<?xml version="1.0" encoding="UTF-8"?><testsuite>
<testcase classname="simulation_modelica_unitcheck" name="ticket3631.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck8.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck24.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck22.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck20.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck19.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck17.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck15.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck13.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck11.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck" name="UnitCheck1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck9.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck7.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck5.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck18.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck16.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck14.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck12.mos" time="0"></testcase>
<testcase classname="simulation_modelica_unitcheck_OFunitcheck" name="UnitCheck10.mos" time="0"></testcase>
<testcase classname="simulation_modelica_types" name="ExtRecordMemberArguments.mos" time="4"></testcase>
<testcase classname="simulation_modelica_types" name="ComplexTypeEquationCount.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="userDefinedTearing1.mos" time="4"></testcase>
<testcase classname="simulation_modelica_tearing" name="totalTearing2.mos" time="3"></testcase>
<testcase classname="simulation_modelica_tearing" name="testTearingStrictness.mos" time="5"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + testTearingStrictness                                                             ... equation mismatch [time: 5]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/testTearingStrictness.mos_temp6568/log-testTearingStrictness.mos
true
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;testTearingStrictness_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | You are overriding b with a small value or zero.
|                 | |       | This could lead to numerically dirty solutions or divisions by zero if not tearingStrictness=veryStrict.
LOG_STDOUT        | warning | The default linear solver fails, the fallback solver with total pivoting is started at time 0.000000. That might raise performance issues, for more information use -lv LOG_LS.
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;testTearingStrictness_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | You are overriding b with a small value or zero.
|                 | |       | This could lead to numerically dirty solutions or divisions by zero if not tearingStrictness=veryStrict.
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/testTearingStrictness.mos_temp6568/equations-expected2026-08-25 16:08:53.605088281 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/testTearingStrictness.mos_temp6568/equations-got2026-08-25 16:08:58.145090751 +0000
@@ -1,27 +1,25 @@
 true
 &quot;&quot;
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
-messages = &quot;Simulation execution failed for model: testTearingStrictness
-LOG_STDOUT        | warning | You are overriding b with a small value or zero.
+resultFile = &quot;testTearingStrictness_res.mat&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
+messages = &quot;LOG_STDOUT        | warning | You are overriding b with a small value or zero.
 |                 | |       | This could lead to numerically dirty solutions or divisions by zero if not tearingStrictness=veryStrict.
-LOG_STDOUT        | warning | Solving linear system 10 fails at time 0. For more information use -lv LOG_LS.
-LOG_ASSERT        | debug   | Solving linear system 10 failed at time=0.
-|                 | |       | For more information please use -lv LOG_LS.
-LOG_ASSERT        | info    | simulation terminated by an assertion at initialization
+LOG_STDOUT | warning | The default linear solver fails, the fallback solver with total pivoting is started at time 0.000000. That might raise performance issues, for more information use -lv LOG_LS.
+LOG_SUCCESS | info    | The initialization finished successfully without homotopy method.
+LOG_SUCCESS | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;testTearingStrictness_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;testTearingStrictness&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-ls=lapack -override b=0&apos;&quot;,
 messages = &quot;LOG_STDOUT        | warning | You are overriding b with a small value or zero.
 |                 | |       | This could lead to numerically dirty solutions or divisions by zero if not tearingStrictness=veryStrict.
 LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;

Equation mismatch: omc-diff says:
Failed &apos;&quot;&apos; &apos;t&apos;
Line 6: Text differs:
expected: resultFile = &quot;&quot;,
got:      resultFile = &quot;testTearingStrictness_res.mat&quot;,

== 1 out of 1 tests failed [simulation/modelica/tearing/testTearingStrictness.mos_temp6568, time: 5]
</system-out></testcase>
<testcase classname="simulation_modelica_tearing" name="tearingSelect2-omc.mos" time="5"></testcase>
<testcase classname="simulation_modelica_tearing" name="tearingSelect-omc.mos" time="7"></testcase>
<testcase classname="simulation_modelica_tearing" name="tearingSelect-celMC3.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="dynamicTearing3.mos" time="4"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + dynamicTearing3                                                                   ... equation mismatch [time: 4]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing3.mos_temp3721/log-dynamicTearing3.mos
true
&quot;&quot;
true
&quot;&quot;
true
&quot;&quot;
true
&quot;&quot;
true
&quot;&quot;




================================================================================
Calling Tearing for initialization!
================================================================================
Handle strong component with index: 1
To disable tearing of this component use &apos;--noTearingForComponent=1&apos;.

Tearing of NONLINEAR component
Use Flag &apos;-d=tearingdumpV&apos; and &apos;-d=iterationVars&apos; for more details


Tearing type: heuristic
Tearing strictness: strict


###BEGIN print Strong Component#####################
(Function:CellierTearing)

unknown partition
========================================

Variables (4)
========================================
1: z:VARIABLE()  type: Real
2: y:VARIABLE()  type: Real
3: x:VARIABLE()  type: Real
4: a:VARIABLE()  type: Real


Equations (4, 4)
========================================
1/1 (1): algorithm
  a := $START.a;
  a := 2.0 * x;
   [dynamic |0|0|0|0|]
2/2 (1): g * a * x + time - y ^ 2.0 = 0.0   [dynamic |0|0|0|0|]
3/3 (1): g * a + x * z - y = 0.0   [dynamic |0|0|0|0|]
4/4 (1): a + 2.0 * y - k * z = 0.0   [dynamic |0|0|0|0|]


Adjacency Matrix (row: equation)
========================================
number of rows: 4
1: 4 3
2: 4 3 2
3: 4 3 2 1
4: 4 2 1

Transposed Adjacency Matrix (row: variable)
========================================
number of rows: 4
1: 4 3
2: 4 3 2
3: 3 2 1
4: 4 3 2 1

no matching


###END print Strong Component#######################
(Function:CellierTearing)




Determine STRICT TEARING SET
********************************************************************************


AdjacencyMatrixEnhanced:
Adjacency Matrix Enhanced (row == equation)
====================================
number of rows: 4
1:(3,unsolvable) (4,solved) 
2:(4,variable(false)) (3,variable(false)) (2,nonlinear) 
3:(4,param(false)) (3,variable(true)) (1,variable(true)) (2,constone) 
4:(4,constone) (2,const(true)) (1,param(true)) 

AdjacencyMatrixTransposedEnhanced:
Transpose Adjacency Matrix Enhanced (row == var)
=====================================
number of rows: 4
1:(4,param(true)) (3,variable(true)) 
2:(4,const(true)) (3,constone) (2,nonlinear) 
3:(3,variable(true)) (2,variable(false)) (1,unsolvable) 
4:(4,constone) (3,param(false)) (2,variable(false)) (1,solved) 

eqLinPoints:
100,150,62,17


Forced selection of Tearing Variables:
========================================
Unsolvables as tVars: 3
Variables with annotation attribute &apos;always&apos; as tVars: 

Matching
========================================
4 variables and equations
var 1 is solved in eqn 8
var 2 is solved in eqn 3
var 3 is solved in eqn 8
var 4 is solved in eqn 1

order: 1,3
========================================


****************************************
* TEARING RESULTS - STRICT SET:
* (Local Indexes)
*
* No of equations in strong component: 4
* No of tVars: 2
*
* tVars: 3,1
*
* resEq: 4,2
*
* innerEquations ({eqn,vars}):
* {1:4}, {3:2}
*
****************************************

Note:
=====
No dynamic Tearing for this strong component. Check if
- flag &apos;dynamicTearing&apos; is set proper
- strong component does not contain statesets
- system belongs to simulation
- SimCode target is &apos;C&apos;





================================================================================
Calling Tearing for simulation!
================================================================================
Handle strong component with index: 2
To disable tearing of this component use &apos;--noTearingForComponent=2&apos;.

Tearing of NONLINEAR component
Use Flag &apos;-d=tearingdumpV&apos; and &apos;-d=iterationVars&apos; for more details


Tearing type: heuristic
Tearing strictness: strict


###BEGIN print Strong Component#####################
(Function:CellierTearing)

unknown partition
========================================

Variables (4)
========================================
1: y:VARIABLE()  type: Real
2: z:VARIABLE()  type: Real
3: a:VARIABLE()  type: Real
4: x:VARIABLE()  type: Real


Equations (4, 4)
========================================
1/1 (1): g * a * x + time - y ^ 2.0 = 0.0   [dynamic |0|0|0|0|]
2/2 (1): algorithm
  a := $START.a;
  a := 2.0 * x;
   [dynamic |0|0|0|0|]
3/3 (1): g * a + x * z - y = 0.0   [dynamic |0|0|0|0|]
4/4 (1): a + 2.0 * y - k * z = 0.0   [dynamic |0|0|0|0|]


Adjacency Matrix (row: equation)
========================================
number of rows: 4
1: 4 3 1
2: 4 3
3: 4 3 2 1
4: 3 2 1

Transposed Adjacency Matrix (row: variable)
========================================
number of rows: 4
1: 4 3 1
2: 4 3
3: 4 3 2 1
4: 3 2 1

no matching


###END print Strong Component#######################
(Function:CellierTearing)




Determine STRICT TEARING SET
********************************************************************************


AdjacencyMatrixEnhanced:
Adjacency Matrix Enhanced (row == equation)
====================================
number of rows: 4
1:(3,variable(false)) (4,variable(false)) (1,nonlinear) 
2:(4,unsolvable) (3,solved) 
3:(3,param(false)) (4,variable(true)) (2,variable(true)) (1,constone) 
4:(3,constone) (1,const(true)) (2,param(true)) 

AdjacencyMatrixTransposedEnhanced:
Transpose Adjacency Matrix Enhanced (row == var)
=====================================
number of rows: 4
1:(4,const(true)) (3,constone) (1,nonlinear) 
2:(4,param(true)) (3,variable(true)) 
3:(4,constone) (3,param(false)) (2,solved) (1,variable(false)) 
4:(3,variable(true)) (2,unsolvable) (1,variable(false)) 

eqLinPoints:
150,100,62,17


Forced selection of Tearing Variables:
========================================
Unsolvables as tVars: 4
Variables with annotation attribute &apos;always&apos; as tVars: 

Matching
========================================
4 variables and equations
var 1 is solved in eqn 3
var 2 is solved in eqn 8
var 3 is solved in eqn 2
var 4 is solved in eqn 8

order: 2,3
========================================


****************************************
* TEARING RESULTS - STRICT SET:
* (Local Indexes)
*
* No of equations in strong component: 4
* No of tVars: 2
*
* tVars: 4,2
*
* resEq: 4,1
*
* innerEquations ({eqn,vars}):
* {2:3}, {3:1}
*
****************************************

Note:
=====
No dynamic Tearing for this strong component. Check if
- flag &apos;dynamicTearing&apos; is set proper
- strong component does not contain statesets
- system belongs to simulation
- SimCode target is &apos;C&apos;

record SimulationResult
    resultFile = &quot;dynamicTearing3_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;dynamicTearing3&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_DT_CONS&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing3.mos_temp3721/equations-expected2026-08-25 16:08:53.677088320 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing3.mos_temp3721/equations-got2026-08-25 16:08:57.637090476 +0000
@@ -268,98 +268,21 @@
 * innerEquations ({eqn,vars}):
 * {2:3}, {3:1}
 *
 ****************************************
 
-
-
-Determine CASUAL TEARING SET
-********************************************************************************
-
-
-AdjacencyMatrixEnhanced:
-Adjacency Matrix Enhanced (row == equation)
-====================================
-number of rows: 4
-1:(3,variable(false),abs(g * x) &gt; 1e-12 (local)) (4,variable(false),abs(g * a) &gt; 1e-12 (local)) (1,solvable,g * a * x + time &gt;= 0.0 (local))
-2:(4,unsolvable) (3,solved)
-3:(3,param(false),abs(g) &gt; 1e-12 (global)) (4,solvable,abs(z) &gt; 1e-12 (local)) (2,solvable,abs(x) &gt; 1e-12 (local)) (1,solvable)
-4:(3,solvable) (1,solvable) (2,solvable,abs(k) &gt; 1e-12 (global))
-
-AdjacencyMatrixTransposedEnhanced:
-Transpose Adjacency Matrix Enhanced (row == var)
-=====================================
-number of rows: 4
-1:(4,solvable) (3,solvable) (1,solvable,g * a * x + time &gt;= 0.0 (local))
-2:(4,solvable,abs(k) &gt; 1e-12 (global)) (3,solvable,abs(x) &gt; 1e-12 (local))
-3:(4,solvable) (3,param(false),abs(g) &gt; 1e-12 (global)) (2,solved) (1,variable(false),abs(g * x) &gt; 1e-12 (local))
-4:(3,solvable,abs(z) &gt; 1e-12 (local)) (2,unsolvable) (1,variable(false),abs(g * a) &gt; 1e-12 (local))
-
-eqLinPoints:
-150,100,62,17
-
-
-Matching
-========================================
-4 variables and equations
-var 1 is solved in eqn 1
-var 2 is solved in eqn 3
-var 3 is solved in eqn 2
-var 4 is solved in eqn 8
-
-order: 2,1,3
-========================================
-
-
-****************************************
-* TEARING RESULTS - CASUAL SET:
-* (Local Indexes)
-*
-* No of equations in strong component: 4
-* No of tVars: 1
-*
-* tVars: 4
-*
-* resEq: 4
-*
-* innerEquations ({eqn,vars}):
-* {2:3}, {1:1}, {3:2}
-*
-****************************************
-
-
 Note:
 =====
-Nonlinear dynamic tearing for this strong component in model:
-dynamicTearing3
-
-Single Equation with constraint:
-g * a * x + time - y ^ 2.0 = 0.0
-Constraints:
-g * a * x + time &gt;= 0.0 (local)
-
-Single Equation with constraint:
-g * a + x * z - y = 0.0
-Constraints:
-abs(x) &gt; 1e-12 (local)
+No dynamic Tearing for this strong component. Check if
+- flag &apos;dynamicTearing&apos; is set proper
+- strong component does not contain statesets
+- system belongs to simulation
+- SimCode target is &apos;C&apos;
 
 record SimulationResult
 resultFile = &quot;dynamicTearing3_res.mat&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;dynamicTearing3&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_DT_CONS&apos;&quot;,
-messages = &quot;LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(x) &gt; 1e-12
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(x) &gt; 1e-12
-LOG_NLS           | error   | residualFunc10: Iteration variable `z` is inf or nan.
-LOG_ASSERT        | debug   | residualFunc10 failed at time=0.004.
-|                 | |       | For more information please use -lv LOG_NLS.
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(x) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(x) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(x) &gt; 1e-12
+messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;

Equation mismatch: omc-diff says:
----Line 273: Lexical token differs:
expected: 

got:      Note:

== 1 out of 1 tests failed [simulation/modelica/tearing/dynamicTearing3.mos_temp3721, time: 4]
</system-out></testcase>
<testcase classname="simulation_modelica_tearing" name="dynamicTearing1.mos" time="8"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + dynamicTearing1                                                                   ... equation mismatch [time: 8]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing1.mos_temp9327/log-dynamicTearing1.mos
true
&quot;&quot;
true
&quot;&quot;
true
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;dynamicTearing1_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;dynamicTearing1&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_DT_CONS&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac0. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac1. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
x at time=0.0
0.0
&quot;&quot;
x1 at time=0.0
0.0
&quot;&quot;
y at time=0.0
0.0
&quot;&quot;
y1 at time=0.0
0.0
&quot;&quot;
z at time=0.0
0.0
&quot;&quot;
z1 at time=0.0
0.0
&quot;&quot;
z2 at time=0.0
0.0
&quot;&quot;
x at time=1.1
-1.0
&quot;&quot;
x1 at time=1.1
6.97208905801418e-18
&quot;&quot;
y at time=1.1
0.0
&quot;&quot;
y1 at time=1.1
-11.000000000000039
&quot;&quot;
z at time=1.1
-1.0
&quot;&quot;
z1 at time=1.1
11.000000000000039
&quot;&quot;
z2 at time=1.1
10.000000000000039
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing1.mos_temp9327/equations-expected2026-08-25 16:08:53.680088322 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/tearing/dynamicTearing1.mos_temp9327/equations-got2026-08-25 16:09:01.563092599 +0000
@@ -7,25 +7,11 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;dynamicTearing1_res.mat&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;dynamicTearing1&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_DT_CONS&apos;&quot;,
-messages = &quot;LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
-LOG_DT_CONS       | info    | The following global constraint is violated:
-|                 | |       | abs(-4.0 + a + (-b) - time) &gt; 1e-12
-LOG_DT_CONS       | info    | The following local constraint is violated:
-|                 | |       | abs(y1) &gt; 1e-12
+messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac0. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
 Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac1. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
@@ -53,22 +39,22 @@
 &quot;&quot;
 x at time=1.1
 -1.0
 &quot;&quot;
 x1 at time=1.1
-0.0
+6.97208905801418e-18
 &quot;&quot;
 y at time=1.1
 0.0
 &quot;&quot;
 y1 at time=1.1
--11.0
+-11.000000000000039
 &quot;&quot;
 z at time=1.1
 -1.0
 &quot;&quot;
 z1 at time=1.1
-11.0
+11.000000000000039
 &quot;&quot;
 z2 at time=1.1
-10.0
+10.000000000000039
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;D&apos; &apos;S&apos;
Line 12: Text differs:
expected: messages = &quot;LOG_DT_CONS       | info    | The following local constraint is violated:
got:      messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.

