFOM' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 40.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 38 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_HiB[ExampleModels_working]
output
LPL [] MPL [] eq37 Before S: 7869.951747145676 eq37 S: 4.3374092114005687e-07 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Reset #1, asq_eff=1.2e+00, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.7e+00, igsq=0.85 Reset #2, asq_eff=1.3e+00, igsq=0.85 Reset #3, asq_eff=1.2e+00, igsq=0.85 Reset #4, asq_eff=1.2e+00, igsq=0.85 Reset #5, asq_eff=1.1e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #6, asq_eff=1.1e+00, igsq=0.85 Reset #7, asq_eff=1.1e+00, igsq=0.85 Reset #8, asq_eff=1.1e+00, igsq=0.85 Reset #9, asq_eff=1.1e+00, igsq=0.85 Reset #10, asq_eff=1.1e+00, igsq=0.85 Reset #11, asq_eff=1.1e+00, igsq=0.85 Reset #12, asq_eff=1.1e+00, igsq=0.85 Reset #13, asq_eff=1.1e+00, igsq=0.85 Reset #14, asq_eff=1.1e+00, igsq=0.85 Reset #15, asq_eff=1.1e+00, igsq=0.85 Reset #16, asq_eff=1.1e+00, igsq=0.85 Reset #17, asq_eff=1.1e+00, igsq=0.85 Reset #18, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #19, asq_eff=1.1e+00, igsq=0.85 Reset #20, asq_eff=1.1e+00, igsq=0.85 Reset #21, asq_eff=1.1e+00, igsq=0.85 Reset #22, asq_eff=1.1e+00, igsq=0.85 Reset #23, asq_eff=1.1e+00, igsq=0.85 Reset #24, asq_eff=1.1e+00, igsq=0.85 Reset #25, asq_eff=1.1e+00, igsq=0.85 Reset #26, asq_eff=1.1e+00, igsq=0.85 Reset #27, asq_eff=1.1e+00, igsq=0.85 Reset #28, asq_eff=1.1e+00, igsq=0.85 Reset #29, asq_eff=1.1e+00, igsq=0.85 Reset #30, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #31, asq_eff=1.1e+00, igsq=0.85 Reset #32, asq_eff=1.1e+00, igsq=0.85 Reset #33, asq_eff=1.1e+00, igsq=0.85 Reset #34, asq_eff=1.1e+00, igsq=0.85 Reset #35, asq_eff=1.1e+00, igsq=0.85 Reset #36, asq_eff=1.1e+00, igsq=0.85 Reset #37, asq_eff=1.1e+00, igsq=0.85 Reset #38, asq_eff=1.1e+00, igsq=0.85 Reset #39, asq_eff=1.1e+00, igsq=0.85 Reset #40, asq_eff=1.1e+00, igsq=0.85 Reset #41, asq_eff=1.1e+00, igsq=0.85 Reset #42, asq_eff=1.1e+00, igsq=0.85 Reset #43, asq_eff=1.1e+00, igsq=0.85 Reset #44, asq_eff=1.1e+00, igsq=0.85 Reset #45, asq_eff=1.1e+00, igsq=0.85 Reset #46, asq_eff=1.1e+00, igsq=0.85 Reset #47, asq_eff=1.1e+00, igsq=0.85 Reset #48, asq_eff=1.1e+00, igsq=0.85 Reset #49, asq_eff=1.1e+00, igsq=0.85 Reset #50, asq_eff=1.1e+00, igsq=0.85 Reset #51, asq_eff=1.1e+00, igsq=0.85 Reset #52, asq_eff=1.1e+00, igsq=0.85 Reset #53, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #54, asq_eff=1.1e+00, igsq=0.85 Reset #55, asq_eff=1.0e+00, igsq=0.85 Reset #56, asq_eff=1.0e+00, igsq=0.85 Reset #57, asq_eff=1.0e+00, igsq=0.85 Reset #58, asq_eff=1.1e+00, igsq=0.85 Reset #59, asq_eff=1.0e+00, igsq=0.85 Reset #60, asq_eff=1.0e+00, igsq=0.85 Reset #61, asq_eff=1.0e+00, igsq=0.85 Reset #62, asq_eff=1.0e+00, igsq=0.85 Reset #63, asq_eff=1.0e+00, igsq=0.85 Reset #64, asq_eff=1.0e+00, igsq=0.85 Reset #65, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #66, asq_eff=1.0e+00, igsq=0.85 Reset #67, asq_eff=1.0e+00, igsq=0.85 Reset #68, asq_eff=1.0e+00, igsq=0.85 Reset #69, asq_eff=1.0e+00, igsq=0.85 Reset #70, asq_eff=1.0e+00, igsq=0.85 Reset #71, asq_eff=1.0e+00, igsq=0.85 Reset #72, asq_eff=1.0e+00, igsq=0.85 Reset #73, asq_eff=1.0e+00, igsq=0.85 Reset #74, asq_eff=1.0e+00, igsq=0.85 Reset #75, asq_eff=1.0e+00, igsq=0.85 Reset #76, asq_eff=1.0e+00, igsq=0.85 Reset #77, asq_eff=1.0e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=1.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=6.5e+00, igsq=0.9 Reset #2, asq_eff=6.0e+00, igsq=0.9 Reset #3, asq_eff=5.7e+00, igsq=0.9 Reset #4, asq_eff=5.4e+00, igsq=0.9 Reset #5, asq_eff=5.1e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=5.08e+00, N_step=116 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=2.5e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.2e+01, igsq=0.95 Reset #5, asq_eff=2.1e+01, igsq=0.95 Reset #6, asq_eff=2.1e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.09e+01, N_step=113 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 LPL [] MPL [] eq37 Before S: 37632.250915137505 eq37 S: 1.1332189539189923e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=3.3e+00, igsq=0.85 Reset #2, asq_eff=3.0e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=3.02e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=9.9e+00, igsq=0.9 Reset #3, asq_eff=9.5e+00, igsq=0.9 Reset #4, asq_eff=8.9e+00, igsq=0.9 Reset #5, asq_eff=8.7e+00, igsq=0.9 Reset #6, asq_eff=8.7e+00, igsq=0.9 Reset #7, asq_eff=8.7e+00, igsq=0.9 Reset #8, asq_eff=8.6e+00, igsq=0.9 Reset #9, asq_eff=8.7e+00, igsq=0.9 Reset #10, asq_eff=8.6e+00, igsq=0.9 Reset #11, asq_eff=8.7e+00, igsq=0.9 Reset #12, asq_eff=8.6e+00, igsq=0.9 Reset #13, asq_eff=8.7e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #14, asq_eff=8.6e+00, igsq=0.9 Reset #15, asq_eff=8.5e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #16, asq_eff=8.6e+00, igsq=0.9 Reset #17, asq_eff=8.5e+00, igsq=0.9 Reset #18, asq_eff=8.6e+00, igsq=0.9 Reset #19, asq_eff=8.5e+00, igsq=0.9 Reset #20, asq_eff=8.6e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=8.57e+00, N_step=153 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.6e+01, igsq=0.95 Reset #4, asq_eff=2.6e+01, igsq=0.95 Reset #5, asq_eff=2.5e+01, igsq=0.95 Reset #6, asq_eff=2.5e+01, igsq=0.95 Reset #7, asq_eff=2.5e+01, igsq=0.95 Reset #8, asq_eff=2.5e+01, igsq=0.95 Reset #9, asq_eff=2.5e+01, igsq=0.95 Reset #10, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.5e+01, igsq=0.95 Reset #12, asq_eff=2.5e+01, igsq=0.95 Reset #13, asq_eff=2.5e+01, igsq=0.95 Reset #14, asq_eff=2.5e+01, igsq=0.95 Reset #15, asq_eff=2.5e+01, igsq=0.95 Reset #16, asq_eff=2.5e+01, igsq=0.95 Non-optimal solve at igsq=9.50e-01 and asq=2.48e+01, N_step=138 K_usable is not stable Results list length: 8 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 K_usable is not stable Results list length: 13 LPL [] MPL [] eq37 Before S: 179948.57772067082 eq37 S: 2.925877955560994e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=6.5e+00, igsq=0.0001 Reset #2, asq_eff=7.1e+00, igsq=0.0001 Reset #3, asq_eff=4.8e+00, igsq=0.0001 Reset #4, asq_eff=4.7e+00, igsq=0.0001 Reset #5, asq_eff=4.8e+00, igsq=0.0001 Reset #6, asq_eff=4.7e+00, igsq=0.0001 Reset #7, asq_eff=4.8e+00, igsq=0.0001 Reset #8, asq_eff=4.7e+00, igsq=0.0001 Steps remaining: 77, asq_eff=4.6e+00, igsq=0.0001 Reset #9, asq_eff=4.8e+00, igsq=0.0001 Reset #10, asq_eff=4.6e+00, igsq=0.0001 Reset #11, asq_eff=4.6e+00, igsq=0.0001 Reset #12, asq_eff=4.5e+00, igsq=0.0001 Reset #13, asq_eff=4.5e+00, igsq=0.0001 Reset #14, asq_eff=4.5e+00, igsq=0.0001 Reset #15, asq_eff=4.5e+00, igsq=0.0001 Reset #16, asq_eff=4.5e+00, igsq=0.0001 Steps remaining: 72, asq_eff=4.2e+00, igsq=0.0001 Reset #17, asq_eff=4.2e+00, igsq=0.0001 Reset #18, asq_eff=4.3e+00, igsq=0.0001 Reset #19, asq_eff=4.3e+00, igsq=0.0001 Reset #20, asq_eff=4.3e+00, igsq=0.0001 Reset #21, asq_eff=4.2e+00, igsq=0.0001 Reset #22, asq_eff=4.3e+00, igsq=0.0001 Reset #23, asq_eff=3.5e+00, igsq=0.0001 Steps remaining: 62, asq_eff=3.4e+00, igsq=0.0001 Reset #24, asq_eff=3.4e+00, igsq=0.0001 Reset #25, asq_eff=3.5e+00, igsq=0.0001 Reset #26, asq_eff=3.4e+00, igsq=0.0001 Reset #27, asq_eff=3.5e+00, igsq=0.0001 Reset #28, asq_eff=3.4e+00, igsq=0.0001 Reset #29, asq_eff=3.2e+00, igsq=0.0001 Reset #30, asq_eff=3.1e+00, igsq=0.0001 Reset #31, asq_eff=3.1e+00, igsq=0.0001 Reset #32, asq_eff=3.1e+00, igsq=0.0001 Reset #33, asq_eff=3.1e+00, igsq=0.0001 Reset #34, asq_eff=3.1e+00, igsq=0.0001 Reset #35, asq_eff=3.1e+00, igsq=0.0001 Reset #36, asq_eff=3.2e+00, igsq=0.0001 Reset #37, asq_eff=3.2e+00, igsq=0.0001 Reset #38, asq_eff=3.2e+00, igsq=0.0001 Reset #39, asq_eff=3.3e+00, igsq=0.0001 Steps remaining: 55, asq_eff=3.0e+00, igsq=0.0001 Reset #40, asq_eff=3.1e+00, igsq=0.0001 Reset #41, asq_eff=3.0e+00, igsq=0.0001 Reset #42, asq_eff=3.1e+00, igsq=0.0001 Reset #43, asq_eff=3.1e+00, igsq=0.0001 Reset #44, asq_eff=3.1e+00, igsq=0.0001 Reset #45, asq_eff=3.1e+00, igsq=0.0001 Reset #46, asq_eff=3.1e+00, igsq=0.0001 Reset #47, asq_eff=3.1e+00, igsq=0.0001 Reset #48, asq_eff=3.2e+00, igsq=0.0001 Reset #49, asq_eff=3.2e+00, igsq=0.0001 Steps remaining: 58, asq_eff=3.1e+00, igsq=0.0001 Reset #50, asq_eff=3.2e+00, igsq=0.0001 Reset #51, asq_eff=2.8e+00, igsq=0.0001 Reset #52, asq_eff=2.7e+00, igsq=0.0001 Reset #53, asq_eff=2.7e+00, igsq=0.0001 Reset #54, asq_eff=2.7e+00, igsq=0.0001 Reset #55, asq_eff=2.7e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=2.63e+00, N_step=302 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.4e+00, igsq=0.85 Reset #4, asq_eff=4.3e+00, igsq=0.85 Reset #5, asq_eff=4.3e+00, igsq=0.85 Reset #6, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.25e+00, N_step=118 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=5.0e+01, igsq=0.9 Reset #2, asq_eff=2.8e+01, igsq=0.9 Reset #3, asq_eff=2.2e+01, igsq=0.9 Reset #4, asq_eff=2.3e+01, igsq=0.9 Steps remaining: 130, asq_eff=1.6e+01, igsq=0.9 Reset #5, asq_eff=1.4e+01, igsq=0.9 Reset #6, asq_eff=1.3e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.34e+01, N_step=138 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.3e+01, igsq=0.95 Reset #3, asq_eff=2.9e+01, igsq=0.95 Reset #4, asq_eff=2.7e+01, igsq=0.95 Reset #5, asq_eff=2.6e+01, igsq=0.95 Reset #6, asq_eff=2.6e+01, igsq=0.95 Reset #7, asq_eff=2.6e+01, igsq=0.95 Reset #8, asq_eff=2.6e+01, igsq=0.95 Reset #9, asq_eff=2.6e+01, igsq=0.95 Reset #10, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.6e+01, igsq=0.95 Reset #12, asq_eff=2.6e+01, igsq=0.95 Reset #13, asq_eff=2.6e+01, igsq=0.95 Reset #14, asq_eff=2.6e+01, igsq=0.95 Reset #15, asq_eff=2.6e+01, igsq=0.95 Reset #16, asq_eff=2.6e+01, igsq=0.95 Reset #17, asq_eff=2.6e+01, igsq=0.95 Reset #18, asq_eff=2.6e+01, igsq=0.95 Reset #19, asq_eff=2.6e+01, igsq=0.95 Reset #20, asq_eff=2.6e+01, igsq=0.95 Reset #21, asq_eff=2.6e+01, igsq=0.95 Reset #22, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #23, asq_eff=2.6e+01, igsq=0.95 Reset #24, asq_eff=2.6e+01, igsq=0.95 Reset #25, asq_eff=2.6e+01, igsq=0.95 Reset #26, asq_eff=2.6e+01, igsq=0.95 Reset #27, asq_eff=2.6e+01, igsq=0.95 Reset #28, asq_eff=2.6e+01, igsq=0.95 Reset #29, asq_eff=2.6e+01, igsq=0.95 Reset #30, asq_eff=2.6e+01, igsq=0.95 Reset #31, asq_eff=2.6e+01, igsq=0.95 Reset #32, asq_eff=2.6e+01, igsq=0.95 Reset #33, asq_eff=2.6e+01, igsq=0.95 Reset #34, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #35, asq_eff=2.6e+01, igsq=0.95 Reset #36, asq_eff=2.6e+01, igsq=0.95 Reset #37, asq_eff=2.6e+01, igsq=0.95 Reset #38, asq_eff=2.6e+01, igsq=0.95 Reset #39, asq_eff=2.6e+01, igsq=0.95 Reset #40, asq_eff=2.6e+01, igsq=0.95 Reset #41, asq_eff=2.6e+01, igsq=0.95 Reset #42, asq_eff=2.6e+01, igsq=0.95 Reset #43, asq_eff=2.6e+01, igsq=0.95 Reset #44, asq_eff=2.6e+01, igsq=0.95 Reset #45, asq_eff=2.6e+01, igsq=0.95 Reset #46, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #47, asq_eff=2.6e+01, igsq=0.95 Reset #48, asq_eff=2.6e+01, igsq=0.95 Reset #49, asq_eff=2.6e+01, igsq=0.95 Reset #50, asq_eff=2.6e+01, igsq=0.95 Reset #51, asq_eff=2.6e+01, igsq=0.95 Reset #52, asq_eff=2.6e+01, igsq=0.95 Reset #53, asq_eff=2.6e+01, igsq=0.95 Reset #54, asq_eff=2.6e+01, igsq=0.95 Reset #55, asq_eff=2.6e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.61e+01, N_step=236 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 K_usable is not stable Results list length: 18 K_usable is not stable Results list length: 19 LPL [] MPL [] eq37 Before S: 860472.4238174664 eq37 S: 7.268977307434505e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=8.4e+00, igsq=0.0001 Reset #3, asq_eff=5.2e+00, igsq=0.0001 Reset #4, asq_eff=5.1e+00, igsq=0.0001 Reset #5, asq_eff=4.9e+00, igsq=0.0001 Steps remaining: 78, asq_eff=4.7e+00, igsq=0.0001 Reset #6, asq_eff=4.6e+00, igsq=0.0001 Reset #7, asq_eff=4.7e+00, igsq=0.0001 Reset #8, asq_eff=4.6e+00, igsq=0.0001 Reset #9, asq_eff=4.6e+00, igsq=0.0001 Reset #10, asq_eff=4.4e+00, igsq=0.0001 Reset #11, asq_eff=4.4e+00, igsq=0.0001 Reset #12, asq_eff=4.4e+00, igsq=0.0001 Reset #13, asq_eff=4.3e+00, igsq=0.0001 Reset #14, asq_eff=4.4e+00, igsq=0.0001 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.0001 Reset #15, asq_eff=4.2e+00, igsq=0.0001 Reset #16, asq_eff=4.3e+00, igsq=0.0001 Reset #17, asq_eff=4.3e+00, igsq=0.0001 Reset #18, asq_eff=4.2e+00, igsq=0.0001 Reset #19, asq_eff=4.2e+00, igsq=0.0001 Reset #20, asq_eff=4.3e+00, igsq=0.0001 Reset #21, asq_eff=4.1e+00, igsq=0.0001 Reset #22, asq_eff=4.0e+00, igsq=0.0001 Reset #23, asq_eff=4.1e+00, igsq=0.0001 Reset #24, asq_eff=4.1e+00, igsq=0.0001 Reset #25, asq_eff=4.2e+00, igsq=0.0001 Reset #26, asq_eff=4.1e+00, igsq=0.0001 Reset #27, asq_eff=4.1e+00, igsq=0.0001 Reset #28, asq_eff=4.1e+00, igsq=0.0001 Reset #29, asq_eff=4.1e+00, igsq=0.0001 Reset #30, asq_eff=4.0e+00, igsq=0.0001 Steps remaining: 65, asq_eff=3.7e+00, igsq=0.0001 Reset #31, asq_eff=3.8e+00, igsq=0.0001 Reset #32, asq_eff=3.8e+00, igsq=0.0001 Reset #33, asq_eff=3.7e+00, igsq=0.0001 Reset #34, asq_eff=3.5e+00, igsq=0.0001 Reset #35, asq_eff=3.3e+00, igsq=0.0001 Reset #36, asq_eff=3.4e+00, igsq=0.0001 Reset #37, asq_eff=3.3e+00, igsq=0.0001 Steps remaining: 60, asq_eff=3.3e+00, igsq=0.0001 Reset #38, asq_eff=3.4e+00, igsq=0.0001 Reset #39, asq_eff=3.