Linux GNU 11.4.0 Code Coverage Report


Directory: ./
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Functions: -% 0 / 1 / 1
Branches: 100.0% 6 / 0 / 6

OMCompiler/Compiler/FrontEnd/ValuesMake.mo
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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 ValuesMake
37 " file: ValuesMake.mo
38 package: ValuesMake
39 description: Evaluated expression values
40
41
42 The package Values contains utility functions for handling evaluated
43 expression values."
44
45 public import Absyn;
46 public import DAE;
47 public import Values;
48
49 protected
50 import List;
51
52 public function makeZero "Returns a zero value based on a DAE.Type"
53 input DAE.Type ty;
54 output Values.Value zero;
55 algorithm
56 zero := match ty
57 case DAE.T_REAL() then Values.REAL(0.0);
58 case DAE.T_INTEGER() then Values.INTEGER(0);
59 end match;
60 end makeZero;
61
62 public function makeBoolean
63 input Boolean b;
64 output Values.Value v;
65 algorithm
66
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234 v := Values.BOOL(b);
67 end makeBoolean;
68
69 public function makeReal "Creates a real value "
70 input Real r;
71 output Values.Value v;
72 algorithm
73 15121 v := Values.REAL(r);
74 end makeReal;
75
76 public function makeInteger "Creates an integer value "
77 input Integer i;
78 output Values.Value v;
79 algorithm
80 15650 v := Values.INTEGER(i);
81 end makeInteger;
82
83 public function makeString "Creates a string value "
84 input String s;
85 output Values.Value v;
86 algorithm
87 2050 v := Values.STRING(s);
88 end makeString;
89
90 public function makeTuple "Construct a tuple of a list of Values."
91 input list<Values.Value> inValueLst;
92 output Values.Value outValue;
93 algorithm
94 2 outValue := Values.TUPLE(inValueLst);
95 end makeTuple;
96
97 public function makeList "Construct a list from a list of Values."
98 input list<Values.Value> inValueLst;
99 output Values.Value outValue;
100 algorithm
101 ✗ outValue := Values.LIST(inValueLst);
102 end makeList;
103
104 public function makeArray "
105 Construct an array of a list of Values.
106 "
107 input list<Values.Value> inValueLst;
108 output Values.Value outValue;
109 algorithm
110 outValue:=
111 match inValueLst
112 local
113 Integer i1;
114 list<Integer> il;
115 list<Values.Value> vlst;
116 case vlst as (Values.ARRAY(dimLst = il)::_)
117 algorithm
118 865 i1 := listLength(vlst);
119 865 then Values.ARRAY(vlst,i1::il);
120 case vlst
121 algorithm
122 46444 i1 := listLength(vlst);
123 46444 then Values.ARRAY(vlst,{i1});
124 end match;
125 end makeArray;
126
127 function makeEmptyArray
128 output Values.Value outValue = Values.Value.ARRAY({}, {0});
129 end makeEmptyArray;
130
131 public function makeStringArray
132 "Creates a Values.ARRAY from a list of Strings."
133 input list<String> inReals;
134 output Values.Value outArray;
135 algorithm
136 17 outArray := makeArray(List.map(inReals, makeString));
137 end makeStringArray;
138
139 public function makeIntArray
140 "Creates a Value.ARRAY from a list of integers."
141 input list<Integer> inInts;
142 output Values.Value outArray;
143 algorithm
144 4 outArray := makeArray(List.map(inInts, makeInteger));
145 end makeIntArray;
146
147 public function makeRealArray
148 "Creates a Values.ARRAY from a list of reals."
149 input list<Real> inReals;
150 output Values.Value outArray;
151 algorithm
152 24 outArray := makeArray(List.map(inReals, makeReal));
153 end makeRealArray;
154
155 public function makeRealMatrix
156 "Creates a matrix (ARRAY of ARRAY) from a list of list of reals."
157 input list<list<Real>> inReals;
158 output Values.Value outArray;
159 algorithm
160 8 outArray := makeArray(List.map(inReals, makeRealArray));
161 end makeRealMatrix;
162
163 public function makeCodeTypeName
164 input Absyn.Path path;
165 output Values.Value val;
166 algorithm
167 186 val := Values.CODE(Absyn.C_TYPENAME(path));
168 end makeCodeTypeName;
169
170 public function makeCodeTypeNameStr
171 input String str;
172 output Values.Value val;
173 algorithm
174 273 val := Values.CODE(Absyn.C_TYPENAME(Absyn.IDENT(str)));
175 end makeCodeTypeNameStr;
176
177 public function makeCodeTypeNameArray
178 input list<Absyn.Path> paths;
179 output Values.Value val;
180 algorithm
181
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174 val := makeArray(list(makeCodeTypeName(p) for p in paths));
182 end makeCodeTypeNameArray;
183
184 annotation(__OpenModelica_Interface="frontend_dump");
185 end ValuesMake;
186