== 1 out of 1 tests failed [simulation/modelica/tearing/dynamicTearing1.mos_temp9327, time: 8]
</system-out></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing9-minimal.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing9-cel.mos" time="9"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing8-minimal.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing8-celMC3.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing7-omc.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing7-celMC3.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing6-omc.mos" time="5"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing6-celMC3.mos" time="3"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing5-omc.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing5-celMC3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing4-omc.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing4-celMC3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing3-omc.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing3-celMC3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing2-omc.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing2-celMC3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing19-cel.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing18-minimal.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing18-cel.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing16-minimal.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing16-cel.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing15-minimal.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing15-cel.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing14-minimal.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing14-cel.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing13-minimal.mos" time="34"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing13-cel.mos" time="32"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing12-minimal.mos" time="103"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing12-cel.mos" time="89"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing11-minimal.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing11-cel.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-minimal.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-celMC3.mos" time="5"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-celMC23.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-celMC21.mos" time="5"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-celMC12.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing10-cel.mos" time="6"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing1-minimal.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Tearing1-cel.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="MixedTearing1-omc.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="MixedTearing1-celMC3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_tearing" name="Algorithm2-omc.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Algorithm2-celMC3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Algorithm1-omc.mos" time="1"></testcase>
<testcase classname="simulation_modelica_tearing" name="Algorithm1-celMC3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="subSuperSample2.mos" time="6"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="subSample.mos" time="0"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="sampleVar.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="rationalConstructor1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="intervalBase.mos" time="6"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="inferredConstructor2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="holdVar.mos" time="0"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="eventConstructor.mos" time="6"></testcase>
<testcase classname="simulation_modelica_synchronous_c" name="backSample1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous" name="subSample.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous" name="WhenClocks.mos" time="4"></testcase>
<testcase classname="simulation_modelica_synchronous" name="TestClockParameterEvaluation.mos" time="5"></testcase>
<testcase classname="simulation_modelica_synchronous" name="SynchronousFeatures.SpeedControl.mos" time="0"></testcase>
<testcase classname="simulation_modelica_synchronous" name="SynchronousFeatures.ControlledMass.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous" name="MutuallyDependentClocks.mos" time="0"></testcase>
<testcase classname="simulation_modelica_synchronous" name="Modelica_Synchronous.Examples.Elementary.IntegerSignals.TimeBasedStep.mos" time="0"></testcase>
<testcase classname="simulation_modelica_synchronous" name="EventSubClock.mos" time="1"></testcase>
<testcase classname="simulation_modelica_synchronous" name="EventClockAndClassic.mos" time="19"></testcase>
<testcase classname="simulation_modelica_synchronous" name="DID.mos" time="1"></testcase>
<testcase classname="simulation_modelica_statemachines" name="ticket4271.mos" time="1"></testcase>
<testcase classname="simulation_modelica_statemachines" name="TicksInState.mos" time="1"></testcase>
<testcase classname="simulation_modelica_statemachines" name="SMMin.mos" time="0"></testcase>
<testcase classname="simulation_modelica_statemachines" name="Maraninchi2003_2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_statemachines" name="EnteringByReset.mos" time="14"></testcase>
<testcase classname="simulation_modelica_statemachines" name="ConferenceTut1DeadEnd.mos" time="1"></testcase>
<testcase classname="simulation_modelica_start_value_selection" name="ticket5807.mos" time="1"></testcase>
<testcase classname="simulation_modelica_start_value_selection" name="overrideParamStartFromFile_param.mos" time="0"></testcase>
<testcase classname="simulation_modelica_start_value_selection" name="overrideLiteralStartFromFile_alg.mos" time="0"></testcase>
<testcase classname="simulation_modelica_start_value_selection" name="UnevaluateableFixedAttribute.mos" time="0"></testcase>
<testcase classname="simulation_modelica_start_value_selection" name="MinimalModel.mos" time="0"></testcase>
<testcase classname="simulation_modelica_solver" name="problem6-symSolverExp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem6-cvode.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem5-symSolverExp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem4-symSolverExp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem3-symSolverImpSsc.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem3-symSolverExpSsc.mos" time="0"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-trapezoid.mos" time="0"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-symSolverImp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-symSolverExp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-imprk.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-idaLinearSolver.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-ida.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem2-cvode.mos" time="1"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-symSolverImpSsc.mos" time="6"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-symSolverExpSsc.mos" time="4"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-irksco.mos" time="3"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-impeuler.mos" time="4"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-gbodeInternal.mos" time="4"></testcase>
<testcase classname="simulation_modelica_solver" name="problem1-cvode.mos" time="4"></testcase>
<testcase classname="simulation_modelica_solver_gbode" name="multiRateInternal_01.mos" time="0"></testcase>
<testcase classname="simulation_modelica_solver_gbode" name="IRK_01.mos" time="18"></testcase>
<testcase classname="simulation_modelica_solver_gbode" name="Burger_01.mos" time="20"></testcase>
<testcase classname="simulation_modelica_solver" name="Ticket15649.mos" time="1"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="NPendulum3.mos" time="12"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="Issue15901.mos" time="0"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="ElectricalCircuit6.mos" time="6"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="ElectricalCircuit4.mos" time="5"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="ElectricalCircuit2.mos" time="4"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="Circuit4x.mos" time="4"></testcase>
<testcase classname="simulation_modelica_resolveLoops" name="Circuit2x.mos" time="4"></testcase>
<testcase classname="simulation_modelica_records" name="constVar4.mos" time="1"></testcase>
<testcase classname="simulation_modelica_records" name="constVar1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_records" name="Ticket16177.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + Ticket16177.mos                                                                   ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/records/Ticket16177.mos_temp2295/log-Ticket16177.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;Ticket16177.Loop_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Ticket16177.Loop&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;[BackEnd/Differentiate.mo:0:0-0:0:writable] Error: Derivative of expression \&quot;$res_NLSJac0_2 := gain.k * (if gain.useConjugateInput then Ticket16177.R(add.y.re, -add.y.im) else Ticket16177.RInput(add.y.re, add.y.im)).re - gain.y.re\&quot; w.r.t. \&quot;dummyVarNLSJac0\&quot; is non-existent.
Error: Internal error SymbolicJacobian.deriveAll failed
[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error SymbolicJacobian.generateSymbolicJacobian failed
[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error function createJacobian failed
[BackEnd/Differentiate.mo:0:0-0:0:writable] Error: Derivative of expression \&quot;$res_NLSJac1_2 := gain.k * (if gain.useConjugateInput then Ticket16177.R(add.y.re, -add.y.im) else Ticket16177.RInput(add.y.re, add.y.im)).im - gain.y.im\&quot; w.r.t. \&quot;dummyVarNLSJac1\&quot; is non-existent.
Error: Internal error SymbolicJacobian.deriveAll failed
[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error SymbolicJacobian.generateSymbolicJacobian failed
[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error function createJacobian failed
&quot;
-2.0
&quot;&quot;
-1.0
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/records/Ticket16177.mos_temp2295/equations-expected2026-08-25 16:09:15.147099845 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/records/Ticket16177.mos_temp2295/equations-got2026-08-25 16:09:15.641100106 +0000
@@ -5,10 +5,18 @@
 simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Ticket16177.Loop&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
-&quot;&quot;
+&quot;[BackEnd/Differentiate.mo:0:0-0:0:writable] Error: Derivative of expression \&quot;$res_NLSJac0_2 := gain.k * (if gain.useConjugateInput then Ticket16177.R(add.y.re, -add.y.im) else Ticket16177.RInput(add.y.re, add.y.im)).re - gain.y.re\&quot; w.r.t. \&quot;dummyVarNLSJac0\&quot; is non-existent.
+Error: Internal error SymbolicJacobian.deriveAll failed
+[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error SymbolicJacobian.generateSymbolicJacobian failed
+[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error function createJacobian failed
+[BackEnd/Differentiate.mo:0:0-0:0:writable] Error: Derivative of expression \&quot;$res_NLSJac1_2 := gain.k * (if gain.useConjugateInput then Ticket16177.R(add.y.re, -add.y.im) else Ticket16177.RInput(add.y.re, add.y.im)).im - gain.y.im\&quot; w.r.t. \&quot;dummyVarNLSJac1\&quot; is non-existent.
+Error: Internal error SymbolicJacobian.deriveAll failed
+[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error SymbolicJacobian.generateSymbolicJacobian failed
+[BackEnd/SymbolicJacobian.mo:0:0-0:0:writable] Error: Internal error function createJacobian failed
+&quot;
 -2.0
 &quot;&quot;
 -1.0
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;&quot;&apos; &apos;[&apos;
Line 10: Text differs:
expected: &quot;&quot;
got:      &quot;[BackEnd/Differentiate.mo:

== 1 out of 1 tests failed [simulation/modelica/records/Ticket16177.mos_temp2295, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_records" name="Ticket13009.mos" time="0"></testcase>
<testcase classname="simulation_modelica_records" name="Ticket12135.mos" time="1"></testcase>
<testcase classname="simulation_modelica_records" name="TestComplexSum1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_records" name="InputRecord.mos" time="0"></testcase>
<testcase classname="simulation_modelica_records" name="ATotal.mos" time="3"></testcase>
<testcase classname="simulation_modelica_qss" name="qss_example8.mos" time="1"></testcase>
<testcase classname="simulation_modelica_qss" name="qss_example6.mos" time="2"></testcase>
<testcase classname="simulation_modelica_qss" name="qss_example4.mos" time="2"></testcase>
<testcase classname="simulation_modelica_qss" name="qss_example2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_parmodauto" name="Modelica.Fluid.Examples.BranchingDynamicPipes.mos" time="46"></testcase>
<testcase classname="simulation_modelica_parameters" name="revoluteConstraint.mos" time="10"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest8.mos" time="1"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest6.mos" time="1"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest16.mos" time="1"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest14.mos" time="0"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest12.mos" time="0"></testcase>
<testcase classname="simulation_modelica_parameters" name="parameterTest10.mos" time="0"></testcase>
<testcase classname="simulation_modelica_parameters" name="hideResult.mos" time="1"></testcase>
<testcase classname="simulation_modelica_parameters" name="Engine1a_output.mos" time="14"></testcase>
<testcase classname="simulation_modelica_packages" name="RedeclarePackage.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="world.mos" time="3"></testcase>
<testcase classname="simulation_modelica_others" name="terminal.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="steadyState.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="sample3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="sample1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="nonConstantIndex.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="impureTest.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="WhenReinitAlgorithm.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Ticket5129.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve8.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve16.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + TestSolve                                                                         ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestSolve16.mos_temp4953/log-TestSolve16.mos
true
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;ModelTestSolve16_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;ModelTestSolve16&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv LOG_NLS_V&apos;&quot;,
    messages = &quot;LOG_NLS           | info    | initialize non-linear system solvers
|                 | |       | | 0 non-linear systems
LOG_NLS           | info    | update static data of non-linear system solvers
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
LOG_NLS           | info    | free non-linear system solvers
&quot;
end SimulationResult;
&quot;&quot;
-4.461748722749755
1.151917842006256
1.2840254166877414
2.8496539082263617
1.2840254166877418

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestSolve16.mos_temp4953/equations-expected2026-08-25 16:09:21.429103143 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestSolve16.mos_temp4953/equations-got2026-08-25 16:09:21.951103416 +0000
@@ -2,20 +2,20 @@
 &quot;&quot;
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;ModelTestSolve16_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;ModelTestSolve16&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv LOG_NLS_V&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;ModelTestSolve16&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv LOG_NLS_V&apos;&quot;,
 messages = &quot;LOG_NLS           | info    | initialize non-linear system solvers
 |                 | |       | | 0 non-linear systems
 LOG_NLS           | info    | update static data of non-linear system solvers
 LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 LOG_NLS           | info    | free non-linear system solvers
 &quot;
 end SimulationResult;
 &quot;&quot;
--3.805609927078452
+-4.461748722749755
 1.151917842006256
-1.284025416687741
-2.849653908226362
-0.6278866210164383
+1.2840254166877414
+2.8496539082263617
+1.2840254166877418

Equation mismatch: omc-diff says:
Line 17: Real -3.805609927078452 != -4.461748722749755
  eps: 0.005000, actual diff: 0.656139

== 1 out of 1 tests failed [simulation/modelica/others/TestSolve16.mos_temp4953, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve14.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve12.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="TestSolve10.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="TestNormVar.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="TestExpressionSolve.mos" time="3"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + noNls                                                                             ... equation mismatch [time: 3]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestExpressionSolve.mos_temp2616/log-TestExpressionSolve.mos
true
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;noNls_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;noNls&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv LOG_NLS -s euler&apos;&quot;,
    messages = &quot;LOG_NLS           | info    | initialize non-linear system solvers
|                 | |       | | 0 non-linear systems
LOG_NLS           | info    | update static data of non-linear system solvers
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
LOG_NLS           | info    | free non-linear system solvers
&quot;
end SimulationResult;
&quot;[&lt;interactive&gt;:253:3-253:71:writable] Warning: In relation m17.d == 0.0, == on Real operands is deprecated in non-function contexts.
&quot;
0.0
3.826838845664251e-11
1.6094379124341003
0.0
0.0
{0.2, 0.33802562076900416}
{-5.0, -5.5}
0.0
-2.9973031350774133
0.0
0.0
-0.0
0.5
1.0
-1.0
-1.0
1.0
2.7182818284590455
-2.7182818284590455
-1.0
1.0
0.0
0.0
1.0
-2.0
1.0
-2.0
1.0
-2.0
1.0
-2.0
1.3722813232690143
-4.372281323269014
0.0
1.0
-3.23606797749979
1.2360679774997896
1.0
4.090638938524548e-11
1.7917594692280543
4.2918173222568483e-11
0.0
1.843104573864454
-3.8998952494026864
0.0
0.6931471805599453
-0.0
0.510952329395356
1.4142135623730951
-1.4142135623730951
-2.0
2.0
4.1132503787829275
-4.1132503787829275
-1.189207115002721
1.189207115002721
{0.0, 1.4964518942143568}
{0.0, 0.226706998195829}
{1.0, 1.0, 1.0, 1.0, 0.999999999992914}
{-4e-12, -4.00000000050161e-12, -4.000000000557344e-12, -4.000000055772651e-12, -1.0064584514957412e-11}
-8.129271712485572e-18
-6.857203751283411e-16
0.7641190432599388
-0.9628851536063515
0.7641190432599388
-0.9628851536063515
0.7641190432599388
-0.9628851536063515
0.7641190432599388
-0.9628851536063515
0.9258043882484928
0.9258043882484928
2.008213851751985e-26
1.272019649514069
7.362078131750792
0.0
1.773637767940148
1.773637767940148
0.9830028645057536
0.9830028645057536
{1.0, 5.384990802705856, 10.121998987303886, 33.92313074824012, 53.50763733357881, 60.36375238576186, 67.77039555592795}

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestExpressionSolve.mos_temp2616/equations-expected2026-08-25 16:09:22.300103598 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/others/TestExpressionSolve.mos_temp2616/equations-got2026-08-25 16:09:25.061105035 +0000
@@ -18,11 +18,11 @@
 0.0
 3.826838845664251e-11
 1.6094379124341003
 0.0
 0.0
-{0.2, 0.3380256207690041}
+{0.2, 0.33802562076900416}
 {-5.0, -5.5}
 0.0
 -2.9973031350774133
 0.0
 0.0
@@ -30,12 +30,12 @@
 0.5
 1.0
 -1.0
 -1.0
 1.0
-2.718281828459045
--2.718281828459045
+2.7182818284590455
+-2.7182818284590455
 -1.0
 1.0
 0.0
 0.0
 1.0
@@ -52,47 +52,47 @@
 1.0
 -3.23606797749979
 1.2360679774997896
 1.0
 4.090638938524548e-11
-1.791759469228055
-4.2918194287836716e-11
-4.205916067935033e-15
-1.842452954506589
+1.7917594692280543
+4.2918173222568483e-11
+0.0
+1.843104573864454
 -3.8998952494026864
 0.0
 0.6931471805599453
 -0.0
-0.5191263401422759
+0.510952329395356
 1.4142135623730951
 -1.4142135623730951
 -2.0
 2.0
 4.1132503787829275
 -4.1132503787829275
 -1.189207115002721
 1.189207115002721
-{0.0, 1.4964518942143572}
-{0.0, 0.22670699819582904}
-{1.0, 1.0, 1.0, 1.0, 0.9999999999929154}
-{-4e-12, -4.000000000498512e-12, -4.000000000553902e-12, -4.000000055772651e-12, -1.0064584514957463e-11}
--8.82488757622087e-18
--4.4376736558415366e-16
+{0.0, 1.4964518942143568}
+{0.0, 0.226706998195829}
+{1.0, 1.0, 1.0, 1.0, 0.999999999992914}
+{-4e-12, -4.00000000050161e-12, -4.000000000557344e-12, -4.000000055772651e-12, -1.0064584514957412e-11}
+-8.129271712485572e-18
+-6.857203751283411e-16
 0.7641190432599388
--0.9628851536063517
+-0.9628851536063515
 0.7641190432599388
--0.9628851536063517
+-0.9628851536063515
 0.7641190432599388
--0.9628851536063517
+-0.9628851536063515
 0.7641190432599388
--0.9628851536063517
+-0.9628851536063515
 0.9258043882484928
 0.9258043882484928
-2.0082139026858088e-26
+2.008213851751985e-26
 1.272019649514069
-7.362073675704043
+7.362078131750792
 0.0
 1.773637767940148
 1.773637767940148
-0.9830028645057538
-0.9830028645057538
-{1.0, 5.384591877716107, 10.17948798772769, 33.92910009248656, 53.5179963659824, 60.50794064130504, 67.80907699458555}
+0.9830028645057536
+0.9830028645057536
+{1.0, 5.384990802705856, 10.121998987303886, 33.92313074824012, 53.50763733357881, 60.36375238576186, 67.77039555592795}

Equation mismatch: omc-diff says:
Line 65: Real 0.5191263401422759 != 0.510952329395356
  eps: 0.005000, actual diff: 0.008174

== 1 out of 1 tests failed [simulation/modelica/others/TestExpressionSolve.mos_temp2616, time: 3]
</system-out></testcase>
<testcase classname="simulation_modelica_others" name="Table2d.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="Switch.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="SliceAssignment.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Riccati.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="Random2.mos" time="3"></testcase>
<testcase classname="simulation_modelica_others" name="PreMatrix.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Pendulum.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="ParameterCycle.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="NegatedBooleanAlias.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="FrameTest.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="EquationCallIntegerArray.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Elevator.mos" time="3"></testcase>
<testcase classname="simulation_modelica_others" name="ComplexFun.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="CombiTable1DBug.mos" time="2"></testcase>
<testcase classname="simulation_modelica_others" name="Bug3687.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="Bug3323.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Bug3023.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Bug2788.mos" time="0"></testcase>
<testcase classname="simulation_modelica_others" name="Bug2633.mos" time="1"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + Bug2633.mos                                                                       ... equation mismatch [time: 1]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/others/Bug2633.mos_temp1966/log-Bug2633.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Bug2633&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Simulation execution failed for model: Bug2633
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_ASSERT        | debug   | division by zero at time 1, (a=0) / (b=0), where divisor b expression is: p + time
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/others/Bug2633.mos_temp1966/equations-expected2026-08-25 16:09:24.851104925 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/others/Bug2633.mos_temp1966/equations-got2026-08-25 16:09:25.027105017 +0000
@@ -1,12 +1,11 @@
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;Bug2633_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;Bug2633&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
+resultFile = &quot;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 2.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Bug2633&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+messages = &quot;Simulation execution failed for model: Bug2633
+LOG_SUCCESS | info    | The initialization finished successfully without homotopy method.
 LOG_ASSERT        | debug   | division by zero at time 1, (a=0) / (b=0), where divisor b expression is: p + time
-LOG_STDOUT        | warning | Integrator attempt to handle a problem with a called assert.
-LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;B&apos; &apos;&quot;&apos;
Line 4: Text differs:
expected: resultFile = &quot;Bug
got:      resultFile = &quot;&quot;,

