The program can run, but the final result is wrong. Can I get any information from the output of CVX?

The program can run, but the final result is wrong compared with the original text. Can I get any information from the output of CVX?
I used SeduMi and SDPT3 to solve, but SDPT3 appeared “Failed” and “Inaccurate/Solved”.

    Calling SeDuMi 1.3.4: 133 variables, 58 equality constraints
   For improved efficiency, SeDuMi is solving the dual problem.
------------------------------------------------------------
SeDuMi 1.3.4 by AdvOL, 2005-2008 and Jos F. Sturm, 1998-2003.
Alg = 2: xz-corrector, Adaptive Step-Differentiation, theta = 0.250, beta = 0.500
eqs m = 58, order n = 94, dim = 134, blocks = 28
nnz(A) = 268 + 0, nnz(ADA) = 506, nnz(L) = 282
 it :     b*y       gap    delta  rate   t/tP*  t/tD*   feas cg cg  prec
  0 :            1.75E+03 0.000
  1 :  -2.13E+04 6.50E+02 0.000 0.3711 0.9000 0.9000   1.92  1  1  3.3E+02
  2 :  -1.47E+04 2.41E+02 0.000 0.3707 0.9000 0.9000   2.85  1  1  6.7E+01
  3 :  -4.89E+04 7.65E+01 0.000 0.3175 0.9000 0.9000  -0.25  1  1  6.6E+01
  4 :  -7.85E+04 2.93E+01 0.000 0.3836 0.9000 0.9000  -0.34  1  1  3.8E+01
  5 :  -6.56E+04 1.28E+01 0.000 0.4369 0.9000 0.9000   0.73  1  1  1.5E+01
  6 :  -4.62E+04 7.21E+00 0.000 0.5628 0.9000 0.9000   1.32  1  1  7.7E+00
  7 :  -3.70E+04 4.16E+00 0.000 0.5764 0.9000 0.9000   1.10  1  1  4.6E+00
  8 :  -3.11E+04 2.68E+00 0.000 0.6440 0.9000 0.9000   1.04  1  1  3.2E+00
  9 :  -2.50E+04 3.28E-04 0.000 0.0001 0.0000 0.9000   1.08  1  1  3.2E+00
 10 :  -2.32E+04 1.33E-04 0.000 0.4048 0.9000 0.2313   1.06  1  1  1.5E+00
 11 :  -2.03E+04 8.41E-05 0.000 0.6341 0.9000 0.9000   0.72  1  1  1.2E+00
 12 :  -1.57E+04 4.14E-05 0.000 0.4924 0.9000 0.9000   0.85  1  1  6.4E-01
 13 :  -1.36E+04 2.57E-05 0.000 0.6211 0.9000 0.9000   0.67  1  1  4.8E-01
 14 :  -1.10E+04 1.31E-05 0.000 0.5085 0.9000 0.9000   0.76  1  1  2.8E-01
 15 :  -9.78E+03 8.20E-06 0.000 0.6266 0.9000 0.9000   0.57  1  1  2.2E-01
 16 :  -8.15E+03 3.87E-06 0.000 0.4720 0.9000 0.9000   0.61  1  1  1.3E-01
