OMCompiler/Compiler/FrontEnd/Expression.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 Expression | ||
| 37 | " file: Expression.mo | ||
| 38 | package: Expression | ||
| 39 | description: Expressions | ||
| 40 | |||
| 41 | |||
| 42 | This file contains the module `Expression\', which contains data types for | ||
| 43 | describing expressions, after they have been examined by the | ||
| 44 | static analyzer in the module `StaticExp\'. There are of course | ||
| 45 | great similarities with the expression types in the `Absyn\' | ||
| 46 | module, but there are also several important differences. | ||
| 47 | |||
| 48 | No overloading of operators occur, and subscripts have been | ||
| 49 | checked to see if they are slices. All expressions are also type | ||
| 50 | consistent, and all implicit type conversions in the AST are made | ||
| 51 | explicit here." | ||
| 52 | |||
| 53 | // public imports | ||
| 54 | public import Absyn; | ||
| 55 | public import AbsynUtil; | ||
| 56 | public import DAE; | ||
| 57 | |||
| 58 | protected | ||
| 59 | type ComponentRef = DAE.ComponentRef; | ||
| 60 | type Exp = DAE.Exp; | ||
| 61 | type Operator = DAE.Operator; | ||
| 62 | type Type = DAE.Type; | ||
| 63 | type Subscript = DAE.Subscript; | ||
| 64 | type Var = DAE.Var; | ||
| 65 | |||
| 66 | // protected imports | ||
| 67 | protected import Array; | ||
| 68 | protected import ClassInf; | ||
| 69 | protected import ComponentReference; | ||
| 70 | protected import ComponentReferenceBasics; | ||
| 71 | protected import Config; | ||
| 72 | protected import DAEUtil; | ||
| 73 | protected import Debug; | ||
| 74 | protected import DoubleEnded; | ||
| 75 | protected import Error; | ||
| 76 | protected import ExpressionDump; | ||
| 77 | protected import ExpressionBasics.printExpStr; | ||
| 78 | protected import ExpressionBasics; | ||
| 79 | protected import ExpressionSimplify; | ||
| 80 | protected import Dump; | ||
| 81 | protected import Flags; | ||
| 82 | protected import List; | ||
| 83 | protected import System; // stringReal | ||
| 84 | protected import Types; | ||
| 85 | protected import Util; | ||
| 86 | |||
| 87 | public constant Integer MAX_SUM_CHAIN = 32 | ||
| 88 | "Longer sums are balanced. Shorter ones keep the chain, whose association | ||
| 89 | fixes the summation rounding and is read by the tearing and alias | ||
| 90 | heuristics. NFSimplifyExp.MAX_CHAIN_TERMS is the same limit for MULTARY."; | ||
| 91 | |||
| 92 | /***************************************************/ | ||
| 93 | /* transform to other types */ | ||
| 94 | /***************************************************/ | ||
| 95 | |||
| 96 | public function intSubscript | ||
| 97 | "Converts an integer into an index subscript." | ||
| 98 | input Integer inInteger; | ||
| 99 | output DAE.Subscript outSubscript; | ||
| 100 | algorithm | ||
| 101 | 8129 | outSubscript := DAE.INDEX(DAE.ICONST(inInteger)); | |
| 102 | end intSubscript; | ||
| 103 | |||
| 104 | public function intSubscripts | ||
| 105 | "Converts a list of integers into index subscripts." | ||
| 106 | input list<Integer> inIntegers; | ||
| 107 | output list<DAE.Subscript> outSubscripts; | ||
| 108 | algorithm | ||
| 109 | ✗ | outSubscripts := List.map(inIntegers, intSubscript); | |
| 110 | end intSubscripts; | ||
| 111 | |||
| 112 | public function dimensionIsZero | ||
| 113 | input DAE.Dimension inDimension; | ||
| 114 | output Boolean outIsZero; | ||
| 115 | algorithm | ||
| 116 | 3867 | outIsZero := 0 == dimensionSize(inDimension); | |
| 117 | end dimensionIsZero; | ||
| 118 | |||
| 119 | public function unelabExp | ||
| 120 | "Transform an DAE.Exp into Absyn.Expression. | ||
| 121 | Note: This function currently only works for | ||
| 122 | constants and component references." | ||
| 123 | input DAE.Exp inExp; | ||
| 124 | output Absyn.Exp outExp; | ||
| 125 | algorithm | ||
| 126 | outExp := matchcontinue inExp | ||
| 127 | local | ||
| 128 | Integer i; | ||
| 129 | Real r; | ||
| 130 | String s; | ||
| 131 | Boolean b; | ||
| 132 | Absyn.ComponentRef cr_1; | ||
| 133 | ComponentRef cr; | ||
| 134 | list<Absyn.Exp> expl_1,aexpl; | ||
| 135 | list<DAE.Exp> expl; | ||
| 136 | DAE.Exp e1,e2,e3; | ||
| 137 | Operator op; | ||
| 138 | Absyn.Exp ae1,ae2,ae3; | ||
| 139 | Absyn.Operator aop; | ||
| 140 | list<list<DAE.Exp>> mexpl2; | ||
| 141 | list<list<Absyn.Exp>> amexpl; | ||
| 142 | Absyn.ComponentRef acref; | ||
| 143 | Absyn.Path path; | ||
| 144 | Absyn.CodeNode code; | ||
| 145 | DAE.ReductionIterators riters; | ||
| 146 | Absyn.ForIterators aiters; | ||
| 147 | DAE.Type ty; | ||
| 148 | DAE.Dimensions dims; | ||
| 149 | Absyn.ReductionIterType iterType; | ||
| 150 | |||
| 151 | 32086 | case DAE.ICONST(integer = i) then Absyn.INTEGER(i); | |
| 152 | case DAE.RCONST(real = r) | ||
| 153 | algorithm | ||
| 154 | 69666 | s := realString(r); | |
| 155 | 69666 | then Absyn.REAL(s); | |
| 156 | 16209 | case DAE.SCONST(string = s) then Absyn.STRING(s); | |
| 157 |
2/2✓ Branch 0 taken 17731 times.
✓ Branch 1 taken 9019 times.
|
44481 | case DAE.BCONST(bool = b) then Absyn.BOOL(b); |
| 158 | case DAE.ENUM_LITERAL(name = path) | ||
| 159 | algorithm | ||
| 160 | 490 | cr_1 := AbsynUtil.pathToCref(path); | |
| 161 | 490 | then Absyn.CREF(cr_1); | |
| 162 | |||
| 163 | case DAE.CREF(componentRef = cr) | ||
| 164 | algorithm | ||
| 165 | ✗ | cr_1 := ComponentReference.unelabCref(cr); | |
| 166 | ✗ | then | |
| 167 | Absyn.CREF(cr_1); | ||
| 168 | |||
| 169 | case DAE.BINARY(e1,op,e2) algorithm | ||
| 170 | ✗ | aop := unelabOperator(op); | |
| 171 | ✗ | ae1 := unelabExp(e1); | |
| 172 | ✗ | ae2 := unelabExp(e2); | |
| 173 | ✗ | then Absyn.BINARY(ae1,aop,ae2); | |
| 174 | |||
| 175 | case DAE.UNARY(op,e1) algorithm | ||
| 176 | ✗ | aop := unelabOperator(op); | |
| 177 | ✗ | ae1 := unelabExp(e1); | |
| 178 | ✗ | then Absyn.UNARY(aop,ae1); | |
| 179 | |||
| 180 | case DAE.LBINARY(e1,op,e2) algorithm | ||
| 181 | ✗ | aop := unelabOperator(op); | |
| 182 | ✗ | ae1 := unelabExp(e1); | |
| 183 | ✗ | ae2 := unelabExp(e2); | |
| 184 | ✗ | then Absyn.LBINARY(ae1,aop,ae2); | |
| 185 | |||
| 186 | case DAE.LUNARY(op,e1) algorithm | ||
| 187 | ✗ | aop := unelabOperator(op); | |
| 188 | ✗ | ae1 := unelabExp(e1); | |
| 189 | ✗ | then Absyn.LUNARY(aop,ae1); | |
| 190 | |||
| 191 | case DAE.RELATION(exp1=e1,operator=op,exp2=e2) algorithm | ||
| 192 | ✗ | aop := unelabOperator(op); | |
| 193 | ✗ | ae1 := unelabExp(e1); | |
| 194 | ✗ | ae2 := unelabExp(e2); | |
| 195 | ✗ | then Absyn.RELATION(ae1,aop,ae2); | |
| 196 | |||
| 197 | case DAE.IFEXP(e1,e2,e3) algorithm | ||
| 198 | ✗ | ae1 := unelabExp(e1); | |
| 199 | ✗ | ae2 := unelabExp(e2); | |
| 200 | ✗ | ae3 := unelabExp(e3); | |
| 201 | ✗ | then Absyn.IFEXP(ae1,ae2,ae3,{}); | |
| 202 | |||
| 203 | case DAE.CALL(path,expl,_) | ||
| 204 | algorithm | ||
| 205 | ✗ | aexpl := List.map(expl,unelabExp); | |
| 206 | ✗ | acref := AbsynUtil.pathToCref(path); | |
| 207 | ✗ | then Absyn.CALL(acref,Absyn.FUNCTIONARGS(aexpl,{}),{}); | |
| 208 | |||
| 209 | case DAE.RECORD(path = path,exps = expl) | ||
| 210 | algorithm | ||
| 211 | 4 | aexpl := List.map(expl,unelabExp); | |
| 212 | 3 | acref := AbsynUtil.pathToCref(path); | |
| 213 | 3 | then Absyn.CALL(acref,Absyn.FUNCTIONARGS(aexpl,{}),{}); | |
| 214 | |||
| 215 | case DAE.PARTEVALFUNCTION(path,expl,_,_) | ||
| 216 | algorithm | ||
| 217 | ✗ | aexpl := List.map(expl,unelabExp); | |
| 218 | ✗ | acref := AbsynUtil.pathToCref(path); | |
| 219 | ✗ | then | |
| 220 | Absyn.PARTEVALFUNCTION(acref,Absyn.FUNCTIONARGS(aexpl,{})); | ||
| 221 | |||
| 222 | case DAE.ARRAY(array = {}, ty = ty) | ||
| 223 | algorithm | ||
| 224 | 36 | (ty, dims) := TypesDump.flattenArrayType(ty); | |
| 225 | 36 | ae1 := unleabZeroExpFromType(ty); | |
| 226 | 36 | expl_1 := List.map(dims, unelabDimensionToFillExp); | |
| 227 | 36 | then | |
| 228 | Absyn.CALL(Absyn.CREF_IDENT("fill",{}),Absyn.FUNCTIONARGS(ae1::expl_1,{}),{}); | ||
| 229 | |||
| 230 | case DAE.ARRAY(array = expl) | ||
| 231 | algorithm | ||
| 232 | 5864 | expl_1 := List.map(expl, unelabExp); | |
| 233 | 5864 | then | |
| 234 | Absyn.ARRAY(expl_1); | ||
| 235 | |||
| 236 | case DAE.MATRIX(matrix = mexpl2) | ||
| 237 | algorithm | ||
| 238 | 994 | amexpl := List.mapList(mexpl2,unelabExp); | |
| 239 | 994 | then (Absyn.MATRIX(amexpl)); | |
| 240 | |||
| 241 | case DAE.RANGE(_,e1,SOME(e2),e3) algorithm | ||
| 242 | ✗ | ae1 := unelabExp(e1); | |
| 243 | ✗ | ae2 := unelabExp(e2); | |
| 244 | ✗ | ae3 := unelabExp(e3); | |
| 245 | ✗ | then Absyn.RANGE(ae1,SOME(ae2),ae3); | |
| 246 | |||
| 247 | case DAE.RANGE(_,e1,NONE(),e3) algorithm | ||
| 248 | ✗ | ae1 := unelabExp(e1); | |
| 249 | ✗ | ae3 := unelabExp(e3); | |
| 250 | ✗ | then Absyn.RANGE(ae1,NONE(),ae3); | |
| 251 | |||
| 252 | case DAE.TUPLE(expl) | ||
| 253 | algorithm | ||
| 254 | ✗ | expl_1 := List.map(expl, unelabExp); | |
| 255 | ✗ | then | |
| 256 | Absyn.TUPLE(expl_1); | ||
| 257 | |||
| 258 | case DAE.CAST(_,e1) algorithm | ||
| 259 | ✗ | ae1 := unelabExp(e1); | |
| 260 | then ae1; | ||
| 261 | |||
| 262 | // ASUB can not be unelabed since it has no representation in Absyn. | ||
| 263 | case DAE.ASUB(_,_) algorithm | ||
| 264 | ✗ | print("Internal Error, can not unelab ASUB\n"); | |
| 265 | ✗ | then fail(); | |
| 266 | |||
| 267 | // TSUB(expression) => expression | ||
| 268 | case DAE.TSUB(e1,_,_) algorithm | ||
| 269 | ✗ | ae1 := unelabExp(e1); | |
| 270 | then ae1; | ||
| 271 | |||
| 272 | case DAE.SIZE(e1,SOME(e2)) algorithm | ||
| 273 | ✗ | ae1 := unelabExp(e1); | |
| 274 | ✗ | ae2 := unelabExp(e2); | |
| 275 | ✗ | then Absyn.CALL(Absyn.CREF_IDENT("size",{}),Absyn.FUNCTIONARGS({ae1,ae2},{}),{}); | |
| 276 | |||
| 277 | /* WHAT? exactly the same case as above???!!! | ||
| 278 | case(DAE.SIZE(e1,SOME(e2))) equation | ||
| 279 | ae1 = unelabExp(e1); | ||
| 280 | ae2 = unelabExp(e2); | ||
| 281 | then Absyn.CALL(Absyn.CREF_IDENT("size",{}),Absyn.FUNCTIONARGS({ae1,ae2},{})); | ||
| 282 | */ | ||
| 283 | |||
| 284 | ✗ | case DAE.CODE(code,_) then Absyn.CODE(code); | |
| 285 | |||
| 286 | case DAE.REDUCTION(reductionInfo=DAE.REDUCTIONINFO(iterType=iterType,path=path),expr=e1,iterators=riters) | ||
| 287 | algorithm | ||
| 288 | //print("unelab of reduction not impl. yet"); | ||
| 289 | ✗ | acref := AbsynUtil.pathToCref(path); | |
| 290 | ✗ | ae1 := unelabExp(e1); | |
| 291 | ✗ | aiters := List.map(riters, unelabReductionIterator); | |
| 292 | ✗ | then Absyn.CALL(acref, Absyn.FOR_ITER_FARG(ae1, iterType, aiters),{}); | |
| 293 | |||
| 294 | else | ||
| 295 | algorithm | ||
| 296 |
1/2✓ Branch 1 taken 8 times.
✗ Branch 2 not taken.
|
8 | true := Flags.isSet(Flags.FAILTRACE); |
| 297 | ✗ | print("Expression.unelabExp failed on: " + ExpressionBasics.printExpStr(inExp) + "\n"); | |
| 298 | ✗ | then | |
| 299 | fail(); | ||
| 300 | end matchcontinue; | ||
| 301 | end unelabExp; | ||
| 302 | |||
| 303 | public function unelabDimension | ||
| 304 | "Transform an DAE.Dimension into Absyn.Subscript, if possible" | ||
| 305 | input DAE.Dimension inDim; | ||
| 306 | output Absyn.Subscript outDim; | ||
| 307 | algorithm | ||
| 308 | outDim := match inDim | ||
| 309 | local | ||
| 310 | Integer i; | ||
| 311 | Absyn.Path p; | ||
| 312 | Absyn.ComponentRef c; | ||
| 313 | DAE.Exp e; | ||
| 314 | Absyn.Exp ae; | ||
| 315 | |||
| 316 | 2 | case DAE.DIM_INTEGER(i) then Absyn.SUBSCRIPT(Absyn.INTEGER(i)); | |
| 317 | |||
| 318 | case DAE.DIM_BOOLEAN() then Absyn.SUBSCRIPT(Absyn.CREF(Absyn.CREF_IDENT("Boolean", {}))); | ||
| 319 | |||
| 320 | case DAE.DIM_ENUM(enumTypeName = p) | ||
| 321 | algorithm | ||
| 322 | ✗ | c := AbsynUtil.pathToCref(p); | |
| 323 | ✗ | then | |
| 324 | Absyn.SUBSCRIPT(Absyn.CREF(c)); | ||
| 325 | |||
| 326 | case DAE.DIM_EXP(e) | ||
| 327 | algorithm | ||
| 328 | ✗ | ae := unelabExp(e); | |
| 329 | ✗ | then | |
| 330 | Absyn.SUBSCRIPT(ae); | ||
| 331 | |||
| 332 | case DAE.DIM_UNKNOWN() then Absyn.NOSUB(); | ||
| 333 | |||
| 334 | end match; | ||
| 335 | end unelabDimension; | ||
| 336 | |||
| 337 | protected function unleabZeroExpFromType | ||
| 338 | input DAE.Type ty; | ||
| 339 | output Absyn.Exp outExp; | ||
| 340 | algorithm | ||
| 341 | outExp := match ty | ||
| 342 | case DAE.T_BOOL() then Absyn.BOOL(false); | ||
| 343 | case DAE.T_STRING() then Absyn.STRING(""); | ||
| 344 | case DAE.T_INTEGER() then Absyn.INTEGER(0); | ||
| 345 | case DAE.T_REAL() then Absyn.REAL("0.0"); | ||
| 346 | case DAE.T_UNKNOWN() then Absyn.REAL("0.0"); /* Look at the crap unelabMod needs... */ | ||
| 347 | end match; | ||
| 348 | end unleabZeroExpFromType; | ||
| 349 | |||
| 350 | protected function unelabDimensionToFillExp | ||
| 351 | "Transform an DAE.Dimension into Absyn.Exp, if possible" | ||
| 352 | input DAE.Dimension inDim; | ||
| 353 | output Absyn.Exp outExp; | ||
| 354 | algorithm | ||
| 355 | outExp := match inDim | ||
| 356 | local | ||
| 357 | Integer i; | ||
| 358 | DAE.Exp e; | ||
| 359 | |||
| 360 | 36 | case DAE.DIM_INTEGER(i) then Absyn.INTEGER(i); | |
| 361 | |||
| 362 | ✗ | case DAE.DIM_EXP(e) then unelabExp(e); | |
| 363 | |||
| 364 | else Absyn.INTEGER(1); /* Probably bad, but only used with zero-length arrays */ | ||
| 365 | |||
| 366 | end match; | ||
| 367 | end unelabDimensionToFillExp; | ||
| 368 | |||
| 369 | protected function unelabReductionIterator | ||
| 370 | input DAE.ReductionIterator riter; | ||
| 371 | output Absyn.ForIterator aiter; | ||
| 372 | algorithm | ||
| 373 | aiter := match riter | ||
| 374 | local | ||
| 375 | String id; | ||
| 376 | DAE.Exp exp; | ||
| 377 | Option<DAE.Exp> gexp; | ||
| 378 | Absyn.Exp aexp; | ||
| 379 | Option<Absyn.Exp> agexp; | ||
| 380 | case DAE.REDUCTIONITER(id=id,exp=exp,guardExp=gexp) | ||
| 381 | algorithm | ||
| 382 | ✗ | aexp := unelabExp(exp); | |
| 383 | ✗ | agexp := Util.applyOption(gexp, unelabExp); | |
| 384 | ✗ | then Absyn.ITERATOR(id,agexp,SOME(aexp)); | |
| 385 | end match; | ||
| 386 | end unelabReductionIterator; | ||
| 387 | |||
| 388 | protected function unelabOperator "help function to unelabExpression." | ||
| 389 | input DAE.Operator op; | ||
| 390 | output Absyn.Operator aop; | ||
| 391 | algorithm | ||
| 392 | aop := match op | ||
| 393 | case DAE.ADD(_) then Absyn.ADD(); | ||
| 394 | case DAE.SUB(_) then Absyn.SUB(); | ||
| 395 | case DAE.MUL(_) then Absyn.MUL(); | ||
| 396 | case DAE.DIV(_) then Absyn.DIV(); | ||
| 397 | case DAE.POW(_) then Absyn.POW(); | ||
| 398 | case DAE.UMINUS(_) then Absyn.UMINUS(); | ||
| 399 | case DAE.UMINUS_ARR(_) then Absyn.UMINUS(); | ||
| 400 | case DAE.ADD_ARR(_) then Absyn.ADD(); | ||
| 401 | case DAE.SUB_ARR(_) then Absyn.SUB(); | ||
| 402 | case DAE.MUL_ARR(_) then Absyn.MUL(); | ||
| 403 | case DAE.DIV_ARR(_) then Absyn.DIV(); | ||
| 404 | case DAE.MUL_ARRAY_SCALAR(_) then Absyn.MUL(); | ||
| 405 | case DAE.ADD_ARRAY_SCALAR(_) then Absyn.ADD(); | ||
| 406 | case DAE.SUB_SCALAR_ARRAY(_) then Absyn.SUB(); | ||
| 407 | case DAE.MUL_SCALAR_PRODUCT(_) then Absyn.MUL(); | ||
| 408 | case DAE.MUL_MATRIX_PRODUCT(_) then Absyn.MUL(); | ||
| 409 | case DAE.DIV_SCALAR_ARRAY(_) then Absyn.DIV(); | ||
| 410 | case DAE.DIV_ARRAY_SCALAR(_) then Absyn.DIV(); | ||
| 411 | case DAE.POW_SCALAR_ARRAY(_) then Absyn.POW(); | ||
| 412 | case DAE.POW_ARRAY_SCALAR(_) then Absyn.POW(); | ||
| 413 | case DAE.POW_ARR(_) then Absyn.POW(); | ||
| 414 | case DAE.POW_ARR2(_) then Absyn.POW(); | ||
| 415 | case DAE.AND(_) then Absyn.AND(); | ||
| 416 | case DAE.OR(_) then Absyn.OR(); | ||
| 417 | case DAE.NOT(_) then Absyn.NOT(); | ||
| 418 | case DAE.LESS(_) then Absyn.LESS(); | ||
| 419 | case DAE.LESSEQ(_) then Absyn.LESSEQ(); | ||
| 420 | case DAE.GREATER(_) then Absyn.GREATER(); | ||
| 421 | case DAE.GREATEREQ(_) then Absyn.GREATEREQ(); | ||
| 422 | case DAE.EQUAL(_) then Absyn.EQUAL(); | ||
| 423 | case DAE.NEQUAL(_) then Absyn.NEQUAL(); | ||
| 424 | end match; | ||
| 425 | end unelabOperator; | ||
| 426 | |||
| 427 | public function stringifyCrefs | ||
| 428 | "This function takes an expression and transforms all component | ||
| 429 | reference names contained in the expression to a simpler form. | ||
| 430 | For instance DAE.CREF_QUAL(a,{}, DAE.CREF_IDENT(b,{})) becomes | ||
| 431 | DAE.CREF_IDENT(a.b,{}) | ||
| 432 | |||
| 433 | NOTE: This function should not be used in OMC, since the OMC backend no longer | ||
| 434 | uses stringified components. It is still used by MathCore though." | ||
| 435 | input DAE.Exp inExp; | ||
| 436 | output DAE.Exp outExp; | ||
| 437 | algorithm | ||
| 438 | ✗ | outExp := traverseExpDummy(inExp, traversingstringifyCrefFinder); | |
| 439 | end stringifyCrefs; | ||
| 440 | |||
| 441 | public function traversingstringifyCrefFinder " | ||
| 442 | helper for stringifyCrefs" | ||
| 443 | input DAE.Exp inExp; | ||
| 444 | output DAE.Exp outExp; | ||
| 445 | algorithm | ||
| 446 | outExp := match inExp | ||
| 447 | local | ||
| 448 | ComponentRef cr,crs; | ||
| 449 | Type ty; | ||
| 450 | |||
| 451 | case DAE.CREF(ty = DAE.T_FUNCTION_REFERENCE_VAR()) | ||
| 452 | then inExp; | ||
| 453 | |||
| 454 | case DAE.CREF(ty = DAE.T_FUNCTION_REFERENCE_FUNC()) | ||
| 455 | then inExp; | ||
| 456 | |||
| 457 | case DAE.CREF(cr,ty) | ||
| 458 | algorithm | ||
| 459 | ✗ | crs := ComponentReference.stringifyComponentRef(cr); | |
| 460 | ✗ | then makeCrefExp(crs,ty); | |
| 461 | |||
| 462 | else inExp; | ||
| 463 | |||
| 464 | end match; | ||
| 465 | end traversingstringifyCrefFinder; | ||
| 466 | |||
| 467 | public function realToIntIfPossible | ||
| 468 | "converts to ICONST if possible. If it does | ||
| 469 | not fit, a RCONST is returned instead." | ||
| 470 | input Real inVal; | ||
| 471 | output DAE.Exp outVal; | ||
| 472 | algorithm | ||
| 473 | try | ||
| 474 | 43249 | outVal := DAE.ICONST(realInt(inVal)); | |
| 475 | else | ||
| 476 | ✗ | outVal := DAE.RCONST(inVal); | |
| 477 | end try; | ||
| 478 | end realToIntIfPossible; | ||
| 479 | |||
| 480 | public function liftArrayR " | ||
| 481 | function liftArrayR | ||
| 482 | Converts a type into an array type with dimension n as first dim" | ||
| 483 | input DAE.Type tp; | ||
| 484 | input DAE.Dimension n; | ||
| 485 | output DAE.Type outTp; | ||
| 486 | algorithm | ||
| 487 | outTp := match tp | ||
| 488 | local | ||
| 489 | Type elt_tp; | ||
| 490 | list<DAE.Dimension> dims; | ||
| 491 | |||
| 492 | case DAE.T_ARRAY(elt_tp,dims) | ||
| 493 | algorithm | ||
| 494 | dims := n::dims; | ||
| 495 | 14268 | then | |
| 496 | DAE.T_ARRAY(elt_tp,dims); | ||
| 497 | |||
| 498 | 285995 | else DAE.T_ARRAY(tp,{n}); | |
| 499 | |||
| 500 | end match; | ||
| 501 | end liftArrayR; | ||
| 502 | |||
| 503 | public function dimensionSizeConstantExp | ||
| 504 | "Converts (extracts) a dimension to an expression. | ||
| 505 | This function will fail if dimension is unknown or an expression (in case the dimension is from a different scope). | ||
| 506 | If you want to(kind of) handle unknown dims use dimensionSizeExpHandleUnkown." | ||
| 507 | input DAE.Dimension dim; | ||
| 508 | output DAE.Exp exp; | ||
| 509 | algorithm | ||
| 510 | exp := match dim | ||
| 511 | local | ||
| 512 | Integer i; | ||
| 513 | |||
| 514 | 1569 | case DAE.DIM_INTEGER(integer = i) then DAE.ICONST(i); | |
| 515 | 1 | case DAE.DIM_ENUM(size = i) then DAE.ICONST(i); | |
| 516 | case DAE.DIM_BOOLEAN() then DAE.ICONST(2); | ||
| 517 | end match; | ||
| 518 | end dimensionSizeConstantExp; | ||
| 519 | |||
| 520 | public function dimensionSizeExp | ||
| 521 | "Converts (extracts) a dimension to an expression. | ||
| 522 | This function will fail if dimension is unknown. i.e. DIM_UNKNOWN. | ||
| 523 | If you want to(kind of) handle unknown dims use dimensionSizeExpHandleUnkown." | ||
| 524 | input DAE.Dimension dim; | ||
| 525 | output DAE.Exp exp; | ||
| 526 | algorithm | ||
| 527 | exp := match dim | ||
| 528 | local | ||
| 529 | Integer i; | ||
| 530 | DAE.Exp e; | ||
| 531 | |||
| 532 | 852129 | case DAE.DIM_INTEGER(integer = i) then DAE.ICONST(i); | |
| 533 | 576 | case DAE.DIM_ENUM(size = i) then DAE.ICONST(i); | |
| 534 | case DAE.DIM_BOOLEAN() then DAE.ICONST(2); | ||
| 535 | case DAE.DIM_EXP(exp = e) then e; | ||
| 536 | end match; | ||
| 537 | end dimensionSizeExp; | ||
| 538 | |||
| 539 | public function dimensionSizeExpHandleUnkown | ||
| 540 | "Converts (extracts) a dimension to an expression. | ||
| 541 | This function will change unknown dims to DAE.ICONST(-1). | ||
| 542 | we use it to handle unknown dims in code generation. unknown dims | ||
| 543 | are okay if the variable is a function input (it's just holds the slot | ||
| 544 | and will not be generated). Otherwise it's an error | ||
| 545 | since it shouldn't have reached there." | ||
| 546 | input DAE.Dimension dim; | ||
| 547 | output DAE.Exp exp; | ||
| 548 | algorithm | ||
| 549 | exp := match dim | ||
| 550 | case DAE.DIM_UNKNOWN() then DAE.ICONST(-1); | ||
| 551 | 520 | else dimensionSizeExp(dim); | |
| 552 | end match; | ||
| 553 | end dimensionSizeExpHandleUnkown; | ||
| 554 | |||
| 555 | public function intDimension | ||
| 556 | "Converts an integer to an array dimension." | ||
| 557 | input Integer value; | ||
| 558 | output DAE.Dimension dim; | ||
| 559 | annotation(__OpenModelica_EarlyInline = true); | ||
| 560 | algorithm | ||
| 561 | 19591 | dim := DAE.DIM_INTEGER(value); | |
| 562 | end intDimension; | ||
| 563 | |||
| 564 | public function dimensionSubscript | ||
| 565 | "Converts an array dimension to a subscript." | ||
| 566 | input DAE.Dimension dim; | ||
| 567 | output DAE.Subscript sub; | ||
| 568 | algorithm | ||
| 569 | sub := match dim | ||
| 570 | local | ||
| 571 | Integer i; | ||
| 572 | |||
| 573 | ✗ | case DAE.DIM_INTEGER(integer = i) then DAE.INDEX(DAE.ICONST(i)); | |
| 574 | ✗ | case DAE.DIM_ENUM(size = i) then DAE.INDEX(DAE.ICONST(i)); | |
| 575 | case DAE.DIM_BOOLEAN() then DAE.INDEX(DAE.ICONST(2)); | ||
| 576 | case DAE.DIM_UNKNOWN() then DAE.WHOLEDIM(); | ||
| 577 | end match; | ||
| 578 | end dimensionSubscript; | ||
| 579 | |||
| 580 | /***************************************************/ | ||
| 581 | /* Change */ | ||
| 582 | /***************************************************/ | ||
| 583 | |||
| 584 | public function negate | ||
| 585 | "author: PA | ||
| 586 | Negates an expression." | ||
| 587 | input DAE.Exp inExp; | ||
| 588 | output DAE.Exp outExp; | ||
| 589 | algorithm | ||
| 590 | outExp := match inExp | ||
| 591 | local | ||
| 592 | Type t; | ||
| 593 | Operator op; | ||
| 594 | Boolean b,b_1; | ||
| 595 | Real r,r_1; | ||
| 596 | Integer i,i_1; | ||
| 597 | DAE.Exp e,e1,e2; | ||
| 598 | |||
| 599 | // to avoid un-necessary --e | ||
| 600 | case DAE.UNARY(DAE.UMINUS(_),e) then e; | ||
| 601 | case DAE.UNARY(DAE.UMINUS_ARR(_),e) then e; | ||
| 602 | case DAE.LUNARY(DAE.NOT(_),e) then e; | ||
| 603 | |||
| 604 | // -(a*b) = (-a)*b | ||
| 605 | // -(a/b) = (-a)/b | ||
| 606 | case DAE.BINARY(e1,op,e2) guard(isMulOrDiv(op)) | ||
| 607 | 497778 | then DAE.BINARY(negate(e1),op,e2); | |
| 608 | |||
| 609 | // -(a-b) = b-a | ||
| 610 | case DAE.BINARY(e1,op,e2) guard(isSub(op)) | ||
| 611 | 13897 | then DAE.BINARY(e2,op,e1); | |
| 612 | |||
| 613 | case e // -0 = 0 | ||
| 614 | guard isZero(e) | ||
| 615 | then e; | ||
| 616 | |||
| 617 | case DAE.ICONST(i) | ||
| 618 | algorithm | ||
| 619 | 9212 | i_1 := 0 - i; | |
| 620 | 9212 | then DAE.ICONST(i_1); | |
| 621 | case DAE.RCONST(r) | ||
| 622 | algorithm | ||
| 623 | 488440 | r_1 := 0.0 - r; | |
| 624 | 488440 | then DAE.RCONST(r_1); | |
| 625 | case DAE.BCONST(b) | ||
| 626 | algorithm | ||
| 627 | b_1 := not b; | ||
| 628 |
2/2✓ Branch 0 taken 13 times.
✓ Branch 1 taken 38 times.
|
64 | then DAE.BCONST(b_1); |
| 629 | |||
| 630 | case e | ||
| 631 | algorithm | ||
| 632 | 1942437 | t := typeof(e); | |
| 633 | outExp := match t | ||
| 634 | case DAE.T_BOOL() // not e | ||
| 635 | 7240 | then DAE.LUNARY(DAE.NOT(t),e); | |
| 636 | else | ||
| 637 | algorithm | ||
| 638 | 1935197 | b := DAEUtil.expTypeArray(t); | |
| 639 |
2/2✓ Branch 0 taken 131 times.
✓ Branch 1 taken 1935066 times.
|
1935197 | op := if b then DAE.UMINUS_ARR(t) else DAE.UMINUS(t); |
| 640 | 1935197 | then DAE.UNARY(op,e); | |
| 641 | end match; | ||
| 642 | then | ||
| 643 | outExp; | ||
| 644 | |||
| 645 | end match; | ||
| 646 | end negate; | ||
| 647 | |||
| 648 | public function negateReal | ||
| 649 | input DAE.Exp inReal; | ||
| 650 | output DAE.Exp outNegatedReal; | ||
| 651 | algorithm | ||
| 652 | 2584 | outNegatedReal := DAE.UNARY(DAE.UMINUS(DAE.T_REAL_DEFAULT), inReal); | |
| 653 | end negateReal; | ||
| 654 | |||
| 655 | public function expand "expands products | ||
| 656 | For example | ||
| 657 | a *(b+c) => a*b + a*c" | ||
| 658 | input DAE.Exp e; | ||
| 659 | output DAE.Exp outE; | ||
| 660 | algorithm | ||
| 661 | outE := match e | ||
| 662 | local | ||
| 663 | DAE.Type tp; | ||
| 664 | DAE.Operator op; | ||
| 665 | DAE.Exp e1,e2,e21,e22; | ||
| 666 | |||
| 667 | case DAE.BINARY(e1,DAE.MUL(tp),e2 as DAE.BINARY(e21,op,e22)) guard isAddOrSub(op) | ||
| 668 | algorithm | ||
| 669 | ✗ | DAE.BINARY(e21,op,e22) := expand(e2); | |
| 670 | ✗ | then | |
| 671 | DAE.BINARY(DAE.BINARY(e1,DAE.MUL(tp),e21),op,DAE.BINARY(e1,DAE.MUL(tp),e22)); | ||
| 672 | |||
| 673 | else e; | ||
| 674 | end match; | ||
| 675 | end expand; | ||
| 676 | |||
| 677 | public function expDer | ||
| 678 | "author: Frenkel TUD 2012-11 | ||
| 679 | exp -> der(exp)" | ||
| 680 | input DAE.Exp inExp; | ||
| 681 | output DAE.Exp outExp; | ||
| 682 | algorithm | ||
| 683 | 7253 | outExp := DAE.CALL(Absyn.IDENT("der"),{inExp},DAE.callAttrBuiltinReal); | |
| 684 | end expDer; | ||
| 685 | |||
| 686 | public function expAbs | ||
| 687 | "author: PA | ||
| 688 | Makes the expression absolute. i.e. non-negative." | ||
| 689 | input DAE.Exp inExp; | ||
| 690 | output DAE.Exp outExp; | ||
| 691 | algorithm | ||
| 692 | outExp := match inExp | ||
| 693 | local | ||
| 694 | Integer i2,i; | ||
| 695 | Real r2,r; | ||
| 696 | DAE.Exp e_1,e,e1_1,e2_1,e1,e2; | ||
| 697 | Operator op; | ||
| 698 | |||
| 699 | case DAE.ICONST(integer = i) | ||
| 700 | algorithm | ||
| 701 | ✗ | i2 := intAbs(i); | |
| 702 | ✗ | then | |
| 703 | DAE.ICONST(i2); | ||
| 704 | |||
| 705 | case DAE.RCONST(real = r) | ||
| 706 | algorithm | ||
| 707 | ✗ | r2 := realAbs(r); | |
| 708 | ✗ | then | |
| 709 | DAE.RCONST(r2); | ||
| 710 | |||
| 711 | case DAE.UNARY(operator = DAE.UMINUS(),exp = e) | ||
| 712 | algorithm | ||
| 713 | ✗ | e_1 := expAbs(e); | |
| 714 | then | ||
| 715 | e_1; | ||
| 716 | |||
| 717 | case DAE.BINARY(exp1 = e1,operator = op,exp2 = e2) | ||
| 718 | algorithm | ||
| 719 | ✗ | e1_1 := expAbs(e1); | |
| 720 | ✗ | e2_1 := expAbs(e2); | |
| 721 | ✗ | then | |
| 722 | DAE.BINARY(e1_1,op,e2_1); | ||
| 723 | |||
| 724 | else inExp; | ||
| 725 | end match; | ||
| 726 | end expAbs; | ||
| 727 | |||
| 728 | public function stripNoEvent | ||
| 729 | "Function that strips all noEvent() calls in an expression" | ||
| 730 | input DAE.Exp e; | ||
| 731 | output DAE.Exp outE; | ||
| 732 | algorithm | ||
| 733 | 8539 | outE := traverseExpDummy(e,stripNoEventExp); | |
| 734 | end stripNoEvent; | ||
| 735 | |||
| 736 | protected function stripNoEventExp " | ||
| 737 | traversal function for stripNoEvent" | ||
| 738 | input DAE.Exp e; | ||
| 739 | output DAE.Exp outExp; | ||
| 740 | algorithm | ||
| 741 | outExp := match e | ||
| 742 | case DAE.CALL(path=Absyn.IDENT("noEvent"),expLst={outExp}) then outExp; | ||
| 743 | else e; | ||
| 744 | end match; | ||
| 745 | end stripNoEventExp; | ||
| 746 | |||
| 747 | public function addNoEventToRelations | ||
| 748 | "Function that adds a noEvent() call to all relations in an expression" | ||
| 749 | input DAE.Exp e; | ||
| 750 | output DAE.Exp outE; | ||
| 751 | algorithm | ||
| 752 | 9406 | outE := traverseExpDummy(e,addNoEventToRelationExp); | |
| 753 | end addNoEventToRelations; | ||
| 754 | |||
| 755 | protected function addNoEventToRelationExp " | ||
| 756 | traversal function for addNoEventToRelations" | ||
| 757 | input DAE.Exp e; | ||
| 758 | output DAE.Exp outExp; | ||
| 759 | algorithm | ||
| 760 | outExp := match e | ||
| 761 | 4746 | case DAE.RELATION() then makeNoEvent(e); | |
| 762 | else e; | ||
| 763 | end match; | ||
| 764 | end addNoEventToRelationExp; | ||
| 765 | |||
| 766 | public function addNoEventToRelationsAndConds | ||
| 767 | "Function that adds a noEvent() call to all relations in an expression" | ||
| 768 | input DAE.Exp e; | ||
| 769 | output DAE.Exp outE; | ||
| 770 | algorithm | ||
| 771 | 62534 | outE := traverseExpDummy(e,addNoEventToRelationandCondExp); | |
| 772 | end addNoEventToRelationsAndConds; | ||
| 773 | |||
| 774 | protected function addNoEventToRelationandCondExp " | ||
| 775 | traversal function for addNoEventToRelationsAndConds" | ||
| 776 | input DAE.Exp e; | ||
| 777 | output DAE.Exp outExp; | ||
| 778 | algorithm | ||
| 779 | outExp := match e | ||
| 780 | local | ||
| 781 | DAE.Exp e1,e2,e3; | ||
| 782 | 4044 | case DAE.RELATION() then makeNoEvent(e); | |
| 783 | 3948 | case DAE.IFEXP(e1,e2,e3) then DAE.IFEXP(makeNoEvent(e1),e2,e3); | |
| 784 | else e; | ||
| 785 | end match; | ||
| 786 | end addNoEventToRelationandCondExp; | ||
| 787 | |||
| 788 | public function addNoEventToEventTriggeringFunctions | ||
| 789 | " Function that adds a noEvent() call to all event triggering functions in an expression" | ||
| 790 | input DAE.Exp e; | ||
| 791 | output DAE.Exp outE; | ||
| 792 | algorithm | ||
| 793 | 8833 | outE := traverseExpDummy(e,addNoEventToEventTriggeringFunctionsExp); | |
| 794 | end addNoEventToEventTriggeringFunctions; | ||
| 795 | |||
| 796 | protected function addNoEventToEventTriggeringFunctionsExp " | ||
| 797 | traversal function for addNoEventToEventTriggeringFunctions" | ||
| 798 | input DAE.Exp e; | ||
| 799 | output DAE.Exp outExp; | ||
| 800 | algorithm | ||
| 801 | outExp := match e | ||
| 802 | case DAE.CALL() | ||
| 803 | guard | ||
| 804 | isEventTriggeringFunctionExp(e) | ||
| 805 | ✗ | then makeNoEvent(e); | |
| 806 | else e; | ||
| 807 | end match; | ||
| 808 | end addNoEventToEventTriggeringFunctionsExp; | ||
| 809 | |||
| 810 | public function expStripLastSubs | ||
| 811 | "Strips the last subscripts of a Exp" | ||
| 812 | input DAE.Exp inExp; | ||
| 813 | output DAE.Exp outExp; | ||
| 814 | algorithm | ||
| 815 | outExp := match inExp | ||
| 816 | local | ||
| 817 | ComponentRef cr,cr_1; | ||
| 818 | Type ty; | ||
| 819 | Operator op1; | ||
| 820 | DAE.Exp e,e_1; | ||
| 821 | Boolean b; | ||
| 822 | |||
| 823 | case DAE.CREF(componentRef=cr) | ||
| 824 | algorithm | ||
| 825 | 114 | ty := ComponentReference.crefLastType(cr); | |
| 826 | 114 | cr_1 := ComponentReferenceBasics.crefStripLastSubs(cr); | |
| 827 | 114 | e := makeCrefExp(cr_1, ty); | |
| 828 | then | ||
| 829 | e; | ||
| 830 | |||
| 831 | case DAE.UNARY(exp=e) | ||
| 832 | algorithm | ||
| 833 | 4 | e_1 := expStripLastSubs(e); | |
| 834 | 4 | ty := typeof(e_1); | |
| 835 | 4 | b := DAEUtil.expTypeArray(ty); | |
| 836 |
2/2✓ Branch 0 taken 3 times.
✓ Branch 1 taken 1 time.
|
4 | op1 := if b then DAE.UMINUS_ARR(ty) else DAE.UMINUS(ty); |
| 837 | 4 | then | |
| 838 | DAE.UNARY(op1,e_1); | ||
| 839 | end match; | ||
| 840 | end expStripLastSubs; | ||
| 841 | |||
| 842 | public function expStripLastIdent | ||
| 843 | "Strips the last identifier of a cref Exp" | ||
| 844 | input DAE.Exp inExp; | ||
| 845 | output DAE.Exp outExp; | ||
| 846 | algorithm | ||
| 847 | outExp:= | ||
| 848 | match inExp | ||
| 849 | local | ||
| 850 | ComponentRef cr,cr_1; | ||
| 851 | Type ty; | ||
| 852 | Operator op1; | ||
| 853 | DAE.Exp e,e_1; | ||
| 854 | Boolean b; | ||
| 855 | |||
| 856 | case DAE.CREF(componentRef=cr) | ||
| 857 | algorithm | ||
| 858 | ✗ | cr_1 := ComponentReference.crefStripLastIdent(cr); | |
| 859 | ✗ | ty := ComponentReference.crefLastType(cr_1); | |
| 860 | ✗ | e := makeCrefExp(cr_1, ty); | |
| 861 | then | ||
| 862 | e; | ||
| 863 | |||
| 864 | case DAE.UNARY(exp=e) | ||
| 865 | algorithm | ||
| 866 | ✗ | e_1 := expStripLastIdent(e); | |
| 867 | ✗ | ty := typeof(e_1); | |
| 868 | ✗ | b := DAEUtil.expTypeArray(ty); | |
| 869 | ✗ | op1 := if b then DAE.UMINUS_ARR(ty) else DAE.UMINUS(ty); | |
| 870 | ✗ | then | |
| 871 | DAE.UNARY(op1,e_1); | ||
| 872 | end match; | ||
| 873 | end expStripLastIdent; | ||
| 874 | |||
| 875 | public function prependSubscriptExp | ||
| 876 | "Prepends a subscript to a CREF expression | ||
| 877 | For instance a.b[1,2] with subscript 'i' becomes a.b[i,1,2]." | ||
| 878 | input DAE.Exp exp; | ||
| 879 | input DAE.Subscript subscr; | ||
| 880 | output DAE.Exp outExp; | ||
| 881 | algorithm | ||
| 882 | outExp := match exp | ||
| 883 | local | ||
| 884 | Type t; | ||
| 885 | ComponentRef cr, cr1, cr2; | ||
| 886 | list<DAE.Subscript> subs; | ||
| 887 | DAE.Exp e; | ||
| 888 | |||
| 889 | case DAE.CREF(cr,t) | ||
| 890 | algorithm | ||
| 891 | ✗ | cr1 := ComponentReferenceBasics.crefStripLastSubs(cr); | |
| 892 | ✗ | subs := ComponentReference.crefLastSubs(cr); | |
| 893 | ✗ | cr2 := ComponentReference.subscriptCref(cr1,subscr::subs); | |
| 894 | ✗ | e := makeCrefExp(cr2, t); | |
| 895 | then | ||
| 896 | e; | ||
| 897 | end match; | ||
| 898 | end prependSubscriptExp; | ||
| 899 | |||
| 900 | public function applyExpSubscripts | ||
| 901 | "@mahge | ||
| 902 | Takes an expression and a list of subscripts and subscripts | ||
| 903 | the given expression. | ||
| 904 | If a component reference is given the subs are applied to it. | ||
| 905 | If an array(DAE.ARRAY) is given the element at the specified | ||
| 906 | subscripts is returned. Otherwise and ASUB is built and returned. | ||
| 907 | e.g. subscriptExp on ({{1,2},{3,4}}) with sub [2,1] gives 3 | ||
| 908 | subscriptExp on (a) with sub [2,1] gives a[2,1] | ||
| 909 | |||
| 910 | " | ||
| 911 | input output DAE.Exp exp; | ||
| 912 | input list<DAE.Subscript> inSubs; | ||
| 913 | protected | ||
| 914 | String str; | ||
| 915 | algorithm | ||
| 916 | try | ||
| 917 | 440549 | exp := applyExpSubscripts2(exp, inSubs); | |
| 918 | else | ||
| 919 | ✗ | str := "Expression.applyExpSubscripts failed applying subs: [" + ExpressionDump.printSubscriptLstStr(inSubs) | |
| 920 | + "] on expression:" + ExpressionBasics.printExpStr(exp) + "\n"; | ||
| 921 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {str}); | |
| 922 | end try; | ||
| 923 | |||
| 924 | end applyExpSubscripts; | ||
| 925 | |||
| 926 | |||
| 927 | public function applyExpSubscriptsFoldCheckSimplify " | ||
| 928 | author: PA | ||
| 929 | Takes an arbitrary expression and applies subscripts to it. This is done by creating asub | ||
| 930 | expressions given the original expression and then simplify them. | ||
| 931 | Note: The subscripts must be INDEX | ||
| 932 | |||
| 933 | alternative names: subsriptExp (but already taken), subscriptToAsub | ||
| 934 | |||
| 935 | This version of the function also returns a boolean stating if simplify | ||
| 936 | improved anything (can be used as a heuristic if you want to apply | ||
| 937 | the subscript when scalarizing) | ||
| 938 | |||
| 939 | Note: mahge. Uses of this function should be replaced by applyExpSubscripts. I have not | ||
| 940 | replaced them because I could not make sense of the usage in Backend/RemoveSimpleEquations. | ||
| 941 | It uses the checkSimplify arg and I am not sure what it expects or is supposed to do with the result." | ||
| 942 | input output DAE.Exp exp; | ||
| 943 | input list<DAE.Subscript> inSubs; | ||
| 944 | input output Boolean checkSimplify = false; | ||
| 945 | protected | ||
| 946 | Boolean b; | ||
| 947 | DAE.Exp s; | ||
| 948 | algorithm | ||
| 949 |
2/2✓ Branch 0 taken 453863 times.
✓ Branch 1 taken 279108 times.
|
732971 | for sub in inSubs loop |
| 950 | // Apply one subscript at a time, so simplify works fine on it. | ||
| 951 | //s := subscriptIndexExp(sub); | ||
| 952 | try | ||
| 953 | 453863 | s := getSubscriptExp(sub); | |
| 954 | 453825 | (exp,b) := ExpressionSimplify.simplify(makeASUB(exp,{s})); | |
| 955 | 453825 | checkSimplify := b or checkSimplify; | |
| 956 | else | ||
| 957 | // skipped DAE.WHOLEDIM | ||
| 958 | end try; | ||
| 959 | end for; | ||
| 960 | end applyExpSubscriptsFoldCheckSimplify; | ||
| 961 | |||
| 962 | public function applyExpSubscripts2 | ||
| 963 | "@mahge | ||
| 964 | Takes an expression and a list of subscripts and subscripts | ||
| 965 | the given expression. | ||
| 966 | If a component reference is given the subs are applied to it. | ||
| 967 | If an array(DAE.ARRAY) is given the element at the specified | ||
| 968 | subscripts is returned. Otherwise and ASUB is built and returned. | ||
| 969 | e.g. subscriptExp on ({{1,2},{3,4}}) with sub [2,1] gives 3 | ||
| 970 | subscriptExp on (a) with sub [2,1] gives a[2,1] | ||
| 971 | |||
| 972 | " | ||
| 973 | input DAE.Exp inExp; | ||
| 974 | input list<DAE.Subscript> inSubs; | ||
| 975 | output DAE.Exp outArg; | ||
| 976 | algorithm | ||
| 977 | outArg := match(inExp, inSubs) | ||
| 978 | local | ||
| 979 | DAE.ComponentRef cref; | ||
| 980 | DAE.Type ty; | ||
| 981 | DAE.Exp exp; | ||
| 982 | |||
| 983 | case(_, {}) then inExp; | ||
| 984 | |||
| 985 | case(DAE.CREF(cref, ty), _) | ||
| 986 | algorithm | ||
| 987 | try | ||
| 988 | 99240 | cref := ComponentReference.subscriptCref(cref, inSubs); | |
| 989 | 99240 | ty := ComponentReference.crefTypeFull(cref); | |
| 990 | 99240 | exp := DAE.CREF(cref, ty); | |
| 991 | else | ||
| 992 | ✗ | exp := applyExpSubscriptsFoldCheckSimplify(inExp, inSubs); | |
| 993 | end try; | ||
| 994 | then | ||
| 995 | exp; | ||
| 996 | |||
| 997 | // This is the default operation for exps not handled explicitly. It is unfortunate | ||
| 998 | // we have to build ASUBs. But we can improve this step by step to exclude more exps. | ||
| 999 | // Note getSubscriptExp does not work on WHOLE_DIM subs. So this will fail if one of the | ||
| 1000 | // subs is WHOLE_DIM. DAE.ASUB should have been able to have list<DAE.Subscript> instead | ||
| 1001 | // of just list<DAE.Exp> represneting subs. | ||
| 1002 | else algorithm | ||
| 1003 | 257420 | exp := applyExpSubscriptsFoldCheckSimplify(inExp, inSubs); | |
| 1004 | then exp; | ||
| 1005 | |||
| 1006 | end match; | ||
| 1007 | end applyExpSubscripts2; | ||
| 1008 | |||
| 1009 | |||
| 1010 | public function unliftArray | ||
| 1011 | "Converts an array type into its element type | ||
| 1012 | See also Types.unliftArray. | ||
| 1013 | ." | ||
| 1014 | input DAE.Type inType; | ||
| 1015 | output DAE.Type outType; | ||
| 1016 | algorithm | ||
| 1017 | outType := match inType | ||
| 1018 | local | ||
| 1019 | Type tp; | ||
| 1020 | DAE.Dimensions ds; | ||
| 1021 | |||
| 1022 | case DAE.T_ARRAY(ty = tp,dims = {_}) | ||
| 1023 | then tp; | ||
| 1024 | case DAE.T_ARRAY(ty = tp,dims = (_ :: ds)) | ||
| 1025 | 490855 | then DAE.T_ARRAY(tp,ds); | |
| 1026 | case DAE.T_METATYPE(ty = tp) | ||
| 1027 | 214 | then Types.simplifyType(unliftArray(tp)); | |
| 1028 | case DAE.T_METAARRAY(ty = tp) | ||
| 1029 | then tp; | ||
| 1030 | else inType; | ||
| 1031 | end match; | ||
| 1032 | end unliftArray; | ||
| 1033 | |||
| 1034 | public function unliftArrayIgnoreFirst | ||
| 1035 | input A a; | ||
| 1036 | input DAE.Type inType; | ||
| 1037 | output DAE.Type outType; | ||
| 1038 | replaceable type A subtypeof Any; | ||
| 1039 | algorithm | ||
| 1040 | 15 | outType := unliftArray(inType); | |
| 1041 | end unliftArrayIgnoreFirst; | ||
| 1042 | |||
| 1043 | public function unliftExp | ||
| 1044 | input DAE.Exp inExp; | ||
| 1045 | output DAE.Exp outExp; | ||
| 1046 | algorithm | ||
| 1047 | outExp := match inExp | ||
| 1048 | local | ||
| 1049 | Type ty; | ||
| 1050 | DAE.ComponentRef cr; | ||
| 1051 | Boolean s; | ||
| 1052 | list<DAE.Exp> a; | ||
| 1053 | Integer i; | ||
| 1054 | list<list<DAE.Exp>> mat; | ||
| 1055 | DAE.Exp expCref; | ||
| 1056 | |||
| 1057 | case DAE.CREF(componentRef = cr, ty = ty) | ||
| 1058 | algorithm | ||
| 1059 | ✗ | ty := unliftArray(ty); | |
| 1060 | ✗ | expCref := makeCrefExp(cr, ty); | |
| 1061 | then | ||
| 1062 | expCref; | ||
| 1063 | |||
| 1064 | case DAE.ARRAY(ty = ty, scalar = s, array = a) | ||
| 1065 | algorithm | ||
| 1066 | ✗ | ty := unliftArray(ty); | |
| 1067 | ✗ | then | |
| 1068 | DAE.ARRAY(ty, s, a); | ||
| 1069 | |||
| 1070 | case DAE.MATRIX(ty = ty, integer = i, matrix = mat) | ||
| 1071 | algorithm | ||
| 1072 | ✗ | ty := unliftArray(ty); | |
| 1073 | ✗ | then | |
| 1074 | DAE.MATRIX(ty, i, mat); | ||
| 1075 | |||
| 1076 | else inExp; | ||
| 1077 | |||
| 1078 | end match; | ||
| 1079 | end unliftExp; | ||
| 1080 | |||
| 1081 | public function liftExp | ||
| 1082 | input DAE.Exp inExp; | ||
| 1083 | input DAE.Dimension inDimension; | ||
| 1084 | output DAE.Exp outExp; | ||
| 1085 | algorithm | ||
| 1086 | 2 | outExp := DAE.ARRAY(Types.liftArray(typeof(inExp), inDimension), | |
| 1087 | false, List.fill(inExp, dimensionSize(inDimension))); | ||
| 1088 | end liftExp; | ||
| 1089 | |||
| 1090 | public function liftExpList | ||
| 1091 | input DAE.Exp inExp; | ||
| 1092 | input list<DAE.Dimension> inDimensions; | ||
| 1093 | output DAE.Exp outExp = inExp; | ||
| 1094 | algorithm | ||
| 1095 |
2/2✓ Branch 1 taken 2 times.
