87 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
			
		
		
	
	
			87 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
| SGS               Data for the Real Nonsymmetric Schur Form Driver
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| 5                 Number of matrix dimensions
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| 2 6 10 12 20 30   Matrix dimensions  
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold for test ratios
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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| SGS 26            Test all 26 matrix types
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| SGV               Data for the Real Nonsymmetric Eigenvalue Problem Driver
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| 6                 Number of matrix dimensions
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| 2 6 8 10 15 20    Matrix dimensions  
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold value
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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| SGV 26            Test all 26 matrix types
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| SGX               Data for the Real Nonsymmetric Schur Form Expert Driver 
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| 2                 Largest matrix dimension (0 <= NSIZE <= 5)
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold for test ratios
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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| SGX               Data for the Real Nonsymmetric Schur Form Expert Driver 
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| 0                 Largest matrix dimension (0 <= NSIZE <= 5)
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold for test ratios
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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|    4 
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|    2
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|    8.0000E+00   4.0000E+00  -1.3000E+01   4.0000E+00   Input matrix A
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|    0.0000E+00   7.0000E+00  -2.4000E+01  -3.0000E+00
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|    0.0000E+00   0.0000E+00   3.0000E+00  -5.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.6000E+01
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|    9.0000E+00  -1.0000E+00   1.0000E+00  -6.0000E+00   Input matrix B
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|    0.0000E+00   4.0000E+00   1.6000E+01  -2.4000E+01
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|    0.0000E+00   0.0000E+00  -1.1000E+01   6.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   4.0000E+00
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|    2.5901E-01   1.7592E+00     Condition #'s for cluster selected from lower 2x2
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|    4 
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|    2
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|    1.0000E+00   2.0000E+00   3.0000E+00   4.0000E+00   Input matrix A
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|    0.0000E+00   5.0000E+00   6.0000E+00   7.0000E+00
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|    0.0000E+00   0.0000E+00   8.0000E+00   9.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.0000E+01
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|   -1.0000E+00  -1.0000E+00  -1.0000E+00  -1.0000E+00   Input matrix B
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|    0.0000E+00  -1.0000E+00  -1.0000E+00  -1.0000E+00
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|    0.0000E+00   0.0000E+00   1.0000E+00  -1.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.0000E+00
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|    9.8173E-01   6.3649E-01     Condition #'s for cluster selected from lower 2x2
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| 0
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| SXV               Data for the Real Nonsymmetric Eigenvalue Expert Driver 
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| 5                 Largest matrix dimension
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold for test ratios
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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| SXV               Data for the Real Nonsymmetric Eigenvalue Expert Driver 
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| 0                 Largest matrix dimension
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| 1 1 1 2 1         Parameters NB, NBMIN, NXOVER, NS, NBCOL
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| 10                Threshold for test ratios
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| .TRUE.            Put T to test the error exits
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| 0                 Code to interpret the seed
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|    4
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|    8.0000E+00   4.0000E+00  -1.3000E+01   4.0000E+00   Input matrix A
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|    0.0000E+00   7.0000E+00  -2.4000E+01  -3.0000E+00
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|    0.0000E+00   0.0000E+00   3.0000E+00  -5.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.6000E+01
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|    9.0000E+00  -1.0000E+00   1.0000E+00  -6.0000E+00   Input matrix B
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|    0.0000E+00   4.0000E+00   1.6000E+01  -2.4000E+01
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|    0.0000E+00   0.0000E+00  -1.1000E+01   6.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   4.0000E+00
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|    3.1476E+00   2.5286E+00   4.2241E+00   3.4160E+00   eigenvalue condition #'s
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|    6.7340E-01   1.1380E+00   3.5424E+00   9.5917E-01   eigenvector condition #'s
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|    4
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|    1.0000E+00   2.0000E+00   3.0000E+00   4.0000E+00   Input matrix A
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|    0.0000E+00   5.0000E+00   6.0000E+00   7.0000E+00
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|    0.0000E+00   0.0000E+00   8.0000E+00   9.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.0000E+01
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|   -1.0000E+00  -1.0000E+00  -1.0000E+00  -1.0000E+00   Input matrix B
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|    0.0000E+00  -1.0000E+00  -1.0000E+00  -1.0000E+00
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|    0.0000E+00   0.0000E+00   1.0000E+00  -1.0000E+00
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|    0.0000E+00   0.0000E+00   0.0000E+00   1.0000E+00
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|    1.3639E+00   4.0417E+00   6.4089E-01   6.8030E-01   eigenvalue condition #'s
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|    7.6064E-01   8.4964E-01   1.1222E-01   1.1499E-01   eigenvector condition #'s
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| 0
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