 17 :  -9.37E+03 2.66E-06 0.000 0.6877 0.9000 0.9000  -0.01  1  1  1.3E-01
 18 :  -8.67E+03 1.42E-06 0.000 0.5343 0.9000 0.9000  -0.02  1  1  9.0E-02
 19 :  -7.87E+03 8.43E-07 0.000 0.5932 0.9000 0.9000   0.14  1  1  6.9E-02
 20 :  -6.54E+03 3.73E-07 0.000 0.4426 0.9000 0.9000   0.41  1  1  3.7E-02
 21 :  -5.78E+03 2.10E-07 0.000 0.5640 0.9000 0.9000   0.38  1  1  2.6E-02
 22 :  -4.80E+03 9.56E-08 0.000 0.4542 0.9000 0.9000   0.55  1  1  1.4E-02
 23 :  -4.27E+03 5.46E-08 0.000 0.5716 0.9000 0.9000   0.46  1  1  1.0E-02
 24 :  -3.61E+03 2.58E-08 0.000 0.4726 0.9000 0.9000   0.57  1  1  6.0E-03
 25 :  -3.27E+03 1.53E-08 0.000 0.5928 0.9000 0.9000   0.47  1  1  4.5E-03
 26 :  -2.82E+03 7.43E-09 0.000 0.4851 0.9000 0.9000   0.55  1  1  2.7E-03
 27 :  -2.59E+03 4.52E-09 0.000 0.6091 0.9000 0.9000   0.46  1  1  2.0E-03
 28 :  -2.27E+03 2.24E-09 0.000 0.4957 0.9000 0.9000   0.53  1  1  1.2E-03
 29 :  -2.11E+03 1.40E-09 0.000 0.6262 0.9000 0.9000   0.46  2  1  9.6E-04
 30 :  -1.91E+03 7.49E-10 0.000 0.5333 0.9000 0.9000   0.51  2  1  6.3E-04
 31 :  -1.78E+03 4.65E-10 0.000 0.6212 0.9000 0.9000   0.48  2  2  4.7E-04
 32 :  -1.65E+03 2.75E-10 0.000 0.5910 0.9000 0.9000   0.50  2  1  3.4E-04
 33 :  -1.55E+03 1.70E-10 0.000 0.6191 0.9000 0.9000   0.50  2  2  2.5E-04
 34 :  -1.46E+03 1.07E-10 0.000 0.6284 0.9000 0.9000   0.50  2  2  1.9E-04
 35 :  -1.38E+03 6.75E-11 0.000 0.6314 0.9000 0.9000   0.50  2  2  1.4E-04
 36 :  -1.31E+03 4.32E-11 0.000 0.6398 0.9000 0.9000   0.50  2  2  1.1E-04
 37 :  -1.25E+03 2.79E-11 0.000 0.6459 0.9000 0.9000   0.50  2  2  8.2E-05
 38 :  -1.19E+03 1.81E-11 0.000 0.6500 0.9000 0.9000   0.51  2  2  6.2E-05
 39 :  -1.15E+03 1.19E-11 0.000 0.6547 0.9000 0.9000   0.51  2  2  4.8E-05
 40 :  -1.11E+03 7.82E-12 0.000 0.6587 0.9000 0.9000   0.52  3  3  3.7E-05
 41 :  -1.07E+03 5.18E-12 0.000 0.6619 0.9000 0.9000   0.52  3  3  2.8E-05
 42 :  -1.04E+03 3.44E-12 0.000 0.6649 0.9000 0.9000   0.53  3  3  2.2E-05
 43 :  -1.01E+03 2.30E-12 0.000 0.6675 0.9000 0.9000   0.54  3  3  1.7E-05
 44 :  -9.80E+02 1.54E-12 0.000 0.6697 0.9000 0.9000   0.54  3  3  1.3E-05