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=3.35e+00, N_step=249 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.8e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #8, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #9, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #10, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #11, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #12, asq_eff=1.0e+00, igsq=0.7653668647301797 Reset #13, asq_eff=1.0e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.03e+00, N_step=143 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.8e+01, igsq=0.85 Reset #2, asq_eff=1.4e+01, igsq=0.85 Reset #3, asq_eff=1.3e+01, igsq=0.85 Reset #4, asq_eff=1.3e+01, igsq=0.85 Reset #5, asq_eff=1.2e+01, igsq=0.85 Reset #6, asq_eff=1.2e+01, igsq=0.85 Reset #7, asq_eff=1.2e+01, igsq=0.85 Reset #8, asq_eff=1.2e+01, igsq=0.85 Steps remaining: 122, asq_eff=1.1e+01, igsq=0.85 Reset #9, asq_eff=8.2e+00, igsq=0.85 Reset #10, asq_eff=7.9e+00, igsq=0.85 Reset #11, asq_eff=7.3e+00, igsq=0.85 Steps remaining: 99, asq_eff=7.1e+00, igsq=0.85 Reset #12, asq_eff=5.5e+00, igsq=0.85 Reset #13, asq_eff=4.8e+00, igsq=0.85 Reset #14, asq_eff=4.7e+00, igsq=0.85 Steps remaining: 77, asq_eff=4.6e+00, igsq=0.85 Reset #15, asq_eff=4.6e+00, igsq=0.85 Reset #16, asq_eff=4.7e+00, igsq=0.85 Reset #17, asq_eff=4.6e+00, igsq=0.85 Reset #18, asq_eff=4.7e+00, igsq=0.85 Reset #19, asq_eff=4.6e+00, igsq=0.85 Reset #20, asq_eff=4.7e+00, igsq=0.85 Reset #21, asq_eff=4.7e+00, igsq=0.85 Reset #22, asq_eff=4.7e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.65e+00, N_step=204 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=5.0e+01, igsq=0.9 Reset #2, asq_eff=5.4e+01, igsq=0.9 Reset #3, asq_eff=1.1e+01, igsq=0.9 Reset #4, asq_eff=1.1e+01, igsq=0.9 Reset #5, asq_eff=1.0e+01, igsq=0.9 Reset #6, asq_eff=1.1e+01, igsq=0.9 Reset #7, asq_eff=1.0e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.05e+01, N_step=130 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.2e+01, igsq=0.95 Reset #6, asq_eff=2.2e+01, igsq=0.95 Reset #7, asq_eff=2.2e+01, igsq=0.95 Reset #8, asq_eff=2.2e+01, igsq=0.95 Reset #9, asq_eff=2.2e+01, igsq=0.95 Reset #10, asq_eff=2.2e+01, igsq=0.95 Reset #11, asq_eff=2.2e+01, igsq=0.95 Reset #12, asq_eff=2.2e+01, igsq=0.95 Reset #13, asq_eff=2.2e+01, igsq=0.95 Reset #14, asq_eff=2.2e+01, igsq=0.95 Reset #15, asq_eff=2.2e+01, igsq=0.95 Reset #16, asq_eff=2.2e+01, igsq=0.95 Reset #17, asq_eff=2.2e+01, igsq=0.95 Reset #18, asq_eff=2.2e+01, igsq=0.95 Reset #19, asq_eff=2.2e+01, igsq=0.95 Reset #20, asq_eff=2.2e+01, igsq=0.95 Reset #21, asq_eff=2.2e+01, igsq=0.95 Reset #22, asq_eff=2.2e+01, igsq=0.95 Reset #23, asq_eff=2.2e+01, igsq=0.95 Reset #24, asq_eff=2.2e+01, igsq=0.95 Reset #25, asq_eff=2.2e+01, igsq=0.95 Reset #26, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.18e+01, N_step=165 K_usable is not stable Results list length: 20 K_usable is not stable Results list length: 21 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 LPL [] MPL [] eq37 Before S: 4114578.6066810265 eq37 S: 1.7045282641715127e-05 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=9.1e+00, igsq=0.0001 Reset #2, asq_eff=6.0e+00, igsq=0.0001 Reset #3, asq_eff=5.7e+00, igsq=0.0001 Reset #4, asq_eff=5.6e+00, igsq=0.0001 Reset #5, asq_eff=5.4e+00, igsq=0.0001 Reset #6, asq_eff=5.4e+00, igsq=0.0001 Reset #7, asq_eff=5.3e+00, igsq=0.0001 Steps remaining: 83, asq_eff=5.2e+00, igsq=0.0001 Reset #8, asq_eff=5.2e+00, igsq=0.0001 Reset #9, asq_eff=5.2e+00, igsq=0.0001 Reset #10, asq_eff=5.1e+00, igsq=0.0001 Reset #11, asq_eff=4.9e+00, igsq=0.0001 Reset #12, asq_eff=4.9e+00, igsq=0.0001 Reset #13, asq_eff=4.9e+00, igsq=0.0001 Reset #14, asq_eff=4.8e+00, igsq=0.0001 Reset #15, asq_eff=4.8e+00, igsq=0.0001 Reset #16, asq_eff=4.7e+00, igsq=0.0001 Reset #17, asq_eff=4.6e+00, igsq=0.0001 Reset #18, asq_eff=4.4e+00, igsq=0.0001 Reset #19, asq_eff=4.4e+00, igsq=0.0001 Reset #20, asq_eff=4.5e+00, igsq=0.0001 Reset #21, asq_eff=4.5e+00, igsq=0.0001 Reset #22, asq_eff=4.6e+00, igsq=0.0001 Reset #23, asq_eff=4.6e+00, igsq=0.0001 Reset #24, asq_eff=4.7e+00, igsq=0.0001 Reset #25, asq_eff=4.7e+00, igsq=0.0001 Reset #26, asq_eff=4.8e+00, igsq=0.0001 Reset #27, asq_eff=4.8e+00, igsq=0.0001 Reset #28, asq_eff=4.8e+00, igsq=0.0001 Reset #29, asq_eff=4.8e+00, igsq=0.0001 Reset #30, asq_eff=4.8e+00, igsq=0.0001 Reset #31, asq_eff=4.7e+00, igsq=0.0001 Steps remaining: 75, asq_eff=4.4e+00, igsq=0.0001 Reset #32, asq_eff=4.4e+00, igsq=0.0001 Reset #33, asq_eff=4.4e+00, igsq=0.0001 Reset #34, asq_eff=4.3e+00, igsq=0.0001 Reset #35, asq_eff=4.4e+00, igsq=0.0001 Reset #36, asq_eff=4.4e+00, igsq=0.0001 Reset #37, asq_eff=4.4e+00, igsq=0.0001 Reset #38, asq_eff=4.3e+00, igsq=0.0001 Steps remaining: 73, asq_eff=4.2e+00, igsq=0.0001 Reset #39, asq_eff=4.4e+00, igsq=0.0001 Reset #40, asq_eff=4.4e+00, igsq=0.0001 Reset #41, asq_eff=4.4e+00, igsq=0.0001 Reset #42, asq_eff=4.2e+00, igsq=0.0001 Reset #43, asq_eff=4.3e+00, igsq=0.0001 Reset #44, asq_eff=4.3e+00, igsq=0.0001 Reset #45, asq_eff=4.4e+00, igsq=0.0001 Steps remaining: 72, asq_eff=4.2e+00, igsq=0.0001 Reset #46, asq_eff=4.3e+00, igsq=0.0001 Reset #47, asq_eff=4.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=4.27e+00, N_step=281 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=2.3e+00, igsq=0.2 Reset #2, asq_eff=1.3e+00, igsq=0.2 Reset #3, asq_eff=1.3e+00, igsq=0.2 Reset #4, asq_eff=1.3e+00, igsq=0.2 Reset #5, asq_eff=1.3e+00, igsq=0.2 Reset #6, asq_eff=1.2e+00, igsq=0.2 Steps remaining: 8, asq_eff=1.2e+00, igsq=0.2 Reset #7, asq_eff=1.1e+00, igsq=0.2 Reset #8, asq_eff=1.1e+00, igsq=0.2 Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.2 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=2.00e-01 and asq=1.12e+00, N_step=132 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Non-optimal solve at igsq=5.00e-01 and asq=1.00e+00, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=6.5e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.5e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.3e+00, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=7.0e+01, igsq=0.85 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.85 Reset #2, asq_eff=7.6e+01, igsq=0.85 Reset #3, asq_eff=6.7e+01, igsq=0.85 Reset #4, asq_eff=3.8e+01, igsq=0.85 Reset #5, asq_eff=3.4e+01, igsq=0.85 Steps remaining: 177, asq_eff=3.3e+01, igsq=0.85 Reset #6, asq_eff=2.9e+01, igsq=0.85 Reset #7, asq_eff=2.6e+01, igsq=0.85 Steps remaining: 152, asq_eff=2.0e+01, igsq=0.85 Reset #8, asq_eff=2.1e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=2.08e+01, N_step=156 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.80e+01, N_step=98 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=2.7e+02, igsq=0.95 Steps remaining: 28, asq_eff=1.2e+02, igsq=0.95 Reset #2, asq_eff=1.3e+02, igsq=0.95 Reset #3, asq_eff=9.5e+01, igsq=0.95 Reset #4, asq_eff=9.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=9.26e+01, N_step=106 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 LPL [] MPL [] eq37 Before S: 19674946.39661376 eq37 S: 0.00014001149358547048 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=3.6e+01, igsq=0.0001 Reset #2, asq_eff=3.9e+01, igsq=0.0001 Reset #3, asq_eff=1.2e+01, igsq=0.0001 Reset #4, asq_eff=1.3e+01, igsq=0.0001 Reset #5, asq_eff=1.2e+01, igsq=0.0001 Reset #6, asq_eff=1.2e+01, igsq=0.0001 Reset #7, asq_eff=1.2e+01, igsq=0.0001 Reset #8, asq_eff=1.2e+01, igsq=0.0001 Reset #9, asq_eff=1.2e+01, igsq=0.0001 Reset #10, asq_eff=1.3e+01, igsq=0.0001 Reset #11, asq_eff=1.3e+01, igsq=0.0001 Reset #12, asq_eff=1.2e+01, igsq=0.0001 Reset #13, asq_eff=1.2e+01, igsq=0.0001 Reset #14, asq_eff=1.2e+01, igsq=0.0001 Steps remaining: 121, asq_eff=1.1e+01, igsq=0.0001 Reset #15, asq_eff=1.1e+01, igsq=0.0001 Reset #16, asq_eff=1.0e+01, igsq=0.0001 Reset #17, asq_eff=1.0e+01, igsq=0.0001 Reset #18, asq_eff=9.1e+00, igsq=0.0001 Reset #19, asq_eff=8.9e+00, igsq=0.0001 Reset #20, asq_eff=8.8e+00, igsq=0.0001 Reset #21, asq_eff=8.7e+00, igsq=0.0001 Reset #22, asq_eff=8.8e+00, igsq=0.0001 Reset #23, asq_eff=8.9e+00, igsq=0.0001 Reset #24, asq_eff=9.0e+00, igsq=0.0001 Reset #25, asq_eff=8.7e+00, igsq=0.0001 Reset #26, asq_eff=8.6e+00, igsq=0.0001 Reset #27, asq_eff=8.7e+00, igsq=0.0001 Reset #28, asq_eff=8.8e+00, igsq=0.0001 Reset #29, asq_eff=8.9e+00, igsq=0.0001 Reset #30, asq_eff=9.0e+00, igsq=0.0001 Reset #31, asq_eff=9.0e+00, igsq=0.0001 Reset #32, asq_eff=9.0e+00, igsq=0.0001 Reset #33, asq_eff=9.0e+00, igsq=0.0001 Reset #34, asq_eff=9.0e+00, igsq=0.0001 Reset #35, asq_eff=8.2e+00, igsq=0.0001 Reset #36, asq_eff=8.1e+00, igsq=0.0001 Reset #37, asq_eff=7.9e+00, igsq=0.0001 Reset #38, asq_eff=7.8e+00, igsq=0.0001 Reset #39, asq_eff=7.4e+00, igsq=0.0001 Reset #40, asq_eff=6.8e+00, igsq=0.0001 Reset #41, asq_eff=6.9e+00, igsq=0.0001 Reset #42, asq_eff=6.7e+00, igsq=0.0001 Reset #43, asq_eff=6.7e+00, igsq=0.0001 Steps remaining: 94, asq_eff=6.5e+00, igsq=0.0001 Reset #44, asq_eff=6.7e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=6.65e+00, N_step=276 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Reset #1, asq_eff=2.3e+00, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=2.3e+00, igsq=0.2 Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=111 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Reset #1, asq_eff=2.3e+00, igsq=0.3 Reset #2, asq_eff=1.8e+00, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Reset #1, asq_eff=1.7e+00, igsq=0.5 Reset #2, asq_eff=1.3e+00, igsq=0.5 Reset #3, asq_eff=1.2e+00, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Reset #1, asq_eff=7.0e+01, igsq=0.7653668647301797 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.7653668647301797 Reset #2, asq_eff=2.8e+01, igsq=0.7653668647301797 Reset #3, asq_eff=7.4e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=7.38e+00, N_step=120 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=1.4e+02, igsq=0.85 Steps remaining: 26, asq_eff=8.3e+01, igsq=0.85 Reset #2, asq_eff=2.0e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.96e+01, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=9.9e+01, igsq=0.9 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.9 Reset #2, asq_eff=9.1e+01, igsq=0.9 Reset #3, asq_eff=7.3e+01, igsq=0.9 Reset #4, asq_eff=7.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=7.17e+01, N_step=104 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.9e+01, igsq=0.95 Reset #3, asq_eff=3.7e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=3.71e+01, N_step=101 K_usable is not stable Results list length: 28 K_usable is not stable Results list length: 29 K_usable is not stable Results list length: 30 K_usable is not stable Results list length: 31 Calculating Full Results Now: Captured stderr call 0%| | 0/6 [00:00<?, ?it/s] 17%|█▋ | 1/6 [08:37<43:09, 517.90s/it] 33%|███▎ | 2/6 [16:28<32:40, 490.25s/it] 50%|█████ | 3/6 [26:20<26:49, 536.66s/it] 67%|██████▋ | 4/6 [36:14<18:38, 559.04s/it] 83%|████████▎ | 5/6 [45:32<09:18, 558.66s/it] 100%|██████████| 6/6 [54:08<00:00, 544.26s/it] 100%|██████████| 6/6 [54:08<00:00, 541.39s/it] 0%| | 0/31 [00:00<?, ?it/s] 0%| | 0/31 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_working' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 40.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 40 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_HiB[ExampleModels_working_F3]
output