== 1 out of 1 tests failed [simulation/modelica/others/Bug2633.mos_temp1966, time: 1]
</system-out></testcase>
<testcase classname="simulation_modelica_others" name="Bug2432.mos" time="1"></testcase>
<testcase classname="simulation_modelica_others" name="Bug1728.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem9.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem7_symjac_tearing.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem7_newton.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem7.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem6_symjac.mos" time="2"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem6_kinsol.mos" time="2"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem5_symjac_tearing.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem5_newton.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem5.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem4_symjac.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem3_symjac_tearing.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem3_newton.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem2_symjac.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem1_symjac.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem1_kinsol.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="problem11.mos" time="1"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="nonlinear_kinsol.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="nonlinearMixed.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="nonlinearFailed.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="nonlinear.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="inverseTest.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="bug_2841.mos" time="0"></testcase>
<testcase classname="simulation_modelica_nonlinear_system" name="TestFalseIterationNLS.mos" time="3"></testcase>
<testcase classname="simulation_modelica_newtonDiagnostics" name="newtonDiagnostics-01.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + newtonDiagnostics-01                                                              ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/newtonDiagnostics/newtonDiagnostics-01.mos_temp7730/log-newtonDiagnostics-01.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;problem4_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;problem4&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_NLS_NEWTON_DIAGNOSTICS&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/newtonDiagnostics/newtonDiagnostics-01.mos_temp7730/equations-expected2026-08-25 16:09:27.587106343 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/newtonDiagnostics/newtonDiagnostics-01.mos_temp7730/equations-got2026-08-25 16:09:27.802106455 +0000
@@ -1,47 +1,10 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;problem4_res.mat&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;problem4&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_NLS_NEWTON_DIAGNOSTICS&apos;&quot;,
-messages = &quot;LOG_NLS_NEWTON_DIAGNOSTICS | info    | Running newton diagnostics for system 7
-LOG_NLS_NEWTON_DIAGNOSTICS | info    | Information about the system from non-linear pattern
-|                 | |       | | Total number of equations    = 2
-|                 | |       | | Number of unknowns           = 2
-|                 | |       | | Number of non-linear entries = 4
-LOG_NLS_NEWTON_DIAGNOSTICS | info    | Information about the initial guess
-|                 | |       | | Vector x0 of unknowns
-|                 | |       | | | x0[1] =  -5.0000000000  (x2)
-|                 | |       | | | x0[2] = 10000.0000000000  (x1)
-|                 | |       | | Residual function values of all equations f(x0)
-|                 | |       | | | f[1] = 147.4130591026
-|                 | |       | | | f[2] = -500000001.0000000000
-|                 | |       | | Vector w0 of nonlinear unknowns
-|                 | |       | | | w0[1] = x0[1] =  -5.0000000000  (x2)
-|                 | |       | | | w0[2] = x0[2] = 10000.0000000000  (x1)
-|                 | |       | | Residual function values of all nonlinear equations n(w0)
-|                 | |       | | | n[1] = f[1] = 147.4130591026
-|                 | |       | | | n[2] = f[2] = -500000001.0000000000
-|                 | |       | | Final damping factor lambda = 1
-LOG_NLS_NEWTON_DIAGNOSTICS | info    | Values of relevant indicators
-|                 | |       | | alpha_i &gt; 0.010
-|                 | |       | | Gamma_ijk &gt; 0.010
-|                 | |       | | | Gamma_2   _1   _2    =   0.08
-|                 | |       | | sigma_jj &gt; 0.010
-|                 | |       | | | sigma_1   _1    =  0.99
-|                 | |       | | | sigma_2   _2    =  0.20
-LOG_NLS_NEWTON_DIAGNOSTICS | info    | Ranked indicators
-|                 | |       | | By variable
-|                 | |       | | | Var no.  Var name                                  Initial guess  max(Gamma,sigma)
-|                 | |       | | | -------  ----------------------------------------  -------------  ----------------
-|                 | |       | | |       1                                        x2             -5     0.99
-|                 | |       | | |       2                                        x1          10000     0.20
-|                 | |       | | By equation
-|                 | |       | | | Eq no.  Eq idx    max(alpha,Gamma)
-|                 | |       | | | ------  ------    ----------------
-|                 | |       | | |      2       1   0.08
-LOG_NLS_NEWTON_DIAGNOSTICS | info    | Newton diagnostics complete!
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
+messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;N&apos; &apos;S&apos;
Line 6: Text differs:
expected: messages = &quot;LOG_NLS_NEWTON_DIAGNOSTICS | info    | Running newton diagnostics for system 
got:      messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.

== 1 out of 1 tests failed [simulation/modelica/newtonDiagnostics/newtonDiagnostics-01.mos_temp7730, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_msl22" name="simulation2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_msl22" name="avg.mos" time="0"></testcase>
<testcase classname="simulation_modelica_msl22" name="TrapezoidTest.mos" time="2"></testcase>
<testcase classname="simulation_modelica_msl22" name="Test3PhaseStart.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="Test3PhaseInitOver.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="Tank.mos" time="2"></testcase>
<testcase classname="simulation_modelica_msl22" name="SpringMass.mos" time="2"></testcase>
<testcase classname="simulation_modelica_msl22" name="SineTorque.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="SineAccelerate.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="NonLinsys.mos" time="0"></testcase>
<testcase classname="simulation_modelica_msl22" name="InputOutput.mos" time="0"></testcase>
<testcase classname="simulation_modelica_msl22" name="IdealGearBrake.mos" time="2"></testcase>
<testcase classname="simulation_modelica_msl22" name="FuncCross.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="ElasticBearing.mos" time="2"></testcase>
<testcase classname="simulation_modelica_msl22" name="DCMotorDeadzone.mos" time="1"></testcase>
<testcase classname="simulation_modelica_msl22" name="Circuit1.mos" time="2"></testcase>
<testcase classname="simulation_modelica_linear_system" name="problem3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_linear_system" name="problem1.mos" time="23"></testcase>
<testcase classname="simulation_modelica_linear_system" name="linSymSol.mos" time="1"></testcase>
<testcase classname="simulation_modelica_linear_system" name="analyticJacProblem3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_linear_system" name="Ticket3926.mos" time="0"></testcase>
<testcase classname="simulation_modelica_linear_system" name="NPendulum40.mos" time="153"></testcase>
<testcase classname="simulation_modelica_linear_system" name="MissV.mos" time="0"></testcase>
<testcase classname="simulation_modelica_jacobian" name="reuseConstantPartsJac1.mos" time="10"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="testBug4841.mos" time="0"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="testBug3997.mos" time="0"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineScalarProductSlice.mos" time="0"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineFunction8.mos" time="0"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineFunction6.mos" time="1"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineFunction4.mos" time="1"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineFunction2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineFunction10.mos" time="1"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineAttributes15947.mos" time="1"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="inlineArray3.mos" time="2"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="forceComplexEq4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_inlineFunction" name="forceComplexEq2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="unfixedParameter2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="underdeterminedTest6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="underdeterminedTest4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="underdeterminedTest2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="testIfAssert.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="startValue3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="startValue1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="solveTupleFunction.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="setNumberOfInitLambda.mos" time="1"></testcase>
<testcase classname="simulation_modelica_initialization" name="scaling1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_initialization" name="pre3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_initialization" name="pre1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_initialization" name="parameterWithoutBinding.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="initStartTearingDegree1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="homotopy6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_initialization" name="homotopy4_solver.mos" time="4"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + homotopy4_solver                                                                  ... equation mismatch [time: 4]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/initialization/homotopy4_solver.mos_temp1282/log-homotopy4_solver.mos
true
&quot;&quot;
true
&quot;&quot;
{&quot;initializationTests.homotopy4_solver&quot;, &quot;initializationTests.homotopy4_solver_init.xml&quot;}
&quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac2. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac3. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956366 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95637 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04363 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956366 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95637 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04363 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
true
&quot;&quot;
{&quot;initializationTests.homotopy4_solver&quot;, &quot;initializationTests.homotopy4_solver_init.xml&quot;}
&quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac10. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac11. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac14. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956366 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95637 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04363 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956366 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95637 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04363 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with equidistant step size started.
LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_equidistant_global_homotopy.csv.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.333333 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.666667 done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1 done
|                 | |       | ---------------------------
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
true
&quot;&quot;
{&quot;initializationTests.homotopy4_solver&quot;, &quot;initializationTests.homotopy4_solver_init.xml&quot;}
&quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac21. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac22. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Local homotopy with adaptive step size started for nonlinear system 0.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve lambda0-system
LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.618547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.698547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.778547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.858547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 local homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
true
&quot;&quot;
{&quot;initializationTests.homotopy4_solver&quot;, &quot;initializationTests.homotopy4_solver_init.xml&quot;}
&quot;Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac28. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Warning: There are nonlinear iteration variables with default zero start attribute found in NLSJac31. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=hybrid -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=kinsol -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=newton -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=homotopy -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;initializationTests.homotopy4_solver_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;initializationTests.homotopy4_solver&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_INIT_V -stopTime=0.0 -stepSize=0.0 -nls=mixed -homotopyOnFirstTry&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Sparsity pattern for non-linear system 0 is not regular. This indicates that something went wrong during sparsity pattern generation. Removing sparsity pattern and disabling NLS scaling.
LOG_INIT          | info    | ### START INITIALIZATION ###
LOG_INIT          | info    | updating min-values
LOG_INIT          | info    | updating max-values
LOG_INIT          | info    | updating nominal-values
LOG_INIT          | info    | updating primary start-values
LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
LOG_INIT_HOMOTOPY | info    | Global homotopy with adaptive step size started.
LOG_INIT_HOMOTOPY | info    | homotopy process
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | solve simplified lambda0-DAE
LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
|                 | |       | ---------------------------
LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.378547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.418547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.458547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.498547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.538547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.578547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.658547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.738547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.818547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.978547
LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 1
LOG_INIT_HOMOTOPY | info    | Total number of lambda steps for this homotopy loop: 14
LOG_INIT_V        | info    | parameter values
|                 | |       | | real parameters
|                 | |       | | | [1] parameter Real p1(start=10, fixed=true) = 10
LOG_SOTI          | info    | ### SOLUTION OF THE INITIALIZATION ###
|                 | |       | | other real variables
|                 | |       | | | [1] Real __HOM_LAMBDA(start=0, nominal=1) = 0 (pre: 0)
|                 | |       | | | [2] Real a(start=0, nominal=1) = 1 (pre: 0)
|                 | |       | | | [3] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
|                 | |       | | | [4] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
|                 | |       | | | [5] Real d(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [6] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
|                 | |       | | | [7] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
|                 | |       | | | [8] Real x(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [9] Real x1(start=0, nominal=1) = -9 (pre: 0)
|                 | |       | | | [10] Real x2(start=0, nominal=1) = 3 (pre: 0)
|                 | |       | | | [11] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
|                 | |       | | | [12] Real y(start=0, nominal=1) = 5 (pre: 0)
|                 | |       | | | [13] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
|                 | |       | | | [14] Real y2(start=0, nominal=1) = -3 (pre: 0)
|                 | |       | | | [15] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
|                 | |       | | | [16] Real z(start=0, nominal=1) = -5 (pre: 0)
|                 | |       | | | [17] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
|                 | |       | | | [18] Real z2(start=0, nominal=1) = 9 (pre: 0)
|                 | |       | | | [19] Real z3(start=0, nominal=1) = -1 (pre: 0)
LOG_INIT          | info    | ### END INITIALIZATION ###
LOG_SUCCESS       | info    | The initialization finished successfully with 14 homotopy steps.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/initialization/homotopy4_solver.mos_temp1282/equations-expected2026-08-25 16:09:32.346108795 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/initialization/homotopy4_solver.mos_temp1282/equations-got2026-08-25 16:09:36.211110773 +0000
@@ -15,11 +15,10 @@
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -37,23 +36,23 @@
 |                 | |       | | other real variables
 |                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
 |                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
 |                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
 |                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [5] Real e(start=0, nominal=1) = 0.57364 (pre: 0)
-|                 | |       | | | [6] Real f(start=0, nominal=1) = -27.1705 (pre: 0)
+| | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
+| | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
 |                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
 |                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [9] Real x2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [10] Real x3(start=0, nominal=1) = -5.42636 (pre: 0)
+| | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
+| | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
 |                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
 |                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
-|                 | |       | | | [13] Real y2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [14] Real y3(start=0, nominal=1) = 4.57364 (pre: 0)
+| | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
+| | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
 |                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
 |                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
-|                 | |       | | | [17] Real z2(start=0, nominal=1) = 4.67544 (pre: 0)
+| | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
 |                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
 LOG_INIT          | info    | ### END INITIALIZATION ###
 LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
@@ -67,11 +66,10 @@
 LOG_INIT          | info    | updating max-values
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -89,23 +87,23 @@
 |                 | |       | | other real variables
 |                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
 |                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
 |                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
 |                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [5] Real e(start=0, nominal=1) = 0.57364 (pre: 0)
-|                 | |       | | | [6] Real f(start=0, nominal=1) = -27.1705 (pre: 0)
+| | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
+| | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
 |                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
 |                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [9] Real x2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [10] Real x3(start=0, nominal=1) = -5.42636 (pre: 0)
+| | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
+| | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
 |                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
 |                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
-|                 | |       | | | [13] Real y2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [14] Real y3(start=0, nominal=1) = 4.57364 (pre: 0)
+| | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
+| | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
 |                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
 |                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
-|                 | |       | | | [17] Real z2(start=0, nominal=1) = 4.67544 (pre: 0)
+| | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
 |                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
 LOG_INIT          | info    | ### END INITIALIZATION ###
 LOG_SUCCESS       | info    | The initialization finished successfully with 3 local homotopy steps.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
@@ -120,11 +118,10 @@
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -172,11 +169,10 @@
 LOG_INIT          | info    | updating max-values
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -225,11 +221,10 @@
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -277,11 +272,10 @@
 LOG_INIT          | info    | updating max-values
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -330,11 +324,10 @@
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -382,11 +375,10 @@
 LOG_INIT          | info    | updating max-values
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -435,11 +427,10 @@
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Model contains homotopy operator: Use adaptive homotopy method to solve initialization problem. To disable initialization with homotopy operator use \&quot;-noHomotopyOnFirstTry\&quot;.
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -487,11 +478,10 @@
 LOG_INIT          | info    | updating max-values
 LOG_INIT          | info    | updating nominal-values
 LOG_INIT          | info    | updating primary start-values
 LOG_INIT          | info    | initialization method: symbolic        [solves the initialization problem symbolically - default]
 LOG_INIT_HOMOTOPY | info    | Local homotopy with equidistant step size started for nonlinear system 0.
-LOG_INIT_HOMOTOPY | info    | The homotopy path of system 0 will be exported to initializationTests.homotopy4_solver_nonlinsys0_equidistant_local_homotopy.csv.
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0 done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333
 LOG_INIT_HOMOTOPY | info    | [system 0] homotopy parameter lambda = 0.333333 done
@@ -571,23 +561,23 @@
 |                 | |       | | other real variables
 |                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
 |                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
 |                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
 |                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [5] Real e(start=0, nominal=1) = 0.57364 (pre: 0)
-|                 | |       | | | [6] Real f(start=0, nominal=1) = -27.1705 (pre: 0)
+| | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
+| | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
 |                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
 |                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [9] Real x2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [10] Real x3(start=0, nominal=1) = -5.42636 (pre: 0)
+| | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
+| | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
 |                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
 |                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
-|                 | |       | | | [13] Real y2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [14] Real y3(start=0, nominal=1) = 4.57364 (pre: 0)
+| | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
+| | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
 |                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
 |                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
-|                 | |       | | | [17] Real z2(start=0, nominal=1) = 4.67544 (pre: 0)
+| | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
 |                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
 LOG_INIT          | info    | ### END INITIALIZATION ###
 LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
@@ -625,23 +615,23 @@
 |                 | |       | | other real variables
 |                 | |       | | | [1] Real a(start=0, nominal=1) = 1 (pre: 0)
 |                 | |       | | | [2] Real b(start=0, nominal=1) = -0.412118 (pre: 0)
 |                 | |       | | | [3] Real c(start=0, nominal=1) = 0.169842 (pre: 0)
 |                 | |       | | | [4] Real d(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [5] Real e(start=0, nominal=1) = 0.57364 (pre: 0)
-|                 | |       | | | [6] Real f(start=0, nominal=1) = -27.1705 (pre: 0)
+| | |       | | | [5] Real e(start=0, nominal=1) = -0.956376 (pre: 0)
+| | |       | | | [6] Real f(start=0, nominal=1) = -23.1114 (pre: 0)
 |                 | |       | | | [7] Real x(start=0, nominal=1) = -9 (pre: 0)
 |                 | |       | | | [8] Real x1(start=0, nominal=1) = -9 (pre: 0)
-|                 | |       | | | [9] Real x2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [10] Real x3(start=0, nominal=1) = -5.42636 (pre: 0)
+| | |       | | | [9] Real x2(start=0, nominal=1) = 3 (pre: 0)
+| | |       | | | [10] Real x3(start=0, nominal=1) = -6.95638 (pre: 0)
 |                 | |       | | | [11] Real y(start=0, nominal=1) = 5 (pre: 0)
 |                 | |       | | | [12] Real y1(start=0, nominal=1) = 4.16984 (pre: 0)
-|                 | |       | | | [13] Real y2(start=0, nominal=1) = -2.16228 (pre: 0)
-|                 | |       | | | [14] Real y3(start=0, nominal=1) = 4.57364 (pre: 0)
+| | |       | | | [13] Real y2(start=0, nominal=1) = -3 (pre: 0)
+| | |       | | | [14] Real y3(start=0, nominal=1) = 3.04362 (pre: 0)
 |                 | |       | | | [15] Real z(start=0, nominal=1) = -5 (pre: 0)
 |                 | |       | | | [16] Real z1(start=0, nominal=1) = -4.16984 (pre: 0)
-|                 | |       | | | [17] Real z2(start=0, nominal=1) = 4.67544 (pre: 0)
+| | |       | | | [17] Real z2(start=0, nominal=1) = 9 (pre: 0)
 |                 | |       | | | [18] Real z3(start=0, nominal=1) = -1 (pre: 0)
 LOG_INIT          | info    | ### END INITIALIZATION ###
 LOG_SUCCESS       | info    | The initialization finished successfully with 3 homotopy steps.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
@@ -1107,11 +1097,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1174,11 +1163,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1242,11 +1230,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1309,11 +1296,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1377,11 +1363,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1444,11 +1429,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1512,11 +1496,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1579,11 +1562,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1647,11 +1629,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1714,11 +1695,10 @@
 LOG_INIT_HOMOTOPY | info    | solving lambda0-system done with success
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_local_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1788,11 +1768,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1855,11 +1834,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1923,11 +1901,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -1990,11 +1967,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2058,11 +2034,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2125,11 +2100,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2193,11 +2167,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2260,11 +2233,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2328,11 +2300,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547
@@ -2395,11 +2366,10 @@
 LOG_INIT_HOMOTOPY | info    | solving simplified lambda0-DAE done
 |                 | |       | ---------------------------
 LOG_INIT_HOMOTOPY | info    | run along the homotopy path and solve the actual system
 LOG_INIT_HOMOTOPY | info    | Homotopy run:  1
 LOG_INIT_HOMOTOPY | info    | startDirection =    1.0000000000e+00
-LOG_INIT_HOMOTOPY | info    | The homotopy path will be exported to initializationTests.homotopy4_solver_nonlinsys0_adaptive_global_homotopy_pos.csv.
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.0287318
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.298547
 LOG_INIT_HOMOTOPY | info    | homotopy parameter lambda = 0.338547