 45 :  -9.57E+02 1.03E-12 0.000 0.6715 0.9000 0.9000   0.55  3  3  1.0E-05
 46 :  -9.36E+02 6.96E-13 0.000 0.6732 0.9000 0.9000   0.55  3  3  7.8E-06
 47 :  -9.18E+02 4.69E-13 0.000 0.6745 0.9000 0.9000   0.56  3  3  6.0E-06
 48 :  -9.02E+02 3.17E-13 0.000 0.6756 0.9000 0.9000   0.56  3  3  4.7E-06
 49 :  -8.88E+02 2.14E-13 0.000 0.6765 0.9000 0.9000   0.57  3  3  3.6E-06
 50 :  -8.75E+02 1.45E-13 0.000 0.6772 0.9000 0.9000   0.57  3  3  2.8E-06
 51 :  -8.64E+02 9.84E-14 0.000 0.6777 0.9000 0.9000   0.58  3  3  2.2E-06
 52 :  -8.54E+02 6.67E-14 0.000 0.6781 0.9000 0.9000   0.58  3  3  1.7E-06
 53 :  -8.45E+02 4.53E-14 0.000 0.6783 0.9000 0.9000   0.59  4  3  1.3E-06
 54 :  -8.37E+02 3.07E-14 0.000 0.6784 0.9000 0.9000   0.59  5  3  1.0E-06
 55 :  -8.31E+02 2.08E-14 0.000 0.6784 0.9000 0.9000   0.59  4  4  7.9E-07
 56 :  -8.24E+02 1.41E-14 0.000 0.6783 0.9000 0.9000   0.59  5  5  6.1E-07
 57 :  -8.19E+02 9.58E-15 0.000 0.6781 0.9000 0.9000   0.60  5  4  4.7E-07
 58 :  -8.15E+02 6.50E-15 0.000 0.6778 0.9000 0.9000   0.60  5  5  3.6E-07
 59 :  -8.10E+02 4.40E-15 0.000 0.6775 0.9000 0.9000   0.60  5  5  2.8E-07
 60 :  -8.07E+02 2.98E-15 0.000 0.6770 0.9000 0.9000   0.60  5  5  2.2E-07
 61 :  -8.04E+02 2.02E-15 0.000 0.6765 0.9000 0.9000   0.60  5  5  1.7E-07
 62 :  -8.01E+02 1.36E-15 0.000 0.6760 0.9000 0.9000   0.61  5  5  1.3E-07
 63 :  -7.98E+02 9.20E-16 0.000 0.6753 0.9000 0.9000   0.61  5  5  9.9E-08
 64 :  -7.96E+02 6.21E-16 0.000 0.6746 0.9000 0.9000   0.61  5  5  7.6E-08
 65 :  -7.94E+02 4.18E-16 0.000 0.6739 0.9000 0.9000   0.61  5  5  5.8E-08
 66 :  -7.93E+02 2.82E-16 0.000 0.6731 0.9000 0.9000   0.61  5  5  4.5E-08
 67 :  -7.91E+02 1.89E-16 0.000 0.6723 0.9000 0.9000   0.60  5  5  3.4E-08
 68 :  -7.90E+02 1.27E-16 0.000 0.6716 0.9000 0.9000   0.60  5  5  2.6E-08
 69 :  -7.89E+02 8.53E-17 0.000 0.6711 0.9000 0.9000   0.60  5  5  2.0E-08
 70 :  -7.88E+02 5.72E-17 0.000 0.6708 0.9000 0.9000   0.60  5  5  1.5E-08
 71 :  -7.87E+02 3.84E-17 0.000 0.6708 0.9000 0.9000   0.59  5  5  1.2E-08