✓ Branch 2 taken 1 time.
|
3 | for dim in listReverse(inDimensions) loop |
| 1096 | 2 | outExp := liftExp(outExp, dim); | |
| 1097 | end for; | ||
| 1098 | end liftExpList; | ||
| 1099 | |||
| 1100 | public function liftArrayRight " | ||
| 1101 | This function adds an array dimension to a type on the right side, i.e. | ||
| 1102 | liftArrayRigth(Real[2,3],SOME(4)) => Real[2,3,4]. | ||
| 1103 | This function has the same functionality as Types.liftArrayType but for DAE.Type.'" | ||
| 1104 | input DAE.Type inType; | ||
| 1105 | input DAE.Dimension inDimension; | ||
| 1106 | output DAE.Type outType; | ||
| 1107 | algorithm | ||
| 1108 | outType := match(inType,inDimension) | ||
| 1109 | local | ||
| 1110 | Type ty_1,ty; | ||
| 1111 | DAE.Dimensions dims; | ||
| 1112 | DAE.Dimension dim; | ||
| 1113 | |||
| 1114 | case (DAE.T_ARRAY(ty,dims),dim) | ||
| 1115 | algorithm | ||
| 1116 | ✗ | ty_1 := liftArrayRight(ty, dim); | |
| 1117 | ✗ | then | |
| 1118 | DAE.T_ARRAY(ty_1,dims); | ||
| 1119 | |||
| 1120 | ✗ | else DAE.T_ARRAY(inType,{inDimension}); | |
| 1121 | |||
| 1122 | end match; | ||
| 1123 | end liftArrayRight; | ||
| 1124 | |||
| 1125 | public function liftArrayLeft " | ||
| 1126 | author: PA | ||
| 1127 | This function adds an array dimension to a type on the left side, i.e. | ||
| 1128 | liftArrayRigth(Real[2,3],SOME(4)) => Real[4,2,3]" | ||
| 1129 | input DAE.Type inType; | ||
| 1130 | input DAE.Dimension inDimension; | ||
| 1131 | output DAE.Type outType; | ||
| 1132 | algorithm | ||
| 1133 | outType := match(inType,inDimension) | ||
| 1134 | local | ||
| 1135 | Type ty; | ||
| 1136 | DAE.Dimensions dims; | ||
| 1137 | DAE.Dimension dim; | ||
| 1138 | |||
| 1139 | 4080 | case (DAE.T_ARRAY(ty,dims),dim) then DAE.T_ARRAY(ty,dim::dims); | |
| 1140 | |||
| 1141 | 23 | else DAE.T_ARRAY(inType,{inDimension}); | |
| 1142 | |||
| 1143 | end match; | ||
| 1144 | end liftArrayLeft; | ||
| 1145 | |||
| 1146 | public function liftArrayLeftList | ||
| 1147 | input DAE.Type inType; | ||
| 1148 | input list<DAE.Dimension> inDimensions; | ||
| 1149 | output DAE.Type outType; | ||
| 1150 | algorithm | ||
| 1151 | outType := match(inType, inDimensions) | ||
| 1152 | local | ||
| 1153 | Type ty; | ||
| 1154 | DAE.Dimensions dims; | ||
| 1155 | |||
| 1156 | case (_, {}) then inType; | ||
| 1157 | |||
| 1158 | case (DAE.T_ARRAY(ty, dims), _) | ||
| 1159 | algorithm | ||
| 1160 | 2 | dims := listAppend(inDimensions, dims); | |
| 1161 | 2 | then | |
| 1162 | DAE.T_ARRAY(ty, dims); | ||
| 1163 | |||
| 1164 | 677464 | else DAE.T_ARRAY(inType, inDimensions); | |
| 1165 | |||
| 1166 | end match; | ||
| 1167 | end liftArrayLeftList; | ||
| 1168 | |||
| 1169 | public function setOpType | ||
| 1170 | "Sets the type of an operator." | ||
| 1171 | input DAE.Operator inOp; | ||
| 1172 | input DAE.Type inType; | ||
| 1173 | output DAE.Operator outOp; | ||
| 1174 | algorithm | ||
| 1175 | outOp := match inOp | ||
| 1176 | 51919 | case DAE.ADD() then DAE.ADD(inType); | |
| 1177 | 24801 | case DAE.SUB() then DAE.SUB(inType); | |
| 1178 | 75765 | case DAE.MUL() then DAE.MUL(inType); | |
| 1179 | 16420 | case DAE.DIV() then DAE.DIV(inType); | |
| 1180 | 8069 | case DAE.POW() then DAE.POW(inType); | |
| 1181 | 94571 | case DAE.UMINUS() then DAE.UMINUS(inType); | |
| 1182 | 1208 | case DAE.UMINUS_ARR() then DAE.UMINUS_ARR(inType); | |
| 1183 | 2931 | case DAE.ADD_ARR() then DAE.ADD_ARR(inType); | |
| 1184 | 1690 | case DAE.SUB_ARR() then DAE.SUB_ARR(inType); | |
| 1185 | 27 | case DAE.MUL_ARR() then DAE.MUL_ARR(inType); | |
| 1186 | 29 | case DAE.DIV_ARR() then DAE.DIV_ARR(inType); | |
| 1187 | 1668 | case DAE.MUL_ARRAY_SCALAR() then DAE.MUL_ARRAY_SCALAR(inType); | |
| 1188 | 6 | case DAE.ADD_ARRAY_SCALAR() then DAE.ADD_ARRAY_SCALAR(inType); | |
| 1189 | 3 | case DAE.SUB_SCALAR_ARRAY() then DAE.SUB_SCALAR_ARRAY(inType); | |
| 1190 | 638 | case DAE.MUL_SCALAR_PRODUCT() then DAE.MUL_SCALAR_PRODUCT(inType); | |
| 1191 | 607 | case DAE.MUL_MATRIX_PRODUCT() then DAE.MUL_MATRIX_PRODUCT(inType); | |
| 1192 | 540 | case DAE.DIV_ARRAY_SCALAR() then DAE.DIV_ARRAY_SCALAR(inType); | |
| 1193 | 1 | case DAE.DIV_SCALAR_ARRAY() then DAE.DIV_SCALAR_ARRAY(inType); | |
| 1194 | 2 | case DAE.POW_ARRAY_SCALAR() then DAE.POW_ARRAY_SCALAR(inType); | |
| 1195 | 1 | case DAE.POW_SCALAR_ARRAY() then DAE.POW_SCALAR_ARRAY(inType); | |
| 1196 | 5 | case DAE.POW_ARR() then DAE.POW_ARR(inType); | |
| 1197 | 4 | case DAE.POW_ARR2() then DAE.POW_ARR2(inType); | |
| 1198 | 3255 | case DAE.AND() then DAE.AND(inType); | |
| 1199 | 1768 | case DAE.OR() then DAE.OR(inType); | |
| 1200 | 1743 | case DAE.NOT() then DAE.NOT(inType); | |
| 1201 | case DAE.LESS() then inOp; | ||
| 1202 | case DAE.LESSEQ() then inOp; | ||
| 1203 | case DAE.GREATER() then inOp; | ||
| 1204 | case DAE.GREATEREQ() then inOp; | ||
| 1205 | case DAE.EQUAL() then inOp; | ||
| 1206 | case DAE.NEQUAL() then inOp; | ||
| 1207 | case DAE.USERDEFINED() then inOp; | ||
| 1208 | else | ||
| 1209 | algorithm | ||
| 1210 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 1211 | ✗ | Debug.traceln("- Expression.setOpType failed on unknown operator"); | |
| 1212 | ✗ | then | |
| 1213 | fail(); | ||
| 1214 | end match; | ||
| 1215 | end setOpType; | ||
| 1216 | |||
| 1217 | public function unliftOperator | ||
| 1218 | "Unlifts the type of an operator by removing one dimension from the operator | ||
| 1219 | type. The operator is changed to the scalar version if the type becomes a | ||
| 1220 | scalar type." | ||
| 1221 | input DAE.Operator inOperator; | ||
| 1222 | output DAE.Operator outOperator; | ||
| 1223 | protected | ||
| 1224 | Type ty; | ||
| 1225 | algorithm | ||
| 1226 | 9077 | ty := typeofOp(inOperator); | |
| 1227 | 9077 | ty := unliftArray(ty); | |
| 1228 | 9077 | outOperator := unliftOperator2(inOperator, ty); | |
| 1229 | end unliftOperator; | ||
| 1230 | |||
| 1231 | public function unliftOperatorX | ||
| 1232 | "Unlifts the type of an operator by removing X dimensions from the operator | ||
| 1233 | type. The operator is changed to the scalar version if the type becomes a | ||
| 1234 | scalar type." | ||
| 1235 | input DAE.Operator inOperator; | ||
| 1236 | input Integer inX; | ||
| 1237 | output DAE.Operator outOperator; | ||
| 1238 | protected | ||
| 1239 | Type ty; | ||
| 1240 | algorithm | ||
| 1241 | 154 | ty := typeofOp(inOperator); | |
| 1242 | 154 | ty := unliftArrayX(ty, inX); | |
| 1243 | 154 | outOperator := unliftOperator2(inOperator, ty); | |
| 1244 | end unliftOperatorX; | ||
| 1245 | |||
| 1246 | protected function unliftOperator2 | ||
| 1247 | "Helper function to unliftOperator. Sets the type of the given operator, and | ||
| 1248 | changes the operator to the scalar version if the type is scalar." | ||
| 1249 | input DAE.Operator inOperator; | ||
| 1250 | input DAE.Type inType; | ||
| 1251 | output DAE.Operator outOperator; | ||
| 1252 | algorithm | ||
| 1253 | outOperator := match inType | ||
| 1254 | 147 | case DAE.T_ARRAY() then setOpType(inOperator, inType); | |
| 1255 | 9084 | else makeScalarOpFromArrayOp(inOperator, inType); | |
| 1256 | end match; | ||
| 1257 | end unliftOperator2; | ||
| 1258 | |||
| 1259 | protected function makeScalarOpFromArrayOp | ||
| 1260 | "Helper function to makeScalarOpFromArrayOp. Returns the scalar version of a | ||
| 1261 | given array operator." | ||
| 1262 | input DAE.Operator inOperator; | ||
| 1263 | input DAE.Type inType; | ||
| 1264 | output DAE.Operator outOperator; | ||
| 1265 | algorithm | ||
| 1266 | outOperator := match inOperator | ||
| 1267 | 7879 | case DAE.MUL_ARRAY_SCALAR() then DAE.MUL(inType); | |
| 1268 | 8 | case DAE.ADD_ARRAY_SCALAR() then DAE.ADD(inType); | |
| 1269 | 6 | case DAE.SUB_SCALAR_ARRAY() then DAE.SUB(inType); | |
| 1270 | 1058 | case DAE.DIV_ARRAY_SCALAR() then DAE.DIV(inType); | |
| 1271 | 1 | case DAE.DIV_SCALAR_ARRAY() then DAE.DIV(inType); | |
| 1272 | 131 | case DAE.POW_ARRAY_SCALAR() then DAE.POW(inType); | |
| 1273 | 1 | case DAE.POW_SCALAR_ARRAY() then DAE.POW(inType); | |
| 1274 | ✗ | case DAE.UMINUS_ARR() then DAE.UMINUS(inType); | |
| 1275 | ✗ | case DAE.ADD_ARR() then DAE.ADD(inType); | |
| 1276 | ✗ | case DAE.SUB_ARR() then DAE.SUB(inType); | |
| 1277 | ✗ | case DAE.MUL_ARR() then DAE.MUL(inType); | |
| 1278 | ✗ | case DAE.DIV_ARR() then DAE.DIV(inType); | |
| 1279 | else inOperator; | ||
| 1280 | end match; | ||
| 1281 | end makeScalarOpFromArrayOp; | ||
| 1282 | |||
| 1283 | public function isScalarArrayOp | ||
| 1284 | "Returns true if the operator takes a scalar and an array as arguments." | ||
| 1285 | input DAE.Operator inOperator; | ||
| 1286 | output Boolean outIsScalarArrayOp; | ||
| 1287 | algorithm | ||
| 1288 | outIsScalarArrayOp := match inOperator | ||
| 1289 | case DAE.SUB_SCALAR_ARRAY() then true; | ||
| 1290 | case DAE.DIV_SCALAR_ARRAY() then true; | ||
| 1291 | case DAE.POW_SCALAR_ARRAY() then true; | ||
| 1292 | else false; | ||
| 1293 | end match; | ||
| 1294 | end isScalarArrayOp; | ||
| 1295 | |||
| 1296 | public function isArrayScalarOp | ||
| 1297 | "Returns true if the operator takes an array and a scalar as arguments." | ||
| 1298 | input DAE.Operator inOperator; | ||
| 1299 | output Boolean outIsArrayScalarOp; | ||
| 1300 | algorithm | ||
| 1301 | outIsArrayScalarOp := match inOperator | ||
| 1302 | case DAE.MUL_ARRAY_SCALAR() then true; | ||
| 1303 | case DAE.ADD_ARRAY_SCALAR() then true; | ||
| 1304 | case DAE.DIV_ARRAY_SCALAR() then true; | ||
| 1305 | case DAE.POW_ARRAY_SCALAR() then true; | ||
| 1306 | else false; | ||
| 1307 | end match; | ||
| 1308 | end isArrayScalarOp; | ||
| 1309 | |||
| 1310 | public function subscriptsAppend | ||
| 1311 | "This function takes a subscript list and adds a new subscript. | ||
| 1312 | But there are a few special cases. When the last existing | ||
| 1313 | subscript is a slice, it is replaced by the slice indexed by | ||
| 1314 | the new subscript." | ||
| 1315 | input list<DAE.Subscript> inSubscriptLst; | ||
| 1316 | input DAE.Exp inSubscript; | ||
| 1317 | output list<DAE.Subscript> outSubscriptLst; | ||
| 1318 | algorithm | ||
| 1319 | outSubscriptLst := match inSubscriptLst | ||
| 1320 | local | ||
| 1321 | DAE.Exp e_1,e; | ||
| 1322 | Subscript s; | ||
| 1323 | list<DAE.Subscript> ss_1,ss; | ||
| 1324 | |||
| 1325 | 26718 | case {} then {DAE.INDEX(inSubscript)}; | |
| 1326 | 96 | case DAE.WHOLEDIM() :: ss then DAE.INDEX(inSubscript) :: ss; | |
| 1327 | |||
| 1328 | case {DAE.SLICE(exp = e)} | ||
| 1329 | algorithm | ||
| 1330 | 4 | (e_1,_) := ExpressionSimplify.simplify1(makeASUB(e,{inSubscript})); | |
| 1331 | 4 | then | |
| 1332 | {DAE.INDEX(e_1)}; | ||
| 1333 | |||
| 1334 | 26343 | case {(s as DAE.INDEX())} then {s,DAE.INDEX(inSubscript)}; | |
| 1335 | |||
| 1336 | case s :: ss | ||
| 1337 | algorithm | ||
| 1338 | 103 | ss_1 := subscriptsAppend(ss, inSubscript); | |
| 1339 | then | ||
| 1340 | (s :: ss_1); | ||
| 1341 | end match; | ||
| 1342 | end subscriptsAppend; | ||
| 1343 | |||
| 1344 | public function subscriptsReplaceSlice | ||
| 1345 | "Replaces the first slice subscript in the given list with the given subscript." | ||
| 1346 | input list<DAE.Subscript> inSubscripts; | ||
| 1347 | input DAE.Subscript inSubscript; | ||
| 1348 | output list<DAE.Subscript> outSubscripts; | ||
| 1349 | algorithm | ||
| 1350 | outSubscripts := match inSubscripts | ||
| 1351 | local | ||
| 1352 | list<DAE.Subscript> rest_subs; | ||
| 1353 | DAE.Subscript sub; | ||
| 1354 | |||
| 1355 | case DAE.WHOLEDIM() :: rest_subs then inSubscript :: rest_subs; | ||
| 1356 | case DAE.SLICE() :: rest_subs then inSubscript :: rest_subs; | ||
| 1357 | case sub :: rest_subs | ||
| 1358 | algorithm | ||
| 1359 | 8656 | rest_subs := subscriptsReplaceSlice(rest_subs, inSubscript); | |
| 1360 | then | ||
| 1361 | sub :: rest_subs; | ||
| 1362 | |||
| 1363 | end match; | ||
| 1364 | end subscriptsReplaceSlice; | ||
| 1365 | |||
| 1366 | public function unliftArrayTypeWithSubs " | ||
| 1367 | helper function for renameVarsToUnderlineVar2 unlifts array type as much as we have subscripts" | ||
| 1368 | input list<DAE.Subscript> subs; | ||
| 1369 | input DAE.Type ity; | ||
| 1370 | output DAE.Type oty; | ||
| 1371 | algorithm | ||
| 1372 | oty := match(subs,ity) | ||
| 1373 | local | ||
| 1374 | list<DAE.Subscript> rest; | ||
| 1375 | Type ty; | ||
| 1376 | |||
| 1377 | case({},ty) then ty; | ||
| 1378 | |||
| 1379 | case(_::rest, ty) | ||
| 1380 | algorithm | ||
| 1381 | 1419525 | ty := unliftArray(ty); | |
| 1382 | 1419525 | ty := unliftArrayTypeWithSubs(rest,ty); | |
| 1383 | then | ||
| 1384 | ty; | ||
| 1385 | end match; | ||
| 1386 | end unliftArrayTypeWithSubs; | ||
| 1387 | |||
| 1388 | public function unliftArrayX "Function: unliftArrayX | ||
| 1389 | Unlifts a type with X dimensions..." | ||
| 1390 | input DAE.Type inType; | ||
| 1391 | input Integer x; | ||
| 1392 | output DAE.Type outType; | ||
| 1393 | algorithm | ||
| 1394 | outType := match x | ||
| 1395 | local Type ty; | ||
| 1396 | |||
| 1397 | case 0 then inType; | ||
| 1398 | else | ||
| 1399 | algorithm | ||
| 1400 | 82866 | ty := unliftArray(inType); | |
| 1401 | 82866 | then | |
| 1402 | unliftArrayX(ty,x-1); | ||
| 1403 | end match; | ||
| 1404 | end unliftArrayX; | ||
| 1405 | |||
| 1406 | public function arrayAppend | ||
| 1407 | "Appends a new element to a DAE.ARRAY." | ||
| 1408 | input DAE.Exp head; | ||
| 1409 | input DAE.Exp rest; | ||
| 1410 | output DAE.Exp array; | ||
| 1411 | algorithm | ||
| 1412 | array := match rest | ||
| 1413 | local | ||
| 1414 | DAE.Type ty; | ||
| 1415 | Boolean scalar; | ||
| 1416 | list<DAE.Exp> expl; | ||
| 1417 | Integer dim; | ||
| 1418 | DAE.Dimensions dims; | ||
| 1419 | |||
| 1420 | case DAE.ARRAY( | ||
| 1421 | DAE.T_ARRAY(ty = ty, dims = DAE.DIM_INTEGER(dim) :: dims), | ||
| 1422 | scalar, | ||
| 1423 | expl) | ||
| 1424 | algorithm | ||
| 1425 | ✗ | dim := dim + 1; | |
| 1426 | ✗ | dims := DAE.DIM_INTEGER(dim) :: dims; | |
| 1427 | ✗ | then | |
| 1428 | DAE.ARRAY(DAE.T_ARRAY(ty, dims), scalar, head :: expl); | ||
| 1429 | |||
| 1430 | else | ||
| 1431 | algorithm | ||
| 1432 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 1433 | ✗ | Debug.traceln("- Expression.arrayAppend failed."); | |
| 1434 | ✗ | then | |
| 1435 | fail(); | ||
| 1436 | end match; | ||
| 1437 | end arrayAppend; | ||
| 1438 | |||
| 1439 | |||
| 1440 | public function arrayDimensionSetFirst | ||
| 1441 | "Updates the first dimension of an array type." | ||
| 1442 | input DAE.Type inArrayType; | ||
| 1443 | input DAE.Dimension dimension; | ||
| 1444 | output DAE.Type outArrayType; | ||
| 1445 | algorithm | ||
| 1446 | outArrayType := match inArrayType | ||
| 1447 | local | ||
| 1448 | DAE.Type ty; | ||
| 1449 | DAE.Dimensions rest_dims; | ||
| 1450 | |||
| 1451 | case DAE.T_ARRAY(ty = ty, dims = _ :: rest_dims) | ||
| 1452 | 26145 | then DAE.T_ARRAY(ty, dimension :: rest_dims); | |
| 1453 | end match; | ||
| 1454 | end arrayDimensionSetFirst; | ||
| 1455 | |||
| 1456 | /***************************************************/ | ||
| 1457 | /* Getter */ | ||
| 1458 | /***************************************************/ | ||
| 1459 | |||
| 1460 | public function toReal | ||
| 1461 | "Returns the value of a constant Real expression." | ||
| 1462 | input DAE.Exp inExp; | ||
| 1463 | output Real outReal; | ||
| 1464 | algorithm | ||
| 1465 | outReal := match inExp | ||
| 1466 | 95052 | case DAE.RCONST() then inExp.real; | |
| 1467 | 17124 | case DAE.ICONST() then intReal(inExp.integer); | |
| 1468 | 2 | case DAE.CAST() then toReal(inExp.exp); | |
| 1469 | 2340 | case DAE.ENUM_LITERAL() then intReal(inExp.index); | |
| 1470 | end match; | ||
| 1471 | end toReal; | ||
| 1472 | |||
| 1473 | public function toBool | ||
| 1474 | "Returns the value of a constant Boolean expression." | ||
| 1475 | input DAE.Exp inExp; | ||
| 1476 | output Boolean outBool; | ||
| 1477 | algorithm | ||
| 1478 |
2/2✓ Branch 0 taken 33762 times.
✓ Branch 1 taken 3905 times.
|
37667 | DAE.BCONST(outBool) := inExp; |
| 1479 | end toBool; | ||
| 1480 | |||
| 1481 | public function realExpIntLit "returns the int value if expression is constant Real that can be represented by an Integer" | ||
| 1482 | input DAE.Exp exp; | ||
| 1483 | output Option<Integer> oi; | ||
| 1484 | algorithm | ||
| 1485 | oi := match exp | ||
| 1486 | local | ||
| 1487 | Real r; | ||
| 1488 | Integer i; | ||
| 1489 | Option<Integer> op; | ||
| 1490 | case DAE.RCONST(real = r) | ||
| 1491 | algorithm | ||
| 1492 | 158671 | i := realInt(r); | |
| 1493 |
2/2✓ Branch 0 taken 156970 times.
✓ Branch 1 taken 1701 times.
|
158671 | op := if realEq(r,intReal(i)) then SOME(i) else NONE(); |
| 1494 | then op; | ||
| 1495 | else NONE(); | ||
| 1496 | end match; | ||
| 1497 | end realExpIntLit; | ||
| 1498 | |||
| 1499 | public function expInt "returns the int value if expression is constant Integer" | ||
| 1500 | input DAE.Exp exp; | ||
| 1501 | output Integer i; | ||
| 1502 | algorithm | ||
| 1503 | i := match exp | ||
| 1504 | 1828550 | case DAE.ICONST() then exp.integer; | |
| 1505 | 7258 | case DAE.ENUM_LITERAL() then exp.index; | |
| 1506 |
2/2✓ Branch 0 taken 9 times.
✓ Branch 1 taken 6 times.
|
15 | case DAE.BCONST() then if exp.bool then 1 else 0; |
| 1507 | end match; | ||
| 1508 | end expInt; | ||
| 1509 | |||
| 1510 | public function getClockInterval | ||
| 1511 | "Returns a real interval expression for any clock kind; 0.0 if unknown." | ||
| 1512 | input DAE.ClockKind inClk; | ||
| 1513 | output DAE.Exp outIntvl; | ||
| 1514 | protected | ||
| 1515 | DAE.Exp e, e2; | ||
| 1516 | algorithm | ||
| 1517 | outIntvl := match inClk | ||
| 1518 | case DAE.REAL_CLOCK(e) | ||
| 1519 | then e; | ||
| 1520 | case DAE.RATIONAL_CLOCK(e, e2) | ||
| 1521 | 3 | then DAE.BINARY( | |
| 1522 | DAE.CAST(DAE.T_REAL_DEFAULT, e), | ||
| 1523 | DAE.DIV(DAE.T_REAL_DEFAULT), | ||
| 1524 | DAE.CAST(DAE.T_REAL_DEFAULT, e2)); | ||
| 1525 | case DAE.EVENT_CLOCK(e, e2) | ||
| 1526 | then e2; // startInterval | ||
| 1527 | else | ||
| 1528 | then DAE.RCONST(0.0); | ||
| 1529 | end match; | ||
| 1530 | end getClockInterval; | ||
| 1531 | |||
| 1532 | public function sconstEnumNameString | ||
| 1533 | input DAE.Exp exp; | ||
| 1534 | output String str; | ||
| 1535 | algorithm | ||
| 1536 | str := match exp | ||
| 1537 | local | ||
| 1538 | String s; | ||
| 1539 | Absyn.Path name; | ||
| 1540 | case DAE.SCONST(s) then s; | ||
| 1541 | 558 | case DAE.ENUM_LITERAL(name) then AbsynUtil.pathString(name); | |
| 1542 | end match; | ||
| 1543 | end sconstEnumNameString; | ||
| 1544 | |||
| 1545 | public function varName "Returns the name of a Var" | ||
| 1546 | input DAE.Var v; | ||
| 1547 | output String name; | ||
| 1548 | algorithm | ||
| 1549 | name := match v | ||
| 1550 | case DAE.TYPES_VAR(name = name) then name; | ||
| 1551 | end match; | ||
| 1552 | end varName; | ||
| 1553 | |||
| 1554 | public function varType "Returns the type of a Var" | ||
| 1555 | input DAE.Var v; | ||
| 1556 | output DAE.Type tp; | ||
| 1557 | algorithm | ||
| 1558 | tp := match v | ||
| 1559 | case DAE.TYPES_VAR(ty = tp) then tp; | ||
| 1560 | end match; | ||
| 1561 | end varType; | ||
| 1562 | |||
| 1563 | public function expOrDerCref | ||
| 1564 | "Returns the componentref if DAE.Exp is a CREF or DER(CREF)" | ||
| 1565 | input DAE.Exp inExp; | ||
| 1566 | output DAE.ComponentRef outComponentRef; | ||
| 1567 | output Boolean isDer; | ||
| 1568 | algorithm | ||
| 1569 | (outComponentRef, isDer) := | ||
| 1570 | match inExp | ||
| 1571 | local ComponentRef cr; | ||
| 1572 | case DAE.CREF(componentRef = cr) then (cr, false); | ||
| 1573 | case DAE.CALL(path = Absyn.IDENT(name = "der"),expLst={DAE.CREF(cr,_)}) then (cr, true); | ||
| 1574 | end match; | ||
| 1575 | end expOrDerCref; | ||
| 1576 | |||
| 1577 | public function expCref | ||
| 1578 | "Returns the componentref if DAE.Exp is a CREF," | ||
| 1579 | input DAE.Exp inExp; | ||
| 1580 | output DAE.ComponentRef outComponentRef; | ||
| 1581 | algorithm | ||
| 1582 | outComponentRef:= | ||
| 1583 | match inExp | ||
| 1584 | local ComponentRef cr; | ||
| 1585 | case DAE.CREF(componentRef = cr) then cr; | ||
| 1586 | end match; | ||
| 1587 | end expCref; | ||
| 1588 | |||
| 1589 | public function expCrefNegCref | ||
| 1590 | "Returns the componentref if DAE.Exp is a CREF or -CREF" | ||
| 1591 | input DAE.Exp inExp; | ||
| 1592 | output DAE.ComponentRef outComponentRef; | ||
| 1593 | algorithm | ||
| 1594 | outComponentRef:= | ||
| 1595 | match inExp | ||
| 1596 | local ComponentRef cr; | ||
| 1597 | case DAE.CREF(componentRef = cr) then cr; | ||
| 1598 | case DAE.UNARY(DAE.UMINUS(_),DAE.CREF(componentRef = cr)) then cr; | ||
| 1599 | case DAE.UNARY(DAE.UMINUS_ARR(_),DAE.CREF(componentRef = cr)) then cr; | ||
| 1600 | end match; | ||
| 1601 | end expCrefNegCref; | ||
| 1602 | |||
| 1603 | public function expCrefTuple | ||
| 1604 | "Returns the componentref if the expression in inTuple is a CREF." | ||
| 1605 | input tuple<DAE.Exp, Boolean> inTuple; | ||
| 1606 | output DAE.ComponentRef outComponentRef; | ||
| 1607 | algorithm | ||
| 1608 | outComponentRef:= | ||
| 1609 | match inTuple | ||
| 1610 | local ComponentRef cr; | ||
| 1611 | case (DAE.CREF(componentRef = cr),_) then cr; | ||
| 1612 | end match; | ||
| 1613 | end expCrefTuple; | ||
| 1614 | |||
| 1615 | public function expCrefInclIfExpFactors | ||
| 1616 | "Returns the componentref if DAE.Exp is a CREF, or the factors of CREF if expression is an if expression. | ||
| 1617 | This is used in e.g. the tearing algorithm to detect potential division by zero in | ||
| 1618 | expressions like 1/(if b then 1.0 else x) which could lead to division by zero if b is false and x is 0; " | ||
| 1619 | input DAE.Exp inExp; | ||
| 1620 | output list<DAE.ComponentRef> outComponentRefs; | ||
| 1621 | algorithm | ||
| 1622 | outComponentRefs:= | ||
| 1623 | match inExp | ||
| 1624 | local ComponentRef cr; DAE.Exp tb,fb; | ||
| 1625 | list<DAE.Exp> f; | ||
| 1626 | list<DAE.ComponentRef> crefs; | ||
| 1627 | case DAE.CREF(componentRef = cr) then {cr}; | ||
| 1628 | case DAE.IFEXP(_,tb,fb) algorithm | ||
| 1629 | ✗ | f := List.select(listAppend(factors(tb),factors(fb)),isCref); | |
| 1630 | ✗ | crefs := List.map(f,expCref); | |
| 1631 | then crefs; | ||
| 1632 | end match; | ||
| 1633 | end expCrefInclIfExpFactors; | ||
| 1634 | |||
| 1635 | public function getArrayContents "returns the list of expressions in the array" | ||
| 1636 | input DAE.Exp e; | ||
| 1637 | output list<DAE.Exp> es; | ||
| 1638 | algorithm | ||
| 1639 |
2/2✓ Branch 0 taken 8031 times.
✓ Branch 1 taken 169 times.
|
8200 | DAE.ARRAY(array=es) := e; |
| 1640 | end getArrayContents; | ||
| 1641 | |||
| 1642 | public function getArrayOrMatrixContents | ||
| 1643 | "Returns the contents of an array or matrix as a list of expressions." | ||
| 1644 | input DAE.Exp inExp; | ||
| 1645 | output list<DAE.Exp> outContents; | ||
| 1646 | algorithm | ||
| 1647 | outContents := match inExp | ||
| 1648 | local | ||
| 1649 | list<DAE.Exp> expl; | ||
| 1650 | list<list<DAE.Exp>> mat; | ||
| 1651 | DAE.Type ty, el_ty; | ||
| 1652 | DAE.Dimensions dims; | ||
| 1653 | Boolean sc; | ||
| 1654 | |||
| 1655 | case DAE.ARRAY(array = expl) then expl; | ||
| 1656 | case DAE.MATRIX(ty = DAE.T_ARRAY(el_ty, _ :: dims), matrix = mat) | ||
| 1657 | algorithm | ||
| 1658 | 107 | ty := DAE.T_ARRAY(el_ty, dims); | |
| 1659 | 107 | sc := Types.basicType(el_ty); | |
| 1660 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 107 times.
|
107 | then |
| 1661 | List.map2(mat, makeArray, ty, sc); | ||
| 1662 | |||
| 1663 | end match; | ||
| 1664 | end getArrayOrMatrixContents; | ||
| 1665 | |||
| 1666 | public function expandArray | ||
| 1667 | input DAE.Exp exp; | ||
| 1668 | output list<DAE.Exp> contents; | ||
| 1669 | algorithm | ||
| 1670 | contents := match exp | ||
| 1671 |
4/4✓ Branch 1 taken 327 times.
✓ Branch 2 taken 110 times.
✓ Branch 3 taken 327 times.
✓ Branch 4 taken 110 times.
|
437 | case DAE.ARRAY() then listAppend(expandArray(e) for e in listReverse(exp.array)); |
| 1672 | ✗ | case DAE.MATRIX() then getArrayOrMatrixContents(exp); | |
| 1673 | else {exp}; | ||
| 1674 | end match; | ||
| 1675 | end expandArray; | ||
| 1676 | |||
| 1677 | protected function makeASUBsForDimension"makes all asubs for the complete dimension of the exp." | ||
| 1678 | input DAE.Exp eIn; | ||
| 1679 | output list<DAE.Exp> eLstOut={}; | ||
| 1680 | protected | ||
| 1681 | Integer size; | ||
| 1682 | DAE.Dimensions dims; | ||
| 1683 | algorithm | ||
| 1684 | 3 | dims := expDimensions(eIn); | |
| 1685 | try | ||
| 1686 | ✗ | {DAE.DIM_INTEGER(integer=size)} := dims; | |
| 1687 | ✗ | for i in size:-1:1 loop | |
| 1688 | ✗ | eLstOut := makeASUBSingleSub(eIn,DAE.ICONST(i))::eLstOut; | |
| 1689 | end for; | ||
| 1690 | else | ||
| 1691 | eLstOut := {}; | ||
| 1692 | end try; | ||
| 1693 | end makeASUBsForDimension; | ||
| 1694 | |||
| 1695 | public function getComplexContents "returns the list of expressions from a complex structure like array,record,call,tuple... | ||
| 1696 | author:Waurich TUD 2014-04" | ||
| 1697 | input DAE.Exp e; | ||
| 1698 | output list<DAE.Exp> es; | ||
| 1699 | algorithm | ||
| 1700 | es := matchcontinue e | ||
| 1701 | local | ||
| 1702 | Boolean noArr; | ||
| 1703 | DAE.Exp exp, exp1, exp2; | ||
| 1704 | DAE.Type ty; | ||
| 1705 | list<DAE.Exp> expLst, expLst1, expLst2; | ||
| 1706 | list<list<DAE.Exp>> expLstLst; | ||
| 1707 | case DAE.CREF() | ||
| 1708 | algorithm | ||
| 1709 | 418401 | expLst := arrayElements(e); | |
| 1710 | 418401 | noArr := listLength(expLst)==1; | |
| 1711 | 418401 | exp := listHead(expLst); | |
| 1712 |
4/4✓ Branch 0 taken 417224 times.
✓ Branch 1 taken 1117 times.
✓ Branch 3 taken 417201 times.
✓ Branch 4 taken 23 times.
|
418341 | noArr := noArr and ExpressionBasics.expEqual(exp,e); |
| 1713 | expLst := if noArr then {} else expLst; | ||
| 1714 | then | ||
| 1715 | expLst; | ||
| 1716 | |||
| 1717 | case DAE.BINARY(exp1=exp1,operator=DAE.ADD_ARR(),exp2=exp2) | ||
| 1718 | algorithm | ||
| 1719 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 3 times.
|
3 | if isArray(exp1) then |
| 1720 | ✗ | expLst1 := getComplexContents(exp1); | |
| 1721 | else | ||
| 1722 | 3 | expLst1 := makeASUBsForDimension(exp1); | |
| 1723 | end if; | ||
| 1724 | ✗ | if isArray(exp2) then | |
| 1725 | ✗ | expLst2 := getComplexContents(exp2); | |
| 1726 | else | ||
| 1727 | ✗ | expLst2 := makeASUBsForDimension(exp2); | |
| 1728 | end if; | ||
| 1729 | //print("complexed expLst1:\n"+ExpressionDump.printExpListStr(expLst1)+"\n"); | ||
| 1730 | //print("complexed expLst2:\n"+ExpressionDump.printExpListStr(expLst2)+"\n"); | ||
| 1731 | ✗ | ty := typeof(listHead(expLst1)); | |
| 1732 | ✗ | expLst := List.threadMap(expLst1,expLst2,function makeBinaryExp(inOp=DAE.ADD(ty))); | |
| 1733 | then | ||
| 1734 | expLst; | ||
| 1735 | |||
| 1736 | case DAE.CALL(expLst=expLst) | ||
| 1737 | algorithm | ||
| 1738 | 22068 | expLstLst := List.map(expLst,getComplexContentsInCall); | |
| 1739 | 22068 | expLst := List.flatten(expLstLst); | |
| 1740 | then | ||
| 1741 | expLst; | ||
| 1742 | case DAE.RECORD(exps=expLst) | ||
| 1743 | algorithm | ||
| 1744 | 4262 | expLstLst := List.map(expLst,getComplexContentsInCall); | |
| 1745 | 4262 | expLst := List.flatten(expLstLst); | |
| 1746 | then | ||
| 1747 | expLst; | ||
| 1748 | case DAE.ARRAY() | ||
| 1749 | algorithm | ||
| 1750 | 2887 | expLst := arrayElements(e); | |
| 1751 | then | ||
| 1752 | expLst; | ||
| 1753 | case DAE.MATRIX(matrix=expLstLst) | ||
| 1754 | algorithm | ||
| 1755 | 833 | expLst := List.flatten(expLstLst); | |
| 1756 | then | ||
| 1757 | expLst; | ||
| 1758 | case DAE.TUPLE(PR=expLst) | ||
| 1759 | then | ||
| 1760 | expLst; | ||
| 1761 | case DAE.CAST(exp=exp) | ||
| 1762 | algorithm | ||
| 1763 | 14 | expLst := getComplexContents(exp); | |
| 1764 | then | ||
| 1765 | expLst; | ||
| 1766 | case DAE.ASUB(exp=exp) | ||
| 1767 | algorithm | ||
| 1768 | ✗ | expLst := getComplexContents(exp); | |
| 1769 | then | ||
| 1770 | expLst; | ||
| 1771 | else {}; | ||
| 1772 | end matchcontinue; | ||
| 1773 | end getComplexContents; | ||
| 1774 | |||
| 1775 | protected function getComplexContentsInCall"gets the scalars for the complex expressions inside a function call" | ||
| 1776 | input DAE.Exp expIn; | ||
| 1777 | output list<DAE.Exp> expsOut; | ||
| 1778 | protected | ||
| 1779 | list<DAE.Exp> expLst; | ||
| 1780 | algorithm | ||
| 1781 | 87290 | expLst := getComplexContents(expIn); | |
| 1782 |
2/2✓ Branch 0 taken 83595 times.
✓ Branch 1 taken 3695 times.
|
87290 | expsOut := if listEmpty(expLst) then {expIn} else expLst; |
| 1783 | end getComplexContentsInCall; | ||
| 1784 | |||
| 1785 | public function getArrayOrRangeContents "returns the list of expressions in the array" | ||
| 1786 | input DAE.Exp e; | ||
| 1787 | output list<DAE.Exp> es; | ||
| 1788 | algorithm | ||
| 1789 | es := match e | ||
| 1790 | local | ||
| 1791 | Boolean bstart,bstop; | ||
| 1792 | Integer istart,istep,istop; | ||
| 1793 | Real rstart,rstep,rstop; | ||
| 1794 | list<list<DAE.Exp>> matrix; | ||
| 1795 | DAE.Type ty; | ||
| 1796 | case DAE.ARRAY(array=es) then es; | ||
| 1797 | case DAE.MATRIX(matrix=matrix,ty=ty) | ||
| 1798 | algorithm | ||
| 1799 | ✗ | ty := Types.unliftArray(ty); | |
| 1800 | ✗ | es := List.map2(matrix,makeArray,ty,not Types.arrayType(ty)); | |
| 1801 | then es; | ||
| 1802 | case DAE.CREF(ty=DAE.T_ARRAY(dims=DAE.DIM_INTEGER(istop)::_)) | ||
| 1803 | algorithm | ||
| 1804 | 30 | es := List.map(ExpressionSimplify.simplifyRange(1,1,istop), makeIntegerExp); | |
| 1805 | 30 | es := List.map1r(es, makeASUBSingleSub, e); | |
| 1806 | then es; | ||
| 1807 | case DAE.RANGE(start = DAE.BCONST(bstart), step = NONE(), stop = DAE.BCONST(bstop)) | ||
| 1808 | ✗ | then List.map(ExpressionSimplify.simplifyRangeBool(bstart, bstop), makeBoolExp); | |
| 1809 | |||
| 1810 | case DAE.RANGE(start = DAE.ICONST(istart), step = NONE(), stop = DAE.ICONST(istop)) | ||
| 1811 | 392 | then List.map(ExpressionSimplify.simplifyRange(istart,1,istop), makeIntegerExp); | |
| 1812 | |||
| 1813 | case DAE.RANGE(start = DAE.ICONST(istart), step = SOME(DAE.ICONST(istep)), stop = DAE.ICONST(istop)) | ||
| 1814 | ✗ | then List.map(ExpressionSimplify.simplifyRange(istart,istep,istop), makeIntegerExp); | |
| 1815 | |||
| 1816 | case DAE.RANGE(start = DAE.RCONST(rstart), step = NONE(), stop = DAE.RCONST(rstop)) | ||
| 1817 | ✗ | then List.map(ExpressionSimplify.simplifyRangeReal(rstart,1.0,rstop), makeRealExp); | |
| 1818 | |||
| 1819 | case DAE.RANGE(start = DAE.RCONST(rstart), step = SOME(DAE.RCONST(rstep)), stop = DAE.RCONST(rstop)) | ||
| 1820 | ✗ | then List.map(ExpressionSimplify.simplifyRangeReal(rstart,rstep,rstop), makeRealExp); | |
| 1821 | end match; | ||
| 1822 | end getArrayOrRangeContents; | ||
| 1823 | |||
| 1824 | public function get2dArrayOrMatrixContent "returns the list of expressions in the array" | ||
| 1825 | input DAE.Exp e; | ||
| 1826 | output list<list<DAE.Exp>> outExps; | ||
| 1827 | algorithm | ||
| 1828 | outExps := match e | ||
| 1829 | local | ||
| 1830 | list<DAE.Exp> es; | ||
| 1831 | list<list<DAE.Exp>> ess; | ||
| 1832 | 8076 | case DAE.ARRAY(array=es) then List.map(es,getArrayContents); | |
| 1833 | case DAE.MATRIX(matrix=ess) then ess; | ||
| 1834 | end match; | ||
| 1835 | end get2dArrayOrMatrixContent; | ||
| 1836 | |||
| 1837 | // stefan | ||
| 1838 | public function unboxExpType | ||
| 1839 | "takes a type, and if it is boxed, unbox it | ||
| 1840 | otherwise return the given type" | ||
| 1841 | input DAE.Type inType; | ||
| 1842 | output DAE.Type outType; | ||
| 1843 | algorithm | ||
| 1844 | outType := match inType | ||
| 1845 | local | ||
| 1846 | Type ty; | ||
| 1847 | case DAE.T_METABOXED(ty = ty) then ty; | ||
| 1848 | else inType; | ||
| 1849 | end match; | ||
| 1850 | end unboxExpType; | ||
| 1851 | |||
| 1852 | public function unboxExp | ||
| 1853 | "takes an expression and unboxes it if it is boxed" | ||
| 1854 | input DAE.Exp ie; | ||
| 1855 | output DAE.Exp outExp; | ||
| 1856 | algorithm | ||
| 1857 | outExp := match ie | ||
| 1858 | local | ||
| 1859 | DAE.Exp e; | ||
| 1860 | 97 | case DAE.BOX(e) then unboxExp(e); | |
| 1861 | else ie; | ||
| 1862 | end match; | ||
| 1863 | end unboxExp; | ||
| 1864 | |||
| 1865 | public function boxExp | ||
| 1866 | "takes an expression and boxes it" | ||
| 1867 | input DAE.Exp e; | ||
| 1868 | output DAE.Exp outExp; | ||
| 1869 | algorithm | ||
| 1870 | outExp := match e | ||
| 1871 | case DAE.BOX(_) then e; | ||
| 1872 | 36346 | else DAE.BOX(e); | |
| 1873 | end match; | ||
| 1874 | end boxExp; | ||
| 1875 | |||
| 1876 | public function getSubscriptExp | ||
| 1877 | "Returns the subscript expression, or fails on DAE.WHOLEDIM." | ||
| 1878 | input DAE.Subscript inSubscript; | ||
| 1879 | output DAE.Exp outExp; | ||
| 1880 | algorithm | ||
| 1881 | outExp := match inSubscript | ||
| 1882 | local DAE.Exp e; | ||
| 1883 | |||
| 1884 | case DAE.SLICE(exp = e) then e; | ||
| 1885 | case DAE.INDEX(exp = e) then e; | ||
| 1886 | case DAE.WHOLE_NONEXP(exp = e) then e; | ||
| 1887 | end match; | ||
| 1888 | end getSubscriptExp; | ||
| 1889 | |||
| 1890 | public function subscriptNonExpandedExp | ||
| 1891 | "Returns the expression in a subscript representing non-expanded array. | ||
| 1892 | If the subscript is not WHOLE_NONEXP the function fails." | ||
| 1893 | input DAE.Subscript inSubscript; | ||
| 1894 | output DAE.Exp outExp; | ||
| 1895 | algorithm | ||
| 1896 | outExp:= | ||
| 1897 | match inSubscript | ||
| 1898 | local DAE.Exp e; | ||
| 1899 | case DAE.WHOLE_NONEXP(exp = e) then e; | ||
| 1900 | end match; | ||
| 1901 | end subscriptNonExpandedExp; | ||
| 1902 | |||
| 1903 | public function subscriptIsFirst | ||
| 1904 | "Returns true if the given subscript is the first index for a dimension, i.e. | ||
| 1905 | 1, false or the first enumeration literal in an enumeration." | ||
| 1906 | input DAE.Subscript inSubscript; | ||
| 1907 | output Boolean outIsFirst; | ||
| 1908 | algorithm | ||
| 1909 | outIsFirst := match inSubscript | ||
| 1910 | case DAE.INDEX(exp=DAE.ICONST(1)) then true; | ||
| 1911 | case DAE.INDEX(exp=DAE.BCONST(false)) then true; | ||
| 1912 | case DAE.INDEX(exp=DAE.ENUM_LITERAL(index=1)) then true; | ||
| 1913 | end match; | ||
| 1914 | end subscriptIsFirst; | ||
| 1915 | |||
| 1916 | public function nthArrayExp "author: PA | ||
| 1917 | Returns the nth expression of an array expression." | ||
| 1918 | input DAE.Exp inExp; | ||
| 1919 | input Integer inInteger; | ||
| 1920 | output DAE.Exp outExp; | ||
| 1921 | algorithm | ||
| 1922 | outExp := matchcontinue inExp | ||
| 1923 | local | ||
| 1924 | DAE.Exp e1, e2, e_1, e_2; | ||
| 1925 | list<DAE.Exp> expl; | ||
| 1926 | Operator op; | ||
| 1927 | Type ty; | ||
| 1928 | |||
| 1929 | case DAE.BINARY(operator=op, exp1=e1, exp2=e2) algorithm | ||
| 1930 | 216 | ty := typeofOp(op); | |
| 1931 |
2/2✓ Branch 1 taken 84 times.
✓ Branch 2 taken 132 times.
|
216 | true := Types.isArray(ty); |
| 1932 | 132 | e_1 := nthArrayExp(e1, inInteger); | |
| 1933 | 132 | e_2 := nthArrayExp(e2, inInteger); | |
| 1934 | 132 | then DAE.BINARY(e_1, op, e_2); | |
| 1935 | |||
| 1936 | case DAE.ARRAY(array=expl) algorithm | ||
| 1937 | 576 | e1 := listGet(expl, inInteger); | |
| 1938 | then e1; | ||
| 1939 | |||
| 1940 | else inExp; | ||
| 1941 | end matchcontinue; | ||
| 1942 | end nthArrayExp; | ||
| 1943 | |||
| 1944 | public function expLastSubs | ||
| 1945 | "Return the last subscripts of a Exp" | ||
| 1946 | input DAE.Exp inExp; | ||
| 1947 | output list<DAE.Subscript> outSubscriptLst; | ||
| 1948 | algorithm | ||
| 1949 | outSubscriptLst:= | ||
| 1950 | match inExp | ||
| 1951 | local | ||
| 1952 | ComponentRef cr; | ||
| 1953 | list<DAE.Subscript> subs; | ||
| 1954 | DAE.Exp e; | ||
| 1955 | |||
| 1956 | case DAE.CREF(componentRef=cr) | ||
| 1957 | algorithm | ||
| 1958 | ✗ | subs := ComponentReference.crefLastSubs(cr); | |
| 1959 | then subs; | ||
| 1960 | |||
| 1961 | case DAE.UNARY(exp=e) | ||
| 1962 | algorithm | ||
| 1963 | ✗ | subs := expLastSubs(e); | |
| 1964 | then subs; | ||
| 1965 | end match; | ||
| 1966 | end expLastSubs; | ||
| 1967 | |||
| 1968 | public function expDimensions | ||
| 1969 | "Tries to return the dimensions from an expression, typically an array." | ||
| 1970 | input DAE.Exp inExp; | ||
| 1971 | output DAE.Dimensions outDims; | ||
| 1972 | algorithm | ||
| 1973 | outDims := match inExp | ||
| 1974 | local | ||
| 1975 | DAE.Type tp; | ||
| 1976 | Exp e; | ||
| 1977 | |||
| 1978 | 9 | case DAE.ARRAY(ty = tp) then arrayDimension(tp); | |
| 1979 | ✗ | case DAE.MATRIX(ty = tp) then arrayDimension(tp); | |
| 1980 | ✗ | case DAE.LUNARY(exp = e) then expDimensions(e); | |
| 1981 | ✗ | case DAE.LBINARY(exp1 = e) then expDimensions(e); | |
| 1982 | ✗ | case DAE.CALL(attr=DAE.CALL_ATTR(ty = tp)) then arrayDimension(tp); | |
| 1983 | |||
| 1984 | end match; | ||
| 1985 | end expDimensions; | ||
| 1986 | |||
| 1987 | public function arrayDimension " | ||
| 1988 | Author BZ | ||
| 1989 | Get dimension of array. | ||
| 1990 | " | ||
| 1991 | input DAE.Type tp; | ||
| 1992 | output DAE.Dimensions dims; | ||
| 1993 | algorithm | ||
| 1994 | dims := match tp | ||
| 1995 | case DAE.T_ARRAY(dims = dims) then dims; | ||
| 1996 | else {}; | ||
| 1997 | end match; | ||
| 1998 | end arrayDimension; | ||
| 1999 | |||
| 2000 | public function arrayTypeDimensions | ||
| 2001 | "Return the array dimensions of a type." | ||
| 2002 | input DAE.Type tp; | ||
| 2003 | output DAE.Dimensions dims; | ||
| 2004 | algorithm | ||
| 2005 | dims := match tp | ||
| 2006 | case DAE.T_ARRAY(dims = dims) then dims; | ||
| 2007 | end match; | ||
| 2008 | end arrayTypeDimensions; | ||
| 2009 | |||
| 2010 | public function subscriptDimensions | ||
| 2011 | "Converts a list of subscript to a list of dimensions." | ||
| 2012 | input list<DAE.Subscript> inSubscripts; | ||
| 2013 | output DAE.Dimensions outDimensions; | ||
| 2014 | algorithm | ||
| 2015 | 40 | outDimensions := List.map(inSubscripts, subscriptDimension); | |
| 2016 | end subscriptDimensions; | ||
| 2017 | |||
| 2018 | public function subscriptDimension | ||
| 2019 | "Converts a subscript to a dimension by interpreting the subscript as a | ||
| 2020 | dimension." | ||
| 2021 | input DAE.Subscript inSubscript; | ||
| 2022 | output DAE.Dimension outDimension; | ||
| 2023 | algorithm | ||
| 2024 | outDimension := match inSubscript | ||
| 2025 | local | ||
| 2026 | Integer x; | ||
| 2027 | DAE.Exp e; | ||
| 2028 | String sub_str; | ||
| 2029 | |||
| 2030 | ✗ | case DAE.INDEX(exp = DAE.ICONST(x)) then DAE.DIM_INTEGER(x); | |
| 2031 | 4 | case DAE.INDEX(exp = e) then DAE.DIM_EXP(e); | |
| 2032 | case DAE.WHOLEDIM() then DAE.DIM_UNKNOWN(); | ||
| 2033 | |||
| 2034 | // Special cases for non-expanded arrays | ||
| 2035 | case DAE.WHOLE_NONEXP(exp = DAE.ICONST(x)) | ||
| 2036 | guard not Config.splitArrays() | ||
| 2037 | ✗ | then | |
| 2038 | DAE.DIM_INTEGER(x); | ||
| 2039 | |||
| 2040 | case DAE.WHOLE_NONEXP(exp=e) | ||
| 2041 | guard not Config.splitArrays() | ||
| 2042 | ✗ | then | |
| 2043 | DAE.DIM_EXP(e); | ||
| 2044 | |||
| 2045 | else | ||
| 2046 | algorithm | ||
| 2047 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 2048 | ✗ | sub_str := ExpressionDump.subscriptString(inSubscript); | |
| 2049 | ✗ | Debug.traceln("- Expression.subscriptDimension failed on " + sub_str); | |
| 2050 | ✗ | then | |
| 2051 | fail(); | ||
| 2052 | |||
| 2053 | end match; | ||
| 2054 | end subscriptDimension; | ||
| 2055 | |||
| 2056 | public function arrayEltType | ||
| 2057 | " Returns the element type of an array expression." | ||
| 2058 | input DAE.Type inType; | ||
| 2059 | output DAE.Type outType; | ||
| 2060 | algorithm | ||
| 2061 | outType := match inType | ||
| 2062 | local Type t; | ||
| 2063 | 40697 | case DAE.T_ARRAY(ty = t) then arrayEltType(t); | |
| 2064 | else inType; | ||
| 2065 | end match; | ||
| 2066 | end arrayEltType; | ||
| 2067 | |||
| 2068 | public function sizeOf | ||
| 2069 | "Returns the size of a type." | ||
| 2070 | input DAE.Type inType; | ||
| 2071 | output Integer i; | ||
| 2072 | algorithm | ||
| 2073 | i := matchcontinue inType | ||
| 2074 | // count the variables in array | ||
| 2075 | case DAE.T_ARRAY() | ||
| 2076 |
4/4✓ Branch 0 taken 24796 times.
✓ Branch 1 taken 21014 times.
✓ Branch 2 taken 24796 times.
✓ Branch 3 taken 21014 times.
|
45810 | then sizeOf(inType.ty) * product(dimensionSize(d) for d in inType.dims); |
| 2077 | |||
| 2078 | case DAE.T_COMPLEX(complexClassType = ClassInf.EXTERNAL_OBJ()) then 0; | ||
| 2079 | |||
| 2080 | // count the variables in record | ||
| 2081 |
4/4✓ Branch 0 taken 36018 times.
✓ Branch 1 taken 4566 times.
✓ Branch 2 taken 36018 times.
✓ Branch 3 taken 4566 times.
|
40584 | case DAE.T_COMPLEX() then sum(sizeOf(varType(v)) for v in inType.varLst); |
| 2082 |
4/4✓ Branch 0 taken 12368 times.
✓ Branch 1 taken 2414 times.
✓ Branch 2 taken 12368 times.
✓ Branch 3 taken 2414 times.
|
14782 | case DAE.T_TUPLE() then sum(sizeOf(ty) for ty in inType.types); |
| 2083 | ✗ | case DAE.T_FUNCTION() then sizeOf(inType.funcResultType); | |
| 2084 | ✗ | case DAE.T_METATYPE() then sizeOf(inType.ty); | |
| 2085 | |||
| 2086 | // 0 for T_UNKNOWN as it can only appear in tuples for WILD()??!! | ||
| 2087 | case DAE.T_UNKNOWN() then 0; | ||
| 2088 | |||
| 2089 | // for all other consider it just 1 variable | ||
| 2090 | else 1; | ||
| 2091 | end matchcontinue; | ||
| 2092 | end sizeOf; | ||
| 2093 | |||
| 2094 | public function dimensionSize | ||
| 2095 | "Extracts an integer from an array dimension" | ||
| 2096 | input DAE.Dimension dim; | ||
| 2097 | output Integer value; | ||
| 2098 | algorithm | ||
| 2099 | value := match dim | ||
| 2100 | local | ||
| 2101 | Integer i; | ||
| 2102 | case DAE.DIM_INTEGER(integer = i) then i; | ||
| 2103 | case DAE.DIM_ENUM(size = i) then i; | ||
| 2104 | case DAE.DIM_BOOLEAN() then 2; | ||
| 2105 | case DAE.DIM_EXP(exp = DAE.ICONST(integer = i)) then i; | ||
| 2106 | case DAE.DIM_EXP(exp = DAE.ENUM_LITERAL(index = i)) then i; | ||
| 2107 | // else algorithm | ||
| 2108 | // Error.addInternalError("Function dimensionSize failed to extract size from dimension. Make sure | ||
| 2109 | // you have dimension that is evaluated if you want to use this function.", sourceInfo()); | ||
| 2110 | // then fail(); | ||
| 2111 | end match; | ||
| 2112 | end dimensionSize; | ||
| 2113 | |||
| 2114 | public function addDimensions | ||
| 2115 | input DAE.Dimension dim1; | ||
| 2116 | input DAE.Dimension dim2; | ||
| 2117 | output DAE.Dimension dim; | ||
| 2118 | algorithm | ||
| 2119 | dim := matchcontinue dim2 | ||
| 2120 | local | ||
| 2121 | Integer i; | ||
| 2122 | case _ | ||
| 2123 | algorithm | ||
| 2124 | 1700 | i := dimensionSize(dim1)+dimensionSize(dim2); | |
| 2125 | 1700 | then DAE.DIM_INTEGER(i); | |
| 2126 | else DAE.DIM_UNKNOWN(); | ||
| 2127 | end matchcontinue; | ||
| 2128 | end addDimensions; | ||
| 2129 | |||
| 2130 | public function dimensionSizeAll | ||
| 2131 | "Extracts an integer from an array dimension. Also handles DIM_EXP and | ||
| 2132 | DIM_UNKNOWN if checkModel is used." | ||
| 2133 | input DAE.Dimension dim; | ||
| 2134 | output Integer value; | ||
| 2135 | algorithm | ||
| 2136 | value := matchcontinue dim | ||
| 2137 | local | ||
| 2138 | Integer i; | ||
| 2139 | DAE.Exp e; | ||
| 2140 | case DAE.DIM_INTEGER(integer = i) then i; | ||
| 2141 | case DAE.DIM_ENUM(size = i) then i; | ||
| 2142 | case DAE.DIM_BOOLEAN() then 2; | ||
| 2143 | 64 | case DAE.DIM_EXP(exp = e) then expInt(e); | |
| 2144 | case DAE.DIM_EXP() | ||
| 2145 | algorithm | ||
| 2146 |
1/2✓ Branch 1 taken 64 times.
✗ Branch 2 not taken.
|
64 | true := Flags.getConfigBool(Flags.CHECK_MODEL); |
| 2147 | then | ||
| 2148 | 0; | ||
| 2149 | case DAE.DIM_UNKNOWN() | ||
| 2150 | algorithm | ||
| 2151 | ✗ | true := Flags.getConfigBool(Flags.CHECK_MODEL); | |
| 2152 | then | ||
| 2153 | 0; | ||
| 2154 | end matchcontinue; | ||
| 2155 | end dimensionSizeAll; | ||
| 2156 | |||
| 2157 | public function dimensionsSizes | ||
| 2158 | "Extracts a list of integers from a list of array dimensions" | ||
| 2159 | input DAE.Dimensions inDims; | ||
| 2160 | output list<Integer> outValues; | ||
| 2161 | algorithm | ||
| 2162 | 26401 | outValues := List.map(inDims, dimensionSizeAll); | |
| 2163 | end dimensionsSizes; | ||
| 2164 | |||
| 2165 | public function typeof "Retrieves the Type of the Expression" | ||
| 2166 | input DAE.Exp inExp; | ||
| 2167 | output DAE.Type outType; | ||
| 2168 | algorithm | ||
| 2169 | outType := matchcontinue inExp | ||
| 2170 | local | ||
| 2171 | Type tp; | ||
| 2172 | Operator op; | ||
| 2173 | DAE.Exp e2,e,iterExp,operExp; | ||
| 2174 | list<DAE.Exp> explist,exps; | ||
| 2175 | Absyn.Path p; | ||
| 2176 | String msg; | ||
| 2177 | DAE.Type ty, iterTp, operTp; | ||
| 2178 | list<DAE.Type> tys, typeVars; | ||
| 2179 | Integer i; | ||
| 2180 | DAE.Dimension dim; | ||
| 2181 | DAE.Dimensions iterdims; | ||
| 2182 | list<DAE.Subscript> subs; | ||
| 2183 | |||
| 2184 | case DAE.ICONST() then DAE.T_INTEGER_DEFAULT; | ||
| 2185 | case DAE.RCONST() then DAE.T_REAL_DEFAULT; | ||
| 2186 | case DAE.SCONST() then DAE.T_STRING_DEFAULT; | ||
| 2187 | case DAE.BCONST() then DAE.T_BOOL_DEFAULT; | ||
| 2188 | case DAE.CLKCONST() then DAE.T_CLOCK_DEFAULT; | ||
| 2189 | 19641 | case DAE.ENUM_LITERAL(name = p, index=i) then DAE.T_ENUMERATION(SOME(i), p, {}, {}, {}); | |
| 2190 | case DAE.CREF(ty = tp) then tp; | ||
| 2191 | 14304982 | case DAE.BINARY(operator = op) then typeofOp(op); | |
| 2192 | 1397419 | case DAE.UNARY(operator = op) then typeofOp(op); | |
| 2193 | 23486 | case DAE.LBINARY(operator = op) then typeofOp(op); | |
| 2194 | 3505 | case DAE.LUNARY(operator = op) then typeofOp(op); | |
| 2195 | 51670 | case DAE.RELATION(operator = op) then typeofRelation(typeofOp(op)); | |
| 2196 | 119292 | case DAE.IFEXP(expThen = e2) then typeof(e2); | |
| 2197 | case DAE.CALL(attr = DAE.CALL_ATTR(ty=tp)) then tp; | ||
| 2198 | case DAE.RECORD(ty=tp) then tp; | ||
| 2199 | case DAE.PARTEVALFUNCTION(ty=tp) then tp; | ||
| 2200 | case DAE.ARRAY(ty = tp) then tp; | ||
| 2201 | case DAE.MATRIX(ty = tp) then tp; | ||
| 2202 | case DAE.RANGE(ty = tp) then tp; | ||
| 2203 | case DAE.CAST(ty = tp) then tp; | ||
| 2204 | case DAE.ASUB(exp = e,sub=subs) | ||
| 2205 | algorithm | ||
| 2206 | // Count the number of scalar subscripts, and remove as many dimensions. | ||
| 2207 | // adrpo: for some reason we need to handle this differenlty for MetaModelica grammar | ||
| 2208 | // as if not we get errors such as: | ||
| 2209 | // [Types.mo:8694:9-8694:125:writable] Error: Internal error Types.getMetaRecordFields | ||
| 2210 | // called on a non-singleton uniontype: array<BackendDAE.SubPartition> | ||
| 2211 |
2/2✓ Branch 1 taken 214 times.
✓ Branch 2 taken 70048 times.
|
70262 | if Config.acceptMetaModelicaGrammar() then |
| 2212 |
4/4✓ Branch 0 taken 214 times.
✓ Branch 1 taken 214 times.
✓ Branch 2 taken 214 times.
✓ Branch 3 taken 214 times.
|
428 | explist := list(Expression.getSubscriptExp(sub) for sub in subs); |
| 2213 |
5/6✗ Branch 1 not taken.
✓ Branch 2 taken 214 times.
✓ Branch 3 taken 214 times.
✓ Branch 4 taken 214 times.
✓ Branch 5 taken 214 times.
✓ Branch 6 taken 214 times.
|
428 | i := sum(1 for e guard(isScalar(e)) in explist); |
| 2214 | else | ||
| 2215 |
6/6✓ Branch 1 taken 3 times.
✓ Branch 2 taken 78906 times.
✓ Branch 3 taken 78909 times.
✓ Branch 4 taken 70048 times.
✓ Branch 5 taken 78906 times.
✓ Branch 6 taken 70048 times.
|
148957 | i := sum(1 for sub guard(isScalarSubscript(sub)) in subs); |
| 2216 | end if; | ||
| 2217 | 70262 | tp := unliftArrayX(typeof(e), i); | |
| 2218 | then | ||
| 2219 | tp; | ||
| 2220 | case DAE.TSUB(ty = tp) then tp; | ||
| 2221 | 15200 | case DAE.RSUB() then inExp.ty; | |
| 2222 | case DAE.CODE(ty = tp) then tp; | ||
| 2223 | /* array reduction with known size */ | ||
| 2224 | case DAE.REDUCTION(iterators={DAE.REDUCTIONITER(exp=iterExp,guardExp=NONE())},expr = operExp, reductionInfo=DAE.REDUCTIONINFO(exprType=DAE.T_ARRAY(dims=dim::_),path = Absyn.IDENT("array"))) | ||
| 2225 | algorithm | ||
| 2226 |
2/2✓ Branch 1 taken 72 times.
✓ Branch 2 taken 143 times.
|
215 | false := dimensionKnown(dim); |
| 2227 | 143 | iterTp := typeof(iterExp); | |
| 2228 | 143 | operTp := typeof(operExp); | |
| 2229 |
2/2✓ Branch 0 taken 4 times.