Equation mismatch: omc-diff says:
Failed &apos;T&apos; &apos;[&apos;
Line 20: Text differs:
expected: LOG_INIT_HOMOTOPY | info    | The homotopy path of system 
got:      LOG_INIT_HOMOTOPY | info    | [system 

== 1 out of 1 tests failed [simulation/modelica/initialization/homotopy4_solver.mos_temp1282, time: 4]
</system-out></testcase>
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<testcase classname="simulation_modelica_equations" name="IfEquation6.mos" time="5"></testcase>
<testcase classname="simulation_modelica_equations" name="IfEquation4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_equations" name="IfEquation2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="HideVariableForEquations.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="FlatTank.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="EqualityEquationsCorrect.mos" time="0"></testcase>
<testcase classname="simulation_modelica_equations" name="DoubleWhenConflict.mos" time="0"></testcase>
<testcase classname="simulation_modelica_equations" name="DAEexample.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="BouncingBallExamples.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="BouncingBall.mos" time="1"></testcase>
<testcase classname="simulation_modelica_equations" name="AliasEquations.mos" time="1"></testcase>
<testcase classname="simulation_modelica_enums" name="TestPosture.mos" time="1"></testcase>
<testcase classname="simulation_modelica_enums" name="EnumArray2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_declarations" name="MyPointsInst2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEp9.mos" time="0"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEp7.mos" time="0"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEp5.mos" time="1"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEp3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEp1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAEScaling.mos" time="7"></testcase>
<testcase classname="simulation_modelica_daemode" name="testDAE10.mos" time="1"></testcase>
<testcase classname="simulation_modelica_connectors" name="TopLevelConnectorArray.mos" time="1"></testcase>
<testcase classname="simulation_modelica_connectors" name="TankPID.mos" time="0"></testcase>
<testcase classname="simulation_modelica_connectors" name="TankHybridPID.mos" time="0"></testcase>
<testcase classname="simulation_modelica_connectors" name="Tank.mos" time="0"></testcase>
<testcase classname="simulation_modelica_connectors" name="LinearSysEq.mos" time="0"></testcase>
<testcase classname="simulation_modelica_connectors" name="HeatTank.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls_enums_8166.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls8.mos" time="1"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls6.mos" time="1"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls4.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls13.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls11.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="wrapFunctionCalls1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseTestCall6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseTestCall4.mos" time="1"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseTestCall2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall8.mos" time="1"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall6.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall4d.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall4b.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cseFunctionCall1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cse2_comSubExp.mos" time="0"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="cse1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_commonSubExp" name="ThermoSysPro.Examples.SimpleExamples.TestCentrifugalPump1.mos" time="18"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="test2.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="singleOutputSpatialDistribution.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="pulseInput.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="negativeVelocity.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="largePositionReversal.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="helloSpatialDistribution.mos" time="5"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="doubleReversal.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions_spatialDistribution" name="bigStepEventFallback.mos" time="6"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="dertest.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions_delay" name="Delay.mos" time="1"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="Time.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="SemiLinearTest2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="SampledPrints.mos" time="5"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="NthRoot3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="NthRoot1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="LotkaVolterra.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="HydrogenIodide.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="DummyDerMatching.mos" time="1"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="DerInvalid.mos" time="0"></testcase>
<testcase classname="simulation_modelica_built_in_functions" name="Compare.mos" time="1"></testcase>
<testcase classname="simulation_modelica_asserts" name="testAssertSolve.mos" time="1"></testcase>
<testcase classname="simulation_modelica_asserts" name="powAssert2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_asserts" name="TestAssert.mos" time="1"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + TestAssertPackages                                                                ... equation mismatch [time: 1]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/TestAssert.mos_temp8359/log-TestAssert.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;TestAssert.TestWarningConstant_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_ASSERT        | warning | [&lt;interactive&gt;:7:5-7:76:writable]
|                 | |       | The following assertion has been violated during initialization at time 0.000000
|                 | |       | ((false)) --&gt; \&quot;Variable x is probably too big\&quot;
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
record SimulationResult
    resultFile = &quot;TestAssert.TestWarningVariable_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
|                 | |       | The following assertion has been violated at time 0.834000
|                 | |       | ((m3.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;TestAssert.TestWarningRecurring_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningRecurring&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
|                 | |       | The following assertion has been violated at time 0.158000
|                 | |       | ((m3.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Simulation execution failed for model: TestAssert.TestErrorConstant
LOG_ASSERT        | error   | [&lt;interactive&gt;:6:5-6:44:writable]
|                 | |       | The following assertion has been violated during initialization at time 0.000000
|                 | |       | ((false)) --&gt; \&quot;Variable x is too big\&quot;
LOG_ASSERT        | info    | simulation terminated by an assertion at initialization
&quot;
end SimulationResult;
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Simulation execution failed for model: TestAssert.TestErrorVariable
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
|                 | |       | The following assertion has been violated at time 0.250000
|                 | |       | ((m2.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;
LOG_ASSERT        | info    | [&lt;interactive&gt;:6:5-6:44:writable]
|                 | |       | The following assertion has been violated at time 0.500000
|                 | |       | ((m2.x &lt; 10.0)) --&gt; \&quot;Variable x is too big\&quot;
LOG_ASSERT        | error   | No event found, but assert was triggered. Throwing now!
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/TestAssert.mos_temp8359/equations-expected2026-08-25 16:10:03.313124303 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/TestAssert.mos_temp8359/equations-got2026-08-25 16:10:04.285124778 +0000
@@ -1,58 +1,55 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;TestAssert.TestWarningConstant_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;LOG_ASSERT        | warning | [&lt;interactive&gt;:7:5-7:76:writable]
 |                 | |       | The following assertion has been violated during initialization at time 0.000000
 |                 | |       | ((false)) --&gt; \&quot;Variable x is probably too big\&quot;
-LOG_ASSERT        | warning | [&lt;interactive&gt;:7:5-7:76:writable]
-|                 | |       | The following assertion has been violated during initialization at time 0.000000
-|                 | |       | ((false)) --&gt; \&quot;Variable x is probably too big\&quot;
 LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
 &quot;
 record SimulationResult
 resultFile = &quot;TestAssert.TestWarningVariable_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
 |                 | |       | The following assertion has been violated at time 0.834000
 |                 | |       | ((m3.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;TestAssert.TestWarningRecurring_res.mat&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningRecurring&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestWarningRecurring&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
 |                 | |       | The following assertion has been violated at time 0.158000
 |                 | |       | ((m3.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorConstant&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;Simulation execution failed for model: TestAssert.TestErrorConstant
 LOG_ASSERT        | error   | [&lt;interactive&gt;:6:5-6:44:writable]
 |                 | |       | The following assertion has been violated during initialization at time 0.000000
 |                 | |       | ((false)) --&gt; \&quot;Variable x is too big\&quot;
 LOG_ASSERT        | info    | simulation terminated by an assertion at initialization
 &quot;
 end SimulationResult;
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;TestAssert.TestErrorVariable&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
 messages = &quot;Simulation execution failed for model: TestAssert.TestErrorVariable
 LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_ASSERT        | info    | [&lt;interactive&gt;:7:5-7:76:writable]
 |                 | |       | The following assertion has been violated at time 0.250000
 |                 | |       | ((m2.x &lt; 5.0)) --&gt; \&quot;Variable x is probably too big\&quot;

Equation mismatch: omc-diff says:
--Failed &apos;A&apos; &apos;S&apos;
Line 9: Text differs:
expected: LOG_ASSERT        | warning | [&lt;interactive&gt;:
got:      LOG_SUCCESS | info    | The initialization finished successfully without homotopy method.

== 1 out of 1 tests failed [simulation/modelica/asserts/TestAssert.mos_temp8359, time: 1]
</system-out></testcase>
<testcase classname="simulation_modelica_asserts" name="AssertTest7.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + AssertTest7                                                                       ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest7.mos_temp3316/log-AssertTest7.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 7, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Test7&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Failed to build model: Test7&quot;
end SimulationResult;
&quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: the model&apos;s `external \&quot;C\&quot;` implementations are unavailable:
  `myPuts` is in none of the model&apos;s libraries  the model declares no `Library` annotation that resolves to one. Name a wasm module built with `clang --target=wasm32-wasip1 -fPIC -shared`, or, for a native run, the platform shared library the C target would link.
&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest7.mos_temp3316/equations-expected2026-08-25 16:10:03.399124346 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest7.mos_temp3316/equations-got2026-08-25 16:10:03.912124596 +0000
@@ -1,131 +1,11 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;&quot;,
-simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 7, tolerance = 1e-06, method = &apos;dassl&apos;, fileNamePrefix = &apos;Test7&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;Simulation execution failed for model: Test7
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-Value of x(=0.51)
-Value of x(=0.51)
-Value of x(=0.509999)
-Value of x(=0.509999)
-Value of x(=0.509999)
-Value of x(=0.509998)
-Value of x(=0.509998)
-Value of x(=0.509995)
-Value of x(=0.509995)
-Value of x(=0.509995)
-Value of x(=0.509989)
-Value of x(=0.509989)
-Value of x(=0.509989)
-Value of x(=0.509977)
-Value of x(=0.509977)
-Value of x(=0.509977)
-Value of x(=0.509952)
-Value of x(=0.509952)
-Value of x(=0.509952)
-Value of x(=0.509904)
-Value of x(=0.509904)
-Value of x(=0.509904)
-Value of x(=0.509807)
-Value of x(=0.509807)
-Value of x(=0.509807)
-Value of x(=0.509614)
-Value of x(=0.509614)
-Value of x(=0.509614)
-Value of x(=0.509228)
-Value of x(=0.509228)
-Value of x(=0.509228)
-Value of x(=0.508455)
-Value of x(=0.508455)
-Value of x(=0.508455)
-Value of x(=0.506908)
-Value of x(=0.506908)
-Value of x(=0.506908)
-Value of x(=0.503816)
-Value of x(=0.503816)
-Value of x(=0.503816)
-Value of x(=0.50227)
-Value of x(=0.50227)
-Value of x(=0.50227)
-Value of x(=0.501496)
-Value of x(=0.501496)
-Value of x(=0.501496)
-Value of x(=0.50111)
-Value of x(=0.50111)
-Value of x(=0.50111)
-Value of x(=0.500337)
-Value of x(=0.500337)
-Value of x(=0.500337)
-Value of x(=0.50024)
-Value of x(=0.50024)
-Value of x(=0.50024)
-Value of x(=0.500047)
-Value of x(=0.500047)
-Value of x(=0.500047)
-Value of x(=0.500023)
-Value of x(=0.500023)
-Value of x(=0.500023)
-Value of x(=0.500011)
-Value of x(=0.500011)
-Value of x(=0.500011)
-Value of x(=0.500005)
-Value of x(=0.500005)
-Value of x(=0.500005)
-Value of x(=0.500002)
-Value of x(=0.500002)
-Value of x(=0.500002)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-Value of x(=0.5)
-DASKR--  AT T (=R1) AND STEPSIZE H (=R2) THE
-In above,  R1 =   5.0000000000000E-01   R2 =   3.5157427188218E-16
-DASKR--  NONLINEAR SYSTEM SOLVER COULD NOT CONVERGE
-DASKR--  BECAUSE IRES WAS EQUAL TO MINUS ONE
-LOG_STDOUT        | warning | A Modelica assert prevents the integrator to continue. For more information use -lv LOG_SOLVER
-LOG_STDOUT        | warning | can&apos;t continue. time = 0.500000
-Value of x(=0.5)
-LOG_STDOUT        | info    | model terminate | Integrator failed. | Simulation terminated at time 0.5
-&quot;
+simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 7, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Test7&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
+messages = &quot;Failed to build model: Test7&quot;
 end SimulationResult;
 &quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
+[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: the model&apos;s `external \&quot;C\&quot;` implementations are unavailable:
+`myPuts` is in none of the model&apos;s libraries  the model declares no `Library` annotation that resolves to one. Name a wasm module built with `clang --target=wasm32-wasip1 -fPIC -shared`, or, for a native run, the platform shared library the C target would link.
 &quot;

Equation mismatch: omc-diff says:
Failed &apos;S&apos; &apos;F&apos;
Line 6: Text differs:
expected: messages = &quot;Simulation execution failed for model: Test
got:      messages = &quot;Failed to build model: Test

== 1 out of 1 tests failed [simulation/modelica/asserts/AssertTest7.mos_temp3316, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_asserts" name="AssertTest5.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + AssertTest5                                                                       ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest5.mos_temp2611/log-AssertTest5.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 9, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Test5&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Failed to build model: Test5&quot;
end SimulationResult;
&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: the model&apos;s `external \&quot;C\&quot;` implementations are unavailable:
  `myPuts` is in none of the model&apos;s libraries  the model declares no `Library` annotation that resolves to one. Name a wasm module built with `clang --target=wasm32-wasip1 -fPIC -shared`, or, for a native run, the platform shared library the C target would link.
&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest5.mos_temp2611/equations-expected2026-08-25 16:10:03.436124364 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/asserts/AssertTest5.mos_temp2611/equations-got2026-08-25 16:10:03.946124613 +0000
@@ -1,21 +1,10 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 9, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;Test5&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;Simulation execution failed for model: Test5
-Value of x(=1)
-Value of x(=1)
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-Value of x(=0.888889)
-Value of x(=0.777778)
-Value of x(=0.666667)
-Value of x(=0.555556)
-Value of x(=0.444444)
-LOG_ASSERT        | info    | [simulation/modelica/asserts/AssertTest5.mo:25:3-25:65:writable]
-|                 | |       | The following assertion has been violated at time 0.555556
-|                 | |       | ((assertTest.x &gt;= 0.5)) --&gt; \&quot;Variable x(=0.444444) out of limit\&quot;
-LOG_ASSERT        | error   | No event found, but assert was triggered. Throwing now!
-&quot;
+messages = &quot;Failed to build model: Test5&quot;
 end SimulationResult;
-&quot;&quot;
+&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: the model&apos;s `external \&quot;C\&quot;` implementations are unavailable:
+`myPuts` is in none of the model&apos;s libraries  the model declares no `Library` annotation that resolves to one. Name a wasm module built with `clang --target=wasm32-wasip1 -fPIC -shared`, or, for a native run, the platform shared library the C target would link.
+&quot;

Equation mismatch: omc-diff says:
Failed &apos;S&apos; &apos;F&apos;
Line 6: Text differs:
expected: messages = &quot;Simulation execution failed for model: Test
got:      messages = &quot;Failed to build model: Test

== 1 out of 1 tests failed [simulation/modelica/asserts/AssertTest5.mos_temp2611, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_asserts" name="AssertTest3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_asserts" name="AssertTest1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="ticket_6099.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="ticket5114.mos" time="3"></testcase>
<testcase classname="simulation_modelica_arrays" name="gc2980.mos" time="5"></testcase>
<testcase classname="simulation_modelica_arrays" name="crefIndex.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="bug_2911.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="ZeroSizeLoop.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="Xpowers2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="VectorizeOneReturnValue.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="PolynomialEvaluatorB.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="PolynomialEvaluator3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="PolynomialEvaluator1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="Issue14470.mos" time="7"></testcase>
<testcase classname="simulation_modelica_arrays" name="DimConvert.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="Bug3916.mos" time="2"></testcase>
<testcase classname="simulation_modelica_arrays" name="Breaker_total.mos" time="2"></testcase>
<testcase classname="simulation_modelica_arrays" name="BooleanArray.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayWithImplicitSubscripts.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArraySlice2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayReturn.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayParameterSize.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayModel.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayExponentiation.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ArrayDivError.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="AppendElement.mos" time="1"></testcase>
<testcase classname="simulation_modelica_arrays" name="ABCDsystem.plt.mos" time="0"></testcase>
<testcase classname="simulation_modelica_arrays" name="ABCDsystem.csv.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="whenFunctionTuple.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="val.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="bug_6068.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="bug_2452.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="bug_2286.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="bug2888.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="ZeroCross.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="WhenStatement2.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="WhenPriority.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="TestCrossFunction.mos" time="5"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="SimplePeriodicSampler.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="LocalVariableInit.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="Issue16192.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="InverseAlgorithm3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="InverseAlgorithm1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="FunctionTupleRecord.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="FunctionIndirectRecursion2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="FunctionInReinit.mos" time="0"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="ForIterator2.mos" time="2"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="DoubleWhenSequential.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="ArrayInitSorting.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="AlgorithmSize.mos" time="5"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="AlgorithmForInClass.mos" time="1"></testcase>
<testcase classname="simulation_modelica_algorithms_functions" name="AlgorithmCondAssign1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_tickets" name="15936.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_tickets" name="13788.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_tickets" name="13144.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_tearing" name="minimalTearing.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_tearing" name="impliedInner.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_solve" name="solveMultaryBinary.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_solve" name="solveCallTan.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_simplification" name="splitIf.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + splitIf                                                                           ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/simplification/splitIf.mos_temp5634/log-splitIf.mos
true
&quot;&quot;
true
&quot;&quot;
### dumpSimplify | NBackendDAE.simplify ###
[BEFORE] time * 3.0
[AFTER ] 3.0 * time