iter seconds digits       c*x               b*y
 71      0.8   Inf -7.8728637897e+02 -7.8724803090e+02
|Ax-b| =   2.8e-07, [Ay-c]_+ =   0.0E+00, |x|=  8.2e+02, |y|=  3.3e+09

Detailed timing (sec)
   Pre          IPM          Post
1.600E-02    3.350E-01    4.999E-03    
Max-norms: ||b||=32, ||c|| = 3.819990e+03,
Cholesky |add|=0, |skip| = 1, ||L.L|| = 264.979.
------------------------------------------------------------
Status: Solved
Optimal value (cvx_optval): +851.248



Calling SDPT3 4.0: 133 variables, 58 equality constraints
   For improved efficiency, SDPT3 is solving the dual problem.
------------------------------------------------------------

 num. of constraints = 58
 dim. of socp   var  = 94,   num. of socp blk  = 27
 dim. of linear var  = 39
*******************************************************************
   SDPT3: Infeasible path-following algorithms
*******************************************************************
 version  predcorr  gam  expon  scale_data
    NT      1      0.000   1        0    
it pstep dstep pinfeas dinfeas  gap      prim-obj      dual-obj    cputime
-------------------------------------------------------------------
 0|0.000|0.000|5.7e+03|5.3e+00|3.5e+06| 7.386180e+03  0.000000e+00| 0:0:00| chol  1  1 
 1|0.785|0.790|1.2e+03|1.1e+00|7.8e+05| 1.723921e+03 -1.923083e+04| 0:0:00| chol  1  1 
 2|0.444|0.666|6.8e+02|3.7e-01|4.6e+05| 2.374470e+02 -2.144177e+04| 0:0:00| chol  1  1 
 3|0.621|0.513|2.6e+02|1.8e-01|2.1e+05|-7.905358e+02 -2.201030e+04| 0:0:00| chol  1  1 
 4|0.593|0.811|1.0e+02|3.4e-02|9.6e+04|-9.189484e+02 -1.449127e+04| 0:0:00| chol  1  1 
 5|0.653|0.782|3.6e+01|7.4e-03|4.4e+04|-8.444546e+02 -1.171688e+04| 0:0:00| chol  1  1 
 6|0.724|0.516|1.0e+01|3.6e-03|1.8e+04|-8.812925e+02 -9.192243e+03| 0:0:00| chol  1  1 
 7|0.418|0.840|5.8e+00|5.8e-04|9.6e+03|-8.804289e+02 -5.214458e+03| 0:0:00| chol  1  1 
 8|0.513|0.726|2.8e+00|1.6e-04|5.4e+03|-9.231530e+02 -3.833955e+03| 0:0:00| chol  1  1 
 9|0.664|0.469|9.5e-01|8.4e-05|2.9e+03|-1.083547e+03 -3.095025e+03| 0:0:01| chol  1  1 
10|0.536|0.305|4.4e-01|5.8e-05|2.1e+03|-1.014110e+03 -2.632308e+03| 0:0:01| chol  2  2 
11|0.543|0.208|2.0e-01|4.6e-05|1.6e+03|-9.535865e+02 -2.343841e+03| 0:0:01| chol  2  2 
12|0.300|0.483|1.4e-01|2.4e-05|1.1e+03|-9.265527e+02 -1.779439e+03| 0:0:01| chol  2  2 
13|0.534|0.198|6.6e-02|1.9e-05|8.8e+02|-8.691975e+02 -1.635756e+03| 0:0:01| chol  2  2 
14|0.549|0.256|3.0e-02|1.2e-04|7.5e+02|-8.427873e+02 -1.456904e+03| 0:0:01| chol  2  2 
15|0.597|0.169|1.2e-02|2.1e-04|7.1e+02|-8.060997e+02 -1.357591e+03| 0:0:01| chol  2  2 