✓ Branch 1 taken 139 times.
|
143 | DAE.T_ARRAY(dims=iterdims) := iterTp; |
| 2230 | 139 | tp := Types.liftTypeWithDims(operTp, iterdims); | |
| 2231 | then tp; | ||
| 2232 | case DAE.REDUCTION(reductionInfo=DAE.REDUCTIONINFO(exprType=ty)) | ||
| 2233 | 488 | then Types.simplifyType(ty); | |
| 2234 | case DAE.SIZE(_,NONE()) then DAE.T_ARRAY(DAE.T_INTEGER_DEFAULT,{DAE.DIM_UNKNOWN()}); | ||
| 2235 | case DAE.SIZE(_,SOME(_)) then DAE.T_INTEGER_DEFAULT; | ||
| 2236 | |||
| 2237 | // MetaModelica extension | ||
| 2238 | case DAE.LIST() then DAE.T_METATYPE(DAE.T_METALIST_DEFAULT); | ||
| 2239 | case DAE.CONS() then DAE.T_METATYPE(DAE.T_METALIST_DEFAULT); | ||
| 2240 | case DAE.META_TUPLE(exps) | ||
| 2241 | algorithm | ||
| 2242 | 99 | tys := List.map(exps, typeof); | |
| 2243 | 99 | then | |
| 2244 | DAE.T_METATYPE(DAE.T_METATUPLE(tys)); | ||
| 2245 | case DAE.TUPLE(exps) | ||
| 2246 | algorithm | ||
| 2247 | 8074 | tys := List.map(exps, typeof); | |
| 2248 | 8074 | then DAE.T_TUPLE(tys, NONE()); | |
| 2249 | case DAE.META_OPTION() then DAE.T_METATYPE(DAE.T_NONE_DEFAULT); | ||
| 2250 | case DAE.METARECORDCALL(path=p, index = i, typeVars=typeVars) | ||
| 2251 | 14662 | then DAE.T_METATYPE(DAE.T_METARECORD(p, AbsynUtil.stripLast(p), typeVars, i, {}, false)); | |
| 2252 | case DAE.BOX(e) | ||
| 2253 | 90 | then DAE.T_METATYPE(DAE.T_METABOXED(typeof(e))); | |
| 2254 | case DAE.MATCHEXPRESSION(et=tp) | ||
| 2255 | then tp; | ||
| 2256 | case DAE.UNBOX(ty = tp) then tp; | ||
| 2257 | 1769 | case DAE.SHARED_LITERAL(exp = e) then typeof(e); | |
| 2258 | // A little crazy, but sometimes we call typeof on things that will not be used in the end... | ||
| 2259 | case DAE.EMPTY(ty = tp) then tp; | ||
| 2260 | |||
| 2261 | case e | ||
| 2262 | algorithm | ||
| 2263 | ✗ | msg := "- Expression.typeof failed for " + ExpressionBasics.printExpStr(e); | |
| 2264 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {msg}); | |
| 2265 | ✗ | then fail(); | |
| 2266 | end matchcontinue; | ||
| 2267 | end typeof; | ||
| 2268 | |||
| 2269 | protected function typeofRelation | ||
| 2270 | "Boolean or array of boolean" | ||
| 2271 | input DAE.Type inType; | ||
| 2272 | output DAE.Type outType; | ||
| 2273 | algorithm | ||
| 2274 | outType := match inType | ||
| 2275 | local | ||
| 2276 | Type ty; | ||
| 2277 | DAE.Dimensions dims; | ||
| 2278 | case DAE.T_ARRAY(ty=ty,dims=dims) | ||
| 2279 | algorithm | ||
| 2280 | ✗ | typeofRelation(ty); | |
| 2281 | ✗ | then | |
| 2282 | DAE.T_ARRAY(ty,dims); | ||
| 2283 | else DAE.T_BOOL_DEFAULT; | ||
| 2284 | end match; | ||
| 2285 | end typeofRelation; | ||
| 2286 | |||
| 2287 | public function typeofOp | ||
| 2288 | "Helper function to typeof" | ||
| 2289 | input DAE.Operator inOperator; | ||
| 2290 | output DAE.Type outType; | ||
| 2291 | algorithm | ||
| 2292 | outType := match inOperator | ||
| 2293 | local Type t; | ||
| 2294 | |||
| 2295 | case DAE.ADD(ty = t) then t; | ||
| 2296 | case DAE.SUB(ty = t) then t; | ||
| 2297 | case DAE.MUL(ty = t) then t; | ||
| 2298 | case DAE.DIV(ty = t) then t; | ||
| 2299 | case DAE.POW(ty = t) then t; | ||
| 2300 | case DAE.UMINUS(ty = t) then t; | ||
| 2301 | case DAE.UMINUS_ARR(ty = t) then t; | ||
| 2302 | case DAE.ADD_ARR(ty = t) then t; | ||
| 2303 | case DAE.SUB_ARR(ty = t) then t; | ||
| 2304 | case DAE.MUL_ARR(ty = t) then t; | ||
| 2305 | case DAE.DIV_ARR(ty = t) then t; | ||
| 2306 | case DAE.MUL_ARRAY_SCALAR(ty = t) then t; | ||
| 2307 | case DAE.ADD_ARRAY_SCALAR(ty = t) then t; | ||
| 2308 | case DAE.SUB_SCALAR_ARRAY(ty = t) then t; | ||
| 2309 | case DAE.MUL_SCALAR_PRODUCT(ty = t) then t; | ||
| 2310 | case DAE.MUL_MATRIX_PRODUCT(ty = t) then t; | ||
| 2311 | case DAE.DIV_ARRAY_SCALAR(ty = t) then t; | ||
| 2312 | case DAE.DIV_SCALAR_ARRAY(ty = t) then t; | ||
| 2313 | case DAE.POW_ARRAY_SCALAR(ty = t) then t; | ||
| 2314 | case DAE.POW_SCALAR_ARRAY(ty = t) then t; | ||
| 2315 | case DAE.POW_ARR(ty = t) then t; | ||
| 2316 | case DAE.POW_ARR2(ty = t) then t; | ||
| 2317 | case DAE.AND(ty = t) then t; | ||
| 2318 | case DAE.OR(ty = t) then t; | ||
| 2319 | case DAE.NOT(ty = t) then t; | ||
| 2320 | case DAE.LESS(ty = t) then t; | ||
| 2321 | case DAE.LESSEQ(ty = t) then t; | ||
| 2322 | case DAE.GREATER(ty = t) then t; | ||
| 2323 | case DAE.GREATEREQ(ty = t) then t; | ||
| 2324 | case DAE.EQUAL(ty = t) then t; | ||
| 2325 | case DAE.NEQUAL(ty = t) then t; | ||
| 2326 | case DAE.USERDEFINED() then DAE.T_UNKNOWN_DEFAULT; | ||
| 2327 | end match; | ||
| 2328 | end typeofOp; | ||
| 2329 | |||
| 2330 | public function getRelations | ||
| 2331 | "Retrieve all function sub expressions in an expression." | ||
| 2332 | input DAE.Exp inExp; | ||
| 2333 | output list<DAE.Exp> outExpLst; | ||
| 2334 | algorithm | ||
| 2335 | outExpLst := match inExp | ||
| 2336 | local | ||
| 2337 | DAE.Exp e,e1,e2,cond,tb,fb; | ||
| 2338 | list<DAE.Exp> rellst1,rellst2,rellst,rellst3,rellst4,xs; | ||
| 2339 | Type t; | ||
| 2340 | Boolean sc; | ||
| 2341 | |||
| 2342 | case e as DAE.RELATION() then {e}; | ||
| 2343 | |||
| 2344 | case DAE.LBINARY(exp1 = e1,exp2 = e2) | ||
| 2345 | algorithm | ||
| 2346 | ✗ | rellst1 := getRelations(e1); | |
| 2347 | ✗ | rellst2 := getRelations(e2); | |
| 2348 | ✗ | rellst := listAppend(rellst1, rellst2); | |
| 2349 | then | ||
| 2350 | rellst; | ||
| 2351 | |||
| 2352 | case DAE.LUNARY(exp = e) | ||
| 2353 | algorithm | ||
| 2354 | ✗ | rellst := getRelations(e); | |
| 2355 | then | ||
| 2356 | rellst; | ||
| 2357 | |||
| 2358 | case DAE.BINARY(exp1 = e1,exp2 = e2) | ||
| 2359 | algorithm | ||
| 2360 | ✗ | rellst1 := getRelations(e1); | |
| 2361 | ✗ | rellst2 := getRelations(e2); | |
| 2362 | ✗ | rellst := listAppend(rellst1, rellst2); | |
| 2363 | then | ||
| 2364 | rellst; | ||
| 2365 | |||
| 2366 | case DAE.IFEXP(expCond = cond,expThen = tb,expElse = fb) | ||
| 2367 | algorithm | ||
| 2368 | ✗ | rellst1 := getRelations(cond); | |
| 2369 | ✗ | rellst2 := getRelations(tb); | |
| 2370 | ✗ | rellst3 := getRelations(fb); | |
| 2371 | ✗ | rellst4 := listAppend(rellst1, rellst2); | |
| 2372 | ✗ | rellst := listAppend(rellst3, rellst4); | |
| 2373 | then | ||
| 2374 | rellst; | ||
| 2375 | |||
| 2376 | case DAE.ARRAY(array = {e}) | ||
| 2377 | algorithm | ||
| 2378 | ✗ | rellst := getRelations(e); | |
| 2379 | then | ||
| 2380 | rellst; | ||
| 2381 | |||
| 2382 | case DAE.ARRAY(ty = t,scalar = sc,array = (e :: xs)) | ||
| 2383 | algorithm | ||
| 2384 | ✗ | rellst1 := getRelations(DAE.ARRAY(t,sc,xs)); | |
| 2385 | ✗ | rellst2 := getRelations(e); | |
| 2386 | ✗ | rellst := listAppend(rellst1, rellst2); | |
| 2387 | then | ||
| 2388 | rellst; | ||
| 2389 | |||
| 2390 | case DAE.UNARY(exp = e) | ||
| 2391 | algorithm | ||
| 2392 | ✗ | rellst := getRelations(e); | |
| 2393 | then | ||
| 2394 | rellst; | ||
| 2395 | |||
| 2396 | else {}; | ||
| 2397 | end match; | ||
| 2398 | end getRelations; | ||
| 2399 | |||
| 2400 | public function getAllCrefs "author: lochel | ||
| 2401 | This function extracts all crefs from the input expression, except 'time'." | ||
| 2402 | input DAE.Exp inExp; | ||
| 2403 | output list<DAE.ComponentRef> outCrefs; | ||
| 2404 | algorithm | ||
| 2405 | 145829 | (_, outCrefs) := traverseExpBottomUp(inExp, getAllCrefs2, {}); | |
| 2406 | end getAllCrefs; | ||
| 2407 | |||
| 2408 | protected function getAllCrefs2 | ||
| 2409 | input DAE.Exp inExp; | ||
| 2410 | input list<DAE.ComponentRef> inCrefList; | ||
| 2411 | output DAE.Exp outExp = inExp; | ||
| 2412 | output list<DAE.ComponentRef> outCrefList = inCrefList; | ||
| 2413 | protected | ||
| 2414 | DAE.ComponentRef cr; | ||
| 2415 | algorithm | ||
| 2416 |
2/2✓ Branch 1 taken 328376 times.
✓ Branch 2 taken 96844 times.
|
425220 | if isCref(inExp) then |
| 2417 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 96844 times.
|
96844 | DAE.CREF(componentRef=cr) := inExp; |
| 2418 |
4/4✓ Branch 1 taken 8 times.
✓ Branch 2 taken 96836 times.
✓ Branch 4 taken 2588 times.
✓ Branch 5 taken 94248 times.
|
96844 | if not ComponentReferenceBasics.crefEqual(cr, DAE.crefTime) and not listMember(cr, inCrefList) then |
| 2419 | outCrefList := cr::outCrefList; | ||
| 2420 | end if; | ||
| 2421 | end if; | ||
| 2422 | end getAllCrefs2; | ||
| 2423 | |||
| 2424 | public function allTerms | ||
| 2425 | "similar to terms, but also performs expansion of | ||
| 2426 | multiplications to reveal more terms, like for instance: | ||
| 2427 | allTerms((a+b)*(b+c)) => {a*b,a*c,b*b,b*c}" | ||
| 2428 | input DAE.Exp inExp; | ||
| 2429 | output list<DAE.Exp> outExpLst; | ||
| 2430 | algorithm | ||
| 2431 | outExpLst := matchcontinue inExp | ||
| 2432 | local | ||
| 2433 | list<DAE.Exp> f1,f2,res,f2_1; | ||
| 2434 | DAE.Exp e1,e2; | ||
| 2435 | list<DAE.Subscript> subs; | ||
| 2436 | |||
| 2437 | case DAE.BINARY(exp1 = e1,operator = DAE.ADD(),exp2 = e2) | ||
| 2438 | algorithm | ||
| 2439 | ✗ | f1 := allTerms(e1); | |
| 2440 | ✗ | f2 := allTerms(e2); | |
| 2441 | ✗ | res := listAppend(f1, f2); | |
| 2442 | then | ||
| 2443 | res; | ||
| 2444 | |||
| 2445 | case DAE.BINARY(exp1 = e1,operator = DAE.SUB(),exp2 = e2) | ||
| 2446 | algorithm | ||
| 2447 | ✗ | f1 := allTerms(e1); | |
| 2448 | ✗ | f2 := allTerms(e2); | |
| 2449 | ✗ | f2_1 := List.map(f2, negate); | |
| 2450 | ✗ | res := listAppend(f1, f2_1); | |
| 2451 | then | ||
| 2452 | res; | ||
| 2453 | |||
| 2454 | case DAE.BINARY(exp1 = e1,operator = DAE.ADD_ARR(),exp2 = e2) | ||
| 2455 | algorithm | ||
| 2456 | ✗ | f1 := allTerms(e1); | |
| 2457 | ✗ | f2 := allTerms(e2); | |
| 2458 | ✗ | res := listAppend(f1, f2); | |
| 2459 | then | ||
| 2460 | res; | ||
| 2461 | |||
| 2462 | case DAE.BINARY(exp1 = e1,operator = DAE.SUB_ARR(),exp2 = e2) | ||
| 2463 | algorithm | ||
| 2464 | ✗ | f1 := allTerms(e1); | |
| 2465 | ✗ | f2 := allTerms(e2); | |
| 2466 | ✗ | f2_1 := List.map(f2, negate); | |
| 2467 | ✗ | res := listAppend(f1, f2_1); | |
| 2468 | then | ||
| 2469 | res; | ||
| 2470 | |||
| 2471 | // terms( a*(b+c)) => {a*b, c*b} | ||
| 2472 | case DAE.BINARY(e1,DAE.MUL(_),e2) | ||
| 2473 | algorithm | ||
| 2474 | ✗ | f1 as _::_::_ := allTerms(e2); | |
| 2475 | ✗ | f1 := List.map1(f1,makeProduct,e1); | |
| 2476 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2477 | then | ||
| 2478 | f1; | ||
| 2479 | |||
| 2480 | case DAE.BINARY(e1,DAE.MUL_ARR(_),e2) | ||
| 2481 | algorithm | ||
| 2482 | ✗ | f1 as _::_::_ := allTerms(e2); | |
| 2483 | ✗ | f1 := List.map1(f1,makeProduct,e1); | |
| 2484 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2485 | then | ||
| 2486 | f1; | ||
| 2487 | |||
| 2488 | case DAE.BINARY(e1,DAE.MUL_ARRAY_SCALAR(_),e2) | ||
| 2489 | algorithm | ||
| 2490 | ✗ | f1 as _::_::_ := allTerms(e2); | |
| 2491 | ✗ | f1 := List.map1(f1,makeProduct,e1); | |
| 2492 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2493 | then | ||
| 2494 | f1; | ||
| 2495 | |||
| 2496 | // terms( (b+c)*a) => {b*a, c*a} | ||
| 2497 | case DAE.BINARY(e1,DAE.MUL(_),e2) | ||
| 2498 | algorithm | ||
| 2499 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2500 | ✗ | f1 := List.map1(f1,makeProduct,e2); | |
| 2501 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2502 | then | ||
| 2503 | f1; | ||
| 2504 | |||
| 2505 | case DAE.BINARY(e1,DAE.MUL_ARR(_),e2) | ||
| 2506 | algorithm | ||
| 2507 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2508 | ✗ | f1 := List.map1(f1,makeProduct,e2); | |
| 2509 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2510 | then | ||
| 2511 | f1; | ||
| 2512 | |||
| 2513 | case DAE.BINARY(e1,DAE.MUL_ARRAY_SCALAR(_),e2) | ||
| 2514 | algorithm | ||
| 2515 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2516 | ✗ | f1 := List.map1(f1,makeProduct,e2); | |
| 2517 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2518 | then | ||
| 2519 | f1; | ||
| 2520 | |||
| 2521 | // terms( (b+c)/a) => {b/a, c/a} | ||
| 2522 | case DAE.BINARY(e1,DAE.DIV(_),e2) | ||
| 2523 | algorithm | ||
| 2524 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2525 | ✗ | f1 := List.map1(f1,expDiv,e2); | |
| 2526 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2527 | then | ||
| 2528 | f1; | ||
| 2529 | |||
| 2530 | case DAE.BINARY(e1,DAE.DIV_ARR(_),e2) | ||
| 2531 | algorithm | ||
| 2532 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2533 | ✗ | f1 := List.map1(f1,expDiv,e2); | |
| 2534 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2535 | then | ||
| 2536 | f1; | ||
| 2537 | |||
| 2538 | case DAE.BINARY(e1,DAE.DIV_ARRAY_SCALAR(_),e2) | ||
| 2539 | algorithm | ||
| 2540 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2541 | ✗ | f1 := List.map1(f1,expDiv,e2); | |
| 2542 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2543 | then | ||
| 2544 | f1; | ||
| 2545 | |||
| 2546 | case DAE.BINARY(e1,DAE.DIV_SCALAR_ARRAY(_),e2) | ||
| 2547 | algorithm | ||
| 2548 | ✗ | f1 as _::_::_ := allTerms(e1); | |
| 2549 | ✗ | f1 := List.map1(f1,expDiv,e2); | |
| 2550 | ✗ | f1 := List.flatten(List.map(f1,allTerms)); | |
| 2551 | then | ||
| 2552 | f1; | ||
| 2553 | |||
| 2554 | case DAE.UNARY(operator = DAE.UMINUS(),exp=e1) | ||
| 2555 | algorithm | ||
| 2556 | ✗ | f1 := allTerms(e1); | |
| 2557 | ✗ | f1 := List.map(f1,negate); | |
| 2558 | then | ||
| 2559 | f1; | ||
| 2560 | |||
| 2561 | case DAE.UNARY(operator = DAE.UMINUS_ARR(),exp=e1) | ||
| 2562 | algorithm | ||
| 2563 | ✗ | f1 := allTerms(e1); | |
| 2564 | ✗ | f1 := List.map(f1,negate); | |
| 2565 | then | ||
| 2566 | f1; | ||
| 2567 | |||
| 2568 | case DAE.LUNARY(operator = DAE.NOT(), exp = e1) | ||
| 2569 | algorithm | ||
| 2570 | ✗ | f1 := allTerms(e1); | |
| 2571 | ✗ | f1 := List.map(f1,negate); | |
| 2572 | then | ||
| 2573 | f1; | ||
| 2574 | |||
| 2575 | case DAE.ASUB(exp = e1,sub=subs) | ||
| 2576 | algorithm | ||
| 2577 | ✗ | f2 := list(Expression.getSubscriptExp(sub) for sub in subs); | |
| 2578 | ✗ | f1 := allTerms(e1); | |
| 2579 | ✗ | f1 := List.map1(f1,makeASUB,f2); | |
| 2580 | then | ||
| 2581 | f1; | ||
| 2582 | /* | ||
| 2583 | case (e as DAE.BINARY(operator = DAE.MUL())) then {e}; | ||
| 2584 | case (e as DAE.BINARY(operator = DAE.MUL_ARR())) then {e}; | ||
| 2585 | case (e as DAE.BINARY(operator = DAE.MUL_ARRAY_SCALAR())) then {e}; | ||
| 2586 | case (e as DAE.BINARY(operator = DAE.DIV())) then {e}; | ||
| 2587 | case (e as DAE.BINARY(operator = DAE.DIV_ARR())) then {e}; | ||
| 2588 | case (e as DAE.BINARY(operator = DAE.DIV_ARRAY_SCALAR())) then {e}; | ||
| 2589 | case (e as DAE.BINARY(operator = DAE.DIV_SCALAR_ARRAY())) then {e}; | ||
| 2590 | case (e as DAE.BINARY(operator = DAE.POW())) then {e}; | ||
| 2591 | case (e as DAE.BINARY(operator = DAE.POW_ARR())) then {e}; | ||
| 2592 | case (e as DAE.BINARY(operator = DAE.POW_ARR2())) then {e}; | ||
| 2593 | case (e as DAE.BINARY(operator = DAE.POW_ARRAY_SCALAR())) then {e}; | ||
| 2594 | case (e as DAE.BINARY(operator = DAE.POW_SCALAR_ARRAY())) then {e}; | ||
| 2595 | case (e as DAE.CREF()) then {e}; | ||
| 2596 | case (e as DAE.ICONST()) then {e}; | ||
| 2597 | case (e as DAE.RCONST()) then {e}; | ||
| 2598 | case (e as DAE.SCONST()) then {e}; | ||
| 2599 | case ((e as DAE.ENUM_LITERAL())) then {e}; | ||
| 2600 | case (e as DAE.UNARY()) then {e}; | ||
| 2601 | case (e as DAE.IFEXP()) then {e}; | ||
| 2602 | case (e as DAE.CALL()) then {e}; | ||
| 2603 | case (e as DAE.RECORD()) then {e}; | ||
| 2604 | case (e as DAE.PARTEVALFUNCTION()) then {e}; | ||
| 2605 | case (e as DAE.ARRAY()) then {e}; | ||
| 2606 | case (e as DAE.MATRIX()) then {e}; | ||
| 2607 | case (e as DAE.RANGE()) then {e}; | ||
| 2608 | case (e as DAE.CAST()) then {e}; | ||
| 2609 | case (e as DAE.ASUB()) then {e}; | ||
| 2610 | case (e as DAE.SIZE()) then {e}; | ||
| 2611 | case (e as DAE.REDUCTION()) then {e}; | ||
| 2612 | */ | ||
| 2613 | else {inExp}; | ||
| 2614 | end matchcontinue; | ||
| 2615 | end allTerms; | ||
| 2616 | |||
| 2617 | public function allTermsForCref | ||
| 2618 | "simliar to terms, but also perform expansion of | ||
| 2619 | multiplications to reveal more terms, like for instance: | ||
| 2620 | allTerms((a(x)+b(x))*(c+d)) => {a(x)*(c+d),b(x)*(c+d)}" | ||
| 2621 | input DAE.Exp inExp; | ||
| 2622 | input DAE.ComponentRef cr "x"; | ||
| 2623 | input MapFunc inFunc; | ||
| 2624 | output list<DAE.Exp> outExpLstWithX; | ||
| 2625 | output list<DAE.Exp> outExpLstWithoutX; | ||
| 2626 | |||
| 2627 | partial function MapFunc | ||
| 2628 | input DAE.Exp inElement; | ||
| 2629 | input DAE.ComponentRef inCr; | ||
| 2630 | output Boolean outElement; | ||
| 2631 | end MapFunc; | ||
| 2632 | |||
| 2633 | algorithm | ||
| 2634 | (outExpLstWithX,outExpLstWithoutX) := matchcontinue inExp | ||
| 2635 | local | ||
| 2636 | list<DAE.Exp> f1,f2,fx1,fx2,res,resx; | ||
| 2637 | DAE.Exp e1,e2,e; | ||
| 2638 | |||
| 2639 | case DAE.BINARY(exp1 = e1,operator = DAE.ADD(),exp2 = e2) | ||
| 2640 | algorithm | ||
| 2641 | 34686 | (fx1,f1) := allTermsForCref(e1, cr, inFunc); | |
| 2642 | 34686 | (fx2,f2) := allTermsForCref(e2, cr, inFunc); | |
| 2643 | 34686 | res := listAppend(f1, f2); | |
| 2644 | 34686 | resx := listAppend(fx1, fx2); | |
| 2645 | then | ||
| 2646 | (resx, res); | ||
| 2647 | |||
| 2648 | case DAE.BINARY(exp1 = e1,operator = DAE.SUB(),exp2 = e2) | ||
| 2649 | algorithm | ||
| 2650 | 24722 | (fx1,f1) := allTermsForCref(e1, cr, inFunc); | |
| 2651 | 24722 | (fx2,f2) := allTermsForCref(e2, cr, inFunc); | |
| 2652 | 24722 | f2 := List.map(f2, negate); | |
| 2653 | 24722 | fx2 := List.map(fx2, negate); | |
| 2654 | 24722 | res := listAppend(f1, f2); | |
| 2655 | 24722 | resx := listAppend(fx1, fx2); | |
| 2656 | then | ||
| 2657 | (resx,res); | ||
| 2658 | |||
| 2659 | case DAE.BINARY(exp1 = e1,operator = DAE.ADD_ARR(),exp2 = e2) | ||
| 2660 | algorithm | ||
| 2661 | ✗ | (fx1,f1) := allTermsForCref(e1, cr, inFunc); | |
| 2662 | ✗ | (fx2,f2) := allTermsForCref(e2, cr, inFunc); | |
| 2663 | ✗ | res := listAppend(f1, f2); | |
| 2664 | ✗ | resx := listAppend(fx1, fx2); | |
| 2665 | then | ||
| 2666 | (resx, res); | ||
| 2667 | |||
| 2668 | case DAE.BINARY(exp1 = e1,operator = DAE.SUB_ARR(),exp2 = e2) | ||
| 2669 | algorithm | ||
| 2670 | ✗ | (fx1,f1) := allTermsForCref(e1, cr, inFunc); | |
| 2671 | ✗ | (fx2,f2) := allTermsForCref(e2, cr, inFunc); | |
| 2672 | ✗ | f2 := List.map(f2, negate); | |
| 2673 | ✗ | fx2 := List.map(fx2, negate); | |
| 2674 | ✗ | res := listAppend(f1, f2); | |
| 2675 | ✗ | resx := listAppend(fx1, fx2); | |
| 2676 | then | ||
| 2677 | (resx,res); | ||
| 2678 | |||
| 2679 | // terms( a*(b+c)) => {a*b, c*b} | ||
| 2680 | case DAE.BINARY(e1,DAE.MUL(_),e2) | ||
| 2681 | guard inFunc(e2,cr) | ||
| 2682 | algorithm | ||
| 2683 | 14953 | (fx1, f1) := allTermsForCref(e2, cr, inFunc); | |
| 2684 | 14953 | (fx1, f2) := List.split1OnTrue(fx1, inFunc, cr); | |
| 2685 | 14953 | res := listAppend(f1, f2); | |
| 2686 | 14953 | e := makeSum1(res); | |
| 2687 | 14953 | e := expMul(e, e1); | |
| 2688 | 14953 | fx1 := List.map1(fx1,expMul,e1); | |
| 2689 |
2/2✓ Branch 1 taken 3834 times.
✓ Branch 2 taken 11119 times.
|
14953 | if not isZero(e) then |
| 2690 |
2/2✓ Branch 1 taken 119 times.
✓ Branch 2 taken 3715 times.
|
3834 | if expHasCrefNoPreOrStart(e1,cr) then |
| 2691 | fx1 := e :: fx1; | ||
| 2692 | 119 | f1 := {}; | |
| 2693 | else | ||
| 2694 | 3715 | f1 := {e}; | |
| 2695 | end if; | ||
| 2696 | end if; | ||
| 2697 | //f1 = List.flatten(List.map1(fx1,allTermsForCref, cr)); | ||
| 2698 | 14953 | then | |
| 2699 | (fx1, f1); | ||
| 2700 | |||
| 2701 | // terms( (b+c)*a) => {b*a, c*a} | ||
| 2702 | case DAE.BINARY(e1,DAE.MUL(_),e2) | ||
| 2703 | guard inFunc(e1,cr) | ||
| 2704 | algorithm | ||
| 2705 | 2285 | (fx1, f1) := allTermsForCref(e1, cr, inFunc); | |
| 2706 | 2285 | (fx1, f2) := List.split1OnTrue(fx1, inFunc, cr); | |
| 2707 | 2285 | res := listAppend(f1, f2); | |
| 2708 | 2285 | e := makeSum1(res); | |
| 2709 | 2285 | e := expMul(e, e2); | |
| 2710 | 2285 | fx1 := List.map1(fx1,expMul,e2); | |
| 2711 |
2/2✓ Branch 1 taken 1018 times.
✓ Branch 2 taken 1267 times.
|
2285 | if not isZero(e) then |
| 2712 |
1/2✓ Branch 1 taken 1018 times.
✗ Branch 2 not taken.
|
1018 | if expHasCrefNoPreOrStart(e1,cr) then |
| 2713 | fx1 := e :: fx1; | ||
| 2714 | 1018 | f1 := {}; | |
| 2715 | else | ||
| 2716 | ✗ | f1 := {e}; | |
| 2717 | end if; | ||
| 2718 | end if; | ||
| 2719 | //fx1 = List.flatten(List.map1(fx1,allTermsForCref, cr)); | ||
| 2720 | 2285 | then | |
| 2721 | (fx1, f1); | ||
| 2722 | |||
| 2723 | // terms( (b+c)/a) => {b/a, c/a} | ||
| 2724 | case DAE.BINARY(e1,DAE.DIV(_),e2) | ||
| 2725 | guard inFunc(e1,cr) | ||
| 2726 | algorithm | ||
| 2727 | 2554 | (fx1, f1) := allTermsForCref(e1, cr, inFunc); | |
| 2728 | 2554 | (fx1, f2) := List.split1OnTrue(fx1, inFunc, cr); | |
| 2729 | 2554 | res := listAppend(f1, f2); | |
| 2730 | 2554 | e := makeSum1(res); | |
| 2731 | 2554 | e := makeDiv(e, e2); | |
| 2732 | 2554 | fx1 := List.map1(fx1,makeDiv,e2); | |
| 2733 |
2/2✓ Branch 1 taken 1333 times.
✓ Branch 2 taken 1221 times.
|
2554 | if not isZero(e) then |
| 2734 |
1/2✓ Branch 1 taken 1333 times.
✗ Branch 2 not taken.
|
1333 | if expHasCrefNoPreOrStart(e1,cr) then |
| 2735 | fx1 := e :: fx1; | ||
| 2736 | 1333 | f1 := {}; | |
| 2737 | else | ||
| 2738 | ✗ | f1 := {e}; | |
| 2739 | end if; | ||
| 2740 | end if; | ||
| 2741 | //fx1 = List.flatten(List.map1(fx1,allTermsForCref, cr)); | ||
| 2742 | 2554 | then | |
| 2743 | (fx1, f1); | ||
| 2744 | |||
| 2745 | // -() | ||
| 2746 | case DAE.UNARY(operator = DAE.UMINUS(),exp=e1) | ||
| 2747 | algorithm | ||
| 2748 | 8083 | (fx1,f1) := allTermsForCref(e1, cr, inFunc); | |
| 2749 | 8083 | f1 := List.map(f1,negate); | |
| 2750 | 8083 | fx1 := List.map(fx1,negate); | |
| 2751 | 8083 | then | |
| 2752 | (fx1, f1); | ||
| 2753 | |||
| 2754 | else | ||
| 2755 | algorithm | ||
| 2756 |
3/4✗ Branch 0 not taken.
✓ Branch 1 taken 239575 times.
✓ Branch 4 taken 181808 times.
✓ Branch 5 taken 57767 times.
|
239575 | if inFunc(inExp,cr) then |
| 2757 | res := {}; | ||
| 2758 | resx := {inExp}; | ||
| 2759 | else | ||
| 2760 | resx := {}; | ||
| 2761 | res := {inExp}; | ||
| 2762 | end if; | ||
| 2763 | then (resx, res); | ||
| 2764 | end matchcontinue; | ||
| 2765 | end allTermsForCref; | ||
| 2766 | |||
| 2767 | |||
| 2768 | public function termsExpandUnary | ||
| 2769 | "Returns the terms of the expression if any as a list of expressions" | ||
| 2770 | input DAE.Exp inExp; | ||
| 2771 | output list<DAE.Exp> outExpLst; | ||
| 2772 | algorithm | ||
| 2773 | outExpLst := match inExp | ||
| 2774 | local DAE.Exp e; | ||
| 2775 | 2172 | case DAE.UNARY(operator = DAE.UMINUS(),exp=e) then List.map(terms(e), negate); | |
| 2776 | 57144 | else terms(inExp); | |
| 2777 | end match; | ||
| 2778 | end termsExpandUnary; | ||
| 2779 | |||
| 2780 | public function terms | ||
| 2781 | "Returns the terms of the expression if any as a list of expressions" | ||
| 2782 | input DAE.Exp inExp; | ||
| 2783 | output list<DAE.Exp> outExpLst; | ||
| 2784 | algorithm | ||
| 2785 | 4253423 | outExpLst := terms2(inExp,{},false); | |
| 2786 | end terms; | ||
| 2787 | |||
| 2788 | protected function terms2 | ||
| 2789 | "Returns the terms of the expression if any as a list of expressions" | ||
| 2790 | input DAE.Exp inExp; | ||
| 2791 | input list<DAE.Exp> inAcc; | ||
| 2792 | input Boolean neg; | ||
| 2793 | output list<DAE.Exp> outExpLst; | ||
| 2794 | algorithm | ||
| 2795 | outExpLst := match (inExp,inAcc,neg) | ||
| 2796 | local | ||
| 2797 | DAE.Exp e1,e2,e; | ||
| 2798 | list<DAE.Exp> acc; | ||
| 2799 | |||
| 2800 | case (DAE.BINARY(exp1 = e1,operator = DAE.ADD(),exp2 = e2),acc,_) | ||
| 2801 | algorithm | ||
| 2802 | 2709930 | acc := terms2(e2,acc,neg); | |
| 2803 | 2709930 | acc := terms2(e1,acc,neg); | |
| 2804 | then acc; | ||
| 2805 | |||
| 2806 | case (DAE.BINARY(exp1 = e1,operator = DAE.SUB(),exp2 = e2),acc,_) | ||
| 2807 | algorithm | ||
| 2808 | 1034540 | acc := terms2(e2,acc,not neg); | |
| 2809 | 1034540 | acc := terms2(e1,acc,neg); | |
| 2810 | then acc; | ||
| 2811 | |||
| 2812 | case (e,acc,true) | ||
| 2813 | algorithm | ||
| 2814 | 1025379 | e := negate(e); | |
| 2815 | then e::acc; | ||
| 2816 | case (e,acc,_) then e::acc; | ||
| 2817 | end match; | ||
| 2818 | end terms2; | ||
| 2819 | |||
| 2820 | public function quotient | ||
| 2821 | "author: PA | ||
| 2822 | Returns the quotient of an expression. | ||
| 2823 | For instance e = p/q returns (p,q) for numerator p and denominator q." | ||
| 2824 | input DAE.Exp inExp; | ||
| 2825 | output DAE.Exp num; | ||
| 2826 | output DAE.Exp denom; | ||
| 2827 | algorithm | ||
| 2828 | (num,denom):= | ||
| 2829 | matchcontinue inExp | ||
| 2830 | local | ||
| 2831 | DAE.Exp e1,e2,p,q; | ||
| 2832 | Type tp; | ||
| 2833 | case DAE.BINARY(exp1 = e1,operator = DAE.DIV(),exp2 = e2) then (e1,e2); /* (numerator,denominator) */ | ||
| 2834 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2) | ||
| 2835 | algorithm | ||
| 2836 | ✗ | (p,q) := quotient(e1); | |
| 2837 | ✗ | tp := typeof(p); | |
| 2838 | ✗ | then | |
| 2839 | (DAE.BINARY(e2,DAE.MUL(tp),p),q); | ||
| 2840 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2) | ||
| 2841 | algorithm | ||
| 2842 | ✗ | (p,q) := quotient(e2); | |
| 2843 | ✗ | tp := typeof(p); | |
| 2844 | ✗ | then | |
| 2845 | (DAE.BINARY(e1,DAE.MUL(tp),p),q); | ||
| 2846 | end matchcontinue; | ||
| 2847 | end quotient; | ||
| 2848 | |||
| 2849 | public function factors | ||
| 2850 | "Returns the factors of the expression if any as a list of expressions" | ||
| 2851 | input DAE.Exp inExp; | ||
| 2852 | output list<DAE.Exp> outExpLst; | ||
| 2853 | algorithm | ||
| 2854 | // TODO: Remove this listReverse as it is pointless. | ||
| 2855 | // It transforms a*b to b*a, but the testsuite expects this :( | ||
| 2856 | 8620897 | outExpLst := listReverse(factorsWork(inExp,{},false)); | |
| 2857 | end factors; | ||
| 2858 | |||
| 2859 | protected function factorsWork | ||
| 2860 | "Returns the factors of the expression if any as a list of expressions" | ||
| 2861 | input DAE.Exp inExp; | ||
| 2862 | input output list<DAE.Exp> acc; | ||
| 2863 | input Boolean doInverseFactors "Decides if a factor e should be 1/e instead"; | ||
| 2864 | algorithm | ||
| 2865 | acc := match inExp | ||
| 2866 | local | ||
| 2867 | DAE.Exp e1,e2; | ||
| 2868 | |||
| 2869 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2) | ||
| 2870 | algorithm | ||
| 2871 | 7073460 | acc := factorsWork(e1,acc,doInverseFactors); | |
| 2872 | 7073460 | acc := factorsWork(e2,acc,doInverseFactors); | |
| 2873 | then acc; | ||
| 2874 | case DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = DAE.T_REAL()),exp2 = e2) | ||
| 2875 | algorithm | ||
| 2876 | 363311 | acc := factorsWork(e1,acc,doInverseFactors); | |
| 2877 | 363311 | acc := factorsWork(e2,acc,not doInverseFactors); | |
| 2878 | then acc; | ||
| 2879 | case DAE.ICONST(integer = 1) | ||
| 2880 | then acc; | ||
| 2881 | case DAE.RCONST(real = 1.0) | ||
| 2882 | then acc; | ||
| 2883 | // case DAE.UNARY() // factor(-(x*y)) is -(x*y) ?? | ||
| 2884 |
2/2✓ Branch 0 taken 459692 times.
✓ Branch 1 taken 16203876 times.
|
16663568 | else (if doInverseFactors then inverseFactors(inExp) else inExp) :: acc; |
| 2885 | end match; | ||
| 2886 | end factorsWork; | ||
| 2887 | |||
| 2888 | public function inverseFactors | ||
| 2889 | "each expression in the list inversed. | ||
| 2890 | For example: inverseFactors {a, 3+b} => {1/a, 1/3+b}" | ||
| 2891 | input DAE.Exp inExp; | ||
| 2892 | output DAE.Exp outExp; | ||
| 2893 | algorithm | ||
| 2894 | outExp := matchcontinue inExp | ||
| 2895 | local | ||
| 2896 | Type tp2,tp; | ||
| 2897 | DAE.Exp e1,e2,e; | ||
| 2898 | DAE.Operator op; | ||
| 2899 | |||
| 2900 | // e1^e2 =>e1^(-e2) | ||
| 2901 | case DAE.BINARY(exp1 = e1,operator = DAE.POW(ty = tp),exp2 = e2) | ||
| 2902 | algorithm | ||
| 2903 | 48806 | tp2 := typeof(e2); | |
| 2904 | 48806 | then | |
| 2905 | DAE.BINARY(e1,DAE.POW(tp),DAE.UNARY(DAE.UMINUS(tp2),e2)); | ||
| 2906 | |||
| 2907 | // e1 / e2 = e2 / e1 | ||
| 2908 | case DAE.BINARY(exp1 = e1,operator = op as DAE.DIV(),exp2 = e2) | ||
| 2909 | algorithm | ||
| 2910 | ✗ | false := isZero(e1); | |
| 2911 | ✗ | then | |
| 2912 | DAE.BINARY(e2,op,e1); | ||
| 2913 | |||
| 2914 | case e | ||
| 2915 | algorithm | ||
| 2916 |
2/2✓ Branch 1 taken 975 times.
✓ Branch 2 taken 570581 times.
|
571556 | false := isZero(e); |
| 2917 | 570581 | tp := typeof(e); | |
| 2918 | e := match tp | ||
| 2919 | 570581 | case DAE.T_REAL() then DAE.BINARY(DAE.RCONST(1.0),DAE.DIV(DAE.T_REAL_DEFAULT),e); | |
| 2920 | ✗ | case DAE.T_INTEGER() then DAE.BINARY(DAE.ICONST(1),DAE.DIV(DAE.T_INTEGER_DEFAULT),e); | |
| 2921 | end match; | ||
| 2922 | then | ||
| 2923 | e; | ||
| 2924 | end matchcontinue; | ||
| 2925 | end inverseFactors; | ||
| 2926 | |||
| 2927 | public function expandFactors | ||
| 2928 | " | ||
| 2929 | Returns the factors of the expression if any as a list of expressions. | ||
| 2930 | e.g. | ||
| 2931 | -(x*(x*y)^n) -> {-1,x,x^n,x^n} | ||
| 2932 | " | ||
| 2933 | input DAE.Exp inExp; | ||
| 2934 | output list<DAE.Exp> outExpLst; | ||
| 2935 | algorithm | ||
| 2936 | // TODO: Remove this listReverse as it is pointless. | ||
| 2937 | // It transforms a*b to b*a, but the testsuite expects this :( | ||
| 2938 | // issue with ExpressionBasics.expEqual(a*b,b*a) return false | ||
| 2939 | 771344 | outExpLst := listReverse(expandFactorsWork(inExp,{},false)); | |
| 2940 | end expandFactors; | ||
| 2941 | |||
| 2942 | protected function expandFactorsWork | ||
| 2943 | "Returns the factors of the expression if any as a list of expressions" | ||
| 2944 | input DAE.Exp inExp; | ||
| 2945 | input output list<DAE.Exp> acc; | ||
| 2946 | input Boolean doInverseFactors "Decides if a factor e should be 1/e instead"; | ||
| 2947 | algorithm | ||
| 2948 | |||
| 2949 | acc := match inExp | ||
| 2950 | local | ||
| 2951 | DAE.Exp e1,e2,e3,e; | ||
| 2952 | Type tp; | ||
| 2953 | list<DAE.Exp> pow_acc, pow_acc2; | ||
| 2954 | Operator op; | ||
| 2955 | |||
| 2956 | // (x*y)^n = x^n*y^n | ||
| 2957 | case DAE.BINARY(DAE.BINARY(e1,DAE.MUL(),e2), DAE.POW(), e3) | ||
| 2958 | algorithm | ||
| 2959 | 702 | pow_acc := expandFactorsWork(e1,{},doInverseFactors); | |
| 2960 | 702 | pow_acc := expPowLst(pow_acc, e3); | |
| 2961 | |||
| 2962 | 702 | pow_acc2 := expandFactorsWork(e2,{},doInverseFactors); | |
| 2963 | 702 | pow_acc2 := expPowLst(pow_acc2, e3); | |
| 2964 | |||
| 2965 | 702 | acc := listAppend(pow_acc, acc); | |
| 2966 | 702 | acc := listAppend(pow_acc2, acc); | |
| 2967 | then acc; | ||
| 2968 | // (x/y)^n = x^n*y^(-n) | ||
| 2969 | case DAE.BINARY(DAE.BINARY(e1,DAE.DIV(),e2), DAE.POW(), e3) | ||
| 2970 | algorithm | ||
| 2971 | ✗ | pow_acc := expandFactorsWork(e1,{},doInverseFactors); | |
| 2972 | ✗ | pow_acc := expPowLst(pow_acc, e3); | |
| 2973 | |||
| 2974 | ✗ | pow_acc2 := expandFactorsWork(e2,{},doInverseFactors); | |
| 2975 | ✗ | pow_acc2 := expPowLst(pow_acc2, negate(e3)); | |
| 2976 | |||
| 2977 | ✗ | acc := listAppend(pow_acc, acc); | |
| 2978 | ✗ | acc := listAppend(pow_acc2, acc); | |
| 2979 | then acc; | ||
| 2980 | // (x^n)^m = x^(n*m) | ||
| 2981 | case DAE.BINARY(DAE.BINARY(e1,DAE.POW(),e2), DAE.POW(), e3) | ||
| 2982 | algorithm | ||
| 2983 | ✗ | e := expMul(e2,e3); | |
| 2984 | ✗ | pow_acc := expandFactorsWork(e1,{},doInverseFactors); | |
| 2985 | ✗ | pow_acc := expPowLst(pow_acc, e); | |
| 2986 | |||
| 2987 | ✗ | acc := listAppend(pow_acc, acc); | |
| 2988 | then acc; | ||
| 2989 | // ToDo | ||
| 2990 | // exp(x + y) = exp(x)*exp(y) | ||
| 2991 | // exp(x - y) = exp(x)/exp(y) | ||
| 2992 | // abs(x*y) = abs(x)*abs(y) | ||
| 2993 | // abs(x/y) = abs(x)/abs(y); | ||
| 2994 | |||
| 2995 | // x/0 = x * 1/0 | ||
| 2996 | case DAE.BINARY(e1, op as DAE.DIV(tp), e2) | ||
| 2997 | guard isZero(e2) | ||
| 2998 | algorithm | ||
| 2999 |
1/2✓ Branch 0 taken 552 times.
✗ Branch 1 not taken.
|
552 | if doInverseFactors then |
| 3000 | e := e2; | ||
| 3001 | else | ||
| 3002 | 552 | e := DAE.BINARY(makeConstOne(tp), op, e2); | |
| 3003 | end if; | ||
| 3004 | 552 | acc := expandFactorsWork(e1,acc,doInverseFactors); | |
| 3005 | then e::acc; | ||
| 3006 | |||
| 3007 | // -(x) = -1*x | ||
| 3008 | case DAE.UNARY(DAE.UMINUS(tp),e1) | ||
| 3009 | algorithm | ||
| 3010 | 25780 | e := makeConstOne(tp); | |
| 3011 | 25780 | acc := expandFactorsWork(e1,acc,doInverseFactors); | |
| 3012 | 25780 | e := negate(e); | |
| 3013 | then e::acc; | ||
| 3014 | case DAE.UNARY(DAE.UMINUS_ARR(tp),e1) | ||
| 3015 | algorithm | ||
| 3016 | ✗ | e := makeConstOne(tp); | |
| 3017 | ✗ | acc := expandFactorsWork(e1,acc,doInverseFactors); | |
| 3018 | ✗ | e := negate(e); | |
| 3019 | then e::acc; | ||
| 3020 | |||
| 3021 | else | ||
| 3022 | algorithm | ||
| 3023 | 786206 | acc := expandFactorsWork3(inExp,acc,doInverseFactors); | |
| 3024 | 786206 | then expandFactorsWork2(acc,doInverseFactors); | |
| 3025 | |||
| 3026 | end match; | ||
| 3027 | |||
| 3028 | end expandFactorsWork; | ||
| 3029 | |||
| 3030 | protected function expandFactorsWork3 | ||
| 3031 | input DAE.Exp inExp; | ||
| 3032 | input output list<DAE.Exp> acc; | ||
| 3033 | input Boolean doInverseFactors "Decides if a factor e should be 1/e instead"; | ||
| 3034 | protected | ||
| 3035 | DAE.Exp e1,e2, e; | ||
| 3036 | Operator op; | ||
| 3037 | algorithm | ||
| 3038 | acc := matchcontinue inExp | ||
| 3039 | case _ | ||
| 3040 | 786206 | then factorsWork(inExp,acc,doInverseFactors); | |
| 3041 | case DAE.BINARY(e1, DAE.MUL(), e2) | ||
| 3042 | algorithm | ||
| 3043 | ✗ | acc := expandFactorsWork(e1, acc, doInverseFactors); | |
| 3044 | ✗ | acc := expandFactorsWork(e2, acc, doInverseFactors); | |
| 3045 | then | ||
| 3046 | acc; | ||
| 3047 | case DAE.BINARY(DAE.BINARY(e, op as DAE.DIV(), e1), DAE.DIV(), e2) | ||
| 3048 | algorithm | ||
| 3049 | ✗ | e := DAE.BINARY(e, op , expMul(e1, e2)); | |
| 3050 | ✗ | acc := expandFactorsWork(e, acc, doInverseFactors); | |
| 3051 | then | ||
| 3052 | acc; | ||
| 3053 | case DAE.BINARY(DAE.BINARY(e, DAE.MUL(), e1), op as DAE.DIV(), e2) | ||
| 3054 | algorithm | ||
| 3055 | ✗ | acc := expandFactorsWork(e, acc, doInverseFactors); | |
| 3056 | ✗ | acc := expandFactorsWork(DAE.BINARY(e1, op, e2), acc, doInverseFactors); | |
| 3057 | then | ||
| 3058 | acc; | ||
| 3059 | case _ | ||
| 3060 | //equation | ||
| 3061 | // print("\ninExp*: ");print(ExpressionBasics.printExpStr(inExp)); | ||
| 3062 | then inExp :: acc; | ||
| 3063 | end matchcontinue; | ||
| 3064 | |||
| 3065 | |||
| 3066 | end expandFactorsWork3; | ||
| 3067 | |||
| 3068 | |||
| 3069 | protected function expandFactorsWork2 | ||
| 3070 | input list<DAE.Exp> inAcc; | ||
| 3071 | input Boolean doInverseFactors "Decides if a factor e should be 1/e instead"; | ||
| 3072 | output list<DAE.Exp> outExpLst = {}; | ||
| 3073 | protected | ||
| 3074 | list<DAE.Exp> tmpExpLst; | ||
| 3075 | algorithm | ||
| 3076 | |||
| 3077 |
2/2✓ Branch 0 taken 871363 times.
✓ Branch 1 taken 786206 times.
|
1657569 | for elem in inAcc loop |
| 3078 | tmpExpLst := match elem | ||
| 3079 | ✗ | case DAE.BINARY(DAE.BINARY(_,DAE.DIV(),_), DAE.POW(), _) then expandFactorsWork(elem,{},doInverseFactors); | |
| 3080 | 546 | case DAE.BINARY(DAE.BINARY(_,DAE.MUL(),_), DAE.POW(), _) then expandFactorsWork(elem,{},doInverseFactors); | |
| 3081 | ✗ | case DAE.BINARY(DAE.BINARY(_,DAE.POW(),_), DAE.POW(), _) then expandFactorsWork(elem,{},doInverseFactors); | |
| 3082 | 13614 | case DAE.UNARY(DAE.UMINUS(),_) then expandFactorsWork(elem,{},doInverseFactors); | |
| 3083 | ✗ | case DAE.UNARY(DAE.UMINUS_ARR(),_) then expandFactorsWork(elem,{},doInverseFactors); | |
| 3084 | else {elem}; | ||
| 3085 | end match; | ||
| 3086 | 871363 | outExpLst := listAppend(tmpExpLst, outExpLst); | |
| 3087 | end for; | ||
| 3088 | |||
| 3089 | end expandFactorsWork2; | ||
| 3090 | |||
| 3091 | |||
| 3092 | public function getTermsContainingX | ||
| 3093 | "Retrieves all terms of an expression containing a variable, | ||
| 3094 | given as second argument (in the form of an Exp)" | ||
| 3095 | input DAE.Exp inExp1; | ||
| 3096 | input DAE.Exp inExp2; | ||
| 3097 | output DAE.Exp outExp1; | ||
| 3098 | output DAE.Exp outExp2; | ||
| 3099 | algorithm | ||
| 3100 | (outExp1,outExp2) := matchcontinue (inExp1,inExp2) | ||
| 3101 | local | ||
| 3102 | DAE.Exp xt1,nonxt1,xt2,nonxt2,xt,nonxt,e1,e2,cr,e,zero; | ||
| 3103 | Type ty; | ||
| 3104 | Boolean res; | ||
| 3105 | case (DAE.BINARY(exp1 = e1,operator = DAE.ADD(ty = ty),exp2 = e2),(cr as DAE.CREF())) | ||
| 3106 | algorithm | ||
| 3107 | ✗ | (xt1,nonxt1) := getTermsContainingX(e1, cr); | |
| 3108 | ✗ | (xt2,nonxt2) := getTermsContainingX(e2, cr); | |
| 3109 | ✗ | xt := DAE.BINARY(xt1,DAE.ADD(ty),xt2); | |
| 3110 | ✗ | nonxt := DAE.BINARY(nonxt1,DAE.ADD(ty),nonxt2); | |
| 3111 | then | ||
| 3112 | (xt,nonxt); | ||
| 3113 | case (DAE.BINARY(exp1 = e1,operator = DAE.SUB(ty = ty),exp2 = e2),(cr as DAE.CREF())) | ||
| 3114 | algorithm | ||
| 3115 | ✗ | (xt1,nonxt1) := getTermsContainingX(e1, cr); | |
| 3116 | ✗ | (xt2,nonxt2) := getTermsContainingX(e2, cr); | |
| 3117 | ✗ | xt := DAE.BINARY(xt1,DAE.SUB(ty),xt2); | |
| 3118 | ✗ | nonxt := DAE.BINARY(nonxt1,DAE.SUB(ty),nonxt2); | |
| 3119 | then | ||
| 3120 | (xt,nonxt); | ||
| 3121 | case (DAE.UNARY(operator = DAE.UMINUS(ty = ty),exp = e),(cr as DAE.CREF())) | ||
| 3122 | algorithm | ||
| 3123 | ✗ | (xt1,nonxt1) := getTermsContainingX(e, cr); | |
| 3124 | ✗ | xt := DAE.UNARY(DAE.UMINUS(ty),xt1); | |
| 3125 | ✗ | nonxt := DAE.UNARY(DAE.UMINUS(ty),nonxt1); | |
| 3126 | then | ||
| 3127 | (xt,nonxt); | ||
| 3128 | case (DAE.BINARY(exp1 = e1,operator = DAE.ADD_ARR(ty = ty),exp2 = e2),(cr as DAE.CREF())) | ||
| 3129 | algorithm | ||
| 3130 | ✗ | (xt1,nonxt1) := getTermsContainingX(e1, cr); | |
| 3131 | ✗ | (xt2,nonxt2) := getTermsContainingX(e2, cr); | |
| 3132 | ✗ | xt := DAE.BINARY(xt1,DAE.ADD_ARR(ty),xt2); | |
| 3133 | ✗ | nonxt := DAE.BINARY(nonxt1,DAE.ADD_ARR(ty),nonxt2); | |
| 3134 | then | ||
| 3135 | (xt,nonxt); | ||
| 3136 | case (DAE.BINARY(exp1 = e1,operator = DAE.SUB_ARR(ty = ty),exp2 = e2),(cr as DAE.CREF())) | ||
| 3137 | algorithm | ||
| 3138 | ✗ | (xt1,nonxt1) := getTermsContainingX(e1, cr); | |
| 3139 | ✗ | (xt2,nonxt2) := getTermsContainingX(e2, cr); | |
| 3140 | ✗ | xt := DAE.BINARY(xt1,DAE.SUB_ARR(ty),xt2); | |
| 3141 | ✗ | nonxt := DAE.BINARY(nonxt1,DAE.SUB_ARR(ty),nonxt2); | |
| 3142 | then | ||
| 3143 | (xt,nonxt); | ||
| 3144 | case (DAE.UNARY(operator = DAE.UMINUS_ARR(ty = ty),exp = e),(cr as DAE.CREF())) | ||
| 3145 | algorithm | ||
| 3146 | ✗ | (xt1,nonxt1) := getTermsContainingX(e, cr); | |
| 3147 | ✗ | xt := DAE.UNARY(DAE.UMINUS_ARR(ty),xt1); | |
| 3148 | ✗ | nonxt := DAE.UNARY(DAE.UMINUS_ARR(ty),nonxt1); | |
| 3149 | then | ||
| 3150 | (xt,nonxt); | ||
| 3151 | case (e,(cr as DAE.CREF(ty = ty))) | ||
| 3152 | algorithm | ||
| 3153 | ✗ | res := expContains(e, cr); | |
| 3154 | ✗ | (zero,_) := makeZeroExpression(arrayDimension(ty)); | |
| 3155 | ✗ | xt := if res then e else zero; | |
| 3156 | ✗ | nonxt := if res then zero else e; | |
| 3157 | then | ||
| 3158 | (xt,nonxt); | ||
| 3159 | else | ||
| 3160 | algorithm | ||
| 3161 | /*Print.printBuf("Expression.getTerms_containingX failed: "); | ||
| 3162 | ExpressionDump.printExp(e); | ||
| 3163 | Print.printBuf("\nsolving for: "); | ||
| 3164 | ExpressionDump.printExp(cr); | ||
| 3165 | Print.printBuf("\n");*/ | ||
| 3166 | then | ||
| 3167 | fail(); | ||
| 3168 | end matchcontinue; | ||
| 3169 | end getTermsContainingX; | ||
| 3170 | |||
| 3171 | public function flattenArrayExpToList "returns all non-array expressions of an array expression as a long list | ||
| 3172 | E.g. {[1,2;3,4],[4,5;6,7]} => {1,2,3,4,4,5,6,7}" | ||
| 3173 | input DAE.Exp e; | ||
| 3174 | output list<DAE.Exp> expLst; | ||
| 3175 | algorithm | ||
| 3176 | expLst := matchcontinue e | ||
| 3177 | local | ||
| 3178 | list<DAE.Exp> expl; | ||
| 3179 | list<list<DAE.Exp>> mexpl; | ||
| 3180 | case DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=DAE.ARRAY(array=expl)) | ||
| 3181 | algorithm | ||
| 3182 | ✗ | expl := List.flatten(List.map(expl,flattenArrayExpToList)); | |
| 3183 | ✗ | expLst := List.map(expl,negate); | |
| 3184 | then expLst; | ||
| 3185 | case DAE.ARRAY(array=expl) | ||
| 3186 | algorithm | ||
| 3187 | 50521 | expLst := List.flatten(List.map(expl,flattenArrayExpToList)); | |
| 3188 | then expLst; | ||
| 3189 | case DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=DAE.MATRIX(matrix=mexpl)) | ||
| 3190 | algorithm | ||
| 3191 | ✗ | expl := List.flatten(List.map(List.flatten(mexpl),flattenArrayExpToList)); | |
| 3192 | ✗ | expLst := List.map(expl,negate); | |
| 3193 | then expLst; | ||
| 3194 | case DAE.MATRIX(matrix=mexpl) | ||
| 3195 | algorithm | ||
| 3196 | 2733 | expLst := List.flatten(List.map(List.flatten(mexpl),flattenArrayExpToList)); | |
| 3197 | then expLst; | ||
| 3198 | else {e}; | ||
| 3199 | end matchcontinue; | ||
| 3200 | end flattenArrayExpToList; | ||
| 3201 | |||
| 3202 | /***************************************************/ | ||
| 3203 | /* generate */ | ||
| 3204 | /***************************************************/ | ||
| 3205 | |||
| 3206 | public function makeNoEvent " adds a noEvent call around an expression" | ||
| 3207 | input DAE.Exp e1; | ||
| 3208 | output DAE.Exp res; | ||
| 3209 | algorithm | ||
| 3210 | 12860 | res := Expression.makePureBuiltinCall("noEvent", {e1}, DAE.T_BOOL_DEFAULT); | |
| 3211 | end makeNoEvent; | ||
| 3212 | |||
| 3213 | public function makeAbs "" | ||
| 3214 | input DAE.Exp e1; | ||
| 3215 | output DAE.Exp res; | ||
| 3216 | algorithm | ||
| 3217 | 404 | res := Expression.makePureBuiltinCall("abs", {e1}, DAE.T_REAL_DEFAULT); | |
| 3218 | end makeAbs; | ||
| 3219 | |||
| 3220 | public function makeSign "" | ||
| 3221 | input DAE.Exp e1; | ||
| 3222 | output DAE.Exp res; | ||
| 3223 | algorithm | ||
| 3224 | 20 | res := Expression.makePureBuiltinCall("sign", {e1}, DAE.T_REAL_DEFAULT); | |
| 3225 | end makeSign; | ||
| 3226 | |||
| 3227 | |||
| 3228 | public function makeNestedIf "creates a nested if expression given a list of conditions and | ||
| 3229 | guarded expressions and a default value (the else branch)" | ||
| 3230 | input list<DAE.Exp> inConds "conditions"; | ||
| 3231 | input list<DAE.Exp> inTbExps " guarded expressions, for each condition"; | ||
| 3232 | input DAE.Exp fExp "default value, else branch"; | ||
| 3233 | output DAE.Exp ifExp; | ||
| 3234 | algorithm | ||
| 3235 | ifExp := match(inConds, inTbExps) | ||
| 3236 | local DAE.Exp c,tbExp; list<DAE.Exp> conds, tbExps; | ||
| 3237 | case({c}, {tbExp}) | ||
| 3238 | 58 | then DAE.IFEXP(c,tbExp,fExp); | |
| 3239 | case(c::conds, tbExp::tbExps) | ||
| 3240 | algorithm | ||
| 3241 | 32 | ifExp := makeNestedIf(conds,tbExps,fExp); | |
| 3242 | 32 | then DAE.IFEXP(c,tbExp,ifExp); | |
| 3243 | end match; | ||
| 3244 | end makeNestedIf; | ||
| 3245 | |||
| 3246 | public function makeCrefExp | ||
| 3247 | "Makes an expression of a component reference, given also a type" | ||
| 3248 | input DAE.ComponentRef inCref; | ||
| 3249 | input DAE.Type inExpType; | ||
| 3250 | output DAE.Exp outExp; | ||
| 3251 | algorithm | ||
| 3252 | outExp := match(inCref, inExpType) | ||
| 3253 | local | ||
| 3254 | ComponentRef cref; | ||
| 3255 | Type tGiven, tExisting; | ||
| 3256 | |||
| 3257 | case (cref, tGiven) | ||
| 3258 | algorithm | ||
| 3259 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 3224798 times.
|
3224798 | if Flags.isSet(Flags.CHECK_DAE_CREF_TYPE) |
| 3260 | then // check type | ||
| 3261 | ✗ | tExisting := ComponentReference.crefLastType(cref); | |
| 3262 | ✗ | if not valueEq(tGiven, tExisting) | |
| 3263 | then // type not the same | ||
| 3264 | ✗ | Debug.traceln("Warning: Expression.makeCrefExp: cref " + ComponentReferenceBasics.printComponentRefStr(cref) + " was given type DAE.CREF.ty: " + | |
| 3265 | TypesDump.unparseType(tGiven) + | ||
| 3266 | " is different from existing DAE.CREF.componentRef.ty: " + | ||
| 3267 | TypesDump.unparseType(tExisting)); | ||
| 3268 | end if; | ||
| 3269 | end if; | ||
| 3270 | 3224798 | then | |
| 3271 | DAE.CREF(cref, tGiven); | ||
| 3272 | |||
| 3273 | end match; | ||
| 3274 | end makeCrefExp; | ||
| 3275 | |||
| 3276 | |||
| 3277 | public function crefToExp | ||
| 3278 | " mahge: | ||
| 3279 | creates a DAE.Exp from a cref by exrtacting the type from the types of the cref (if qualified) and | ||
| 3280 | considering the dimensions and subscripts that exist in the cref. | ||
| 3281 | " | ||
| 3282 | input DAE.ComponentRef cr; | ||
| 3283 | output DAE.Exp cref; | ||
| 3284 | algorithm | ||
| 3285 | 633086 | cref := DAE.CREF(cr,ComponentReference.crefTypeFull(cr)); | |
| 3286 | end crefToExp; | ||
| 3287 | |||
| 3288 | |||
| 3289 | |||
| 3290 | |||
| 3291 | public function crefExp | ||
| 3292 | " ***deprecated. | ||
| 3293 | mahge: use crefToExp(). This is not correct. We need to consider more than just the last subs. | ||
| 3294 | |||
| 3295 | Author: BZ, 2008-08 | ||
| 3296 | generate an DAE.CREF(ComponentRef, Type) from a ComponenRef, make array type correct from subs" | ||
| 3297 | input DAE.ComponentRef cr; | ||
| 3298 | output DAE.Exp cref; | ||
| 3299 | algorithm | ||
| 3300 | cref := match cr | ||
| 3301 | local | ||
| 3302 | Type ty1,ty2; | ||
| 3303 | list<DAE.Subscript> subs; | ||
| 3304 | |||
| 3305 | 2 | case DAE.WILD() then DAE.CREF(cr, DAE.T_UNKNOWN()); | |
| 3306 | |||
| 3307 | case _ | ||
| 3308 | algorithm | ||
| 3309 | 2475841 | ty1 := ComponentReference.crefLastType(cr); | |
| 3310 | cref := match ty1 | ||
| 3311 | case DAE.T_ARRAY() | ||
| 3312 | algorithm | ||
| 3313 | 1092858 | subs := ComponentReference.crefLastSubs(cr); | |
| 3314 | 1092858 | ty2 := unliftArrayTypeWithSubs(subs,ty1); | |
| 3315 | 1092858 | then DAE.CREF(cr,ty2); | |
| 3316 | 1382983 | else DAE.CREF(cr,ty1); | |
| 3317 | end match; | ||
| 3318 | then | ||
| 3319 | cref; | ||
| 3320 | |||
| 3321 | end match; | ||
| 3322 | end crefExp; | ||
| 3323 | |||
| 3324 | public function makeASUB | ||
| 3325 | "@author: adrpo | ||
| 3326 | Creates an ASUB given an expression and a list of expression indexes. | ||
| 3327 | If flag -d=checkASUB is ON we give a warning that the given exp is | ||
| 3328 | not a component reference." | ||
| 3329 | input DAE.Exp inExp; | ||
| 3330 | input list<DAE.Exp> inSubs; | ||
| 3331 | output DAE.Exp outExp; | ||
| 3332 | protected | ||
| 3333 | list<Subscript> inSubs_ = list(makeIndexSubscript(s) for s in inSubs); | ||
| 3334 | algorithm | ||
| 3335 | outExp := match(inExp,inSubs_) | ||
| 3336 | local | ||
| 3337 | DAE.Exp exp; | ||
| 3338 | list<Subscript> subs,subs1,subs2; | ||
| 3339 | |||
| 3340 | // We need to be careful when constructing ASUB's. All subscripts should be in a list. | ||
| 3341 | case (DAE.ASUB(exp,subs1),subs2) | ||
| 3342 | algorithm | ||
| 3343 | 7556 | subs := listAppend(subs1,subs2); | |
| 3344 | 7556 | exp := DAE.ASUB(exp,subs); | |
| 3345 | then | ||
| 3346 | exp; | ||
| 3347 | |||
| 3348 | case(_, _) | ||
| 3349 | algorithm | ||
| 3350 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 885475 times.
|
885475 | if Flags.isSet(Flags.CHECK_ASUB) // check the DAE.ASUB |
| 3351 | then | ||
| 3352 | () := match inExp // check the DAE.ASUB so that the given expression is NOT a cref | ||
| 3353 | case DAE.CREF() | ||
| 3354 | algorithm | ||
| 3355 | ✗ | Debug.traceln("Warning: makeASUB: given expression: " + | |
| 3356 | ExpressionBasics.printExpStr(inExp) + | ||
| 3357 | " contains a component reference!\n" + | ||
| 3358 | " Subscripts exps: [" + stringDelimitList(List.map(inSubs, ExpressionBasics.printExpStr), ",")+ "]\n" + | ||
| 3359 | "DAE.ASUB should not be used for component references, instead the subscripts should be added directly to the component reference!"); | ||
| 3360 | then (); | ||
| 3361 | else (); // check the DAE.ASUB -> was not a cref | ||
| 3362 | end match; | ||
| 3363 | end if; | ||
| 3364 | 885475 | exp := DAE.ASUB(inExp,inSubs_); | |
| 3365 | then | ||
| 3366 | exp; | ||
| 3367 | |||
| 3368 | end match; | ||
| 3369 | end makeASUB; | ||
| 3370 | |||
| 3371 | public function makeASUBSingleSub | ||
| 3372 | input DAE.Exp exp; | ||
| 3373 | input DAE.Exp sub; | ||
| 3374 | output DAE.Exp outExp; | ||
| 3375 | algorithm | ||
| 3376 | 94 | outExp := makeASUB(exp,{sub}); | |
| 3377 | end makeASUBSingleSub; | ||
| 3378 | |||
| 3379 | public function makeTuple | ||
| 3380 | input list<DAE.Exp> inExps; | ||
| 3381 | output DAE.Exp outExp; | ||
| 3382 | algorithm | ||
| 3383 |
2/2✓ Branch 1 taken 27 times.