### dumpSimplify | NBackendDAE.simplify ###
[BEFORE] time * 3.0 + 2.0
[AFTER ] 2.0 + 3.0 * time

### dumpSimplify | NBackendDAE.simplify ###
[BEFORE]
  [-IF-] (1) ($RES_SIM_0)
  [----] if time &gt;= 1.0 then
  [----]   [SCAL] (1) v1 = 3.0 * time; ($RES_SIM_1)
  [----] else
  [----]   [SCAL] (1) v1 = 2.0 + 3.0 * time; ($RES_SIM_2)
  [----] end if;
[AFTER ]
  [SCAL] (1) v1 = if time &gt;= 1.0 then 3.0 * time else 2.0 + 3.0 * time; ($RES_SIM_0)

### dumpSimplify | NBackendDAE.simplify ###
[BEFORE]
  [-IF-] (1) ($RES_SIM_3)
  [----] if time &gt;= 1.0 then
  [----]   [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_4)
  [----] else
  [----]   [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_5)
  [----] end if;
[AFTER ]
  [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_3)

### dumpSimplify | NBEquation.Equation.getResidualExp ###
[BEFORE] 0.0 - v2 ^ 3.0
[AFTER ] -v2 ^ 3.0

### dumpSimplify | NBSolve.solveBody ###
[BEFORE] (-0.0) ^ (1/3.0)
[AFTER ] 0.0

{&quot;SplitIf&quot;, &quot;SplitIf_init.xml&quot;}
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/simplification/splitIf.mos_temp5634/equations-expected2026-08-25 16:10:12.331128678 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/simplification/splitIf.mos_temp5634/equations-got2026-08-25 16:10:12.816128912 +0000
@@ -1,38 +1,38 @@
 true
 &quot;&quot;
 true
 &quot;&quot;
 ### dumpSimplify | NBackendDAE.simplify ###
-[BEFORE]
-[-IF-] (1) ($RES_SIM_0)
-[----] if time &gt;= 1.0 then
-[----]   [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_1)
-[----] else
-[----]   [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_2)
-[----] end if;
-[AFTER ]
-[SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_0)
-
-### dumpSimplify | NBackendDAE.simplify ###
 [BEFORE] time * 3.0
 [AFTER ] 3.0 * time
 
 ### dumpSimplify | NBackendDAE.simplify ###
 [BEFORE] time * 3.0 + 2.0
 [AFTER ] 2.0 + 3.0 * time
 
 ### dumpSimplify | NBackendDAE.simplify ###
 [BEFORE]
+[-IF-] (1) ($RES_SIM_0)
+[----] if time &gt;= 1.0 then
+[----] [SCAL] (1) v1 = 3.0 * time; ($RES_SIM_1)
+[----] else
+[----] [SCAL] (1) v1 = 2.0 + 3.0 * time; ($RES_SIM_2)
+[----] end if;
+[AFTER ]
+[SCAL] (1) v1 = if time &gt;= 1.0 then 3.0 * time else 2.0 + 3.0 * time; ($RES_SIM_0)
+
+### dumpSimplify | NBackendDAE.simplify ###
+[BEFORE]
 [-IF-] (1) ($RES_SIM_3)
 [----] if time &gt;= 1.0 then
-[----]   [SCAL] (1) v1 = 3.0 * time; ($RES_SIM_4)
+[----] [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_4)
 [----] else
-[----]   [SCAL] (1) v1 = 2.0 + 3.0 * time; ($RES_SIM_5)
+[----] [SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_5)
 [----] end if;
 [AFTER ]
-[SCAL] (1) v1 = if time &gt;= 1.0 then 3.0 * time else 2.0 + 3.0 * time; ($RES_SIM_3)
+[SCAL] (1) v2 ^ 3.0 = 0.0; ($RES_SIM_3)
 
 ### dumpSimplify | NBEquation.Equation.getResidualExp ###
 [BEFORE] 0.0 - v2 ^ 3.0
 [AFTER ] -v2 ^ 3.0
 

Equation mismatch: omc-diff says:
Line 6: Text differs:
expected: [BEFORE]
got:      [BEFORE] time * 

== 1 out of 1 tests failed [simulation/modelica/NBackend/simplification/splitIf.mos_temp5634, time: 0]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_simplification" name="simplifyIf.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_records" name="simple_tuple.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_records" name="record_inlining.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_records" name="RecordCausality.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_records" name="ComplexTest.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_initialization" name="init_if_exp.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_initialization" name="homotopy_no_loop.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_initialization" name="experimental_initialSimplified.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_index_reduction" name="static_index_3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_index_reduction" name="basic_IR.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_functions" name="inlineAttributes15947.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_functions" name="function_inline_retype.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_functions" name="function_annotation_der.mos" time="1"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + function_annotation_der                                                           ... equation mismatch [time: 1]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/functions/function_annotation_der.mos_temp5238/log-function_annotation_der.mos
true
&quot;&quot;
true
&quot;&quot;
### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) a = sin(b); ($RES_AUX_9)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.a = cos(b) * $SEED_ODE_JAC.b; ($RES_AUX_9)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $FUN_4 = f(a, 0, b, b); ($RES_AUX_6)

[BEFORE] function &apos;f&apos;
  input Real &apos;x&apos;;
  input Integer &apos;n&apos;;
  input Real &apos;k&apos;;
  input Real &apos;m&apos;;
  output Real &apos;y&apos;;
algorithm
  &apos;y&apos; := &apos;k&apos; * &apos;x&apos; ^ 2.0 + &apos;m&apos;;
  annotation(derivative(order = 1, zeroDerivative = &apos;k&apos;) = &apos;df&apos;, derivative(order = 1, zeroDerivative = &apos;n&apos;) = &apos;$fDER1.f&apos;, Inline = false);
end &apos;f&apos;

[AFTER ] function &apos;$fDER1.f&apos;
  input Real &apos;x&apos;;
  input Integer &apos;n&apos;;
  input Real &apos;k&apos;;
  input Real &apos;m&apos;;
  input Real &apos;$fDER_x&apos;;
  input Real &apos;$fDER_k&apos;;
  input Real &apos;$fDER_m&apos;;
  output Real &apos;$fDER_y&apos;;
  Real &apos;y&apos;;
algorithm
  &apos;$fDER_y&apos; := (&apos;$fDER_k&apos; * &apos;x&apos; ^ 2.0 + &apos;k&apos; * (2.0 * &apos;x&apos; * &apos;$fDER_x&apos;)) + &apos;$fDER_m&apos;;
  &apos;y&apos; := &apos;k&apos; * &apos;x&apos; ^ 2.0 + &apos;m&apos;;
  annotation(Inline = false);
end &apos;$fDER1.f&apos;

[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_4 = $fDER1.f(a, 0, b, b, $pDER_ODE_JAC.a, $SEED_ODE_JAC.b, $SEED_ODE_JAC.b); ($RES_AUX_6)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $FUN_2 = f(a, 0, k, k); ($RES_AUX_8)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_2 = df(a, 0, k, k, $pDER_ODE_JAC.a, 0.0); ($RES_AUX_8)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $DER.b = $FUN_2; ($RES_SIM_2)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$DER.b = $pDER_ODE_JAC.$FUN_2; ($RES_SIM_2)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $FUN_3 = f(a, 0, k, b); ($RES_AUX_7)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_3 = df(a, 0, k, b, $pDER_ODE_JAC.a, $SEED_ODE_JAC.b); ($RES_AUX_7)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $DER.c = $FUN_3; ($RES_SIM_1)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$DER.c = $pDER_ODE_JAC.$FUN_3; ($RES_SIM_1)

### debugDifferentiation | NBJacobian.jacobianSymbolic ###
[BEFORE] [SCAL] (1) $DER.d = $FUN_4; ($RES_SIM_0)
[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$DER.d = $pDER_ODE_JAC.$FUN_4; ($RES_SIM_0)

record SimulationResult
    resultFile = &quot;function_annotation_der_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;function_annotation_der&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/functions/function_annotation_der.mos_temp5238/equations-expected2026-08-25 16:10:13.935129450 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/functions/function_annotation_der.mos_temp5238/equations-got2026-08-25 16:10:14.350129649 +0000
@@ -37,22 +37,22 @@
 end &apos;$fDER1.f&apos;
 
 [AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_4 = $fDER1.f(a, 0, b, b, $pDER_ODE_JAC.a, $SEED_ODE_JAC.b, $SEED_ODE_JAC.b); ($RES_AUX_6)
 
 ### debugDifferentiation | NBJacobian.jacobianSymbolic ###
-[BEFORE] [SCAL] (1) $FUN_3 = f(a, 0, k, b); ($RES_AUX_7)
-[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_3 = df(a, 0, k, b, $pDER_ODE_JAC.a, $SEED_ODE_JAC.b); ($RES_AUX_7)
-
-### debugDifferentiation | NBJacobian.jacobianSymbolic ###
 [BEFORE] [SCAL] (1) $FUN_2 = f(a, 0, k, k); ($RES_AUX_8)
 [AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_2 = df(a, 0, k, k, $pDER_ODE_JAC.a, 0.0); ($RES_AUX_8)
 
 ### debugDifferentiation | NBJacobian.jacobianSymbolic ###
 [BEFORE] [SCAL] (1) $DER.b = $FUN_2; ($RES_SIM_2)
 [AFTER ] [SCAL] (1) $pDER_ODE_JAC.$DER.b = $pDER_ODE_JAC.$FUN_2; ($RES_SIM_2)
 
 ### debugDifferentiation | NBJacobian.jacobianSymbolic ###
+[BEFORE] [SCAL] (1) $FUN_3 = f(a, 0, k, b); ($RES_AUX_7)
+[AFTER ] [SCAL] (1) $pDER_ODE_JAC.$FUN_3 = df(a, 0, k, b, $pDER_ODE_JAC.a, $SEED_ODE_JAC.b); ($RES_AUX_7)
+
+### debugDifferentiation | NBJacobian.jacobianSymbolic ###
 [BEFORE] [SCAL] (1) $DER.c = $FUN_3; ($RES_SIM_1)
 [AFTER ] [SCAL] (1) $pDER_ODE_JAC.$DER.c = $pDER_ODE_JAC.$FUN_3; ($RES_SIM_1)
 
 ### debugDifferentiation | NBJacobian.jacobianSymbolic ###
 [BEFORE] [SCAL] (1) $DER.d = $FUN_4; ($RES_SIM_0)

Equation mismatch: omc-diff says:
Line 42: Integer 3 != 2

== 1 out of 1 tests failed [simulation/modelica/NBackend/functions/function_annotation_der.mos_temp5238, time: 1]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_event_handling" name="integerIteratorNoEvent.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_event_handling" name="eventSystem.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_event_handling" name="algorithmWhen.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_event_handling" name="AssertNoEvent.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="numericJacobianRows.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="arrayScalar.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="allTheBuildins.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="adjoint_jacobian5.mos" time="1"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + AlgorithmSSATest                                                                  ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/differentation/adjoint_jacobian5.mos_temp7755/log-adjoint_jacobian5.mos
true
&quot;&quot;
true
&quot;&quot;
##################################

    SimCode (AlgorithmSSATest)

##################################
============
  SimVars 
============
States (2)
************
  (0)[STAT] (1) Real a = 1.0
  (1)[STAT] (1) Real b = 0.0

Derivatives (2)
*****************
  (2)[DER-] (1) Real $DER.a
  (3)[DER-] (1) Real $DER.b

Algebraic Variables (2)
*************************
  (4)[ALGB] (1) Real v
  (5)[ALGB] (1) Real x

Initial Partition
-------------------
  (5) a := $START.a
  (4) b := $START.b
  (3) Algorithm
  v := x * x;
  x := sin(v);
  x := 3.0 * x;
  (2) $DER.a := x - a
  (1) $DER.b := v - b

ODE Partition 1
-----------------
  (8) Alias of 3
  (7) Alias of 1
  (6) Alias of 2

Event Partition
-----------------

======================================================
  [EMPTY] SimCode Jacobian A(idx = 0, partition = 0)
======================================================

======================================================
  [EMPTY] SimCode Jacobian B(idx = 2, partition = 0)
======================================================

======================================================
  [EMPTY] SimCode Jacobian C(idx = 3, partition = 0)
======================================================

======================================================
  [EMPTY] SimCode Jacobian D(idx = 4, partition = 0)
======================================================

======================================================
  [EMPTY] SimCode Jacobian F(idx = 5, partition = 0)
======================================================

======================================================
  [EMPTY] SimCode Jacobian H(idx = 6, partition = 0)
======================================================

================================================
  SimCode Jacobian ADJ(idx = 1, partition = 1)
================================================

SeedVars (size = 2)
*********************
  (0)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.a
  (1)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.b

TmpVars (size = 4)
********************
  (0)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.x_2
  (1)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.x_1
  (2)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.v
  (3)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.x

ResultVars (size = 2)
***********************

Column Equations (size = 3)
-----------------------------
  (11) Algorithm
  $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;
  (10) Algorithm
  $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
  (9) Algorithm
  $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
  $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + ($pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x);

Resizable Sparsity Pattern
----------------------------
$RES_SIM_1 ... {$SEED_ODE_JAC_ADJ.$DER.b} ... {($pDER_ODE_JAC_ADJ.b, {}, false)}
$RES_SIM_2 ... {$SEED_ODE_JAC_ADJ.$DER.a} ... {($pDER_ODE_JAC_ADJ.a, {}, false)}

============================================================
  [EMPTY] SimCode Jacobian OPT_LFG(idx = 7, partition = 0)
============================================================

============================================================
  [EMPTY] SimCode Jacobian OPT_MRF(idx = 8, partition = 0)
============================================================

===========================================================
  [EMPTY] SimCode Jacobian OPT_R0(idx = 9, partition = 0)
===========================================================



*********************
* SimCode Equations *
*********************


allEquations:
========================================

8: alias of 3
7: alias of 1
6: alias of 2
========================================



odeEquations (1 systems):
========================================
8: alias of 3
7: alias of 1
6: alias of 2
========================================



algebraicEquations (0 systems):
========================================
========================================


clockPartitions (0 systems):

========================================



initialEquations: (5)
========================================
5: a=$START.a [Real]
4: b=$START.b [Real]
3:   v := x * x;
  x := sin(v);
  x := 3.0 * x;

2: $DER.a=x - a [Real]
1: $DER.b=v - b [Real]
========================================



initialEquations_lambda0: (0)
========================================

removedInitialEquations:
========================================

startValueEquations:
========================================

nominalValueEquations:
========================================

minValueEquations:
========================================

maxValueEquations:
========================================

parameterEquations:
========================================

removedEquations:
========================================

algorithmAndEquationAsserts:
========================================

equationsForZeroCrossings:
========================================

generic calls:
========================================

jacobianEquations:
========================================
11:   $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;

10:   $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;

9:   $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
  $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x;


jacobianMatrices:
========================================
Jacobian idx: 0

Jacobian idx: 2

Jacobian idx: 3

Jacobian idx: 4

Jacobian idx: 5

Jacobian idx: 6

Jacobian idx: 1
11:   $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;

10:   $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;

9:   $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
  $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
  $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
  $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x;


columnVars(4)
----------------------
index:0: $pDER_ODE_JAC_ADJ.x_2 (no alias)  initial: no arrCref index:(1) []
index:1: $pDER_ODE_JAC_ADJ.x_1 (no alias)  initial: no arrCref index:(2) []
index:2: $pDER_ODE_JAC_ADJ.v (no alias)  initial: no arrCref index:(3) []
index:3: $pDER_ODE_JAC_ADJ.x (no alias)  initial: no arrCref index:(4) []
Jacobian idx: 7

Jacobian idx: 8

Jacobian idx: 9


modelInfo:
========================================
stateVars (2)
----------------------
index:0: a (no alias)  initial: 1.0no arrCref index:(1) []
index:1: b (no alias)  initial: 0.0no arrCref index:(2) []
derivativeVars
----------------------
index:2: $DER.a (no alias)  initial: no arrCref index:(3) []
index:3: $DER.b (no alias)  initial: no arrCref index:(4) []
algVars (2)
----------------------
index:4: v (no alias)  initial: no arrCref index:(5) []
index:5: x (no alias)  initial: no arrCref index:(6) []
functions:
-----------

{&quot;AlgorithmSSATest&quot;, &quot;AlgorithmSSATest_init.xml&quot;}
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/differentation/adjoint_jacobian5.mos_temp7755/equations-expected2026-08-25 16:10:14.676129806 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/differentation/adjoint_jacobian5.mos_temp7755/equations-got2026-08-25 16:10:14.979129951 +0000
@@ -37,12 +37,12 @@
 (1) $DER.b := v - b
 
 ODE Partition 1
 -----------------
 (8) Alias of 3
-(7) Alias of 2
-(6) Alias of 1
+(7) Alias of 1
+(6) Alias of 2
 
 Event Partition
 -----------------
 
 ======================================================
@@ -73,12 +73,12 @@
 SimCode Jacobian ADJ(idx = 1, partition = 1)
 ================================================
 
 SeedVars (size = 2)
 *********************
-(0)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.b
-(1)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.a
+(0)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.a
+(1)[SEED] (1) Real $SEED_ODE_JAC_ADJ.$DER.b
 
 TmpVars (size = 4)
 ********************
 (0)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.x_2
 (1)[JTMP] (1) Real $pDER_ODE_JAC_ADJ.x_1
@@ -89,25 +89,25 @@
 ***********************
 