LPL [] MPL [] eq37 Before S: 7869.938650147261 eq37 S: 1.1305166014655562e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.7e+00, igsq=0.85 Reset #2, asq_eff=1.3e+00, igsq=0.85 Reset #3, asq_eff=1.2e+00, igsq=0.85 Reset #4, asq_eff=1.2e+00, igsq=0.85 Reset #5, asq_eff=1.1e+00, igsq=0.85 Reset #6, asq_eff=1.1e+00, igsq=0.85 Reset #7, asq_eff=1.1e+00, igsq=0.85 Reset #8, asq_eff=1.1e+00, igsq=0.85 Reset #9, asq_eff=1.1e+00, igsq=0.85 Reset #10, asq_eff=1.1e+00, igsq=0.85 Reset #11, asq_eff=1.1e+00, igsq=0.85 Reset #12, asq_eff=1.1e+00, igsq=0.85 Reset #13, asq_eff=1.1e+00, igsq=0.85 Reset #14, asq_eff=1.1e+00, igsq=0.85 Reset #15, asq_eff=1.1e+00, igsq=0.85 Reset #16, asq_eff=1.1e+00, igsq=0.85 Reset #17, asq_eff=1.1e+00, igsq=0.85 Reset #18, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #19, asq_eff=1.1e+00, igsq=0.85 Reset #20, asq_eff=1.1e+00, igsq=0.85 Reset #21, asq_eff=1.1e+00, igsq=0.85 Reset #22, asq_eff=1.1e+00, igsq=0.85 Reset #23, asq_eff=1.1e+00, igsq=0.85 Reset #24, asq_eff=1.1e+00, igsq=0.85 Reset #25, asq_eff=1.1e+00, igsq=0.85 Reset #26, asq_eff=1.1e+00, igsq=0.85 Reset #27, asq_eff=1.1e+00, igsq=0.85 Reset #28, asq_eff=1.1e+00, igsq=0.85 Reset #29, asq_eff=1.1e+00, igsq=0.85 Reset #30, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.85 Reset #31, asq_eff=1.1e+00, igsq=0.85 Reset #32, asq_eff=1.1e+00, igsq=0.85 Reset #33, asq_eff=1.1e+00, igsq=0.85 Reset #34, asq_eff=1.1e+00, igsq=0.85 Reset #35, asq_eff=1.1e+00, igsq=0.85 Reset #36, asq_eff=1.1e+00, igsq=0.85 Reset #37, asq_eff=1.1e+00, igsq=0.85 Reset #38, asq_eff=1.1e+00, igsq=0.85 Reset #39, asq_eff=1.1e+00, igsq=0.85 Reset #40, asq_eff=1.1e+00, igsq=0.85 Reset #41, asq_eff=1.1e+00, igsq=0.85 Reset #42, asq_eff=1.1e+00, igsq=0.85 Reset #43, asq_eff=1.1e+00, igsq=0.85 Reset #44, asq_eff=1.1e+00, igsq=0.85 Reset #45, asq_eff=1.1e+00, igsq=0.85 Reset #46, asq_eff=1.1e+00, igsq=0.85 Reset #47, asq_eff=1.1e+00, igsq=0.85 Reset #48, asq_eff=1.1e+00, igsq=0.85 Reset #49, asq_eff=1.1e+00, igsq=0.85 Reset #50, asq_eff=1.1e+00, igsq=0.85 Reset #51, asq_eff=1.1e+00, igsq=0.85 Reset #52, asq_eff=1.1e+00, igsq=0.85 Reset #53, asq_eff=1.1e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #54, asq_eff=1.1e+00, igsq=0.85 Reset #55, asq_eff=1.0e+00, igsq=0.85 Reset #56, asq_eff=1.1e+00, igsq=0.85 Reset #57, asq_eff=1.0e+00, igsq=0.85 Reset #58, asq_eff=1.1e+00, igsq=0.85 Reset #59, asq_eff=1.0e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #60, asq_eff=1.1e+00, igsq=0.85 Reset #61, asq_eff=1.0e+00, igsq=0.85 Reset #62, asq_eff=1.1e+00, igsq=0.85 Reset #63, asq_eff=1.0e+00, igsq=0.85 Reset #64, asq_eff=1.0e+00, igsq=0.85 Reset #65, asq_eff=1.0e+00, igsq=0.85 Steps remaining: 1, asq_eff=1.0e+00, igsq=0.85 Reset #66, asq_eff=1.0e+00, igsq=0.85 Reset #67, asq_eff=1.0e+00, igsq=0.85 Reset #68, asq_eff=1.0e+00, igsq=0.85 Reset #69, asq_eff=1.0e+00, igsq=0.85 Reset #70, asq_eff=1.0e+00, igsq=0.85 Reset #71, asq_eff=1.0e+00, igsq=0.85 Reset #72, asq_eff=1.0e+00, igsq=0.85 Reset #73, asq_eff=1.0e+00, igsq=0.85 Reset #74, asq_eff=1.0e+00, igsq=0.85 Reset #75, asq_eff=1.0e+00, igsq=0.85 Reset #76, asq_eff=1.0e+00, igsq=0.85 Reset #77, asq_eff=1.0e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=1.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=6.5e+00, igsq=0.9 Reset #2, asq_eff=6.0e+00, igsq=0.9 Reset #3, asq_eff=5.7e+00, igsq=0.9 Reset #4, asq_eff=5.4e+00, igsq=0.9 Reset #5, asq_eff=5.4e+00, igsq=0.9 Reset #6, asq_eff=5.5e+00, igsq=0.9 Reset #7, asq_eff=5.1e+00, igsq=0.9 Reset #8, asq_eff=5.1e+00, igsq=0.9 Steps remaining: 81, asq_eff=5.0e+00, igsq=0.9 Reset #9, asq_eff=5.1e+00, igsq=0.9 Reset #10, asq_eff=5.0e+00, igsq=0.9 Reset #11, asq_eff=5.0e+00, igsq=0.9 Reset #12, asq_eff=5.1e+00, igsq=0.9 Reset #13, asq_eff=5.0e+00, igsq=0.9 Reset #14, asq_eff=5.0e+00, igsq=0.9 Reset #15, asq_eff=4.9e+00, igsq=0.9 Reset #16, asq_eff=4.9e+00, igsq=0.9 Reset #17, asq_eff=4.9e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #18, asq_eff=4.9e+00, igsq=0.9 Reset #19, asq_eff=4.8e+00, igsq=0.9 Steps remaining: 78, asq_eff=4.7e+00, igsq=0.9 Reset #20, asq_eff=4.9e+00, igsq=0.9 Reset #21, asq_eff=4.8e+00, igsq=0.9 Reset #22, asq_eff=4.9e+00, igsq=0.9 Reset #23, asq_eff=4.8e+00, igsq=0.9 Reset #24, asq_eff=4.9e+00, igsq=0.9 Reset #25, asq_eff=4.8e+00, igsq=0.9 Reset #26, asq_eff=4.9e+00, igsq=0.9 Reset #27, asq_eff=4.7e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=4.72e+00, N_step=175 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=7.0e+01, igsq=0.95 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.1e+01, igsq=0.95 Reset #6, asq_eff=2.1e+01, igsq=0.95 Reset #7, asq_eff=2.1e+01, igsq=0.95 Reset #8, asq_eff=2.1e+01, igsq=0.95 Reset #9, asq_eff=2.1e+01, igsq=0.95 Reset #10, asq_eff=2.1e+01, igsq=0.95 Reset #11, asq_eff=2.1e+01, igsq=0.95 Reset #12, asq_eff=2.1e+01, igsq=0.95 Reset #13, asq_eff=2.1e+01, igsq=0.95 Reset #14, asq_eff=2.1e+01, igsq=0.95 Reset #15, asq_eff=2.1e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.07e+01, N_step=140 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 LPL [] MPL [] eq37 Before S: 37632.177506541106 eq37 S: 2.618565156886644e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=2.1e+00, igsq=0.0001 Reset #3, asq_eff=1.6e+00, igsq=0.0001 Reset #4, asq_eff=1.6e+00, igsq=0.0001 Steps remaining: 20, asq_eff=1.5e+00, igsq=0.0001 Reset #5, asq_eff=1.6e+00, igsq=0.0001 Reset #6, asq_eff=1.4e+00, igsq=0.0001 Reset #7, asq_eff=1.3e+00, igsq=0.0001 Reset #8, asq_eff=1.4e+00, igsq=0.0001 Reset #9, asq_eff=1.3e+00, igsq=0.0001 Reset #10, asq_eff=1.3e+00, igsq=0.0001 Steps remaining: 10, asq_eff=1.2e+00, igsq=0.0001 Reset #11, asq_eff=1.2e+00, igsq=0.0001 Reset #12, asq_eff=1.2e+00, igsq=0.0001 Reset #13, asq_eff=1.2e+00, igsq=0.0001 Reset #14, asq_eff=1.2e+00, igsq=0.0001 Reset #15, asq_eff=1.2e+00, igsq=0.0001 Reset #16, asq_eff=1.2e+00, igsq=0.0001 Reset #17, asq_eff=1.2e+00, igsq=0.0001 Reset #18, asq_eff=1.2e+00, igsq=0.0001 Reset #19, asq_eff=1.2e+00, igsq=0.0001 Reset #20, asq_eff=1.2e+00, igsq=0.0001 Steps remaining: 10, asq_eff=1.2e+00, igsq=0.0001 Reset #21, asq_eff=1.2e+00, igsq=0.0001 Reset #22, asq_eff=1.2e+00, igsq=0.0001 Reset #23, asq_eff=1.2e+00, igsq=0.0001 Reset #24, asq_eff=1.2e+00, igsq=0.0001 Reset #25, asq_eff=1.2e+00, igsq=0.0001 Reset #26, asq_eff=1.2e+00, igsq=0.0001 Reset #27, asq_eff=1.2e+00, igsq=0.0001 Reset #28, asq_eff=1.2e+00, igsq=0.0001 Reset #29, asq_eff=1.2e+00, igsq=0.0001 Reset #30, asq_eff=1.1e+00, igsq=0.0001 Reset #31, asq_eff=1.1e+00, igsq=0.0001 Reset #32, asq_eff=1.1e+00, igsq=0.0001 Reset #33, asq_eff=1.2e+00, igsq=0.0001 Reset #34, asq_eff=1.2e+00, igsq=0.0001 Reset #35, asq_eff=1.2e+00, igsq=0.0001 Reset #36, asq_eff=1.1e+00, igsq=0.0001 Reset #37, asq_eff=1.1e+00, igsq=0.0001 Steps remaining: 5, asq_eff=1.1e+00, igsq=0.0001 Reset #38, asq_eff=1.1e+00, igsq=0.0001 Reset #39, asq_eff=1.1e+00, igsq=0.0001 Reset #40, asq_eff=1.1e+00, igsq=0.0001 Reset #41, asq_eff=1.1e+00, igsq=0.0001 Reset #42, asq_eff=1.1e+00, igsq=0.0001 Reset #43, asq_eff=1.2e+00, igsq=0.0001 Reset #44, asq_eff=1.2e+00, igsq=0.0001 Reset #45, asq_eff=1.2e+00, igsq=0.0001 Reset #46, asq_eff=1.2e+00, igsq=0.0001 Steps remaining: 7, asq_eff=1.1e+00, igsq=0.0001 Reset #47, asq_eff=1.2e+00, igsq=0.0001 Reset #48, asq_eff=1.1e+00, igsq=0.0001 Reset #49, asq_eff=1.1e+00, igsq=0.0001 Reset #50, asq_eff=1.1e+00, igsq=0.0001 Reset #51, asq_eff=1.1e+00, igsq=0.0001 Reset #52, asq_eff=1.1e+00, igsq=0.0001 Reset #53, asq_eff=1.1e+00, igsq=0.0001 Reset #54, asq_eff=1.0e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=1.01e+00, N_step=304 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=3.3e+00, igsq=0.85 Reset #2, asq_eff=3.0e+00, igsq=0.85 Reset #3, asq_eff=2.9e+00, igsq=0.85 Reset #4, asq_eff=2.8e+00, igsq=0.85 Reset #5, asq_eff=2.7e+00, igsq=0.85 Reset #6, asq_eff=2.7e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Non-optimal solve at igsq=8.50e-01 and asq=2.66e+00, N_step=120 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=9.9e+00, igsq=0.9 Reset #3, asq_eff=9.5e+00, igsq=0.9 Reset #4, asq_eff=8.9e+00, igsq=0.9 Reset #5, asq_eff=8.7e+00, igsq=0.9 Reset #6, asq_eff=8.7e+00, igsq=0.9 Reset #7, asq_eff=8.7e+00, igsq=0.9 Reset #8, asq_eff=8.7e+00, igsq=0.9 Reset #9, asq_eff=8.7e+00, igsq=0.9 Steps remaining: 108, asq_eff=8.5e+00, igsq=0.9 Reset #10, asq_eff=8.6e+00, igsq=0.9 Reset #11, asq_eff=8.7e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=8.65e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.6e+01, igsq=0.95 Reset #4, asq_eff=2.6e+01, igsq=0.95 Reset #5, asq_eff=2.5e+01, igsq=0.95 Reset #6, asq_eff=2.5e+01, igsq=0.95 Reset #7, asq_eff=2.5e+01, igsq=0.95 Reset #8, asq_eff=2.5e+01, igsq=0.95 Reset #9, asq_eff=2.5e+01, igsq=0.95 Reset #10, asq_eff=2.5e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.48e+01, N_step=123 K_usable is not stable Results list length: 8 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 K_usable is not stable Results list length: 13 LPL [] MPL [] eq37 Before S: 179948.13522097064 eq37 S: 3.234085139095645e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=4.6e+00, igsq=0.0001 Reset #2, asq_eff=4.2e+00, igsq=0.0001 Reset #3, asq_eff=4.4e+00, igsq=0.0001 Reset #4, asq_eff=4.5e+00, igsq=0.0001 Reset #5, asq_eff=4.4e+00, igsq=0.0001 Reset #6, asq_eff=3.9e+00, igsq=0.0001 Steps remaining: 67, asq_eff=3.8e+00, igsq=0.0001 Reset #7, asq_eff=3.9e+00, igsq=0.0001 Reset #8, asq_eff=3.5e+00, igsq=0.0001 Reset #9, asq_eff=3.5e+00, igsq=0.0001 Reset #10, asq_eff=3.5e+00, igsq=0.0001 Reset #11, asq_eff=3.4e+00, igsq=0.0001 Reset #12, asq_eff=3.4e+00, igsq=0.0001 Reset #13, asq_eff=3.4e+00, igsq=0.0001 Reset #14, asq_eff=3.4e+00, igsq=0.0001 Steps remaining: 61, asq_eff=3.4e+00, igsq=0.0001 Reset #15, asq_eff=3.4e+00, igsq=0.0001 Reset #16, asq_eff=3.2e+00, igsq=0.0001 Reset #17, asq_eff=3.3e+00, igsq=0.0001 Reset #18, asq_eff=3.3e+00, igsq=0.0001 Reset #19, asq_eff=3.2e+00, igsq=0.0001 Reset #20, asq_eff=3.2e+00, igsq=0.0001 Reset #21, asq_eff=2.9e+00, igsq=0.0001 Reset #22, asq_eff=3.0e+00, igsq=0.0001 Reset #23, asq_eff=3.0e+00, igsq=0.0001 Reset #24, asq_eff=3.0e+00, igsq=0.0001 Reset #25, asq_eff=3.0e+00, igsq=0.0001 Reset #26, asq_eff=3.0e+00, igsq=0.0001 Reset #27, asq_eff=3.0e+00, igsq=0.0001 Reset #28, asq_eff=3.0e+00, igsq=0.0001 Reset #29, asq_eff=2.8e+00, igsq=0.0001 Reset #30, asq_eff=2.8e+00, igsq=0.0001 Reset #31, asq_eff=2.8e+00, igsq=0.0001 Steps remaining: 52, asq_eff=2.8e+00, igsq=0.0001 Reset #32, asq_eff=2.9e+00, igsq=0.0001 Reset #33, asq_eff=2.9e+00, igsq=0.0001 Reset #34, asq_eff=2.9e+00, igsq=0.0001 Reset #35, asq_eff=2.9e+00, igsq=0.0001 Reset #36, asq_eff=2.9e+00, igsq=0.0001 Reset #37, asq_eff=2.8e+00, igsq=0.0001 Reset #38, asq_eff=2.8e+00, igsq=0.0001 Reset #39, asq_eff=2.7e+00, igsq=0.0001 Steps remaining: 50, asq_eff=2.7e+00, igsq=0.0001 Reset #40, asq_eff=2.7e+00, igsq=0.0001 Reset #41, asq_eff=2.6e+00, igsq=0.0001 Reset #42, asq_eff=2.5e+00, igsq=0.0001 Reset #43, asq_eff=2.5e+00, igsq=0.0001 Reset #44, asq_eff=2.5e+00, igsq=0.0001 Reset #45, asq_eff=2.5e+00, igsq=0.0001 Reset #46, asq_eff=2.5e+00, igsq=0.0001 Reset #47, asq_eff=2.5e+00, igsq=0.0001 Steps remaining: 46, asq_eff=2.5e+00, igsq=0.0001 Reset #48, asq_eff=2.4e+00, igsq=0.0001 Reset #49, asq_eff=2.4e+00, igsq=0.0001 Reset #50, asq_eff=2.4e+00, igsq=0.0001 Reset #51, asq_eff=2.5e+00, igsq=0.0001 Reset #52, asq_eff=2.5e+00, igsq=0.0001 Reset #53, asq_eff=2.3e+00, igsq=0.0001 Reset #54, asq_eff=2.3e+00, igsq=0.0001 Reset #55, asq_eff=2.3e+00, igsq=0.0001 Steps remaining: 42, asq_eff=2.3e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=2.23e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.00e+00, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.4e+00, igsq=0.85 Reset #4, asq_eff=4.3e+00, igsq=0.85 Reset #5, asq_eff=4.3e+00, igsq=0.85 Reset #6, asq_eff=4.2e+00, igsq=0.85 Reset #7, asq_eff=4.3e+00, igsq=0.85 Reset #8, asq_eff=4.2e+00, igsq=0.85 Reset #9, asq_eff=4.3e+00, igsq=0.85 Reset #10, asq_eff=4.2e+00, igsq=0.85 Reset #11, asq_eff=4.3e+00, igsq=0.85 Reset #12, asq_eff=4.2e+00, igsq=0.85 Reset #13, asq_eff=4.2e+00, igsq=0.85 Reset #14, asq_eff=4.2e+00, igsq=0.85 Reset #15, asq_eff=4.3e+00, igsq=0.85 Reset #16, asq_eff=4.2e+00, igsq=0.85 Reset #17, asq_eff=4.2e+00, igsq=0.85 Reset #18, asq_eff=4.2e+00, igsq=0.85 Reset #19, asq_eff=4.2e+00, igsq=0.85 Reset #20, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #21, asq_eff=4.2e+00, igsq=0.85 Reset #22, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #23, asq_eff=4.2e+00, igsq=0.85 Reset #24, asq_eff=4.2e+00, igsq=0.85 Reset #25, asq_eff=4.2e+00, igsq=0.85 Reset #26, asq_eff=4.2e+00, igsq=0.85 Reset #27, asq_eff=4.2e+00, igsq=0.85 Reset #28, asq_eff=4.2e+00, igsq=0.85 Reset #29, asq_eff=4.2e+00, igsq=0.85 Reset #30, asq_eff=4.2e+00, igsq=0.85 Reset #31, asq_eff=4.2e+00, igsq=0.85 Reset #32, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #33, asq_eff=4.2e+00, igsq=0.85 Reset #34, asq_eff=4.2e+00, igsq=0.85 Reset #35, asq_eff=4.2e+00, igsq=0.85 Reset #36, asq_eff=4.2e+00, igsq=0.85 Reset #37, asq_eff=4.2e+00, igsq=0.85 Reset #38, asq_eff=4.2e+00, igsq=0.85 Reset #39, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #40, asq_eff=4.2e+00, igsq=0.85 Reset #41, asq_eff=4.2e+00, igsq=0.85 Reset #42, asq_eff=4.2e+00, igsq=0.85 Reset #43, asq_eff=4.2e+00, igsq=0.85 Reset #44, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #45, asq_eff=4.2e+00, igsq=0.85 Reset #46, asq_eff=4.2e+00, igsq=0.85 Reset #47, asq_eff=4.2e+00, igsq=0.85 Reset #48, asq_eff=4.2e+00, igsq=0.85 Reset #49, asq_eff=4.2e+00, igsq=0.85 Reset #50, asq_eff=4.2e+00, igsq=0.85 Reset #51, asq_eff=4.2e+00, igsq=0.85 Reset #52, asq_eff=4.2e+00, igsq=0.85 Reset #53, asq_eff=4.2e+00, igsq=0.85 Reset #54, asq_eff=4.2e+00, igsq=0.85 Reset #55, asq_eff=4.2e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #56, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #57, asq_eff=4.1e+00, igsq=0.85 Reset #58, asq_eff=4.2e+00, igsq=0.85 Reset #59, asq_eff=4.1e+00, igsq=0.85 Reset #60, asq_eff=4.2e+00, igsq=0.85 Reset #61, asq_eff=4.1e+00, igsq=0.85 Reset #62, asq_eff=4.2e+00, igsq=0.85 Reset #63, asq_eff=4.1e+00, igsq=0.85 Reset #64, asq_eff=4.2e+00, igsq=0.85 Reset #65, asq_eff=4.1e+00, igsq=0.85 Reset #66, asq_eff=4.2e+00, igsq=0.85 Reset #67, asq_eff=4.1e+00, igsq=0.85 Reset #68, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Reset #69, asq_eff=4.1e+00, igsq=0.85 Reset #70, asq_eff=4.2e+00, igsq=0.85 Reset #71, asq_eff=4.1e+00, igsq=0.85 Reset #72, asq_eff=4.2e+00, igsq=0.85 Reset #73, asq_eff=4.1e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Reset #74, asq_eff=4.2e+00, igsq=0.85 Reset #75, asq_eff=4.1e+00, igsq=0.85 Reset #76, asq_eff=4.2e+00, igsq=0.85 Reset #77, asq_eff=4.1e+00, igsq=0.85 Reset #78, asq_eff=4.2e+00, igsq=0.85 Reset #79, asq_eff=4.1e+00, igsq=0.85 Reset #80, asq_eff=4.2e+00, igsq=0.85 Steps remaining: 71, asq_eff=4.1e+00, igsq=0.85 Non-optimal solve at igsq=8.50e-01 and asq=4.00e+00, N_step=301 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Reset #2, asq_eff=1.7e+01, igsq=0.9 Reset #3, asq_eff=1.3e+01, igsq=0.9 Reset #4, asq_eff=1.3e+01, igsq=0.9 Reset #5, asq_eff=1.2e+01, igsq=0.9 Reset #6, asq_eff=1.1e+01, igsq=0.9 