✓ Branch 2 taken 61866 times.
|
61893 | outExp := if listLength(inExps) > 1 then DAE.TUPLE(inExps) else listHead(inExps); |
| 3384 | end makeTuple; | ||
| 3385 | |||
| 3386 | |||
| 3387 | public function generateCrefsExpFromExpVar " | ||
| 3388 | Author: Frenkel TUD 2010-05" | ||
| 3389 | input DAE.Var inVar; | ||
| 3390 | input DAE.ComponentRef inCrefPrefix; | ||
| 3391 | output DAE.Exp outCrefExp; | ||
| 3392 | algorithm outCrefExp := match inVar | ||
| 3393 | local | ||
| 3394 | String name; | ||
| 3395 | DAE.Type ty; | ||
| 3396 | DAE.ComponentRef cr; | ||
| 3397 | DAE.Exp e; | ||
| 3398 | |||
| 3399 | case DAE.TYPES_VAR(name=name,ty=ty) | ||
| 3400 | algorithm | ||
| 3401 | 35197 | cr := ComponentReference.crefPrependIdent(inCrefPrefix,name,{},ty); | |
| 3402 | 35197 | e := makeCrefExp(cr, ty); | |
| 3403 | then | ||
| 3404 | e; | ||
| 3405 | |||
| 3406 | end match; | ||
| 3407 | end generateCrefsExpFromExpVar; | ||
| 3408 | |||
| 3409 | public function generateCrefsFromExpVar " | ||
| 3410 | Author: Frenkel TUD 2010-05" | ||
| 3411 | input DAE.Var inVar; | ||
| 3412 | input DAE.ComponentRef inCrefPrefix; | ||
| 3413 | output DAE.ComponentRef outCref; | ||
| 3414 | algorithm outCref := match inVar | ||
| 3415 | local | ||
| 3416 | String name; | ||
| 3417 | DAE.Type ty; | ||
| 3418 | DAE.ComponentRef cr; | ||
| 3419 | |||
| 3420 | case DAE.TYPES_VAR(name=name,ty=ty) | ||
| 3421 | algorithm | ||
| 3422 | ✗ | cr := ComponentReference.crefPrependIdent(inCrefPrefix,name,{},ty); | |
| 3423 | then | ||
| 3424 | cr; | ||
| 3425 | end match; | ||
| 3426 | end generateCrefsFromExpVar; | ||
| 3427 | |||
| 3428 | public function generateCrefsExpFromExp | ||
| 3429 | input DAE.Exp inExp; | ||
| 3430 | input DAE.ComponentRef inCrefPrefix; | ||
| 3431 | output DAE.Exp outCrefExp; | ||
| 3432 | algorithm | ||
| 3433 | outCrefExp := match inExp | ||
| 3434 | local | ||
| 3435 | String name; | ||
| 3436 | DAE.Type ty; | ||
| 3437 | DAE.ComponentRef cr; | ||
| 3438 | DAE.Exp e; | ||
| 3439 | Absyn.Path p1,p2; | ||
| 3440 | list<DAE.Exp> explst; | ||
| 3441 | Boolean b; | ||
| 3442 | DAE.CallAttributes attr; | ||
| 3443 | list<String> fields; | ||
| 3444 | |||
| 3445 | case DAE.CREF(componentRef=DAE.WILD()) then inExp; | ||
| 3446 | |||
| 3447 | case DAE.ARRAY(ty=ty, scalar=b, array=explst) | ||
| 3448 | algorithm | ||
| 3449 | ✗ | explst := List.map1(explst, generateCrefsExpFromExp, inCrefPrefix); | |
| 3450 | ✗ | then DAE.ARRAY(ty, b, explst); | |
| 3451 | |||
| 3452 | case DAE.CALL(path=p1,expLst=explst,attr=attr as DAE.CALL_ATTR(ty=DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p2)))) | ||
| 3453 | algorithm | ||
| 3454 | ✗ | true := AbsynUtil.pathEqual(p1,p2) "is record constructor"; | |
| 3455 | ✗ | explst := List.map1(explst, generateCrefsExpFromExp, inCrefPrefix); | |
| 3456 | ✗ | then | |
| 3457 | DAE.CALL(p1,explst,attr); | ||
| 3458 | |||
| 3459 | case DAE.RECORD(p1, explst, fields, ty) | ||
| 3460 | algorithm | ||
| 3461 | ✗ | explst := List.map1(explst, generateCrefsExpFromExp, inCrefPrefix); | |
| 3462 | ✗ | then | |
| 3463 | DAE.RECORD(p1, explst, fields, ty); | ||
| 3464 | |||
| 3465 | case DAE.CREF(componentRef=cr,ty=ty) | ||
| 3466 | algorithm | ||
| 3467 | ✗ | name := ComponentReference.crefModelicaStr(cr); | |
| 3468 | ✗ | cr := ComponentReference.crefPrependIdent(inCrefPrefix,name,{},ty); | |
| 3469 | ✗ | e := makeCrefExp(cr, ty); | |
| 3470 | then | ||
| 3471 | e; | ||
| 3472 | case DAE.UNARY(exp=e) | ||
| 3473 | ✗ | then negate(generateCrefsExpFromExp(e, inCrefPrefix)); /*ToDo: check*/ | |
| 3474 | else | ||
| 3475 | algorithm | ||
| 3476 | ✗ | print("Expression.generateCrefsExpFromExp: fail for" + ExpressionBasics.printExpStr(inExp) + "\n"); | |
| 3477 | ✗ | then fail(); | |
| 3478 | end match; | ||
| 3479 | end generateCrefsExpFromExp; | ||
| 3480 | |||
| 3481 | public function generateCrefsExpLstFromExp | ||
| 3482 | input DAE.Exp inExp; | ||
| 3483 | input Option<DAE.ComponentRef> inCrefPrefix; | ||
| 3484 | output list<DAE.Exp> outCrefExpList; | ||
| 3485 | algorithm | ||
| 3486 | outCrefExpList := match(inExp,inCrefPrefix) | ||
| 3487 | local | ||
| 3488 | String name; | ||
| 3489 | DAE.Type ty; | ||
| 3490 | DAE.ComponentRef cr, incref; | ||
| 3491 | DAE.Exp e; | ||
| 3492 | Absyn.Path p1,p2; | ||
| 3493 | list<DAE.Exp> explst; | ||
| 3494 | |||
| 3495 | case (DAE.TUPLE(PR=explst), _) | ||
| 3496 | algorithm | ||
| 3497 | ✗ | explst := List.flatten(List.map1(explst, generateCrefsExpLstFromExp, inCrefPrefix)); | |
| 3498 | then explst; | ||
| 3499 | |||
| 3500 | case (DAE.ARRAY( array=explst), _) | ||
| 3501 | algorithm | ||
| 3502 | ✗ | explst := List.flatten(List.map1(explst, generateCrefsExpLstFromExp, inCrefPrefix)); | |
| 3503 | then explst; | ||
| 3504 | |||
| 3505 | case (DAE.CALL(path=p1,expLst=explst,attr=DAE.CALL_ATTR(ty=DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p2)))),_) | ||
| 3506 | guard AbsynUtil.pathEqual(p1,p2) // is record constructor | ||
| 3507 | ✗ | then List.flatten(List.map1(explst, generateCrefsExpLstFromExp, inCrefPrefix)); | |
| 3508 | |||
| 3509 | case (DAE.RECORD(exps=explst),_) | ||
| 3510 | 120 | then List.flatten(List.map1(explst, generateCrefsExpLstFromExp, inCrefPrefix)); | |
| 3511 | |||
| 3512 | case(DAE.CALL(path = Absyn.IDENT("der"),expLst = {DAE.CREF(componentRef = incref)}), _) | ||
| 3513 | algorithm | ||
| 3514 | ✗ | cr := ComponentReference.crefPrefixDer(incref); | |
| 3515 | ✗ | e := Expression.crefExp(cr); | |
| 3516 | ✗ | then generateCrefsExpLstFromExp(e, inCrefPrefix); | |
| 3517 | |||
| 3518 | case (DAE.CREF(componentRef=cr,ty=ty),SOME(incref)) | ||
| 3519 | algorithm | ||
| 3520 | ✗ | name := ComponentReference.crefModelicaStr(cr); | |
| 3521 | ✗ | cr := ComponentReference.crefPrependIdent(incref,name,{},ty); | |
| 3522 | ✗ | e := makeCrefExp(cr, ty); | |
| 3523 | then | ||
| 3524 | {e}; | ||
| 3525 | |||
| 3526 | case (DAE.CREF(),NONE()) then {inExp}; | ||
| 3527 | |||
| 3528 | case (DAE.UNARY(exp=e),_) | ||
| 3529 | ✗ | then generateCrefsExpLstFromExp(e, inCrefPrefix);/*ToDo: check*/ | |
| 3530 | |||
| 3531 | else | ||
| 3532 | algorithm | ||
| 3533 | ✗ | print("Expression.generateCrefsExpLstFromExp: fail for " + ExpressionBasics.printExpStr(inExp) + "\n"); | |
| 3534 | ✗ | then fail(); | |
| 3535 | |||
| 3536 | end match; | ||
| 3537 | end generateCrefsExpLstFromExp; | ||
| 3538 | |||
| 3539 | public function makeArray | ||
| 3540 | input list<DAE.Exp> inElements; | ||
| 3541 | input DAE.Type inType; | ||
| 3542 | input Boolean inScalar; | ||
| 3543 | output DAE.Exp outArray; | ||
| 3544 | algorithm | ||
| 3545 |
2/2✓ Branch 0 taken 5360 times.
✓ Branch 1 taken 20842 times.
|
31562 | outArray := DAE.ARRAY(inType, inScalar, inElements); |
| 3546 | end makeArray; | ||
| 3547 | |||
| 3548 | public function makeArrayFromList | ||
| 3549 | input list<DAE.Exp> inElements; | ||
| 3550 | output DAE.Exp outArray; | ||
| 3551 | protected | ||
| 3552 | DAE.Type ty; | ||
| 3553 | algorithm | ||
| 3554 | 26 | ty := typeof(listHead(inElements)); | |
| 3555 |
1/2✗ Branch 4 not taken.
✓ Branch 5 taken 26 times.
|
52 | outArray := DAE.ARRAY(DAE.T_ARRAY(ty,{DAE.DIM_INTEGER(listLength(inElements))}), not Types.isArray(ty), inElements); |
| 3556 | end makeArrayFromList; | ||
| 3557 | |||
| 3558 | public function makeScalarArray | ||
| 3559 | "Constructs an array of the given scalar type." | ||
| 3560 | input list<DAE.Exp> inExpLst; | ||
| 3561 | input DAE.Type et; | ||
| 3562 | output DAE.Exp outExp; | ||
| 3563 | protected | ||
| 3564 | Integer i; | ||
| 3565 | algorithm | ||
| 3566 | 1571 | i := listLength(inExpLst); | |
| 3567 | 3142 | outExp := DAE.ARRAY(DAE.T_ARRAY(et, {DAE.DIM_INTEGER(i)}), true, inExpLst); | |
| 3568 | end makeScalarArray; | ||
| 3569 | |||
| 3570 | public function makeRealArray | ||
| 3571 | "Construct an array node of an DAE.Exp list of type REAL." | ||
| 3572 | input list<DAE.Exp> expl; | ||
| 3573 | output DAE.Exp outExp; | ||
| 3574 | algorithm | ||
| 3575 | 806 | outExp := makeScalarArray(expl,DAE.T_REAL_DEFAULT); | |
| 3576 | end makeRealArray; | ||
| 3577 | |||
| 3578 | public function makeRealAdd | ||
| 3579 | "Construct an add node of the two expressions of type REAL." | ||
| 3580 | input DAE.Exp inExp1; | ||
| 3581 | input DAE.Exp inExp2; | ||
| 3582 | output DAE.Exp outExp; | ||
| 3583 | algorithm | ||
| 3584 | 6655 | outExp := DAE.BINARY(inExp1, DAE.ADD(DAE.T_REAL_DEFAULT), inExp2); | |
| 3585 | end makeRealAdd; | ||
| 3586 | |||
| 3587 | public function expAdd | ||
| 3588 | "author: PA | ||
| 3589 | Adds two scalar expressions." | ||
| 3590 | input DAE.Exp e1; | ||
| 3591 | input DAE.Exp e2; | ||
| 3592 | output DAE.Exp outExp; | ||
| 3593 | algorithm | ||
| 3594 | outExp := match(e1,e2) | ||
| 3595 | local | ||
| 3596 | Type tp; | ||
| 3597 | Boolean b; | ||
| 3598 | Operator op; | ||
| 3599 | Real r1,r2; | ||
| 3600 | Integer i1,i2; | ||
| 3601 | DAE.Exp e, x, y; | ||
| 3602 | |||
| 3603 | case(_,_) guard isZero(e1) then e2; | ||
| 3604 | case(_,_) guard isZero(e2) then e1; | ||
| 3605 | 2799 | case(DAE.RCONST(r1),DAE.RCONST(r2)) then DAE.RCONST(r1 + r2); | |
| 3606 | ✗ | case(DAE.ICONST(i1),DAE.ICONST(i2)) then DAE.ICONST(i1 + i2); | |
| 3607 | |||
| 3608 | /* a + (-b) = a - b */ | ||
| 3609 | case (_,DAE.UNARY(operator=DAE.UMINUS(),exp=e)) | ||
| 3610 | 96413 | then | |
| 3611 | expSub(e1,e); | ||
| 3612 | case (_,DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=e)) | ||
| 3613 | ✗ | then | |
| 3614 | expSub(e1,e); | ||
| 3615 | // x +(-y)*z | ||
| 3616 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.MUL(),y)) | ||
| 3617 | 8941 | then | |
| 3618 | expSub(e1,DAE.BINARY(x,op,y)); | ||
| 3619 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.MUL_ARR(),y)) | ||
| 3620 | ✗ | then | |
| 3621 | expSub(e1,DAE.BINARY(x,op,y)); | ||
| 3622 | // x +(-y)/z | ||
| 3623 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.DIV(),y)) | ||
| 3624 | 3603 | then | |
| 3625 | expSub(e1,DAE.BINARY(x,op,y)); | ||
| 3626 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.DIV_ARR(),y)) | ||
| 3627 | ✗ | then | |
| 3628 | expSub(e1,DAE.BINARY(x,op,y)); | ||
| 3629 | /* -b + a = a - b */ | ||
| 3630 | case (DAE.UNARY(operator=DAE.UMINUS(),exp=e),_) | ||
| 3631 | 17103 | then | |
| 3632 | expSub(e2,e); | ||
| 3633 | case (DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=e),_) | ||
| 3634 | ✗ | then | |
| 3635 | expSub(e2,e); | ||
| 3636 | // (-y)*z+x | ||
| 3637 | case (DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.MUL(),y),_) | ||
| 3638 | 4657 | then | |
| 3639 | expSub(e2,DAE.BINARY(x,op,y)); | ||
| 3640 | case (DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.MUL_ARR(),y),_) | ||
| 3641 | ✗ | then | |
| 3642 | expSub(e2,DAE.BINARY(x,op,y)); | ||
| 3643 | // (-y)/z + x | ||
| 3644 | case (DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.DIV(),y),_) | ||
| 3645 | 65 | then | |
| 3646 | expSub(e2,DAE.BINARY(x,op,y)); | ||
| 3647 | case (DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.DIV_ARR(),y),_) | ||
| 3648 | ✗ | then | |
| 3649 | expSub(e2,DAE.BINARY(x,op,y)); | ||
| 3650 | |||
| 3651 | case (_,_) guard Types.isIntegerOrRealOrSubTypeOfEither(typeof(e1)) | ||
| 3652 | algorithm | ||
| 3653 | 1498688 | tp := typeof(e1); | |
| 3654 | 1498688 | b := DAEUtil.expTypeArray(tp) " array_elt_type(tp) => tp\'" ; | |
| 3655 |
2/2✓ Branch 0 taken 193 times.
✓ Branch 1 taken 1498495 times.
|
1498688 | op := if b then DAE.ADD_ARR(tp) else DAE.ADD(tp); |
| 3656 | 1498688 | then | |
| 3657 | DAE.BINARY(e1,op,e2); | ||
| 3658 | case (_,_) guard Types.isEnumeration(typeof(e1)) | ||
| 3659 | ✗ | then | |
| 3660 | DAE.BINARY(e1,DAE.ADD(typeof(e1)),e2); | ||
| 3661 | end match; | ||
| 3662 | end expAdd; | ||
| 3663 | |||
| 3664 | public function expSub | ||
| 3665 | "author: PA | ||
| 3666 | Subtracts two scalar expressions." | ||
| 3667 | input DAE.Exp e1; | ||
| 3668 | input DAE.Exp e2; | ||
| 3669 | output DAE.Exp outExp; | ||
| 3670 | algorithm | ||
| 3671 | outExp := match(e1,e2) | ||
| 3672 | local | ||
| 3673 | Type tp; | ||
| 3674 | Boolean b; | ||
| 3675 | Operator op; | ||
| 3676 | Real r1,r2; | ||
| 3677 | Integer i1,i2; | ||
| 3678 | DAE.Exp e, x,y; | ||
| 3679 | 114919 | case(_,_) guard isZero(e1) then negate(e2); | |
| 3680 | case(_,_) guard isZero(e2) then e1; | ||
| 3681 | 674 | case(DAE.RCONST(r1),DAE.RCONST(r2)) then DAE.RCONST(r1-r2); | |
| 3682 | ✗ | case(DAE.ICONST(i1),DAE.ICONST(i2)) then DAE.ICONST(i1-i2); | |
| 3683 | |||
| 3684 | /* a - (-b) = a + b */ | ||
| 3685 | case (_,DAE.UNARY(operator=DAE.UMINUS(),exp=e)) | ||
| 3686 | 1808 | then | |
| 3687 | expAdd(e1,e); | ||
| 3688 | case (_,DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=e)) | ||
| 3689 | 174 | then | |
| 3690 | expAdd(e1,e); | ||
| 3691 | // x -(-y)*z | ||
| 3692 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.MUL(),y)) | ||
| 3693 | 2181 | then | |
| 3694 | expAdd(e1,DAE.BINARY(x,op,y)); | ||
| 3695 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.MUL_ARR(),y)) | ||
| 3696 | ✗ | then | |
| 3697 | expAdd(e1,DAE.BINARY(x,op,y)); | ||
| 3698 | // x -(-y)/z | ||
| 3699 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS(),x),op as DAE.DIV(),y)) | ||
| 3700 | 243 | then | |
| 3701 | expAdd(e1,DAE.BINARY(x,op,y)); | ||
| 3702 | case (_,DAE.BINARY(DAE.UNARY(DAE.UMINUS_ARR(),x), op as DAE.DIV_ARR(),y)) | ||
| 3703 | ✗ | then | |
| 3704 | expAdd(e1,DAE.BINARY(x,op,y)); | ||
| 3705 | /* - a - b = -(a + b) */ | ||
| 3706 | case (DAE.UNARY(operator=DAE.UMINUS(),exp=e),_) | ||
| 3707 | algorithm | ||
| 3708 | 17198 | e := expAdd(e,e2); | |
| 3709 | 17198 | then | |
| 3710 | negate(e); | ||
| 3711 | case (DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=e),_) | ||
| 3712 | algorithm | ||
| 3713 | ✗ | e := expAdd(e,e2); | |
| 3714 | ✗ | then | |
| 3715 | negate(e); | ||
| 3716 | |||
| 3717 | case (_,_) guard Types.isIntegerOrRealOrSubTypeOfEither(typeof(e1)) | ||
| 3718 | algorithm | ||
| 3719 | 636456 | tp := typeof(e1); | |
| 3720 | 636456 | b := DAEUtil.expTypeArray(tp) " array_elt_type(tp) => tp\'" ; | |
| 3721 |
2/2✓ Branch 0 taken 3667 times.
✓ Branch 1 taken 632789 times.
|
636456 | op := if b then DAE.SUB_ARR(tp) else DAE.SUB(tp); |
| 3722 | 636456 | then | |
| 3723 | DAE.BINARY(e1,op,e2); | ||
| 3724 | case (_,_) guard Types.isEnumeration(typeof(e1)) | ||
| 3725 | 9069 | then | |
| 3726 | DAE.BINARY(e1,DAE.SUB(typeof(e1)),e2); | ||
| 3727 | end match; | ||
| 3728 | end expSub; | ||
| 3729 | |||
| 3730 | public function makeLBinary | ||
| 3731 | "Makes a binary logical expression of all elements in the list." | ||
| 3732 | input list<DAE.Exp> inExpLst; | ||
| 3733 | input DAE.Operator op; | ||
| 3734 | output DAE.Exp outExp; | ||
| 3735 | algorithm | ||
| 3736 | outExp := match (inExpLst,op) | ||
| 3737 | local | ||
| 3738 | DAE.Exp e1,e2,res; | ||
| 3739 | list<DAE.Exp> rest; | ||
| 3740 | String str; | ||
| 3741 | case ({},DAE.AND(_)) then DAE.BCONST(true); | ||
| 3742 | case ({},DAE.OR(_)) then DAE.BCONST(false); | ||
| 3743 | case ({e1},_) then e1; | ||
| 3744 | 8 | case ({e1, e2},_) then DAE.LBINARY(e1,op,e2); | |
| 3745 | case ((e1 :: rest),_) | ||
| 3746 | algorithm | ||
| 3747 | 8 | res := makeLBinary(rest,op); | |
| 3748 | 8 | res := DAE.LBINARY(e1,op,res); | |
| 3749 | then res; | ||
| 3750 | else | ||
| 3751 | algorithm | ||
| 3752 | ✗ | str := "Expression.makeLBinary failed for operator " + ExpressionDump.lbinopSymbol(op); | |
| 3753 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {str}); | |
| 3754 | ✗ | then fail(); | |
| 3755 | end match; | ||
| 3756 | end makeLBinary; | ||
| 3757 | |||
| 3758 | public function makeSum1 | ||
| 3759 | "Takes a list of expressions an makes a sum | ||
| 3760 | expression sorting adding all elements in the list. | ||
| 3761 | |||
| 3762 | Note: | ||
| 3763 | makeSum1 => (a + b) + c | ||
| 3764 | makeSum => a + (b + c) | ||
| 3765 | " | ||
| 3766 | |||
| 3767 | |||
| 3768 | input list<DAE.Exp> inExpLst; | ||
| 3769 | input Boolean simplify = false; | ||
| 3770 | output DAE.Exp outExp; | ||
| 3771 | protected | ||
| 3772 | DAE.Exp e1,e2; | ||
| 3773 | algorithm | ||
| 3774 | outExp := matchcontinue inExpLst | ||
| 3775 | case {} then DAE.RCONST(0.0); | ||
| 3776 | case {e1} then e1; | ||
| 3777 | 183424 | case {e1,e2} then expAdd(e1,e2); | |
| 3778 | 24817 | case _ then makeSumWork(inExpLst, simplify); | |
| 3779 | else | ||
| 3780 | algorithm | ||
| 3781 | ✗ | if Flags.isSet(Flags.FAILTRACE) then | |
| 3782 | ✗ | Debug.trace("-Expression.makeSum1 failed, DAE.Exp lst:"); | |
| 3783 | ✗ | Debug.trace(ExpressionDump.printExpListStr(inExpLst)); | |
| 3784 | end if; | ||
| 3785 | ✗ | then fail(); | |
| 3786 | end matchcontinue; | ||
| 3787 | |||
| 3788 | end makeSum1; | ||
| 3789 | |||
| 3790 | protected function makeSumWork | ||
| 3791 | "Takes a list of expressions an makes a sum expression adding all elements in | ||
| 3792 | the list. Zero terms are dropped." | ||
| 3793 | input list<DAE.Exp> inExpLst; | ||
| 3794 | input Boolean simplify = false; | ||
| 3795 | output DAE.Exp outExp; | ||
| 3796 | protected | ||
| 3797 | list<DAE.Exp> terms, rest; | ||
| 3798 | algorithm | ||
| 3799 |
6/6✓ Branch 1 taken 7506 times.
✓ Branch 2 taken 94501 times.
✓ Branch 3 taken 102007 times.
✓ Branch 4 taken 24817 times.
✓ Branch 5 taken 94501 times.
✓ Branch 6 taken 24817 times.
|
126824 | terms := list(e for e guard(not isZero(e)) in inExpLst); |
| 3800 | |||
| 3801 |
2/2✓ Branch 0 taken 561 times.
✓ Branch 1 taken 24256 times.
|
24817 | if listEmpty(terms) then |
| 3802 | 561 | outExp := listHead(inExpLst); | |
| 3803 | elseif listLength(terms) > MAX_SUM_CHAIN then | ||
| 3804 | ✗ | outExp := balancedSum(terms, simplify); | |
| 3805 | else | ||
| 3806 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 24256 times.
|
24256 | outExp :: rest := terms; |
| 3807 | |||
| 3808 |
2/2✓ Branch 0 taken 70245 times.
✓ Branch 1 taken 24256 times.
|
94501 | for e in rest loop |
| 3809 | 70245 | outExp := DAE.BINARY(outExp, addOperator(outExp, e), e); | |
| 3810 | |||
| 3811 |
2/2✓ Branch 0 taken 80 times.
✓ Branch 1 taken 70165 times.
|
70245 | if simplify then |
| 3812 | 80 | outExp := ExpressionSimplify.simplify1(outExp); | |
| 3813 | end if; | ||
| 3814 | end for; | ||
| 3815 | end if; | ||
| 3816 | end makeSumWork; | ||
| 3817 | |||
| 3818 | public function makeSum | ||
| 3819 | "Takes a list of expressions an makes a sum expression adding all elements in | ||
| 3820 | the list. Zero terms are dropped." | ||
| 3821 | input list<DAE.Exp> inExpLst; | ||
| 3822 | output DAE.Exp outExp; | ||
| 3823 | protected | ||
| 3824 | list<DAE.Exp> terms; | ||
| 3825 | algorithm | ||
| 3826 |
6/6✓ Branch 1 taken 1667 times.
✓ Branch 2 taken 2621253 times.
✓ Branch 3 taken 2622920 times.
✓ Branch 4 taken 1227050 times.
✓ Branch 5 taken 2621253 times.
✓ Branch 6 taken 1227050 times.
|
3849970 | terms := list(e for e guard(not isZero(e)) in inExpLst); |
| 3827 | |||
| 3828 |
2/2✓ Branch 0 taken 1361 times.
✓ Branch 1 taken 1225689 times.
|
1227050 | if listEmpty(terms) then |
| 3829 |
1/2✓ Branch 0 taken 1361 times.
✗ Branch 1 not taken.
|
1361 | outExp := if listEmpty(inExpLst) then DAE.RCONST(0.0) else List.last(inExpLst); |
| 3830 | elseif listLength(terms) > MAX_SUM_CHAIN then | ||
| 3831 | ✗ | outExp := balancedSum(terms); | |
| 3832 | else | ||
| 3833 | 1225689 | terms := listReverse(terms); | |
| 3834 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1225689 times.
|
1225689 | outExp :: terms := terms; |
| 3835 | |||
| 3836 |
2/2✓ Branch 0 taken 1395564 times.
✓ Branch 1 taken 1225689 times.
|
2621253 | for e in terms loop |
| 3837 | 1395564 | outExp := DAE.BINARY(e, addOperator(e, outExp), outExp); | |
| 3838 | end for; | ||
| 3839 | end if; | ||
| 3840 | end makeSum; | ||
| 3841 | |||
| 3842 | protected function addOperator | ||
| 3843 | "The addition operator for two summands, array-valued if either of them is." | ||
| 3844 | input DAE.Exp e1; | ||
| 3845 | input DAE.Exp e2; | ||
| 3846 | output DAE.Operator op; | ||
| 3847 | protected | ||
| 3848 | Type tp = typeof(e1); | ||
| 3849 | algorithm | ||
| 3850 |
1/2✓ Branch 1 taken 1465809 times.
✗ Branch 2 not taken.
|
1465809 | if not DAEUtil.expTypeArray(tp) then |
| 3851 | 1465809 | tp := typeof(e2); | |
| 3852 | end if; | ||
| 3853 | |||
| 3854 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 1465809 times.
|
1465809 | op := if DAEUtil.expTypeArray(tp) then DAE.ADD_ARR(tp) else DAE.ADD(tp); |
| 3855 | end addOperator; | ||
| 3856 | |||
| 3857 | protected function balancedSum | ||
| 3858 | "Adds the expressions pairwise, level by level, keeping their order. Used for | ||
| 3859 | sums too long to leave as a chain, see MAX_SUM_CHAIN." | ||
| 3860 | input list<DAE.Exp> inExpLst; | ||
| 3861 | input Boolean simplify = false; | ||
| 3862 | output DAE.Exp outExp; | ||
| 3863 | protected | ||
| 3864 | list<DAE.Exp> level = inExpLst, next; | ||
| 3865 | DAE.Exp e1, e2; | ||
| 3866 | algorithm | ||
| 3867 | ✗ | while not listEmpty(listRest(level)) loop | |
| 3868 | next := {}; | ||
| 3869 | |||
| 3870 | ✗ | while not listEmpty(level) loop | |
| 3871 | ✗ | e1 :: level := level; | |
| 3872 | |||
| 3873 | ✗ | if listEmpty(level) then | |
| 3874 | next := e1 :: next; | ||
| 3875 | else | ||
| 3876 | ✗ | e2 :: level := level; | |
| 3877 | ✗ | outExp := DAE.BINARY(e1, addOperator(e1, e2), e2); | |
| 3878 | ✗ | next := (if simplify then ExpressionSimplify.simplify1(outExp) else outExp) :: next; | |
| 3879 | end if; | ||
| 3880 | end while; | ||
| 3881 | |||
| 3882 | ✗ | level := MetaModelica.Dangerous.listReverseInPlace(next); | |
| 3883 | end while; | ||
| 3884 | |||
| 3885 | ✗ | outExp := listHead(level); | |
| 3886 | end balancedSum; | ||
| 3887 | |||
| 3888 | public function expMul | ||
| 3889 | "author: PA | ||
| 3890 | Multiplies two scalar expressions." | ||
| 3891 | input DAE.Exp e1; | ||
| 3892 | input DAE.Exp e2; | ||
| 3893 | output DAE.Exp outExp; | ||
| 3894 | algorithm | ||
| 3895 | outExp := matchcontinue(e1,e2) | ||
| 3896 | local | ||
| 3897 | Type tp; | ||
| 3898 | Boolean b1,b2; | ||
| 3899 | Operator op; | ||
| 3900 | Real r1,r2; | ||
| 3901 | Integer i1,i2; | ||
| 3902 | DAE.Exp e1_1,e2_1; | ||
| 3903 | case(_,_) | ||
| 3904 | algorithm | ||
| 3905 |
2/2✓ Branch 1 taken 2402788 times.
✓ Branch 2 taken 375766 times.
|
2778554 | true := isZero(e1); |
| 3906 | then e1; | ||
| 3907 | case(_,_) | ||
| 3908 | algorithm | ||
| 3909 |
2/2✓ Branch 1 taken 2037354 times.
✓ Branch 2 taken 365434 times.
|
2402788 | true := isZero(e2); |
| 3910 | then e2; | ||
| 3911 | case(DAE.RCONST(real = 1.0),_) | ||
| 3912 | then e2; | ||
| 3913 | case(_,DAE.RCONST(real = 1.0)) | ||
| 3914 | then e1; | ||
| 3915 | case(DAE.ICONST(1),_) | ||
| 3916 | then e2; | ||
| 3917 | case(_,DAE.ICONST(1)) | ||
| 3918 | then e1; | ||
| 3919 | case(DAE.RCONST(r1),DAE.RCONST(r2)) | ||
| 3920 | algorithm | ||
| 3921 | 8854 | r1 := realMul(r1,r2); | |
| 3922 | 8854 | then | |
| 3923 | DAE.RCONST(r1); | ||
| 3924 | case(DAE.ICONST(i1),DAE.ICONST(i2)) | ||
| 3925 | algorithm | ||
| 3926 | ✗ | i1 := intMul(i1,i2); | |
| 3927 | ✗ | then | |
| 3928 | DAE.ICONST(i1); | ||
| 3929 | else | ||
| 3930 | algorithm | ||
| 3931 | 1252705 | tp := typeof(e1); | |
| 3932 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 1252705 times.
|
1252705 | true := Types.isIntegerOrRealOrSubTypeOfEither(tp); |
| 3933 | 1252705 | b1 := DAEUtil.expTypeArray(tp); | |
| 3934 | 1252705 | tp := typeof(e2); | |
| 3935 |
2/2✓ Branch 1 taken 14 times.
✓ Branch 2 taken 1252691 times.
|
1252705 | true := Types.isIntegerOrRealOrSubTypeOfEither(tp); |
| 3936 | 1252691 | b2 := DAEUtil.expTypeArray(tp); | |
| 3937 | /* swap e1 and e2 if we have scalar mul array */ | ||
| 3938 | 1252691 | (e1_1,e2_1) := Util.swap((not b1) and b2, e1, e2); | |
| 3939 | /* Create all kinds of multiplication with scalars or arrays */ | ||
| 3940 |
4/4✓ Branch 0 taken 2 times.
✓ Branch 1 taken 1252689 times.
✓ Branch 3 taken 1252497 times.
✓ Branch 4 taken 192 times.
|
1252691 | op := if b1 and b2 then DAE.MUL_ARR(tp) else (if b1==b2 then DAE.MUL(tp) else DAE.MUL_ARRAY_SCALAR(tp)); |
| 3941 | 1252691 | then | |
| 3942 | DAE.BINARY(e1_1,op,e2_1); | ||
| 3943 | end matchcontinue; | ||
| 3944 | end expMul; | ||
| 3945 | |||
| 3946 | public function expPow "author: vitalij" | ||
| 3947 | input DAE.Exp e1; | ||
| 3948 | input DAE.Exp e2; | ||
| 3949 | output DAE.Exp outExp; | ||
| 3950 | |||
| 3951 | algorithm | ||
| 3952 | outExp := match(e1,e2) | ||
| 3953 | local | ||
| 3954 | Type tp; | ||
| 3955 | DAE.Exp e,e3,e4,e5; | ||
| 3956 | Boolean b; | ||
| 3957 | Operator op; | ||
| 3958 | |||
| 3959 | // e1^1 = e1 | ||
| 3960 | case(_,_) guard(isOne(e2)) | ||
| 3961 | then e1; | ||
| 3962 | |||
| 3963 | // e1^0 = 1 | ||
| 3964 | case(_,_) guard(isZero(e2)) | ||
| 3965 | 2 | then makeConstOne(typeof(e1)); | |
| 3966 | |||
| 3967 | // 1^e2 = 1 | ||
| 3968 | case (_,_) guard(isConstOne(e1)) | ||
| 3969 | then e1; | ||
| 3970 | |||
| 3971 | // 0^e2 = 0 | ||
| 3972 | case (_,_) guard(isZero(e1) and isPositive(e2)) | ||
| 3973 | 14 | then makeConstZero(typeof(e1)); | |
| 3974 | |||
| 3975 | // (-e)^r = e^r if r is even | ||
| 3976 | case (DAE.UNARY(DAE.UMINUS(),e), _) guard(isEven(e2)) | ||
| 3977 | ✗ | then expPow(e, e2); | |
| 3978 | |||
| 3979 | // (x/y)^(-z) = (y/x)^z | ||
| 3980 | case (DAE.BINARY(e3, DAE.DIV(), e4), DAE.UNARY(DAE.UMINUS(),e5)) | ||
| 3981 | algorithm | ||
| 3982 | ✗ | e := makeDiv(e4,e3); | |
| 3983 | ✗ | e := expPow(e,e5); | |
| 3984 | then e; | ||
| 3985 | |||
| 3986 | // (e1/e2)^(-r) = (e2/e1)^r | ||
| 3987 | case (DAE.BINARY(e3, DAE.DIV(), e4) , _) guard(isNegativeOrZero(e2)) | ||
| 3988 | ✗ | then expPow(makeDiv(e4,e3), negate(e2)); | |
| 3989 | |||
| 3990 | // x^0.5 => sqrt(x) | ||
| 3991 | case (_, _) guard(isHalf(e2) and isPositiveOrZero(e1)) | ||
| 3992 | ✗ | then Expression.makePureBuiltinCall("sqrt",{e1},DAE.T_REAL_DEFAULT); | |
| 3993 | |||
| 3994 | else algorithm | ||
| 3995 | 2204 | tp := typeof(e1); | |
| 3996 | 2204 | b := DAEUtil.expTypeArray(tp); | |
| 3997 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 2204 times.
|
2204 | op := if b then DAE.POW_ARR(tp) else DAE.POW(tp); |
| 3998 | 2204 | then DAE.BINARY(e1,op,e2); | |
| 3999 | |||
| 4000 | end match; | ||
| 4001 | end expPow; | ||
| 4002 | |||
| 4003 | public function expPowLst | ||
| 4004 | " | ||
| 4005 | {a,b}^n -> {a^n, b^n} | ||
| 4006 | author: vitalij" | ||
| 4007 | input list<DAE.Exp> expLst; | ||
| 4008 | input DAE.Exp n; | ||
| 4009 | output list<DAE.Exp> outExp = List.map1(expLst, expPow, n); | ||
| 4010 | end expPowLst; | ||
| 4011 | |||
| 4012 | public function expMaxScalar "author: Frenkel TUD 2011-04 | ||
| 4013 | returns max(e1,e2)." | ||
| 4014 | input DAE.Exp e1; | ||
| 4015 | input DAE.Exp e2; | ||
| 4016 | output DAE.Exp outExp; | ||
| 4017 | protected | ||
| 4018 | Type tp; | ||
| 4019 | algorithm | ||
| 4020 | 15036 | tp := typeof(e1); | |
| 4021 | 15036 | outExp := DAE.CALL(Absyn.IDENT("max"),{e1,e2},DAE.CALL_ATTR(tp,false,true,false,false,DAE.NO_INLINE(),DAE.NO_TAIL(),DAE.NoReturn.RETURNS)); | |
| 4022 | end expMaxScalar; | ||
| 4023 | |||
| 4024 | public function expOptMaxScalar | ||
| 4025 | input Option<DAE.Exp> e1; | ||
| 4026 | input Option<DAE.Exp> e2; | ||
| 4027 | output Option<DAE.Exp> outExp; | ||
| 4028 | protected | ||
| 4029 | algorithm | ||
| 4030 | outExp := match(e1,e2) | ||
| 4031 | local DAE.Exp e11, e22; | ||
| 4032 | case(_, NONE()) then e1; | ||
| 4033 | case(NONE(), ) then e2; | ||
| 4034 | 15030 | case(SOME(e11), SOME(e22)) then SOME(expMaxScalar(e11, e22)); | |
| 4035 | end match; | ||
| 4036 | end expOptMaxScalar; | ||
| 4037 | |||
| 4038 | |||
| 4039 | public function expMinScalar "author: Frenkel TUD 2011-04 | ||
| 4040 | returns min(e1,e2)." | ||
| 4041 | input DAE.Exp e1; | ||
| 4042 | input DAE.Exp e2; | ||
| 4043 | output DAE.Exp outExp; | ||
| 4044 | protected | ||
| 4045 | Type tp; | ||
| 4046 | algorithm | ||
| 4047 | 9186 | tp := typeof(e1); | |
| 4048 | 9186 | outExp := DAE.CALL(Absyn.IDENT("min"),{e1,e2},DAE.CALL_ATTR(tp, false, true, false, false, DAE.NO_INLINE(), DAE.NO_TAIL(), DAE.NoReturn.RETURNS)); | |
| 4049 | end expMinScalar; | ||
| 4050 | |||
| 4051 | public function expOptMinScalar | ||
| 4052 | input Option<DAE.Exp> e1; | ||
| 4053 | input Option<DAE.Exp> e2; | ||
| 4054 | output Option<DAE.Exp> outExp; | ||
| 4055 | protected | ||
| 4056 | algorithm | ||
| 4057 | outExp := match(e1,e2) | ||
| 4058 | local DAE.Exp e11, e22; | ||
| 4059 | case(_, NONE()) then e1; | ||
| 4060 | case(NONE(), ) then e2; | ||
| 4061 | 9180 | case(SOME(e11), SOME(e22)) then SOME(expMinScalar(e11, e22)); | |
| 4062 | end match; | ||
| 4063 | end expOptMinScalar; | ||
| 4064 | |||
| 4065 | |||
| 4066 | public function makeProductVector "takes and expression e1 and a list of expressisions {v1,v2,...,vn} and returns | ||
| 4067 | {e1*v1,e1*v2,...,e1*vn}" | ||
| 4068 | input DAE.Exp e1; | ||
| 4069 | input list<DAE.Exp> v; | ||
| 4070 | output list<DAE.Exp> res; | ||
| 4071 | algorithm | ||
| 4072 | ✗ | res := List.map1(v,makeProduct,e1); | |
| 4073 | end makeProductVector; | ||
| 4074 | |||
| 4075 | public function makeScalarProduct | ||
| 4076 | "calculate a scalr product <v,w>" | ||
| 4077 | input array<DAE.Exp> v; | ||
| 4078 | input array<DAE.Exp> w; | ||
| 4079 | output DAE.Exp s = DAE.RCONST(0.0); | ||
| 4080 | protected | ||
| 4081 | Integer size1=arrayLength(v), size2= arrayLength(w); | ||
| 4082 | algorithm | ||
| 4083 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 231 times.
|
231 | if size1 <> size2 then |
| 4084 | ✗ | print("makeScalarProduct faili.\n"); | |
| 4085 | ✗ | return ; | |
| 4086 | end if; | ||
| 4087 | |||
| 4088 |
2/2✓ Branch 0 taken 4566 times.
✓ Branch 1 taken 231 times.
|
4797 | s := makeSum1(list( expMul(arrayGet(v,i), arrayGet(w,i)) for i in 1:size1 )); |
| 4089 | 231 | (s,_) := ExpressionSimplify.simplify(s); | |
| 4090 | |||
| 4091 | end makeScalarProduct; | ||
| 4092 | |||
| 4093 | public function lenVec | ||
| 4094 | input array<DAE.Exp> v; | ||
| 4095 | output DAE.Exp len = makeScalarProduct(v,v); | ||
| 4096 | algorithm | ||
| 4097 | 20 | len := Expression.makePureBuiltinCall("sqrt",{len},DAE.T_REAL_DEFAULT); | |
| 4098 | end lenVec; | ||
| 4099 | |||
| 4100 | public function subVec | ||
| 4101 | input array<DAE.Exp> v; | ||
| 4102 | input array<DAE.Exp> w; | ||
| 4103 | output array<DAE.Exp> y; | ||
| 4104 | |||
| 4105 | protected | ||
| 4106 | Integer size1=arrayLength(v), size2= arrayLength(w); | ||
| 4107 | algorithm | ||
| 4108 | ✗ | if size1 <> size2 then | |
| 4109 | ✗ | print("subVec fail.\n"); | |
| 4110 | ✗ | fail(); | |
| 4111 | end if; | ||
| 4112 | ✗ | y := arrayCreate(size1, DAE.RCONST(0.0)); | |
| 4113 | ✗ | for i in 1:size1 loop | |
| 4114 | ✗ | arrayUpdate(y,i,expSub(arrayGet(v,i), arrayGet(w,i))); | |
| 4115 | end for; | ||
| 4116 | end subVec; | ||
| 4117 | |||
| 4118 | |||
| 4119 | public function makeProduct | ||
| 4120 | "Makes a product of two expressions" | ||
| 4121 | input DAE.Exp e1; | ||
| 4122 | input DAE.Exp e2; | ||
| 4123 | output DAE.Exp product; | ||
| 4124 | algorithm | ||
| 4125 | 15522 | product := makeProductLst({e1,e2}); | |
| 4126 | end makeProduct; | ||
| 4127 | |||
| 4128 | public function makeProductLst | ||
| 4129 | "Takes a list of expressions an makes a product | ||
| 4130 | expression multiplying all elements in the list." | ||
| 4131 | input list<DAE.Exp> inExpLst; | ||
| 4132 | output DAE.Exp outExp; | ||
| 4133 | algorithm | ||
| 4134 | outExp:= | ||
| 4135 | matchcontinue inExpLst | ||
| 4136 | local | ||
| 4137 | DAE.Exp e1,res,e,e2,p1; | ||
| 4138 | list<DAE.Exp> es,rest,lst; | ||
| 4139 | Type tp; | ||
| 4140 | list<String> explst; | ||
| 4141 | String str; | ||
| 4142 | Boolean b_isZero,b1,b2; | ||
| 4143 | case {} then DAE.RCONST(1.0); | ||
| 4144 | case {e1} then e1; | ||
| 4145 | case e :: es /* to prevent infinite recursion, disregard constant 1. */ | ||
| 4146 | algorithm | ||
| 4147 |
2/2✓ Branch 1 taken 3627362 times.
✓ Branch 2 taken 124 times.
|
3627486 | true := isConstOne(e); |
| 4148 | 124 | res := makeProductLst(es); | |
| 4149 | then | ||
| 4150 | res; | ||
| 4151 | // e1/e*e2 for e = 0 => fail | ||
| 4152 | case DAE.BINARY(operator = DAE.DIV(),exp2 = e)::_ | ||
| 4153 | algorithm | ||
| 4154 | 85909 | true := isZero(e); | |
| 4155 | 85909 | then | |
| 4156 | fail(); | ||
| 4157 | |||
| 4158 | // e2*e1/e for e = 0 => fail | ||
| 4159 | case {_,DAE.BINARY(operator = DAE.DIV(),exp2 = e)} | ||
| 4160 | algorithm | ||
| 4161 | 145426 | true := isZero(e); | |
| 4162 | then | ||
| 4163 | fail(); | ||
| 4164 | case e :: _ /* to prevent infinite recursion, disregard constant 0. */ | ||
| 4165 | algorithm | ||
| 4166 |
2/2✓ Branch 1 taken 3626610 times.
✓ Branch 2 taken 752 times.
|
3627362 | true := isZero(e); |
| 4167 | then e; | ||
| 4168 | case {DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = tp),exp2 = e),e2} | ||
| 4169 | algorithm | ||
| 4170 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 58482 times.
|
58482 | true := isConstOne(e1); |
| 4171 | 58482 | then | |
| 4172 | DAE.BINARY(e2,DAE.DIV(tp),e); | ||
| 4173 | case {e2,DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = tp),exp2 = e)} | ||
| 4174 | algorithm | ||
| 4175 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 100686 times.
|
100686 | true := isConstOne(e1); |
| 4176 | 100686 | then | |
| 4177 | DAE.BINARY(e2,DAE.DIV(tp),e); | ||
| 4178 | case DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = tp),exp2 = e) :: es | ||
| 4179 | algorithm | ||
| 4180 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 27427 times.
|
27427 | true := isConstOne(e1); |
| 4181 | 27427 | p1 := makeProductLst(es); | |
| 4182 | 27427 | res := DAE.BINARY(p1,DAE.DIV(tp),e); | |
| 4183 | 27427 | b_isZero := isZero(p1); | |
| 4184 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 27427 times.
|
27427 | res := if b_isZero then makeConstZero(typeof(e)) else res; |
| 4185 | then | ||
| 4186 | res; | ||
| 4187 | case {e1,e2} | ||
| 4188 | algorithm | ||
| 4189 |
1/2✓ Branch 1 taken 2968982 times.
✗ Branch 2 not taken.
|
2968982 | true := isConstOne(e2); |
| 4190 | then | ||
| 4191 | e1; | ||
| 4192 | case {e1,e2} | ||
| 4193 | algorithm | ||
| 4194 | 2968982 | b1 := isZero(e1); | |
| 4195 | 2968982 | b2 := isZero(e2); | |
| 4196 | 2968982 | b_isZero := boolOr(b1,b2); | |
| 4197 | 2968982 | tp := typeof(e1) "Take type info from e1, ok since type checking already performed." ; | |
| 4198 | 2968982 | tp := checkIfOther(tp); | |
| 4199 | 2968982 | res := DAE.BINARY(e1,DAE.MUL(tp),e2); | |
| 4200 |
2/2✓ Branch 0 taken 834 times.
✓ Branch 1 taken 2968148 times.
|
2968982 | res := if b_isZero then makeConstZero(tp) else res; |
| 4201 | then | ||
| 4202 | res; | ||
| 4203 | case e1 :: rest | ||
| 4204 | algorithm | ||
| 4205 | 471033 | e2 := makeProductLst(rest); | |
| 4206 | 471033 | tp := typeof(e1); | |
| 4207 | 471033 | tp := checkIfOther(tp); | |
| 4208 | 471033 | res := DAE.BINARY(e1,DAE.MUL(tp),e2); | |
| 4209 | 471033 | b1 := isZero(e1); | |
| 4210 | 471033 | b2 := isZero(e2); | |
| 4211 | 471033 | b_isZero := boolOr(b1,b2); | |
| 4212 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 471033 times.
|
471033 | res := if b_isZero then makeConstZero(typeof(e1)) else res; |
| 4213 | then | ||
| 4214 | res; | ||
| 4215 | case lst | ||
| 4216 | algorithm | ||
| 4217 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 4218 | ✗ | Debug.trace("-Expression.makeProductLst failed, DAE.Exp lst:"); | |
| 4219 | ✗ | explst := List.map(lst, ExpressionBasics.printExpStr); | |
| 4220 | ✗ | str := stringDelimitList(explst, ", "); | |
| 4221 | ✗ | Debug.traceln(str); | |
| 4222 | ✗ | then | |
| 4223 | fail(); | ||
| 4224 | end matchcontinue; | ||
| 4225 | end makeProductLst; | ||
| 4226 | |||
| 4227 | protected function checkIfOther | ||
| 4228 | "Checks if a type is OTHER and in that case returns REAL instead. | ||
| 4229 | This is used to make proper transformations in case OTHER is | ||
| 4230 | retrieved from subexpression where it should instead be REAL or INT" | ||
| 4231 | input DAE.Type inTp; | ||
| 4232 | output DAE.Type outTp; | ||
| 4233 | algorithm | ||
| 4234 | outTp := match inTp | ||
| 4235 | case DAE.T_UNKNOWN() then DAE.T_REAL_DEFAULT; | ||
| 4236 | else inTp; | ||
| 4237 | end match; | ||
| 4238 | end checkIfOther; | ||
| 4239 | |||
| 4240 | public function expDiv " | ||
| 4241 | function expDiv | ||
| 4242 | author: PA | ||
| 4243 | Divides two scalar expressions." | ||
| 4244 | input DAE.Exp e1; | ||
| 4245 | input DAE.Exp e2; | ||
| 4246 | output DAE.Exp outExp; | ||
| 4247 | protected | ||
| 4248 | Type tp; | ||
| 4249 | Boolean b; | ||
| 4250 | Operator op; | ||
| 4251 | algorithm | ||
| 4252 | 24059 | tp := typeof(e1); | |
| 4253 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 24059 times.
|
24059 | true := Types.isIntegerOrRealOrSubTypeOfEither(tp); |
| 4254 | 24059 | b := DAEUtil.expTypeArray(tp); | |
| 4255 |
2/2✓ Branch 0 taken 1 time.
✓ Branch 1 taken 24058 times.
|
24059 | op := if b then DAE.DIV_ARR(tp) else DAE.DIV(tp); |
| 4256 | 24059 | outExp := DAE.BINARY(e1,op,e2); | |
| 4257 | end expDiv; | ||
| 4258 | |||
| 4259 | public function makeDiv "Takes two expressions and create a division" | ||
| 4260 | input DAE.Exp e1; | ||
| 4261 | input DAE.Exp e2; | ||
| 4262 | output DAE.Exp res; | ||
| 4263 | algorithm | ||
| 4264 | res := match e2 | ||
| 4265 | case _ guard(isZero(e1) and not isZero(e2)) | ||
| 4266 | then e1; | ||
| 4267 | case _ guard(isOne(e2)) | ||
| 4268 | then e1; | ||
| 4269 | 23372 | else expDiv(e1,e2); | |
| 4270 | end match; | ||
| 4271 | end makeDiv; | ||
| 4272 | |||
| 4273 | public function makeDivVector "takes and expression e1 and a list of expressisions {v1,v2,...,vn} and returns | ||
| 4274 | {v1/e1,v2/e1,...,vn/e1}" | ||
| 4275 | input list<DAE.Exp> v; | ||
| 4276 | input DAE.Exp e1; | ||
| 4277 | output list<DAE.Exp> res; | ||
| 4278 | algorithm | ||
| 4279 | ✗ | res := List.map1(v,makeDiv,e1); | |
| 4280 | end makeDivVector; | ||
| 4281 | |||
| 4282 | public function makeAsubAddIndex "creates an ASUB given an expression and an index" | ||
| 4283 | input DAE.Exp e; | ||
| 4284 | input Integer indx; | ||
| 4285 | output DAE.Exp outExp = e; | ||
| 4286 | algorithm | ||
| 4287 | outExp := match outExp | ||
| 4288 | case DAE.ASUB() | ||
| 4289 | algorithm | ||
| 4290 | ✗ | outExp.sub := listAppend(outExp.sub, {DAE.INDEX(DAE.ICONST(indx))}); | |
| 4291 | then | ||
| 4292 | outExp; | ||
| 4293 | |||
| 4294 | ✗ | else makeASUB(e, {DAE.ICONST(indx)}); | |
| 4295 | end match; | ||
| 4296 | end makeAsubAddIndex; | ||
| 4297 | |||
| 4298 | public function makeIntegerExp | ||
| 4299 | "Creates an integer constant expression given the integer input." | ||
| 4300 | input Integer i; | ||
| 4301 | output DAE.Exp e; | ||
| 4302 | annotation(__OpenModelica_EarlyInline = true); | ||
| 4303 | algorithm | ||
| 4304 | 2317 | e := DAE.ICONST(i); | |
| 4305 | end makeIntegerExp; | ||
| 4306 | |||
| 4307 | public function makeRealExp | ||
| 4308 | "Creates an integer constant expression given the integer input." | ||
| 4309 | input Real r; | ||
| 4310 | output DAE.Exp e; | ||
| 4311 | annotation(__OpenModelica_EarlyInline = true); | ||
| 4312 | algorithm | ||
| 4313 | ✗ | e := DAE.RCONST(r); | |
| 4314 | end makeRealExp; | ||
| 4315 | |||
| 4316 | public function makeBoolExp | ||
| 4317 | "Creates an integer constant expression given the integer input." | ||
| 4318 | input Boolean b; | ||
| 4319 | output DAE.Exp e; | ||
| 4320 | annotation(__OpenModelica_EarlyInline = true); | ||
| 4321 | algorithm | ||
| 4322 | ✗ | e := DAE.BCONST(b); | |
| 4323 | end makeBoolExp; | ||
| 4324 | |||
| 4325 | public function makeConstOne | ||
| 4326 | "author: PA | ||
| 4327 | Create the constant value one, given a type that is INT or REAL" | ||
| 4328 | input DAE.Type inType; | ||
| 4329 | output DAE.Exp outExp; | ||
| 4330 | algorithm | ||
| 4331 | outExp := match inType | ||
| 4332 | case DAE.T_INTEGER() then DAE.ICONST(1); | ||
| 4333 | case DAE.T_REAL() then DAE.RCONST(1.0); | ||
| 4334 | else DAE.RCONST(1.0); | ||
| 4335 | end match; | ||
| 4336 | end makeConstOne; | ||
| 4337 | |||
| 4338 | public function makeConstZero | ||
| 4339 | "Generates a zero constant" | ||
| 4340 | input DAE.Type inType; | ||
| 4341 | output DAE.Exp const; | ||
| 4342 | algorithm | ||
| 4343 | const := match inType | ||
| 4344 | case DAE.T_REAL() then DAE.RCONST(0.0); | ||
| 4345 | case DAE.T_INTEGER() then DAE.ICONST(0); | ||
| 4346 | else DAE.RCONST(0.0); | ||
| 4347 | end match; | ||
| 4348 | end makeConstZero; | ||
| 4349 | |||
| 4350 | function makeConstNumber | ||
| 4351 | input DAE.Type ty; | ||
| 4352 | input Integer n; | ||
| 4353 | output DAE.Exp exp; | ||
| 4354 | algorithm | ||
| 4355 | exp := match ty | ||
| 4356 | ✗ | case DAE.T_INTEGER() then DAE.ICONST(n); | |
| 4357 | 528 | else DAE.RCONST(n); | |
| 4358 | end match; | ||
| 4359 | end makeConstNumber; | ||
| 4360 | |||
| 4361 | public function makeConstZeroE | ||
| 4362 | "Generates a zero constant, using type from inExp" | ||
| 4363 | input DAE.Exp iExp; | ||
| 4364 | output DAE.Exp const; | ||
| 4365 | protected | ||
| 4366 | DAE.Type tp = typeof(iExp); | ||
| 4367 | algorithm | ||
| 4368 | 16 | const := makeConstZero(tp); | |
| 4369 | end makeConstZeroE; | ||
| 4370 | |||
| 4371 | |||
| 4372 | public function makeListOfZeros | ||
| 4373 | input Integer inDimension; | ||
| 4374 | output list<DAE.Exp> outList = {}; | ||
| 4375 | algorithm | ||
| 4376 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 806 times.
|
806 | if (inDimension > 0) then |
| 4377 | 2418 | for i in 1:inDimension loop | |
| 4378 | outList := DAE.RCONST(0.0) :: outList; | ||
| 4379 | end for; | ||
| 4380 | end if; | ||
| 4381 | end makeListOfZeros; | ||
| 4382 | |||
| 4383 | public function makeRealArrayOfZeros | ||
| 4384 | input Integer inDimension; | ||
| 4385 | output DAE.Exp outExp; | ||
| 4386 | protected | ||
| 4387 | list<DAE.Exp> l; | ||
| 4388 | algorithm | ||
| 4389 | 806 | l := makeListOfZeros(inDimension); | |
| 4390 | 806 | outExp := makeRealArray(l); | |
| 4391 | end makeRealArrayOfZeros; | ||
| 4392 | |||
| 4393 | public function createZeroExpression | ||
| 4394 | input DAE.Type inType; | ||
| 4395 | output DAE.Exp outExp; | ||
| 4396 | algorithm | ||
| 4397 | outExp := match inType | ||
| 4398 | local | ||
| 4399 | DAE.Exp e; | ||
| 4400 | list<DAE.Type> typeLst; | ||
| 4401 | list<DAE.Exp> expLst; | ||
| 4402 | DAE.Dimensions dims; | ||
| 4403 | Absyn.Path path; | ||
| 4404 | list<DAE.Var> varLst; | ||
| 4405 | list<String> varNames; | ||
| 4406 | |||
| 4407 | // real and integer | ||
| 4408 | 1857 | case _ guard(isIntegerOrReal(inType)) then makeConstZero(inType); | |
| 4409 | |||
| 4410 | case DAE.T_TUPLE(types=typeLst) algorithm | ||
| 4411 | ✗ | expLst := List.map(typeLst, createZeroExpression); | |
| 4412 | ✗ | e := DAE.TUPLE(expLst); | |
| 4413 | then e; | ||
| 4414 | |||
| 4415 | case DAE.T_ARRAY(dims=dims) algorithm | ||
| 4416 | ✗ | (e, _) := makeZeroExpression(dims); | |
| 4417 | then e; | ||
| 4418 | |||
| 4419 | // record type | ||
| 4420 | case DAE.T_COMPLEX(varLst=varLst,complexClassType=ClassInf.RECORD(path)) algorithm | ||
| 4421 | ✗ | typeLst := list(v.ty for v in varLst); | |
| 4422 | ✗ | expLst := List.map(typeLst, createZeroExpression); | |
| 4423 | ✗ | varNames := List.map(varLst, varName); | |
| 4424 | ✗ | true := listLength(varNames) == listLength(expLst); | |
| 4425 | ✗ | e := DAE.RECORD(path, expLst, varNames, inType); | |
| 4426 | then e; | ||
| 4427 | |||
| 4428 | // all other are failing cases | ||
| 4429 | else fail(); | ||
| 4430 | end match; | ||
| 4431 | end createZeroExpression; | ||
| 4432 | |||
| 4433 | |||
| 4434 | public function makeZeroExpression | ||
| 4435 | " creates a Real or array<Real> zero expression with given dimensions, also returns its type" | ||
| 4436 | input DAE.Dimensions inDims; | ||
| 4437 | output DAE.Exp outExp; | ||
| 4438 | output DAE.Type outType; | ||
| 4439 | algorithm | ||
| 4440 | (outExp,outType) := match inDims | ||
| 4441 | local | ||
| 4442 | Integer i; | ||
| 4443 | DAE.Dimension d; | ||
| 4444 | DAE.Dimensions dims; | ||
| 4445 | DAE.Exp e; | ||
| 4446 | list<DAE.Exp> eLst; | ||
| 4447 | DAE.Type ty; | ||
| 4448 | Boolean scalar; | ||
| 4449 | |||
| 4450 | case {} then (DAE.RCONST(0.0), DAE.T_REAL_DEFAULT); | ||
| 4451 | |||
| 4452 | case d::dims | ||
| 4453 | algorithm | ||
| 4454 | 16809 | i := dimensionSize(d); | |
| 4455 | 16791 | (e, ty) := makeZeroExpression(dims); | |
| 4456 | 16791 | eLst := List.fill(e,i); | |
| 4457 | 16791 | scalar := listEmpty(dims); | |
| 4458 |
2/2✓ Branch 1 taken 8 times.
✓ Branch 2 taken 16783 times.
|
33590 | then |
| 4459 | (DAE.ARRAY(DAE.T_ARRAY(DAE.T_REAL_DEFAULT,d::dims),scalar,eLst), | ||
| 4460 | DAE.T_ARRAY(ty,{d})); | ||
| 4461 | end match; | ||
| 4462 | end makeZeroExpression; | ||
| 4463 | |||
| 4464 | public function makeOneExpression | ||
| 4465 | " creates a Real or array<Real> one expression with given dimensions, also returns its type" | ||
| 4466 | input DAE.Dimensions inDims; | ||
| 4467 | output DAE.Exp outExp; | ||
| 4468 | output DAE.Type outType; | ||
| 4469 | algorithm | ||
| 4470 | (outExp,outType) := match inDims | ||
| 4471 | local | ||
| 4472 | Integer i; | ||
| 4473 | DAE.Dimension d; | ||
| 4474 | DAE.Dimensions dims; | ||
| 4475 | DAE.Exp e; | ||
| 4476 | list<DAE.Exp> eLst; | ||
| 4477 | DAE.Type ty; | ||
| 4478 | Boolean scalar; | ||
| 4479 | |||
| 4480 | case {} then (DAE.RCONST(1.0), DAE.T_REAL_DEFAULT); | ||
| 4481 | |||
| 4482 | case d::dims | ||
| 4483 | algorithm | ||
| 4484 | 28 | i := dimensionSize(d); | |
| 4485 | 28 | (e, ty) := makeOneExpression(dims); | |
| 4486 | 28 | eLst := List.fill(e,i); | |
| 4487 | 28 | scalar := listEmpty(dims); | |
| 4488 |
2/2✓ Branch 1 taken 12 times.