 Column Equations (size = 3)
 -----------------------------
 (11) Algorithm
-$pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
-$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
-(10) Algorithm
 $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;
+(10) Algorithm
+$pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
+$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
 (9) Algorithm
 $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
 $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
 $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + ($pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x);
 
 Resizable Sparsity Pattern
 ----------------------------
-$RES_SIM_2 ... {$SEED_ODE_JAC_ADJ.$DER.a} ... {($pDER_ODE_JAC_ADJ.a, {}, false)}
 $RES_SIM_1 ... {$SEED_ODE_JAC_ADJ.$DER.b} ... {($pDER_ODE_JAC_ADJ.b, {}, false)}
+$RES_SIM_2 ... {$SEED_ODE_JAC_ADJ.$DER.a} ... {($pDER_ODE_JAC_ADJ.a, {}, false)}
 
 ============================================================
 [EMPTY] SimCode Jacobian OPT_LFG(idx = 7, partition = 0)
 ============================================================
 
@@ -128,21 +128,21 @@
 
 allEquations:
 ========================================
 
 8: alias of 3
-7: alias of 2
-6: alias of 1
+7: alias of 1
+6: alias of 2
 ========================================
 
 
 
 odeEquations (1 systems):
 ========================================
 8: alias of 3
-7: alias of 2
-6: alias of 1
+7: alias of 1
+6: alias of 2
 ========================================
 
 
 
 algebraicEquations (0 systems):
@@ -203,16 +203,16 @@
 generic calls:
 ========================================
 
 jacobianEquations:
 ========================================
-11:   $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
-$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
-
-10:   $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
+11: $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;
 
+10: $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
+$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
+
 9:   $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
 $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
 $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x;
 
@@ -230,16 +230,16 @@
 Jacobian idx: 5
 
 Jacobian idx: 6
 
 Jacobian idx: 1
-11:   $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
-$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
-
-10:   $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
+11: $pDER_ODE_JAC_ADJ.a := $pDER_ODE_JAC_ADJ.a - $SEED_ODE_JAC_ADJ.$DER.a;
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $SEED_ODE_JAC_ADJ.$DER.a;
 
+10: $pDER_ODE_JAC_ADJ.b := $pDER_ODE_JAC_ADJ.b - $SEED_ODE_JAC_ADJ.$DER.b;
+$pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $SEED_ODE_JAC_ADJ.$DER.b;
+
 9:   $pDER_ODE_JAC_ADJ.x_2 := $pDER_ODE_JAC_ADJ.x;
 $pDER_ODE_JAC_ADJ.x_1 := $pDER_ODE_JAC_ADJ.x_1 + 3.0 * $pDER_ODE_JAC_ADJ.x_2;
 $pDER_ODE_JAC_ADJ.v := $pDER_ODE_JAC_ADJ.v + $pDER_ODE_JAC_ADJ.x_1 * cos(v);
 $pDER_ODE_JAC_ADJ.x := $pDER_ODE_JAC_ADJ.x + $pDER_ODE_JAC_ADJ.v * x + $pDER_ODE_JAC_ADJ.v * x;
 

Equation mismatch: omc-diff says:
------------------------------------------------------------------------Line 42: Integer 2 != 1

== 1 out of 1 tests failed [simulation/modelica/NBackend/differentation/adjoint_jacobian5.mos_temp7755, time: 1]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="adjoint_jacobian3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_differentation" name="adjoint_jacobian1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_cpp" name="der_for_array.mos" time="20"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="superSample.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="subSuperSample1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="subSample.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="splitPartition.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="shiftSample.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="rationalConstructor1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="inferredConstructor2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="holdVar.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="backSample1.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_clocked" name="arraySample.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_bicoloring" name="arrowhead.mos" time="1"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + arrowhead                                                                         ... equation mismatch [time: 1]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/bicoloring/arrowhead.mos_temp2008/log-arrowhead.mos
true
&quot;&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;arrowhead_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1e-5, numberOfIntervals = 1, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;arrowhead&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-s=dassl -jacobian=bicoloredSymbolical -lv=LOG_JAC&apos;&quot;,
    messages = &quot;LOG_STDOUT        | warning | Jacobian not available, switching to internal numerical Jacobian.
LOG_JAC           | info    | Using Jacobian method: Internal numerical Jacobian.
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/bicoloring/arrowhead.mos_temp2008/equations-expected2026-08-25 16:10:15.818130353 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/bicoloring/arrowhead.mos_temp2008/equations-got2026-08-25 16:10:16.159130517 +0000
@@ -3,128 +3,12 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;arrowhead_res.mat&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 1e-5, numberOfIntervals = 1, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;arrowhead&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-s=dassl -jacobian=bicoloredSymbolical -lv=LOG_JAC&apos;&quot;,
-messages = &quot;LOG_JAC           | info    | Using Jacobian method: Bicolored (bidirectional) symbolical Jacobian.
+messages = &quot;LOG_STDOUT        | warning | Jacobian not available, switching to internal numerical Jacobian.
+LOG_JAC | info    | Using Jacobian method: Internal numerical Jacobian.
 LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=1e-08
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -99999999 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -99999999 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -99999999 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 2.98023e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 1.49012e-08 at (row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=7e-08
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -45833332.33333333 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -45833332.33333333 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -45833332.33333333 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 4.47035e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-|                 | |       | | Max relative difference: 4.47035e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=1.5e-07
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -18749999 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -18749999 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -18749999 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 2.98023e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 2.98023e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=3.1e-07
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -9374999 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -9374999 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -9374999 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 2.98023e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 1.49012e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=6.3e-07
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -4687499 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -4687499 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -4687499 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 4.47035e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 2.98023e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=1.27e-06
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -2343749 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -2343749 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -2343749 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 1.49011e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-|                 | |       | | Max relative difference: 1.49011e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=2.55e-06
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -1171874 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -1171874 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -1171874 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 4.47035e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 1.49011e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=5.11e-06
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -585936.5 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -585936.5 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -585936.5 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 1.49012e-08 at (row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;)
-|                 | |       | | Max relative difference: 1.49011e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-LOG_JAC           | info    | DASSL-Solver: analytical Jacobian pd (column-major) at time=1.023e-05
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=0:&apos;x[1]&apos;) = -292967.75 [flat=0]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=1]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=0:&apos;x[1]&apos;) = 0 [flat=2]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;) = 1 [flat=3]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=1:&apos;x[2]&apos;) = -292967.75 [flat=4]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=1:&apos;x[2]&apos;) = 0 [flat=5]
-|                 | |       | | J(row=0:&apos;x[1]&apos;, col=2:&apos;x[3]&apos;) = 1 [flat=6]
-|                 | |       | | J(row=1:&apos;x[2]&apos;, col=2:&apos;x[3]&apos;) = 0 [flat=7]
-|                 | |       | | J(row=2:&apos;x[3]&apos;, col=2:&apos;x[3]&apos;) = -292967.75 [flat=8]
-LOG_JAC           | info    | Jacobian verification: analytical vs. numerical
-|                 | |       | | Max absolute difference: 1.4901e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
-|                 | |       | | Max relative difference: 1.4901e-08 at (row=0:&apos;x[1]&apos;, col=1:&apos;x[2]&apos;)
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;J&apos; &apos;S&apos;
Line 8: Text differs:
expected: messages = &quot;LOG_JAC           | info    | Using Jacobian method: Bicolored (bidirectional) symbolical Jacobian.
got:      messages = &quot;LOG_STDOUT        | warning | Jacobian not available, switching to internal numerical Jacobian.

== 1 out of 1 tests failed [simulation/modelica/NBackend/bicoloring/arrowhead.mos_temp2008, time: 1]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="underdetermined_init.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="simpleNonlinearLoop.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="promotePreferStates.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="parameterSystem.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="minArr.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="helloWorld.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="evaluateFalse.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="emptyModel.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_basics" name="arrayReadElements.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="testVectorizedSolarSystem.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="subscripted_expression.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="simple_nested_for.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="simple_der_for.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="matrix_vector_product.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="for_list.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="for_exp.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="diagonal_slice_for.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="Resizable_HeatTransfer_equations.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="MultiDimensionalArrays3.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="MultiDimensionalArrays1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.Resizable.FiltersInSeries_Resizable.mos" time="5"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.Resizable.CascadedFirstOrder4_Resizable.mos" time="5"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.Resizable.CascadedFirstOrder2_Resizable.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ForLoops.CocurrentHeatExchanger.mos" time="5"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ErrorsIfArraysNotExpandedCorrected.FailedConsistencyCheckCorrected.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ErrorsIfArraysNotExpanded.MixedAlgebraicAndStatesArray.mos" time="5"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ComponentArrays.TransmissionLine.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos" time="7"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D      ... equation mismatch [time: 6]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/array_handling/BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos_temp6533/log-BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos
true
&quot;Notification: Automatically loaded package Modelica 4.0.0 due to uses annotation from BenchmarksForResizeableArrays.
Notification: Automatically loaded package Complex 4.0.0 due to uses annotation from Modelica.
Notification: Automatically loaded package ModelicaServices 4.0.0 due to uses annotation from Modelica.
&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 5.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Failed to build model: BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D&quot;
end SimulationResult;
&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: cannot build simulation module for `BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D`: CodegenWasmJit: SES_NONLINEAR unknown/residual count mismatch
&quot;
(false, {})

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/array_handling/BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos_temp6533/equations-expected2026-08-25 16:10:23.937134219 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/array_handling/BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos_temp6533/equations-got2026-08-25 16:10:29.975137062 +0000
@@ -4,13 +4,12 @@
 Notification: Automatically loaded package ModelicaServices 4.0.0 due to uses annotation from Modelica.
 &quot;
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D_res.mat&quot;,
+resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 5.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_SUCCESS       | info    | The simulation finished successfully.
-&quot;
+messages = &quot;Failed to build model: BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D&quot;
 end SimulationResult;
-&quot;&quot;
-(true, {})
+&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJit.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: cannot build simulation module for `BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D`: CodegenWasmJit: SES_NONLINEAR unknown/residual count mismatch
+&quot;
+(false, {})

Equation mismatch: omc-diff says:
Failed &apos;B&apos; &apos;&quot;&apos;
Line 9: Text differs:
expected: resultFile = &quot;BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass
got:      resultFile = &quot;&quot;,

== 1 out of 1 tests failed [simulation/modelica/NBackend/array_handling/BenchmarksForResizeableArrays.ArrayEquationsWithIndexReduction.SlidingMass3D.mos_temp6533, time: 7]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ArrayEquations.CascadedFirstOrder4.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_array_handling" name="BenchmarksForResizeableArrays.ArrayEquations.CascadedFirstOrder2.mos" time="5"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="ArrayAlias2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="Alias_test5.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="Alias_test3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="Alias_pre.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="AliasCyclic7.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="AliasCyclic5.mos" time="1"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="AliasCyclic3.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="AliasCyclic1.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_alias" name="Alias2.mos" time="0"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="Verification_Table.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="TimeTable.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="TestHysteresis.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="Table.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="PowerSystemStepLoad.mos" time="8"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4... equation mismatch [time: 8]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/PowerSystemStepLoad.mos_temp3407/log-PowerSystemStepLoad.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 200.0, numberOfIntervals = 4000, tolerance = 1e-7, method = &apos;dassl&apos;, fileNamePrefix = &apos;ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Failed to build model: ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4&quot;
end SimulationResult;
&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJitFunctions.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: cannot resolve `generator[$i1].T_s_b[{2, 3, 4, 5}]` to a simulation variable
&quot;
{}

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/PowerSystemStepLoad.mos_temp3407/equations-expected2026-08-25 16:10:28.888136552 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/PowerSystemStepLoad.mos_temp3407/equations-got2026-08-25 16:10:36.703140199 +0000
@@ -1,11 +1,10 @@
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4_res.mat&quot;,
+resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 200.0, numberOfIntervals = 4000, tolerance = 1e-7, method = &apos;dassl&apos;, fileNamePrefix = &apos;ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_SUCCESS       | info    | The simulation finished successfully.
-&quot;
+messages = &quot;Failed to build model: ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_2_M_4&quot;
 end SimulationResult;
-&quot;&quot;
-{&quot;Files Equal!&quot;}
+&quot;[openmodelica_codegen_wasm_jit/src/CodegenWasmJitFunctions.rs:0:0-0:0:writable] Error: Internal error CodegenWasmJit: cannot resolve `generator[$i1].T_s_b[{2, 3, 4, 5}]` to a simulation variable
+&quot;
+{}

Equation mismatch: omc-diff says:
Failed &apos;S&apos; &apos;&quot;&apos;
Line 4: Text differs:
expected: resultFile = &quot;ScalableTestSuite.Power.ConceptualPowerSystem.ScaledExperiments.PowerSystemStepLoad_N_
got:      resultFile = &quot;&quot;,

== 1 out of 1 tests failed [simulation/modelica/NBackend/ScalableTestsuite/PowerSystemStepLoad.mos_temp3407, time: 8]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="OneDHeatTransferTT_FD.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="OneDHeatTransferTI_FD.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="ManyEvents.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="HarmonicOscillatorNetwork.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="DistributionSystemModelicaIndividual.mos" time="14"></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="CocurrentHeatExchangerEquations.mos" time="8"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10... equation mismatch [time: 8]

==== Log /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/CocurrentHeatExchangerEquations.mos_temp4743/log-CocurrentHeatExchangerEquations.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 20.0, numberOfIntervals = 500, tolerance = 1e-8, method = &apos;dassl&apos;, fileNamePrefix = &apos;ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-s=\\&apos;ida\\&apos;&apos;&quot;,
    messages = &quot;Simulation execution failed for model: ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10
LOG_STDOUT        | warning | Internal Numerical Jacobians without coloring are currently not supported by IDA with KLU. Colored numerical Jacobian will be used.
LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_ERROR         | error   | wasm-jit simulation failed: CodegenWasmJit: -s=ida with the KLU linear solver needs the model&apos;s Jacobian sparsity pattern, which this model has none of (use -idaLS=dense)
&quot;
end SimulationResult;
&quot;&quot;
{}

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/CocurrentHeatExchangerEquations.mos_temp4743/equations-expected2026-08-25 16:10:33.922138906 +0000
+++ /tmp/omc-rtest-omtmpuser/simulation/modelica/NBackend/ScalableTestsuite/CocurrentHeatExchangerEquations.mos_temp4743/equations-got2026-08-25 16:10:41.631142476 +0000
@@ -1,11 +1,13 @@
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10_res.mat&quot;,
+resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 20.0, numberOfIntervals = 500, tolerance = 1e-8, method = &apos;dassl&apos;, fileNamePrefix = &apos;ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-s=\\&apos;ida\\&apos;&apos;&quot;,
-messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_SUCCESS       | info    | The simulation finished successfully.
+messages = &quot;Simulation execution failed for model: ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_10
+LOG_STDOUT | warning | Internal Numerical Jacobians without coloring are currently not supported by IDA with KLU. Colored numerical Jacobian will be used.
+LOG_SUCCESS | info    | The initialization finished successfully without homotopy method.
+LOG_ERROR | error   | wasm-jit simulation failed: CodegenWasmJit: -s=ida with the KLU linear solver needs the model&apos;s Jacobian sparsity pattern, which this model has none of (use -idaLS=dense)
 &quot;
 end SimulationResult;
 &quot;&quot;
-{&quot;Files Equal!&quot;}
+{}

Equation mismatch: omc-diff says:
Failed &apos;S&apos; &apos;&quot;&apos;
Line 4: Text differs:
expected: resultFile = &quot;ScalableTestSuite.Thermal.HeatExchanger.ScaledExperiments.CocurrentHeatExchangerEquations_N_
got:      resultFile = &quot;&quot;,

== 1 out of 1 tests failed [simulation/modelica/NBackend/ScalableTestsuite/CocurrentHeatExchangerEquations.mos_temp4743, time: 8]
</system-out></testcase>
<testcase classname="simulation_modelica_NBackend_ScalableTestsuite" name="BreakerNetwork.mos" time="14"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Utilities.TestInternal.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Tables.CombiTimeTable.Test1.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Tables.CombiTable1Ds.Test1.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.MultiBody.Joints.JointUPS.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Media.TestOnly.R134a_setState_phX.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Media.TestOnly.MixIdealGasAir.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Media.TestAllProperties.IncompleteMedia.ReferenceAir_dT.mos" time="10"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Media.TestAllProperties.ConstantPropertyLiquidWater.mos" time="6"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Math.TestMatrices.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Blocks.StrictLimiters.mos" time="8"></testcase>
<testcase classname="simulation_modelica_NBackend_ModelicaTest" name="ModelicaTest.Blocks.Exponentiation.mos" time="7"></testcase>
<testcase classname="simulation_modelica_NBackend_Buildings" name="Buildings.Fluid.Movers.Examples.SpeedControlled_y_pumpCurves.mos" time="23"></testcase>
<testcase classname="simulation_modelica_NBackend_Buildings" name="Buildings.Fluid.Boilers.Examples.BoilerPolynomial.mos" time="16"></testcase>
<testcase classname="simulation_modelica_NBackend_Buildings" name="Buildings.Applications.DataCenters.ChillerCooled.Controls.Validation.ConstantSpeedPumpStage.mos" time="14"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Utilities.Examples.readRealParameterModel.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Thermal.HeatTransfer.Examples.Motor.mos" time="12"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Thermal.FluidHeatFlow.Examples.TwoMass.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Thermal.FluidHeatFlow.Examples.PumpDropOut.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Thermal.FluidHeatFlow.Examples.ParallelPumpDropOut.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Thermal.FluidHeatFlow.Examples.OneMass.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.StateGraph.Examples.ShowExceptions.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.StateGraph.Examples.FirstExample_Variant3.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.StateGraph.Examples.FirstExample.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.StateGraph.Examples.ControlledTanks.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.WaterIF97.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.Water.WaterIF97_ph.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.Water.WaterIF97OnePhase_ph.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.Water.ConstantPropertyLiquidWater.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.LinearFluid.LinearColdWater.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.Incompressible.Essotherm650.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.IdealGases.SimpleNaturalGas.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.IdealGases.Air.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.Tests.MediaTestModels.Air.MoistAir.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.TestOnly.MixIdealGasAir.mos" time="11"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.TestOnly.IdealGasN2.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.SolveOneNonlinearEquation.Inverse_sine.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.SolveOneNonlinearEquation.Inverse_sh_T.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.SimpleLiquidWater.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.ReferenceAir.MoistAir1.mos" time="9"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.ReferenceAir.Inverse_sh_TX.mos" time="7"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.ReferenceAir.DryAir2.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.R134a.R134a2.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.MoistAir.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Media.Examples.IdealGasH2O.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.SignConvention.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.PreLoad.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.InitialConditions.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.Friction.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.Damper.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Translational.Examples.Accelerate.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.RollingWheel.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.LossyGearDemo2.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.HeatLosses.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.FirstGrounded.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.ElasticBearing.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.Rotational.Examples.Backlash.mos" time="3"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Systems.RobotR3.fullRobot.mos" time="21"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects.GyroscopicEffects.mos" time="15"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Rotational3DEffects.ActuatedDrive.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Loops.Fourbar_analytic.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Loops.Fourbar1.mos" time="37"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Loops.Engine1b_analytic.mos" time="13"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Loops.Engine1a.mos" time="11"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.ThreeSprings.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.SpringWithMass.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.SpringDamperSystem.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.RollingWheelSetDriving.mos" time="10"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.PointGravityWithPointMasses2.mos" time="19"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.PointGravity.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.Pendulum.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.InitSpringConstant.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.FreeBody.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Elementary.DoublePendulumInitTip.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Constraints.UniversalConstraint.mos" time="11"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Mechanics.MultiBody.Examples.Constraints.PrismaticConstraint.mos" time="9"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Magnetic.FundamentalWave.Examples.Components.SinglePhaseInductance.mos" time="2"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Magnetic.FundamentalWave.Examples.Components.EddyCurrentLosses.mos" time="4"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMR_Inverter.mos" time="5"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMPM_Inverter.mos" time="6"></testcase>
<testcase classname="simulation_libraries_msl32" name="Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_Generator.mos" time="8"></testcase>
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<testcase classname="openmodelica_instance-API" name="GetModelInstanceAnnotation15.mos" time="1"></testcase>
<testcase classname="openmodelica_instance-API" name="GetModelInstanceAnnotation13.mos" time="1"></testcase>
<testcase classname="openmodelica_instance-API" name="GetModelInstanceAnnotation11.mos" time="1"></testcase>
<testcase classname="openmodelica_instance-API" name="GetModelInstanceAnnotation1.mos" time="0"></testcase>
<testcase classname="openmodelica_fmi_ScheduledExecution_3.0" name="fmi3_scheduled.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_terminals_alias_nb.mos" time="2"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + fmi3_terminals_alias_nb.mos                                                       ... equation mismatch [time: 2]