16|0.511|0.326|5.9e-03|2.3e-04|5.6e+02|-7.930665e+02 -1.194707e+03| 0:0:01| chol  2  2 
17|0.443|0.276|3.3e-03|2.5e-04|4.9e+02|-7.797021e+02 -1.105383e+03| 0:0:01| chol  3  3 
18|0.609|0.235|1.3e-03|2.6e-04|4.4e+02|-7.674437e+02 -1.049609e+03| 0:0:01| chol  3  3 
19|0.515|0.280|6.2e-04|2.5e-04|3.7e+02|-7.636189e+02 -9.904021e+02| 0:0:01| chol  3  3 
20|0.626|0.230|2.3e-04|2.6e-04|3.3e+02|-7.593313e+02 -9.543762e+02| 0:0:01| chol  3  4 
21|0.504|0.317|1.2e-04|2.2e-04|2.7e+02|-7.593071e+02 -9.092473e+02| 0:0:01| chol  4  5 
22|0.528|0.244|5.4e-05|1.9e-04|2.3e+02|-7.582978e+02 -8.855071e+02| 0:0:01| chol  5  8 
23|0.628|0.210|2.0e-05|1.6e-04|1.9e+02|-7.575406e+02 -8.695169e+02| 0:0:01| chol  4 12 
24|0.670|0.950|6.7e-06|1.2e-05|3.2e+01|-7.616033e+02 -7.858919e+02| 0:0:01| chol 
  linsysolve: Schur complement matrix not positive definite
  switch to LU factor. lu  7   1 
25|1.000|0.951|2.8e-09|1.5e-06|5.0e+00|-7.677000e+02 -7.707895e+02| 0:0:01| lu 18  30 
26|0.889|0.988|7.1e-08|1.9e-08|1.9e+00|-7.685456e+02 -7.694064e+02| 0:0:01| lu 12   2 
27|0.983|0.967|2.0e-09|1.5e-09|5.7e-02|-7.687666e+02 -7.679642e+02| 0:0:01| lu 27   1 
28|0.985|0.924|9.6e-10|5.1e-10|4.2e-03|-7.687392e+02 -7.679204e+02| 0:0:01| lu 13   8 
29|0.959|0.917|1.2e-08|1.5e-10|6.0e-04|-7.687304e+02 -7.679172e+02| 0:0:01| lu 13   2 
30|0.557|0.910|4.5e-09|5.2e-11|2.0e-04|-7.687299e+02 -7.679169e+02| 0:0:01| lu 18 ^18 
31|0.543|0.916|2.1e-09|2.2e-11|9.1e-05|-7.687296e+02 -7.679169e+02| 0:0:01| lu 15 ^24 
32|0.537|0.932|4.7e-09|1.2e-11|4.5e-05|-7.687295e+02 -7.679169e+02| 0:0:01| lu 30   1 
33|0.535|0.945|1.4e-09|5.0e-12|2.3e-05|-7.687295e+02 -7.679168e+02| 0:0:01| lu 22 ^ 7 
34|0.533|0.954|2.1e-09|3.3e-12|1.2e-05|-7.687294e+02 -7.679168e+02| 0:0:01|
  stop: max(relative gap, infeasibilities) < 1.49e-08
-------------------------------------------------------------------
 number of iterations   = 34
 primal objective value = -7.68729434e+02
 dual   objective value = -7.67916842e+02
 gap := trace(XZ)       = 1.22e-05
 relative gap           = 7.91e-09
 actual relative gap    = -5.28e-04
 rel. primal infeas (scaled problem)   = 2.07e-09
 rel. dual     "        "       "      = 3.33e-12
 rel. primal infeas (unscaled problem) = 0.00e+00
 rel. dual     "        "       "      = 0.00e+00
 norm(X), norm(y), norm(Z) = 5.9e+02, 1.3e+08, 1.9e+08
 norm(A), norm(b), norm(C) = 2.4e+03, 3.7e+01, 5.6e+03
 Total CPU time (secs)  = 0.89  
 CPU time per iteration = 0.03  
 termination code       =  0
 DIMACS: 2.3e-09  0.0e+00  6.0e-12  0.0e+00  -5.3e-04  7.9e-09
-------------------------------------------------------------------
 