✓ Branch 2 taken 16 times.
|
68 | then |
| 4489 | (DAE.ARRAY(DAE.T_ARRAY(DAE.T_REAL_DEFAULT,d::dims),scalar,eLst), | ||
| 4490 | DAE.T_ARRAY(ty,{d})); | ||
| 4491 | end match; | ||
| 4492 | end makeOneExpression; | ||
| 4493 | |||
| 4494 | public function listToArray | ||
| 4495 | " @mahge: | ||
| 4496 | creates an array from a list of expressions and | ||
| 4497 | dimensions. e.g. | ||
| 4498 | listToArray({1,2,3,4,5,6}, {3,2}) -> {{1,2}, {3,4}, {5,6}} | ||
| 4499 | " | ||
| 4500 | input list<DAE.Exp> inList; | ||
| 4501 | input DAE.Dimensions dims; | ||
| 4502 | output DAE.Exp oExp; | ||
| 4503 | algorithm | ||
| 4504 | oExp := matchcontinue(inList, dims) | ||
| 4505 | local | ||
| 4506 | DAE.Type ty; | ||
| 4507 | DAE.Exp exp; | ||
| 4508 | |||
| 4509 | case(_, {}) | ||
| 4510 | algorithm | ||
| 4511 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"Expression.listToArray called with empty dimension list."}); | |
| 4512 | ✗ | then fail(); | |
| 4513 | |||
| 4514 | case({}, _) | ||
| 4515 | algorithm | ||
| 4516 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"Expression.listToArray called with empty list."}); | |
| 4517 | ✗ | then fail(); | |
| 4518 | |||
| 4519 | // Here we assume that all the elements of the list | ||
| 4520 | // have the same type. | ||
| 4521 | case(exp::_, _) | ||
| 4522 | algorithm | ||
| 4523 | 78 | ty := typeof(exp); | |
| 4524 | 78 | oExp := listToArray2(inList,dims,ty); | |
| 4525 | then | ||
| 4526 | oExp; | ||
| 4527 | end matchcontinue; | ||
| 4528 | |||
| 4529 | end listToArray; | ||
| 4530 | |||
| 4531 | |||
| 4532 | protected function listToArray2 | ||
| 4533 | input list<DAE.Exp> inList; | ||
| 4534 | input DAE.Dimensions iDims; | ||
| 4535 | input DAE.Type inType; | ||
| 4536 | output DAE.Exp oExp; | ||
| 4537 | algorithm | ||
| 4538 | () := match iDims | ||
| 4539 | local | ||
| 4540 | Integer i; | ||
| 4541 | DAE.Dimension d; | ||
| 4542 | list<DAE.Exp> explst; | ||
| 4543 | DAE.Dimensions dims; | ||
| 4544 | Boolean is_scalar; | ||
| 4545 | DAE.Type ty; | ||
| 4546 | |||
| 4547 | case {d} | ||
| 4548 | algorithm | ||
| 4549 | 78 | is_scalar := not Types.isArray(inType); | |
| 4550 |
1/2✓ Branch 1 taken 78 times.
✗ Branch 2 not taken.
|
78 | if dimensionKnown(d) then |
| 4551 | 78 | i := dimensionSize(d); | |
| 4552 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 78 times.
|
78 | if i <> listLength(inList) then |
| 4553 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"Expression.listToArray2: Number of elements in the list does not match the dimension size."}); | |
| 4554 | ✗ | fail(); | |
| 4555 | else | ||
| 4556 | 78 | ty := liftArrayR(inType, DAE.DIM_INTEGER(listLength(inList))); | |
| 4557 |
2/2✓ Branch 0 taken 7 times.
✓ Branch 1 taken 71 times.
|
85 | oExp := DAE.ARRAY(ty, is_scalar, inList); |
| 4558 | end if; | ||
| 4559 | // We do not know the dimension size but we have only one dimension. | ||
| 4560 | // WE just create a one dimensional array and hope for the best. This is needed for | ||
| 4561 | // codegen when we have to expand an array crefexp to an array expression. Sometimes | ||
| 4562 | // we get an unevaluated dimension for a model variable all the way down in codegen :( | ||
| 4563 | else | ||
| 4564 | ✗ | ty := liftArrayR(inType, d); | |
| 4565 | ✗ | oExp := DAE.ARRAY(ty, is_scalar, inList); | |
| 4566 | end if; | ||
| 4567 | then (); | ||
| 4568 | |||
| 4569 | case _ :: _ | ||
| 4570 | algorithm | ||
| 4571 | 7 | (d, dims) := List.splitLast(iDims); | |
| 4572 | 7 | explst := listToArray3(inList,d); | |
| 4573 | 7 | ty := liftArrayR(inType, DAE.DIM_INTEGER(listLength(explst))); | |
| 4574 | 7 | oExp := listToArray2(explst,dims,ty); | |
| 4575 | then | ||
| 4576 | (); | ||
| 4577 | |||
| 4578 | end match; | ||
| 4579 | end listToArray2; | ||
| 4580 | |||
| 4581 | |||
| 4582 | protected function listToArray3 | ||
| 4583 | input list<DAE.Exp> inList; | ||
| 4584 | input DAE.Dimension iDim; | ||
| 4585 | output list<DAE.Exp> oExps; | ||
| 4586 | algorithm | ||
| 4587 | oExps := match(inList, iDim) | ||
| 4588 | local | ||
| 4589 | Integer i; | ||
| 4590 | DAE.Dimension d; | ||
| 4591 | list<DAE.Exp> explst, restexps, restarr; | ||
| 4592 | DAE.Exp arrexp; | ||
| 4593 | |||
| 4594 | case({}, _) then {}; | ||
| 4595 | |||
| 4596 | case(_, d) | ||
| 4597 | algorithm | ||
| 4598 | 26 | i := dimensionSize(d); | |
| 4599 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 26 times.
|
26 | if (i > listLength(inList)) then |
| 4600 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"Expression.listToArray3: Not enough elements left in list to fit dimension."}); | |
| 4601 | ✗ | fail(); | |
| 4602 | else | ||
| 4603 | 26 | (explst, restexps) := List.split(inList,i); | |
| 4604 | 26 | arrexp := makeArrayFromList(explst); | |
| 4605 | 26 | restarr := listToArray3(restexps,d); | |
| 4606 | end if; | ||
| 4607 | then | ||
| 4608 | arrexp::restarr; | ||
| 4609 | |||
| 4610 | end match; | ||
| 4611 | end listToArray3; | ||
| 4612 | |||
| 4613 | |||
| 4614 | public function arrayFill | ||
| 4615 | input DAE.Dimensions dims; | ||
| 4616 | input DAE.Exp inExp; | ||
| 4617 | output DAE.Exp oExp; | ||
| 4618 | algorithm | ||
| 4619 | oExp := match dims | ||
| 4620 | |||
| 4621 | case {} then inExp; | ||
| 4622 | |||
| 4623 | else | ||
| 4624 | algorithm | ||
| 4625 | 4 | oExp := arrayFill2(dims,inExp); | |
| 4626 | then | ||
| 4627 | oExp; | ||
| 4628 | |||
| 4629 | end match; | ||
| 4630 | end arrayFill; | ||
| 4631 | |||
| 4632 | protected function arrayFill2 | ||
| 4633 | input DAE.Dimensions iDims; | ||
| 4634 | input DAE.Exp inExp; | ||
| 4635 | output DAE.Exp oExp; | ||
| 4636 | algorithm | ||
| 4637 | oExp := match iDims | ||
| 4638 | local | ||
| 4639 | Integer i; | ||
| 4640 | DAE.Dimension d; | ||
| 4641 | Type ty; | ||
| 4642 | list<DAE.Exp> expl; | ||
| 4643 | DAE.Exp arrexp; | ||
| 4644 | DAE.Dimensions dims; | ||
| 4645 | |||
| 4646 | case {d} | ||
| 4647 | algorithm | ||
| 4648 | 5 | ty := typeof(inExp); | |
| 4649 | 5 | i := dimensionSize(d); | |
| 4650 | 5 | expl := List.fill(inExp, i); | |
| 4651 | 10 | then | |
| 4652 | DAE.ARRAY(DAE.T_ARRAY(ty,{DAE.DIM_INTEGER(i)}),true,expl); | ||
| 4653 | |||
| 4654 | case d::dims | ||
| 4655 | algorithm | ||
| 4656 | 1 | arrexp := arrayFill2({d},inExp); | |
| 4657 | 1 | arrexp := arrayFill2(dims,arrexp); | |
| 4658 | then | ||
| 4659 | arrexp; | ||
| 4660 | |||
| 4661 | end match; | ||
| 4662 | end arrayFill2; | ||
| 4663 | |||
| 4664 | public function makeIndexSubscript | ||
| 4665 | "Creates a Subscript INDEX from an Expression." | ||
| 4666 | input DAE.Exp exp; | ||
| 4667 | output DAE.Subscript subscript; | ||
| 4668 | annotation(__OpenModelica_EarlyInline = true); | ||
| 4669 | algorithm | ||
| 4670 | 2294 | subscript := DAE.INDEX(exp); | |
| 4671 | end makeIndexSubscript; | ||
| 4672 | |||
| 4673 | public function makeVar "Creates a Var given a name and Type" | ||
| 4674 | input String name; | ||
| 4675 | input DAE.Type tp; | ||
| 4676 | output DAE.Var v; | ||
| 4677 | annotation(__OpenModelica_EarlyInline = true); | ||
| 4678 | algorithm | ||
| 4679 | 79673 | v := DAE.TYPES_VAR(name, DAE.dummyAttrVar, tp, DAE.UNBOUND(), false, NONE()); | |
| 4680 | end makeVar; | ||
| 4681 | |||
| 4682 | public function dimensionsAdd | ||
| 4683 | "Adds two dimensions." | ||
| 4684 | input DAE.Dimension dim1; | ||
| 4685 | input DAE.Dimension dim2; | ||
| 4686 | output DAE.Dimension res; | ||
| 4687 | algorithm | ||
| 4688 | try | ||
| 4689 | 9738 | res := intDimension(dimensionSize(dim1) + dimensionSize(dim2)); | |
| 4690 | else | ||
| 4691 | res := DAE.DIM_UNKNOWN(); | ||
| 4692 | end try; | ||
| 4693 | end dimensionsAdd; | ||
| 4694 | |||
| 4695 | public function concatArrayType | ||
| 4696 | "Concatenates two array types, so that the resulting type is correct." | ||
| 4697 | input DAE.Type arrayType1; | ||
| 4698 | input DAE.Type arrayType2; | ||
| 4699 | output DAE.Type concatType; | ||
| 4700 | algorithm | ||
| 4701 | concatType := match(arrayType1, arrayType2) | ||
| 4702 | local | ||
| 4703 | DAE.Type et; | ||
| 4704 | DAE.Dimension dim1, dim2; | ||
| 4705 | DAE.Dimensions dims1; | ||
| 4706 | |||
| 4707 | case (DAE.T_ARRAY(ty = et, dims = dim1 :: dims1), DAE.T_ARRAY(dims = dim2 :: _)) | ||
| 4708 | algorithm | ||
| 4709 | 3783 | dim1 := dimensionsAdd(dim1, dim2); | |
| 4710 | 3783 | then | |
| 4711 | DAE.T_ARRAY(et, dim1 :: dims1); | ||
| 4712 | end match; | ||
| 4713 | end concatArrayType; | ||
| 4714 | |||
| 4715 | public function replaceExpTpl | ||
| 4716 | "Help function to e.g. detectImplicitDiscreteAlgsStatemensFor" | ||
| 4717 | input DAE.Exp inExp; | ||
| 4718 | input tuple<DAE.Exp, DAE.Exp> tpl; | ||
| 4719 | output DAE.Exp outExp; | ||
| 4720 | output tuple<DAE.Exp, DAE.Exp> outTpl; | ||
| 4721 | algorithm | ||
| 4722 | (outExp,outTpl) := match(inExp,tpl) | ||
| 4723 | local | ||
| 4724 | DAE.Exp e, e1, s, t; | ||
| 4725 | |||
| 4726 | case (e, (s, t)) | ||
| 4727 | algorithm | ||
| 4728 | 268 | (e1, _) := replaceExp(e, s, t); | |
| 4729 | then (e1, tpl); | ||
| 4730 | |||
| 4731 | end match; | ||
| 4732 | end replaceExpTpl; | ||
| 4733 | |||
| 4734 | public function replaceExp | ||
| 4735 | "Helper function to replaceExpList." | ||
| 4736 | input DAE.Exp inExp; | ||
| 4737 | input DAE.Exp inSourceExp; | ||
| 4738 | input DAE.Exp inTargetExp; | ||
| 4739 | output DAE.Exp exp; | ||
| 4740 | output Integer i; | ||
| 4741 | algorithm | ||
| 4742 |
2/2✓ Branch 2 taken 106 times.
✓ Branch 3 taken 1880 times.
|
1986 | (exp,(_,_,i)) := traverseExpTopDown(inExp,replaceExpWork,(inSourceExp,inTargetExp,0)); |
| 4743 | end replaceExp; | ||
| 4744 | |||
| 4745 | protected function replaceExpWork | ||
| 4746 | input DAE.Exp inExp; | ||
| 4747 | input tuple<DAE.Exp,DAE.Exp,Integer> inTpl; | ||
| 4748 | output DAE.Exp outExp; | ||
| 4749 | output Boolean cont; | ||
| 4750 | output tuple<DAE.Exp,DAE.Exp,Integer> otpl; | ||
| 4751 | algorithm | ||
| 4752 | (outExp,cont,otpl) := match inTpl | ||
| 4753 | local | ||
| 4754 | DAE.Exp source,target; | ||
| 4755 | Integer c; | ||
| 4756 | case (source,target,c) | ||
| 4757 | guard ExpressionBasics.expEqual(inExp, source) | ||
| 4758 | 2151 | then (target,false,(source,target,c+1)); | |
| 4759 | |||
| 4760 | else (inExp,true,inTpl); | ||
| 4761 | end match; | ||
| 4762 | end replaceExpWork; | ||
| 4763 | |||
| 4764 | public function replaceExpNoEvent | ||
| 4765 | "Like replaceExp, but does not descend into noEvent() or smooth() calls. | ||
| 4766 | Relations inside such operators are evaluated continuously (without state | ||
| 4767 | events), so replacing them by an (event-based, discrete) variable would | ||
| 4768 | change the model semantics. Replacing a whole noEvent()/smooth() expression | ||
| 4769 | is still possible, since the equality check happens before the descent stop." | ||
| 4770 | input DAE.Exp inExp; | ||
| 4771 | input DAE.Exp inSourceExp; | ||
| 4772 | input DAE.Exp inTargetExp; | ||
| 4773 | output DAE.Exp exp; | ||
| 4774 | output Integer i; | ||
| 4775 | algorithm | ||
| 4776 |
1/2✓ Branch 2 taken 159513 times.
✗ Branch 3 not taken.
|
159513 | (exp,(_,_,i)) := traverseExpTopDown(inExp,replaceExpWorkNoEvent,(inSourceExp,inTargetExp,0)); |
| 4777 | end replaceExpNoEvent; | ||
| 4778 | |||
| 4779 | protected function replaceExpWorkNoEvent | ||
| 4780 | input DAE.Exp inExp; | ||
| 4781 | input tuple<DAE.Exp,DAE.Exp,Integer> inTpl; | ||
| 4782 | output DAE.Exp outExp; | ||
| 4783 | output Boolean cont; | ||
| 4784 | output tuple<DAE.Exp,DAE.Exp,Integer> otpl; | ||
| 4785 | algorithm | ||
| 4786 | (outExp,cont,otpl) := match (inExp, inTpl) | ||
| 4787 | local | ||
| 4788 | DAE.Exp source,target; | ||
| 4789 | Integer c; | ||
| 4790 | case (_, (source,target,c)) | ||
| 4791 | guard ExpressionBasics.expEqual(inExp, source) | ||
| 4792 | 2352 | then (target,false,(source,target,c+1)); | |
| 4793 | |||
| 4794 | // do not replace inside noEvent()/smooth(): expressions there are | ||
| 4795 | // continuous, substituting them by an event-based variable is unsound | ||
| 4796 | case (DAE.CALL(path=Absyn.IDENT(name="noEvent")), _) | ||
| 4797 | then (inExp,false,inTpl); | ||
| 4798 | |||
| 4799 | case (DAE.CALL(path=Absyn.IDENT(name="smooth")), _) | ||
| 4800 | then (inExp,false,inTpl); | ||
| 4801 | |||
| 4802 | else (inExp,true,inTpl); | ||
| 4803 | end match; | ||
| 4804 | end replaceExpWorkNoEvent; | ||
| 4805 | |||
| 4806 | public function expressionCollector | ||
| 4807 | input DAE.Exp exp; | ||
| 4808 | input list<DAE.Exp> acc; | ||
| 4809 | output DAE.Exp outExp; | ||
| 4810 | output list<DAE.Exp> outExps; | ||
| 4811 | algorithm | ||
| 4812 | outExp := exp; | ||
| 4813 | outExps := exp::acc; | ||
| 4814 | end expressionCollector; | ||
| 4815 | |||
| 4816 | |||
| 4817 | public function replaceCrefBottomUp | ||
| 4818 | input DAE.Exp inExp; | ||
| 4819 | input DAE.ComponentRef inSourceExp; | ||
| 4820 | input DAE.Exp inTargetExp; | ||
| 4821 | output DAE.Exp exp; | ||
| 4822 | algorithm | ||
| 4823 | 32 | (exp,_) := traverseExpBottomUp(inExp,replaceCref,(inSourceExp,inTargetExp)); | |
| 4824 | end replaceCrefBottomUp; | ||
| 4825 | |||
| 4826 | public function replaceCref | ||
| 4827 | "Replace a componentref with a expression" | ||
| 4828 | input DAE.Exp inExp; | ||
| 4829 | input tuple<DAE.ComponentRef,DAE.Exp> inTpl; | ||
| 4830 | output DAE.Exp outExp; | ||
| 4831 | output tuple<DAE.ComponentRef,DAE.Exp> otpl; | ||
| 4832 | algorithm | ||
| 4833 | (outExp,otpl) := match (inExp,inTpl) | ||
| 4834 | local | ||
| 4835 | DAE.Exp target; | ||
| 4836 | DAE.ComponentRef cr,cr1; | ||
| 4837 | case (DAE.CREF(componentRef=cr),(cr1,target)) | ||
| 4838 | guard ComponentReferenceBasics.crefEqualNoStringCompare(cr, cr1) | ||
| 4839 | then | ||
| 4840 | (target,inTpl); | ||
| 4841 | else (inExp,inTpl); | ||
| 4842 | end match; | ||
| 4843 | end replaceCref; | ||
| 4844 | |||
| 4845 | public function containsInitialCall "public function containsInitialCall | ||
| 4846 | author: lochel | ||
| 4847 | Spec33 p. 90: | ||
| 4848 | [...] The equations of a when-clause are active during initialization, if | ||
| 4849 | and only if they are explicitly enabled with the initial() operator; and | ||
| 4850 | only in one of the two forms when initial() then or when {…,initial(),…} | ||
| 4851 | then. [...]" | ||
| 4852 | input DAE.Exp condition; // expression of a when-clause | ||
| 4853 | output Boolean res; | ||
| 4854 | algorithm | ||
| 4855 | res := match condition | ||
| 4856 | local | ||
| 4857 | list<Exp> array; | ||
| 4858 | |||
| 4859 | case DAE.CALL(path = Absyn.IDENT(name = "initial")) | ||
| 4860 | then true; | ||
| 4861 | |||
| 4862 | case DAE.ARRAY(array=array) | ||
| 4863 | 189 | then List.any(array, containsInitialCall); | |
| 4864 | |||
| 4865 | else false; | ||
| 4866 | end match; | ||
| 4867 | end containsInitialCall; | ||
| 4868 | |||
| 4869 | /***************************************************/ | ||
| 4870 | /* traverse DAE.Exp */ | ||
| 4871 | /***************************************************/ | ||
| 4872 | |||
| 4873 | public function traverseExpBottomUp<T> | ||
| 4874 | "Traverses all subexpressions of an expression. | ||
| 4875 | Takes a function and an extra argument passed through the traversal. | ||
| 4876 | The function can potentially change the expression. In such cases, | ||
| 4877 | the changes are made bottom-up, i.e. a subexpression is traversed | ||
| 4878 | and changed before the complete expression is traversed. | ||
| 4879 | |||
| 4880 | NOTE: The user-provided function is not allowed to fail! If you want to | ||
| 4881 | detect a failure, return NONE() in your user-provided datatype." | ||
| 4882 | input DAE.Exp inExp; | ||
| 4883 | input FuncExpType inFunc; | ||
| 4884 | input T inExtArg; | ||
| 4885 | output DAE.Exp outExp; | ||
| 4886 | output T outExtArg; | ||
| 4887 | |||
| 4888 | partial function FuncExpType | ||
| 4889 | input DAE.Exp inExp; | ||
| 4890 | input T inExtArg; | ||
| 4891 | output DAE.Exp outExp; | ||
| 4892 | output T outExtArg; | ||
| 4893 | end FuncExpType; | ||
| 4894 | algorithm | ||
| 4895 | (outExp, outExtArg) := match inExp | ||
| 4896 | local | ||
| 4897 | DAE.Exp e1_1, e, e1, e2_1, e2, e3_1, e3; | ||
| 4898 | T ext_arg; | ||
| 4899 | Operator op; | ||
| 4900 | list<DAE.Exp> expl_1, expl; | ||
| 4901 | Absyn.Path fn; | ||
| 4902 | Boolean scalar; | ||
| 4903 | Type tp, t; | ||
| 4904 | Integer i; | ||
| 4905 | list<list<DAE.Exp>> lstexpl_1, lstexpl; | ||
| 4906 | Integer dim; | ||
| 4907 | String str; | ||
| 4908 | list<DAE.Element> localDecls; | ||
| 4909 | list<String> fieldNames; | ||
| 4910 | DAE.CallAttributes attr; | ||
| 4911 | list<DAE.MatchCase> cases, cases_1; | ||
| 4912 | DAE.MatchType matchTy; | ||
| 4913 | Integer index_; | ||
| 4914 | Option<tuple<DAE.Exp, Integer, Integer>> isExpisASUB; | ||
| 4915 | DAE.ReductionInfo reductionInfo; | ||
| 4916 | DAE.ReductionIterators riters, riters_1; | ||
| 4917 | DAE.ComponentRef cr, cr_1; | ||
| 4918 | list<list<String>> aliases; | ||
| 4919 | DAE.ClockKind clk, clk1; | ||
| 4920 | list<DAE.Type> typeVars; | ||
| 4921 | list<DAE.Subscript> subs; | ||
| 4922 | |||
| 4923 | case DAE.EMPTY() algorithm | ||
| 4924 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 8 times.
|
8 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4925 | then (e, ext_arg); | ||
| 4926 | |||
| 4927 | case DAE.ICONST() algorithm | ||
| 4928 |
2/2✓ Branch 0 taken 18547957 times.
✓ Branch 1 taken 49558377 times.
|
68106334 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4929 | then (e, ext_arg); | ||
| 4930 | |||
| 4931 | case DAE.RCONST() algorithm | ||
| 4932 |
2/2✓ Branch 0 taken 9765578 times.
✓ Branch 1 taken 56322051 times.
|
66087629 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4933 | then (e, ext_arg); | ||
| 4934 | |||
| 4935 | case DAE.SCONST() algorithm | ||
| 4936 |
2/2✓ Branch 0 taken 1708485 times.
✓ Branch 1 taken 6693753 times.
|
8402238 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4937 | then (e, ext_arg); | ||
| 4938 | |||
| 4939 | case DAE.BCONST() algorithm | ||
| 4940 |
2/2✓ Branch 0 taken 497226 times.
✓ Branch 1 taken 1582041 times.
|
2079267 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4941 | then (e, ext_arg); | ||
| 4942 | |||
| 4943 | case DAE.CLKCONST(clk) algorithm | ||
| 4944 | 1717 | (clk1, ext_arg) := traverseExpClk(clk, inFunc, inExtArg); | |
| 4945 |
2/2✓ Branch 0 taken 6 times.
✓ Branch 1 taken 1711 times.
|
1717 | e := if referenceEq(clk1, clk) then inExp else DAE.CLKCONST(clk1); |
| 4946 |
2/2✓ Branch 0 taken 739 times.
✓ Branch 1 taken 978 times.
|
1717 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4947 | then (e, ext_arg); | ||
| 4948 | |||
| 4949 | case DAE.ENUM_LITERAL() algorithm | ||
| 4950 |
2/2✓ Branch 0 taken 586392 times.
✓ Branch 1 taken 644789 times.
|
1231181 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4951 | then (e, ext_arg); | ||
| 4952 | |||
| 4953 | case DAE.CREF(cr, tp) algorithm | ||
| 4954 |
2/2✓ Branch 1 taken 28092729 times.
✓ Branch 2 taken 49053853 times.
|
77146582 | if ComponentReferenceBasics.crefHasNoSubscripts(cr) then |
| 4955 |
2/2✓ Branch 0 taken 8375938 times.
✓ Branch 1 taken 19716791 times.
|
28092729 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 4956 | else | ||
| 4957 | 49053853 | (cr_1, ext_arg) := traverseExpCref(cr, inFunc, inExtArg); | |
| 4958 |
2/2✓ Branch 0 taken 38667 times.
✓ Branch 1 taken 49015186 times.
|
49053853 | e := if referenceEq(cr, cr_1) then inExp else DAE.CREF(cr_1, tp); |
| 4959 |
2/2✓ Branch 0 taken 13677750 times.
✓ Branch 1 taken 35376103 times.
|
49053853 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4960 | end if; | ||
| 4961 | 77146582 | then (e, ext_arg); | |
| 4962 | |||
| 4963 | // unary | ||
| 4964 | case DAE.UNARY(operator=op, exp=e1) algorithm | ||
| 4965 | 3293278 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 4966 |
2/2✓ Branch 0 taken 327637 times.
✓ Branch 1 taken 2965641 times.
|
3293278 | e := if referenceEq(e1, e1_1) then inExp else DAE.UNARY(op, e1_1); |
| 4967 |
2/2✓ Branch 0 taken 641444 times.
✓ Branch 1 taken 2651834 times.
|
3293278 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4968 | then (e, ext_arg); | ||
| 4969 | |||
| 4970 | // binary | ||
| 4971 | case DAE.BINARY(exp1=e1, operator=op, exp2=e2) algorithm | ||
| 4972 | 62476541 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 4973 | 62476541 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 4974 |
2/2✓ Branch 0 taken 7490506 times.
✓ Branch 1 taken 54986035 times.
|
62476541 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.BINARY(e1_1, op, e2_1); |
| 4975 |
2/2✓ Branch 0 taken 13651086 times.
✓ Branch 1 taken 48825455 times.
|
62476541 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4976 | then (e, ext_arg); | ||
| 4977 | |||
| 4978 | // logical unary | ||
| 4979 | case DAE.LUNARY(operator=op, exp=e1) algorithm | ||
| 4980 | 93789 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 4981 |
2/2✓ Branch 0 taken 2527 times.
✓ Branch 1 taken 91262 times.
|
93789 | e := if referenceEq(e1, e1_1) then inExp else DAE.LUNARY(op, e1_1); |
| 4982 |
2/2✓ Branch 0 taken 38222 times.
✓ Branch 1 taken 55567 times.
|
93789 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4983 | then (e, ext_arg); | ||
| 4984 | |||
| 4985 | // logical binary | ||
| 4986 | case DAE.LBINARY(exp1=e1, operator=op, exp2=e2) algorithm | ||
| 4987 | 558755 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 4988 | 558755 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 4989 |
2/2✓ Branch 0 taken 17613 times.
✓ Branch 1 taken 541142 times.
|
558755 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.LBINARY(e1_1, op, e2_1); |
| 4990 |
2/2✓ Branch 0 taken 242363 times.
✓ Branch 1 taken 316392 times.
|
558755 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4991 | then (e, ext_arg); | ||
| 4992 | |||
| 4993 | // relation | ||
| 4994 | case DAE.RELATION(exp1=e1, operator=op, exp2=e2, index=index_, optionExpisASUB=isExpisASUB) algorithm | ||
| 4995 | 1537068 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 4996 | 1537068 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 4997 |
2/2✓ Branch 0 taken 40876 times.
✓ Branch 1 taken 1496192 times.
|
1537068 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.RELATION(e1_1, op, e2_1, index_, isExpisASUB); |
| 4998 |
2/2✓ Branch 0 taken 576565 times.
✓ Branch 1 taken 960503 times.
|
1537068 | (e, ext_arg) := inFunc(e, ext_arg); |
| 4999 | then (e, ext_arg); | ||
| 5000 | |||
| 5001 | // if expressions | ||
| 5002 | case DAE.IFEXP(expCond=e1, expThen=e2, expElse=e3) algorithm | ||
| 5003 | 808107 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5004 | 808107 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 5005 | 808107 | (e3_1, ext_arg) := traverseExpBottomUp(e3, inFunc, ext_arg); | |
| 5006 |
4/4✓ Branch 0 taken 765274 times.
✓ Branch 1 taken 42833 times.
✓ Branch 2 taken 11977 times.
✓ Branch 3 taken 753297 times.
|
808107 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(e3, e3_1) then inExp else DAE.IFEXP(e1_1, e2_1, e3_1); |
| 5007 |
2/2✓ Branch 0 taken 328437 times.
✓ Branch 1 taken 479670 times.
|
808107 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5008 | then (e, ext_arg); | ||
| 5009 | |||
| 5010 | case DAE.CALL(path=fn, expLst=expl, attr=attr) algorithm | ||
| 5011 | 6036062 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5012 |
2/2✓ Branch 0 taken 180124 times.
✓ Branch 1 taken 5855938 times.
|
6036062 | e := if referenceEq(expl, expl_1) then inExp else DAE.CALL(fn, expl_1, attr); |
| 5013 |
2/2✓ Branch 0 taken 1994133 times.
✓ Branch 1 taken 4041929 times.
|
6036062 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5014 | then (e, ext_arg); | ||
| 5015 | |||
| 5016 | case DAE.RECORD(path=fn, exps=expl, comp=fieldNames, ty=tp) algorithm | ||
| 5017 | 437412 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5018 |
2/2✓ Branch 0 taken 12866 times.
✓ Branch 1 taken 424546 times.
|
437412 | e := if referenceEq(expl, expl_1) then inExp else DAE.RECORD(fn, expl_1, fieldNames, tp); |
| 5019 |
2/2✓ Branch 0 taken 164298 times.
✓ Branch 1 taken 273114 times.
|
437412 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5020 | then (e, ext_arg); | ||
| 5021 | |||
| 5022 | case DAE.PARTEVALFUNCTION(fn, expl, tp, t) algorithm | ||
| 5023 | 9054 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5024 |
2/2✓ Branch 0 taken 463 times.
✓ Branch 1 taken 8591 times.
|
9054 | e := if referenceEq(expl, expl_1) then inExp else DAE.PARTEVALFUNCTION(fn, expl_1, tp, t); |
| 5025 |
2/2✓ Branch 0 taken 4622 times.
✓ Branch 1 taken 4432 times.
|
9054 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5026 | then (e, ext_arg); | ||
| 5027 | |||
| 5028 | case DAE.ARRAY(ty=tp, scalar=scalar, array=expl) algorithm | ||
| 5029 | 8038838 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5030 |
4/4✓ Branch 0 taken 97680 times.
✓ Branch 1 taken 7941158 times.
✓ Branch 2 taken 4771 times.
✓ Branch 3 taken 92909 times.
|
8043609 | e := if referenceEq(expl, expl_1) then inExp else DAE.ARRAY(tp, scalar, expl_1); |
| 5031 |
2/2✓ Branch 0 taken 694434 times.
✓ Branch 1 taken 7344404 times.
|
8038838 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5032 | then (e, ext_arg); | ||
| 5033 | |||
| 5034 | case DAE.MATRIX(ty=tp, integer=dim, matrix=lstexpl) algorithm | ||
| 5035 | 394783 | (lstexpl_1, ext_arg) := traverseExpMatrix(lstexpl, inFunc, inExtArg); | |
| 5036 |
2/2✓ Branch 0 taken 2618 times.
✓ Branch 1 taken 392165 times.
|
394783 | e := if referenceEq(lstexpl, lstexpl_1) then inExp else DAE.MATRIX(tp, dim, lstexpl_1); |
| 5037 |
2/2✓ Branch 0 taken 54966 times.
✓ Branch 1 taken 339817 times.
|
394783 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5038 | then (e, ext_arg); | ||
| 5039 | |||
| 5040 | case DAE.RANGE(ty=tp, start=e1, step=NONE(), stop=e2) algorithm | ||
| 5041 | 15117 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5042 | 15117 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 5043 |
2/2✓ Branch 0 taken 62 times.
✓ Branch 1 taken 15055 times.
|
15117 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.RANGE(tp, e1_1, NONE(), e2_1); |
| 5044 |
2/2✓ Branch 0 taken 6974 times.
✓ Branch 1 taken 8143 times.
|
15117 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5045 | then (e, ext_arg); | ||
| 5046 | |||
| 5047 | case DAE.RANGE(ty=tp, start=e1, step=SOME(e2), stop=e3) algorithm | ||
| 5048 | 224 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5049 | 224 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 5050 | 224 | (e3_1, ext_arg) := traverseExpBottomUp(e3, inFunc, ext_arg); | |
| 5051 |
3/4✓ Branch 0 taken 222 times.
✓ Branch 1 taken 2 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 222 times.
|
226 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(e3, e3_1) then inExp else DAE.RANGE(tp, e1_1, SOME(e2_1), e3_1); |
| 5052 |
2/2✓ Branch 0 taken 58 times.
✓ Branch 1 taken 166 times.
|
224 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5053 | then (e, ext_arg); | ||
| 5054 | |||
| 5055 | case DAE.TUPLE(PR=expl) algorithm | ||
| 5056 | 38549 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5057 |
2/2✓ Branch 0 taken 1873 times.
✓ Branch 1 taken 36676 times.
|
38549 | e := if referenceEq(expl, expl_1) then inExp else DAE.TUPLE(expl_1); |
| 5058 |
2/2✓ Branch 0 taken 15232 times.
✓ Branch 1 taken 23317 times.
|
38549 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5059 | then (e, ext_arg); | ||
| 5060 | |||
| 5061 | case DAE.CAST(ty=tp, exp=e1) algorithm | ||
| 5062 | 757299 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5063 |
2/2✓ Branch 0 taken 11945 times.
✓ Branch 1 taken 745354 times.
|
757299 | e := if referenceEq(e1, e1_1) then inExp else DAE.CAST(tp, e1_1); |
| 5064 |
2/2✓ Branch 0 taken 77104 times.
✓ Branch 1 taken 680195 times.
|
757299 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5065 | then (e, ext_arg); | ||
| 5066 | |||
| 5067 | case DAE.ASUB(exp=e1, sub=subs) algorithm | ||
| 5068 |
4/4✓ Branch 0 taken 1043549 times.
✓ Branch 1 taken 1009951 times.
✓ Branch 2 taken 1043549 times.
✓ Branch 3 taken 1009951 times.
|
2053500 | expl := list(Expression.getSubscriptExp(sub) for sub in subs); |
| 5069 | 1009951 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5070 | 1009951 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, ext_arg); | |
| 5071 |
2/2✓ Branch 0 taken 47900 times.
✓ Branch 1 taken 962051 times.
|
1009951 | e := if referenceEq(e1, e1_1) and referenceEq(expl, expl_1) then inExp else makeASUB(e1_1, expl_1); |
| 5072 |
2/2✓ Branch 0 taken 69742 times.
✓ Branch 1 taken 940209 times.
|
1009951 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5073 | then (e, ext_arg); | ||
| 5074 | |||
| 5075 | case DAE.TSUB(e1, i, tp) algorithm | ||
| 5076 | 3328 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5077 |
2/2✓ Branch 0 taken 133 times.
✓ Branch 1 taken 3195 times.
|
3328 | e := if referenceEq(e1, e1_1) then inExp else DAE.TSUB(e1_1, i, tp); |
| 5078 |
2/2✓ Branch 0 taken 1117 times.
✓ Branch 1 taken 2211 times.
|
3328 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5079 | then (e, ext_arg); | ||
| 5080 | |||
| 5081 | case e1 as DAE.RSUB() | ||
| 5082 | algorithm | ||
| 5083 | 367964 | (e1_1, ext_arg) := traverseExpBottomUp(e1.exp, inFunc, inExtArg); | |
| 5084 |
2/2✓ Branch 0 taken 5121 times.
✓ Branch 1 taken 362843 times.
|
367964 | if not referenceEq(e1.exp, e1_1) then |
| 5085 | 5121 | e1.exp := e1_1; | |
| 5086 | end if; | ||
| 5087 |
2/2✓ Branch 0 taken 145911 times.
✓ Branch 1 taken 222053 times.
|
367964 | (e1, ext_arg) := inFunc(e1, ext_arg); |
| 5088 | then (e1, ext_arg); | ||
| 5089 | |||
| 5090 | case DAE.SIZE(exp=e1, sz=NONE()) algorithm | ||
| 5091 | 12 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5092 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 12 times.
|
12 | e := if referenceEq(e1, e1_1) then inExp else DAE.SIZE(e1_1, NONE()); |
| 5093 |
2/2✓ Branch 0 taken 8 times.
✓ Branch 1 taken 4 times.
|
12 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5094 | then (e, ext_arg); | ||
| 5095 | |||
| 5096 | case DAE.SIZE(exp=e1, sz=SOME(e2)) algorithm | ||
| 5097 | 20909 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5098 | 20909 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 5099 |
2/2✓ Branch 0 taken 789 times.
✓ Branch 1 taken 20120 times.
|
21698 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.SIZE(e1_1, SOME(e2_1)); |
| 5100 |
2/2✓ Branch 0 taken 7694 times.
✓ Branch 1 taken 13215 times.
|
20909 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5101 | then (e, ext_arg); | ||
| 5102 | |||
| 5103 | case DAE.REDUCTION(reductionInfo=reductionInfo, expr=e1, iterators=riters) algorithm | ||
| 5104 | 3688 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5105 | 3688 | (riters_1, ext_arg) := traverseReductionIterators(riters, inFunc, ext_arg); | |
| 5106 |
2/2✓ Branch 0 taken 213 times.
✓ Branch 1 taken 3475 times.
|
3688 | e := if referenceEq(e1, e1_1) and referenceEq(riters, riters_1) then inExp else DAE.REDUCTION(reductionInfo, e1_1, riters_1); |
| 5107 |
2/2✓ Branch 0 taken 519 times.
✓ Branch 1 taken 3169 times.
|
3688 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5108 | then (e, ext_arg); | ||
| 5109 | |||
| 5110 | // MetaModelica list | ||
| 5111 | case DAE.CONS(e1, e2) algorithm | ||
| 5112 | 4708 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5113 | 4708 | (e2_1, ext_arg) := traverseExpBottomUp(e2, inFunc, ext_arg); | |
| 5114 |
2/2✓ Branch 0 taken 1144 times.
✓ Branch 1 taken 3564 times.
|
4708 | e := if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.CONS(e1_1, e2_1); |
| 5115 |
2/2✓ Branch 0 taken 351 times.
✓ Branch 1 taken 4357 times.
|
4708 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5116 | then (e, ext_arg); | ||
| 5117 | |||
| 5118 | case DAE.LIST(expl) algorithm | ||
| 5119 | 50539 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5120 |
2/2✓ Branch 0 taken 326 times.
✓ Branch 1 taken 50213 times.
|
50539 | e := if referenceEq(expl, expl_1) then inExp else DAE.LIST(expl_1); |
| 5121 |
2/2✓ Branch 0 taken 4936 times.
✓ Branch 1 taken 45603 times.
|
50539 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5122 | then (e, ext_arg); | ||
| 5123 | |||
| 5124 | case DAE.META_TUPLE(expl) algorithm | ||
| 5125 | 15142 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5126 |
2/2✓ Branch 0 taken 1085 times.
✓ Branch 1 taken 14057 times.
|
15142 | e := if referenceEq(expl, expl_1) then inExp else DAE.META_TUPLE(expl_1); |
| 5127 |
2/2✓ Branch 0 taken 1777 times.
✓ Branch 1 taken 13365 times.
|
15142 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5128 | then (e, ext_arg); | ||
| 5129 | |||
| 5130 | case DAE.META_OPTION(NONE()) algorithm | ||
| 5131 |
2/2✓ Branch 0 taken 2213 times.
✓ Branch 1 taken 38036 times.
|
40249 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 5132 | then (e, ext_arg); | ||
| 5133 | |||
| 5134 | case DAE.META_OPTION(SOME(e1)) algorithm | ||
| 5135 | 15672 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5136 |
2/2✓ Branch 0 taken 372 times.
✓ Branch 1 taken 15300 times.
|
16044 | e := if referenceEq(e1, e1_1) then inExp else DAE.META_OPTION(SOME(e1_1)); |
| 5137 |
2/2✓ Branch 0 taken 675 times.
✓ Branch 1 taken 14997 times.
|
15672 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5138 | then (e, ext_arg); | ||
| 5139 | |||
| 5140 | case DAE.BOX(e1) algorithm | ||
| 5141 | 147956 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5142 |
2/2✓ Branch 0 taken 1162 times.
✓ Branch 1 taken 146794 times.
|
147956 | e := if referenceEq(e1, e1_1) then inExp else DAE.BOX(e1_1); |
| 5143 |
2/2✓ Branch 0 taken 21780 times.
✓ Branch 1 taken 126176 times.
|
147956 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5144 | then (e, ext_arg); | ||
| 5145 | |||
| 5146 | case DAE.UNBOX(e1, tp) algorithm | ||
| 5147 | 5726 | (e1_1, ext_arg) := traverseExpBottomUp(e1, inFunc, inExtArg); | |
| 5148 |
2/2✓ Branch 0 taken 87 times.
✓ Branch 1 taken 5639 times.
|
5726 | e := if referenceEq(e1, e1_1) then inExp else DAE.UNBOX(e1_1, tp); |
| 5149 |
2/2✓ Branch 0 taken 1090 times.
✓ Branch 1 taken 4636 times.
|
5726 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5150 | then (e, ext_arg); | ||
| 5151 | |||
| 5152 | case DAE.METARECORDCALL(fn, expl, fieldNames, i, typeVars) algorithm | ||
| 5153 | 191067 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5154 |
2/2✓ Branch 0 taken 4424 times.
✓ Branch 1 taken 186643 times.
|
191067 | e := if referenceEq(expl, expl_1) then inExp else DAE.METARECORDCALL(fn, expl_1, fieldNames, i, typeVars); |
| 5155 |
2/2✓ Branch 0 taken 13822 times.
✓ Branch 1 taken 177245 times.
|
191067 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5156 | then (e, ext_arg); | ||
| 5157 | // --------------------- | ||
| 5158 | |||
| 5159 | case DAE.MATCHEXPRESSION(matchTy, expl, aliases, localDecls, cases, tp) algorithm | ||
| 5160 | // Don't traverse the local declarations; we don't store bindings there (yet) | ||
| 5161 | 9880 | (expl_1, ext_arg) := traverseExpList(expl, inFunc, inExtArg); | |
| 5162 | 9880 | (cases_1, ext_arg) := traverseMatchCases(cases, inFunc, ext_arg); | |
| 5163 |
2/2✓ Branch 0 taken 3293 times.
✓ Branch 1 taken 6587 times.
|
9880 | e := if referenceEq(expl, expl_1) and referenceEq(cases, cases_1) then inExp else DAE.MATCHEXPRESSION(matchTy, expl_1, aliases, localDecls, cases_1, tp); |
| 5164 |
2/2✓ Branch 0 taken 1174 times.
✓ Branch 1 taken 8706 times.
|
9880 | (e, ext_arg) := inFunc(e, ext_arg); |
| 5165 | then (e, ext_arg); | ||
| 5166 | |||
| 5167 | case DAE.SHARED_LITERAL() algorithm | ||
| 5168 |
2/2✓ Branch 0 taken 2649 times.
✓ Branch 1 taken 5498 times.
|
8147 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 5169 | then (e, ext_arg); | ||
| 5170 | |||
| 5171 | case DAE.PATTERN() algorithm | ||
| 5172 |
2/2✓ Branch 0 taken 660 times.
✓ Branch 1 taken 5660 times.
|
6320 | (e, ext_arg) := inFunc(inExp, inExtArg); |
| 5173 | then (e, ext_arg); | ||
| 5174 | |||
| 5175 | // Why don't we call inFunc() for these expressions? | ||
| 5176 | 20806 | case DAE.CODE() then (inExp, inExtArg); | |
| 5177 | |||
| 5178 | else algorithm | ||
| 5179 | ✗ | str := ExpressionBasics.printExpStr(inExp); | |
| 5180 | ✗ | str := "Expression.traverseExpBottomUp or one of the user-defined functions using it is not implemented correctly: " + str; | |
| 5181 | ✗ | Error.addInternalError(str, sourceInfo()); | |
| 5182 | ✗ | then fail(); | |
| 5183 | end match; | ||
| 5184 | end traverseExpBottomUp; | ||
| 5185 | |||
| 5186 | public function traverseExpDummy "Like traverseExpBottomUp but passes a default 0 argument" | ||
| 5187 | replaceable type Type_a subtypeof Any; | ||
| 5188 | input DAE.Exp inExp; | ||
| 5189 | input FuncExpType func; | ||
| 5190 | output DAE.Exp outExp; | ||
| 5191 | partial function FuncExpType | ||
| 5192 | input DAE.Exp inExp; | ||
| 5193 | output DAE.Exp outExp; | ||
| 5194 | end FuncExpType; | ||
| 5195 | algorithm | ||
| 5196 | 197992 | (outExp,_) := traverseExpBottomUp(inExp,traverseExpDummyHelper,func); | |
| 5197 | end traverseExpDummy; | ||
| 5198 | |||
| 5199 | public function traverseExpDummyHelper "Like traverseExpBottomUp but does not use an extra argument" | ||
| 5200 | replaceable type Type_a subtypeof Any; | ||
| 5201 | input DAE.Exp inExp; | ||
| 5202 | input FuncExpType func; | ||
| 5203 | output DAE.Exp outExp; | ||
| 5204 | output FuncExpType outFunc; | ||
| 5205 | partial function FuncExpType | ||
| 5206 | input DAE.Exp inExp; | ||
| 5207 | output DAE.Exp outExp; | ||
| 5208 | end FuncExpType; | ||
| 5209 | algorithm | ||
| 5210 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 6558244 times.
|
6558244 | outExp := func(inExp); |
| 5211 | outFunc := func; | ||
| 5212 | end traverseExpDummyHelper; | ||
| 5213 | |||
| 5214 | public function traverseSubexpressionsHelper | ||
| 5215 | "This function is used as input to a traverse function that does not traverse all subexpressions. | ||
| 5216 | The extra argument is a tuple of the actul function to call on each subexpression and the extra argument." | ||
| 5217 | replaceable type Type_a subtypeof Any; | ||
| 5218 | input DAE.Exp inExp; | ||
| 5219 | input tuple<FuncExpType,Type_a> itpl; | ||
| 5220 | output DAE.Exp outExp; | ||
| 5221 | output tuple<FuncExpType,Type_a> otpl; | ||
| 5222 | partial function FuncExpType | ||
| 5223 | input DAE.Exp inExp; | ||
| 5224 | input Type_a inTypeA; | ||
| 5225 | output DAE.Exp outExp; | ||
| 5226 | output Type_a outA; | ||
| 5227 | end FuncExpType; | ||
| 5228 | protected | ||
| 5229 | FuncExpType rel; | ||
| 5230 | Type_a ext_arg, ext_arg2; | ||
| 5231 | algorithm | ||
| 5232 | 8023292 | (rel,ext_arg) := itpl; | |
| 5233 | 8023292 | (outExp,ext_arg2) := traverseExpBottomUp(inExp,rel,ext_arg); | |
| 5234 |
2/2✓ Branch 0 taken 36147 times.
✓ Branch 1 taken 7987145 times.
|
8023292 | otpl := if referenceEq(ext_arg, ext_arg2) then itpl else (rel,ext_arg2); |
| 5235 | end traverseSubexpressionsHelper; | ||
| 5236 | |||
| 5237 | public function traverseSubexpressions | ||
| 5238 | "This function is used as input to a traverse function that does not traverse all subexpressions. | ||
| 5239 | The extra argument is a tuple of the actul function to call on each subexpression and the extra argument." | ||
| 5240 | replaceable type Type_a subtypeof Any; | ||
| 5241 | input output DAE.Exp e; | ||
| 5242 | input output Type_a arg; | ||
| 5243 | input FuncExpType func; | ||
| 5244 | partial function FuncExpType | ||
| 5245 | input DAE.Exp inExp; | ||
| 5246 | input Type_a inTypeA; | ||
| 5247 | output DAE.Exp outExp; | ||
| 5248 | output Type_a outA; | ||
| 5249 | end FuncExpType; | ||
| 5250 | algorithm | ||
| 5251 | 49328 | (e, arg) := traverseExpBottomUp(e, func, arg); | |
| 5252 | end traverseSubexpressions; | ||
| 5253 | |||
| 5254 | public function traverseSubexpressionsDummyHelper | ||
| 5255 | "This function is used as input to a traverse function that does not traverse all subexpressions. | ||
| 5256 | The extra argument is a tuple of the actul function to call on each subexpression and the extra argument. | ||
| 5257 | " | ||
| 5258 | replaceable type Type_a subtypeof Any; | ||
| 5259 | input DAE.Exp inExp; | ||
| 5260 | input FuncExpType inFunc; | ||
| 5261 | output DAE.Exp outExp; | ||
| 5262 | output FuncExpType outFunc; | ||
| 5263 | partial function FuncExpType | ||
| 5264 | input DAE.Exp inExp; | ||
| 5265 | output DAE.Exp outExp; | ||
| 5266 | end FuncExpType; | ||
| 5267 | algorithm | ||
| 5268 | 118183 | (outExp,outFunc) := traverseExpBottomUp(inExp,traverseExpDummyHelper,inFunc); | |
| 5269 | end traverseSubexpressionsDummyHelper; | ||
| 5270 | |||
| 5271 | public function traverseSubexpressionsTopDownHelper | ||
| 5272 | "This function is used as input to a traverse function that does not traverse all subexpressions. | ||
| 5273 | The extra argument is a tuple of the actual function to call on each subexpression and the extra argument." | ||
| 5274 | replaceable type Type_a subtypeof Any; | ||
| 5275 | input DAE.Exp inExp; | ||
| 5276 | input tuple<FuncExpType2,Type_a> itpl; | ||
| 5277 | output DAE.Exp outExp; | ||
| 5278 | output tuple<FuncExpType2,Type_a> otpl; | ||
| 5279 | partial function FuncExpType2 | ||
| 5280 | input DAE.Exp inExp; | ||
| 5281 | input Type_a inTypeA; | ||
| 5282 | output DAE.Exp outExp; | ||
| 5283 | output Boolean cont; | ||
| 5284 | output Type_a outA; | ||
| 5285 | end FuncExpType2; | ||
| 5286 | protected | ||
| 5287 | FuncExpType2 rel; | ||
| 5288 | Type_a ext_arg, ext_arg2; | ||
| 5289 | algorithm | ||
| 5290 | 797502 | (rel,ext_arg) := itpl; | |
| 5291 | 797502 | (outExp,ext_arg2) := traverseExpTopDown(inExp,rel,ext_arg); | |
| 5292 |
2/2✓ Branch 0 taken 3864 times.
✓ Branch 1 taken 793638 times.
|
797502 | otpl := if referenceEq(ext_arg, ext_arg2) then itpl else (rel,ext_arg2); |
| 5293 | end traverseSubexpressionsTopDownHelper; | ||
| 5294 | |||
| 5295 | protected function traverseExpMatrix | ||
| 5296 | "author: PA | ||
| 5297 | Helper function to traverseExpBottomUp, traverses matrix expressions." | ||
| 5298 | replaceable type Type_a subtypeof Any; | ||
| 5299 | input list<list<DAE.Exp>> inMatrix; | ||
| 5300 | input FuncExpType func; | ||
| 5301 | input Type_a inTypeA; | ||
| 5302 | output list<list<DAE.Exp>> outMatrix = {}; | ||
| 5303 | output Type_a outTypeA = inTypeA; | ||
| 5304 | partial function FuncExpType | ||
| 5305 | input DAE.Exp inExp; | ||
| 5306 | input Type_a inTypeA; | ||
| 5307 | output DAE.Exp outExp; | ||
| 5308 | output Type_a outA; | ||
| 5309 | end FuncExpType; | ||
| 5310 | protected | ||
| 5311 | list<DAE.Exp> row_1; | ||
| 5312 | Boolean same = true; | ||
| 5313 | algorithm | ||
| 5314 |
2/2✓ Branch 0 taken 1183036 times.
✓ Branch 1 taken 394783 times.
|
1577819 | for row in inMatrix loop |
| 5315 | 1183036 | (row_1,outTypeA) := traverseExpList(row, func, outTypeA); | |
| 5316 |
2/2✓ Branch 0 taken 1176288 times.
✓ Branch 1 taken 6748 times.
|
1183036 | same := if referenceEq(row,row_1) then same else false; |
| 5317 | outMatrix := row_1::outMatrix; | ||
| 5318 | end for; | ||
| 5319 |
2/2✓ Branch 0 taken 2618 times.
✓ Branch 1 taken 392165 times.
|
394783 | if same then |
| 5320 | outMatrix := inMatrix; | ||
| 5321 | else | ||
| 5322 | 2618 | outMatrix := MetaModelica.Dangerous.listReverseInPlace(outMatrix); | |
| 5323 | end if; | ||
| 5324 | end traverseExpMatrix; | ||
| 5325 | |||
| 5326 | public function traverseExpList<ArgT> "Calls traverseExpBottomUp for each element of list." | ||
| 5327 | input list<DAE.Exp> inExpl; | ||
| 5328 | input FuncExpType rel; | ||
| 5329 | input ArgT iext_arg; | ||
| 5330 | output list<DAE.Exp> expl; | ||
| 5331 | output ArgT ext_arg = iext_arg; | ||
| 5332 | partial function FuncExpType | ||
| 5333 | input DAE.Exp inExp; | ||
| 5334 | input ArgT inTypeA; | ||
| 5335 | output DAE.Exp outExp; | ||
| 5336 | output ArgT outA; | ||
| 5337 | end FuncExpType; | ||
| 5338 | protected | ||
| 5339 | DAE.Exp e1; | ||
| 5340 | DoubleEnded.MutableList<DAE.Exp> delst; | ||
| 5341 | list<DAE.Exp> rest = inExpl; | ||
| 5342 | Integer nEq=0; | ||
| 5343 | algorithm | ||
| 5344 | // Preserve reference equality without any allocation if nothing changed. | ||
| 5345 | expl := inExpl; | ||
| 5346 |
2/2✓ Branch 0 taken 57385188 times.
✓ Branch 1 taken 16724489 times.
|
74109677 | while not listEmpty(rest) loop |
| 5347 | 57385188 | (e1, ext_arg) := traverseExpBottomUp(listHead(rest), rel, ext_arg); | |
| 5348 |
2/2✓ Branch 1 taken 307299 times.
✓ Branch 2 taken 57077889 times.
|
57385188 | if not referenceEq(listHead(rest), e1) then |
| 5349 | // First change: switch to building a new list with a DoubleEnded list. | ||
| 5350 | 307299 | delst := DoubleEnded.empty(e1); | |
| 5351 |
1/2✓ Branch 0 taken 399575 times.
✗ Branch 1 not taken.
|
399575 | for elt in inExpl loop |
| 5352 |
2/2✓ Branch 0 taken 92276 times.
✓ Branch 1 taken 307299 times.
|
399575 | if nEq < 1 then |
| 5353 | break; | ||
| 5354 | end if; | ||
| 5355 | 92276 | DoubleEnded.push_back(delst, elt); | |
| 5356 | 92276 | nEq := nEq-1; | |
| 5357 | end for; | ||
| 5358 | 307299 | DoubleEnded.push_back(delst, e1); | |
| 5359 |
2/2✓ Branch 1 taken 348926 times.
✓ Branch 2 taken 307299 times.
|
656225 | for e in listRest(rest) loop |
| 5360 | 348926 | (e1, ext_arg) := traverseExpBottomUp(e, rel, ext_arg); | |
| 5361 | 348926 | DoubleEnded.push_back(delst, e1); | |
| 5362 | end for; | ||
| 5363 | 307299 | expl := DoubleEnded.toListAndClear(delst); | |
| 5364 | 307299 | return; | |
| 5365 | end if; | ||
| 5366 | 57077889 | nEq := nEq + 1; | |
| 5367 | 57077889 | rest := listRest(rest); | |
| 5368 | end while; | ||
| 5369 | end traverseExpList; | ||
| 5370 | |||
| 5371 | public function traverseExpTopDown | ||
| 5372 | "Traverses all subexpressions of an expression. | ||
| 5373 | Takes a function and an extra argument passed through the traversal. | ||
| 5374 | The function can potentially change the expression. In such cases, | ||
| 5375 | the changes are made top-down, i.e. a subexpression is traversed | ||
| 5376 | and changed after the complete expression is traversed." | ||
| 5377 | replaceable type Type_a subtypeof Any; | ||
| 5378 | input DAE.Exp inExp; | ||
| 5379 | input FuncExpType func; | ||
| 5380 | input Type_a ext_arg; | ||
| 5381 | output DAE.Exp outExp; | ||
| 5382 | output Type_a outArg; | ||
| 5383 | partial function FuncExpType | ||
| 5384 | input DAE.Exp exp; | ||
| 5385 | input Type_a arg; | ||
| 5386 | output DAE.Exp outExp; | ||
| 5387 | output Boolean cont; | ||
| 5388 | output Type_a outArg; | ||
| 5389 | end FuncExpType; | ||
| 5390 | protected | ||
| 5391 | Boolean cont; | ||
| 5392 | algorithm | ||
| 5393 |
2/2✓ Branch 0 taken 39498619 times.
✓ Branch 1 taken 42931892 times.
|
82430511 | (outExp,cont,outArg) := func(inExp,ext_arg); |
| 5394 | 82430511 | (outExp,outArg) := traverseExpTopDown1(cont,outExp,func,outArg); | |
| 5395 | end traverseExpTopDown; | ||
| 5396 | |||
| 5397 | protected function traverseExpClk | ||
| 5398 | replaceable type Type_a subtypeof Any; | ||
| 5399 | input DAE.ClockKind inClk; | ||
| 5400 | input FuncExpType func; | ||
| 5401 | input Type_a inArg; | ||
| 5402 | output DAE.ClockKind outClk; | ||
| 5403 | output Type_a outArg; | ||
| 5404 | partial function FuncExpType | ||
| 5405 | input DAE.Exp exp; | ||
| 5406 | input Type_a arg; | ||
| 5407 | output DAE.Exp outExp; | ||
| 5408 | output Type_a outArg; | ||
| 5409 | end FuncExpType; | ||
| 5410 | algorithm | ||
| 5411 | (outClk, outArg) := match inClk | ||
| 5412 | local | ||
| 5413 | DAE.Exp e, e1, e2, ea, eb; | ||
| 5414 | Type_a arg; | ||
| 5415 | DAE.ClockKind clk; | ||
| 5416 | case DAE.RATIONAL_CLOCK(e1, e2) | ||
| 5417 | algorithm | ||
| 5418 | 233 | (ea, arg) := traverseExpBottomUp(e1, func, inArg); | |
| 5419 | 233 | (eb, arg) := traverseExpBottomUp(e2, func, inArg); | |
| 5420 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 233 times.
|
233 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5421 | then inClk else DAE.RATIONAL_CLOCK(ea, eb); | ||
| 5422 | 233 | then (clk, arg); | |
| 5423 | case DAE.REAL_CLOCK(e) | ||
| 5424 | algorithm | ||
| 5425 | 290 | (e1, arg) := traverseExpBottomUp(e, func, inArg); | |
| 5426 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 290 times.
|
290 | clk := if referenceEq(e1, e) then inClk else DAE.REAL_CLOCK(e1); |
| 5427 | 290 | then (clk, arg); | |
| 5428 | case DAE.EVENT_CLOCK(e1, e2) | ||
| 5429 | algorithm | ||
| 5430 | 127 | (ea, arg) := traverseExpBottomUp(e1, func, inArg); | |
| 5431 | 127 | (eb, arg) := traverseExpBottomUp(e2, func, inArg); | |
| 5432 |
2/2✓ Branch 0 taken 4 times.
✓ Branch 1 taken 123 times.
|
127 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5433 | then inClk else DAE.EVENT_CLOCK(ea, eb); | ||
| 5434 | 127 | then (clk, arg); | |
| 5435 | case DAE.SOLVER_CLOCK(e1, e2) | ||
| 5436 | algorithm | ||
| 5437 | 31 | (ea, arg) := traverseExpBottomUp(e1, func, inArg); | |
| 5438 | 31 | (eb, arg) := traverseExpBottomUp(e2, func, inArg); | |
| 5439 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 29 times.
|
31 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5440 | then inClk else DAE.SOLVER_CLOCK(ea, eb); | ||
| 5441 | 31 | then (clk, arg); | |
| 5442 | else (inClk, inArg); | ||
| 5443 | end match; | ||
| 5444 | end traverseExpClk; | ||
| 5445 | |||
| 5446 | protected function traverseExpTopDownClockHelper | ||
| 5447 | replaceable type Type_a subtypeof Any; | ||
| 5448 | input DAE.ClockKind inClk; | ||
| 5449 | input FuncExpType func; | ||
| 5450 | input Type_a inArg; | ||
| 5451 | output DAE.ClockKind outClk; | ||
| 5452 | output Type_a outArg; | ||
| 5453 | partial function FuncExpType | ||
| 5454 | input DAE.Exp exp; | ||
| 5455 | input Type_a arg; | ||
| 5456 | output DAE.Exp outExp; | ||
| 5457 | output Boolean cont; | ||
| 5458 | output Type_a outArg; | ||
| 5459 | end FuncExpType; | ||
| 5460 | algorithm | ||
| 5461 | (outClk, outArg) := match inClk | ||
| 5462 | local | ||
| 5463 | DAE.Exp e, e1, e2, ea, eb; | ||
| 5464 | Type_a arg; | ||
| 5465 | DAE.ClockKind clk; | ||
| 5466 | |||
| 5467 | case DAE.RATIONAL_CLOCK(e1, e2) | ||
| 5468 | algorithm | ||
| 5469 | 110 | (ea, arg) := traverseExpTopDown(e1, func, inArg); | |
| 5470 | 110 | (eb, arg) := traverseExpTopDown(e2, func, inArg); | |
| 5471 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 110 times.
|
110 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5472 | then inClk else DAE.RATIONAL_CLOCK(ea, eb); | ||
| 5473 | 110 | then (clk, arg); | |
| 5474 | case DAE.REAL_CLOCK(e) | ||
| 5475 | algorithm | ||
| 5476 | 96 | (e1, arg) := traverseExpTopDown(e, func, inArg); | |
| 5477 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 96 times.
|
96 | clk := if referenceEq(e1, e) then inClk else DAE.REAL_CLOCK(e1); |
| 5478 | 96 | then (clk, arg); | |
| 5479 | case DAE.EVENT_CLOCK(e1, e2) | ||
| 5480 | algorithm | ||
| 5481 | 51 | (ea, arg) := traverseExpTopDown(e1, func, inArg); | |
| 5482 | 51 | (eb, arg) := traverseExpTopDown(e2, func, inArg); | |
| 5483 |
2/2✓ Branch 0 taken 8 times.