==== Log /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_terminals_alias_nb.mos_temp1273/log-fmi3_terminals_alias_nb.mos
true
&quot;&quot;
true
&quot;&quot;
&quot;Inertia2.fmu&quot;
&quot;Notification: Building FMU for platform &apos;static&apos; (1/1).
Notification: Finished FMU for platform &apos;static&apos; (1/1).
&quot;
0
&quot;&quot;
&quot;&lt;?xml version=\&quot;1.0\&quot; encoding=\&quot;UTF-8\&quot;?&gt;
&lt;fmiTerminalsAndIcons fmiVersion=\&quot;3.0\&quot; xmlns:xsi=\&quot;http://www.w3.org/2001/XMLSchema-instance\&quot; xsi:noNamespaceSchemaLocation=\&quot;https://raw.githubusercontent.com/modelica/fmi-standard/v3.0.2/schema/fmi3TerminalsAndIcons.xsd\&quot;&gt;
  &lt;Terminals&gt;
    &lt;Terminal name=\&quot;flange_b\&quot; matchingRule=\&quot;plug\&quot; terminalKind=\&quot;Flange\&quot;&gt;
      &lt;TerminalMemberVariable variableName=\&quot;flange_b.tau\&quot; memberName=\&quot;tau\&quot; variableKind=\&quot;inflow\&quot;/&gt;
      &lt;TerminalMemberVariable variableName=\&quot;flange_b.phi\&quot; memberName=\&quot;phi\&quot; variableKind=\&quot;signal\&quot;/&gt;
    &lt;/Terminal&gt;
    &lt;Terminal name=\&quot;flange_a\&quot; matchingRule=\&quot;plug\&quot; terminalKind=\&quot;Flange\&quot;&gt;
      &lt;TerminalMemberVariable variableName=\&quot;flange_a.tau\&quot; memberName=\&quot;tau\&quot; variableKind=\&quot;inflow\&quot;/&gt;
      &lt;TerminalMemberVariable variableName=\&quot;flange_a.phi\&quot; memberName=\&quot;phi\&quot; variableKind=\&quot;signal\&quot;/&gt;
    &lt;/Terminal&gt;
  &lt;/Terminals&gt;
&lt;/fmiTerminalsAndIcons&gt;&quot;
&quot;&quot;
causality=&quot;parameter&quot;
causality=&quot;parameter&quot;
flange_a.tau flange_b.tau 
&quot;&quot;
&lt;Alias name=&quot;flange_a.phi&quot;
&lt;Alias name=&quot;flange_b.phi&quot;
0
&quot;&quot;
flange_a.tau ok
flange_a.phi ok
flange_b.tau ok
flange_b.phi ok

&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_terminals_alias_nb.mos_temp1273/equations-expected2026-08-25 16:13:21.143207680 +0000
+++ /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_terminals_alias_nb.mos_temp1273/equations-got2026-08-25 16:13:23.201208425 +0000
@@ -20,13 +20,13 @@
 &lt;TerminalMemberVariable variableName=\&quot;flange_a.phi\&quot; memberName=\&quot;phi\&quot; variableKind=\&quot;signal\&quot;/&gt;
 &lt;/Terminal&gt;
 &lt;/Terminals&gt;
 &lt;/fmiTerminalsAndIcons&gt;&quot;
 &quot;&quot;
-flange_a.tau causality=&quot;parameter&quot;
-flange_b.tau causality=&quot;parameter&quot;
-
+causality=&quot;parameter&quot;
+causality=&quot;parameter&quot;
+flange_a.tau flange_b.tau 
 &quot;&quot;
 &lt;Alias name=&quot;flange_a.phi&quot;
 &lt;Alias name=&quot;flange_b.phi&quot;
 0
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;f&apos; &apos;c&apos;
Line 25: Text differs:
expected: flange_a.tau causality=&quot;parameter&quot;
got:      causality=&quot;parameter&quot;

== 1 out of 1 tests failed [openmodelica/fmi/ModelExchange/3.0/fmi3_terminals_alias_nb.mos_temp1273, time: 2]
</system-out></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_terminals.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_msl_adder4.mos" time="16"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_import_boolean.mos" time="2"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + fmi3_import_boolean                                                               ... equation mismatch [time: 2]

==== Log /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_import_boolean.mos_temp1298/log-fmi3_import_boolean.mos
true
&quot;&quot;
&quot;BooleanImportFMU.fmu&quot;
&quot;Notification: Building FMU for platform &apos;static&apos; (1/1).
Notification: Finished FMU for platform &apos;static&apos; (1/1).
&quot;
&quot;&quot;
&quot;Error: The FMU version is unknown. Unknown/Unsupported FMU version.
&quot;
false
&quot;Error: Failed to load file BooleanImportFMU_me_FMU.mo: file does not exist.
&quot;
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;BooleanImport&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;Failed to build model: BooleanImport&quot;
end SimulationResult;
&quot;[&lt;interactive&gt;:3:3-3:67:writable] Error: Class BooleanImportFMU_me_FMU not found in scope BooleanImport.
Error: Error occurred while flattening model BooleanImport
&quot;




Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_import_boolean.mos_temp1298/equations-expected2026-08-25 16:13:21.272207727 +0000
+++ /tmp/omc-rtest-omtmpuser/openmodelica/fmi/ModelExchange/3.0/fmi3_import_boolean.mos_temp1298/equations-got2026-08-25 16:13:23.648208586 +0000
@@ -2,24 +2,24 @@
 &quot;&quot;
 &quot;BooleanImportFMU.fmu&quot;
 &quot;Notification: Building FMU for platform &apos;static&apos; (1/1).
 Notification: Finished FMU for platform &apos;static&apos; (1/1).
 &quot;
-&quot;BooleanImportFMU_me_FMU.mo&quot;
-&quot;Warning: module = Attribute noNamespaceSchemaLocation=&apos;https://raw.githubusercontent.com/modelica/fmi-standard/main/schema/fmi3ModelDescription.xsd&apos; is ignored. Using standard fmiModelDescription.xsd., log level = WARNING: FMI3XML
-&quot;
-true
 &quot;&quot;
+&quot;Error: The FMU version is unknown. Unknown/Unsupported FMU version.
+&quot;
+false
+&quot;Error: Failed to load file BooleanImportFMU_me_FMU.mo: file does not exist.
+&quot;
 true
 &quot;&quot;
 record SimulationResult
-resultFile = &quot;BooleanImport_res.mat&quot;,
+resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;BooleanImport&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
-messages = &quot;module = FMI3XML, log level = WARNING: Attribute noNamespaceSchemaLocation=&apos;https://raw.githubusercontent.com/modelica/fmi-standard/main/schema/fmi3ModelDescription.xsd&apos; is ignored. Using standard fmiModelDescription.xsd.
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
-LOG_SUCCESS       | info    | The simulation finished successfully.
-&quot;
+messages = &quot;Failed to build model: BooleanImport&quot;
 end SimulationResult;
-&quot;&quot;
-0.0
-0.0
-1.0
+&quot;[&lt;interactive&gt;:3:3-3:67:writable] Error: Class BooleanImportFMU_me_FMU not found in scope BooleanImport.
+Error: Error occurred while flattening model BooleanImport
+&quot;
+
+
+

Equation mismatch: omc-diff says:
Failed &apos;B&apos; &apos;&quot;&apos;
Line 7: Text differs:
expected: &quot;BooleanImportFMU_me_FMU.mo&quot;
got:      &quot;&quot;

== 1 out of 1 tests failed [openmodelica/fmi/ModelExchange/3.0/fmi3_import_boolean.mos_temp1298, time: 2]
</system-out></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_fmustate.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_clocks.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_attributes_01.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_3.0" name="fmi3_arrays_approx.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="ticket6262.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="testModelicaStandardTables.mos" time="9"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="testDgesvSources.mos" time="10"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="testBug5673.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="testBug3763.mos" time="47"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="testBug2765.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="issue10978.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_export_derivative_annotation_unused.mos" time="1"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_export_derivative_annotation.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_24.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_22.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_20.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_18.mos" time="4"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_16.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_13.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_11.mos" time="4"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_09.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_07.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_05.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_03.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi_attributes_01.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="fmi2_string_variability.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="dae_fmu_export_error.mos" time="1"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="TestSourceCodeFMU.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="QuotedIdentifierExport.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="Modelica_Mechanics_MultiBody_Examples_Elementary_DoublePendulum.mos" time="25"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="ModelWithAlias.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="Issue13905_pool_expand.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="HelloFMIWorldEvent.mos" time="2"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="FMUResourceTest.mos" time="7"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_2.0" name="EnumerationTest.mos" time="3"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_1.0" name="FMI1MEfmpy.mos" time="43"></testcase>
<testcase classname="openmodelica_fmi_ModelExchange_1.0" name="FMI1MEInputOutput.mos" time="9"></testcase>
<testcase classname="openmodelica_fmi_CoSimulationStandAlone" name="fmi1_cs_import_parameters.mos" time="0"></testcase>
<testcase classname="openmodelica_fmi_CoSimulation_3.0" name="fmi3_cs_01.mos" time="4"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + fmi3_cs_01.mos                                                                    ... equation mismatch [time: 4]

==== Log /tmp/omc-rtest-omtmpuser/openmodelica/fmi/CoSimulation/3.0/fmi3_cs_01.mos_temp7264/log-fmi3_cs_01.mos
true
&quot;&quot;
true
&quot;&quot;
&quot;fmi3_cs_01.fmu&quot;
&quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Notification: Building FMU for platform &apos;static&apos; (1/1).
Notification: Finished FMU for platform &apos;static&apos; (1/1).
&quot;
0
&quot;&quot;
0
&quot;&quot;
&quot;  &lt;CoSimulation
    modelIdentifier=\&quot;fmi3_cs_01\&quot;
    needsExecutionTool=\&quot;false\&quot;
    canHandleVariableCommunicationStepSize=\&quot;true\&quot;
    canBeInstantiatedOnlyOncePerProcess=\&quot;false\&quot;
    maxOutputDerivativeOrder=\&quot;0\&quot;
    providesIntermediateUpdate=\&quot;false\&quot;
    mightReturnEarlyFromDoStep=\&quot;true\&quot;
    canReturnEarlyAfterIntermediateUpdate=\&quot;false\&quot;
    hasEventMode=\&quot;true\&quot;
    providesEvaluateDiscreteStates=\&quot;false\&quot;
    recommendedIntermediateInputSmoothness=\&quot;0\&quot;
    canGetAndSetFMUState=\&quot;true\&quot;
    canSerializeFMUState=\&quot;true\&quot;
    providesDirectionalDerivatives=\&quot;false\&quot;
    providesAdjointDerivatives=\&quot;false\&quot;
    providesPerElementDependencies=\&quot;false\&quot;/&gt;
&quot;
&quot;&quot;
record SimulationResult
    resultFile = &quot;fmi3_cs_01_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 1.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;fmi3_cs_01&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
&quot;
0
&quot;&quot;
(true, {})
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/openmodelica/fmi/CoSimulation/3.0/fmi3_cs_01.mos_temp7264/equations-expected2026-08-25 16:13:33.823212233 +0000
+++ /tmp/omc-rtest-omtmpuser/openmodelica/fmi/CoSimulation/3.0/fmi3_cs_01.mos_temp7264/equations-got2026-08-25 16:13:37.276213459 +0000
@@ -14,11 +14,11 @@
 &quot;  &lt;CoSimulation
 modelIdentifier=\&quot;fmi3_cs_01\&quot;
 needsExecutionTool=\&quot;false\&quot;
 canHandleVariableCommunicationStepSize=\&quot;true\&quot;
 canBeInstantiatedOnlyOncePerProcess=\&quot;false\&quot;
-maxOutputDerivativeOrder=\&quot;1\&quot;
+maxOutputDerivativeOrder=\&quot;0\&quot;
 providesIntermediateUpdate=\&quot;false\&quot;
 mightReturnEarlyFromDoStep=\&quot;true\&quot;
 canReturnEarlyAfterIntermediateUpdate=\&quot;false\&quot;
 hasEventMode=\&quot;true\&quot;
 providesEvaluateDiscreteStates=\&quot;false\&quot;

Equation mismatch: omc-diff says:
Line 19: Integer 1 != 0

== 1 out of 1 tests failed [openmodelica/fmi/CoSimulation/3.0/fmi3_cs_01.mos_temp7264, time: 4]
</system-out></testcase>
<testcase classname="openmodelica_fmi_CoSimulation_2.0" name="issue10523.mos" time="7"></testcase>
<testcase classname="openmodelica_fmi_CoSimulation_2.0" name="Issue14456.mos" time="4"></testcase>
<testcase classname="openmodelica_fmi_CoSimulation_2.0" name="ExportCvodeFmu_static.mos" time="12"></testcase>
<testcase classname="openmodelica_fmi_CoSimulation_2.0" name="ExportCvodeFmu_cmake.mos" time="12"></testcase>
<testcase classname="openmodelica_diff" name="ticket5360.mos" time="1"></testcase>
<testcase classname="openmodelica_diff" name="ticket4368.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="ticket3642.mos" time="1"></testcase>
<testcase classname="openmodelica_diff" name="removeComponentModifiers.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="UTF8.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="TrueHoldWithReset.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="TestDiffListAPI.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="SubExpParenthesis.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="RLC.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="PartialCoolingCapacity.mos" time="1"></testcase>
<testcase classname="openmodelica_diff" name="MoveComponent.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="MoistAirUnsaturated.mos" time="1"></testcase>
<testcase classname="openmodelica_diff" name="LimPID.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="ClosedDoors.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="Air.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="AddComponent2.mos" time="0"></testcase>
<testcase classname="openmodelica_diff" name="AddComment.mos" time="0"></testcase>
<testcase classname="openmodelica_debugDumps" name="tearingdump.mos" time="0"></testcase>
<testcase classname="openmodelica_debugDumps" name="paramdlowdump.mos" time="0"></testcase>
<testcase classname="openmodelica_debugDumps" name="optSimpleSolveDAEdump.mos" time="0"></testcase>
<testcase classname="openmodelica_debugDumps" name="lateInline.mos" time="0"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="stateEstimation2.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="assert.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Splitter7.mos" time="7"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Splitter4.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Splitter2.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Pipe9.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Pipe7.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Pipe11.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_Pipe1.mos" time="6"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_FourFlows8.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_FourFlows10.mos" time="7"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="TSP_FourFlows.mos" time="5"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Splitter5g.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Splitter5e.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Splitter5c.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Splitter3.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Splitter1.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Pipe6.mos" time="3"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Pipe4.mos" time="3"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="Pipe2.mos" time="4"></testcase>
<testcase classname="openmodelica_dataReconciliation" name="FourFlows.mos" time="5"></testcase>
<testcase classname="openmodelica_cruntime_xmlFiles" name="testxmlInitForChangeableparameter.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_xmlFiles" name="isChangeableTuple.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_simoptions" name="testSinglePrecision.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_simoptions" name="testOutputIntervalIDAstepsnoEquidistant.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_simoptions" name="testOutputIntervalDASSLstepsnoEquidistant.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_simoptions" name="testOutputIntervalDASSL.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_simoptions" name="nlssMaxDensity.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_sensitivities" name="testVanDerPol.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_sensitivities" name="testLotkaVoltera.mos" time="0"></testcase>
<testcase classname="openmodelica_cruntime_optimization_benchmark" name="runDrumBoiler.mos" time="39"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testDerInput.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testAlgLoop8.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testAlgLoop6.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testAlgLoop4.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testAlgLoop2.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="testAlgLoop10.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="staticOP.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="pendel.mos" time="5"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="noOCP.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="issue7969.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="VDP.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="TT.mos" time="4"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="TFC8.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="TFC6.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="TFC4.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="TFC2.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="SC.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="NP.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="LV.mos" time="4"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="LRB.mos" time="3"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="DMwarmCsv.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="DM.mos" time="6"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="CM.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="BRscale.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="BReqcon.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="BRcon4.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="BRcon2.mos" time="2"></testcase>
<testcase classname="openmodelica_cruntime_optimization_basic" name="BR.mos" time="1"></testcase>
<testcase classname="openmodelica_cruntime_debugDumps" name="testDumpSaveInitialGuess_system.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + testDumpSaveInitialGuess_system.mos                                               ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpSaveInitialGuess_system.mos_temp4766/log-testDumpSaveInitialGuess_system.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;SaveInitialGuess&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-nls=experimental-kinsol -saveInitialGuess_system=savedInitialGuess.mat,4&apos;&quot;,
    messages = &quot;Simulation execution failed for model: SaveInitialGuess
LOG_ERROR         | error   | wasm-jit simulation failed: unrecognized value `experimental-kinsol` for -nls (accepted: hybrid, kinsol, newton, mixed, homotopy)
&quot;
end SimulationResult;
&quot;&quot;
fail()
&quot;Error: Failed to open simulation result savedInitialGuess.mat: No such file or directory (os error 2)
Error: Error reading simulation result.
&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpSaveInitialGuess_system.mos_temp4766/equations-expected2026-08-25 16:13:56.246220086 +0000
+++ /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpSaveInitialGuess_system.mos_temp4766/equations-got2026-08-25 16:13:56.582220201 +0000
@@ -2,15 +2,13 @@
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;SaveInitialGuess&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-nls=experimental-kinsol -saveInitialGuess_system=savedInitialGuess.mat,4&apos;&quot;,
 messages = &quot;Simulation execution failed for model: SaveInitialGuess
-LOG_STDOUT        | info    | Trying to write write initial guess for NLS system with index 4 to file savedInitialGuess.mat.
-LOG_ASSERT        | debug   | Success: Initial guess has been written to disk (path = savedInitialGuess.mat). The program will terminate now.
-LOG_ASSERT        | debug   | Solving non-linear system 4 failed at time=0.
-|                 | |       | For more information please use -lv LOG_NLS.
-LOG_ASSERT        | info    | simulation terminated by an assertion at initialization
+LOG_ERROR | error   | wasm-jit simulation failed: unrecognized value `experimental-kinsol` for -nls (accepted: hybrid, kinsol, newton, mixed, homotopy)
 &quot;
 end SimulationResult;
 &quot;&quot;
-{{1.0}, {-0.5}}
-&quot;&quot;
+fail()
+&quot;Error: Failed to open simulation result savedInitialGuess.mat: No such file or directory (os error 2)
+Error: Error reading simulation result.
+&quot;