------------------------------------------------------------
Status: Solved
Optimal value (cvx_optval): +831.917


Calling SDPT3 4.0: 135 variables, 58 equality constraints
   For improved efficiency, SDPT3 is solving the dual problem.
------------------------------------------------------------

 num. of constraints = 58
 dim. of socp   var  = 96,   num. of socp blk  = 27
 dim. of linear var  = 39
*******************************************************************
   SDPT3: Infeasible path-following algorithms
*******************************************************************
 version  predcorr  gam  expon  scale_data
    NT      1      0.000   1        0    
it pstep dstep pinfeas dinfeas  gap      prim-obj      dual-obj    cputime
-------------------------------------------------------------------
 0|0.000|0.000|6.3e+03|5.3e+00|3.5e+06|-5.941167e+03  0.000000e+00| 0:0:00| chol  1  1 
 1|0.711|0.838|1.8e+03|8.6e-01|1.1e+06|-1.208161e+03 -2.838378e+04| 0:0:00| chol  1  1 
 2|0.593|0.607|7.4e+02|3.4e-01|4.7e+05|-2.764874e+02 -2.533385e+04| 0:0:00| chol  1  1 
 3|0.734|0.494|2.0e+02|1.7e-01|1.6e+05|-6.239369e+01 -2.091937e+04| 0:0:00| chol  1  1 
 4|0.672|0.903|6.5e+01|1.7e-02|5.6e+04|-1.022563e+02 -1.037228e+04| 0:0:00| chol  1  1 
 5|0.694|0.887|2.0e+01|1.9e-03|2.0e+04|-2.494316e+02 -6.771486e+03| 0:0:00| chol  1  1 
 6|0.679|0.814|6.4e+00|3.5e-04|7.9e+03|-4.221798e+02 -4.296021e+03| 0:0:00| chol  1  1 
 7|0.596|0.544|2.6e+00|1.6e-04|4.1e+03|-5.467297e+02 -3.219372e+03| 0:0:00| chol  1  1 
 8|0.613|0.654|1.0e+00|5.5e-05|1.9e+03|-6.476051e+02 -2.113253e+03| 0:0:00| chol  1  1 
 9|0.716|0.675|2.8e-01|1.8e-05|8.4e+02|-7.273304e+02 -1.434759e+03| 0:0:00| chol  2  2 
10|0.392|0.763|1.7e-01|4.2e-06|4.2e+02|-7.232381e+02 -1.060682e+03| 0:0:00| chol  2  2 
11|0.586|0.951|7.1e-02|2.1e-07|1.7e+02|-7.254271e+02 -8.519334e+02| 0:0:00| chol  2  2 
12|0.596|0.713|2.9e-02|1.0e-05|9.2e+01|-7.318154e+02 -7.922980e+02| 0:0:00| chol  2  2 
13|0.309|0.981|2.0e-02|6.5e-06|5.8e+01|-7.320088e+02 -7.614258e+02| 0:0:00| chol  2  2 
14|0.494|0.444|1.0e-02|8.5e-06|4.3e+01|-7.320383e+02 -7.537659e+02| 0:0:00| chol  2  2 
15|0.531|0.538|4.7e-03|7.5e-06|3.1e+01|-7.313592e+02 -7.473208e+02| 0:0:00| chol  3  3 
16|0.515|0.407|2.3e-03|7.2e-06|2.4e+01|-7.305495e+02 -7.429692e+02| 0:0:00| chol  3  3 
17|0.366|0.950|1.5e-03|1.8e-06|1.3e+01|-7.297385e+02 -7.355468e+02| 0:0:00| chol  3  4 
18|0.442|0.584|8.1e-04|1.9e-06|9.6e+00|-7.290626e+02 -7.327821e+02| 0:0:00| chol  4  4 
19|0.421|0.954|4.7e-04|7.6e-07|5.9e+00|-7.284302e+02 -7.303241e+02| 0:0:00| chol  6  5 
20|0.448|0.631|2.6e-04|7.8e-07|4.3e+00|-7.280308e+02 -7.290920e+02| 0:0:00| chol  6  7 