✓ Branch 1 taken 43 times.
|
51 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5484 | then inClk else DAE.EVENT_CLOCK(ea, eb); | ||
| 5485 | 51 | then (clk, arg); | |
| 5486 | case DAE.SOLVER_CLOCK(e1, e2) | ||
| 5487 | algorithm | ||
| 5488 | 8 | (ea, arg) := traverseExpTopDown(e1, func, inArg); | |
| 5489 | 8 | (eb, arg) := traverseExpTopDown(e2, func, inArg); | |
| 5490 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 8 times.
|
8 | clk := if referenceEq(ea, e1) and referenceEq(eb, e2) |
| 5491 | then inClk else DAE.SOLVER_CLOCK(ea, eb); | ||
| 5492 | 8 | then (clk, arg); | |
| 5493 | else (inClk, inArg); | ||
| 5494 | end match; | ||
| 5495 | end traverseExpTopDownClockHelper; | ||
| 5496 | |||
| 5497 | protected function traverseExpTopDown1 | ||
| 5498 | "Helper for traverseExpTopDown." | ||
| 5499 | replaceable type Type_a subtypeof Any; | ||
| 5500 | input Boolean cont; | ||
| 5501 | input DAE.Exp inExp; | ||
| 5502 | input FuncExpType func; | ||
| 5503 | input Type_a inArg; | ||
| 5504 | output DAE.Exp outExp; | ||
| 5505 | output Type_a outArg; | ||
| 5506 | partial function FuncExpType | ||
| 5507 | input DAE.Exp exp; | ||
| 5508 | input Type_a arg; | ||
| 5509 | output DAE.Exp outExp; | ||
| 5510 | output Boolean cont; | ||
| 5511 | output Type_a outArg; | ||
| 5512 | end FuncExpType; | ||
| 5513 | algorithm | ||
| 5514 | (outExp,outArg) := match (cont,inExp,inArg) | ||
| 5515 | local | ||
| 5516 | DAE.Exp e1_1,e,e1,e2_1,e2,e3_1,e3; | ||
| 5517 | Type_a ext_arg_1,ext_arg_2,ext_arg,ext_arg_3; | ||
| 5518 | Operator op; | ||
| 5519 | list<DAE.Exp> expl_1,expl; | ||
| 5520 | Absyn.Path fn; | ||
| 5521 | Boolean scalar; | ||
| 5522 | Type tp,et,t; | ||
| 5523 | Integer i; | ||
| 5524 | String str; | ||
| 5525 | list<String> fieldNames; | ||
| 5526 | list<list<DAE.Exp>> lstexpl_1,lstexpl; | ||
| 5527 | Integer dim; | ||
| 5528 | Integer index_; | ||
| 5529 | Option<tuple<DAE.Exp,Integer,Integer>> isExpisASUB; | ||
| 5530 | Option<DAE.Exp> oe1; | ||
| 5531 | DAE.ReductionInfo reductionInfo; | ||
| 5532 | DAE.ReductionIterators riters; | ||
| 5533 | DAE.CallAttributes attr; | ||
| 5534 | list<DAE.Element> localDecls; | ||
| 5535 | DAE.MatchType matchType; | ||
| 5536 | list<DAE.MatchCase> cases; | ||
| 5537 | ComponentRef cr,cr_1; | ||
| 5538 | list<list<String>> aliases; | ||
| 5539 | DAE.ClockKind clk, clk1; | ||
| 5540 | list<DAE.Type> typeVars; | ||
| 5541 | list<DAE.Subscript> subs; | ||
| 5542 | |||
| 5543 | case (false,_,_) then (inExp,inArg); | ||
| 5544 | case (_,DAE.ICONST(_),ext_arg) then (inExp,ext_arg); | ||
| 5545 | case (_,DAE.RCONST(_),ext_arg) then (inExp,ext_arg); | ||
| 5546 | case (_,DAE.SCONST(_),ext_arg) then (inExp,ext_arg); | ||
| 5547 | case (_,DAE.BCONST(_),ext_arg) then (inExp,ext_arg); | ||
| 5548 | case (_,DAE.CLKCONST(clk),ext_arg) | ||
| 5549 | algorithm | ||
| 5550 | 626 | (clk1, ext_arg) := traverseExpTopDownClockHelper(clk,func,ext_arg); | |
| 5551 |
2/2✓ Branch 0 taken 8 times.
✓ Branch 1 taken 618 times.
|
626 | e := if referenceEq(clk1,clk) then inExp else DAE.CLKCONST(clk1); |
| 5552 | 626 | then (e, ext_arg); | |
| 5553 | case (_,DAE.ENUM_LITERAL(),ext_arg) then (inExp,ext_arg); | ||
| 5554 | case (_,DAE.CREF(componentRef = cr),ext_arg) | ||
| 5555 | guard ComponentReferenceBasics.crefHasNoSubscripts(cr) | ||
| 5556 | 9245157 | then (inExp,ext_arg); | |
| 5557 | case (_,DAE.CREF(cr,tp),ext_arg) | ||
| 5558 | algorithm | ||
| 5559 | 14921790 | (cr_1,ext_arg_1) := traverseExpTopDownCrefHelper(cr,func,ext_arg); | |
| 5560 |
2/2✓ Branch 0 taken 566 times.
✓ Branch 1 taken 14921224 times.
|
14921790 | then (if referenceEq(cr,cr_1) then inExp else DAE.CREF(cr_1,tp),ext_arg_1); |
| 5561 | // unary | ||
| 5562 | case (_,DAE.UNARY(operator = op,exp = e1),ext_arg) | ||
| 5563 | algorithm | ||
| 5564 | 942173 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5565 |
2/2✓ Branch 0 taken 74358 times.
✓ Branch 1 taken 867815 times.
|
942173 | then |
| 5566 | (if referenceEq(e1, e1_1) then inExp else DAE.UNARY(op,e1_1),ext_arg_1); | ||
| 5567 | |||
| 5568 | // binary | ||
| 5569 | case (_,DAE.BINARY(exp1 = e1,operator = op,exp2 = e2),ext_arg) | ||
| 5570 | algorithm | ||
| 5571 | 16533272 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5572 | 16533272 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5573 |
2/2✓ Branch 0 taken 1693730 times.
✓ Branch 1 taken 14839542 times.
|
16533272 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.BINARY(e1_1,op,e2_1),ext_arg_2); |
| 5574 | |||
| 5575 | // logical unary | ||
| 5576 | case (_,DAE.LUNARY(operator = op,exp = e1),ext_arg) | ||
| 5577 | algorithm | ||
| 5578 | 44984 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5579 |
2/2✓ Branch 0 taken 2129 times.
✓ Branch 1 taken 42855 times.
|
44984 | then (if referenceEq(e1, e1_1) then inExp else DAE.LUNARY(op,e1_1),ext_arg_1); |
| 5580 | |||
| 5581 | // logical binary | ||
| 5582 | case (_,DAE.LBINARY(exp1 = e1,operator = op,exp2 = e2),ext_arg) | ||
| 5583 | algorithm | ||
| 5584 | 270888 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5585 | 270888 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5586 |
2/2✓ Branch 0 taken 170001 times.
✓ Branch 1 taken 100887 times.
|
270888 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.LBINARY(e1_1,op,e2_1),ext_arg_2); |
| 5587 | |||
| 5588 | // relation | ||
| 5589 | case (_,DAE.RELATION(exp1 = e1,operator = op,exp2 = e2, index=index_, optionExpisASUB= isExpisASUB),ext_arg) | ||
| 5590 | algorithm | ||
| 5591 | 582410 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5592 | 582410 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5593 |
2/2✓ Branch 0 taken 44991 times.
✓ Branch 1 taken 537419 times.
|
582410 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.RELATION(e1_1,op,e2_1,index_,isExpisASUB),ext_arg_2); |
| 5594 | |||
| 5595 | // if expressions | ||
| 5596 | case (_,(DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3)),ext_arg) | ||
| 5597 | algorithm | ||
| 5598 | 194096 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5599 | 194096 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5600 | 194096 | (e3_1,ext_arg_3) := traverseExpTopDown(e3, func, ext_arg_2); | |
| 5601 |
4/4✓ Branch 0 taken 99332 times.
✓ Branch 1 taken 94764 times.
✓ Branch 2 taken 13070 times.
✓ Branch 3 taken 86262 times.
|
194096 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(e3, e3_1) then inExp else DAE.IFEXP(e1_1,e2_1,e3_1),ext_arg_3); |
| 5602 | |||
| 5603 | // call | ||
| 5604 | case (_,(DAE.CALL(path = fn,expLst = expl,attr = attr)),ext_arg) | ||
| 5605 | algorithm | ||
| 5606 | 2020479 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5607 | 2020479 | then (DAE.CALL(fn,expl_1,attr),ext_arg_1); | |
| 5608 | |||
| 5609 | case (_,(DAE.RECORD(path = fn,exps = expl,comp = fieldNames,ty = tp)),ext_arg) | ||
| 5610 | algorithm | ||
| 5611 | 237392 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5612 | 237392 | then (DAE.RECORD(fn,expl_1,fieldNames,tp),ext_arg_1); | |
| 5613 | |||
| 5614 | case (_,(DAE.PARTEVALFUNCTION(fn, expl, tp, t)),ext_arg) | ||
| 5615 | algorithm | ||
| 5616 | 5857 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5617 | 5857 | then (DAE.PARTEVALFUNCTION(fn,expl_1,tp,t),ext_arg_1); | |
| 5618 | |||
| 5619 | case (_,(DAE.ARRAY(ty = tp,scalar = scalar,array = expl)),ext_arg) | ||
| 5620 | algorithm | ||
| 5621 | 486965 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5622 |
2/2✓ Branch 0 taken 12858 times.
✓ Branch 1 taken 474107 times.
|
499823 | then (DAE.ARRAY(tp,scalar,expl_1),ext_arg_1); |
| 5623 | |||
| 5624 | case (_,(DAE.MATRIX(ty = tp,integer = dim,matrix = lstexpl)),ext_arg) | ||
| 5625 | algorithm | ||
| 5626 | 67927 | (lstexpl_1,ext_arg_1) := traverseExpMatrixTopDown(lstexpl, func, ext_arg); | |
| 5627 | 67927 | then (DAE.MATRIX(tp,dim,lstexpl_1),ext_arg_1); | |
| 5628 | |||
| 5629 | case (_,(DAE.RANGE(ty = tp,start = e1,step = NONE(),stop = e2)),ext_arg) | ||
| 5630 | algorithm | ||
| 5631 | 13578 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5632 | 13578 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5633 |
2/2✓ Branch 0 taken 32 times.
✓ Branch 1 taken 13546 times.
|
13578 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.RANGE(tp,e1_1,NONE(),e2_1),ext_arg_2); |
| 5634 | |||
| 5635 | case (_,(DAE.RANGE(ty = tp,start = e1,step = SOME(e2),stop = e3)),ext_arg) | ||
| 5636 | algorithm | ||
| 5637 | 66 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5638 | 66 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5639 | 66 | (e3_1,ext_arg_3) := traverseExpTopDown(e3, func, ext_arg_2); | |
| 5640 |
2/4✓ Branch 0 taken 66 times.
✗ Branch 1 not taken.
✗ Branch 2 not taken.
✓ Branch 3 taken 66 times.
|
66 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(e3, e3_1) then inExp else DAE.RANGE(tp,e1_1,SOME(e2_1),e3_1),ext_arg_3); |
| 5641 | |||
| 5642 | case (_,(DAE.TUPLE(PR = expl)),ext_arg) | ||
| 5643 | algorithm | ||
| 5644 | 17154 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5645 | 17154 | then (DAE.TUPLE(expl_1),ext_arg_1); | |
| 5646 | |||
| 5647 | case (_,(DAE.CAST(ty = tp,exp = e1)),ext_arg) | ||
| 5648 | algorithm | ||
| 5649 | 99352 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5650 | 99352 | then (DAE.CAST(tp,e1_1),ext_arg_1); | |
| 5651 | |||
| 5652 | case (_,(DAE.ASUB(exp = e1,sub = subs)),ext_arg) | ||
| 5653 | algorithm | ||
| 5654 |
4/4✓ Branch 0 taken 85025 times.
✓ Branch 1 taken 75675 times.
✓ Branch 2 taken 85025 times.
✓ Branch 3 taken 75675 times.
|
160700 | expl_1 := list(Expression.getSubscriptExp(sub) for sub in subs); |
| 5655 | 75675 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5656 | 75675 | (expl_1,ext_arg_2) := traverseExpListTopDown(expl_1, func, ext_arg_1); | |
| 5657 | 75675 | then (makeASUB(e1_1,expl_1),ext_arg_2); | |
| 5658 | |||
| 5659 | case (_,(DAE.TSUB(e1,i,tp)),ext_arg) | ||
| 5660 | algorithm | ||
| 5661 | 873 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5662 | 873 | then (DAE.TSUB(e1_1,i,tp),ext_arg_1); | |
| 5663 | |||
| 5664 | case (_,e1 as DAE.RSUB(),ext_arg) | ||
| 5665 | algorithm | ||
| 5666 | 167653 | (e1_1,ext_arg_1) := traverseExpTopDown(e1.exp, func, ext_arg); | |
| 5667 |
2/2✓ Branch 0 taken 135711 times.
✓ Branch 1 taken 31942 times.
|
167653 | if not referenceEq(e1.exp, e1_1) then |
| 5668 | 135711 | e1.exp := e1_1; | |
| 5669 | end if; | ||
| 5670 | 167653 | then (e1,ext_arg_1); | |
| 5671 | |||
| 5672 | case (_,(DAE.SIZE(exp = e1,sz = NONE())),ext_arg) | ||
| 5673 | algorithm | ||
| 5674 | 3 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5675 | 3 | then (DAE.SIZE(e1_1,NONE()),ext_arg_1); | |
| 5676 | |||
| 5677 | case (_,(DAE.SIZE(exp = e1,sz = SOME(e2))),ext_arg) | ||
| 5678 | algorithm | ||
| 5679 | 1528 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5680 | 1528 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5681 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1528 times.
|
1528 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.SIZE(e1_1,SOME(e2_1)),ext_arg_2); |
| 5682 | |||
| 5683 | case (_,DAE.CODE(),ext_arg) then (inExp,ext_arg); | ||
| 5684 | |||
| 5685 | case (_,DAE.REDUCTION(reductionInfo = reductionInfo, expr = e1, iterators = riters),ext_arg) | ||
| 5686 | algorithm | ||
| 5687 | 243 | (e1,ext_arg) := traverseExpTopDown(e1, func, ext_arg); | |
| 5688 | 243 | (riters,ext_arg) := traverseReductionIteratorsTopDown(riters, func, ext_arg); | |
| 5689 | 243 | then (DAE.REDUCTION(reductionInfo,e1,riters),ext_arg); | |
| 5690 | |||
| 5691 | case (_, DAE.EMPTY(), _) | ||
| 5692 | then (inExp, inArg); | ||
| 5693 | |||
| 5694 | // MetaModelica list | ||
| 5695 | case (_,DAE.CONS(e1,e2),ext_arg) | ||
| 5696 | algorithm | ||
| 5697 | 598 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5698 | 598 | (e2_1,ext_arg_2) := traverseExpTopDown(e2, func, ext_arg_1); | |
| 5699 |
2/2✓ Branch 0 taken 209 times.
✓ Branch 1 taken 389 times.
|
598 | then (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.CONS(e1_1,e2_1),ext_arg_2); |
| 5700 | |||
| 5701 | case (_,DAE.LIST(expl),ext_arg) | ||
| 5702 | algorithm | ||
| 5703 | 4034 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5704 | 4034 | then (DAE.LIST(expl_1),ext_arg_1); | |
| 5705 | |||
| 5706 | case (_,DAE.META_TUPLE(expl),ext_arg) | ||
| 5707 | algorithm | ||
| 5708 | 1274 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5709 | 1274 | then (DAE.META_TUPLE(expl_1),ext_arg_1); | |
| 5710 | |||
| 5711 | case (_,DAE.META_OPTION(oe1),ext_arg) | ||
| 5712 | algorithm | ||
| 5713 | 12418 | (oe1,ext_arg) := traverseExpOptTopDown(oe1, func, ext_arg); | |
| 5714 | 12418 | then (DAE.META_OPTION(oe1),ext_arg); | |
| 5715 | |||
| 5716 | case (_,DAE.MATCHEXPRESSION(matchType,expl,aliases,localDecls,cases,et),ext_arg) | ||
| 5717 | algorithm | ||
| 5718 | 1171 | (expl,ext_arg) := traverseExpListTopDown(expl,func,ext_arg); | |
| 5719 | 1171 | (cases, ext_arg) := traverseMatchCasesTopDown(cases, func, ext_arg); | |
| 5720 | 1171 | then (DAE.MATCHEXPRESSION(matchType,expl,aliases,localDecls,cases,et),ext_arg); | |
| 5721 | |||
| 5722 | case (_,DAE.METARECORDCALL(fn,expl,fieldNames,i,typeVars),ext_arg) | ||
| 5723 | algorithm | ||
| 5724 | 9619 | (expl_1,ext_arg_1) := traverseExpListTopDown(expl, func, ext_arg); | |
| 5725 | 9619 | then (DAE.METARECORDCALL(fn,expl_1,fieldNames,i,typeVars),ext_arg_1); | |
| 5726 | |||
| 5727 | case (_,DAE.UNBOX(e1,tp),ext_arg) | ||
| 5728 | algorithm | ||
| 5729 | 597 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5730 | 597 | then (DAE.UNBOX(e1_1,tp),ext_arg_1); | |
| 5731 | |||
| 5732 | case (_,DAE.BOX(e1),ext_arg) | ||
| 5733 | algorithm | ||
| 5734 | 21838 | (e1_1,ext_arg_1) := traverseExpTopDown(e1, func, ext_arg); | |
| 5735 | 21838 | then (DAE.BOX(e1_1),ext_arg_1); | |
| 5736 | |||
| 5737 | case (_,DAE.PATTERN(),ext_arg) | ||
| 5738 | then (inExp,ext_arg); | ||
| 5739 | |||
| 5740 | case (_,DAE.SHARED_LITERAL(),ext_arg) | ||
| 5741 | then (inExp,ext_arg); | ||
| 5742 | |||
| 5743 | else | ||
| 5744 | algorithm | ||
| 5745 | ✗ | str := ExpressionBasics.printExpStr(inExp); | |
| 5746 | ✗ | str := getInstanceName() + " or " + System.dladdr(func) + "not implemented correctly: " + str; | |
| 5747 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {str}); | |
| 5748 | ✗ | then fail(); | |
| 5749 | end match; | ||
| 5750 | end traverseExpTopDown1; | ||
| 5751 | |||
| 5752 | protected function traverseExpMatrixTopDown | ||
| 5753 | "author: PA | ||
| 5754 | Helper function to traverseExpTopDown, traverses matrix expressions." | ||
| 5755 | replaceable type Type_a subtypeof Any; | ||
| 5756 | input list<list<DAE.Exp>> inMatrix; | ||
| 5757 | input FuncExpType func; | ||
| 5758 | input Type_a inTypeA; | ||
| 5759 | output list<list<DAE.Exp>> outMatrix = {}; | ||
| 5760 | output Type_a outTypeA = inTypeA; | ||
| 5761 | partial function FuncExpType | ||
| 5762 | input DAE.Exp exp; | ||
| 5763 | input Type_a arg; | ||
| 5764 | output DAE.Exp outExp; | ||
| 5765 | output Boolean cont; | ||
| 5766 | output Type_a outArg; | ||
| 5767 | end FuncExpType; | ||
| 5768 | protected | ||
| 5769 | list<DAE.Exp> row_1; | ||
| 5770 | Boolean same = true; | ||
| 5771 | algorithm | ||
| 5772 |
2/2✓ Branch 0 taken 203184 times.
✓ Branch 1 taken 67927 times.
|
271111 | for row in inMatrix loop |
| 5773 | 203184 | (row_1,outTypeA) := traverseExpListTopDown(row, func, outTypeA); | |
| 5774 |
2/2✓ Branch 0 taken 201410 times.
✓ Branch 1 taken 1774 times.
|
203184 | same := if referenceEq(row,row_1) then same else false; |
| 5775 | outMatrix := row_1::outMatrix; | ||
| 5776 | end for; | ||
| 5777 |
2/2✓ Branch 0 taken 654 times.
✓ Branch 1 taken 67273 times.
|
67927 | if same then |
| 5778 | outMatrix := inMatrix; | ||
| 5779 | else | ||
| 5780 | 654 | outMatrix := MetaModelica.Dangerous.listReverseInPlace(outMatrix); | |
| 5781 | end if; | ||
| 5782 | end traverseExpMatrixTopDown; | ||
| 5783 | |||
| 5784 | public function traverseExpListTopDown | ||
| 5785 | " author PA: | ||
| 5786 | Calls traverseExpListTopDown for each element of list." | ||
| 5787 | replaceable type Type_a subtypeof Any; | ||
| 5788 | input list<DAE.Exp> inExpl; | ||
| 5789 | input FuncExpType rel; | ||
| 5790 | input Type_a inExt_arg; | ||
| 5791 | output list<DAE.Exp> outExpl = {}; | ||
| 5792 | output Type_a outA = inExt_arg; | ||
| 5793 | partial function FuncExpType | ||
| 5794 | input DAE.Exp exp; | ||
| 5795 | input Type_a arg; | ||
| 5796 | output DAE.Exp outExp; | ||
| 5797 | output Boolean cont; | ||
| 5798 | output Type_a outArg; | ||
| 5799 | end FuncExpType; | ||
| 5800 | protected | ||
| 5801 | DAE.Exp e_1; | ||
| 5802 | list<DAE.Exp> rest = inExpl, acc; | ||
| 5803 | Integer nEq = 0; | ||
| 5804 | algorithm | ||
| 5805 | // Allocates only once an element changes, like traverseExpList. | ||
| 5806 | outExpl := inExpl; | ||
| 5807 |
2/2✓ Branch 0 taken 8975288 times.
✓ Branch 1 taken 2526627 times.
|
11501915 | while not listEmpty(rest) loop |
| 5808 | 8975288 | (e_1, outA) := traverseExpTopDown(listHead(rest), rel, outA); | |
| 5809 |
2/2✓ Branch 1 taken 536553 times.
✓ Branch 2 taken 8438735 times.
|
8975288 | if not referenceEq(listHead(rest), e_1) then |
| 5810 | acc := {}; | ||
| 5811 |
1/2✓ Branch 0 taken 821700 times.
✗ Branch 1 not taken.
|
821700 | for e in inExpl loop |
| 5812 |
2/2✓ Branch 0 taken 285147 times.
✓ Branch 1 taken 536553 times.
|
821700 | if nEq < 1 then |
| 5813 | break; | ||
| 5814 | end if; | ||
| 5815 | acc := e :: acc; | ||
| 5816 | 285147 | nEq := nEq - 1; | |
| 5817 | end for; | ||
| 5818 | acc := e_1 :: acc; | ||
| 5819 |
2/2✓ Branch 1 taken 567167 times.
✓ Branch 2 taken 536553 times.
|
1103720 | for e in listRest(rest) loop |
| 5820 | 567167 | (e_1, outA) := traverseExpTopDown(e, rel, outA); | |
| 5821 | acc := e_1 :: acc; | ||
| 5822 | end for; | ||
| 5823 | 536553 | outExpl := MetaModelica.Dangerous.listReverseInPlace(acc); | |
| 5824 | 536553 | return; | |
| 5825 | end if; | ||
| 5826 | 8438735 | nEq := nEq + 1; | |
| 5827 | 8438735 | rest := listRest(rest); | |
| 5828 | end while; | ||
| 5829 | end traverseExpListTopDown; | ||
| 5830 | |||
| 5831 | public function traverseExpOpt "Calls traverseExpBottomUp for SOME(exp) and does nothing for NONE" | ||
| 5832 | input Option<DAE.Exp> inExp; | ||
| 5833 | input FuncExpType func; | ||
| 5834 | input Type_a inTypeA; | ||
| 5835 | output Option<DAE.Exp> outExp; | ||
| 5836 | output Type_a outTypeA; | ||
| 5837 | partial function FuncExpType | ||
| 5838 | input DAE.Exp inExp; | ||
| 5839 | input Type_a inTypeA; | ||
| 5840 | output DAE.Exp outExp; | ||
| 5841 | output Type_a outA; | ||
| 5842 | end FuncExpType; | ||
| 5843 | replaceable type Type_a subtypeof Any; | ||
| 5844 | algorithm | ||
| 5845 | (outExp,outTypeA) := match (inExp, inTypeA) | ||
| 5846 | local | ||
| 5847 | DAE.Exp e,e1; | ||
| 5848 | Type_a a; | ||
| 5849 | Option<DAE.Exp> oe; | ||
| 5850 | case (NONE(), a) then (inExp/*In case external functions create a copy of NONE()*/,a); | ||
| 5851 | case(oe as SOME(e), a) algorithm | ||
| 5852 | 6632807 | (e1,a) := traverseExpBottomUp(e,func,a); | |
| 5853 |
2/2✓ Branch 0 taken 5210 times.
✓ Branch 1 taken 6627597 times.
|
6632807 | oe := if referenceEq(e,e1) then oe else SOME(e1); |
| 5854 | 6632807 | then (oe,a); | |
| 5855 | end match; | ||
| 5856 | end traverseExpOpt; | ||
| 5857 | |||
| 5858 | public function traverseExpOptTopDown "Calls traverseExpTopDown for SOME(exp) and does nothing for NONE" | ||
| 5859 | input Option<DAE.Exp> inExp; | ||
| 5860 | input FuncExpType func; | ||
| 5861 | input Type_a inTypeA; | ||
| 5862 | output Option<DAE.Exp> outExp; | ||
| 5863 | output Type_a outA; | ||
| 5864 | partial function FuncExpType | ||
| 5865 | input DAE.Exp inExp; | ||
| 5866 | input Type_a inTypeA; | ||
| 5867 | output DAE.Exp outExp; | ||
| 5868 | output Boolean cont; | ||
| 5869 | output Type_a outA; | ||
| 5870 | end FuncExpType; | ||
| 5871 | replaceable type Type_a subtypeof Any; | ||
| 5872 | algorithm | ||
| 5873 | (outExp,outA) := match (inExp, inTypeA) | ||
| 5874 | local DAE.Exp e,e1; Type_a a; | ||
| 5875 | case(NONE(), a) then (NONE(),a); | ||
| 5876 | case(SOME(e), a) | ||
| 5877 | algorithm | ||
| 5878 | 10902 | (e1,a) := traverseExpTopDown(e,func,a); | |
| 5879 |
2/2✓ Branch 0 taken 7377 times.
✓ Branch 1 taken 3525 times.
|
18279 | then (if referenceEq(e,e1) then inExp else SOME(e1),a); |
| 5880 | end match; | ||
| 5881 | end traverseExpOptTopDown; | ||
| 5882 | |||
| 5883 | public function traverseExpCrefDims<ArgT> | ||
| 5884 | input DAE.ComponentRef inCref; | ||
| 5885 | input FuncType inFunc; | ||
| 5886 | input ArgT inArg; | ||
| 5887 | output DAE.ComponentRef outCref; | ||
| 5888 | output ArgT outArg; | ||
| 5889 | |||
| 5890 | partial function FuncType | ||
| 5891 | input DAE.Exp inExp; | ||
| 5892 | input ArgT inArg; | ||
| 5893 | output DAE.Exp outExp; | ||
| 5894 | output ArgT outArg; | ||
| 5895 | end FuncType; | ||
| 5896 | algorithm | ||
| 5897 | (outCref, outArg) := match inCref | ||
| 5898 | local | ||
| 5899 | DAE.Ident id; | ||
| 5900 | DAE.Type ty, new_ty; | ||
| 5901 | list<DAE.Subscript> subs; | ||
| 5902 | DAE.ComponentRef cr, new_cr; | ||
| 5903 | ArgT arg; | ||
| 5904 | |||
| 5905 | case DAE.CREF_QUAL(id, ty, subs, cr) | ||
| 5906 | algorithm | ||
| 5907 | 2084004 | (new_cr, arg) := traverseExpCrefDims(cr, inFunc, inArg); | |
| 5908 | 2084004 | (new_ty, arg) := traverseExpTypeDims(ty, inFunc, inArg); | |
| 5909 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 2084004 times.
|
2084004 | cr := if referenceEq(new_cr, cr) and referenceEq(new_ty, ty) |
| 5910 | then inCref else DAE.CREF_QUAL(id, new_ty, subs, new_cr); | ||
| 5911 | 2084004 | then | |
| 5912 | (cr, arg); | ||
| 5913 | |||
| 5914 | case DAE.CREF_IDENT(id, ty, subs) | ||
| 5915 | algorithm | ||
| 5916 | 1385159 | (new_ty, arg) := traverseExpTypeDims(ty, inFunc, inArg); | |
| 5917 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1385159 times.
|
1385159 | cr := if referenceEq(new_ty, ty) |
| 5918 | then inCref else DAE.CREF_IDENT(id, new_ty, subs); | ||
| 5919 | 1385159 | then | |
| 5920 | (cr, arg); | ||
| 5921 | |||
| 5922 | else (inCref, inArg); | ||
| 5923 | end match; | ||
| 5924 | end traverseExpCrefDims; | ||
| 5925 | |||
| 5926 | public function traverseExpTypeDims<ArgT> | ||
| 5927 | input DAE.Type inType; | ||
| 5928 | input FuncType inFunc; | ||
| 5929 | input ArgT inArg; | ||
| 5930 | output DAE.Type outType; | ||
| 5931 | output ArgT outArg; | ||
| 5932 | |||
| 5933 | partial function FuncType | ||
| 5934 | input DAE.Exp inExp; | ||
| 5935 | input ArgT inArg; | ||
| 5936 | output DAE.Exp outExp; | ||
| 5937 | output ArgT outArg; | ||
| 5938 | end FuncType; | ||
| 5939 | algorithm | ||
| 5940 | (outType, outArg) := match inType | ||
| 5941 | local | ||
| 5942 | DAE.Type ty, new_ty; | ||
| 5943 | list<DAE.Dimension> dims; | ||
| 5944 | ArgT arg; | ||
| 5945 | Boolean changed; | ||
| 5946 | ClassInf.State state; | ||
| 5947 | list<DAE.Var> vars; | ||
| 5948 | DAE.EqualityConstraint ec; | ||
| 5949 | |||
| 5950 | case DAE.T_ARRAY(ty, dims) | ||
| 5951 | algorithm | ||
| 5952 | 778757 | (_, arg, changed) := traverseExpTypeDims2(dims, inFunc, inArg); | |
| 5953 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 778757 times.
|
778757 | ty := if changed then DAE.T_ARRAY(ty, dims) else inType; |
| 5954 | 778757 | then | |
| 5955 | (ty, arg); | ||
| 5956 | |||
| 5957 | case DAE.T_SUBTYPE_BASIC(state, vars, ty, ec) | ||
| 5958 | algorithm | ||
| 5959 | ✗ | (new_ty, arg) := traverseExpTypeDims(ty, inFunc, inArg); | |
| 5960 | ✗ | ty := if referenceEq(new_ty, ty) then inType else DAE.T_SUBTYPE_BASIC(state, vars, ty, ec); | |
| 5961 | ✗ | then | |
| 5962 | (ty, arg); | ||
| 5963 | |||
| 5964 | else (inType, inArg); | ||
| 5965 | end match; | ||
| 5966 | end traverseExpTypeDims; | ||
| 5967 | |||
| 5968 | protected function traverseExpTypeDims2<ArgT> | ||
| 5969 | input list<DAE.Dimension> inDims; | ||
| 5970 | input FuncType inFunc; | ||
| 5971 | input ArgT inArg; | ||
| 5972 | output list<DAE.Dimension> outDims = {}; | ||
| 5973 | output ArgT outArg = inArg; | ||
| 5974 | output Boolean outChanged = false; | ||
| 5975 | |||
| 5976 | partial function FuncType | ||
| 5977 | input DAE.Exp inExp; | ||
| 5978 | input ArgT inArg; | ||
| 5979 | output DAE.Exp outExp; | ||
| 5980 | output ArgT outArg; | ||
| 5981 | end FuncType; | ||
| 5982 | protected | ||
| 5983 | Boolean changed; | ||
| 5984 | DAE.Exp exp, new_exp; | ||
| 5985 | algorithm | ||
| 5986 |
2/2✓ Branch 0 taken 906469 times.
✓ Branch 1 taken 778757 times.
|
1685226 | for dim in inDims loop |
| 5987 | dim := match dim | ||
| 5988 | case DAE.DIM_EXP(exp) | ||
| 5989 | algorithm | ||
| 5990 |
1/2✓ Branch 0 taken 2426 times.
✗ Branch 1 not taken.
|
2426 | (new_exp, outArg) := inFunc(exp, outArg); |
| 5991 | 2426 | changed := not referenceEq(new_exp, exp); | |
| 5992 | 2426 | outChanged := outChanged or changed; | |
| 5993 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 2426 times.
|
2426 | then |
| 5994 | if changed then DAE.DIM_EXP(exp) else dim; | ||
| 5995 | |||
| 5996 | else dim; | ||
| 5997 | end match; | ||
| 5998 | |||
| 5999 | outDims := dim :: outDims; | ||
| 6000 | end for; | ||
| 6001 | |||
| 6002 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 778757 times.
|
778757 | outDims := if outChanged then listReverse(outDims) else inDims; |
| 6003 | end traverseExpTypeDims2; | ||
| 6004 | |||
| 6005 | public function extractUniqueCrefsFromExp | ||
| 6006 | "Extracts all unique ComponentRef from an Expression. | ||
| 6007 | If `expand` is true crefs will be expanded." | ||
| 6008 | input DAE.Exp inExp; | ||
| 6009 | input Boolean expand = true; | ||
| 6010 | output list<DAE.ComponentRef> ocrefs; | ||
| 6011 | algorithm | ||
| 6012 | 6421 | ocrefs := ComponentReference.uniqueList(extractCrefsFromExp(inExp)); | |
| 6013 | |||
| 6014 |
1/2✓ Branch 0 taken 6421 times.
✗ Branch 1 not taken.
|
6421 | if expand then |
| 6015 | ✗ | ocrefs := List.flatten(List.map1(ocrefs, ComponentReference.expandCref, true)); | |
| 6016 | end if; | ||
| 6017 | end extractUniqueCrefsFromExp; | ||
| 6018 | |||
| 6019 | public function extractCrefsFromExp " | ||
| 6020 | Author: BZ 2008-06, Extracts all ComponentRef from an Expression." | ||
| 6021 | input DAE.Exp inExp; | ||
| 6022 | output list<DAE.ComponentRef> ocrefs; | ||
| 6023 | algorithm | ||
| 6024 | 918109 | (_,ocrefs) := traverseExpBottomUp(inExp, traversingComponentRefFinder, {}); | |
| 6025 | end extractCrefsFromExp; | ||
| 6026 | |||
| 6027 | public function traversingComponentRefFinder " | ||
| 6028 | Author: BZ 2008-06 | ||
| 6029 | Exp traverser that Union the current ComponentRef with list if it is already there. | ||
| 6030 | Returns a list containing, unique, all componentRef in an Expression." | ||
| 6031 | input DAE.Exp inExp; | ||
| 6032 | input list<DAE.ComponentRef> inCrefs; | ||
| 6033 | output DAE.Exp outExp; | ||
| 6034 | output list<DAE.ComponentRef> crefs; | ||
| 6035 | algorithm | ||
| 6036 | (outExp,crefs) := match (inExp,inCrefs) | ||
| 6037 | local | ||
| 6038 | ComponentRef cr; | ||
| 6039 | case (DAE.CREF(componentRef=cr), crefs) | ||
| 6040 | algorithm | ||
| 6041 | 1127061 | crefs := List.unionEltOnTrue(cr,crefs,ComponentReferenceBasics.crefEqual); | |
| 6042 | then (inExp,crefs); | ||
| 6043 | else (inExp,inCrefs); | ||
| 6044 | end match; | ||
| 6045 | end traversingComponentRefFinder; | ||
| 6046 | |||
| 6047 | public function extractUniqueCrefsFromExpDerPreStart | ||
| 6048 | "author mahge: Same as extractUniqueCrefsFromExp except: | ||
| 6049 | This function will not treat der(), pre() and start() as calls | ||
| 6050 | but as unique ids. i.e. x is different from der(x) and given der(x) x will not | ||
| 6051 | be extreacted as a unique id. Instead you get $DER.x. Same goes for pre and start." | ||
| 6052 | input DAE.Exp inExp; | ||
| 6053 | input Boolean expand = true; | ||
| 6054 | output list<DAE.ComponentRef> ocrefs; | ||
| 6055 | algorithm | ||
| 6056 | 272177 | ocrefs := ComponentReference.uniqueList(extractCrefsFromExpDerPreStart(inExp, expand)); | |
| 6057 | end extractUniqueCrefsFromExpDerPreStart; | ||
| 6058 | |||
| 6059 | public function extractCrefsFromExpDerPreStart | ||
| 6060 | " author mahge: Same as extractCrefsFromExp except: | ||
| 6061 | This function will not treat der(), pre() and start() as calls | ||
| 6062 | but as unique ids. i.e. x is different from der(x) and given der(x) x will not | ||
| 6063 | be extreacted as a unique id. Instead you get $DER.x. Same goes for pre and start. | ||
| 6064 | If `expand` is true crefs will be expanded." | ||
| 6065 | input DAE.Exp inExp; | ||
| 6066 | input Boolean expand = true; | ||
| 6067 | output list<DAE.ComponentRef> ocrefs; | ||
| 6068 | algorithm | ||
| 6069 | 275737 | (_,ocrefs) := traverseExpTopDown(inExp, traversingComponentRefFinderDerPreStart, {}); | |
| 6070 |
2/2✓ Branch 0 taken 2983 times.
✓ Branch 1 taken 272754 times.
|
275737 | if expand then |
| 6071 | 272754 | ocrefs := List.flatten(List.map1(ocrefs, ComponentReference.expandCref, true)); | |
| 6072 | end if; | ||
| 6073 | end extractCrefsFromExpDerPreStart; | ||
| 6074 | |||
| 6075 | public function traversingComponentRefFinderDerPreStart " | ||
| 6076 | " | ||
| 6077 | input DAE.Exp inExp; | ||
| 6078 | input list<DAE.ComponentRef> inCrefs; | ||
| 6079 | output DAE.Exp e; | ||
| 6080 | output Boolean cont; | ||
| 6081 | output list<DAE.ComponentRef> crefs; | ||
| 6082 | algorithm | ||
| 6083 | (e,cont,crefs) := match (inExp,inCrefs) | ||
| 6084 | local | ||
| 6085 | ComponentRef cr; | ||
| 6086 | case (DAE.CREF(componentRef=cr), crefs) | ||
| 6087 | algorithm | ||
| 6088 | 522290 | crefs := List.unionEltOnTrue(cr,inCrefs,ComponentReferenceBasics.crefEqual); | |
| 6089 | then (inExp, false, crefs); | ||
| 6090 | |||
| 6091 | case (DAE.CALL(path = Absyn.IDENT(name="der"), expLst={DAE.CREF(componentRef=cr)}),_) algorithm | ||
| 6092 | 4782 | cr := ComponentReference.crefPrefixDer(cr); | |
| 6093 | 4782 | crefs := List.unionEltOnTrue(cr,inCrefs,ComponentReferenceBasics.crefEqual); | |
| 6094 | then (inExp, false, crefs); | ||
| 6095 | |||
| 6096 | case (DAE.CALL(path = Absyn.IDENT(name="pre"), expLst={DAE.CREF(componentRef=cr)}),_) algorithm | ||
| 6097 | 1126 | cr := ComponentReference.crefPrefixPre(cr); | |
| 6098 | 1126 | crefs := List.unionEltOnTrue(cr,inCrefs,ComponentReferenceBasics.crefEqual); | |
| 6099 | then (inExp, false, crefs); | ||
| 6100 | |||
| 6101 | case (DAE.CALL(path = Absyn.IDENT(name="previous"), expLst={DAE.CREF(componentRef=cr)}),_) algorithm | ||
| 6102 | 165 | cr := ComponentReference.crefPrefixPrevious(cr); | |
| 6103 | 165 | crefs := List.unionEltOnTrue(cr,inCrefs,ComponentReferenceBasics.crefEqual); | |
| 6104 | then (inExp, false, crefs); | ||
| 6105 | |||
| 6106 | case (DAE.CALL(path = Absyn.IDENT(name="start"), expLst={DAE.CREF(componentRef=cr)}),_) algorithm | ||
| 6107 | ✗ | Error.addInternalError(getInstanceName() + " - Found a start call expression " + ExpressionBasics.printExpStr(inExp), sourceInfo()); | |
| 6108 | ✗ | cr := ComponentReference.crefPrefixStart(cr); | |
| 6109 | ✗ | crefs := List.unionEltOnTrue(cr,inCrefs,ComponentReferenceBasics.crefEqual); | |
| 6110 | then (inExp, false, crefs); | ||
| 6111 | |||
| 6112 | else (inExp,true,inCrefs); | ||
| 6113 | end match; | ||
| 6114 | end traversingComponentRefFinderDerPreStart; | ||
| 6115 | |||
| 6116 | public function extractUniqueCrefsFromStatmentS | ||
| 6117 | "authot mahge: Extracts all unique ComponentRef from Statments." | ||
| 6118 | input list<DAE.Statement> inStmts; | ||
| 6119 | output list<DAE.ComponentRef> olhscrefs; | ||
| 6120 | output list<DAE.ComponentRef> orhscrefs; | ||
| 6121 | protected | ||
| 6122 | list<list<DAE.ComponentRef>> lhscreflstlst; | ||
| 6123 | list<list<DAE.ComponentRef>> rhscreflstlst; | ||
| 6124 | algorithm | ||
| 6125 | 7 | (lhscreflstlst,rhscreflstlst) := List.map_2(inStmts,extractCrefsStatment); | |
| 6126 | 7 | orhscrefs := ComponentReference.uniqueList(List.flatten(rhscreflstlst)); | |
| 6127 | 7 | olhscrefs := ComponentReference.uniqueList(List.flatten(lhscreflstlst)); | |
| 6128 | end extractUniqueCrefsFromStatmentS; | ||
| 6129 | |||
| 6130 | |||
| 6131 | public function extractCrefsStatment | ||
| 6132 | "Extracts all ComponentRef from a Statment." | ||
| 6133 | input DAE.Statement inStmt; | ||
| 6134 | output list<DAE.ComponentRef> olcrefs; | ||
| 6135 | output list<DAE.ComponentRef> orcrefs; | ||
| 6136 | algorithm | ||
| 6137 | (olcrefs,orcrefs) := match inStmt | ||
| 6138 | local | ||
| 6139 | Exp exp1,exp2; | ||
| 6140 | list<DAE.Exp> expLst; | ||
| 6141 | list<DAE.Statement> stmtLst; | ||
| 6142 | |||
| 6143 | case DAE.STMT_ASSIGN(exp1 = exp1, exp = exp2) | ||
| 6144 | algorithm | ||
| 6145 | 14 | olcrefs := extractCrefsFromExpDerPreStart(exp1, false); | |
| 6146 | 14 | orcrefs := extractCrefsFromExpDerPreStart(exp2, false); | |
| 6147 | 14 | then | |
| 6148 | (olcrefs,orcrefs); | ||
| 6149 | |||
| 6150 | case DAE.STMT_TUPLE_ASSIGN(expExpLst = expLst, exp = exp2) | ||
| 6151 | algorithm | ||
| 6152 | 5 | olcrefs := List.flatten(List.map1(expLst, extractCrefsFromExpDerPreStart, false)); | |
| 6153 | 5 | orcrefs := extractCrefsFromExpDerPreStart(exp2, false); | |
| 6154 | 5 | then | |
| 6155 | (olcrefs,orcrefs); | ||
| 6156 | |||
| 6157 | case DAE.STMT_ASSIGN_ARR(lhs = exp1, exp = exp2) | ||
| 6158 | algorithm | ||
| 6159 | ✗ | olcrefs := extractCrefsFromExpDerPreStart(exp1, false); | |
| 6160 | ✗ | orcrefs := extractCrefsFromExpDerPreStart(exp2, false); | |
| 6161 | ✗ | then | |
| 6162 | (olcrefs,orcrefs); | ||
| 6163 | |||
| 6164 | case DAE.STMT_IF(statementLst = stmtLst) | ||
| 6165 | algorithm | ||
| 6166 | ✗ | (olcrefs,orcrefs) := extractUniqueCrefsFromStatmentS(stmtLst); | |
| 6167 | then | ||
| 6168 | (olcrefs,orcrefs); | ||
| 6169 | |||
| 6170 | case DAE.STMT_FOR(statementLst = stmtLst) | ||
| 6171 | algorithm | ||
| 6172 | 1 | (olcrefs,orcrefs) := extractUniqueCrefsFromStatmentS(stmtLst); | |
| 6173 | then | ||
| 6174 | (olcrefs,orcrefs); | ||
| 6175 | |||
| 6176 | case DAE.STMT_WHILE(statementLst = stmtLst) | ||
| 6177 | algorithm | ||
| 6178 | ✗ | (olcrefs,orcrefs) := extractUniqueCrefsFromStatmentS(stmtLst); | |
| 6179 | then | ||
| 6180 | (olcrefs,orcrefs); | ||
| 6181 | |||
| 6182 | case DAE.STMT_WHEN(statementLst = stmtLst) | ||
| 6183 | algorithm | ||
| 6184 | 6 | (olcrefs,orcrefs) := extractUniqueCrefsFromStatmentS(stmtLst); | |
| 6185 | then | ||
| 6186 | (olcrefs,orcrefs); | ||
| 6187 | |||
| 6188 | case DAE.STMT_ASSERT(cond = exp1) | ||
| 6189 | algorithm | ||
| 6190 | 5 | orcrefs := extractCrefsFromExpDerPreStart(exp1, false); | |
| 6191 | 5 | then | |
| 6192 | ({},orcrefs); | ||
| 6193 | |||
| 6194 | ✗ | else ({},{}); | |
| 6195 | |||
| 6196 | end match; | ||
| 6197 | end extractCrefsStatment; | ||
| 6198 | |||
| 6199 | public function getLhsCrefsFromStatements "Extracts all lhs crefs from Statements. | ||
| 6200 | author: ptaeuber" | ||
| 6201 | input list<DAE.Statement> inStmts; | ||
| 6202 | output list<DAE.ComponentRef> lhsCrefs; | ||
| 6203 | protected | ||
| 6204 | list<list<DAE.ComponentRef>> lhsCrefsLst; | ||
| 6205 | algorithm | ||
| 6206 | 9072 | lhsCrefsLst := List.map(inStmts,getLhsCrefsFromStatement); | |
| 6207 | 9072 | lhsCrefs := List.flatten(lhsCrefsLst); | |
| 6208 | end getLhsCrefsFromStatements; | ||
| 6209 | |||
| 6210 | protected function getLhsCrefsFromStatement "Extracts all lhs crefs from a statement. | ||
| 6211 | author: ptaeuber" | ||
| 6212 | input DAE.Statement inStmt; | ||
| 6213 | output list<DAE.ComponentRef> lhsCrefs; | ||
| 6214 | algorithm | ||
| 6215 | lhsCrefs := match inStmt | ||
| 6216 | local | ||
| 6217 | Exp exp1; | ||
| 6218 | list<DAE.Exp> expLst; | ||
| 6219 | list<DAE.Statement> stmtLst; | ||
| 6220 | |||
| 6221 | case DAE.STMT_ASSIGN(exp1 = exp1) | ||
| 6222 | algorithm | ||
| 6223 | 2550 | lhsCrefs := extractCrefsFromExpDerPreStart(exp1, false); | |
| 6224 | then lhsCrefs; | ||
| 6225 | |||
| 6226 | case DAE.STMT_TUPLE_ASSIGN(expExpLst = expLst) | ||
| 6227 | algorithm | ||
| 6228 | 53 | lhsCrefs := List.flatten(List.map1(expLst, extractCrefsFromExpDerPreStart, false)); | |
| 6229 | then lhsCrefs; | ||
| 6230 | |||
| 6231 | case DAE.STMT_ASSIGN_ARR(lhs = exp1) | ||
| 6232 | algorithm | ||
| 6233 | 177 | lhsCrefs := extractCrefsFromExpDerPreStart(exp1, false); | |
| 6234 | then lhsCrefs; | ||
| 6235 | |||
| 6236 | case DAE.STMT_IF(statementLst = stmtLst) | ||
| 6237 | algorithm | ||
| 6238 | 731 | lhsCrefs := getLhsCrefsFromStatements(stmtLst); | |
| 6239 | then lhsCrefs; | ||
| 6240 | |||
| 6241 | case DAE.STMT_FOR(statementLst = stmtLst) | ||
| 6242 | algorithm | ||
| 6243 | 439 | lhsCrefs := getLhsCrefsFromStatements(stmtLst); | |
| 6244 | then lhsCrefs; | ||
| 6245 | |||
| 6246 | case DAE.STMT_WHILE(statementLst = stmtLst) | ||
| 6247 | algorithm | ||
| 6248 | ✗ | lhsCrefs := getLhsCrefsFromStatements(stmtLst); | |
| 6249 | then lhsCrefs; | ||
| 6250 | |||
| 6251 | case DAE.STMT_WHEN(statementLst = stmtLst) | ||
| 6252 | algorithm | ||
| 6253 | 370 | lhsCrefs := getLhsCrefsFromStatements(stmtLst); | |
| 6254 | then lhsCrefs; | ||
| 6255 | |||
| 6256 | else {}; | ||
| 6257 | |||
| 6258 | end match; | ||
| 6259 | end getLhsCrefsFromStatement; | ||
| 6260 | |||
| 6261 | public function expHasInitial " | ||
| 6262 | returns true if the expression contains any initial() call" | ||
| 6263 | input DAE.Exp exp; | ||
| 6264 | output Boolean found; | ||
| 6265 | algorithm | ||
| 6266 | 126 | (_,found) := traverseExpTopDown(exp, traversingexpHasInitial, false); | |
| 6267 | end expHasInitial; | ||
| 6268 | |||
| 6269 | public function traversingexpHasInitial | ||
| 6270 | input output DAE.Exp exp; | ||
| 6271 | output Boolean cont; | ||
| 6272 | input output Boolean found; | ||
| 6273 | algorithm | ||
| 6274 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 413 times.
|
413 | if found then |
| 6275 | cont := false; | ||
| 6276 | ✗ | return; | |
| 6277 | end if; | ||
| 6278 | (cont,found) := match exp | ||
| 6279 | case DAE.CALL(path= Absyn.IDENT("initial")) | ||
| 6280 | then (false,true); | ||
| 6281 | else (true,found); | ||
| 6282 | end match; | ||
| 6283 | end traversingexpHasInitial; | ||
| 6284 | |||
| 6285 | public function expHasCrefs " | ||
| 6286 | @author: adrpo 2011-04-29 | ||
| 6287 | returns true if the expression contains crefs" | ||
| 6288 | input DAE.Exp inExp; | ||
| 6289 | output Boolean hasCrefs; | ||
| 6290 | algorithm | ||
| 6291 | hasCrefs := match inExp | ||
| 6292 | local | ||
| 6293 | Boolean b; | ||
| 6294 | |||
| 6295 | case _ | ||
| 6296 | algorithm | ||
| 6297 | 20719 | (_,b) := traverseExpTopDown(inExp, traversingComponentRefPresent, false); | |
| 6298 | then | ||
| 6299 | b; | ||
| 6300 | end match; | ||
| 6301 | end expHasCrefs; | ||
| 6302 | |||
| 6303 | public function traversingComponentRefPresent "Returns a true if the exp is a componentRef" | ||
| 6304 | input DAE.Exp inExp; | ||
| 6305 | input Boolean found; | ||
| 6306 | output DAE.Exp outExp; | ||
| 6307 | output Boolean cont; | ||
| 6308 | output Boolean outFound; | ||
| 6309 | algorithm | ||
| 6310 | (outExp,cont,outFound) := match (inExp,found) | ||
| 6311 | case (_,true) then (inExp,false,true); | ||
| 6312 | case (DAE.CREF(), _) then (inExp, false, true); | ||
| 6313 | else (inExp,true,false); | ||
| 6314 | end match; | ||
| 6315 | end traversingComponentRefPresent; | ||
| 6316 | |||
| 6317 | public function traversingComponentRefFinderNoPreDer " | ||
| 6318 | Author: BZ 2008-06 | ||
| 6319 | Exp traverser that Union the current ComponentRef with list if it is already there. | ||
| 6320 | Returns a list containing, unique, all componentRef in an Expression." | ||
| 6321 | input DAE.Exp inExp; | ||
| 6322 | input list<DAE.ComponentRef> inCrefs; | ||
| 6323 | output DAE.Exp e; | ||
| 6324 | output Boolean cont; | ||
| 6325 | output list<DAE.ComponentRef> crefs; | ||
| 6326 | algorithm | ||
| 6327 | (e,cont,crefs) := match (inExp,inCrefs) | ||
| 6328 | local | ||
| 6329 | ComponentRef cr; | ||
| 6330 | case (DAE.CREF(componentRef=cr), crefs) | ||
| 6331 | algorithm | ||
| 6332 | 163613 | crefs := List.unionEltOnTrue(cr,crefs,ComponentReferenceBasics.crefEqual); | |
| 6333 | then (inExp, false, crefs); | ||
| 6334 | case (DAE.CALL(path = Absyn.IDENT(name = "der")), _) then (inExp, false, inCrefs); | ||
| 6335 | case (DAE.CALL(path = Absyn.IDENT(name = "pre")), _) then (inExp, false, inCrefs); | ||
| 6336 | case (DAE.CALL(path = Absyn.IDENT(name = "previous")), _) then (inExp, false, inCrefs); | ||
| 6337 | else (inExp,true,inCrefs); | ||
| 6338 | end match; | ||
| 6339 | end traversingComponentRefFinderNoPreDer; | ||
| 6340 | |||
| 6341 | public function expHasCref "author: Frenkel TUD 2011-04 | ||
| 6342 | returns true if the expression contains the cref" | ||
| 6343 | input DAE.Exp inExp; | ||
| 6344 | input DAE.ComponentRef inCr; | ||
| 6345 | output Boolean hasCref; | ||
| 6346 | algorithm | ||
| 6347 | 18137 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasCref, (inCr,false)); | |
| 6348 | end expHasCref; | ||
| 6349 | |||
| 6350 | public function traversingexpHasCref " | ||
| 6351 | @author: Frenkel TUD 2011-04 | ||
| 6352 | Returns a true if the exp the componentRef" | ||
| 6353 | input DAE.Exp inExp; | ||
| 6354 | input tuple<DAE.ComponentRef,Boolean> inTpl; | ||
| 6355 | output DAE.Exp outExp; | ||
| 6356 | output Boolean cont; | ||
| 6357 | output tuple<DAE.ComponentRef,Boolean> outTpl; | ||
| 6358 | algorithm | ||
| 6359 | (outExp,cont,outTpl) := matchcontinue(inExp,inTpl) | ||
| 6360 | local | ||
| 6361 | Boolean b; | ||
| 6362 | ComponentRef cr,cr1; | ||
| 6363 | |||
| 6364 | // pre(cr) does not count because it should be its own variable instead! | ||
| 6365 | case (DAE.CALL(path = Absyn.IDENT("pre")), _) | ||
| 6366 | then (inExp, false, inTpl); | ||
| 6367 | |||
| 6368 | case (DAE.CREF(componentRef = cr1), (cr,false)) | ||
| 6369 | algorithm | ||
| 6370 | 42346 | b := ComponentReferenceBasics.crefEqualNoStringCompare(cr,cr1); | |
| 6371 |
2/2✓ Branch 0 taken 4908 times.
✓ Branch 1 taken 37438 times.
|
42346 | then |
| 6372 | (inExp,not b,if b then (cr,b) else inTpl); | ||
| 6373 | |||
| 6374 | 96087 | case (_,(_,b)) then (inExp,not b,inTpl); | |
| 6375 | |||
| 6376 | end matchcontinue; | ||
| 6377 | end traversingexpHasCref; | ||
| 6378 | |||
| 6379 | public function expHasCrefName "Returns a true if the exp contains a cref that starts with the given name" | ||
| 6380 | input DAE.Exp inExp; | ||
| 6381 | input String name; | ||
| 6382 | output Boolean hasCref; | ||
| 6383 | algorithm | ||
| 6384 | 636 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasName, (name,false)); | |
| 6385 | end expHasCrefName; | ||
| 6386 | |||
| 6387 | public function anyExpHasCrefName "Returns a true if any exp contains a cref that starts with the given name" | ||
| 6388 | input list<DAE.Exp> inExps; | ||
| 6389 | input String name; | ||
| 6390 | output Boolean hasCref; | ||
| 6391 | algorithm | ||
| 6392 | 498 | hasCref := List.applyAndFold1(inExps, boolOr, expHasCrefName, name, false); | |
| 6393 | end anyExpHasCrefName; | ||
| 6394 | |||
| 6395 | public function traversingexpHasName "Returns a true if the exp contains a cref that starts with the given name" | ||
| 6396 | input DAE.Exp inExp; | ||
| 6397 | input tuple<String,Boolean> inTpl; | ||
| 6398 | output DAE.Exp outExp; | ||
| 6399 | output Boolean cont; | ||
| 6400 | output tuple<String,Boolean> outTpl; | ||
| 6401 | algorithm | ||
| 6402 | (outExp,cont,outTpl) := match (inExp,inTpl) | ||
| 6403 | local | ||
| 6404 | Boolean b; | ||
| 6405 | String name; | ||
| 6406 | DAE.ComponentRef cr; | ||
| 6407 | case (DAE.CREF(componentRef = cr), (name,false)) | ||
| 6408 | algorithm | ||
| 6409 |
4/4✓ Branch 1 taken 76 times.
✓ Branch 2 taken 613 times.
✓ Branch 5 taken 3 times.
✓ Branch 6 taken 73 times.
|
689 | b := name == ComponentReferenceBasics.crefFirstIdent(cr); |
| 6410 | 689 | then (inExp,not b,if b then (name,b) else inTpl); | |
| 6411 | 136 | case (_,(_,b)) then (inExp,not b,inTpl); | |
| 6412 | end match; | ||
| 6413 | end traversingexpHasName; | ||
| 6414 | |||
| 6415 | public function expHasDerCref " | ||
| 6416 | @author: Frenkel TUD 2012-06 | ||
| 6417 | returns true if the expression contains the cref in function der" | ||
| 6418 | input DAE.Exp inExp; | ||
| 6419 | input DAE.ComponentRef inCr; | ||
| 6420 | output Boolean hasCref; | ||
| 6421 | algorithm | ||
| 6422 | 56602 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasDerCref, (inCr,false)); | |
| 6423 | end expHasDerCref; | ||
| 6424 | |||
| 6425 | public function traversingexpHasDerCref " | ||
| 6426 | @author: Frenkel TUD 2012-06 | ||
| 6427 | Returns a true if the exp contains the componentRef in der" | ||
| 6428 | input DAE.Exp inExp; | ||
| 6429 | input tuple<DAE.ComponentRef,Boolean> inTpl; | ||
| 6430 | output DAE.Exp outExp; | ||
| 6431 | output Boolean cont; | ||
| 6432 | output tuple<DAE.ComponentRef,Boolean> outTpl; | ||
| 6433 | algorithm | ||
| 6434 | (outExp,cont,outTpl) := matchcontinue(inExp,inTpl) | ||
| 6435 | local | ||
| 6436 | Boolean b; | ||
| 6437 | ComponentRef cr,cr1; | ||
| 6438 | |||
| 6439 | case (DAE.CALL(path= Absyn.IDENT("der"),expLst={DAE.CREF(componentRef = cr1)}), (cr,false)) | ||
| 6440 | algorithm | ||
| 6441 | 25036 | b := ComponentReferenceBasics.crefEqualNoStringCompare(cr,cr1); | |
| 6442 |
2/2✓ Branch 0 taken 24539 times.
✓ Branch 1 taken 497 times.
|
25036 | then (inExp,not b,if b then (cr,b) else inTpl); |
| 6443 | |||
| 6444 | case (DAE.CALL(path= Absyn.IDENT("der"),expLst={DAE.CREF(componentRef = cr1)}), (cr,false)) | ||
| 6445 | algorithm | ||
| 6446 | ✗ | b := ComponentReferenceBasics.crefPrefixOf(cr,cr1); | |
| 6447 | ✗ | then (inExp,not b,if b then (cr,b) else inTpl); | |
| 6448 | |||
| 6449 | 231670 | case (_,(_,b)) then (inExp,not b,inTpl); | |
| 6450 | |||
| 6451 | end matchcontinue; | ||
| 6452 | end traversingexpHasDerCref; | ||
| 6453 | |||
| 6454 | public function expHasDer " | ||
| 6455 | returns true if the expression contains the function der" | ||
| 6456 | input DAE.Exp inExp; | ||
| 6457 | output Boolean hasCref; | ||
| 6458 | algorithm | ||
| 6459 | 6420 | (_, hasCref) := traverseExpTopDown(inExp, traversingexpHasDer, false); | |
| 6460 | end expHasDer; | ||
| 6461 | |||
| 6462 | public function traversingexpHasDer " | ||
| 6463 | Returns a true if the exp contains in der" | ||
| 6464 | input DAE.Exp inExp; | ||
| 6465 | input Boolean inTpl; | ||
| 6466 | output DAE.Exp outExp; | ||
| 6467 | output Boolean cont; | ||
| 6468 | output Boolean outTpl; | ||
| 6469 | algorithm | ||
| 6470 | (outExp,cont,outTpl) := match(inExp,inTpl) | ||
| 6471 | local | ||
| 6472 | Boolean b; | ||
| 6473 | ComponentRef cr; | ||
| 6474 | |||
| 6475 | case (DAE.CALL(path= Absyn.IDENT("der")), false) | ||
| 6476 | then (inExp,false,true); | ||
| 6477 | |||
| 6478 | //isAlias | ||
| 6479 | case(DAE.CREF(componentRef = cr), false) | ||
| 6480 | guard intEq(System.strncmp(ComponentReferenceBasics.crefFirstIdent(cr),"$DERAlias",9),0) //BackendDAE.derivativeNamePrefix | ||
| 6481 | algorithm | ||
| 6482 | then (inExp,false,true); | ||
| 6483 | |||
| 6484 | 93915 | case (_,b) then (inExp, not b, inTpl); | |
| 6485 | |||
| 6486 | end match; | ||
| 6487 | end traversingexpHasDer; | ||
| 6488 | |||
| 6489 | public function expHasPre " | ||
| 6490 | Returns true if the expression contains the operator pre" | ||
| 6491 | input DAE.Exp inExp; | ||
| 6492 | output Boolean hasPre; | ||
| 6493 | algorithm | ||
| 6494 | ✗ | (_, hasPre) := traverseExpTopDown(inExp, traversingexpHasPre, false); | |
| 6495 | end expHasPre; | ||
| 6496 | |||
| 6497 | protected function traversingexpHasPre " | ||
| 6498 | Returns true if the exp is pre(..)" | ||
| 6499 | input DAE.Exp inExp; | ||
| 6500 | input Boolean inHasIt; | ||
| 6501 | output DAE.Exp outExp; | ||
| 6502 | output Boolean cont; | ||
| 6503 | output Boolean outHasIt; | ||
| 6504 | algorithm | ||
| 6505 | (outExp,cont,outHasIt) := match(inExp,inHasIt) | ||
| 6506 | local | ||
| 6507 | Boolean b; | ||
| 6508 | case (DAE.CALL(path= Absyn.IDENT("pre")), false) | ||
| 6509 | then (inExp,false,true); | ||
| 6510 | ✗ | case (_,b) then (inExp, not b, inHasIt); | |
| 6511 | end match; | ||
| 6512 | end traversingexpHasPre; | ||
| 6513 | |||
| 6514 | public function expHasPrevious " | ||
| 6515 | Returns true if the expression contains the operator previous" | ||
| 6516 | input DAE.Exp inExp; | ||
| 6517 | output Boolean hasPre; | ||
| 6518 | algorithm | ||
| 6519 | ✗ | (_, hasPre) := traverseExpTopDown(inExp, traversingexpHasPrevious, false); | |
| 6520 | end expHasPrevious; | ||
| 6521 | |||
| 6522 | protected function traversingexpHasPrevious " | ||
| 6523 | Returns true if the exp is pre(..)" | ||
| 6524 | input DAE.Exp inExp; | ||
| 6525 | input Boolean inHasIt; | ||
| 6526 | output DAE.Exp outExp; | ||
| 6527 | output Boolean cont; | ||
| 6528 | output Boolean outHasIt; | ||
| 6529 | algorithm | ||
| 6530 | (outExp,cont,outHasIt) := match(inExp,inHasIt) | ||
| 6531 | local | ||
| 6532 | Boolean b; | ||
| 6533 | case (DAE.CALL(path= Absyn.IDENT("previous")), false) | ||
| 6534 | then (inExp,false,true); | ||
| 6535 | ✗ | case (_,b) then (inExp, not b, inHasIt); | |
| 6536 | end match; | ||
| 6537 | end traversingexpHasPrevious; | ||
| 6538 | |||
| 6539 | |||
| 6540 | public function expHasCrefNoPreorDer " | ||
| 6541 | @author: Frenkel TUD 2011-04 | ||
| 6542 | returns true if the expression contains the cref, but not in pre,change,edge" | ||
| 6543 | input DAE.Exp inExp; | ||
| 6544 | input DAE.ComponentRef inCr; | ||
| 6545 | output Boolean hasCref; | ||
| 6546 | algorithm | ||
| 6547 | 43675 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasCrefNoPreorDer, (inCr,false)); | |
| 6548 | end expHasCrefNoPreorDer; | ||
| 6549 | |||
| 6550 | public function traversingexpHasCrefNoPreorDer " | ||
| 6551 | @author: Frenkel TUD 2011-04 | ||
| 6552 | Returns a true if the exp the componentRef" | ||
| 6553 | input DAE.Exp inExp; | ||
| 6554 | input tuple<DAE.ComponentRef,Boolean> inTpl; | ||
| 6555 | output DAE.Exp outExp; | ||
| 6556 | output Boolean cont; | ||
| 6557 | output tuple<DAE.ComponentRef,Boolean> outTpl; | ||
| 6558 | algorithm | ||
| 6559 | (outExp,cont,outTpl) := match (inExp,inTpl) | ||
| 6560 | local | ||
| 6561 | Boolean b; | ||
| 6562 | DAE.ComponentRef cr,cr1; | ||
| 6563 | |||
| 6564 | case (DAE.CALL(path = Absyn.IDENT(name = "pre")), _) | ||
| 6565 | then (inExp,false,inTpl); | ||
| 6566 | |||
| 6567 | case (DAE.CALL(path = Absyn.IDENT(name = "previous")), _) | ||
| 6568 | then (inExp,false,inTpl); | ||
| 6569 | |||
| 6570 | case (DAE.CREF(componentRef = cr1), (cr,false)) | ||
| 6571 | algorithm | ||
| 6572 | 215393 | b := ComponentReferenceBasics.crefEqualNoStringCompare(cr,cr1); | |
| 6573 |
2/2✓ Branch 0 taken 62 times.