Equation mismatch: omc-diff says:
Failed &apos;S&apos; &apos;E&apos;
Line 7: Text differs:
expected: LOG_STDOUT        | info    | Trying to write write initial guess for NLS system with index 
got:      LOG_ERROR | error   | wasm

== 1 out of 1 tests failed [openmodelica/cruntime/debugDumps/testDumpSaveInitialGuess_system.mos_temp4766, time: 0]
</system-out></testcase>
<testcase classname="openmodelica_cruntime_debugDumps" name="testDumpDerivativeTest.mos" time="0"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + testDumpDerivativeTest.mos                                                        ... equation mismatch [time: 0]

==== Log /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpDerivativeTest.mos_temp4846/log-testDumpDerivativeTest.mos
true
&quot;&quot;
record SimulationResult
    resultFile = &quot;derDebugTest_res.mat&quot;,
    simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;derDebugTest&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_NLS_DERIVATIVE_TEST -nls=kinsol&apos;&quot;,
    messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
LOG_SUCCESS       | info    | The simulation finished successfully.
&quot;
end SimulationResult;
&quot;&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpDerivativeTest.mos_temp4846/equations-expected2026-08-25 16:13:56.465220161 +0000
+++ /tmp/omc-rtest-omtmpuser/openmodelica/cruntime/debugDumps/testDumpDerivativeTest.mos_temp4846/equations-got2026-08-25 16:13:56.694220240 +0000
@@ -1,172 +1,10 @@
 true
 &quot;&quot;
 record SimulationResult
 resultFile = &quot;derDebugTest_res.mat&quot;,
 simulationOptions = &quot;startTime = 0.0, stopTime = 0.0, numberOfIntervals = 500, tolerance = 1e-6, method = &apos;dassl&apos;, fileNamePrefix = &apos;derDebugTest&apos;, options = &apos;&apos;, outputFormat = &apos;mat&apos;, variableFilter = &apos;.*&apos;, cflags = &apos;&apos;, simflags = &apos;-lv=LOG_NLS_DERIVATIVE_TEST -nls=kinsol&apos;&quot;,
-messages = &quot;LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | | Column / Variable: 2, Name: z
-|                 | |       | | | | Type         Col    Row    Symbolic         Numerical        RelError
-|                 | |       | | | | Numerical    2      1      +8.00000000e+00  +8.00093073e+00  +1.16327965e-04
-|                 | |       | | | | Numerical    2      2      -2.00000000e+00  -1.78885438e+00  +1.05572809e-01
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  2 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 1.056e-01
-|                 | warning | | | Derivative test failed (2 numerical, 0 structural errors)
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | | Column / Variable: 2, Name: z
-|                 | |       | | | | Type         Col    Row    Symbolic         Numerical        RelError
-|                 | |       | | | | Numerical    2      1      +8.00000000e+00  +8.00093073e+00  +1.16327965e-04
-|                 | |       | | | | Numerical    2      2      -2.00000000e+00  -1.78885438e+00  +1.05572809e-01
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  2 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 1.056e-01
-|                 | warning | | | Derivative test failed (2 numerical, 0 structural errors)
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | | Column / Variable: 2, Name: z
-|                 | |       | | | | Type         Col    Row    Symbolic         Numerical        RelError
-|                 | |       | | | | Numerical    2      2      +2.51978675e+01  +2.51248512e+01  +2.89771587e-03
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  1 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.898e-03
-|                 | warning | | | Derivative test failed (1 numerical, 0 structural errors)
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | | Column / Variable: 2, Name: z
-|                 | |       | | | | Type         Col    Row    Symbolic         Numerical        RelError
-|                 | |       | | | | Numerical    2      2      +1.70417465e+01  +1.70390601e+01  +1.57636595e-04
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  1 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 1.576e-04
-|                 | warning | | | Derivative test failed (1 numerical, 0 structural errors)
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 6.024e-06
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.088e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.265e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.503e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.711e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 8
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.713e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 16
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.711e-07
-LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=2.22045e-14, rtol=1.00000e-04, scaled = false, Caller: kinsol: Jacobian eval):
-|                 | |       | | Matrix Info
-|                 | |       | | | NLS index = 16
-|                 | |       | | | Columns   = 2
-|                 | |       | | | Rows      = 2
-|                 | |       | | | NNZ       = 4
-|                 | |       | | | Curr Time = 0.00000e+00
-|                 | |       | | Anomalies
-|                 | |       | | Summary
-|                 | |       | | | Numerical errors:  0 (value mismatch w.r.t. reference)
-|                 | |       | | | Structural errors: 0 (non-zero not in sparsity pattern)
-|                 | |       | | | Max relative error: 2.711e-07
-LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
+messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.
 LOG_SUCCESS       | info    | The simulation finished successfully.
 &quot;
 end SimulationResult;
 &quot;&quot;

Equation mismatch: omc-diff says:
Failed &apos;N&apos; &apos;S&apos;
Line 6: Text differs:
expected: messages = &quot;LOG_NLS_DERIVATIVE_TEST | info    | kinsol: Derivative test (atol=
got:      messages = &quot;LOG_SUCCESS       | info    | The initialization finished successfully without homotopy method.

== 1 out of 1 tests failed [openmodelica/cruntime/debugDumps/testDumpDerivativeTest.mos_temp4846, time: 0]
</system-out></testcase>
<testcase classname="openmodelica_conversion" name="ConvertPackage2.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertModifiers4.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertModifiers2.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertElement2.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClassVectorize3.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClassVectorize1.mos" time="1"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClass7.mos" time="1"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClass5.mos" time="1"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClass3.mos" time="0"></testcase>
<testcase classname="openmodelica_conversion" name="ConvertClass1.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Tuple1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="String1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="SimpleCoolingCycle.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="ScalarizedWithRecords1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Scalarize8.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Scalarize6.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Scalarize4.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Scalarize2.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="SD.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Record5.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Record3.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Record1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="PartiallyScalarizedWithRecords1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="NonScalarizedWithRecords1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Inline6.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Inline4.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Inline2.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="InStreamNominalThreshold.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="If1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias9.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias7.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias5.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias3.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias13.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias11.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="FlowAlias1.mos" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="EnumArraySubscript1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="EmptyArray1.mo" time="0"></testcase>
<testcase classname="openmodelica_basemodelica" name="Comments.mo" time="1"></testcase>
<testcase classname="openmodelica_basemodelica" name="ArrayBinding1.mo" time="1"></testcase>
<testcase classname="omsimulator" name="testSynchronousFMU_02.mos" time="9"></testcase>
<testcase classname="omsimulator" name="testLoopsOverFMUs.mos" time="9"></testcase>
<testcase classname="omsimulator" name="terminateTest.mos" time="2"><failure type="Failure">Output mismatch (see stdout for details)</failure><system-out> + terminateTest                                                                     ... equation mismatch [time: 2]

==== Log /tmp/omc-rtest-omtmpuser/omsimulator/terminateTest.mos_temp3724/log-terminateTest.mos
true
&quot;&quot;
&quot;terminateTest.fmu&quot;
&quot;Warning: The initial conditions are not fully specified. For more information set -d=initialization. In OMEdit Tools-&gt;Options-&gt;Simulation-&gt;Show additional information from the initialization process, in OMNotebook call setCommandLineOptions(\&quot;-d=initialization\&quot;).
Notification: Building FMU for platform &apos;static&apos; (1/1).
Notification: Finished FMU for platform &apos;static&apos; (1/1).
&quot;
0
&quot;info:    *** FMU Simulation Info ***
          - model:     terminateTest (model exchange)
          - startTime: 0.000000
          - stopTime:  1.500000
          - tolerance: 0.000001
          - stepSize:  0.002000
info:    maximum step size for &apos;terminateTest.root&apos;: 0.002000
info:    Result file: terminateTest_res.mat (bufferSize=1)
[&lt;interactive&gt;:6:7-6:31:writable]
LOG_STDOUT        | info    | Simulation call terminate() at time 1.200000
|                 | |       | Message : Terminated.
info:    Simulation terminated by FMU terminateTest.root.terminateTest at time 1.200000
info:    Final Statistics for &apos;terminateTest.root&apos;:
         NumSteps = 0 NumRhsEvals  = 0 NumLinSolvSetups = 0
         NumNonlinSolvIters = 0 NumNonlinSolvConvFails = 0 NumErrTestFails = 0
&quot;

Equation mismatch: diff says:
--- /tmp/omc-rtest-omtmpuser/omsimulator/terminateTest.mos_temp3724/equations-expected2026-08-25 16:13:57.964220677 +0000
+++ /tmp/omc-rtest-omtmpuser/omsimulator/terminateTest.mos_temp3724/equations-got2026-08-25 16:13:59.724221281 +0000
@@ -12,11 +12,13 @@
 - stopTime:  1.500000
 - tolerance: 0.000001
 - stepSize:  0.002000
 info:    maximum step size for &apos;terminateTest.root&apos;: 0.002000
 info:    Result file: terminateTest_res.mat (bufferSize=1)
-[&lt;interactive&gt;:6:7-6:31:writable]Modelica Terminate: Terminated.!
+[&lt;interactive&gt;:6:7-6:31:writable]
+LOG_STDOUT | info    | Simulation call terminate() at time 1.200000
+| | |       | Message : Terminated.
 info:    Simulation terminated by FMU terminateTest.root.terminateTest at time 1.200000
 info:    Final Statistics for &apos;terminateTest.root&apos;:
 NumSteps = 0 NumRhsEvals  = 0 NumLinSolvSetups = 0
 NumNonlinSolvIters = 0 NumNonlinSolvConvFails = 0 NumErrTestFails = 0
 &quot;

Equation mismatch: omc-diff says:
Line 17: Text differs:
expected: :writable]Modelica Terminate: Terminated.!
got:      :writable]

== 1 out of 1 tests failed [omsimulator/terminateTest.mos_temp3724, time: 2]
</system-out></testcase>
<testcase classname="omsimulator" name="setStartTime.mos" time="8"></testcase>
<testcase classname="omsimulator" name="reset.mos" time="2"></testcase>
<testcase classname="omsimulator" name="outputState.mos" time="3"></testcase>
<testcase classname="omsimulator" name="initialization2_omc.mos" time="2"></testcase>
<testcase classname="omsimulator" name="initialization.mos" time="2"></testcase>
<testcase classname="omsimulator" name="fmiProtected.mos" time="2"></testcase>
<testcase classname="omsimulator" name="experimentAnnotation.mos" time="3"></testcase>
<testcase classname="omsimulator" name="enumeration2.mos" time="4"></testcase>
<testcase classname="omsimulator" name="cmakeFMU.mos" time="5"></testcase>
<testcase classname="omsimulator" name="Issue_FMU_update_vars.mos" time="3"></testcase>
<testcase classname="omsimulator" name="DualMassOscillator_cs.mos" time="8"></testcase>
<testcase classname="flattening_modelica_types" name="modelica_1_1_Type9.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="TypeSimple.mo" time="1"></testcase>
<testcase classname="flattening_modelica_types" name="TypeDeclArray.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="TypeClass1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="Type9.mo" time="1"></testcase>
<testcase classname="flattening_modelica_types" name="Type7.mo" time="1"></testcase>
<testcase classname="flattening_modelica_types" name="Type5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="Type3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="Type10.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="RefinedSimpleCircuitValid2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="RefinedSimpleCircuitInvalid.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="Real2Integer2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_types" name="PredefinedTypes.mo" time="0"></testcase>
<testcase classname="flattening_modelica_synchronous" name="WhenClocks.mo" time="0"></testcase>
<testcase classname="flattening_modelica_synchronous" name="SynchronousFeatures.SpeedControl.mos" time="0"></testcase>
<testcase classname="flattening_modelica_synchronous" name="SynchronousFeatures.ControlledMass.mos" time="1"></testcase>
<testcase classname="flattening_modelica_synchronous" name="SubSampleTest.mo" time="0"></testcase>
<testcase classname="flattening_modelica_synchronous" name="SamplingWithClocks.mos" time="1"></testcase>
<testcase classname="flattening_modelica_synchronous" name="PreviousTest.mo" time="1"></testcase>
<testcase classname="flattening_modelica_synchronous" name="IntervalTest.mo" time="0"></testcase>
<testcase classname="flattening_modelica_synchronous" name="ClockTest.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="StreamUnbalancedConnector.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="InStreamUnconnected.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="InStreamTwoInside.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="InStreamNominalThreshold.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="InStreamInsideOutside.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="ActualStreamMinMax.mo" time="0"></testcase>
<testcase classname="flattening_modelica_streams" name="ActualStream.mo" time="0"></testcase>
<testcase classname="flattening_modelica_statemachines" name="TicksInStateTest.mo" time="0"></testcase>
<testcase classname="flattening_modelica_statemachines" name="ConferenceTut1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="ProtectedStructural.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="PartialLookup1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup9.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup7.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup5.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup11.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="Lookup1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="InnerOuterSystem.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="InnerOuterArray2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="InnerOuter2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="InnerEnumeration.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scoping" name="DependsMutual.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="usertype5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="usertype3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="usertype1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="sts.mos" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="redeclare7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="redeclare5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="redeclare3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="redeclare13.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="redeclare11.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="mod9.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="mod6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="mod4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="mod12.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="mod10.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="loop3.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="loop1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="lookup3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="lookup1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="inst7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="inst4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="inst2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ih2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="func2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="eq8.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="eq6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="eq4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="eq2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="eq1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="enum7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="enum4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="enum2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="dim8.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="dim19.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="dim16.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="dim1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const17.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const15.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const13.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const11.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="const1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="conn9.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ceval5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ceval3.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ceval1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="bindings4.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="arrfunc.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenVariableMismatch3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenVariableMismatch1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenVariability1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenNested1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenInitial3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenInitial1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenIllegalContext4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenIllegalContext2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenCondition5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenCondition3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenCondition1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenClockedStatement1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="WhenClockedElse1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="When8.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="When6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="When4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="When2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Visibility4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Visibility2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="VectorizeBindings6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="VectorizeBindings4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="VectorizeBindings2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="VectorTest.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="UnboundParameter6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="UnboundParameter4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="UnboundParameter2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypenameInvalid3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypenameInvalid1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypeExtends3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypeExtends1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypeDim4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TypeDim2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TupleOperation5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TupleOperation3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TupleOperation1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TupleInvalid3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TupleInvalid1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TopLevelInputs1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Time2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Ticket5821.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TestSampleNoClock.mos" time="2"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="TerminateInvalid1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptedExp4.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptedExp2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptWrongType2.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptTypename1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptReduction1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptEnum1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptCevalSlice2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SubscriptCevalIndexRange1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Subscript7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Subscript5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Subscript3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Subscript1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="StateSelectVariability1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="StateSelect2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SlicedCref5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SlicedCref3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SlicedCref1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SizeInvalidType2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SizeInvalidIndex4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SizeInvalidIndex2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="SizeInvalidArgs2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Size7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Size5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Size3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Size1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Return1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReinitInvalid7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReinitInvalid5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReinitInvalid3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReinitInvalid1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="Reinit2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReductionInvalidTypeSum.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="ReductionInvalidTypeMin.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareNonReplaceable1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod8.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod4.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod2.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod11.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareMod1.mo" time="1"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareInvalidConnectorType1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareEnum6.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareEnum4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareEnum2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementMissing2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementCondition3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementCondition1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementComp4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementComp2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareElementClass2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareDim2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareConnectorType2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareComponentClass.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RedeclareClass2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecursiveInst3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecursiveInst1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecursiveExtends3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecursiveExtends1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordUnknownDim1.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordOrder2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordExtends2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordConstructor4.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordConstructor2.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding9.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding7.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding5.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding3.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding18.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding16.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding14.mo" time="0"></testcase>
<testcase classname="flattening_modelica_scodeinst" name="RecordBinding12.mo" time="0"></testcase>
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