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OMCompiler/Compiler/NBackEnd/Modules/1_Main/NBDAEMode.mo
Line Branch Exec Source
1 /*
2 * This file is part of OpenModelica.
3 *
4 * Copyright (c) 1998-2026, Open Source Modelica Consortium (OSMC),
5 * c/o Linköpings universitet, Department of Computer and Information Science,
6 * SE-58183 Linköping, Sweden.
7 *
8 * All rights reserved.
9 *
10 * THIS PROGRAM IS PROVIDED UNDER THE TERMS OF AGPL VERSION 3 LICENSE OR
11 * THIS OSMC PUBLIC LICENSE (OSMC-PL) VERSION 1.8.
12 * ANY USE, REPRODUCTION OR DISTRIBUTION OF THIS PROGRAM CONSTITUTES
13 * RECIPIENT'S ACCEPTANCE OF THE OSMC PUBLIC LICENSE OR THE GNU AGPL
14 * VERSION 3, ACCORDING TO RECIPIENTS CHOICE.
15 *
16 * The OpenModelica software and the OSMC (Open Source Modelica Consortium)
17 * Public License (OSMC-PL) are obtained from OSMC, either from the above
18 * address, from the URLs:
19 * http://www.openmodelica.org or
20 * https://github.com/OpenModelica/ or
21 * http://www.ida.liu.se/projects/OpenModelica,
22 * and in the OpenModelica distribution.
23 *
24 * GNU AGPL version 3 is obtained from:
25 * https://www.gnu.org/licenses/licenses.html#GPL
26 *
27 * This program is distributed WITHOUT ANY WARRANTY; without
28 * even the implied warranty of MERCHANTABILITY or FITNESS
29 * FOR A PARTICULAR PURPOSE, EXCEPT AS EXPRESSLY SET FORTH
30 * IN THE BY RECIPIENT SELECTED SUBSIDIARY LICENSE CONDITIONS OF OSMC-PL.
31 *
32 * See the full OSMC Public License conditions for more details.
33 *
34 */
35
36 encapsulated package NBDAEMode
37 "file: NBDAEMode.mo
38 package: NBDAEMode
39 description: This file contains the functions which create the DAE-Mode data.
40 "
41
42 public
43 import Module = NBModule;
44
45 protected
46 // NF imports
47 import Variable = NFVariable;
48
49 // Backend imports
50 import BackendDAE = NBackendDAE;
51 import Causalize = NBCausalize;
52 import NBEquation.{Equation, EquationPointers, EqData, Iterator};
53 import Inline = NBInline;
54 import Jacobian = NBJacobian;
55 import Partition = NBPartition;
56 import StrongComponent = NBStrongComponent;
57 import Tearing = NBTearing;
58 import BVariable = NBVariable;
59 import NBVariable.{VariablePointer, VariablePointers, VarData};
60
61 public
62 function main extends Module.wrapper;
63 protected
64 Module.daeModeInterface func;
65 algorithm
66 try
67 1 func := getModule();
68 // for now just copy the dae
69 bdae := match bdae
70 local
71 list<Partition.Partition> ode;
72 EqData eqData;
73 VariablePointers variables;
74
75 case BackendDAE.MAIN(ode = ode, eqData = eqData as EqData.EQ_DATA_SIM(), varData = VarData.VAR_DATA_SIM(variables = variables))
76 algorithm
77
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2 bdae.dae := SOME(func(ode, variables, eqData.uniqueIndex));
78 then bdae;
79
80 else algorithm
81 ✗ Error.addMessage(Error.INTERNAL_ERROR,{getInstanceName() + " failed due to wrong BackendDAE record!"});
82 ✗ then fail();
83 end match;
84
85 // fake causalize system to fulfill pipeline requirements
86 1 bdae := Causalize.main(bdae, NBPartition.Kind.DAE);
87 else
88 ✗ Error.addMessage(Error.INTERNAL_ERROR, {getInstanceName() + " failed."});
89 end try;
90 end main;
91
92 function getModule
93 "Returns the module function that was chosen by the user."
94 output Module.daeModeInterface func;
95 protected
96 String flag = "default"; //Flags.getConfigString(Flags.DAE_MODE)
97 algorithm
98 func := match flag
99 case "default" then daeModeDefault;
100 /* ... New dae mode modules have to be added here */
101 else fail();
102 end match;
103 end getModule;
104
105 protected
106 function daeModeDefault extends Module.daeModeInterface;
107 protected
108 list<Partition.Partition> new_partitions = {};
109 algorithm
110
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2 for part in partitions loop
111 new_partitions := match part.association
112 local
113 Partition.Association association;
114 EquationPointers new_eqns;
115 VariablePointers new_vars;
116
117 case association as Partition.Association.CONTINUOUS() algorithm
118 // update association to continuous -> dae
119 1 association.kind := NBPartition.Kind.DAE;
120 1 part.association := association;
121
122 // get the new components
123 1 part.strongComponents := StrongComponent.sortDAEModeComponents(part.strongComponents, variables, uniqueIndex);
124
125 // get the new equations and variables
126 (new_eqns, new_vars) := match part.strongComponents
127 local
128 array<StrongComponent> new_c;
129 list<Pointer<Equation>> eqns;
130 list<Pointer<Variable>> vars;
131 UnorderedSet<Pointer<Equation>> new_eqns_set;
132 UnorderedSet<Pointer<Variable>> new_vars_set;
133
134 case SOME(new_c) algorithm
135 1 new_eqns_set := UnorderedSet.new(Equation.hash, Equation.equalName);
136 1 new_vars_set := UnorderedSet.new(BVariable.hash, BVariable.equalName);
137
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2 for comp in new_c loop
138 1 eqns := StrongComponent.getEquations(comp);
139 1 vars := StrongComponent.getVariables(comp);
140
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2 for eqn in eqns loop UnorderedSet.add(eqn, new_eqns_set); end for;
141
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2 for var in vars loop UnorderedSet.add(var, new_vars_set); end for;
142 end for;
143 1 then (EquationPointers.fromList(UnorderedSet.toList(new_eqns_set)), VariablePointers.fromList(UnorderedSet.toList(new_vars_set)));
144 ✗ else (part.equations, part.unknowns);
145 end match;
146
147 1 part.equations := new_eqns;
148 1 part.daeUnknowns := SOME(part.unknowns);
149 1 part.unknowns := new_vars;
150
151 // accumulate new partitions
152
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1 then if Partition.Partition.isEmpty(part) then new_partitions else part :: new_partitions;
153
154 else new_partitions;
155 end match;
156 end for;
157 1 partitions := listReverse(new_partitions);
158 end daeModeDefault;
159
160 annotation(__OpenModelica_Interface="nbackend");
161 end NBDAEMode;
162