21|0.474|0.955|1.4e-04|3.5e-07|2.7e+00|-7.276402e+02 -7.281119e+02| 0:0:00| chol 11 15 
22|0.299|0.448|9.6e-05|4.6e-07|2.3e+00|-7.272879e+02 -7.276282e+02| 0:0:00| chol 24 27 
23|0.159|0.205|8.0e-05|6.2e-07|2.2e+00|-7.269176e+02 -7.274554e+02| 0:0:00| chol 
  linsysolve: Schur complement matrix not positive definite
  switch to LU factor. lu 30  30 
24|0.002|0.003|8.0e-05|9.0e-07|2.4e+00|-7.271209e+02 -7.275344e+02| 0:0:00| lu 14   1 
25|0.296|0.932|5.6e-05|3.0e-07|2.0e+00|-7.270460e+02 -7.275128e+02| 0:0:00| lu 23  14 
26|0.477|0.270|3.0e-05|4.3e-07|1.8e+00|-7.276030e+02 -7.275953e+02| 0:0:00| lu 16   6 
27|0.200|0.936|2.4e-05|2.5e-07|1.9e+00|-7.278788e+02 -7.274138e+02| 0:0:00| lu 30 ^22 
28|0.022|0.027|2.3e-05|5.1e-07|2.3e+00|-7.283169e+02 -7.288186e+02| 0:0:00| lu  8   2 
29|0.470|0.440|1.2e-05|4.8e-07|1.6e+00|-7.277298e+02 -7.279626e+02| 0:0:00| lu 12   6 
30|1.000|0.694|1.5e-08|4.0e-07|2.2e+00|-7.275921e+02 -7.271918e+02| 0:0:00| lu 30   2 
31|0.851|0.837|4.4e-09|6.8e-08|2.3e-01|-7.271555e+02 -7.266922e+02| 0:0:00| lu 30  30 
32|0.504|0.305|6.4e-08|4.8e-08|1.4e-01|-7.273421e+02 -7.266888e+02| 0:0:00| lu 23   7 
33|0.460|0.931|1.7e-08|4.7e-09|6.0e-02|-7.272760e+02 -7.266561e+02| 0:0:00| lu 24  17 
34|0.817|0.482|5.7e-08|4.4e-09|1.9e-02|-7.273356e+02 -7.266497e+02| 0:0:00| lu 15  24 
35|0.780|0.802|1.3e-08|1.9e-09|8.9e-03|-7.272904e+02 -7.266425e+02| 0:0:00| lu 17   1 
36|0.980|0.949|3.5e-08|1.5e-10|4.4e-04|-7.272834e+02 -7.266378e+02| 0:0:00| lu 14 ^12 
37|0.592|0.949|2.3e-08|1.9e-11|9.6e-05|-7.272826e+02 -7.266375e+02| 0:0:00| lu 13  30 
38|0.546|0.968|1.2e-08|6.2e-12|4.7e-05|-7.272824e+02 -7.266375e+02| 0:0:00| lu 15  17 
39|0.532|0.958|2.7e-08|2.6e-12|1.9e-05|-7.272823e+02 -7.266375e+02| 0:0:01| lu 21   4 
40|0.527|0.966|3.5e-08|1.2e-12|9.6e-06|-7.272823e+02 -7.266375e+02| 0:0:01|
  stop: relative gap < infeasibility
-------------------------------------------------------------------
 number of iterations   = 40
 primal objective value = -7.27282336e+02
 dual   objective value = -7.26637532e+02
 gap := trace(XZ)       = 1.85e-05
 relative gap           = 1.27e-08
 actual relative gap    = -4.43e-04
 rel. primal infeas (scaled problem)   = 2.70e-08
 rel. dual     "        "       "      = 2.55e-12
 rel. primal infeas (unscaled problem) = 0.00e+00
 rel. dual     "        "       "      = 0.00e+00
 norm(X), norm(y), norm(Z) = 8.7e+02, 1.4e+07, 2.0e+07
 norm(A), norm(b), norm(C) = 2.8e+03, 3.3e+01, 6.2e+03
 Total CPU time (secs)  = 0.54  
 CPU time per iteration = 0.01  
 termination code       = -1
 DIMACS: 2.7e-08  0.0e+00  4.0e-12  0.0e+00  -4.4e-04  1.3e-08
-------------------------------------------------------------------
 