Reset #7, asq_eff=1.1e+01, igsq=0.9 Reset #8, asq_eff=1.1e+01, igsq=0.9 Reset #9, asq_eff=1.1e+01, igsq=0.9 Reset #10, asq_eff=1.1e+01, igsq=0.9 Reset #11, asq_eff=1.1e+01, igsq=0.9 Reset #12, asq_eff=1.1e+01, igsq=0.9 Reset #13, asq_eff=1.1e+01, igsq=0.9 Reset #14, asq_eff=1.1e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.09e+01, N_step=143 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.3e+01, igsq=0.95 Reset #3, asq_eff=2.9e+01, igsq=0.95 Reset #4, asq_eff=2.7e+01, igsq=0.95 Reset #5, asq_eff=2.6e+01, igsq=0.95 Reset #6, asq_eff=2.6e+01, igsq=0.95 Reset #7, asq_eff=2.6e+01, igsq=0.95 Reset #8, asq_eff=2.6e+01, igsq=0.95 Reset #9, asq_eff=2.6e+01, igsq=0.95 Reset #10, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.6e+01, igsq=0.95 Reset #12, asq_eff=2.6e+01, igsq=0.95 Reset #13, asq_eff=2.6e+01, igsq=0.95 Reset #14, asq_eff=2.6e+01, igsq=0.95 Reset #15, asq_eff=2.6e+01, igsq=0.95 Reset #16, asq_eff=2.6e+01, igsq=0.95 Reset #17, asq_eff=2.6e+01, igsq=0.95 Reset #18, asq_eff=2.6e+01, igsq=0.95 Reset #19, asq_eff=2.6e+01, igsq=0.95 Reset #20, asq_eff=2.6e+01, igsq=0.95 Reset #21, asq_eff=2.6e+01, igsq=0.95 Reset #22, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #23, asq_eff=2.6e+01, igsq=0.95 Reset #24, asq_eff=2.6e+01, igsq=0.95 Reset #25, asq_eff=2.6e+01, igsq=0.95 Reset #26, asq_eff=2.6e+01, igsq=0.95 Reset #27, asq_eff=2.6e+01, igsq=0.95 Reset #28, asq_eff=2.6e+01, igsq=0.95 Reset #29, asq_eff=2.6e+01, igsq=0.95 Reset #30, asq_eff=2.6e+01, igsq=0.95 Reset #31, asq_eff=2.6e+01, igsq=0.95 Reset #32, asq_eff=2.6e+01, igsq=0.95 Reset #33, asq_eff=2.6e+01, igsq=0.95 Reset #34, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #35, asq_eff=2.6e+01, igsq=0.95 Reset #36, asq_eff=2.6e+01, igsq=0.95 Reset #37, asq_eff=2.6e+01, igsq=0.95 Reset #38, asq_eff=2.6e+01, igsq=0.95 Reset #39, asq_eff=2.6e+01, igsq=0.95 Reset #40, asq_eff=2.6e+01, igsq=0.95 Reset #41, asq_eff=2.6e+01, igsq=0.95 Reset #42, asq_eff=2.6e+01, igsq=0.95 Reset #43, asq_eff=2.6e+01, igsq=0.95 Reset #44, asq_eff=2.6e+01, igsq=0.95 Reset #45, asq_eff=2.6e+01, igsq=0.95 Reset #46, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #47, asq_eff=2.6e+01, igsq=0.95 Reset #48, asq_eff=2.6e+01, igsq=0.95 Reset #49, asq_eff=2.6e+01, igsq=0.95 Reset #50, asq_eff=2.6e+01, igsq=0.95 Reset #51, asq_eff=2.6e+01, igsq=0.95 Reset #52, asq_eff=2.6e+01, igsq=0.95 Reset #53, asq_eff=2.6e+01, igsq=0.95 Reset #54, asq_eff=2.6e+01, igsq=0.95 Reset #55, asq_eff=2.6e+01, igsq=0.95 Reset #56, asq_eff=2.6e+01, igsq=0.95 Reset #57, asq_eff=2.6e+01, igsq=0.95 Reset #58, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #59, asq_eff=2.6e+01, igsq=0.95 Reset #60, asq_eff=2.6e+01, igsq=0.95 Reset #61, asq_eff=2.6e+01, igsq=0.95 Reset #62, asq_eff=2.6e+01, igsq=0.95 Reset #63, asq_eff=2.6e+01, igsq=0.95 Reset #64, asq_eff=2.6e+01, igsq=0.95 Reset #65, asq_eff=2.6e+01, igsq=0.95 Reset #66, asq_eff=2.6e+01, igsq=0.95 Reset #67, asq_eff=2.6e+01, igsq=0.95 Reset #68, asq_eff=2.6e+01, igsq=0.95 Reset #69, asq_eff=2.6e+01, igsq=0.95 Reset #70, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #71, asq_eff=2.6e+01, igsq=0.95 Reset #72, asq_eff=2.6e+01, igsq=0.95 Reset #73, asq_eff=2.6e+01, igsq=0.95 Reset #74, asq_eff=2.6e+01, igsq=0.95 Reset #75, asq_eff=2.6e+01, igsq=0.95 Reset #76, asq_eff=2.6e+01, igsq=0.95 Reset #77, asq_eff=2.6e+01, igsq=0.95 Reset #78, asq_eff=2.6e+01, igsq=0.95 Reset #79, asq_eff=2.6e+01, igsq=0.95 Reset #80, asq_eff=2.6e+01, igsq=0.95 Reset #81, asq_eff=2.6e+01, igsq=0.95 Reset #82, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Non-optimal solve at igsq=9.50e-01 and asq=2.49e+01, N_step=301 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 K_usable is not stable Results list length: 18 LPL [] MPL [] eq37 Before S: 860469.2442192244 eq37 S: 8.678411327729532e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=6.5e+00, igsq=0.0001 Reset #2, asq_eff=7.1e+00, igsq=0.0001 Reset #3, asq_eff=6.2e+00, igsq=0.0001 Reset #4, asq_eff=6.4e+00, igsq=0.0001 Reset #5, asq_eff=6.3e+00, igsq=0.0001 Reset #6, asq_eff=6.4e+00, igsq=0.0001 Reset #7, asq_eff=6.3e+00, igsq=0.0001 Reset #8, asq_eff=6.1e+00, igsq=0.0001 Steps remaining: 90, asq_eff=6.0e+00, igsq=0.0001 Reset #9, asq_eff=5.3e+00, igsq=0.0001 Reset #10, asq_eff=5.3e+00, igsq=0.0001 Reset #11, asq_eff=5.3e+00, igsq=0.0001 Reset #12, asq_eff=5.3e+00, igsq=0.0001 Reset #13, asq_eff=5.4e+00, igsq=0.0001 Reset #14, asq_eff=5.2e+00, igsq=0.0001 Reset #15, asq_eff=5.3e+00, igsq=0.0001 Steps remaining: 83, asq_eff=5.2e+00, igsq=0.0001 Reset #16, asq_eff=5.3e+00, igsq=0.0001 Reset #17, asq_eff=5.4e+00, igsq=0.0001 Reset #18, asq_eff=4.8e+00, igsq=0.0001 Reset #19, asq_eff=4.6e+00, igsq=0.0001 Reset #20, asq_eff=4.6e+00, igsq=0.0001 Reset #21, asq_eff=4.7e+00, igsq=0.0001 Reset #22, asq_eff=4.7e+00, igsq=0.0001 Reset #23, asq_eff=4.8e+00, igsq=0.0001 Reset #24, asq_eff=4.6e+00, igsq=0.0001 Reset #25, asq_eff=4.6e+00, igsq=0.0001 Reset #26, asq_eff=4.6e+00, igsq=0.0001 Reset #27, asq_eff=4.7e+00, igsq=0.0001 Reset #28, asq_eff=4.7e+00, igsq=0.0001 Reset #29, asq_eff=4.7e+00, igsq=0.0001 Reset #30, asq_eff=4.7e+00, igsq=0.0001 Reset #31, asq_eff=4.8e+00, igsq=0.0001 Reset #32, asq_eff=4.3e+00, igsq=0.0001 Reset #33, asq_eff=4.0e+00, igsq=0.0001 Reset #34, asq_eff=4.0e+00, igsq=0.0001 Reset #35, asq_eff=4.1e+00, igsq=0.0001 Reset #36, asq_eff=4.1e+00, igsq=0.0001 Reset #37, asq_eff=4.0e+00, igsq=0.0001 Reset #38, asq_eff=3.9e+00, igsq=0.0001 Reset #39, asq_eff=3.8e+00, igsq=0.0001 Reset #40, asq_eff=3.8e+00, igsq=0.0001 Reset #41, asq_eff=3.6e+00, igsq=0.0001 Reset #42, asq_eff=3.6e+00, igsq=0.0001 Reset #43, asq_eff=3.7e+00, igsq=0.0001 Reset #44, asq_eff=3.7e+00, igsq=0.0001 Reset #45, asq_eff=3.8e+00, igsq=0.0001 Reset #46, asq_eff=3.8e+00, igsq=0.0001 Reset #47, asq_eff=3.8e+00, igsq=0.0001 Reset #48, asq_eff=3.8e+00, igsq=0.0001 Reset #49, asq_eff=3.6e+00, igsq=0.0001 Reset #50, asq_eff=3.6e+00, igsq=0.0001 Steps remaining: 62, asq_eff=3.4e+00, igsq=0.0001 Reset #51, asq_eff=3.5e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=3.47e+00, N_step=303 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=2.3e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.3e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.2e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.1e+00, igsq=0.7653668647301797 Steps remaining: 3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.0e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.04e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.8e+00, igsq=0.85 Reset #4, asq_eff=4.7e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.72e+00, N_step=111 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.2e+01, igsq=0.9 Reset #3, asq_eff=1.1e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.13e+01, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.3e+01, igsq=0.95 Reset #5, asq_eff=2.2e+01, igsq=0.95 Reset #6, asq_eff=2.2e+01, igsq=0.95 Reset #7, asq_eff=2.2e+01, igsq=0.95 Reset #8, asq_eff=2.2e+01, igsq=0.95 Reset #9, asq_eff=2.2e+01, igsq=0.95 Reset #10, asq_eff=2.2e+01, igsq=0.95 Reset #11, asq_eff=2.2e+01, igsq=0.95 Reset #12, asq_eff=2.2e+01, igsq=0.95 Reset #13, asq_eff=2.2e+01, igsq=0.95 Reset #14, asq_eff=2.2e+01, igsq=0.95 Reset #15, asq_eff=2.2e+01, igsq=0.95 Reset #16, asq_eff=2.2e+01, igsq=0.95 Reset #17, asq_eff=2.2e+01, igsq=0.95 Reset #18, asq_eff=2.2e+01, igsq=0.95 Reset #19, asq_eff=2.2e+01, igsq=0.95 Reset #20, asq_eff=2.2e+01, igsq=0.95 Reset #21, asq_eff=2.2e+01, igsq=0.95 Reset #22, asq_eff=2.2e+01, igsq=0.95 Reset #23, asq_eff=2.2e+01, igsq=0.95 Reset #24, asq_eff=2.2e+01, igsq=0.95 Reset #25, asq_eff=2.2e+01, igsq=0.95 Reset #26, asq_eff=2.2e+01, igsq=0.95 Reset #27, asq_eff=2.2e+01, igsq=0.95 Reset #28, asq_eff=2.2e+01, igsq=0.95 Reset #29, asq_eff=2.2e+01, igsq=0.95 Reset #30, asq_eff=2.2e+01, igsq=0.95 Reset #31, asq_eff=2.2e+01, igsq=0.95 Reset #32, asq_eff=2.2e+01, igsq=0.95 Reset #33, asq_eff=2.2e+01, igsq=0.95 Reset #34, asq_eff=2.2e+01, igsq=0.95 Reset #35, asq_eff=2.2e+01, igsq=0.95 Reset #36, asq_eff=2.2e+01, igsq=0.95 Reset #37, asq_eff=2.2e+01, igsq=0.95 Reset #38, asq_eff=2.2e+01, igsq=0.95 Reset #39, asq_eff=2.2e+01, igsq=0.95 Reset #40, asq_eff=2.2e+01, igsq=0.95 Reset #41, asq_eff=2.2e+01, igsq=0.95 Reset #42, asq_eff=2.2e+01, igsq=0.95 Reset #43, asq_eff=2.2e+01, igsq=0.95 Reset #44, asq_eff=2.2e+01, igsq=0.95 Reset #45, asq_eff=2.2e+01, igsq=0.95 Steps remaining: 154, asq_eff=2.1e+01, igsq=0.95 Reset #46, asq_eff=2.2e+01, igsq=0.95 Reset #47, asq_eff=2.2e+01, igsq=0.95 Reset #48, asq_eff=2.2e+01, igsq=0.95 Reset #49, asq_eff=2.2e+01, igsq=0.95 Reset #50, asq_eff=2.2e+01, igsq=0.95 Reset #51, asq_eff=2.2e+01, igsq=0.95 Reset #52, asq_eff=2.2e+01, igsq=0.95 Reset #53, asq_eff=2.2e+01, igsq=0.95 Reset #54, asq_eff=2.2e+01, igsq=0.95 Reset #55, asq_eff=2.2e+01, igsq=0.95 Reset #56, asq_eff=2.2e+01, igsq=0.95 Reset #57, asq_eff=2.2e+01, igsq=0.95 Steps remaining: 154, asq_eff=2.1e+01, igsq=0.95 Reset #58, asq_eff=2.2e+01, igsq=0.95 Reset #59, asq_eff=2.2e+01, igsq=0.95 Reset #60, asq_eff=2.2e+01, igsq=0.95 Reset #61, asq_eff=2.2e+01, igsq=0.95 Reset #62, asq_eff=2.2e+01, igsq=0.95 Reset #63, asq_eff=2.2e+01, igsq=0.95 Reset #64, asq_eff=2.2e+01, igsq=0.95 Reset #65, asq_eff=2.2e+01, igsq=0.95 Reset #66, asq_eff=2.2e+01, igsq=0.95 Reset #67, asq_eff=2.2e+01, igsq=0.95 Reset #68, asq_eff=2.2e+01, igsq=0.95 Reset #69, asq_eff=2.2e+01, igsq=0.95 Reset #70, asq_eff=2.2e+01, igsq=0.95 Reset #71, asq_eff=2.2e+01, igsq=0.95 Reset #72, asq_eff=2.2e+01, igsq=0.95 Reset #73, asq_eff=2.2e+01, igsq=0.95 Reset #74, asq_eff=2.2e+01, igsq=0.95 Reset #75, asq_eff=2.2e+01, igsq=0.95 Reset #76, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.18e+01, N_step=292 K_usable is not stable Results list length: 19 K_usable is not stable Results list length: 20 K_usable is not stable Results list length: 21 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 LPL [] MPL [] eq37 Before S: 4114559.5564905773 eq37 S: 4.4123087958301806e-05 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=9.1e+00, igsq=0.0001 Reset #2, asq_eff=9.9e+00, igsq=0.0001 Reset #3, asq_eff=1.0e+01, igsq=0.0001 Reset #4, asq_eff=8.9e+00, igsq=0.0001 Reset #5, asq_eff=8.3e+00, igsq=0.0001 Reset #6, asq_eff=8.2e+00, igsq=0.0001 Steps remaining: 103, asq_eff=7.7e+00, igsq=0.0001 Reset #7, asq_eff=8.0e+00, igsq=0.0001 Reset #8, asq_eff=8.0e+00, igsq=0.0001 Reset #9, asq_eff=7.8e+00, igsq=0.0001 Reset #10, asq_eff=7.9e+00, igsq=0.0001 Reset #11, asq_eff=8.0e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=7.97e+00, N_step=139 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.8e+01, igsq=0.85 Reset #2, asq_eff=6.0e+00, igsq=0.85 Reset #3, asq_eff=5.7e+00, igsq=0.85 Reset #4, asq_eff=4.5e+00, igsq=0.85 Reset #5, asq_eff=4.5e+00, igsq=0.85 Reset #6, asq_eff=4.4e+00, igsq=0.85 Reset #7, asq_eff=4.5e+00, igsq=0.85 Reset #8, asq_eff=4.4e+00, igsq=0.85 Reset #9, asq_eff=4.5e+00, igsq=0.85 Reset #10, asq_eff=4.5e+00, igsq=0.85 Reset #11, asq_eff=4.5e+00, igsq=0.85 Reset #12, asq_eff=4.5e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=4.52e+00, N_step=139 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.2e+01, igsq=0.9 Reset #3, asq_eff=1.0e+01, igsq=0.9 Reset #4, asq_eff=1.0e+01, igsq=0.9 Reset #5, asq_eff=9.8e+00, igsq=0.9 Reset #6, asq_eff=9.7e+00, igsq=0.9 Reset #7, asq_eff=9.8e+00, igsq=0.9 Reset #8, asq_eff=9.7e+00, igsq=0.9 Reset #9, asq_eff=9.8e+00, igsq=0.9 Steps remaining: 114, asq_eff=9.6e+00, igsq=0.9 Reset #10, asq_eff=9.7e+00, igsq=0.9 Reset #11, asq_eff=9.8e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=9.83e+00, N_step=129 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=2.5e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Reset #4, asq_eff=2.1e+01, igsq=0.95 Reset #5, asq_eff=2.0e+01, igsq=0.95 Reset #6, asq_eff=2.0e+01, igsq=0.95 Reset #7, asq_eff=2.0e+01, igsq=0.95 Reset #8, asq_eff=2.0e+01, igsq=0.95 Reset #9, asq_eff=2.0e+01, igsq=0.95 Steps remaining: 151, asq_eff=2.0e+01, igsq=0.95 Reset #10, asq_eff=2.0e+01, igsq=0.95 Reset #11, asq_eff=2.0e+01, igsq=0.95 Reset #12, asq_eff=2.0e+01, igsq=0.95 Reset #13, asq_eff=2.0e+01, igsq=0.95 Reset #14, asq_eff=2.0e+01, igsq=0.95 Reset #15, asq_eff=2.0e+01, igsq=0.95 Reset #16, asq_eff=2.0e+01, igsq=0.95 Reset #17, asq_eff=2.0e+01, igsq=0.95 Reset #18, asq_eff=2.0e+01, igsq=0.95 Reset #19, asq_eff=2.0e+01, igsq=0.95 Reset #20, asq_eff=2.0e+01, igsq=0.95 Reset #21, asq_eff=2.0e+01, igsq=0.95 Reset #22, asq_eff=2.0e+01, igsq=0.95 Reset #23, asq_eff=2.0e+01, igsq=0.95 Reset #24, asq_eff=2.0e+01, igsq=0.95 Reset #25, asq_eff=2.0e+01, igsq=0.95 Reset #26, asq_eff=2.0e+01, igsq=0.95 Reset #27, asq_eff=2.0e+01, igsq=0.95 Reset #28, asq_eff=2.0e+01, igsq=0.95 Reset #29, asq_eff=2.0e+01, igsq=0.95 Reset #30, asq_eff=2.0e+01, igsq=0.95 Reset #31, asq_eff=2.0e+01, igsq=0.95 Reset #32, asq_eff=2.0e+01, igsq=0.95 Reset #33, asq_eff=2.0e+01, igsq=0.95 Reset #34, asq_eff=2.0e+01, igsq=0.95 Reset #35, asq_eff=2.0e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Reset #36, asq_eff=2.0e+01, igsq=0.95 Reset #37, asq_eff=2.0e+01, igsq=0.95 Reset #38, asq_eff=2.0e+01, igsq=0.95 Reset #39, asq_eff=2.0e+01, igsq=0.95 Reset #40, asq_eff=2.0e+01, igsq=0.95 Reset #41, asq_eff=2.0e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.02e+01, N_step=207 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 K_usable is not stable Results list length: 28 K_usable is not stable Results list length: 29 LPL [] MPL [] eq37 Before S: 19674846.586927786 eq37 S: 0.00023643945350624877 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.8e+01, igsq=0.0001 Reset #2, asq_eff=1.4e+01, igsq=0.0001 Reset #3, asq_eff=1.1e+01, igsq=0.0001 Reset #4, asq_eff=1.1e+01, igsq=0.0001 Reset #5, asq_eff=1.1e+01, igsq=0.0001 Reset #6, asq_eff=1.1e+01, igsq=0.0001 Reset #7, asq_eff=1.1e+01, igsq=0.0001 Reset #8, asq_eff=1.0e+01, igsq=0.0001 Reset #9, asq_eff=9.5e+00, igsq=0.0001 Reset #10, asq_eff=9.4e+00, igsq=0.0001 Reset #11, asq_eff=9.1e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=9.13e+00, N_step=144 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=2.5e+01, igsq=0.7653668647301797 Reset #2, asq_eff=4.2e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.7e+00, igsq=0.7653668647301797 Steps remaining: 11, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #5, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #6, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #7, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #8, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #9, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #10, asq_eff=1.6e+00, igsq=0.7653668647301797 Reset #11, asq_eff=1.6e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.62e+00, N_step=146 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=1.3e+01, igsq=0.85 Reset #2, asq_eff=6.0e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=5.96e+00, N_step=108 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.3e+01, igsq=0.9 Reset #2, asq_eff=1.4e+01, igsq=0.9 Reset #3, asq_eff=1.3e+01, igsq=0.9 Reset #4, asq_eff=1.2e+01, igsq=0.9 Reset #5, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Reset #6, asq_eff=1.2e+01, igsq=0.9 Reset #7, asq_eff=1.2e+01, igsq=0.9 Reset #8, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.2e+01, igsq=0.9 Reset #9, asq_eff=1.2e+01, igsq=0.9 Reset #10, asq_eff=1.2e+01, igsq=0.9 Reset #11, asq_eff=1.2e+01, igsq=0.9 Reset #12, asq_eff=1.2e+01, igsq=0.9 Reset #13, asq_eff=1.2e+01, igsq=0.9 Reset #14, asq_eff=1.2e+01, igsq=0.9 Reset #15, asq_eff=1.2e+01, igsq=0.9 Reset #16, asq_eff=1.2e+01, igsq=0.9 Reset #17, asq_eff=1.2e+01, igsq=0.9 Reset #18, asq_eff=1.2e+01, igsq=0.9 Reset #19, asq_eff=1.2e+01, igsq=0.9 Reset #20, asq_eff=1.2e+01, igsq=0.9 Reset #21, asq_eff=1.2e+01, igsq=0.9 Reset #22, asq_eff=1.2e+01, igsq=0.9 Reset #23, asq_eff=1.2e+01, igsq=0.9 Reset #24, asq_eff=1.2e+01, igsq=0.9 Reset #25, asq_eff=1.2e+01, igsq=0.9 Reset #26, asq_eff=1.2e+01, igsq=0.9 Reset #27, asq_eff=1.2e+01, igsq=0.9 Reset #28, asq_eff=1.2e+01, igsq=0.9 Reset #29, asq_eff=1.2e+01, igsq=0.9 Reset #30, asq_eff=1.2e+01, igsq=0.9 Reset #31, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #32, asq_eff=1.2e+01, igsq=0.9 Reset #33, asq_eff=1.2e+01, igsq=0.9 Reset #34, asq_eff=1.2e+01, igsq=0.9 Reset #35, asq_eff=1.2e+01, igsq=0.9 Reset #36, asq_eff=1.2e+01, igsq=0.9 Reset #37, asq_eff=1.2e+01, igsq=0.9 Reset #38, asq_eff=1.2e+01, igsq=0.9 Reset #39, asq_eff=1.2e+01, igsq=0.9 Reset #40, asq_eff=1.2e+01, igsq=0.9 Reset #41, asq_eff=1.2e+01, igsq=0.9 Reset #42, asq_eff=1.2e+01, igsq=0.9 Reset #43, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #44, asq_eff=1.2e+01, igsq=0.9 Reset #45, asq_eff=1.2e+01, igsq=0.9 Reset #46, asq_eff=1.2e+01, igsq=0.9 Reset #47, asq_eff=1.2e+01, igsq=0.9 Reset #48, asq_eff=1.2e+01, igsq=0.9 Reset #49, asq_eff=1.2e+01, igsq=0.9 Reset #50, asq_eff=1.2e+01, igsq=0.9 Reset #51, asq_eff=1.2e+01, igsq=0.9 Reset #52, asq_eff=1.2e+01, igsq=0.9 Reset #53, asq_eff=1.2e+01, igsq=0.9 Reset #54, asq_eff=1.2e+01, igsq=0.9 Reset #55, asq_eff=1.2e+01, igsq=0.9 Steps remaining: 123, asq_eff=1.1e+01, igsq=0.9 Reset #56, asq_eff=1.2e+01, igsq=0.9 Reset #57, asq_eff=1.2e+01, igsq=0.9 Reset #58, asq_eff=1.2e+01, igsq=0.9 Reset #59, asq_eff=1.2e+01, igsq=0.9 Reset #60, asq_eff=1.2e+01, igsq=0.9 Reset #61, asq_eff=1.2e+01, igsq=0.9 Reset #62, asq_eff=1.2e+01, igsq=0.9 Reset #63, asq_eff=1.2e+01, igsq=0.9 Reset #64, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #65, asq_eff=1.2e+01, igsq=0.9 Reset #66, asq_eff=1.2e+01, igsq=0.9 Reset #67, asq_eff=1.2e+01, igsq=0.9 Reset #68, asq_eff=1.2e+01, igsq=0.9 Reset #69, asq_eff=1.2e+01, igsq=0.9 Reset #70, asq_eff=1.2e+01, igsq=0.9 Reset #71, asq_eff=1.2e+01, igsq=0.9 Reset #72, asq_eff=1.2e+01, igsq=0.9 Reset #73, asq_eff=1.2e+01, igsq=0.9 Reset #74, asq_eff=1.2e+01, igsq=0.9 Reset #75, asq_eff=1.2e+01, igsq=0.9 Reset #76, asq_eff=1.2e+01, igsq=0.9 Reset #77, asq_eff=1.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.17e+01, N_step=300 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=5.0e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.2e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Non-optimal solve at igsq=9.50e-01 and asq=2.23e+01, N_step=105 K_usable is not stable Results list length: 30 K_usable is not stable Results list length: 31 K_usable is not stable Results list length: 32 K_usable is not stable Results list length: 33 K_usable is not stable Results list length: 34 Calculating Full Results Now: Captured stderr call 0%| | 0/6 [00:00<?, ?it/s] 17%|█▋ | 1/6 [08:16<41:23, 496.70s/it] 33%|███▎ | 2/6 [15:49<31:23, 470.82s/it] 50%|█████ | 3/6 [27:30<28:48, 576.07s/it] 67%|██████▋ | 4/6 [38:51<20:34, 617.45s/it] 83%|████████▎ | 5/6 [48:03<09:53, 593.77s/it] 100%|██████████| 6/6 [57:35<00:00, 586.46s/it] 100%|██████████| 6/6 [57:35<00:00, 575.94s/it] 0%| | 0/34 [00:00<?, ?it/s] 0%| | 0/34 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels_working_F3' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 40.0, 'F2_gain': 1.0, 'FOM_out': ['F3.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 40 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeErrorT_calc_HiB[ExampleModels]
output
LPL [] MPL [] eq37 Before S: 1967.4872072974836 eq37 S: 6.554691131539332e-07 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=3.3e+00, igsq=0.9 Reset #2, asq_eff=2.5e+00, igsq=0.9 Reset #3, asq_eff=2.4e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #4, asq_eff=2.3e+00, igsq=0.9 Reset #5, asq_eff=2.2e+00, igsq=0.9 Reset #6, asq_eff=2.2e+00, igsq=0.9 Reset #7, asq_eff=2.1e+00, igsq=0.9 Reset #8, asq_eff=2.1e+00, igsq=0.9 Reset #9, asq_eff=2.0e+00, igsq=0.9 Reset #10, asq_eff=2.1e+00, igsq=0.9 Reset #11, asq_eff=2.0e+00, igsq=0.9 Reset #12, asq_eff=2.0e+00, igsq=0.9 Reset #13, asq_eff=2.0e+00, igsq=0.9 Reset #14, asq_eff=2.0e+00, igsq=0.9 Reset #15, asq_eff=1.9e+00, igsq=0.9 Reset #16, asq_eff=1.9e+00, igsq=0.9 Steps remaining: 31, asq_eff=1.8e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #17, asq_eff=1.9e+00, igsq=0.9 Reset #18, asq_eff=1.9e+00, igsq=0.9 Reset #19, asq_eff=1.9e+00, igsq=0.9 Reset #20, asq_eff=1.9e+00, igsq=0.9 Reset #21, asq_eff=1.9e+00, igsq=0.9 Reset #22, asq_eff=1.9e+00, igsq=0.9 Reset #23, asq_eff=1.9e+00, igsq=0.9 Reset #24, asq_eff=1.8e+00, igsq=0.9 Reset #25, asq_eff=1.8e+00, igsq=0.9 Reset #26, asq_eff=1.8e+00, igsq=0.9 Reset #27, asq_eff=1.7e+00, igsq=0.9 Reset #28, asq_eff=1.8e+00, igsq=0.9 Reset #29, asq_eff=1.7e+00, igsq=0.9 Reset #30, asq_eff=1.7e+00, igsq=0.9 Reset #31, asq_eff=1.7e+00, igsq=0.9 Reset #32, asq_eff=1.7e+00, igsq=0.9 Reset #33, asq_eff=1.6e+00, igsq=0.9 Reset #34, asq_eff=1.7e+00, igsq=0.9 Reset #35, asq_eff=1.6e+00, igsq=0.9 Reset #36, asq_eff=1.6e+00, igsq=0.9 Reset #37, asq_eff=1.6e+00, igsq=0.9 Steps remaining: 23, asq_eff=1.6e+00, igsq=0.9 Reset #38, asq_eff=1.6e+00, igsq=0.9 Reset #39, asq_eff=1.6e+00, igsq=0.9 Reset #40, asq_eff=1.6e+00, igsq=0.9 Reset #41, asq_eff=1.6e+00, igsq=0.9 Reset #42, asq_eff=1.6e+00, igsq=0.9 Reset #43, asq_eff=1.6e+00, igsq=0.9 Reset #44, asq_eff=1.5e+00, igsq=0.9 Reset #45, asq_eff=1.6e+00, igsq=0.9 Reset #46, asq_eff=1.5e+00, igsq=0.9 Reset #47, asq_eff=1.5e+00, igsq=0.9 Reset #48, asq_eff=1.5e+00, igsq=0.9 Steps remaining: 21, asq_eff=1.5e+00, igsq=0.9 Reset #49, asq_eff=1.5e+00, igsq=0.9 Reset #50, asq_eff=1.5e+00, igsq=0.9 Reset #51, asq_eff=1.5e+00, igsq=0.9 Reset #52, asq_eff=1.5e+00, igsq=0.9 Reset #53, asq_eff=1.5e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.46e+00, N_step=259 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=2.5e+01, igsq=0.95 Reset #2, asq_eff=2.0e+01, igsq=0.95 Reset #3, asq_eff=1.7e+01, igsq=0.95 Reset #4, asq_eff=1.7e+01, igsq=0.95 Reset #5, asq_eff=1.6e+01, igsq=0.95 Reset #6, asq_eff=1.6e+01, igsq=0.95 Reset #7, asq_eff=1.6e+01, igsq=0.95 Reset #8, asq_eff=1.6e+01, igsq=0.95 Reset #9, asq_eff=1.6e+01, igsq=0.95 Steps remaining: 138, asq_eff=1.5e+01, igsq=0.95 Reset #10, asq_eff=1.6e+01, igsq=0.95 Reset #11, asq_eff=1.6e+01, igsq=0.95 Reset #12, asq_eff=1.6e+01, igsq=0.95 Reset #13, asq_eff=1.6e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=1.57e+01, N_step=134 K_usable is not stable Results list length: 1 K_usable is not stable Results list length: 2 K_usable is not stable Results list length: 3 K_usable is not stable Results list length: 4 K_usable is not stable Results list length: 5 K_usable is not stable Results list length: 6 K_usable is not stable Results list length: 7 K_usable is not stable Results list length: 8 LPL [] MPL [] eq37 Before S: 19674.882719600562 eq37 S: 1.2201945434674622e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=2.3e+00, igsq=0.0001 Reset #2, asq_eff=1.5e+00, igsq=0.0001 Reset #3, asq_eff=1.6e+00, igsq=0.0001 Reset #4, asq_eff=1.6e+00, igsq=0.0001 Reset #5, asq_eff=1.5e+00, igsq=0.0001 Reset #6, asq_eff=1.5e+00, igsq=0.0001 Steps remaining: 18, asq_eff=1.4e+00, igsq=0.0001 Reset #7, asq_eff=1.4e+00, igsq=0.0001 Reset #8, asq_eff=1.3e+00, igsq=0.0001 Reset #9, asq_eff=1.2e+00, igsq=0.0001 Reset #10, asq_eff=1.2e+00, igsq=0.0001 Reset #11, asq_eff=1.2e+00, igsq=0.0001 Reset #12, asq_eff=1.2e+00, igsq=0.0001 Steps remaining: 8, asq_eff=1.2e+00, igsq=0.0001 Reset #13, asq_eff=1.2e+00, igsq=0.0001 Reset #14, asq_eff=1.2e+00, igsq=0.0001 Reset #15, asq_eff=1.2e+00, igsq=0.0001 Reset #16, asq_eff=1.1e+00, igsq=0.0001 Reset #17, asq_eff=1.1e+00, igsq=0.0001 Reset #18, asq_eff=1.1e+00, igsq=0.0001 Reset #19, asq_eff=1.1e+00, igsq=0.0001 Reset #20, asq_eff=1.1e+00, igsq=0.0001 Steps remaining: 5, asq_eff=1.1e+00, igsq=0.0001 Reset #21, asq_eff=1.1e+00, igsq=0.0001 Reset #22, asq_eff=1.2e+00, igsq=0.0001 Reset #23, asq_eff=1.1e+00, igsq=0.0001 Reset #24, asq_eff=1.1e+00, igsq=0.0001 Reset #25, asq_eff=1.1e+00, igsq=0.0001 Reset #26, asq_eff=1.1e+00, igsq=0.0001 Reset #27, asq_eff=1.1e+00, igsq=0.0001 Reset #28, asq_eff=1.0e+00, igsq=0.0001 Steps remaining: 0, asq_eff=1.0e+00, igsq=0.0001 Reset #29, asq_eff=1.0e+00, igsq=0.0001 Reset #30, asq_eff=1.0e+00, igsq=0.0001 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=2.1e+00, igsq=0.85 Reset #3, asq_eff=2.1e+00, igsq=0.85 Reset #4, asq_eff=2.0e+00, igsq=0.85 Reset #5, asq_eff=2.0e+00, igsq=0.85 Reset #6, asq_eff=2.0e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.98e+00, N_step=122 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=9.1e+00, igsq=0.9 Reset #2, asq_eff=8.4e+00, igsq=0.9 Reset #3, asq_eff=8.0e+00, igsq=0.9 Reset #4, asq_eff=7.5e+00, igsq=0.9 Reset #5, asq_eff=7.3e+00, igsq=0.9 Reset #6, asq_eff=7.4e+00, igsq=0.9 Reset #7, asq_eff=7.2e+00, igsq=0.9 Reset #8, asq_eff=7.2e+00, igsq=0.9 Reset #9, asq_eff=7.2e+00, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #10, asq_eff=7.2e+00, igsq=0.9 Reset #11, asq_eff=7.2e+00, igsq=0.9 Reset #12, asq_eff=7.2e+00, igsq=0.9 Reset #13, asq_eff=7.2e+00, igsq=0.9 Reset #14, asq_eff=7.1e+00, igsq=0.9 Reset #15, asq_eff=7.2e+00, igsq=0.9 Reset #16, asq_eff=7.1e+00, igsq=0.9 Reset #17, asq_eff=7.2e+00, igsq=0.9 Reset #18, asq_eff=7.1e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=7.08e+00, N_step=148 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=2.8e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.4e+01, igsq=0.95 Reset #5, asq_eff=2.3e+01, igsq=0.95 Reset #6, asq_eff=2.4e+01, igsq=0.95 Reset #7, asq_eff=2.3e+01, igsq=0.95 Reset #8, asq_eff=2.4e+01, igsq=0.95 Reset #9, asq_eff=2.3e+01, igsq=0.95 Reset #10, asq_eff=2.4e+01, igsq=0.95 Reset #11, asq_eff=2.3e+01, igsq=0.95 Reset #12, asq_eff=2.4e+01, igsq=0.95 Reset #13, asq_eff=2.3e+01, igsq=0.95 Reset #14, asq_eff=2.4e+01, igsq=0.95 Reset #15, asq_eff=2.3e+01, igsq=0.95 Reset #16, asq_eff=2.3e+01, igsq=0.95 Reset #17, asq_eff=2.3e+01, igsq=0.95 Reset #18, asq_eff=2.3e+01, igsq=0.95 Reset #19, asq_eff=2.3e+01, igsq=0.95 Reset #20, asq_eff=2.3e+01, igsq=0.95 Reset #21, asq_eff=2.3e+01, igsq=0.95 Reset #22, asq_eff=2.3e+01, igsq=0.95 Reset #23, asq_eff=2.3e+01, igsq=0.95 Reset #24, asq_eff=2.3e+01, igsq=0.95 Reset #25, asq_eff=2.3e+01, igsq=0.95 Reset #26, asq_eff=2.3e+01, igsq=0.95 Reset #27, asq_eff=2.3e+01, igsq=0.95 Reset #28, asq_eff=2.3e+01, igsq=0.95 Reset #29, asq_eff=2.3e+01, igsq=0.95 Reset #30, asq_eff=2.3e+01, igsq=0.95 Reset #31, asq_eff=2.3e+01, igsq=0.95 Reset #32, asq_eff=2.3e+01, igsq=0.95 Reset #33, asq_eff=2.3e+01, igsq=0.95 Reset #34, asq_eff=2.3e+01, igsq=0.95 Steps remaining: 157, asq_eff=2.2e+01, igsq=0.95 Reset #35, asq_eff=2.3e+01, igsq=0.95 Reset #36, asq_eff=2.3e+01, igsq=0.95 Reset #37, asq_eff=2.3e+01, igsq=0.95 