✓ Branch 1 taken 215331 times.
|
215393 | then (inExp,not b,if b then (cr,b) else inTpl); |
| 6574 | |||
| 6575 | /* Not reachable... | ||
| 6576 | case (DAE.CREF(componentRef = cr1), (cr,false)) | ||
| 6577 | algorithm | ||
| 6578 | b = ComponentReferenceBasics.crefPrefixOf(cr1,cr); | ||
| 6579 | then (inExp,not b,(cr,b)); | ||
| 6580 | */ | ||
| 6581 | 573899 | case (_,(_,b)) then (inExp,not b,inTpl); | |
| 6582 | |||
| 6583 | end match; | ||
| 6584 | end traversingexpHasCrefNoPreorDer; | ||
| 6585 | |||
| 6586 | public function expHasCrefsNoPreOrStart " | ||
| 6587 | returns true if the expression contains one cref from the list, but not in pre(),change(),edge(),start(), delay()" | ||
| 6588 | input DAE.Exp inExp; | ||
| 6589 | input list<DAE.ComponentRef> inCr; | ||
| 6590 | output Boolean hasCref = false; | ||
| 6591 | algorithm | ||
| 6592 |
2/2✓ Branch 0 taken 3174 times.
✓ Branch 1 taken 486 times.
|
3660 | for cr in inCr loop |
| 6593 | 3174 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasCrefNoPreOrStart, (cr,false)); | |
| 6594 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 3172 times.
|
3174 | if hasCref then |
| 6595 | break; | ||
| 6596 | end if; | ||
| 6597 | end for; | ||
| 6598 | end expHasCrefsNoPreOrStart; | ||
| 6599 | |||
| 6600 | |||
| 6601 | public function expHasCrefNoPreOrStart " | ||
| 6602 | returns true if the expression contains the cref, but not in pre(),change(),edge(),start(), delay()" | ||
| 6603 | input DAE.Exp inExp; | ||
| 6604 | input DAE.ComponentRef inCr; | ||
| 6605 | output Boolean hasCref; | ||
| 6606 | algorithm | ||
| 6607 | 2120613 | (_,(_,hasCref)) := traverseExpTopDown(inExp, traversingexpHasCrefNoPreOrStart, (inCr,false)); | |
| 6608 | end expHasCrefNoPreOrStart; | ||
| 6609 | |||
| 6610 | protected function traversingexpHasCrefNoPreOrStart " | ||
| 6611 | return true if the exp the componentRef" | ||
| 6612 | input DAE.Exp inExp; | ||
| 6613 | input tuple<DAE.ComponentRef,Boolean> inTpl; | ||
| 6614 | output DAE.Exp outExp; | ||
| 6615 | output Boolean cont; | ||
| 6616 | output tuple<DAE.ComponentRef,Boolean> outTpl; | ||
| 6617 | |||
| 6618 | algorithm | ||
| 6619 | (outExp,cont,outTpl) := match (inExp,inTpl) | ||
| 6620 | local | ||
| 6621 | Boolean b; | ||
| 6622 | DAE.ComponentRef cr,cr1; | ||
| 6623 | |||
| 6624 | case (DAE.CALL(path = Absyn.IDENT(name = "pre")), _) | ||
| 6625 | then (inExp,false,inTpl); | ||
| 6626 | case (DAE.CALL(path = Absyn.IDENT(name = "previous")), _) | ||
| 6627 | then (inExp,false,inTpl); | ||
| 6628 | case (DAE.CALL(path = Absyn.IDENT(name = "change")), _) | ||
| 6629 | then (inExp,false,inTpl); | ||
| 6630 | case (DAE.CALL(path = Absyn.IDENT(name = "delay")), _) | ||
| 6631 | then (inExp,false,inTpl); | ||
| 6632 | case (DAE.CALL(path = Absyn.IDENT(name = "edge")), _) | ||
| 6633 | then (inExp,false,inTpl); | ||
| 6634 | case (DAE.CALL(path = Absyn.IDENT(name = "$_round")), _) | ||
| 6635 | then (inExp,false,inTpl); | ||
| 6636 | |||
| 6637 | case (DAE.CREF(componentRef = cr1), (cr,false)) | ||
| 6638 | algorithm | ||
| 6639 | 2728031 | b := ComponentReferenceBasics.crefEqualNoStringCompare(cr,cr1); | |
| 6640 |
2/2✓ Branch 0 taken 792849 times.
✓ Branch 1 taken 1935182 times.
|
2728031 | then (inExp,not b,if b then (cr,b) else inTpl); |
| 6641 | |||
| 6642 | 5901317 | case (_,(_,b)) then (inExp,not b,inTpl); | |
| 6643 | |||
| 6644 | end match; | ||
| 6645 | end traversingexpHasCrefNoPreOrStart; | ||
| 6646 | |||
| 6647 | public function expHasCrefInIf " | ||
| 6648 | Returns a true if the exp contains the componentRef in if,sign,semiLinear" | ||
| 6649 | |||
| 6650 | input DAE.Exp inExp; | ||
| 6651 | input DAE.ComponentRef inCr; | ||
| 6652 | output Boolean hasCref; | ||
| 6653 | algorithm | ||
| 6654 | 274805 | (_,(_,hasCref)) := traverseExpTopDown(inExp,expHasCrefInIfWork, (inCr,false)); | |
| 6655 | end expHasCrefInIf; | ||
| 6656 | |||
| 6657 | public function expHasCrefInIfWork " | ||
| 6658 | Returns a true if the exp contains the componentRef in if,sign,semiLinear" | ||
| 6659 | input DAE.Exp inExp; | ||
| 6660 | input tuple<DAE.ComponentRef,Boolean> inTpl; | ||
| 6661 | output DAE.Exp outExp; | ||
| 6662 | output Boolean cont; | ||
| 6663 | output tuple<DAE.ComponentRef,Boolean> outTpl; | ||
| 6664 | algorithm | ||
| 6665 | (outExp,cont,outTpl) := match(inExp,inTpl) | ||
| 6666 | local | ||
| 6667 | Boolean b; | ||
| 6668 | Integer i; | ||
| 6669 | ComponentRef cr; | ||
| 6670 | DAE.Exp e1; | ||
| 6671 | |||
| 6672 | case(DAE.IFEXP(e1,_,_),(cr,false)) | ||
| 6673 | guard(not isFunCall(e1,"noEvent")) | ||
| 6674 | algorithm | ||
| 6675 | 7843 | b := expHasCref(e1,cr); | |
| 6676 |
2/2✓ Branch 0 taken 212 times.
✓ Branch 1 taken 7631 times.
|
7843 | then (e1, true,if b then (cr,b) else inTpl); |
| 6677 | |||
| 6678 | case(DAE.CALL(path = Absyn.IDENT(name = "smooth"),expLst = {DAE.ICONST(i),e1}),(cr,false)) | ||
| 6679 | guard(i>1) | ||
| 6680 | ✗ | then (e1,true, (cr, expHasCref(e1,cr))); | |
| 6681 | |||
| 6682 | case(DAE.CALL(), (cr,false)) | ||
| 6683 | guard(isEventTriggeringFunctionExp(inExp)) | ||
| 6684 | algorithm | ||
| 6685 | 2 | b := expHasCref(inExp, cr); | |
| 6686 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
2 | then(inExp, true,if b then (cr,b) else inTpl); |
| 6687 | |||
| 6688 | case(DAE.CALL(path = Absyn.IDENT(name = "semiLinear"),expLst = {e1,_,_}),(cr,false)) | ||
| 6689 | algorithm | ||
| 6690 | 1909 | b := expHasCref(e1,cr); | |
| 6691 |
2/2✓ Branch 0 taken 569 times.
✓ Branch 1 taken 1340 times.
|
1909 | then (e1, true,if b then (cr,b) else inTpl); |
| 6692 | |||
| 6693 | case(DAE.CALL(path = Absyn.IDENT(name = "sign"),expLst = {e1}),(cr,false)) | ||
| 6694 | algorithm | ||
| 6695 | 22 | b := expHasCref(e1,cr); | |
| 6696 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 20 times.
|
22 | then (e1, not b,if b then (cr,b) else inTpl); |
| 6697 | |||
| 6698 | case (_, (_,true)) then (inExp,false,inTpl); | ||
| 6699 | else (inExp, true, inTpl); | ||
| 6700 | |||
| 6701 | end match; | ||
| 6702 | end expHasCrefInIfWork; | ||
| 6703 | |||
| 6704 | public function expHasCrefInSmoothZero | ||
| 6705 | "author: kabdelhak FHB 2019-09 | ||
| 6706 | Returns true if the expression contains a function call of the form | ||
| 6707 | smooth(0, cr). Used to determine if an artificial state should | ||
| 6708 | not be differentiated and reverted to be an algebraic variable | ||
| 6709 | instead. " | ||
| 6710 | input DAE.Exp exp; | ||
| 6711 | input DAE.ComponentRef cr; | ||
| 6712 | output Boolean b; | ||
| 6713 | algorithm | ||
| 6714 | 2698 | (_, (_, b)) := traverseExpBottomUp(exp, expHasCrefInSmoothZeroWork, (cr, false)); | |
| 6715 | end expHasCrefInSmoothZero; | ||
| 6716 | |||
| 6717 | protected function expHasCrefInSmoothZeroWork | ||
| 6718 | "author: kabdelhak FHB 2019-09 | ||
| 6719 | Work function to detect smooth(0, cr). | ||
| 6720 | Q: Should it also return true if the smooth call expression | ||
| 6721 | contains the cref in any way not only for direct identity?" | ||
| 6722 | input output DAE.Exp exp; | ||
| 6723 | input output tuple<DAE.ComponentRef, Boolean> tpl; | ||
| 6724 | algorithm | ||
| 6725 | tpl := match (exp, tpl) | ||
| 6726 | local | ||
| 6727 | DAE.ComponentRef cr, sCr; | ||
| 6728 | Boolean b; | ||
| 6729 | case (DAE.CALL(path = Absyn.IDENT(name = "smooth"), expLst = {DAE.ICONST(0), DAE.CREF(componentRef = sCr)}), (cr, false)) | ||
| 6730 | algorithm | ||
| 6731 | ✗ | b := ComponentReferenceBasics.crefEqual(sCr, cr); | |
| 6732 | //expHasCref(e, cr); use this instead for full check? | ||
| 6733 | ✗ | then (cr, b); | |
| 6734 | else tpl; | ||
| 6735 | end match; | ||
| 6736 | end expHasCrefInSmoothZeroWork; | ||
| 6737 | |||
| 6738 | public function traverseCrefsFromExp " | ||
| 6739 | Author: Frenkel TUD 2011-05, traverses all ComponentRef from an Expression." | ||
| 6740 | input DAE.Exp inExp; | ||
| 6741 | input FuncCrefTypeA inFunc; | ||
| 6742 | input Type_a inArg; | ||
| 6743 | output Type_a outArg; | ||
| 6744 | partial function FuncCrefTypeA | ||
| 6745 | input DAE.ComponentRef inCref; | ||
| 6746 | input Type_a inArg; | ||
| 6747 | output Type_a outArg; | ||
| 6748 | end FuncCrefTypeA; | ||
| 6749 | replaceable type Type_a subtypeof Any; | ||
| 6750 | algorithm | ||
| 6751 | outArg := match inArg | ||
| 6752 | local Type_a arg; | ||
| 6753 | case _ | ||
| 6754 | algorithm | ||
| 6755 | ✗ | (_,(_,arg)) := traverseExpBottomUp(inExp, traversingCrefFinder, (inFunc,inArg)); | |
| 6756 | then | ||
| 6757 | arg; | ||
| 6758 | end match; | ||
| 6759 | end traverseCrefsFromExp; | ||
| 6760 | |||
| 6761 | protected function traversingCrefFinder " | ||
| 6762 | Author: Frenkel TUD 2011-05" | ||
| 6763 | input DAE.Exp inExp; | ||
| 6764 | input tuple<FuncCrefTypeA,Type_a> inTpl; | ||
| 6765 | output DAE.Exp outExp; | ||
| 6766 | output tuple<FuncCrefTypeA,Type_a> outTpl; | ||
| 6767 | partial function FuncCrefTypeA | ||
| 6768 | input DAE.ComponentRef inCref; | ||
| 6769 | input Type_a inArg; | ||
| 6770 | output Type_a outArg; | ||
| 6771 | end FuncCrefTypeA; | ||
| 6772 | replaceable type Type_a subtypeof Any; | ||
| 6773 | algorithm | ||
| 6774 | (outExp,outTpl) := match (inExp,inTpl) | ||
| 6775 | local | ||
| 6776 | Type_a arg,arg1; | ||
| 6777 | FuncCrefTypeA func; | ||
| 6778 | ComponentRef cr; | ||
| 6779 | |||
| 6780 | case (DAE.CREF(cr,_),(func,arg)) | ||
| 6781 | algorithm | ||
| 6782 | ✗ | arg1 := func(cr,arg); | |
| 6783 | ✗ | then (inExp, if referenceEq(arg, arg1) then inTpl else (func,arg1)); | |
| 6784 | |||
| 6785 | else (inExp,inTpl); | ||
| 6786 | |||
| 6787 | end match; | ||
| 6788 | end traversingCrefFinder; | ||
| 6789 | |||
| 6790 | public function extractDivExpFromExp " | ||
| 6791 | Author: Frenkel TUD 2010-02, Extracts all Division DAE.Exp from an Expression." | ||
| 6792 | input DAE.Exp inExp; | ||
| 6793 | output list<DAE.Exp> outExps; | ||
| 6794 | algorithm | ||
| 6795 | ✗ | (_,outExps) := traverseExpBottomUp(inExp, traversingDivExpFinder, {}); | |
| 6796 | end extractDivExpFromExp; | ||
| 6797 | |||
| 6798 | protected function traversingDivExpFinder " | ||
| 6799 | Author: Frenkel TUD 2010-02 | ||
| 6800 | Returns a list containing, all division DAE.Exp in an Expression." | ||
| 6801 | input DAE.Exp e; | ||
| 6802 | input list<DAE.Exp> exps; | ||
| 6803 | output DAE.Exp outExp; | ||
| 6804 | output list<DAE.Exp> acc; | ||
| 6805 | algorithm | ||
| 6806 | (outExp,acc) := match e | ||
| 6807 | local | ||
| 6808 | DAE.Exp e2; | ||
| 6809 | case DAE.BINARY(operator = DAE.DIV(_),exp2 = e2) | ||
| 6810 | then (e, e2::exps); | ||
| 6811 | |||
| 6812 | case DAE.BINARY(operator = DAE.DIV_ARR(_),exp2 = e2) | ||
| 6813 | then (e, e2::exps); | ||
| 6814 | |||
| 6815 | case DAE.BINARY(operator = DAE.DIV_ARRAY_SCALAR(_),exp2 = e2) | ||
| 6816 | then (e, e2::exps); | ||
| 6817 | |||
| 6818 | case DAE.BINARY(operator = DAE.DIV_SCALAR_ARRAY(_),exp2 = e2) | ||
| 6819 | then (e, e2::exps); | ||
| 6820 | |||
| 6821 | else (e,exps); | ||
| 6822 | end match; | ||
| 6823 | end traversingDivExpFinder; | ||
| 6824 | |||
| 6825 | public function traverseExpListBidir<ArgT> | ||
| 6826 | "Traverses a list of expressions, calling traverseExpBidir on each | ||
| 6827 | expression." | ||
| 6828 | input list<DAE.Exp> inExpl; | ||
| 6829 | input FuncType inEnterFunc; | ||
| 6830 | input FuncType inExitFunc; | ||
| 6831 | input ArgT inArg; | ||
| 6832 | output list<DAE.Exp> outExpl; | ||
| 6833 | output ArgT outArg = inArg; | ||
| 6834 | |||
| 6835 | partial function FuncType | ||
| 6836 | input DAE.Exp inExp; | ||
| 6837 | input ArgT inArg; | ||
| 6838 | output DAE.Exp outExp; | ||
| 6839 | output ArgT outArg; | ||
| 6840 | end FuncType; | ||
| 6841 | protected | ||
| 6842 | DAE.Exp e1; | ||
| 6843 | DoubleEnded.MutableList<DAE.Exp> delst; | ||
| 6844 | list<DAE.Exp> rest = inExpl; | ||
| 6845 | Integer nEq=0; | ||
| 6846 | algorithm | ||
| 6847 | // Preserve reference equality without any allocation if nothing changed. | ||
| 6848 | outExpl := inExpl; | ||
| 6849 |
2/2✓ Branch 0 taken 449281 times.
✓ Branch 1 taken 78971 times.
|
528252 | while not listEmpty(rest) loop |
| 6850 | 449281 | (e1, outArg) := traverseExpBidir(listHead(rest), inEnterFunc, inExitFunc, outArg); | |
| 6851 |
2/2✓ Branch 1 taken 2270 times.
✓ Branch 2 taken 447011 times.
|
449281 | if not referenceEq(listHead(rest), e1) then |
| 6852 | // First change: switch to building a new list with a DoubleEnded list. | ||
| 6853 | 2270 | delst := DoubleEnded.empty(e1); | |
| 6854 |
1/2✓ Branch 0 taken 2305 times.
✗ Branch 1 not taken.
|
2305 | for elt in inExpl loop |
| 6855 |
2/2✓ Branch 0 taken 35 times.
✓ Branch 1 taken 2270 times.
|
2305 | if nEq < 1 then |
| 6856 | break; | ||
| 6857 | end if; | ||
| 6858 | 35 | DoubleEnded.push_back(delst, elt); | |
| 6859 | 35 | nEq := nEq-1; | |
| 6860 | end for; | ||
| 6861 | 2270 | DoubleEnded.push_back(delst, e1); | |
| 6862 |
2/2✓ Branch 1 taken 2966 times.
✓ Branch 2 taken 2270 times.
|
5236 | for e in listRest(rest) loop |
| 6863 | 2966 | (e1, outArg) := traverseExpBidir(e, inEnterFunc, inExitFunc, outArg); | |
| 6864 | 2966 | DoubleEnded.push_back(delst, e1); | |
| 6865 | end for; | ||
| 6866 | 2270 | outExpl := DoubleEnded.toListAndClear(delst); | |
| 6867 | 2270 | return; | |
| 6868 | end if; | ||
| 6869 | 447011 | nEq := nEq + 1; | |
| 6870 | 447011 | rest := listRest(rest); | |
| 6871 | end while; | ||
| 6872 | end traverseExpListBidir; | ||
| 6873 | |||
| 6874 | public function traverseExpBidir<ArgT> | ||
| 6875 | "This function takes an expression and a tuple with an enter function, an exit | ||
| 6876 | function, and an extra argument. For each expression it encounters it calls | ||
| 6877 | the enter function with the expression and the extra argument. It then | ||
| 6878 | traverses all subexpressions in the expression and calls traverseExpBidir on | ||
| 6879 | them with the updated argument. Finally it calls the exit function, again with | ||
| 6880 | the updated argument. This means that this function is bidirectional, and can | ||
| 6881 | be used to emulate both top-down and bottom-up traversal." | ||
| 6882 | input DAE.Exp inExp; | ||
| 6883 | input FuncType inEnterFunc; | ||
| 6884 | input FuncType inExitFunc; | ||
| 6885 | input ArgT inArg; | ||
| 6886 | output DAE.Exp outExp; | ||
| 6887 | output ArgT outArg; | ||
| 6888 | |||
| 6889 | partial function FuncType | ||
| 6890 | input DAE.Exp inExp; | ||
| 6891 | input ArgT inArg; | ||
| 6892 | output DAE.Exp outExp; | ||
| 6893 | output ArgT outArg; | ||
| 6894 | end FuncType; | ||
| 6895 | algorithm | ||
| 6896 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 500766 times.
|
500766 | (outExp, outArg) := inEnterFunc(inExp, inArg); |
| 6897 | 500766 | (outExp, outArg) := traverseExpBidirSubExps(outExp, inEnterFunc, inExitFunc, outArg); | |
| 6898 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 500766 times.
|
500766 | (outExp, outArg) := inExitFunc(outExp, outArg); |
| 6899 | end traverseExpBidir; | ||
| 6900 | |||
| 6901 | public function traverseExpOptBidir<ArgT> | ||
| 6902 | "Same as traverseExpBidir, but with an optional expression. Calls | ||
| 6903 | traverseExpBidir if the option is SOME(), or just returns the input if it's | ||
| 6904 | NONE()" | ||
| 6905 | input Option<DAE.Exp> inExp; | ||
| 6906 | input FuncType inEnterFunc; | ||
| 6907 | input FuncType inExitFunc; | ||
| 6908 | input ArgT inArg; | ||
| 6909 | output Option<DAE.Exp> outExp; | ||
| 6910 | output ArgT outArg; | ||
| 6911 | |||
| 6912 | partial function FuncType | ||
| 6913 | input Exp inExp; | ||
| 6914 | input ArgT inArg; | ||
| 6915 | output Exp outExp; | ||
| 6916 | output ArgT outArg; | ||
| 6917 | end FuncType; | ||
| 6918 | algorithm | ||
| 6919 | (outExp, outArg) := match inExp | ||
| 6920 | local | ||
| 6921 | DAE.Exp e,e1; | ||
| 6922 | ArgT arg; | ||
| 6923 | |||
| 6924 | case SOME(e) | ||
| 6925 | algorithm | ||
| 6926 | 957 | (e1, arg) := traverseExpBidir(e, inEnterFunc, inExitFunc, inArg); | |
| 6927 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 957 times.
|
957 | then |
| 6928 | (if referenceEq(e,e1) then inExp else SOME(e1), arg); | ||
| 6929 | |||
| 6930 | else (inExp, inArg); | ||
| 6931 | end match; | ||
| 6932 | end traverseExpOptBidir; | ||
| 6933 | |||
| 6934 | protected function traverseExpBidirSubExps<ArgT> | ||
| 6935 | "Helper function to traverseExpBidir. Traverses the subexpressions of an | ||
| 6936 | expression and calls traverseExpBidir on them." | ||
| 6937 | input DAE.Exp inExp; | ||
| 6938 | input FuncType inEnterFunc; | ||
| 6939 | input FuncType inExitFunc; | ||
| 6940 | input ArgT inArg; | ||
| 6941 | output DAE.Exp outExp; | ||
| 6942 | output ArgT outArg; | ||
| 6943 | |||
| 6944 | partial function FuncType | ||
| 6945 | input DAE.Exp inExp; | ||
| 6946 | input ArgT inArg; | ||
| 6947 | output DAE.Exp outExp; | ||
| 6948 | output ArgT outArg; | ||
| 6949 | end FuncType; | ||
| 6950 | algorithm | ||
| 6951 | (outExp, outArg) := match inExp | ||
| 6952 | local | ||
| 6953 | Integer i; | ||
| 6954 | DAE.Exp e1, e2, e3, e1_1, e2_1, e3_1; | ||
| 6955 | Option<DAE.Exp> oe1, oe1_1; | ||
| 6956 | DAE.Operator op; | ||
| 6957 | ComponentRef cref, cref_1; | ||
| 6958 | list<DAE.Exp> expl, expl_1; | ||
| 6959 | list<list<DAE.Exp>> mat_expl; | ||
| 6960 | DAE.MatchType match_ty; | ||
| 6961 | list<DAE.Element> match_decls; | ||
| 6962 | list<DAE.MatchCase> match_cases; | ||
| 6963 | Integer index, dim; | ||
| 6964 | Option<tuple<DAE.Exp, Integer, Integer>> opt_exp_asub; | ||
| 6965 | Absyn.Path path; | ||
| 6966 | Boolean b1; | ||
| 6967 | Type ty,t; | ||
| 6968 | list<String> strl; | ||
| 6969 | DAE.ReductionInfo reductionInfo; | ||
| 6970 | DAE.ReductionIterators riters, riters_1; | ||
| 6971 | DAE.CallAttributes attr; | ||
| 6972 | list<list<String>> aliases; | ||
| 6973 | ArgT arg; | ||
| 6974 | list<DAE.Type> typeVars; | ||
| 6975 | list<DAE.Subscript> subs; | ||
| 6976 | |||
| 6977 | case DAE.ICONST() then (inExp, inArg); | ||
| 6978 | case DAE.RCONST() then (inExp, inArg); | ||
| 6979 | case DAE.SCONST() then (inExp, inArg); | ||
| 6980 | case DAE.BCONST() then (inExp, inArg); | ||
| 6981 | case DAE.ENUM_LITERAL() then (inExp, inArg); | ||
| 6982 | |||
| 6983 | case DAE.CREF(componentRef = cref, ty = ty) | ||
| 6984 | algorithm | ||
| 6985 | 8644 | (cref_1, arg) := traverseExpBidirCref(cref, inEnterFunc, inExitFunc, inArg); | |
| 6986 |
1/2✓ Branch 0 taken 8644 times.
✗ Branch 1 not taken.
|
8644 | then |
| 6987 | (if referenceEq(cref, cref_1) then inExp else DAE.CREF(cref_1, ty), arg); | ||
| 6988 | |||
| 6989 | case DAE.BINARY(exp1 = e1, operator = op, exp2 = e2) | ||
| 6990 | algorithm | ||
| 6991 | 3837 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 6992 | 3837 | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 6993 |
1/2✓ Branch 0 taken 3837 times.
✗ Branch 1 not taken.
|
3837 | then |
| 6994 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.BINARY(e1_1, op, e2_1), arg); | ||
| 6995 | |||
| 6996 | case DAE.UNARY(operator = op, exp = e1) | ||
| 6997 | algorithm | ||
| 6998 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 6999 | ✗ | then | |
| 7000 | (if referenceEq(e1, e1_1) then inExp else DAE.UNARY(op, e1), arg); | ||
| 7001 | |||
| 7002 | case DAE.LBINARY(exp1 = e1, operator = op, exp2 = e2) | ||
| 7003 | algorithm | ||
| 7004 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7005 | ✗ | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 7006 | ✗ | then | |
| 7007 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.LBINARY(e1_1, op, e2_1), arg); | ||
| 7008 | |||
| 7009 | case DAE.LUNARY(operator = op, exp = e1) | ||
| 7010 | algorithm | ||
| 7011 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7012 | ✗ | then | |
| 7013 | (if referenceEq(e1, e1_1) then inExp else DAE.LUNARY(op, e1), arg); | ||
| 7014 | |||
| 7015 | case DAE.RELATION(exp1 = e1, operator = op, exp2 = e2, index = index, | ||
| 7016 | optionExpisASUB = opt_exp_asub) | ||
| 7017 | algorithm | ||
| 7018 | 598 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7019 | 598 | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 7020 |
1/2✓ Branch 0 taken 598 times.
✗ Branch 1 not taken.
|
598 | then |
| 7021 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.RELATION(e1_1, op, e2_1, index, opt_exp_asub), arg); | ||
| 7022 | |||
| 7023 | case DAE.IFEXP(expCond = e1, expThen = e2, expElse = e3) | ||
| 7024 | algorithm | ||
| 7025 | 596 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7026 | 596 | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 7027 | 596 | (e3_1, arg) := traverseExpBidir(e3, inEnterFunc, inExitFunc, arg); | |
| 7028 |
1/4✗ Branch 0 not taken.
✓ Branch 1 taken 596 times.
✗ Branch 2 not taken.
✗ Branch 3 not taken.
|
596 | then |
| 7029 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(e3, e3_1) then inExp else DAE.IFEXP(e1_1, e2_1, e3_1), arg); | ||
| 7030 | |||
| 7031 | case DAE.CALL(path = path, expLst = expl, attr = attr) | ||
| 7032 | algorithm | ||
| 7033 | 1046 | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7034 |
1/2✓ Branch 0 taken 1046 times.
✗ Branch 1 not taken.
|
1046 | then |
| 7035 | (if referenceEq(expl, expl_1) then inExp else DAE.CALL(path, expl_1, attr), arg); | ||
| 7036 | |||
| 7037 | case DAE.RECORD(path = path, exps = expl, comp = strl, ty = ty) | ||
| 7038 | algorithm | ||
| 7039 | ✗ | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7040 | ✗ | then | |
| 7041 | (if referenceEq(expl, expl_1) then inExp else DAE.RECORD(path, expl_1, strl, ty), arg); | ||
| 7042 | |||
| 7043 | case DAE.PARTEVALFUNCTION(path, expl, ty, t) | ||
| 7044 | algorithm | ||
| 7045 | ✗ | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7046 | ✗ | then | |
| 7047 | (if referenceEq(expl, expl_1) then inExp else DAE.PARTEVALFUNCTION(path, expl_1, ty, t), arg); | ||
| 7048 | |||
| 7049 | case DAE.ARRAY(ty = ty, scalar = b1, array = expl) | ||
| 7050 | algorithm | ||
| 7051 | 80169 | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7052 |
4/4✓ Branch 0 taken 1212 times.
✓ Branch 1 taken 78957 times.
✓ Branch 2 taken 1 time.
✓ Branch 3 taken 1211 times.
|
80170 | then |
| 7053 | (if referenceEq(expl, expl_1) then inExp else DAE.ARRAY(ty, b1, expl_1), arg); | ||
| 7054 | |||
| 7055 | case DAE.MATRIX(ty = ty, integer = dim, matrix = mat_expl) | ||
| 7056 | algorithm | ||
| 7057 | 6 | (mat_expl, arg) := List.map2Fold(mat_expl, traverseExpListBidir, | |
| 7058 | inEnterFunc, inExitFunc, inArg); | ||
| 7059 | 6 | then | |
| 7060 | (DAE.MATRIX(ty, dim, mat_expl), arg); | ||
| 7061 | |||
| 7062 | case DAE.RANGE(ty = ty, start = e1, step = oe1, stop = e2) | ||
| 7063 | algorithm | ||
| 7064 | 26 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7065 | 26 | (oe1_1, arg) := traverseExpOptBidir(oe1, inEnterFunc, inExitFunc, arg); | |
| 7066 | 26 | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 7067 |
1/4✗ Branch 0 not taken.
✓ Branch 1 taken 26 times.
✗ Branch 2 not taken.
✗ Branch 3 not taken.
|
26 | then |
| 7068 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) and referenceEq(oe1, oe1_1) then inExp else DAE.RANGE(ty, e1_1, oe1_1, e2_1), arg); | ||
| 7069 | |||
| 7070 | case DAE.TUPLE(PR = expl) | ||
| 7071 | algorithm | ||
| 7072 | ✗ | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7073 | ✗ | then | |
| 7074 | (if referenceEq(expl, expl_1) then inExp else DAE.TUPLE(expl_1), arg); | ||
| 7075 | |||
| 7076 | case DAE.CAST(ty = ty, exp = e1) | ||
| 7077 | algorithm | ||
| 7078 | 26 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7079 |
1/2✓ Branch 0 taken 26 times.
✗ Branch 1 not taken.
|
26 | then |
| 7080 | (if referenceEq(e1, e1_1) then inExp else DAE.CAST(ty, e1), arg); | ||
| 7081 | |||
| 7082 | case DAE.ASUB(exp = e1, sub = subs) | ||
| 7083 | algorithm | ||
| 7084 | ✗ | expl := list(Expression.getSubscriptExp(sub) for sub in subs); | |
| 7085 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7086 | ✗ | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, arg); | |
| 7087 | ✗ | subs := list(Expression.makeIndexSubscript(sub) for sub in expl); | |
| 7088 | ✗ | then | |
| 7089 | (if referenceEq(e1, e1_1) and referenceEq(expl, expl_1) then inExp else DAE.ASUB(e1_1, subs), arg); | ||
| 7090 | |||
| 7091 | case e1 as DAE.RSUB() | ||
| 7092 | algorithm | ||
| 7093 | ✗ | (e2, arg) := traverseExpBidir(e1.exp, inEnterFunc, inExitFunc, inArg); | |
| 7094 | ✗ | if referenceEq(e1.exp, e2) then | |
| 7095 | ✗ | e1.exp := e2; | |
| 7096 | end if; | ||
| 7097 | ✗ | then | |
| 7098 | (e1, arg); | ||
| 7099 | |||
| 7100 | case DAE.TSUB(e1, i, ty) | ||
| 7101 | algorithm | ||
| 7102 | 2 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7103 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
2 | then |
| 7104 | (if referenceEq(e1, e1_1) then inExp else DAE.TSUB(e1_1, i, ty), arg); | ||
| 7105 | |||
| 7106 | case DAE.SIZE(exp = e1, sz = oe1) | ||
| 7107 | algorithm | ||
| 7108 | 957 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7109 | 957 | (oe1_1, arg) := traverseExpOptBidir(oe1, inEnterFunc, inExitFunc, arg); | |
| 7110 |
1/2✓ Branch 0 taken 957 times.
✗ Branch 1 not taken.
|
957 | then |
| 7111 | (if referenceEq(e1, e1_1) and referenceEq(oe1, oe1_1) then inExp else DAE.SIZE(e1_1, oe1_1), arg); | ||
| 7112 | |||
| 7113 | case DAE.CODE() | ||
| 7114 | then (inExp, inArg); | ||
| 7115 | |||
| 7116 | case DAE.REDUCTION(reductionInfo = reductionInfo, expr = e1, iterators = riters) | ||
| 7117 | algorithm | ||
| 7118 | 28 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7119 | 28 | (riters_1, arg) := List.map2Fold(riters, traverseReductionIteratorBidir, | |
| 7120 | inEnterFunc, inExitFunc, arg); | ||
| 7121 |
1/2✓ Branch 0 taken 28 times.
✗ Branch 1 not taken.
|
28 | then |
| 7122 | (if referenceEq(e1, e1_1) and referenceEq(riters, riters_1) then inExp else DAE.REDUCTION(reductionInfo, e1, riters), arg); | ||
| 7123 | |||
| 7124 | case DAE.LIST(valList = expl) | ||
| 7125 | algorithm | ||
| 7126 | 7 | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7127 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 7 times.
|
7 | then |
| 7128 | (if referenceEq(expl, expl_1) then inExp else DAE.LIST(expl_1), arg); | ||
| 7129 | |||
| 7130 | case DAE.CONS(car = e1, cdr = e2) | ||
| 7131 | algorithm | ||
| 7132 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7133 | ✗ | (e2_1, arg) := traverseExpBidir(e2, inEnterFunc, inExitFunc, arg); | |
| 7134 | ✗ | then | |
| 7135 | (if referenceEq(e1, e1_1) and referenceEq(e2, e2_1) then inExp else DAE.CONS(e1_1, e2_1), arg); | ||
| 7136 | |||
| 7137 | case DAE.META_TUPLE(listExp = expl) | ||
| 7138 | algorithm | ||
| 7139 | 4 | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7140 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 4 times.
|
4 | then |
| 7141 | (if referenceEq(expl, expl_1) then inExp else DAE.TUPLE(expl_1), arg); | ||
| 7142 | |||
| 7143 | case DAE.META_OPTION(exp = oe1) | ||
| 7144 | algorithm | ||
| 7145 | ✗ | (oe1_1, arg) := traverseExpOptBidir(oe1, inEnterFunc, inExitFunc, inArg); | |
| 7146 | ✗ | then | |
| 7147 | (if referenceEq(oe1, oe1_1) then inExp else DAE.META_OPTION(oe1_1), arg); | ||
| 7148 | |||
| 7149 | case DAE.METARECORDCALL(path = path, args = expl, fieldNames = strl, index = index, typeVars = typeVars) | ||
| 7150 | algorithm | ||
| 7151 | 1 | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7152 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1 time.
|
1 | then |
| 7153 | (if referenceEq(expl, expl_1) then inExp else DAE.METARECORDCALL(path, expl_1, strl, index, typeVars), arg); | ||
| 7154 | |||
| 7155 | case DAE.MATCHEXPRESSION(matchType = match_ty, inputs = expl, aliases=aliases, | ||
| 7156 | localDecls = match_decls, cases = match_cases, et = ty) | ||
| 7157 | algorithm | ||
| 7158 | ✗ | (expl_1, arg) := traverseExpListBidir(expl, inEnterFunc, inExitFunc, inArg); | |
| 7159 | ✗ | Error.addSourceMessage(Error.COMPILER_NOTIFICATION, {getInstanceName() + " not yet implemented for match expressions. Called using: " + System.dladdr(inEnterFunc) + " " + System.dladdr(inExitFunc)}, sourceInfo()); | |
| 7160 | //(cases, tup) = List.mapFold(cases, traverseMatchCase, tup); | ||
| 7161 | ✗ | then | |
| 7162 | (if referenceEq(expl, expl_1) then inExp else DAE.MATCHEXPRESSION(match_ty, expl_1, aliases, match_decls, match_cases, ty), arg); | ||
| 7163 | |||
| 7164 | case DAE.BOX(exp = e1) | ||
| 7165 | algorithm | ||
| 7166 | 17 | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7167 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 17 times.
|
17 | then |
| 7168 | (if referenceEq(e1, e1_1) then inExp else DAE.BOX(e1_1), arg); | ||
| 7169 | |||
| 7170 | case DAE.UNBOX(exp = e1, ty = ty) | ||
| 7171 | algorithm | ||
| 7172 | ✗ | (e1_1, arg) := traverseExpBidir(e1, inEnterFunc, inExitFunc, inArg); | |
| 7173 | ✗ | then | |
| 7174 | (if referenceEq(e1, e1_1) then inExp else DAE.UNBOX(e1_1, ty), arg); | ||
| 7175 | |||
| 7176 | case DAE.SHARED_LITERAL() then (inExp, inArg); | ||
| 7177 | case DAE.PATTERN() then (inExp, inArg); | ||
| 7178 | |||
| 7179 | else | ||
| 7180 | algorithm | ||
| 7181 | ✗ | Error.addInternalError(getInstanceName() + " - Unknown expression " + ExpressionBasics.printExpStr(inExp) + ". Called using: " + System.dladdr(inEnterFunc) + " " + System.dladdr(inExitFunc), sourceInfo()); | |
| 7182 | ✗ | then | |
| 7183 | fail(); | ||
| 7184 | |||
| 7185 | end match; | ||
| 7186 | end traverseExpBidirSubExps; | ||
| 7187 | |||
| 7188 | public function traverseExpBidirCref<ArgT> | ||
| 7189 | "Helper function to traverseExpBidirSubExps. Traverses any expressions in a | ||
| 7190 | component reference (i.e. in it's subscripts)." | ||
| 7191 | input DAE.ComponentRef inCref; | ||
| 7192 | input FuncType inEnterFunc; | ||
| 7193 | input FuncType inExitFunc; | ||
| 7194 | input ArgT inArg; | ||
| 7195 | output DAE.ComponentRef outCref; | ||
| 7196 | output ArgT outArg; | ||
| 7197 | |||
| 7198 | partial function FuncType | ||
| 7199 | input DAE.Exp inExp; | ||
| 7200 | input ArgT inArg; | ||
| 7201 | output DAE.Exp outExp; | ||
| 7202 | output ArgT outArg; | ||
| 7203 | end FuncType; | ||
| 7204 | algorithm | ||
| 7205 | (outCref, outArg) := match inCref | ||
| 7206 | local | ||
| 7207 | String name; | ||
| 7208 | ComponentRef cr; | ||
| 7209 | Type ty; | ||
| 7210 | list<DAE.Subscript> subs; | ||
| 7211 | ArgT arg; | ||
| 7212 | |||
| 7213 | case DAE.CREF_QUAL(name, ty, subs, cr) | ||
| 7214 | algorithm | ||
| 7215 | ✗ | (subs, arg) := List.map2Fold(subs, traverseExpBidirSubs, inEnterFunc, | |
| 7216 | inExitFunc, inArg); | ||
| 7217 | ✗ | (cr, arg) := traverseExpBidirCref(cr, inEnterFunc, inExitFunc, arg); | |
| 7218 | ✗ | then | |
| 7219 | (DAE.CREF_QUAL(name, ty, subs, cr), arg); | ||
| 7220 | |||
| 7221 | case DAE.CREF_IDENT(ident = name, identType = ty, subscriptLst = subs) | ||
| 7222 | algorithm | ||
| 7223 | 8644 | (subs, arg) := List.map2Fold(subs, traverseExpBidirSubs, inEnterFunc, | |
| 7224 | inExitFunc, inArg); | ||
| 7225 | 8644 | then | |
| 7226 | (DAE.CREF_IDENT(name, ty, subs), arg); | ||
| 7227 | |||
| 7228 | else (inCref, inArg); | ||
| 7229 | end match; | ||
| 7230 | end traverseExpBidirCref; | ||
| 7231 | |||
| 7232 | public function traverseExpCref | ||
| 7233 | "Helper function to traverseExpBottomUp. Traverses any expressions in a | ||
| 7234 | component reference (i.e. in it's subscripts)." | ||
| 7235 | input DAE.ComponentRef inCref; | ||
| 7236 | input FuncType rel; | ||
| 7237 | input Type_a iarg; | ||
| 7238 | output DAE.ComponentRef outCref; | ||
| 7239 | output Type_a outArg; | ||
| 7240 | |||
| 7241 | partial function FuncType | ||
| 7242 | input DAE.Exp inExp; | ||
| 7243 | input Type_a inArg; | ||
| 7244 | output DAE.Exp outExp; | ||
| 7245 | output Type_a outArg; | ||
| 7246 | end FuncType; | ||
| 7247 | |||
| 7248 | replaceable type Type_a subtypeof Any; | ||
| 7249 | algorithm | ||
| 7250 | (outCref, outArg) := match(inCref, iarg) | ||
| 7251 | local | ||
| 7252 | String name; | ||
| 7253 | ComponentRef cr,cr_1; | ||
| 7254 | Type ty; | ||
| 7255 | list<DAE.Subscript> subs,subs_1; | ||
| 7256 | Type_a arg; | ||
| 7257 | String instant; | ||
| 7258 | |||
| 7259 | case (DAE.CREF_QUAL(ident = name, identType = ty, subscriptLst = subs, componentRef = cr), arg) | ||
| 7260 | algorithm | ||
| 7261 | 81449777 | (subs_1, arg) := traverseExpSubs(subs, rel, arg); | |
| 7262 | 81449777 | (cr_1, arg) := traverseExpCref(cr, rel, arg); | |
| 7263 |
2/2✓ Branch 0 taken 58260 times.
✓ Branch 1 taken 81391517 times.
|
81449777 | then |
| 7264 | (if referenceEq(cr,cr_1) and referenceEq(subs,subs_1) then inCref else DAE.CREF_QUAL(name, ty, subs_1, cr_1), arg); | ||
| 7265 | |||
| 7266 | case (DAE.CREF_IDENT(ident = name, identType = ty, subscriptLst = subs), arg) | ||
| 7267 | algorithm | ||
| 7268 | 49052633 | (subs_1, arg) := traverseExpSubs(subs, rel, arg); | |
| 7269 |
2/2✓ Branch 0 taken 37984 times.
✓ Branch 1 taken 49014649 times.
|
49052633 | cr := if referenceEq(subs,subs_1) then inCref else DAE.CREF_IDENT(name, ty, subs_1); |
| 7270 | 49052633 | then | |
| 7271 | (cr, arg); | ||
| 7272 | |||
| 7273 | case (DAE.OPTIMICA_ATTR_INST_CREF(componentRef = cr, instant = instant), arg) | ||
| 7274 | algorithm | ||
| 7275 | ✗ | (cr_1, arg) := traverseExpCref(cr, rel, arg); | |
| 7276 | ✗ | cr := if referenceEq(cr,cr_1) then inCref else DAE.OPTIMICA_ATTR_INST_CREF(cr_1, instant); | |
| 7277 | ✗ | then | |
| 7278 | (cr, arg); | ||
| 7279 | |||
| 7280 | case (DAE.WILD(), arg) then (inCref, arg); | ||
| 7281 | |||
| 7282 | else | ||
| 7283 | algorithm | ||
| 7284 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"Expression.traverseExpCref: Unknown cref"}); | |
| 7285 | ✗ | then fail(); | |
| 7286 | end match; | ||
| 7287 | end traverseExpCref; | ||
| 7288 | |||
| 7289 | protected function traverseExpSubs | ||
| 7290 | input list<DAE.Subscript> inSubscript; | ||
| 7291 | input FuncType rel; | ||
| 7292 | input Type_a iarg; | ||
| 7293 | output list<DAE.Subscript> outSubscript; | ||
| 7294 | output Type_a outArg; | ||
| 7295 | |||
| 7296 | partial function FuncType | ||
| 7297 | input DAE.Exp inExp; | ||
| 7298 | input Type_a inArg; | ||
| 7299 | output DAE.Exp outExp; | ||
| 7300 | output Type_a outArg; | ||
| 7301 | end FuncType; | ||
| 7302 | |||
| 7303 | replaceable type Type_a subtypeof Any; | ||
| 7304 | algorithm | ||
| 7305 | (outSubscript, outArg) := match(inSubscript, iarg) | ||
| 7306 | local | ||
| 7307 | DAE.Exp sub_exp,sub_exp_1; | ||
| 7308 | list<DAE.Subscript> rest,res; | ||
| 7309 | Type_a arg; | ||
| 7310 | |||
| 7311 | case ({}, arg) then (inSubscript,arg); | ||
| 7312 | case (DAE.WHOLEDIM()::rest, arg) | ||
| 7313 | algorithm | ||
| 7314 | 1829 | (res,arg) := traverseExpSubs(rest,rel,arg); | |
| 7315 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1829 times.
|
1829 | res := if referenceEq(rest,res) then inSubscript else (DAE.WHOLEDIM()::res); |
| 7316 | 1829 | then (res, arg); | |
| 7317 | |||
| 7318 | case (DAE.SLICE(exp = sub_exp)::rest, arg) | ||
| 7319 | algorithm | ||
| 7320 | 903 | (sub_exp_1,arg) := traverseExpBottomUp(sub_exp, rel, arg); | |
| 7321 | 903 | (res,arg) := traverseExpSubs(rest,rel,arg); | |
| 7322 |
2/2✓ Branch 0 taken 8 times.
✓ Branch 1 taken 895 times.
|
903 | res := if referenceEq(sub_exp,sub_exp_1) and referenceEq(rest,res) then inSubscript else (DAE.SLICE(sub_exp_1)::res); |
| 7323 | 903 | then | |
| 7324 | (res, arg); | ||
| 7325 | |||
| 7326 | case (DAE.INDEX(exp = sub_exp)::rest, arg) | ||
| 7327 | algorithm | ||
| 7328 | 63339876 | (sub_exp_1,arg) := traverseExpBottomUp(sub_exp, rel, arg); | |
| 7329 | 63339876 | (res,arg) := traverseExpSubs(rest,rel,arg); | |
| 7330 |
2/2✓ Branch 0 taken 38842 times.
✓ Branch 1 taken 63301034 times.
|
63339876 | res := if referenceEq(sub_exp,sub_exp_1) and referenceEq(rest,res) then inSubscript else (DAE.INDEX(sub_exp_1)::res); |
| 7331 | 63339876 | then | |
| 7332 | (res, arg); | ||
| 7333 | |||
| 7334 | case (DAE.WHOLE_NONEXP(exp = sub_exp)::rest, arg) | ||
| 7335 | algorithm | ||
| 7336 | ✗ | (sub_exp_1,arg) := traverseExpBottomUp(sub_exp, rel, arg); | |
| 7337 | ✗ | (res,arg) := traverseExpSubs(rest,rel,arg); | |
| 7338 | ✗ | res := if referenceEq(sub_exp,sub_exp_1) and referenceEq(rest,res) then inSubscript else (DAE.WHOLE_NONEXP(sub_exp_1)::res); | |
| 7339 | ✗ | then | |
| 7340 | (res, arg); | ||
| 7341 | |||
| 7342 | end match; | ||
| 7343 | end traverseExpSubs; | ||
| 7344 | |||
| 7345 | public function traverseExpTopDownCrefHelper | ||
| 7346 | input DAE.ComponentRef inCref; | ||
| 7347 | input FuncType rel; | ||
| 7348 | input Argument iarg; | ||
| 7349 | output DAE.ComponentRef outCref; | ||
| 7350 | output Argument outArg; | ||
| 7351 | |||
| 7352 | partial function FuncType | ||
| 7353 | input DAE.Exp inExp; | ||
| 7354 | input Argument inArg; | ||
| 7355 | output DAE.Exp outExp; | ||
| 7356 | output Boolean cont; | ||
| 7357 | output Argument outArg; | ||
| 7358 | end FuncType; | ||
| 7359 | |||
| 7360 | replaceable type Argument subtypeof Any; | ||
| 7361 | algorithm | ||
| 7362 | (outCref, outArg) := match(inCref, iarg) | ||
| 7363 | local | ||
| 7364 | String name; | ||
| 7365 | ComponentRef cr, cr_1; | ||
| 7366 | Type ty; | ||
| 7367 | list<DAE.Subscript> subs, subs_1; | ||
| 7368 | Argument arg; | ||
| 7369 | |||
| 7370 | case (DAE.CREF_QUAL(ident = name, identType = ty, subscriptLst = subs, componentRef = cr), arg) | ||
| 7371 | algorithm | ||
| 7372 | 31876710 | (subs_1,arg) := traverseExpTopDownSubs(subs, rel, arg); | |
| 7373 | 31876710 | (cr_1, arg) := traverseExpTopDownCrefHelper(cr, rel, arg); | |
| 7374 |
2/2✓ Branch 0 taken 820 times.
✓ Branch 1 taken 31875890 times.
|
31876710 | then |
| 7375 | (if referenceEq(subs,subs_1) and referenceEq(cr,cr_1) then inCref else DAE.CREF_QUAL(name, ty, subs_1, cr_1), arg); | ||
| 7376 | |||
| 7377 | case (DAE.CREF_IDENT(ident = name, identType = ty, subscriptLst = subs), arg) | ||
| 7378 | algorithm | ||
| 7379 | 15169697 | (subs_1,arg) := traverseExpTopDownSubs(subs, rel, arg); | |
| 7380 |
2/2✓ Branch 0 taken 575 times.
✓ Branch 1 taken 15169122 times.
|
15169697 | then |
| 7381 | (if referenceEq(subs,subs_1) then inCref else DAE.CREF_IDENT(name, ty, subs_1), arg); | ||
| 7382 | |||
| 7383 | case (DAE.WILD(), arg) then (inCref, arg); | ||
| 7384 | end match; | ||
| 7385 | end traverseExpTopDownCrefHelper; | ||
| 7386 | |||
| 7387 | protected function traverseExpBidirSubs<ArgT> | ||
| 7388 | "Helper function to traverseExpBidirCref. Traverses expressions in a | ||
| 7389 | subscript." | ||
| 7390 | input DAE.Subscript inSubscript; | ||
| 7391 | input FuncType inEnterFunc; | ||
| 7392 | input FuncType inExitFunc; | ||
| 7393 | input ArgT inArg; | ||
| 7394 | output DAE.Subscript outSubscript; | ||
| 7395 | output ArgT outArg; | ||
| 7396 | |||
| 7397 | partial function FuncType | ||
| 7398 | input DAE.Exp inExp; | ||
| 7399 | input ArgT inArg; | ||
| 7400 | output DAE.Exp outExp; | ||
| 7401 | output ArgT outArg; | ||
| 7402 | end FuncType; | ||
| 7403 | algorithm | ||
| 7404 | (outSubscript, outArg) := match inSubscript | ||
| 7405 | local | ||
| 7406 | DAE.Exp sub_exp; | ||
| 7407 | ArgT arg; | ||
| 7408 | |||
| 7409 | case DAE.WHOLEDIM() then (inSubscript, inArg); | ||
| 7410 | |||
| 7411 | case DAE.SLICE(exp = sub_exp) | ||
| 7412 | algorithm | ||
| 7413 | ✗ | (sub_exp, arg) := traverseExpBidir(sub_exp, inEnterFunc, inExitFunc, inArg); | |
| 7414 | ✗ | then | |
| 7415 | (DAE.SLICE(sub_exp), arg); | ||
| 7416 | |||
| 7417 | case DAE.INDEX(exp = sub_exp) | ||
| 7418 | algorithm | ||
| 7419 | 6929 | (sub_exp, arg) := traverseExpBidir(sub_exp, inEnterFunc, inExitFunc, inArg); | |
| 7420 | 6929 | then | |
| 7421 | (DAE.INDEX(sub_exp), arg); | ||
| 7422 | |||
| 7423 | case DAE.WHOLE_NONEXP(exp = sub_exp) | ||
| 7424 | algorithm | ||
| 7425 | ✗ | (sub_exp, arg) := traverseExpBidir(sub_exp, inEnterFunc, inExitFunc, inArg); | |
| 7426 | ✗ | then | |
| 7427 | (DAE.WHOLE_NONEXP(sub_exp), arg); | ||
| 7428 | |||
| 7429 | end match; | ||
| 7430 | end traverseExpBidirSubs; | ||
| 7431 | |||
| 7432 | public function traverseExpTopDownSubs | ||
| 7433 | input list<DAE.Subscript> inSubscript; | ||
| 7434 | input FuncType rel; | ||
| 7435 | input Argument iarg; | ||
| 7436 | output list<DAE.Subscript> outSubscript; | ||
| 7437 | output Argument arg=iarg; | ||
| 7438 | |||
| 7439 | partial function FuncType | ||
| 7440 | input DAE.Exp inExp; | ||
| 7441 | input Argument inArg; | ||
| 7442 | output DAE.Exp outExp; | ||
| 7443 | output Boolean cont; | ||
| 7444 | output Argument outArg; | ||
| 7445 | end FuncType; | ||
| 7446 | |||
| 7447 | replaceable type Argument subtypeof Any; | ||
| 7448 | protected | ||
| 7449 | DAE.Exp exp; | ||
| 7450 | DAE.Subscript sub, nsub; | ||
| 7451 | DoubleEnded.MutableList<DAE.Subscript> delst; | ||
| 7452 | list<DAE.Subscript> rest = inSubscript; | ||
| 7453 | Integer nEq=0; | ||
| 7454 | algorithm | ||
| 7455 | // Preserve reference equality without any allocation if nothing changed. | ||
| 7456 | outSubscript := inSubscript; | ||
| 7457 |
2/2✓ Branch 0 taken 20306878 times.
✓ Branch 1 taken 50739500 times.
|
71046378 | while not listEmpty(rest) loop |
| 7458 | 20306878 | sub := listHead(rest); | |
| 7459 | nsub := match sub | ||
| 7460 | case DAE.WHOLEDIM() then sub; | ||
| 7461 | case DAE.SLICE() | ||
| 7462 | algorithm | ||
| 7463 | 310 | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7464 |
2/2✓ Branch 0 taken 184 times.
✓ Branch 1 taken 126 times.
|
310 | then if referenceEq(sub.exp, exp) then sub else DAE.SLICE(exp); |
| 7465 | case DAE.INDEX() | ||
| 7466 | algorithm | ||
| 7467 | 20305508 | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7468 |
2/2✓ Branch 0 taken 395 times.
✓ Branch 1 taken 20305113 times.
|
20305508 | then if referenceEq(sub.exp, exp) then sub else DAE.INDEX(exp); |
| 7469 | case DAE.WHOLE_NONEXP() | ||
| 7470 | algorithm | ||
| 7471 | ✗ | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7472 | ✗ | then if referenceEq(sub.exp, exp) then sub else DAE.WHOLE_NONEXP(exp); | |
| 7473 | end match; | ||
| 7474 |
2/2✓ Branch 0 taken 579 times.
✓ Branch 1 taken 20306299 times.
|
20306878 | if not referenceEq(nsub, sub) then |
| 7475 | // First change: switch to building a new list with a DoubleEnded list. | ||
| 7476 | 579 | delst := DoubleEnded.empty(nsub); | |
| 7477 |
1/2✓ Branch 0 taken 588 times.
✗ Branch 1 not taken.
|
588 | for elt in inSubscript loop |
| 7478 |
2/2✓ Branch 0 taken 9 times.
✓ Branch 1 taken 579 times.
|
588 | if nEq < 1 then |
| 7479 | break; | ||
| 7480 | end if; | ||
| 7481 | 9 | DoubleEnded.push_back(delst, elt); | |
| 7482 | 9 | nEq := nEq-1; | |
| 7483 | end for; | ||
| 7484 | 579 | DoubleEnded.push_back(delst, nsub); | |
| 7485 |
5/7✓ Branch 1 taken 6 times.
✓ Branch 2 taken 2 times.
✓ Branch 3 taken 3 times.
✗ Branch 4 not taken.
✗ Branch 5 not taken.
✓ Branch 6 taken 11 times.
✓ Branch 7 taken 579 times.
|
590 | for sub2 in listRest(rest) loop |
| 7486 | sub := sub2; | ||
| 7487 | nsub := match sub | ||
| 7488 | case DAE.WHOLEDIM() then sub; | ||
| 7489 | case DAE.SLICE() | ||
| 7490 | algorithm | ||
| 7491 | 2 | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7492 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
2 | then if referenceEq(sub.exp, exp) then sub else DAE.SLICE(exp); |
| 7493 | case DAE.INDEX() | ||
| 7494 | algorithm | ||
| 7495 | 3 | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7496 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 3 times.
|
3 | then if referenceEq(sub.exp, exp) then sub else DAE.INDEX(exp); |
| 7497 | case DAE.WHOLE_NONEXP() | ||
| 7498 | algorithm | ||
| 7499 | ✗ | (exp,arg) := traverseExpTopDown(sub.exp, rel, arg); | |
| 7500 | ✗ | then if referenceEq(sub.exp, exp) then sub else DAE.WHOLE_NONEXP(exp); | |
| 7501 | end match; | ||
| 7502 | 11 | DoubleEnded.push_back(delst, nsub); | |
| 7503 | end for; | ||
| 7504 | 579 | outSubscript := DoubleEnded.toListAndClear(delst); | |
| 7505 | 579 | return; | |
| 7506 | end if; | ||
| 7507 | 20306299 | nEq := nEq + 1; | |
| 7508 | 20306299 | rest := listRest(rest); | |
| 7509 | end while; | ||
| 7510 | end traverseExpTopDownSubs; | ||
| 7511 | |||
| 7512 | /***************************************************/ | ||
| 7513 | /* Compare and Check DAE.Exp */ | ||
| 7514 | /***************************************************/ | ||
| 7515 | |||
| 7516 | public function operatorDivOrMul "returns true if operator is division or multiplication" | ||
| 7517 | input DAE.Operator op; | ||
| 7518 | output Boolean res; | ||
| 7519 | algorithm | ||
| 7520 | res := match op | ||
| 7521 | case DAE.MUL(_) then true; | ||
| 7522 | case DAE.DIV(_) then true; | ||
| 7523 | else false; | ||
| 7524 | end match; | ||
| 7525 | end operatorDivOrMul; | ||
| 7526 | |||
| 7527 | public function isRange | ||
| 7528 | "Returns true if expression is a range expression." | ||
| 7529 | input DAE.Exp inExp; | ||
| 7530 | output Boolean outBoolean; | ||
| 7531 | algorithm | ||
| 7532 | outBoolean := match inExp | ||
| 7533 | case DAE.RANGE() then true; | ||
| 7534 | else false; | ||
| 7535 | end match; | ||
| 7536 | end isRange; | ||
| 7537 | |||
| 7538 | public function isReduction | ||
| 7539 | input DAE.Exp inExp; | ||
| 7540 | output Boolean outBoolean; | ||
| 7541 | algorithm | ||
| 7542 | outBoolean := match inExp | ||
| 7543 | case DAE.REDUCTION() then true; | ||
| 7544 | else false; | ||
| 7545 | end match; | ||
| 7546 | end isReduction; | ||
| 7547 | |||
| 7548 | public function isOne | ||
| 7549 | "Returns true if an expression is constant | ||
| 7550 | and has the value one, otherwise false" | ||
| 7551 | input DAE.Exp inExp; | ||
| 7552 | output Boolean outBoolean; | ||
| 7553 | algorithm | ||
| 7554 | outBoolean := match inExp | ||
| 7555 | local | ||
| 7556 | Integer ival; | ||
| 7557 | Real rval; | ||
| 7558 | Boolean res; | ||
| 7559 | DAE.Exp e; | ||
| 7560 | |||
| 7561 | 1 | case DAE.ICONST(integer = ival) then intEq(ival,1); | |
| 7562 | 848032 | case DAE.RCONST(real = rval) then realEq(rval,1.0); | |
| 7563 | case DAE.CAST(exp = e) | ||
| 7564 | algorithm | ||
| 7565 | 2252 | res := isOne(e) "Casting to one is still one" ; | |
| 7566 | then | ||
| 7567 | res; | ||
| 7568 | else false; | ||
| 7569 | end match; | ||
| 7570 | end isOne; | ||
| 7571 | |||
| 7572 | public function isZero | ||
| 7573 | "Returns true if an expression is constant | ||
| 7574 | and has the value zero, otherwise false" | ||
| 7575 | input DAE.Exp inExp; | ||
| 7576 | output Boolean outBoolean; | ||
| 7577 | algorithm | ||
| 7578 | outBoolean := match inExp | ||
| 7579 | local | ||
| 7580 | Integer ival; | ||
| 7581 | Real rval; | ||
| 7582 | DAE.Exp e; | ||
| 7583 | list<DAE.Exp> ae; | ||
| 7584 | list<list<DAE.Exp>> matrix; | ||
| 7585 | |||
| 7586 | case DAE.ICONST(integer = ival) | ||
| 7587 | 353953 | then intEq(ival,0); | |
| 7588 | |||
| 7589 | case DAE.RCONST(real = rval) | ||
| 7590 | 23264853 | then realEq(rval,0.0); | |
| 7591 | |||
| 7592 | case DAE.CAST(exp = e) | ||
| 7593 | 353670 | then isZero(e); | |
| 7594 | |||
| 7595 | case DAE.UNARY(DAE.UMINUS(_),e) | ||
| 7596 | 1563856 | then isZero(e); | |
| 7597 | |||
| 7598 | case DAE.ARRAY(array = ae) | ||
| 7599 | 40761 | then List.all(ae, isZero); | |
| 7600 | |||
| 7601 | case DAE.MATRIX(matrix = matrix) | ||
| 7602 | 72 | then List.all(matrix, function List.all(inFunc = isZero)); | |
| 7603 | |||
| 7604 | case DAE.UNARY(DAE.UMINUS_ARR(_),e) | ||
| 7605 | 175 | then isZero(e); | |
| 7606 | |||
| 7607 | else false; | ||
| 7608 | |||
| 7609 | end match; | ||
| 7610 | end isZero; | ||
| 7611 | |||
| 7612 | |||
| 7613 | public function isZeroOrAlmostZero | ||
| 7614 | "Returns true if an expression is constant | ||
| 7615 | and zero or near to zero, otherwise false" | ||
| 7616 | input DAE.Exp inExp; | ||
| 7617 | input DAE.Exp nominal = DAE.RCONST(1.0); | ||
| 7618 | output Boolean outBoolean; | ||
| 7619 | algorithm | ||
| 7620 | outBoolean := match (inExp, nominal) | ||
| 7621 | local | ||
| 7622 | Integer ival; | ||
| 7623 | Real rval; | ||
| 7624 | DAE.Exp e,e1; | ||
| 7625 | list<DAE.Exp> ae; | ||
| 7626 | list<list<DAE.Exp>> matrix; | ||
| 7627 | Real rNom; | ||
| 7628 | |||
| 7629 | case (DAE.ICONST(integer = ival),_) | ||
| 7630 | ✗ | then intEq(ival,0); | |
| 7631 | |||
| 7632 | case (DAE.RCONST(real = rval), DAE.RCONST(real=rNom)) | ||
| 7633 | 50479 | then realLt(abs(rval),1e-6*abs(rNom)); | |
| 7634 | |||
| 7635 | case (DAE.RCONST(real = rval),_) | ||
| 7636 | 311 | then realLt(abs(rval),1e-6); | |
| 7637 | |||
| 7638 | case (DAE.CAST(exp = e),_) | ||
| 7639 | 110 | then isZeroOrAlmostZero(e, nominal); | |
| 7640 | |||
| 7641 | case (DAE.UNARY(DAE.UMINUS(_),e),_) | ||
| 7642 | 17348 | then isZeroOrAlmostZero(e, nominal); | |
| 7643 | |||
| 7644 | case (DAE.ARRAY(array = ae),_) | ||
| 7645 | 20 | then List.all(ae, function isZeroOrAlmostZero(nominal = nominal)); | |
| 7646 | |||
| 7647 | case (DAE.MATRIX(matrix = matrix),_) | ||
| 7648 | ✗ | then List.all(matrix, function List.all(inFunc = function isZeroOrAlmostZero(nominal = nominal))); | |
| 7649 | |||
| 7650 | case (DAE.UNARY(DAE.UMINUS_ARR(_),e),_) | ||
| 7651 | ✗ | then isZeroOrAlmostZero(e, nominal); | |
| 7652 | |||
| 7653 | case (DAE.IFEXP(_,e,e1),_) | ||
| 7654 |
3/4✓ Branch 1 taken 1968 times.