------------------------------------------------------------
Status: Inaccurate/Solved
Optimal value (cvx_optval): +758.638


Calling SDPT3 4.0: 133 variables, 58 equality constraints
   For improved efficiency, SDPT3 is solving the dual problem.
------------------------------------------------------------

 num. of constraints = 58
 dim. of socp   var  = 94,   num. of socp blk  = 27
 dim. of linear var  = 39
*******************************************************************
   SDPT3: Infeasible path-following algorithms
*******************************************************************
 version  predcorr  gam  expon  scale_data
    NT      1      0.000   1        0    
it pstep dstep pinfeas dinfeas  gap      prim-obj      dual-obj    cputime
-------------------------------------------------------------------
 0|0.000|0.000|5.7e+03|5.3e+00|3.5e+06| 7.442685e+03  0.000000e+00| 0:0:00| chol  1  1 
 1|0.781|0.659|1.2e+03|1.8e+00|8.9e+05| 2.134765e+03 -2.823433e+04| 0:0:00| chol  1  1 
 2|0.446|0.728|6.9e+02|4.9e-01|5.1e+05| 1.320852e+03 -2.791688e+04| 0:0:00| chol  1  1 
 3|0.644|0.517|2.5e+02|2.4e-01|2.3e+05| 6.364484e+02 -2.760842e+04| 0:0:00| chol  1  1 
 4|0.768|0.725|5.7e+01|6.5e-02|6.8e+04| 8.979759e+01 -1.605142e+04| 0:0:00| chol  1  1 
 5|0.673|0.826|1.9e+01|1.1e-02|2.4e+04|-1.755803e+02 -7.893722e+03| 0:0:00| chol  1  1 
 6|0.665|0.895|6.2e+00|1.2e-03|9.1e+03|-2.977932e+02 -4.610690e+03| 0:0:00| chol  1  1 
 7|0.745|0.940|1.6e+00|7.2e-05|2.4e+03|-4.870093e+02 -2.023481e+03| 0:0:00| chol  1  1 
 8|0.608|0.433|6.2e-01|4.1e-05|1.4e+03|-5.294435e+02 -1.615447e+03| 0:0:00| chol  1  2 
 9|0.580|0.606|2.6e-01|1.6e-05|7.0e+02|-5.563288e+02 -1.136711e+03| 0:0:00| chol  2  2 
10|0.487|0.583|1.3e-01|6.7e-06|4.0e+02|-5.686970e+02 -8.960467e+02| 0:0:00| chol  2  2 
11|0.463|0.961|7.2e-02|2.6e-07|1.5e+02|-5.717145e+02 -6.823723e+02| 0:0:00| chol  2  2 
12|0.482|1.000|3.7e-02|6.4e-06|8.2e+01|-5.747335e+02 -6.210706e+02| 0:0:00| chol  2  2 
13|0.530|0.608|1.8e-02|6.5e-06|5.2e+01|-5.781014e+02 -6.047342e+02| 0:0:00| chol  2  2 
14|0.476|0.526|9.2e-03|5.9e-06|3.9e+01|-5.781339e+02 -5.969462e+02| 0:0:00| chol  3  3 
15|0.505|0.642|4.6e-03|4.1e-06|2.6e+01|-5.772893e+02 -5.898633e+02| 0:0:00| chol  3  3 
16|0.389|0.884|2.8e-03|1.7e-06|1.6e+01|-5.765422e+02 -5.834474e+02| 0:0:00| chol  3  3 
17|0.365|0.961|1.8e-03|8.9e-07|1.1e+01|-5.758186e+02 -5.800435e+02| 0:0:00| chol  4  3 
18|0.405|0.969|1.0e-03|6.1e-07|7.8e+00|-5.752104e+02 -5.779706e+02| 0:0:00| chol  4  4 
19|0.522|0.659|5.0e-04|6.0e-07|5.2e+00|-5.748737e+02 -5.764291e+02| 0:0:00| chol  4  6 
20|0.529|0.569|2.4e-04|5.3e-07|3.7e+00|-5.744966e+02 -5.756808e+02| 0:0:00| chol  6  6 
21|0.594|0.732|9.6e-05|3.1e-07|2.2e+00|-5.741545e+02 -5.749042e+02| 0:0:00| chol 10 15 
22|0.554|0.461|4.3e-05|2.9e-07|1.7e+00|-5.738371e+02 -5.744963e+02| 0:0:00| chol 11 30 
23|0.070|0.144|4.0e-05|3.7e-07|1.6e+00|-5.737478e+02 -5.743063e+02| 0:0:00| chol 22 13 
  stop: primal infeas has deteriorated too much, 1.9e-01
24|1.000|0.936|4.0e-05|3.7e-07|1.6e+00|-5.737478e+02 -5.743063e+02| 0:0:00|
-------------------------------------------------------------------
 number of iterations   = 24
 primal objective value = -5.73747835e+02
 dual   objective value = -5.74306345e+02
 gap := trace(XZ)       = 1.64e+00
 relative gap           = 1.42e-03
 actual relative gap    = 4.86e-04
 rel. primal infeas (scaled problem)   = 3.98e-05
 rel. dual     "        "       "      = 3.73e-07
 rel. primal infeas (unscaled problem) = 0.00e+00
 rel. dual     "        "       "      = 0.00e+00
 norm(X), norm(y), norm(Z) = 1.2e+03, 8.8e+06, 1.3e+07
 norm(A), norm(b), norm(C) = 1.2e+03, 3.7e+01, 6.9e+03
 Total CPU time (secs)  = 0.25  
 CPU time per iteration = 0.01  
 termination code       = -7
 DIMACS: 4.5e-05  0.0e+00  5.4e-07  0.0e+00  4.9e-04  1.4e-03
-------------------------------------------------------------------
 
------------------------------------------------------------
Status: Failed
Optimal value (cvx_optval): NaN
1 Like

I don’t think we can conclude much from the output you showed, other than the solvers you used had difficulty solving the problem. We have no idea what the optimization problem is, what your program is, what the input data is, or what the original text is.

1 Like

the optimization problem and my program are http://ask.cvxr.com/t/status-inaccurate-solved/9518.

1 Like

I suggest you address my questions at that other thread. It might be the case that the input data is poorly scaled. Yours, and perhaps the data used in the runs by the paper’s authors.

1 Like