Reset #38, asq_eff=2.3e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.33e+01, N_step=193 K_usable is not stable Results list length: 9 K_usable is not stable Results list length: 10 K_usable is not stable Results list length: 11 K_usable is not stable Results list length: 12 K_usable is not stable Results list length: 13 K_usable is not stable Results list length: 14 K_usable is not stable Results list length: 15 LPL [] MPL [] eq37 Before S: 196748.9604609225 eq37 S: 1.624847498697929e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=7.1e+00, igsq=0.0001 Reset #3, asq_eff=7.4e+00, igsq=0.0001 Reset #4, asq_eff=5.4e+00, igsq=0.0001 Reset #5, asq_eff=4.9e+00, igsq=0.0001 Reset #6, asq_eff=4.9e+00, igsq=0.0001 Reset #7, asq_eff=5.0e+00, igsq=0.0001 Reset #8, asq_eff=4.8e+00, igsq=0.0001 Reset #9, asq_eff=4.9e+00, igsq=0.0001 Reset #10, asq_eff=4.5e+00, igsq=0.0001 Reset #11, asq_eff=4.4e+00, igsq=0.0001 Reset #12, asq_eff=4.2e+00, igsq=0.0001 Reset #13, asq_eff=4.2e+00, igsq=0.0001 Reset #14, asq_eff=4.3e+00, igsq=0.0001 Steps remaining: 72, asq_eff=4.2e+00, igsq=0.0001 Reset #15, asq_eff=4.2e+00, igsq=0.0001 Reset #16, asq_eff=4.2e+00, igsq=0.0001 Reset #17, asq_eff=4.2e+00, igsq=0.0001 Reset #18, asq_eff=4.1e+00, igsq=0.0001 Reset #19, asq_eff=4.2e+00, igsq=0.0001 Reset #20, asq_eff=4.0e+00, igsq=0.0001 Reset #21, asq_eff=4.0e+00, igsq=0.0001 Reset #22, asq_eff=3.9e+00, igsq=0.0001 Reset #23, asq_eff=3.8e+00, igsq=0.0001 Reset #24, asq_eff=3.8e+00, igsq=0.0001 Reset #25, asq_eff=3.8e+00, igsq=0.0001 Reset #26, asq_eff=3.7e+00, igsq=0.0001 Reset #27, asq_eff=3.6e+00, igsq=0.0001 Reset #28, asq_eff=3.6e+00, igsq=0.0001 Reset #29, asq_eff=3.6e+00, igsq=0.0001 Reset #30, asq_eff=3.6e+00, igsq=0.0001 Steps remaining: 63, asq_eff=3.5e+00, igsq=0.0001 Reset #31, asq_eff=3.6e+00, igsq=0.0001 Reset #32, asq_eff=3.7e+00, igsq=0.0001 Reset #33, asq_eff=3.3e+00, igsq=0.0001 Reset #34, asq_eff=3.2e+00, igsq=0.0001 Reset #35, asq_eff=3.3e+00, igsq=0.0001 Reset #36, asq_eff=3.2e+00, igsq=0.0001 Reset #37, asq_eff=3.2e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=3.22e+00, N_step=240 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=6.5e+00, igsq=0.85 Reset #2, asq_eff=5.0e+00, igsq=0.85 Reset #3, asq_eff=4.8e+00, igsq=0.85 Reset #4, asq_eff=4.7e+00, igsq=0.85 Reset #5, asq_eff=4.4e+00, igsq=0.85 Reset #6, asq_eff=4.3e+00, igsq=0.85 Reset #7, asq_eff=4.3e+00, igsq=0.85 Reset #8, asq_eff=4.3e+00, igsq=0.85 Reset #9, asq_eff=4.3e+00, igsq=0.85 Reset #10, asq_eff=4.3e+00, igsq=0.85 Reset #11, asq_eff=4.3e+00, igsq=0.85 Reset #12, asq_eff=4.3e+00, igsq=0.85 Reset #13, asq_eff=4.3e+00, igsq=0.85 Reset #14, asq_eff=4.3e+00, igsq=0.85 Reset #15, asq_eff=4.3e+00, igsq=0.85 Reset #16, asq_eff=4.3e+00, igsq=0.85 Reset #17, asq_eff=4.3e+00, igsq=0.85 Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Failed on igsq: 0.85 Failed to find a finite solution. Non-optimal solve at igsq=8.50e-01 and asq=4.30e+00, N_step=148 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.9 Reset #1, asq_eff=1.8e+01, igsq=0.9 Reset #2, asq_eff=1.4e+01, igsq=0.9 Reset #3, asq_eff=1.2e+01, igsq=0.9 Reset #4, asq_eff=1.3e+01, igsq=0.9 Failed on igsq: 0.9 Failed to find a finite solution. Reset #5, asq_eff=1.3e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=1.27e+01, N_step=110 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.3e+01, igsq=0.95 Reset #3, asq_eff=2.9e+01, igsq=0.95 Reset #4, asq_eff=2.7e+01, igsq=0.95 Reset #5, asq_eff=2.6e+01, igsq=0.95 Reset #6, asq_eff=2.6e+01, igsq=0.95 Reset #7, asq_eff=2.6e+01, igsq=0.95 Reset #8, asq_eff=2.6e+01, igsq=0.95 Reset #9, asq_eff=2.6e+01, igsq=0.95 Reset #10, asq_eff=2.6e+01, igsq=0.95 Steps remaining: 163, asq_eff=2.5e+01, igsq=0.95 Reset #11, asq_eff=2.6e+01, igsq=0.95 Reset #12, asq_eff=2.6e+01, igsq=0.95 Reset #13, asq_eff=2.6e+01, igsq=0.95 Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Failed on igsq: 0.95 Failed to find a finite solution. Non-optimal solve at igsq=9.50e-01 and asq=2.61e+01, N_step=131 K_usable is not stable Results list length: 16 K_usable is not stable Results list length: 17 K_usable is not stable Results list length: 18 K_usable is not stable Results list length: 19 K_usable is not stable Results list length: 20 K_usable is not stable Results list length: 21 LPL [] MPL [] eq37 Before S: 1967493.1026473853 eq37 S: 4.5139050321841625e-06 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=1.3e+01, igsq=0.0001 Reset #2, asq_eff=1.2e+01, igsq=0.0001 Reset #3, asq_eff=6.8e+00, igsq=0.0001 Reset #4, asq_eff=6.1e+00, igsq=0.0001 Reset #5, asq_eff=6.2e+00, igsq=0.0001 Reset #6, asq_eff=5.9e+00, igsq=0.0001 Reset #7, asq_eff=5.9e+00, igsq=0.0001 Reset #8, asq_eff=6.0e+00, igsq=0.0001 Reset #9, asq_eff=6.0e+00, igsq=0.0001 Reset #10, asq_eff=6.1e+00, igsq=0.0001 Reset #11, asq_eff=6.2e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=6.16e+00, N_step=140 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=1.7e+00, igsq=0.2 Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=110 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.7653668647301797 Reset #1, asq_eff=1.7e+00, igsq=0.7653668647301797 Reset #2, asq_eff=1.3e+00, igsq=0.7653668647301797 Reset #3, asq_eff=1.1e+00, igsq=0.7653668647301797 Reset #4, asq_eff=1.1e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=1.07e+00, N_step=117 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.85 Reset #1, asq_eff=2.5e+01, igsq=0.85 Reset #2, asq_eff=9.9e+00, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=9.93e+00, N_step=105 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=2.7e+02, igsq=0.9 Steps remaining: 28, asq_eff=1.2e+02, igsq=0.9 Reset #2, asq_eff=6.4e+01, igsq=0.9 Reset #3, asq_eff=5.2e+01, igsq=0.9 Steps remaining: 74, asq_eff=2.3e+01, igsq=0.9 Reset #4, asq_eff=9.3e+00, igsq=0.9 Reset #5, asq_eff=9.2e+00, igsq=0.9 Reset #6, asq_eff=9.3e+00, igsq=0.9 Steps remaining: 112, asq_eff=9.1e+00, igsq=0.9 Reset #7, asq_eff=9.2e+00, igsq=0.9 Reset #8, asq_eff=9.1e+00, igsq=0.9 Reset #9, asq_eff=9.2e+00, igsq=0.9 Reset #10, asq_eff=9.1e+00, igsq=0.9 Reset #11, asq_eff=9.2e+00, igsq=0.9 Reset #12, asq_eff=9.1e+00, igsq=0.9 Reset #13, asq_eff=9.2e+00, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=9.22e+00, N_step=172 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Reset #1, asq_eff=7.0e+01, igsq=0.95 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.95 Reset #2, asq_eff=2.3e+01, igsq=0.95 Reset #3, asq_eff=2.4e+01, igsq=0.95 Reset #4, asq_eff=2.4e+01, igsq=0.95 Reset #5, asq_eff=2.3e+01, igsq=0.95 Reset #6, asq_eff=2.0e+01, igsq=0.95 Reset #7, asq_eff=2.0e+01, igsq=0.95 Steps remaining: 150, asq_eff=2.0e+01, igsq=0.95 Reset #8, asq_eff=2.0e+01, igsq=0.95 Reset #9, asq_eff=2.0e+01, igsq=0.95 Reset #10, asq_eff=2.0e+01, igsq=0.95 Reset #11, asq_eff=2.0e+01, igsq=0.95 Reset #12, asq_eff=2.0e+01, igsq=0.95 Reset #13, asq_eff=2.0e+01, igsq=0.95 Reset #14, asq_eff=2.0e+01, igsq=0.95 Reset #15, asq_eff=2.0e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=2.04e+01, N_step=143 K_usable is not stable Results list length: 22 K_usable is not stable Results list length: 23 K_usable is not stable Results list length: 24 K_usable is not stable Results list length: 25 LPL [] MPL [] eq37 Before S: 19674946.39661376 eq37 S: 0.00014001149358547048 LINF: 2.4e+07 LINF full: 2.4e+07, vs: 1.0e+00 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.0001 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.0001 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.0001 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.0001 Reset #1, asq_eff=3.6e+01, igsq=0.0001 Reset #2, asq_eff=3.9e+01, igsq=0.0001 Reset #3, asq_eff=1.2e+01, igsq=0.0001 Reset #4, asq_eff=1.3e+01, igsq=0.0001 Reset #5, asq_eff=1.2e+01, igsq=0.0001 Reset #6, asq_eff=1.2e+01, igsq=0.0001 Reset #7, asq_eff=1.2e+01, igsq=0.0001 Reset #8, asq_eff=1.2e+01, igsq=0.0001 Reset #9, asq_eff=1.2e+01, igsq=0.0001 Reset #10, asq_eff=1.3e+01, igsq=0.0001 Reset #11, asq_eff=1.3e+01, igsq=0.0001 Reset #12, asq_eff=1.2e+01, igsq=0.0001 Reset #13, asq_eff=1.2e+01, igsq=0.0001 Reset #14, asq_eff=1.2e+01, igsq=0.0001 Steps remaining: 121, asq_eff=1.1e+01, igsq=0.0001 Reset #15, asq_eff=1.1e+01, igsq=0.0001 Reset #16, asq_eff=1.0e+01, igsq=0.0001 Reset #17, asq_eff=1.0e+01, igsq=0.0001 Reset #18, asq_eff=9.1e+00, igsq=0.0001 Reset #19, asq_eff=8.9e+00, igsq=0.0001 Reset #20, asq_eff=8.8e+00, igsq=0.0001 Reset #21, asq_eff=8.7e+00, igsq=0.0001 Reset #22, asq_eff=8.8e+00, igsq=0.0001 Reset #23, asq_eff=8.9e+00, igsq=0.0001 Reset #24, asq_eff=9.0e+00, igsq=0.0001 Reset #25, asq_eff=8.7e+00, igsq=0.0001 Reset #26, asq_eff=8.6e+00, igsq=0.0001 Reset #27, asq_eff=8.7e+00, igsq=0.0001 Reset #28, asq_eff=8.8e+00, igsq=0.0001 Reset #29, asq_eff=8.9e+00, igsq=0.0001 Reset #30, asq_eff=9.0e+00, igsq=0.0001 Reset #31, asq_eff=9.0e+00, igsq=0.0001 Reset #32, asq_eff=9.0e+00, igsq=0.0001 Reset #33, asq_eff=9.0e+00, igsq=0.0001 Reset #34, asq_eff=9.0e+00, igsq=0.0001 Reset #35, asq_eff=8.2e+00, igsq=0.0001 Reset #36, asq_eff=8.1e+00, igsq=0.0001 Reset #37, asq_eff=7.9e+00, igsq=0.0001 Reset #38, asq_eff=7.8e+00, igsq=0.0001 Reset #39, asq_eff=7.4e+00, igsq=0.0001 Reset #40, asq_eff=6.8e+00, igsq=0.0001 Reset #41, asq_eff=6.9e+00, igsq=0.0001 Reset #42, asq_eff=6.7e+00, igsq=0.0001 Reset #43, asq_eff=6.7e+00, igsq=0.0001 Steps remaining: 94, asq_eff=6.5e+00, igsq=0.0001 Reset #44, asq_eff=6.7e+00, igsq=0.0001 Non-optimal solve at igsq=1.00e-04 and asq=6.65e+00, N_step=276 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.018 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.018 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.018 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.018 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.1 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.1 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.1 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.1 Reset #1, asq_eff=2.3e+00, igsq=0.1 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.2 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.2 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.2 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.2 Reset #1, asq_eff=2.3e+00, igsq=0.2 Non-optimal solve at igsq=2.00e-01 and asq=1.00e+00, N_step=111 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.3 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.3 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.3 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.3 Reset #1, asq_eff=2.3e+00, igsq=0.3 Reset #2, asq_eff=1.8e+00, igsq=0.3 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.5 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.5 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.5 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.5 Reset #1, asq_eff=1.7e+00, igsq=0.5 Reset #2, asq_eff=1.3e+00, igsq=0.5 Reset #3, asq_eff=1.2e+00, igsq=0.5 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.7653668647301797 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.7653668647301797 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.7653668647301797 Reset #1, asq_eff=7.0e+01, igsq=0.7653668647301797 Steps remaining: 24, asq_eff=5.9e+01, igsq=0.7653668647301797 Reset #2, asq_eff=2.8e+01, igsq=0.7653668647301797 Reset #3, asq_eff=7.4e+00, igsq=0.7653668647301797 Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.7653668647301797 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=7.65e-01 and asq=7.38e+00, N_step=120 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.85 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.85 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.85 Reset #1, asq_eff=1.4e+02, igsq=0.85 Steps remaining: 26, asq_eff=8.3e+01, igsq=0.85 Reset #2, asq_eff=2.0e+01, igsq=0.85 Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.85 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=8.50e-01 and asq=1.96e+01, N_step=106 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.9 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.9 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.9 Reset #1, asq_eff=9.9e+01, igsq=0.9 Steps remaining: 25, asq_eff=7.0e+01, igsq=0.9 Reset #2, asq_eff=9.1e+01, igsq=0.9 Reset #3, asq_eff=7.3e+01, igsq=0.9 Reset #4, asq_eff=7.2e+01, igsq=0.9 Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.9 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.00e-01 and asq=7.17e+01, N_step=104 Steps remaining: 99, asq_eff=4.2e+14, igsq=0.95 Steps remaining: 69, asq_eff=1.6e+10, igsq=0.95 Steps remaining: 39, asq_eff=5.8e+05, igsq=0.95 Steps remaining: 9, asq_eff=2.1e+01, igsq=0.95 Reset #1, asq_eff=3.6e+01, igsq=0.95 Reset #2, asq_eff=3.9e+01, igsq=0.95 Reset #3, asq_eff=3.7e+01, igsq=0.95 Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Failed on igsq: 0.95 Reordering of (A, B) failed because the transformed matrix pair (A, B) would be too far from generalized Schur form; the problem is very ill-conditioned. (A, B) may have been partially reordered. Non-optimal solve at igsq=9.50e-01 and asq=3.71e+01, N_step=101 K_usable is not stable Results list length: 26 K_usable is not stable Results list length: 27 K_usable is not stable Results list length: 28 K_usable is not stable Results list length: 29 Calculating Full Results Now: Captured stderr call 0%| | 0/5 [00:00<?, ?it/s] 20%|██ | 1/5 [09:01<36:07, 541.77s/it] 40%|████ | 2/5 [19:42<29:59, 599.85s/it] 60%|██████ | 3/5 [29:39<19:57, 598.58s/it] 80%|████████ | 4/5 [38:09<09:23, 563.83s/it] 100%|██████████| 5/5 [47:12<00:00, 556.35s/it] 100%|██████████| 5/5 [47:12<00:00, 566.60s/it] 0%| | 0/29 [00:00<?, ?it/s] 0%| | 0/29 [00:00<?, ?it/s] captured errors: folder = 'ExampleModels' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_calc_HiB(folder): sysB = get_systemB(folder = folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function if '_F3' in folder: FOM_out = ["F3.out", "F2.out"] else: FOM_out = ["FBNS.out", "F2.out"] wn_in = ["S.in", "O.in"] Zinf = ["Zinf.in"] control_in = ["U.in"] meas_out = ["T.out"] sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[0], FBNS_scale) sysB.sys = ssutil.scale_io(sysB.sys, FOM_out[1], FFlat_scale) # Scale the DARM output if 'DARM.out' in sysB.sys.outputs.keys(): print('scaling DARM') DARM_scale_factor = strain2m * SNR_intg_factor sysB.sys = ssutil.scale_io(sysB.sys, 'DARM.out', DARM_scale_factor) params = {} if folder == 'ExampleModels': params['F1_gain'] = np.geomspace(1e1, 1e5, 5) * 1/FBNS_scale # was 1e1 3e3 # elif folder == 'ExampleModels_newFOM_F3': # params['F1_gain'] = np.geomspace(1e-6, 1e-3, 5) * 1/FBNS_scale else: params["F1_gain"] = np.geomspace(4e1, 1e5, 6) * 1/FBNS_scale #params["F1_gain"] = np.array([0.09146101038546522]) params["igsq_capture"] = [ 1e-4, # gain-100 limit 1.8e-2, # 1 deg, around gain-10 1e-1, # 6 deg 0.20, # 11.5 deg 0.3, # 17 deg 0.5, # 30 deg 0.7653668647301797, # 45 deg 0.85, # 50.0 deg 0.90, # 53.5 deg 0.95, # 56.5 deg # above this it gets very hairy # these are 10 solutions ] # params["igsq_capture"] = np.geomspace(1e-6, 0.99, 40) # params["igsq_capture"] = np.concatenate([np.geomspace(1e-6, 0.1, 6), np.geomspace(.1, 0.95, 6)]) plotting_omega = np.logspace(-3, 4, 1000) * 2 * np.pi results_Hib_bare = compute.calcOpt( sysB.sys, control_in, wn_in, meas_out, FOM_out, params, Zinf=Zinf, solver="HB", plant_orig=sysB.orig_plant, BH_solver = BH1solverset, debug_mode=True, ) print("Calculating Full Results Now:") > results_Hib = compute.calcFullResults( results_Hib_bare, colormap="RdYlGn", plot_omega=plotting_omega, color_param="igsq", label=False, io_scales = io_scales, ) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:447: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ /builds/buzz/src/buzz/compute.py:486: in calcFullResults CL, CL_all_io = connectK(result) _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ bunch = {'F1_gain': 10.0, 'F2_gain': 1.0, 'FOM_out': ['FBNS.out', 'F2.out'], 'K': MIMOStateSpace with inputs ['C.in'], outputs ['C.out'], and 37 dimensional states, ...} def connectK(bunch): # this function gives G/(1-G) as the closed loop gain plant = bunch['plant'] # plant_sc = bunch['plant_scaled'] K = bunch['K'] control_in = bunch['control_in'] meas_out = bunch['meas_out'] K_inname = iodutil.listinputs(K)[0] K_outname = iodutil.listoutputs(K)[0] conlist = [[K_inname, meas_out[0]], [control_in[0], K_outname]] # print("CONLIST: ", conlist) # print("IOD pl", plant.iod) # print("IOD K", K.iod) # CL_all_io = ssutil.multiconnect([K, plant], conlist) CL_all_io = ssutil.multiconnect([plant, K], conlist) > CL_all_io = CL_all_io.topological_sort() E AttributeError: 'MIMOStateSpace' object has no attribute 'topological_sort' /builds/buzz/src/buzz/compute.py:347: AttributeError
- T_plot_H2(folder, dfile=None)[source]¶
Test that runs the plotting code for H2. This test can be run from another test
code
docstring
""" Test that runs the plotting code for H2. This test can be run from another test """
1@pytest.mark.parametrize( 2 'folder', [ 3 #'ExampleModels_rescale', 4 'ExampleModels', 5 'ExampleModels_working', 6 'ExampleModels_working_F3', 7 'ExampleModels_newFOM', 8 'ExampleModels_newFOM_F3', 9 'ExampleModels_DARMFOM', 10 ] 11) 12def T_plot_H2(folder, dfile = None): 13 14 15 if folder is None: 16 folder = "ExampleModels" 17 18 io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function 19 sysB = get_systemB(folder=folder) 20 21 if dfile is None: 22 ofile = "results_H2_ADY.pkl" 23 dfile = fjoin(folder, ofile) 24 print('dfile: ', dfile) 25 H2_results = buzzutil.load_results(dfile) 26 27 print('len H2_results: ', len(H2_results)) 28 29 # add a gamma value to the results for plotting 30 for point in H2_results: 31 if point["gamma"] == None: 32 point["gamma"] = np.inf 33 34 # Remove the labels from the results 35 for datadict in H2_results: 36 datadict["label1"] = None 37 datadict["label2"] = None 38 39 # Adding the current controller to the plot 40 module_gain = -40 # this is the gain of the filter module 41 filter_list = np.array([1, 3, 4, 5, 6]) # this is a list of the filters in the module that are on 42 43 zpksys, filtinfo = readFilter.readFilterSys_Scipy( 44 fjoin("H1ASC.txt"), "ASC_DHARD_Y", np.array(filter_list) 45 ) 46 47 z, p, k = FilteringUtils.d2c( 48 (zpksys.zeros, zpksys.poles, zpksys.gain), fs=1 / zpksys.dt 49 ) 50 51 k = k.real * module_gain 52 K_mod = SISO.zpk(z, p, k, angular=True, fiducial_rtol=1e-5, fiducial_atol=1e-10).asSS 53 K_iod = {"C.in": 0, "C.out": 0} 54 K = wieldSS(K_mod, K_iod) 55 56 axB = ssutil.bode(ssutil.asSISO(K)*sysB.orig_plant.siso("P.out", "P.in"), label="K_hand * orig_plant Controller") 57 axC = ssutil.bode(K, label="K_hand") 58 59 K = (ssutil.asSISO(K) * sysB.sys["S.out", "SA.in"]).mimo( 60 "C.out", "C.in" 61 ) # Add in the part of P that was moved to env. noise block 62 K = ssutil.balance_sys_gain(K) 63 64 axB = ssutil.bode(-1*ssutil.asSISO(K)*H2_results[0]['plant'].siso("P.out", "P.in"), axB =axB, label="K_hand * S_anex * P") 65 axB = ssutil.bode(H2_results[1]['K'].siso("C.out", "C.in")*H2_results[1]['plant'].siso("P.out", "P.in"), axB =axB, label="K_H2[-15] * P") 66 axB.save(tjoin("bode_KP.pdf")) 67 axB.save(tjoin("bode_KP.png")) 68 69 axC = ssutil.bode(H2_results[1]['K_usable'], axB =axC, label="K_useable") 70 axB = ssutil.bode(ssutil.asSISO(H2_results[1]['K'])*sysB.sys.siso("S.out", "SA.in")**(-1), axB =axC, label="K / S_anex") 71 axC.save(tjoin("bode_K.pdf")) 72 axC.save(tjoin("bode_K.png")) 73 74 curdict = H2_results[0].copy() 75 curdict["Ac"] = K.A 76 curdict["Bc"] = K.B 77 curdict["Cc"] = K.C 78 curdict["Dc"] = K.D 79 curdict["K"] = K 80 curdict["label"] = "Hand Tuned Controller" 81 82 extraplots = compute.calcFullResults( 83 [curdict], 84 color="dimgrey", 85 label="Hand Tuned Controller", 86 plot_omega=curdict["plot_omega"], 87 io_scales = io_scales, 88 ) 89 extraplots[0]["F1_gain"] = sum(buzzutil.listparams(H2_results, "F1_gain")) 90 extraplots[0]["linecolor"] = "Black" #'DodgerBlue' 91 extraplots[0]["linestyle"] = "--" 92 extraplots[0]["solver"] = "Hand Tuned" 93 extraplots[0]["rms_marker"] = "^" 94 95 f_Hz_range = extraplots[0]['FOM1_wn_ASD_Hz'] 96 budget_range = gwinc.load_budget('aLIGO', freq=f_Hz_range) 97 trace_range = budget_range.run(freq=f_Hz_range) 98 99 plt.loglog(f_Hz_range, extraplots[0]['FOM1_wn_ASD']*4000, label='white noise to darm out with hand tuned controller') 100 plt.loglog(f_Hz_range, trace_range.psd**0.5*4000, label='aLIGO') 101 plt.legend() 102 plt.xlabel('Frequency [Hz]') 103 plt.ylabel('ASD [m/rtHz]') 104 plt.xlim([6, 6e2]) 105 plt.ylim([4e-21, 3e-17]) 106 plt.savefig(tjoin('DARM_spec.png'), bbox_inches='tight') 107 plt.savefig(tjoin('DARM_spec.pdf'), bbox_inches='tight') 108 plt.close() 109 110 H2_results_E = H2_results + extraplots 111 112 every_nth = 1 # removes every nth element 113 H2_results_E_short = H2_results[every_nth - 1:: every_nth] + extraplots 114 115 setname_H2 = "ADY_H2" 116 fig_rms_H2 = plotting.plotRMS( 117 H2_results_E_short, 118 setname=setname_H2, 119 outlineparam="pm", 120 text="pm", 121 f1line=False, 122 h2line=False, 123 plotrange=True, 124 test=True, 125 ) 126 fig_rms_H2[0].savefig(tjoin("rms_H2.pdf"), bbox_inches="tight") 127 fig_rms_H2[0].savefig(tjoin("rms_H2.png"), bbox_inches="tight") 128 129 fig_rms_H2_range_PSD = plotting.plotRMS( 130 H2_results_E_short, 131 setname=setname_H2, 132 outlineparam="pm", 133 text="pm", 134 f1line=False, 135 h2line=False, 136 plotrange='PSD', 137 test=True, 138 ) 139 fig_rms_H2_range_PSD[0].savefig(tjoin("rms_H2_range_PSD.pdf"), bbox_inches="tight") 140 fig_rms_H2_range_PSD[0].savefig(tjoin("rms_H2_range_PSD.png"), bbox_inches="tight") 141 142 143 print('Plotting RMS Plot with lost range') 144 fig_rms_lost_range_H2 = plotting.plotRMS( 145 H2_results_E, 146 setname=setname_H2, 147 outlineparam='pm', 148 text='pm', 149 f1line=True, 150 h2line=True, 151 plotrange='diff', 152 test=True, 153 #xlim=xlim, 154 #ylim=ylim 155 ) 156 fig_rms_lost_range_H2[0].savefig(tjoin("rms_H2_lost_range.pdf"), bbox_inches="tight") 157 fig_rms_lost_range_H2[0].savefig(tjoin("rms_H2_lost_range.png"), bbox_inches="tight") 158 159 print('Plotting RMS Plot with lost range (PSD computation)') 160 fig_rms_lost_range_H2_psd = plotting.plotRMS( 161 H2_results_E, 162 setname=setname_H2, 163 outlineparam='pm', 164 text='pm', 165 f1line=True, 166 h2line=True, 167 plotrange='diff_psd', 168 test=True, 169 #xlim=xlim, 170 #ylim=ylim 171 ) 172 fig_rms_lost_range_H2_psd[0].savefig(tjoin("rms_H2_lost_range_PSD.pdf"), bbox_inches="tight") 173 fig_rms_lost_range_H2_psd[0].savefig(tjoin("rms_H2_lost_range_PSD.png"), bbox_inches="tight") 174 175 176 ylim = [1e-4, 1e8] 177 fig_ol_H2, ax = plotting.plotLoop(H2_results_E_short, "OL", setname=setname_H2, ylim=ylim, UG_line=True, test=True) 178 fig_ol_H2.savefig(tjoin("ol_H2.pdf"), bbox_inches="tight") 179 fig_ol_H2.savefig(tjoin("ol_H2.png"), bbox_inches="tight") 180 181 fig_cl_H2, ax = plotting.plotLoop(H2_results_E_short, "CL", setname=setname_H2, UG_line=True, test=True) 182 fig_cl_H2.savefig(tjoin("cl_H2.pdf"), bbox_inches="tight") 183 fig_cl_H2.savefig(tjoin("cl_H2.png"), bbox_inches="tight") 184 185 noise_plot_fig, noise_plot_axs = plotting.plot_CLnoises(H2_results_E_short[0], test=True) 186 noise_plot_fig.savefig(tjoin("noise_H2.pdf"), bbox_inches="tight") 187 noise_plot_fig.savefig(tjoin("noise_H2.png"), bbox_inches="tight") 188 189 fig_darm_H2, ax = plotting.plotDARM(H2_results_E_short, setname=setname_H2, test=True) 190 fig_darm_H2.savefig(tjoin("All_DARM_Spec.pdf"), bbox_inches="tight") 191 fig_darm_H2.savefig(tjoin("All_DARM_Spec.png"), bbox_inches="tight") 192 193 setname_vega = 'ASC_vega' 194 vega_chart = plotting.vega_plot(H2_results_E, setname=setname_vega, h2line=False, size=500, plotrange=False, test=True) 195 vega_chart.save(tjoin("vega_results_plot.html")) 196 197 if 'FBNS.DARM.out' in extraplots[0]['CL_all_io'].iod: 198 DARM_out_name = 'FBNS.DARM.out' 199 darm_in_mod = True 200 elif 'F3.DARM.out' in extraplots[0]['CL_all_io'].iod: 201 DARM_out_name = 'F3.DARM.out' 202 darm_in_mod = True 203 else: 204 DARM_out_name = None 205 206 if DARM_out_name: 207 DARM_plot_omega = np.logspace(-2, 3, 1000) * 2 * np.pi 208 DARM_noise_plot_fig, DARM_noise_plot_axs = plotting.plot_CLnoises(extraplots[0], extra_fom=DARM_out_name, extra_only=True, plot_omega=DARM_plot_omega, test=True, scale=1/io_scales.w2_rescale) 209 DARM_noise_plot_fig.savefig(tjoin("DARM_noise_H2.pdf"), bbox_inches="tight") 210 DARM_noise_plot_fig.savefig(tjoin("DARM_noise_H2.png"), bbox_inches="tight") 211 else: 212 print('DARM not in outputs. Not plotting DARM noise') 213 print(extraplots[0]['CL_all_io'].outputs)
pytest information
This code is wrapped in a pytest function using conventions detailed in pytest_conventions. The full name of this test, as known by the documentation, is:
test.ASC_SOLVER.test_solver_ADY.T_plot_H2The full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_plot_H2[ExampleModels]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl captured errors: folder = 'ExampleModels' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_H2[ExampleModels_working_F3]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl captured errors: folder = 'ExampleModels_working_F3' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_H2[ExampleModels_newFOM_F3]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl captured errors: folder = 'ExampleModels_newFOM_F3' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_H2[ExampleModels_newFOM]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl captured errors: folder = 'ExampleModels_newFOM' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_H2[ExampleModels_DARMFOM]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl captured errors: folder = 'ExampleModels_DARMFOM' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_H2[ExampleModels_working]
output
dfile: /builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl captured errors: folder = 'ExampleModels_working' dfile = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl' @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_H2(folder, dfile = None): """ Test that runs the plotting code for H2. This test can be run from another test """ if folder is None: folder = "ExampleModels" io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function sysB = get_systemB(folder=folder) if dfile is None: ofile = "results_H2_ADY.pkl" dfile = fjoin(folder, ofile) print('dfile: ', dfile) > H2_results = buzzutil.load_results(dfile) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:178: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundError
- T_plot_HiB(folder, dfile=None)[source]¶
This is a pytest needing documentation
code
docstring
"""HinfBounded_results_E = HinfBounded_results + extraplots H2_results_E = H2_results + extraplots every_nth = 2 # removes every nth element H2_results_E_short = H2_results[every_nth-1::every_nth]+ extraplots"""
1@pytest.mark.parametrize( 2 'folder', 3 [ 4 #'ExampleModels_rescale', 5 'ExampleModels', 6 'ExampleModels_working', 7 'ExampleModels_working_F3', 8 'ExampleModels_newFOM', 9 'ExampleModels_newFOM_F3', 10 'ExampleModels_DARMFOM', 11 ] 12) 13def T_plot_HiB(folder, dfile = None): 14 if folder is None: 15 folder = "ExampleModels" 16 17 sysB = get_systemB(folder=folder) 18 io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function 19 20 21 22 H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) 23 print('save fldr: ', fjoin(folder, "results_H2_ADY.pkl")) 24 25 if dfile is None: 26 ofile = "results_Hib_ADY.pkl" 27 dfile = fjoin(folder, ofile) 28 results_Hib = buzzutil.load_results(dfile) 29 30 31 # print('Gamma:', buzzutil.listparams(HinfBounded_results, 'gamma')) 32 # print('igsq:', np.unique(buzzutil.listparams(HinfBounded_results, 'igsq'))) 33 # print('F1_gain', np.unique(buzzutil.listparams(HinfBounded_results, 'F1_gain'))) 34 # print('F1_gain', buzzutil.listparams(HinfBounded_results, 'F1_gain')) 35 36 HinfBounded_results = results_Hib 37 # H2_results = results_H2 38 39 # f1_gains = np.unique(buzzutil.listparams(HinfBounded_results, 'F1_gain')) 40 41 # HinfBounded_results = buzzutil.filtparam(HinfBounded_results, "F1_gain", f1_gains[3], compare="eq") 42 43 for point in HinfBounded_results: 44 if point["gamma"] == None: 45 point["gamma"] = np.inf 46 47 # Remove labels 48 for datadict in HinfBounded_results: 49 datadict["label1"] = None 50 datadict["label2"] = None 51 52 # Adding the current controller to the plot 53 module_gain = -40 # this is the gain of the filter module 54 filter_list = np.array([1, 3, 4, 5, 6]) # this is a list of the filters in the module that are on 55 56 zpksys, filtinfo = readFilter.readFilterSys_Scipy( 57 fjoin("H1ASC.txt"), "ASC_DHARD_Y", np.array(filter_list) 58 ) 59 60 z, p, k = FilteringUtils.d2c( 61 (zpksys.zeros, zpksys.poles, zpksys.gain), fs=1 / zpksys.dt 62 ) 63 64 k = k.real * module_gain 65 K_mod = SISO.zpk(z, p, k, angular=True, fiducial_rtol=1e-5, fiducial_atol=1e-10).asSS 66 K_iod = {"C.in": 0, "C.out": 0} 67 K = wieldSS(K_mod, K_iod) 68 K = (K.siso("C.out", "C.in") * sysB.sys["S.out", "SA.in"]).mimo( 69 "C.out", "C.in" 70 ) # Add in the part of P that was moved to env. noise block 71 K = ssutil.balance_sys_gain(K) 72 73 curdict = HinfBounded_results[0].copy() 74 curdict["Ac"] = K.A 75 curdict["Bc"] = K.B 76 curdict["Cc"] = K.C 77 curdict["Dc"] = K.D 78 curdict["K"] = K 79 curdict["label"] = "Hand Tuned Controller" 80 81 extraplots = compute.calcFullResults( 82 [curdict], color="dimgrey", 83 label="Hand Tuned Controller", 84 plot_omega=curdict["plot_omega"], 85 io_scales=io_scales, 86 ) 87 extraplots[0]["F1_gain"] = sum(buzzutil.listparams(HinfBounded_results, "F1_gain")) 88 extraplots[0]["linecolor"] = "DodgerBlue" 89 extraplots[0]["linestyle"] = "--" 90 extraplots[0]["solver"] = "Hand Tuned" 91 extraplots[0]["rms_marker"] = "^" 92 93 HinfBounded_results_E = HinfBounded_results + extraplots 94 H2_results_E = H2_results + extraplots 95 96 every_nth = 2 # removes every nth element 97 H2_results_E_short = H2_results[every_nth - 1 :: every_nth] + extraplots 98 99 100 xlim= [0.2, 0.5] 101 ylim = [3e-14, 9e-14] 102 # Adding the current controller to the plot 103 setname_Hib = "ADY_Hib" 104 105 if len(HinfBounded_results_E + H2_results)>100: 106 plot_text=False 107 else: 108 plot_text='pm' 109 110 print('Plotting RMS Plot') 111 fig_rms_Hib = plotting.plotRMS( 112 HinfBounded_results_E + H2_results, 113 setname=setname_Hib, 114 outlineparam='pm', 115 text=plot_text, 116 f1line=True, 117 h2line=True, 118 plotrange=False, 119 #xlim=xlim, 120 #ylim=ylim 121 test=True, 122 ) 123 124 fig_rms_Hib[0].savefig(tjoin("rms_HiB.pdf"), bbox_inches="tight") 125 fig_rms_Hib[0].savefig(tjoin("rms_HiB.png"), bbox_inches="tight") 126 127 print('Plotting RMS Plot with lost range') 128 fig_rms_lost_range_Hib = plotting.plotRMS( 129 HinfBounded_results_E + H2_results, 130 setname=setname_Hib, 131 outlineparam='pm', 132 text=plot_text, 133 f1line=True, 134 h2line=True, 135 plotrange='diff', 136 test=True, 137 #xlim=xlim, 138 #ylim=ylim 139 ) 140 141 fig_rms_lost_range_Hib[0].savefig(tjoin("rms_HiB_lost_range.pdf"), bbox_inches="tight") 142 fig_rms_lost_range_Hib[0].savefig(tjoin("rms_HiB_lost_range.png"), bbox_inches="tight") 143 144 print('Plotting RMS Plot with lost range (PSD computation)') 145 fig_rms_lost_range_Hib_psd = plotting.plotRMS( 146 HinfBounded_results_E + H2_results, 147 setname=setname_Hib, 148 outlineparam='pm', 149 text=plot_text, 150 f1line=True, 151 h2line=True, 152 plotrange='diff_psd', 153 test=True, 154 #xlim=xlim, 155 #ylim=ylim 156 ) 157 158 fig_rms_lost_range_Hib_psd[0].savefig(tjoin("rms_HiB_lost_range_PSD.pdf"), bbox_inches="tight") 159 fig_rms_lost_range_Hib_psd[0].savefig(tjoin("rms_HiB_lost_range_PSD.png"), bbox_inches="tight") 160 161 162 f1gains_Hib = np.unique(buzzutil.listparams(HinfBounded_results, "F1_gain")) 163 try: 164 HinfBounded_results_single_f1gain = buzzutil.filtparam(HinfBounded_results, "F1_gain", f1gains_Hib[-4], compare="eq") 165 except: 166 HinfBounded_results_single_f1gain = buzzutil.filtparam(HinfBounded_results, "F1_gain", f1gains_Hib[0], compare="eq") 167 HinfBounded_results_single_f1gain = ( 168 compute.calcFullResults( 169 HinfBounded_results_single_f1gain, 170 colormap="RdYlGn", 171 plot_omega=HinfBounded_results[0]["plot_omega"], 172 color_param="igsq", 173 label=False, 174 io_scales=io_scales, 175 ) 176 + extraplots 177 ) 178 179 print('Plotting RMS Plot With Range') 180 fig_rms_range_Hib = plotting.plotRMS( 181 HinfBounded_results + H2_results, 182 setname=setname_Hib, 183 outlineparam='pm', 184 text=plot_text, 185 f1line=True, 186 h2line=True, 187 plotrange=True, 188 test=True, 189 #xlim=xlim, 190 #ylim=ylim 191 ) 192 193 fig_rms_range_Hib[0].savefig(tjoin("rms_HiB_range.pdf"), bbox_inches="tight") 194 fig_rms_range_Hib[0].savefig(tjoin("rms_HiB_range.png"), bbox_inches="tight") 195 196 xlim_PSD=[4.725, 4.805] 197 print('Plotting RMS Plot With Range from PSD') 198 fig_rms_range_PSD_Hib = plotting.plotRMS( 199 HinfBounded_results + H2_results, 200 setname=setname_Hib, 201 outlineparam='pm', 202 text=plot_text, 203 f1line=True, 204 h2line=True, 205 plotrange='PSD', 206 xlim=xlim_PSD, 207 test=True, 208 #ylim=ylim 209 ) 210 211 fig_rms_range_PSD_Hib[0].savefig(tjoin("rms_HiB_range_from_PSD.pdf"), bbox_inches="tight") 212 fig_rms_range_PSD_Hib[0].savefig(tjoin("rms_HiB_range_from_PSD.png"), bbox_inches="tight") 213 214 print('Plotting Heatmap') 215 fig_rmsheatmap = plotting.plotHeatmap(HinfBounded_results + H2_results, test=True) 216 fig_rmsheatmap[0].savefig(tjoin("heatmap.pdf"), bbox_inches="tight") 217 fig_rmsheatmap[0].savefig(tjoin("heatmap.png"), bbox_inches="tight") 218 219 try: 220 print('Plotting RMS Plot with Heatmap') 221 fig_rmsheatmap_Hib = plotting.plotRMS( 222 HinfBounded_results_E + H2_results, 223 setname=setname_Hib, 224 outlineparam='pm', 225 text=False, 226 f1line=True, 227 h2line=True, 228 plotrange=True, 229 heatmap=True, 230 test=True, 231 ) 232 233 fig_rmsheatmap_Hib[0].savefig(tjoin("rms_heatmap_HiB.pdf"), bbox_inches="tight") 234 fig_rmsheatmap_Hib[0].savefig(tjoin("rms_heatmap_HiB.png"), bbox_inches="tight") 235 except Exception as e: 236 print("Heatmap Failed:, ", e) 237 238 print('Plotting RMS Range Plot single result') 239 fig_single_Hib = plotting.plotRMS( 240 HinfBounded_results_single_f1gain + H2_results, 241 setname=setname_Hib, 242 outlineparam='pm', 243 text=False, 244 f1line=True, 245 h2line=True, 246 plotrange=True, 247 heatmap=False, 248 test=True, 249 ) 250 251 fig_single_Hib[0].savefig(tjoin("rms_HiB_singlef1gain_range.pdf"), bbox_inches="tight") 252 fig_single_Hib[0].savefig(tjoin("rms_HiB_singlef1gain_range.png"), bbox_inches="tight") 253 254 255 256 257 print('Plotting Open Loop') 258 ylim = [3e-4, 1e5] 259 fig_ol_Hib, ax_ol_Hib = plotting.plotLoop( 260 HinfBounded_results_single_f1gain, "OL", setname=setname_Hib, ylim=ylim, UG_line=True, test=True, 261 ) 262 fig_ol_Hib.savefig(tjoin("ol_HiB.pdf"), bbox_inches="tight") 263 fig_ol_Hib.savefig(tjoin("ol_HiB.png"), bbox_inches="tight") 264 265 print('Plotting Closed Loop') 266 xlim = [1e-1, 1e4] 267 fig_cl_Hib, ax_cl_Hib = plotting.plotLoop( 268 HinfBounded_results_single_f1gain, "CL", setname=setname_Hib, UG_line=True, xlim=xlim, test=True, 269 ) 270 fig_cl_Hib.savefig(tjoin("cl_HiB.pdf"), bbox_inches="tight") 271 fig_cl_Hib.savefig(tjoin("cl_HiB.png"), bbox_inches="tight") 272 273 print('Plotting gm pm plot') 274 ylim = None # [0, 12] 275 plt.clf() 276 fig_gm_pm, ax_gm_pm = plotting.plot_gm_pm( 277 HinfBounded_results_E, setname="", f1line=True, text=None, ylim=[0.5,2.5], xlim=[2.5,20], io_scales=io_scales, test=True, 278 ) 279 fig_gm_pm.savefig(tjoin("gm_HiB.pdf"), bbox_inches="tight") 280 fig_gm_pm.savefig(tjoin("gm_HiB.png"), bbox_inches="tight") 281 282 print('Plotting vegaplot') 283 setname_vega = 'ASC_vega' 284 vega_chart = plotting.vega_plot(HinfBounded_results_E + H2_results, setname=setname_vega, h2line=False, size=500, plotrange=False, test=True) 285 vega_chart.save(tjoin("vega_results_plot.html")) 286 287 DARM_out_name = 'DARM.out' 288 if DARM_out_name in extraplots[0]['CL_all_io'].outputs.keys(): 289 print('Plotting DARM noise') 290 DARM_plot_omega = np.logspace(-2, 3, 1000) * 2 * np.pi 291 DARM_noise_plot_fig, DARM_noise_plot_axs = plotting.plot_CLnoises(extraplots[0], extra_fom=DARM_out_name, extra_only=True, plot_omega=DARM_plot_omega, test=True, scale=1/io_scales.w2_rescale) 292 DARM_noise_plot_fig.savefig(tjoin("DARM_noise_H2.pdf"), bbox_inches="tight") 293 DARM_noise_plot_fig.savefig(tjoin("DARM_noise_H2.png"), bbox_inches="tight")
pytest information
This code is wrapped in a pytest function using conventions detailed in pytest_conventions. The full name of this test, as known by the documentation, is:
test.ASC_SOLVER.test_solver_ADY.T_plot_HiBThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_plot_HiB[ExampleModels]
output
status: failed duration: 0.032s captured errors: folder = 'ExampleModels', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_HiB[ExampleModels_newFOM_F3]
output
status: failed duration: 0.006s captured errors: folder = 'ExampleModels_newFOM_F3', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM_F3/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_HiB[ExampleModels_newFOM]
output
status: failed duration: 0.009s captured errors: folder = 'ExampleModels_newFOM', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_newFOM/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_HiB[ExampleModels_DARMFOM]
output
status: failed duration: 0.006s captured errors: folder = 'ExampleModels_DARMFOM', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_DARMFOM/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_HiB[ExampleModels_working]
output
status: failed duration: 0.014s captured errors: folder = 'ExampleModels_working', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_working/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundErrorT_plot_HiB[ExampleModels_working_F3]
output
status: failed duration: 0.022s captured errors: folder = 'ExampleModels_working_F3', dfile = None @pytest.mark.parametrize( 'folder', [ #'ExampleModels_rescale', 'ExampleModels', 'ExampleModels_working', 'ExampleModels_working_F3', 'ExampleModels_newFOM', 'ExampleModels_newFOM_F3', 'ExampleModels_DARMFOM', ] ) def T_plot_HiB(folder, dfile = None): if folder is None: folder = "ExampleModels" sysB = get_systemB(folder=folder) io_scales = file_io.load(fjoin(folder, 'io_scales.yml')) # Saved by the normalization in the make function > H2_results = buzzutil.load_results(fjoin(folder, "results_H2_ADY.pkl")) /builds/buzz/test/ASC_SOLVER/test_solver_ADY.py:495: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ filename = '/builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl' def load_results(filename): """Loads the results from a pickle file Args: filename (str): filename to load the results from Returns: list: list of results dictionaries """ > with open(filename, 'rb') as f: E FileNotFoundError: [Errno 2] No such file or directory: '/builds/buzz/test/ASC_SOLVER/ExampleModels_working_F3/results_H2_ADY.pkl' /builds/buzz/src/buzz/buzzutil.py:268: FileNotFoundError
- get_systemB(folder='ExampleModels')[source]¶
This is a pytest needing documentation
code
1def get_systemB(folder = 'ExampleModels'): 2 fname = fjoin(folder, "ADY_Sanex.mat") 3 sys = ssutil.loadSys(fname) 4 5 orig_plant_fname = fjoin(folder, "ADY_plant.mat") 6 orig_plant = ssutil.loadSys(orig_plant_fname) 7 8 return Bunch(locals())
pytest information
This code is wrapped in a pytest function using conventions detailed in pytest_conventions. The full name of this test, as known by the documentation, is:
test.ASC_SOLVER.test_solver_ADY.get_systemBThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.