✗ Branch 2 not taken.
✓ Branch 4 taken 41 times.
✓ Branch 5 taken 1927 times.
|
1968 | then (isZeroOrAlmostZero(e, nominal) or isZeroOrAlmostZero(e1, nominal)); |
| 7655 | |||
| 7656 | else false; | ||
| 7657 | |||
| 7658 | end match; | ||
| 7659 | end isZeroOrAlmostZero; | ||
| 7660 | |||
| 7661 | |||
| 7662 | public function isPositiveOrZero | ||
| 7663 | "Returns true if an expression is known to be >= 0" | ||
| 7664 | input DAE.Exp inExp; | ||
| 7665 | output Boolean outBoolean; | ||
| 7666 | algorithm | ||
| 7667 | outBoolean := match inExp | ||
| 7668 | local | ||
| 7669 | Integer i; | ||
| 7670 | Real r; | ||
| 7671 | DAE.Exp e1, e2; | ||
| 7672 | |||
| 7673 | /* literals */ | ||
| 7674 | 13535 | case DAE.ICONST(i) then i >= 0; | |
| 7675 | 71218 | case DAE.RCONST(r) then r >= 0.0; | |
| 7676 | |||
| 7677 | /* e1 + e2 */ | ||
| 7678 | case DAE.BINARY(e1, DAE.ADD(), e2) | ||
| 7679 |
4/4✓ Branch 1 taken 16668 times.
✓ Branch 2 taken 24724 times.
✓ Branch 4 taken 16657 times.
✓ Branch 5 taken 11 times.
|
41392 | then isPositiveOrZero(e1) and isPositiveOrZero(e2); |
| 7680 | |||
| 7681 | /* e1 - e2 */ | ||
| 7682 | case DAE.BINARY(e1, DAE.SUB(), e2) | ||
| 7683 |
3/4✓ Branch 1 taken 37847 times.
✓ Branch 2 taken 85352 times.
✓ Branch 4 taken 37847 times.
✗ Branch 5 not taken.
|
123199 | then isPositiveOrZero(e1) and isNegativeOrZero(e2); |
| 7684 | |||
| 7685 | /* e1 * e2 , -e1 * -e2, e ^ 2.0 */ | ||
| 7686 | case DAE.BINARY(e1, DAE.MUL(), e2) | ||
| 7687 |
9/10✓ Branch 1 taken 253 times.
✓ Branch 2 taken 2208 times.
✓ Branch 4 taken 217 times.
✓ Branch 5 taken 36 times.
✓ Branch 7 taken 82 times.
✓ Branch 8 taken 2343 times.
✓ Branch 10 taken 82 times.
✗ Branch 11 not taken.
✓ Branch 13 taken 21 times.
✓ Branch 14 taken 2404 times.
|
2461 | then (isPositiveOrZero(e1) and isPositiveOrZero(e2)) or |
| 7688 | (isNegativeOrZero(e1) and isNegativeOrZero(e2)) or ExpressionBasics.expEqual(e1, e2); | ||
| 7689 | |||
| 7690 | /* e1 / e2, -e1 / -e2 */ | ||
| 7691 | case DAE.BINARY(e1, DAE.DIV(), e2) | ||
| 7692 |
7/8✓ Branch 1 taken 117 times.
✓ Branch 2 taken 124 times.
✓ Branch 4 taken 114 times.
✓ Branch 5 taken 3 times.
✓ Branch 7 taken 1 time.
✓ Branch 8 taken 237 times.
✗ Branch 10 not taken.
✓ Branch 11 taken 1 time.
|
241 | then (isPositiveOrZero(e1) and isPositiveOrZero(e2)) or |
| 7693 | (isNegativeOrZero(e1) and isNegativeOrZero(e2)); | ||
| 7694 | |||
| 7695 | /* Integer power we can say something good about */ | ||
| 7696 | 774 | case DAE.BINARY(e1, DAE.POW(), _) then isPositiveOrZero(e1); | |
| 7697 | ✗ | case DAE.BINARY(_, DAE.POW(), e2) then isEven(e2); | |
| 7698 | |||
| 7699 | /* -(x) */ | ||
| 7700 | 3025 | case DAE.UNARY(DAE.UMINUS(), e1) then isNegativeOrZero(e1); | |
| 7701 | |||
| 7702 | /* builtin calls */ | ||
| 7703 | case DAE.CALL(path = Absyn.IDENT("abs")) then true; | ||
| 7704 | case DAE.CALL(path = Absyn.IDENT("cosh")) then true; | ||
| 7705 | case DAE.CALL(path = Absyn.IDENT("exp")) then true; | ||
| 7706 | ✗ | case DAE.CALL(path = Absyn.IDENT("sign"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7707 | ✗ | case DAE.CALL(path = Absyn.IDENT("sinh"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7708 | ✗ | case DAE.CALL(path = Absyn.IDENT("tanh"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7709 | ✗ | case DAE.CALL(path = Absyn.IDENT("ceil"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7710 | ✗ | case DAE.CALL(path = Absyn.IDENT("floor"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7711 | ✗ | case DAE.CALL(path = Absyn.IDENT("integer"), expLst = {e1}) then isPositiveOrZero(e1); | |
| 7712 | |||
| 7713 | // TODO div, mod, rem, ... | ||
| 7714 | |||
| 7715 | 169842 | else isZero(inExp); | |
| 7716 | end match; | ||
| 7717 | end isPositiveOrZero; | ||
| 7718 | |||
| 7719 | public function isNegativeOrZero | ||
| 7720 | "Returns true if an expression is known to be <= 0" | ||
| 7721 | input DAE.Exp inExp; | ||
| 7722 | output Boolean outBoolean; | ||
| 7723 | algorithm | ||
| 7724 | outBoolean := match inExp | ||
| 7725 | local | ||
| 7726 | Integer i; | ||
| 7727 | Real r; | ||
| 7728 | DAE.Exp e1, e2; | ||
| 7729 | |||
| 7730 | /* literals */ | ||
| 7731 | 510 | case DAE.ICONST(i) then i <= 0; | |
| 7732 | 84590 | case DAE.RCONST(r) then r <= 0.0; | |
| 7733 | |||
| 7734 | /* e1 + e2 */ | ||
| 7735 | case DAE.BINARY(e1, DAE.ADD(), e2) | ||
| 7736 |
3/4✓ Branch 1 taken 30998 times.
✓ Branch 2 taken 26190 times.
✓ Branch 4 taken 30998 times.
✗ Branch 5 not taken.
|
57188 | then isNegativeOrZero(e1) and isNegativeOrZero(e2); |
| 7737 | |||
| 7738 | /* e1 - e2 */ | ||
| 7739 | case DAE.BINARY(e1, DAE.SUB(), e2) | ||
| 7740 |
3/4✓ Branch 1 taken 2615 times.
✓ Branch 2 taken 125969 times.
✓ Branch 4 taken 2615 times.
✗ Branch 5 not taken.
|
128584 | then isNegativeOrZero(e1) and isPositiveOrZero(e2); |
| 7741 | |||
| 7742 | /* e1 * e2 , -e1 * -e2, e ^ 2.0 */ | ||
| 7743 | case DAE.BINARY(e1, DAE.MUL(), e2) | ||
| 7744 |
6/8✓ Branch 1 taken 10379 times.
✓ Branch 2 taken 4193 times.
✓ Branch 4 taken 10379 times.
✗ Branch 5 not taken.
✓ Branch 7 taken 4 times.
✓ Branch 8 taken 14568 times.
✗ Branch 10 not taken.
✓ Branch 11 taken 4 times.
|
14572 | then (isPositiveOrZero(e1) and isNegativeOrZero(e2)) or |
| 7745 | (isNegativeOrZero(e1) and isPositiveOrZero(e2)); | ||
| 7746 | |||
| 7747 | /* e1 / e2, -e1 / -e2 */ | ||
| 7748 | case DAE.BINARY(e1, DAE.DIV(), e2) | ||
| 7749 |
4/8✓ Branch 1 taken 53 times.
✓ Branch 2 taken 6063 times.
✓ Branch 4 taken 53 times.
✗ Branch 5 not taken.
✗ Branch 7 not taken.
✓ Branch 8 taken 6116 times.
✗ Branch 10 not taken.
✗ Branch 11 not taken.
|
6116 | then (isPositiveOrZero(e1) and isNegativeOrZero(e2)) or |
| 7750 | (isNegativeOrZero(e1) and isPositiveOrZero(e2)); | ||
| 7751 | |||
| 7752 | /* Integer power we can say something good about */ | ||
| 7753 |
1/4✗ Branch 1 not taken.
✓ Branch 2 taken 272 times.
✗ Branch 4 not taken.
✗ Branch 5 not taken.
|
272 | case DAE.BINARY(e1, DAE.POW(), e2) then isNegativeOrZero(e1) and isOdd(e2); |
| 7754 | |||
| 7755 | /* -(x) */ | ||
| 7756 | 6627 | case DAE.UNARY(DAE.UMINUS(), e1) then isPositiveOrZero(e1); | |
| 7757 | |||
| 7758 | /* builtin calls */ | ||
| 7759 | 9925 | case DAE.CALL(path = Absyn.IDENT("abs"), expLst = {e1}) then isZero(e1); | |
| 7760 | case DAE.CALL(path = Absyn.IDENT("cosh")) then false; | ||
| 7761 | case DAE.CALL(path = Absyn.IDENT("exp")) then false; | ||
| 7762 | ✗ | case DAE.CALL(path = Absyn.IDENT("sign"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7763 | ✗ | case DAE.CALL(path = Absyn.IDENT("sinh"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7764 | ✗ | case DAE.CALL(path = Absyn.IDENT("tanh"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7765 | ✗ | case DAE.CALL(path = Absyn.IDENT("ceil"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7766 | ✗ | case DAE.CALL(path = Absyn.IDENT("floor"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7767 | 12 | case DAE.CALL(path = Absyn.IDENT("integer"), expLst = {e1}) then isNegativeOrZero(e1); | |
| 7768 | |||
| 7769 | // TODO div, mod, rem, ... | ||
| 7770 | |||
| 7771 | 197995 | else isZero(inExp); | |
| 7772 | end match; | ||
| 7773 | end isNegativeOrZero; | ||
| 7774 | |||
| 7775 | public function isPositive | ||
| 7776 | "Returns true if an expression is known to be > 0" | ||
| 7777 | input DAE.Exp inExp; | ||
| 7778 | output Boolean outBoolean; | ||
| 7779 | algorithm | ||
| 7780 | outBoolean := match inExp | ||
| 7781 | local | ||
| 7782 | Integer i; | ||
| 7783 | Real r; | ||
| 7784 | DAE.Exp e1, e2; | ||
| 7785 | |||
| 7786 | /* literals */ | ||
| 7787 | ✗ | case DAE.ICONST(i) then i > 0; | |
| 7788 | 14 | case DAE.RCONST(r) then r > 0.0; | |
| 7789 | |||
| 7790 | /* e1 + e2 */ | ||
| 7791 | case DAE.BINARY(e1, DAE.ADD(), e2) | ||
| 7792 | ✗ | then (isPositive(e1) and isPositiveOrZero(e2)) or | |
| 7793 | (isZero(e1) and isPositive(e2)); | ||
| 7794 | |||
| 7795 | /* e1 - e2 */ | ||
| 7796 | case DAE.BINARY(e1, DAE.SUB(), e2) | ||
| 7797 | ✗ | then isPositive(e1) and isNegativeOrZero(e2) or | |
| 7798 | (isZero(e1) and isNegative(e2)); | ||
| 7799 | |||
| 7800 | /* e1 * e2 , -e1 * -e2, e ^ 2.0 */ | ||
| 7801 | case DAE.BINARY(e1, DAE.MUL(), e2) | ||
| 7802 | ✗ | then (isPositive(e1) and isPositive(e2)) or | |
| 7803 | (isNegative(e1) and isNegative(e2)); | ||
| 7804 | |||
| 7805 | /* e1 / e2, -e1 / -e2 */ | ||
| 7806 | case DAE.BINARY(e1, DAE.DIV(), e2) | ||
| 7807 | ✗ | then (isPositive(e1) and isPositive(e2)) or | |
| 7808 | (isNegative(e1) and isNegative(e2)); | ||
| 7809 | |||
| 7810 | /* Integer power we can say something good about */ | ||
| 7811 | ✗ | case DAE.BINARY(e1, DAE.POW(), _) then isPositive(e1); | |
| 7812 | |||
| 7813 | /* -(x) */ | ||
| 7814 | ✗ | case DAE.UNARY(DAE.UMINUS(), e1) then isNegative(e1); | |
| 7815 | |||
| 7816 | /* builtin calls */ | ||
| 7817 | ✗ | case DAE.CALL(path = Absyn.IDENT("abs"), expLst = {e1}) then isPositive(e1) or isNegative(e1); | |
| 7818 | case DAE.CALL(path = Absyn.IDENT("cosh")) then true; | ||
| 7819 | case DAE.CALL(path = Absyn.IDENT("exp")) then true; | ||
| 7820 | ✗ | case DAE.CALL(path = Absyn.IDENT("sign"), expLst = {e1}) then isPositive(e1); | |
| 7821 | ✗ | case DAE.CALL(path = Absyn.IDENT("sinh"), expLst = {e1}) then isPositive(e1); | |
| 7822 | ✗ | case DAE.CALL(path = Absyn.IDENT("tanh"), expLst = {e1}) then isPositive(e1); | |
| 7823 | ✗ | case DAE.CALL(path = Absyn.IDENT("ceil"), expLst = {e1}) then isPositive(e1); | |
| 7824 | |||
| 7825 | // TODO div, mod, rem, ... | ||
| 7826 | |||
| 7827 | else false; | ||
| 7828 | end match; | ||
| 7829 | end isPositive; | ||
| 7830 | |||
| 7831 | public function isNegative | ||
| 7832 | "Returns true if an expression is known to be < 0" | ||
| 7833 | input DAE.Exp inExp; | ||
| 7834 | output Boolean outBoolean; | ||
| 7835 | algorithm | ||
| 7836 | outBoolean := match inExp | ||
| 7837 | local | ||
| 7838 | Integer i; | ||
| 7839 | Real r; | ||
| 7840 | DAE.Exp e1, e2; | ||
| 7841 | |||
| 7842 | /* literals */ | ||
| 7843 | ✗ | case DAE.ICONST(i) then i < 0; | |
| 7844 | ✗ | case DAE.RCONST(r) then r < 0.0; | |
| 7845 | |||
| 7846 | /* e1 + e2 */ | ||
| 7847 | case DAE.BINARY(e1, DAE.ADD(), e2) | ||
| 7848 | ✗ | then (isNegative(e1) and isNegativeOrZero(e2)) or | |
| 7849 | (isZero(e1) and isNegative(e2)); | ||
| 7850 | |||
| 7851 | /* e1 - e2 */ | ||
| 7852 | case DAE.BINARY(e1, DAE.SUB(), e2) | ||
| 7853 | ✗ | then isNegative(e1) and isPositiveOrZero(e2) or | |
| 7854 | (isZero(e1) and isPositive(e2)); | ||
| 7855 | |||
| 7856 | /* e1 * e2 , -e1 * -e2, e ^ 2.0 */ | ||
| 7857 | case DAE.BINARY(e1, DAE.MUL(), e2) | ||
| 7858 | ✗ | then (isPositive(e1) and isNegative(e2)) or | |
| 7859 | (isNegative(e1) and isPositive(e2)); | ||
| 7860 | |||
| 7861 | /* e1 / e2, -e1 / -e2 */ | ||
| 7862 | case DAE.BINARY(e1, DAE.DIV(), e2) | ||
| 7863 | ✗ | then (isPositive(e1) and isNegative(e2)) or | |
| 7864 | (isNegative(e1) and isPositive(e2)); | ||
| 7865 | |||
| 7866 | /* Integer power we can say something good about */ | ||
| 7867 | ✗ | case DAE.BINARY(e1, DAE.POW(), e2) then isNegative(e1) and isOdd(e2); | |
| 7868 | |||
| 7869 | /* -(x) */ | ||
| 7870 | ✗ | case DAE.UNARY(DAE.UMINUS(), e1) then isNegative(e1); | |
| 7871 | |||
| 7872 | /* builtin calls */ | ||
| 7873 | case DAE.CALL(path = Absyn.IDENT("abs")) then false; | ||
| 7874 | case DAE.CALL(path = Absyn.IDENT("cosh")) then false; | ||
| 7875 | case DAE.CALL(path = Absyn.IDENT("exp")) then false; | ||
| 7876 | ✗ | case DAE.CALL(path = Absyn.IDENT("sign"), expLst = {e1}) then isNegative(e1); | |
| 7877 | ✗ | case DAE.CALL(path = Absyn.IDENT("sinh"), expLst = {e1}) then isNegative(e1); | |
| 7878 | ✗ | case DAE.CALL(path = Absyn.IDENT("tanh"), expLst = {e1}) then isNegative(e1); | |
| 7879 | ✗ | case DAE.CALL(path = Absyn.IDENT("floor"), expLst = {e1}) then isNegative(e1); | |
| 7880 | |||
| 7881 | // TODO div, mod, rem, ... | ||
| 7882 | |||
| 7883 | else false; | ||
| 7884 | end match; | ||
| 7885 | end isNegative; | ||
| 7886 | |||
| 7887 | function isGreaterOrEqual | ||
| 7888 | input DAE.Exp exp1; | ||
| 7889 | input DAE.Exp exp2; | ||
| 7890 | output Boolean isGreaterOrEqual = isPositiveOrZero(ExpressionSimplify.simplify(expSub(exp1, exp2))); | ||
| 7891 | end isGreaterOrEqual; | ||
| 7892 | |||
| 7893 | public function isHalf | ||
| 7894 | "Returns true if an expression is 0.5" | ||
| 7895 | input DAE.Exp inExp; | ||
| 7896 | output Boolean outBoolean; | ||
| 7897 | algorithm | ||
| 7898 | outBoolean := match inExp | ||
| 7899 | local | ||
| 7900 | Real rval; | ||
| 7901 | |||
| 7902 | 27602 | case DAE.RCONST(real = rval) then realEq(rval,0.5); | |
| 7903 | else false; | ||
| 7904 | |||
| 7905 | end match; | ||
| 7906 | end isHalf; | ||
| 7907 | |||
| 7908 | public function isAtomic | ||
| 7909 | input DAE.Exp inExp; | ||
| 7910 | output Boolean outBoolean; | ||
| 7911 | algorithm | ||
| 7912 | outBoolean := match inExp | ||
| 7913 | case DAE.CREF() then true; | ||
| 7914 | case DAE.CALL() then true; | ||
| 7915 | 784 | case DAE.ICONST() then inExp.integer >= 0; | |
| 7916 | 25547 | case DAE.RCONST() then inExp.real > 0.0; | |
| 7917 | else false; | ||
| 7918 | end match; | ||
| 7919 | end isAtomic; | ||
| 7920 | |||
| 7921 | public function isDeeperThan | ||
| 7922 | "Whether the expression tree is deeper than inDepth levels." | ||
| 7923 | input DAE.Exp inExp; | ||
| 7924 | input Integer inDepth; | ||
| 7925 | output Boolean outDeeper; | ||
| 7926 | algorithm | ||
| 7927 | outDeeper := match inExp | ||
| 7928 | case _ guard inDepth <= 0 then true; | ||
| 7929 |
2/2✓ Branch 1 taken 38 times.
✓ Branch 2 taken 2699266 times.
|
2699304 | case DAE.BINARY() then if isDeeperThan(inExp.exp1, inDepth - 1) then true |
| 7930 | else isDeeperThan(inExp.exp2, inDepth - 1); | ||
| 7931 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 77 times.
|
77 | case DAE.LBINARY() then if isDeeperThan(inExp.exp1, inDepth - 1) then true |
| 7932 | else isDeeperThan(inExp.exp2, inDepth - 1); | ||
| 7933 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 1900 times.
|
1900 | case DAE.RELATION() then if isDeeperThan(inExp.exp1, inDepth - 1) then true |
| 7934 | else isDeeperThan(inExp.exp2, inDepth - 1); | ||
| 7935 |
2/4✓ Branch 1 taken 4075 times.
✗ Branch 2 not taken.
✓ Branch 4 taken 4075 times.
✗ Branch 5 not taken.
|
4075 | case DAE.IFEXP() then if isDeeperThan(inExp.expCond, inDepth - 1) then true |
| 7936 | elseif isDeeperThan(inExp.expThen, inDepth - 1) then true | ||
| 7937 | else isDeeperThan(inExp.expElse, inDepth - 1); | ||
| 7938 | 83574 | case DAE.UNARY() then isDeeperThan(inExp.exp, inDepth - 1); | |
| 7939 | 462 | case DAE.LUNARY() then isDeeperThan(inExp.exp, inDepth - 1); | |
| 7940 | 9730 | case DAE.CAST() then isDeeperThan(inExp.exp, inDepth - 1); | |
| 7941 | else false; | ||
| 7942 | end match; | ||
| 7943 | end isDeeperThan; | ||
| 7944 | |||
| 7945 | public function isImpure "author: lochel | ||
| 7946 | Returns true if an expression contains an impure function call." | ||
| 7947 | input DAE.Exp inExp; | ||
| 7948 | output Boolean outBoolean; | ||
| 7949 | algorithm | ||
| 7950 | 20976 | outBoolean := isConst(inExp); | |
| 7951 | 20976 | (_, outBoolean) := traverseExpTopDown(inExp, isImpureWork, false); | |
| 7952 | end isImpure; | ||
| 7953 | |||
| 7954 | protected function isImpureWork "author: lochel" | ||
| 7955 | input DAE.Exp inExp; | ||
| 7956 | input Boolean isImpure; | ||
| 7957 | output DAE.Exp outExp; | ||
| 7958 | output Boolean cont; | ||
| 7959 | output Boolean outImpure; | ||
| 7960 | algorithm | ||
| 7961 | (outExp,cont,outImpure) := match (inExp,isImpure) | ||
| 7962 | case (_, true) then (inExp,true,true); | ||
| 7963 | |||
| 7964 | case (DAE.CALL(attr=DAE.CALL_ATTR(isImpure=true)), _) | ||
| 7965 | then (inExp,false,true); | ||
| 7966 | |||
| 7967 | // workaround for builtin functions that are impure, but not marked as impure | ||
| 7968 | case (DAE.CALL(path = Absyn.IDENT(name="alarm"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7969 | then (inExp,false,true); | ||
| 7970 | |||
| 7971 | case (DAE.CALL(path = Absyn.IDENT(name="compareFilesAndMove"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7972 | then (inExp,false,true); | ||
| 7973 | |||
| 7974 | case (DAE.CALL(path = Absyn.IDENT(name="delay"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7975 | then (inExp,false,true); | ||
| 7976 | |||
| 7977 | case (DAE.CALL(path = Absyn.IDENT(name="initial"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7978 | then (inExp,false,true); | ||
| 7979 | |||
| 7980 | case (DAE.CALL(path = Absyn.IDENT(name="print"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7981 | then (inExp,false,true); | ||
| 7982 | |||
| 7983 | case (DAE.CALL(path = Absyn.IDENT(name="readFile"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7984 | then (inExp,false,true); | ||
| 7985 | |||
| 7986 | case (DAE.CALL(path = Absyn.IDENT(name="sample"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7987 | then (inExp,false,true); | ||
| 7988 | |||
| 7989 | case (DAE.CALL(path = Absyn.IDENT(name="system"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7990 | then (inExp,false,true); | ||
| 7991 | |||
| 7992 | case (DAE.CALL(path = Absyn.IDENT(name="system_parallel"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7993 | then (inExp,false,true); | ||
| 7994 | |||
| 7995 | case (DAE.CALL(path = Absyn.IDENT(name="terminal"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7996 | then (inExp,false,true); | ||
| 7997 | |||
| 7998 | case (DAE.CALL(path = Absyn.IDENT(name="writeFile"), attr=DAE.CALL_ATTR(builtin=true)), _) | ||
| 7999 | then (inExp,false,true); | ||
| 8000 | |||
| 8001 | else (inExp,true,false); | ||
| 8002 | end match; | ||
| 8003 | end isImpureWork; | ||
| 8004 | |||
| 8005 | |||
| 8006 | public function containsRecordType | ||
| 8007 | " Returns true if an expression contains a record type." | ||
| 8008 | input DAE.Exp inExp; | ||
| 8009 | output Boolean isRec; | ||
| 8010 | algorithm | ||
| 8011 | 9428 | (_, isRec) := traverseExpTopDown(inExp, containsRecordTypeWork, false); | |
| 8012 | end containsRecordType; | ||
| 8013 | |||
| 8014 | protected function containsRecordTypeWork | ||
| 8015 | input DAE.Exp inExp; | ||
| 8016 | input Boolean inRec; | ||
| 8017 | output DAE.Exp outExp = inExp; | ||
| 8018 | output Boolean cont = false; | ||
| 8019 | output Boolean outRec = inRec; | ||
| 8020 | algorithm | ||
| 8021 |
2/2✓ Branch 0 taken 42955 times.
✓ Branch 1 taken 1080 times.
|
44035 | if not inRec then |
| 8022 | (outExp,cont,outRec) := matchcontinue inExp | ||
| 8023 | local | ||
| 8024 | DAE.Type ty; | ||
| 8025 | list<DAE.Exp> expLst; | ||
| 8026 | Boolean subRec; | ||
| 8027 | case DAE.RECORD() | ||
| 8028 | algorithm | ||
| 8029 | then (inExp,false,true); | ||
| 8030 | case DAE.CALL(expLst=expLst, attr=DAE.CALL_ATTR(ty=ty)) | ||
| 8031 | algorithm | ||
| 8032 | 2491 | subRec := isRecordType(ty); | |
| 8033 |
2/2✓ Branch 0 taken 2279 times.
✓ Branch 1 taken 212 times.
|
2491 | if not subRec then |
| 8034 |
2/2✓ Branch 0 taken 4845 times.
✓ Branch 1 taken 1017 times.
|
5862 | for exp in expLst loop |
| 8035 | 4845 | subRec := containsRecordType(exp); | |
| 8036 |
2/2✓ Branch 0 taken 3583 times.
✓ Branch 1 taken 1262 times.
|
4845 | if subRec then |
| 8037 | break; | ||
| 8038 | end if; | ||
| 8039 | end for; | ||
| 8040 | end if; | ||
| 8041 | 2491 | then (inExp,not subRec,subRec); | |
| 8042 | else (inExp,true,false); | ||
| 8043 | end matchcontinue; | ||
| 8044 | end if; | ||
| 8045 | end containsRecordTypeWork; | ||
| 8046 | |||
| 8047 | public function isEvaluatedConst | ||
| 8048 | "Returns true if an expression is really a constant scalar value. no calls, casts, or something" | ||
| 8049 | input DAE.Exp inExp; | ||
| 8050 | output Boolean outBoolean; | ||
| 8051 | algorithm | ||
| 8052 | outBoolean := match inExp | ||
| 8053 | case DAE.ICONST() then true; | ||
| 8054 | case DAE.RCONST() then true; | ||
| 8055 | case DAE.BCONST() then true; | ||
| 8056 | case DAE.SCONST() then true; | ||
| 8057 | case DAE.ENUM_LITERAL() then true; | ||
| 8058 | else false; | ||
| 8059 | end match; | ||
| 8060 | end isEvaluatedConst; | ||
| 8061 | |||
| 8062 | public function getEvaluatedConstInteger | ||
| 8063 | "Returns the constant integer value, fails for incorrect types." | ||
| 8064 | input DAE.Exp inExp; | ||
| 8065 | output Integer val; | ||
| 8066 | algorithm | ||
| 8067 | val := match inExp | ||
| 8068 | local | ||
| 8069 | Integer integer; | ||
| 8070 | case DAE.ICONST(integer = integer) | ||
| 8071 | then integer; | ||
| 8072 | case DAE.RCONST() | ||
| 8073 | algorithm | ||
| 8074 |
3/4✗ Branch 1 not taken.
✓ Branch 2 taken 132730 times.
✓ Branch 3 taken 541 times.
✓ Branch 4 taken 132189 times.
|
132730 | SOME(integer) := realExpIntLit(inExp); |
| 8075 | then integer; | ||
| 8076 | else fail(); | ||
| 8077 | end match; | ||
| 8078 | end getEvaluatedConstInteger; | ||
| 8079 | |||
| 8080 | public function getEvaluatedConstReal | ||
| 8081 | "Returns the constant real value, fails for incorrect types." | ||
| 8082 | input DAE.Exp inExp; | ||
| 8083 | output Real val; | ||
| 8084 | algorithm | ||
| 8085 | val := match inExp | ||
| 8086 | local | ||
| 8087 | Real integer; | ||
| 8088 | ✗ | case DAE.RCONST() then inExp.real; | |
| 8089 | ✗ | case DAE.ICONST() then intReal(inExp.integer); | |
| 8090 | else fail(); | ||
| 8091 | end match; | ||
| 8092 | end getEvaluatedConstReal; | ||
| 8093 | |||
| 8094 | public function isConst | ||
| 8095 | "Returns true if an expression is constant" | ||
| 8096 | input DAE.Exp inExp; | ||
| 8097 | output Boolean outBoolean; | ||
| 8098 | algorithm | ||
| 8099 | outBoolean := match inExp | ||
| 8100 | local | ||
| 8101 | Boolean res; | ||
| 8102 | DAE.Exp e,e1,e2; | ||
| 8103 | list<DAE.Exp> ae; | ||
| 8104 | list<list<DAE.Exp>> matrix; | ||
| 8105 | Absyn.Path path; | ||
| 8106 | list<DAE.Subscript> subs; | ||
| 8107 | |||
| 8108 | case DAE.ICONST() then true; | ||
| 8109 | case DAE.RCONST() then true; | ||
| 8110 | case DAE.BCONST() then true; | ||
| 8111 | case DAE.SCONST() then true; | ||
| 8112 | case DAE.ENUM_LITERAL() then true; | ||
| 8113 | |||
| 8114 | 249186 | case DAE.UNARY(exp = e) then isConst(e); | |
| 8115 | |||
| 8116 | 16315 | case DAE.CAST(exp = e) then isConst(e); | |
| 8117 | |||
| 8118 | case DAE.BINARY(e1,_,e2) | ||
| 8119 | algorithm | ||
| 8120 | 9551698 | res := isConst(e2); | |
| 8121 |
2/2✓ Branch 0 taken 601188 times.
✓ Branch 1 taken 8950510 times.
|
9551698 | then |
| 8122 | if res then isConst(e1) else false; | ||
| 8123 | |||
| 8124 | case DAE.IFEXP(e,e1,e2) | ||
| 8125 | algorithm | ||
| 8126 | 46503 | res := isConst(e2); | |
| 8127 |
2/2✓ Branch 0 taken 17475 times.
✓ Branch 1 taken 29028 times.
|
46503 | if res then |
| 8128 | 17475 | res := isConst(e1); | |
| 8129 | end if; | ||
| 8130 |
2/2✓ Branch 0 taken 10815 times.
✓ Branch 1 taken 35688 times.
|
46503 | then |
| 8131 | if res then isConst(e) else false; | ||
| 8132 | |||
| 8133 | case DAE.LBINARY(exp1=e1,exp2=e2) | ||
| 8134 | algorithm | ||
| 8135 | 2261 | res := isConst(e2); | |
| 8136 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 2259 times.
|
2261 | then |
| 8137 | if res then isConst(e1) else false; | ||
| 8138 | |||
| 8139 | 2814 | case DAE.LUNARY(exp=e) then isConst(e); | |
| 8140 | |||
| 8141 | case DAE.RELATION(exp1=e1,exp2=e2) | ||
| 8142 | algorithm | ||
| 8143 | 21314 | res := isConst(e2); | |
| 8144 |
2/2✓ Branch 0 taken 16922 times.
✓ Branch 1 taken 4392 times.
|
21314 | then |
| 8145 | if res then isConst(e1) else false; | ||
| 8146 | |||
| 8147 | 74530 | case DAE.ARRAY(array = ae) then isConstWorkList(ae); | |
| 8148 | |||
| 8149 | 11792 | case DAE.MATRIX(matrix = matrix) then isConstWorkListList(matrix); | |
| 8150 | |||
| 8151 | case DAE.RANGE(start=e1,step=NONE(),stop=e2) | ||
| 8152 | algorithm | ||
| 8153 | 4464 | res := isConst(e2); | |
| 8154 |
2/2✓ Branch 0 taken 3375 times.
✓ Branch 1 taken 1089 times.
|
4464 | then |
| 8155 | if res then isConst(e1) else false; | ||
| 8156 | |||
| 8157 | case DAE.RANGE(start=e,step=SOME(e1),stop=e2) | ||
| 8158 | algorithm | ||
| 8159 | 11 | res := isConst(e2); | |
| 8160 |
2/2✓ Branch 0 taken 7 times.
✓ Branch 1 taken 4 times.
|
11 | if res then |
| 8161 | 7 | res := isConst(e1); | |
| 8162 | end if; | ||
| 8163 |
2/2✓ Branch 0 taken 7 times.
✓ Branch 1 taken 4 times.
|
11 | then |
| 8164 | if res then isConst(e) else false; | ||
| 8165 | |||
| 8166 | 455 | case DAE.PARTEVALFUNCTION(expList = ae) then isConstWorkList(ae); | |
| 8167 | |||
| 8168 | 517 | case DAE.TUPLE(PR = ae) then isConstWorkList(ae); | |
| 8169 | |||
| 8170 | case DAE.ASUB(exp=e,sub=subs) | ||
| 8171 | algorithm | ||
| 8172 |
4/4✓ Branch 0 taken 5429 times.
✓ Branch 1 taken 5400 times.
✓ Branch 2 taken 5429 times.
✓ Branch 3 taken 5400 times.
|
10829 | ae := list(Expression.getSubscriptExp(sub) for sub in subs); |
| 8173 | 5400 | res := isConst(e); | |
| 8174 |
2/2✓ Branch 0 taken 1766 times.
✓ Branch 1 taken 3634 times.
|
5400 | then |
| 8175 | if res then isConstWorkList(ae) else false; | ||
| 8176 | |||
| 8177 | 36 | case DAE.TSUB(exp=e) then isConst(e); | |
| 8178 | |||
| 8179 | 1 | case DAE.SIZE(exp=e,sz=NONE()) then isConst(e); | |
| 8180 | |||
| 8181 | case DAE.SIZE(exp=e1,sz=SOME(e2)) | ||
| 8182 | algorithm | ||
| 8183 | 1158 | res := isConst(e2); | |
| 8184 |
1/2✓ Branch 0 taken 1158 times.
✗ Branch 1 not taken.
|
1158 | then |
| 8185 | if res then isConst(e1) else false; | ||
| 8186 | |||
| 8187 | 167380 | case DAE.CALL(expLst=ae, attr=DAE.CALL_ATTR(builtin=false, isImpure=false)) then isConstWorkList(ae); | |
| 8188 |
2/2✓ Branch 2 taken 167216 times.
✓ Branch 3 taken 731 times.
|
167947 | case DAE.CALL(path=path, expLst=ae, attr=DAE.CALL_ATTR(builtin=true)) then |
| 8189 | if listMember(AbsynUtil.pathFirstIdent(path), | ||
| 8190 | {"initial","terminal","sample" /* der/edge/change/pre belongs to this list usually, but if we optimize the expression, we might end up with pre of a constant expression... */} | ||
| 8191 | ) then false else isConstWorkList(ae); | ||
| 8192 | |||
| 8193 | 25254 | case DAE.RECORD(exps=ae) then isConstWorkList(ae); | |
| 8194 | |||
| 8195 | /*TODO:Make this work for multiple iters, guard exps*/ | ||
| 8196 | case DAE.REDUCTION(expr=e1,iterators={DAE.REDUCTIONITER(exp=e2)}) | ||
| 8197 | algorithm | ||
| 8198 | 854 | res := isConst(e2); | |
| 8199 |
2/2✓ Branch 0 taken 245 times.
✓ Branch 1 taken 609 times.
|
854 | then |
| 8200 | if res then isConst(e1) else false; | ||
| 8201 | |||
| 8202 | 1256 | case DAE.BOX(exp=e) then isConst(e); | |
| 8203 | |||
| 8204 | else false; | ||
| 8205 | end match; | ||
| 8206 | end isConst; | ||
| 8207 | |||
| 8208 | protected function isConstValueWork | ||
| 8209 | "Returns true if an expression is a constant value" | ||
| 8210 | input DAE.Exp inExp; | ||
| 8211 | output Boolean outBoolean; | ||
| 8212 | algorithm | ||
| 8213 | outBoolean := match inExp | ||
| 8214 | local | ||
| 8215 | list<DAE.Exp> ae; | ||
| 8216 | list<list<DAE.Exp>> matrix; | ||
| 8217 | |||
| 8218 | case DAE.ICONST() then true; | ||
| 8219 | case DAE.RCONST() then true; | ||
| 8220 | case DAE.BCONST() then true; | ||
| 8221 | case DAE.SCONST() then true; | ||
| 8222 | case DAE.ENUM_LITERAL() then true; | ||
| 8223 | 47760 | case DAE.ARRAY(array = ae) then isConstValueWorkList(ae); | |
| 8224 | 1072 | case DAE.MATRIX(matrix = matrix) then isConstValueWorkListList(matrix); | |
| 8225 | case DAE.RECORD() then true; | ||
| 8226 | case DAE.METARECORDCALL() then true; | ||
| 8227 | else false; | ||
| 8228 | |||
| 8229 | end match; | ||
| 8230 | end isConstValueWork; | ||
| 8231 | |||
| 8232 | public function isConstValue | ||
| 8233 | "Returns true if an expression is a constant value (not a composite operation)" | ||
| 8234 | input DAE.Exp inExp; | ||
| 8235 | output Boolean outBoolean; | ||
| 8236 | algorithm | ||
| 8237 | 110011687 | outBoolean := isConstValueWork(inExp); | |
| 8238 | end isConstValue; | ||
| 8239 | |||
| 8240 | public function isConstWorkList | ||
| 8241 | "Returns true if a list of expressions is constant" | ||
| 8242 | input list<DAE.Exp> inExps; | ||
| 8243 | output Boolean outBoolean; | ||
| 8244 | protected | ||
| 8245 | DAE.Exp e; | ||
| 8246 | list<DAE.Exp> exps; | ||
| 8247 | Boolean b = true; | ||
| 8248 | algorithm | ||
| 8249 | exps := inExps; | ||
| 8250 |
4/4✓ Branch 0 taken 2534336 times.
✓ Branch 1 taken 1903776 times.
✓ Branch 2 taken 2417608 times.
✓ Branch 3 taken 116728 times.
|
4438112 | while b and not listEmpty(exps) loop |
| 8251 | 2417608 | e::exps := exps; | |
| 8252 | 2417608 | b := isConst(e); | |
| 8253 | end while; | ||
| 8254 | outBoolean := b; | ||
| 8255 | end isConstWorkList; | ||
| 8256 | |||
| 8257 | protected function isConstWorkListList | ||
| 8258 | input list<list<DAE.Exp>> inExps; | ||
| 8259 | output Boolean outIsConst; | ||
| 8260 | protected | ||
| 8261 | list<DAE.Exp> e; | ||
| 8262 | list<list<DAE.Exp>> exps; | ||
| 8263 | Boolean b = true; | ||
| 8264 | algorithm | ||
| 8265 | exps := inExps; | ||
| 8266 |
4/4✓ Branch 0 taken 31475 times.
✓ Branch 1 taken 5451 times.
✓ Branch 2 taken 25134 times.
✓ Branch 3 taken 6341 times.
|
36926 | while b and not listEmpty(exps) loop |
| 8267 | 25134 | e::exps := exps; | |
| 8268 | 25134 | b := isConstWorkList(e); | |
| 8269 | end while; | ||
| 8270 | outIsConst := b; | ||
| 8271 | end isConstWorkListList; | ||
| 8272 | |||
| 8273 | protected function isConstValueWorkList | ||
| 8274 | "Returns true if a list of expressions is a constant value" | ||
| 8275 | input list<DAE.Exp> inExps; | ||
| 8276 | output Boolean outBoolean; | ||
| 8277 | protected | ||
| 8278 | DAE.Exp e; | ||
| 8279 | list<DAE.Exp> exps; | ||
| 8280 | Boolean b = true; | ||
| 8281 | algorithm | ||
| 8282 | exps := inExps; | ||
| 8283 |
4/4✓ Branch 0 taken 68639 times.
✓ Branch 1 taken 43229 times.
✓ Branch 2 taken 62639 times.
✓ Branch 3 taken 6000 times.
|
111868 | while b and not listEmpty(exps) loop |
| 8284 | 62639 | e::exps := exps; | |
| 8285 | 62639 | b := isConstValueWork(e); | |
| 8286 | end while; | ||
| 8287 | outBoolean := b; | ||
| 8288 | end isConstValueWorkList; | ||
| 8289 | |||
| 8290 | protected function isConstValueWorkListList | ||
| 8291 | input list<list<DAE.Exp>> inExps; | ||
| 8292 | output Boolean outIsConst; | ||
| 8293 | protected | ||
| 8294 | list<DAE.Exp> e; | ||
| 8295 | list<list<DAE.Exp>> exps; | ||
| 8296 | Boolean b = true; | ||
| 8297 | algorithm | ||
| 8298 | exps := inExps; | ||
| 8299 |
4/4✓ Branch 0 taken 1788 times.
✓ Branch 1 taken 753 times.
✓ Branch 2 taken 1469 times.
✓ Branch 3 taken 319 times.
|
2541 | while b and not listEmpty(exps) loop |
| 8300 | 1469 | e::exps := exps; | |
| 8301 | 1469 | b := isConstValueWorkList(e); | |
| 8302 | end while; | ||
| 8303 | outIsConst := b; | ||
| 8304 | end isConstValueWorkListList; | ||
| 8305 | |||
| 8306 | public function isNotConst | ||
| 8307 | "author: PA | ||
| 8308 | Check if expression is not constant." | ||
| 8309 | input DAE.Exp e; | ||
| 8310 | output Boolean nb; | ||
| 8311 | protected | ||
| 8312 | Boolean b; | ||
| 8313 | algorithm | ||
| 8314 | 4176 | b := isConst(e); | |
| 8315 | 4176 | nb := boolNot(b); | |
| 8316 | end isNotConst; | ||
| 8317 | |||
| 8318 | public function isRelation "Returns true if expression is a relation" | ||
| 8319 | input DAE.Exp inExp; | ||
| 8320 | output Boolean outBoolean; | ||
| 8321 | algorithm | ||
| 8322 | outBoolean := match inExp | ||
| 8323 | case DAE.RELATION() then true; | ||
| 8324 | else false; | ||
| 8325 | end match; | ||
| 8326 | end isRelation; | ||
| 8327 | |||
| 8328 | public function isEventTriggeringFunctionExp | ||
| 8329 | input DAE.Exp inExp; | ||
| 8330 | output Boolean outB; | ||
| 8331 | algorithm | ||
| 8332 | outB := match inExp | ||
| 8333 | case DAE.CALL(path = Absyn.IDENT("div")) then true; | ||
| 8334 | case DAE.CALL(path = Absyn.IDENT("mod")) then true; | ||
| 8335 | case DAE.CALL(path = Absyn.IDENT("rem")) then true; | ||
| 8336 | case DAE.CALL(path = Absyn.IDENT("ceil")) then true; | ||
| 8337 | case DAE.CALL(path = Absyn.IDENT("floor")) then true; | ||
| 8338 | case DAE.CALL(path = Absyn.IDENT("integer")) then true; | ||
| 8339 | else false; | ||
| 8340 | end match; | ||
| 8341 | end isEventTriggeringFunctionExp; | ||
| 8342 | |||
| 8343 | public function isAddOrSub "returns true if operator is ADD or SUB" | ||
| 8344 | input DAE.Operator op; | ||
| 8345 | output Boolean res; | ||
| 8346 | algorithm | ||
| 8347 |
4/4✓ Branch 1 taken 11666738 times.
✓ Branch 2 taken 7379880 times.
✓ Branch 4 taken 1614366 times.
✓ Branch 5 taken 10052372 times.
|
19046618 | res := isAdd(op) or isSub(op); |
| 8348 | end isAddOrSub; | ||
| 8349 | |||
| 8350 | public function isAdd "returns true if operator is ADD" | ||
| 8351 | input DAE.Operator op; | ||
| 8352 | output Boolean res; | ||
| 8353 | algorithm | ||
| 8354 | res := match op | ||
| 8355 | case DAE.ADD() then true; | ||
| 8356 | case DAE.ADD_ARR() then true; | ||
| 8357 | else false; | ||
| 8358 | end match; | ||
| 8359 | end isAdd; | ||
| 8360 | |||
| 8361 | public function isSub "returns true if operator is SUB" | ||
| 8362 | input DAE.Operator op; | ||
| 8363 | output Boolean res; | ||
| 8364 | algorithm | ||
| 8365 | res := match op | ||
| 8366 | case DAE.SUB() then true; | ||
| 8367 | case DAE.SUB_ARR() then true; | ||
| 8368 | else false; | ||
| 8369 | end match; | ||
| 8370 | end isSub; | ||
| 8371 | |||
| 8372 | public function isAddOrSubBinary "returns true if BINARY is a+b or a-b" | ||
| 8373 | input DAE.Exp iExp; | ||
| 8374 | output Boolean res; | ||
| 8375 | protected | ||
| 8376 | DAE.Operator op; | ||
| 8377 | algorithm | ||
| 8378 | res := match iExp | ||
| 8379 | ✗ | case DAE.BINARY(_,op,_) then isAddOrSub(op); | |
| 8380 | else false; | ||
| 8381 | end match; | ||
| 8382 | end isAddOrSubBinary; | ||
| 8383 | |||
| 8384 | public function isMulOrDiv "returns true if operator is MUL or DIV" | ||
| 8385 | input DAE.Operator op; | ||
| 8386 | output Boolean res = isMul(op) or isDiv(op); | ||
| 8387 | end isMulOrDiv; | ||
| 8388 | |||
| 8389 | public function isMul "returns true if operator is MUL" | ||
| 8390 | input DAE.Operator op; | ||
| 8391 | output Boolean res; | ||
| 8392 | algorithm | ||
| 8393 | res := match op | ||
| 8394 | case DAE.MUL() then true; | ||
| 8395 | case DAE.MUL_ARR() then true; | ||
| 8396 | else false; | ||
| 8397 | end match; | ||
| 8398 | end isMul; | ||
| 8399 | |||
| 8400 | public function isDiv "returns true if operator is DIV" | ||
| 8401 | input DAE.Operator op; | ||
| 8402 | output Boolean res; | ||
| 8403 | algorithm | ||
| 8404 | res := match op | ||
| 8405 | case DAE.DIV() then true; | ||
| 8406 | case DAE.DIV_ARR() then true; | ||
| 8407 | else false; | ||
| 8408 | end match; | ||
| 8409 | end isDiv; | ||
| 8410 | |||
| 8411 | public function isDivBinary "returns true if BINARY is a/b" | ||
| 8412 | input DAE.Exp iExp; | ||
| 8413 | output Boolean res; | ||
| 8414 | protected | ||
| 8415 | DAE.Operator op; | ||
| 8416 | algorithm | ||
| 8417 | res := match iExp | ||
| 8418 | 20877 | case DAE.BINARY(_,op,_) then isDiv(op); | |
| 8419 | else false; | ||
| 8420 | end match; | ||
| 8421 | end isDivBinary; | ||
| 8422 | |||
| 8423 | |||
| 8424 | public function isMulorDivBinary "returns true if BINARY is a/b or a*b" | ||
| 8425 | input DAE.Exp iExp; | ||
| 8426 | output Boolean res; | ||
| 8427 | protected | ||
| 8428 | DAE.Operator op; | ||
| 8429 | algorithm | ||
| 8430 | res := match iExp | ||
| 8431 | ✗ | case DAE.BINARY(_,op,_) then isMulOrDiv(op); | |
| 8432 | else false; | ||
| 8433 | end match; | ||
| 8434 | end isMulorDivBinary; | ||
| 8435 | |||
| 8436 | public function isPow "returns true if operator is POW" | ||
| 8437 | input DAE.Operator op; | ||
| 8438 | output Boolean res; | ||
| 8439 | algorithm | ||
| 8440 | res := match op | ||
| 8441 | case DAE.POW() then true; | ||
| 8442 | else false; | ||
| 8443 | end match; | ||
| 8444 | end isPow; | ||
| 8445 | |||
| 8446 | |||
| 8447 | public function isFunCall "return true if expression is DAE.CALL(path=Absyn.IDENT(name))" | ||
| 8448 | input DAE.Exp iExp; | ||
| 8449 | input String name; | ||
| 8450 | output Boolean res; | ||
| 8451 | algorithm | ||
| 8452 | res := match iExp | ||
| 8453 | local String name_; | ||
| 8454 |
4/4✓ Branch 0 taken 1616 times.
✓ Branch 1 taken 3618 times.
✓ Branch 3 taken 812 times.
✓ Branch 4 taken 804 times.
|
5234 | case DAE.CALL(path=Absyn.IDENT(name_)) then name_ == name; |
| 8455 | else false; | ||
| 8456 | end match; | ||
| 8457 | end isFunCall; | ||
| 8458 | |||
| 8459 | public function equalTypes "" | ||
| 8460 | input DAE.Type t1,t2; | ||
| 8461 | output Boolean b; | ||
| 8462 | algorithm b := matchcontinue(t1,t2) | ||
| 8463 | local | ||
| 8464 | list<DAE.Var> vars1,vars2; | ||
| 8465 | Type ty1,ty2; | ||
| 8466 | DAE.Dimensions ad1,ad2; | ||
| 8467 | list<Integer> li1,li2; | ||
| 8468 | |||
| 8469 | case(DAE.T_INTEGER(),DAE.T_INTEGER()) then true; | ||
| 8470 | case(DAE.T_REAL(),DAE.T_REAL()) then true; | ||
| 8471 | case(DAE.T_STRING(),DAE.T_STRING()) then true; | ||
| 8472 | case(DAE.T_BOOL(),DAE.T_BOOL()) then true; | ||
| 8473 | // BTH | ||
| 8474 | case(DAE.T_CLOCK(),DAE.T_CLOCK()) then true; | ||
| 8475 | |||
| 8476 | case(DAE.T_COMPLEX(varLst = vars1), DAE.T_COMPLEX(varLst = vars2)) | ||
| 8477 | ✗ | then equalTypesComplexVars(vars1,vars2); | |
| 8478 | |||
| 8479 | case(DAE.T_ARRAY(ty1,ad1),DAE.T_ARRAY(ty2,ad2)) | ||
| 8480 | algorithm | ||
| 8481 | ✗ | li1 := List.map(ad1, dimensionSize); | |
| 8482 | ✗ | li2 := List.map(ad2, dimensionSize); | |
| 8483 | ✗ | true := List.isEqualOnTrue(li1,li2,intEq); | |
| 8484 | ✗ | true := equalTypes(ty1,ty2); | |
| 8485 | then | ||
| 8486 | true; | ||
| 8487 | else false; | ||
| 8488 | end matchcontinue; | ||
| 8489 | end equalTypes; | ||
| 8490 | |||
| 8491 | protected function equalTypesComplexVars "" | ||
| 8492 | input list<DAE.Var> inVars1,inVars2; | ||
| 8493 | output Boolean b; | ||
| 8494 | algorithm | ||
| 8495 | b := matchcontinue(inVars1,inVars2) | ||
| 8496 | local | ||
| 8497 | DAE.Type t1,t2; | ||
| 8498 | String s1,s2; | ||
| 8499 | list<DAE.Var> vars1,vars2; | ||
| 8500 | |||
| 8501 | case({},{}) then true; | ||
| 8502 | |||
| 8503 | case(DAE.TYPES_VAR(name = s1, ty = t1)::vars1,DAE.TYPES_VAR(name = s2, ty = t2)::vars2) | ||
| 8504 | algorithm | ||
| 8505 | //print(" verify subvars: " + s1 + " and " + s2 + " to go: " + intString(listLength(vars1)) + " , " + intString(listLength(vars2)) + "\n"); | ||
| 8506 | ✗ | true := stringEq(s1,s2); | |
| 8507 | //print(" types: " + TypesDump.unparseType(t1) + " and " + TypesDump.unparseType(t2) + "\n"); | ||
| 8508 | ✗ | true := equalTypes(t1,t2); | |
| 8509 | //print(s1 + " and " + s2 + " EQUAL \n\n"); | ||
| 8510 | ✗ | then | |
| 8511 | equalTypesComplexVars(vars1,vars2); | ||
| 8512 | |||
| 8513 | else false; | ||
| 8514 | end matchcontinue; | ||
| 8515 | end equalTypesComplexVars; | ||
| 8516 | |||
| 8517 | public function typeBuiltin | ||
| 8518 | "Returns true if type is one of the builtin types." | ||
| 8519 | input DAE.Type inType; | ||
| 8520 | output Boolean outBoolean; | ||
| 8521 | algorithm | ||
| 8522 | outBoolean := match inType | ||
| 8523 | case DAE.T_INTEGER() then true; | ||
| 8524 | case DAE.T_REAL() then true; | ||
| 8525 | case DAE.T_STRING() then true; | ||
| 8526 | case DAE.T_BOOL() then true; | ||
| 8527 | // BTH | ||
| 8528 | case DAE.T_CLOCK() then true; | ||
| 8529 | else false; | ||
| 8530 | end match; | ||
| 8531 | end typeBuiltin; | ||
| 8532 | |||
| 8533 | public function isWholeDim "" | ||
| 8534 | input DAE.Subscript s; | ||
| 8535 | output Boolean b; | ||
| 8536 | algorithm | ||
| 8537 | b := match s | ||
| 8538 | case DAE.WHOLEDIM() then true; | ||
| 8539 | else false; | ||
| 8540 | end match; | ||
| 8541 | end isWholeDim; | ||
| 8542 | |||
| 8543 | public function isInt "" | ||
| 8544 | input DAE.Type it; | ||
| 8545 | output Boolean re; | ||
| 8546 | algorithm | ||
| 8547 | re := match it | ||
| 8548 | local | ||
| 8549 | Type t1; | ||
| 8550 | case DAE.T_INTEGER() then true; | ||
| 8551 | ✗ | case DAE.T_ARRAY(ty=t1) then isInt(t1); | |
| 8552 | else false; | ||
| 8553 | end match; | ||
| 8554 | end isInt; | ||
| 8555 | |||
| 8556 | public function isReal "" | ||
| 8557 | input DAE.Type it; | ||
| 8558 | output Boolean re; | ||
| 8559 | algorithm | ||
| 8560 | re := match it | ||
| 8561 | local | ||
| 8562 | Type t1; | ||
| 8563 | case DAE.T_REAL() then true; | ||
| 8564 | ✗ | case DAE.T_ARRAY(ty=t1) then isReal(t1); | |
| 8565 | else false; | ||
| 8566 | end match; | ||
| 8567 | end isReal; | ||
| 8568 | |||
| 8569 | public function isExpReal "" | ||
| 8570 | input DAE.Exp e; | ||
| 8571 | output Boolean re; | ||
| 8572 | algorithm | ||
| 8573 | ✗ | re := isReal(typeof(e)); | |
| 8574 | end isExpReal; | ||
| 8575 | |||
| 8576 | public function isConstZeroLength | ||
| 8577 | "Return true if expression has zero-dimension" | ||
| 8578 | input DAE.Exp inExp; | ||
| 8579 | output Boolean outBoolean; | ||
| 8580 | algorithm | ||
| 8581 | outBoolean := match inExp | ||
| 8582 | case DAE.ARRAY(array={}) then true; | ||
| 8583 | case DAE.MATRIX(matrix={}) then true; | ||
| 8584 | else false; | ||
| 8585 | end match; | ||
| 8586 | end isConstZeroLength; | ||
| 8587 | |||
| 8588 | public function isConstFalse | ||
| 8589 | "Return true if expression is false" | ||
| 8590 | input DAE.Exp inExp; | ||
| 8591 | output Boolean outBoolean; | ||
| 8592 | algorithm | ||
| 8593 | outBoolean := match inExp | ||
| 8594 | case DAE.BCONST(false) then true; | ||
| 8595 | else false; | ||
| 8596 | end match; | ||
| 8597 | end isConstFalse; | ||
| 8598 | |||
| 8599 | public function isConstTrue | ||
| 8600 | "Return true if expression is true" | ||
| 8601 | input DAE.Exp inExp; | ||
| 8602 | output Boolean outBoolean; | ||
| 8603 | algorithm | ||
| 8604 | outBoolean := match inExp | ||
| 8605 | case DAE.BCONST(true) then true; | ||
| 8606 | else false; | ||
| 8607 | end match; | ||
| 8608 | end isConstTrue; | ||
| 8609 | |||
| 8610 | public function isConstOne | ||
| 8611 | "Return true if expression is 1" | ||
| 8612 | input DAE.Exp inExp; | ||
| 8613 | output Boolean outBoolean; | ||
| 8614 | algorithm | ||
| 8615 | outBoolean := match inExp | ||
| 8616 | local Real rval; Integer ival; | ||
| 8617 | |||
| 8618 | // constant real 1.0 | ||
| 8619 | 9180174 | case DAE.RCONST(rval) then realEq(rval, 1.0); | |
| 8620 | // constant integer 1 | ||
| 8621 | 2999 | case DAE.ICONST(ival) then intEq(ival, 1); | |
| 8622 | // anything else | ||
| 8623 | else false; | ||
| 8624 | end match; | ||
| 8625 | end isConstOne; | ||
| 8626 | |||
| 8627 | public function isConstMinusOne | ||
| 8628 | "Return true if expression is -1" | ||
| 8629 | input DAE.Exp inExp; | ||
| 8630 | output Boolean outBoolean; | ||
| 8631 | algorithm | ||
| 8632 | outBoolean := match inExp | ||
| 8633 | local Real rval; Integer ival; | ||
| 8634 | |||
| 8635 | // is real -1.0 | ||
| 8636 | 8234698 | case DAE.RCONST(rval) then realEq(rval, -1.0); | |
| 8637 | // is integer -1 | ||
| 8638 | 2977 | case DAE.ICONST(ival) then intEq(ival, -1); | |
| 8639 | // anything else | ||
| 8640 | else false; | ||
| 8641 | end match; | ||
| 8642 | end isConstMinusOne; | ||
| 8643 | |||
| 8644 | |||
| 8645 | public function isGreatereqOrLesseq | ||
| 8646 | input DAE.Operator op; | ||
| 8647 | output Boolean b; | ||
| 8648 | algorithm | ||
| 8649 | b := match op | ||
| 8650 | case DAE.GREATEREQ() then true; | ||
| 8651 | case DAE.LESSEQ() then true; | ||
| 8652 | else false; | ||
| 8653 | end match; | ||
| 8654 | end isGreatereqOrLesseq; | ||
| 8655 | |||
| 8656 | public function isLesseqOrLess | ||
| 8657 | input DAE.Operator op; | ||
| 8658 | output Boolean b; | ||
| 8659 | algorithm | ||
| 8660 | b := match op | ||
| 8661 | case DAE.LESS() then true; | ||
| 8662 | case DAE.LESSEQ() then true; | ||
| 8663 | else false; | ||
| 8664 | end match; | ||
| 8665 | end isLesseqOrLess; | ||
| 8666 | |||
| 8667 | |||
| 8668 | public function containVectorFunctioncall | ||
| 8669 | "Returns true if expression or subexpression is a | ||
| 8670 | functioncall that returns an array, otherwise false. | ||
| 8671 | Note: the der operator is represented as a | ||
| 8672 | function call but still return false." | ||
| 8673 | input DAE.Exp inExp; | ||
| 8674 | output Boolean outBoolean; | ||
| 8675 | algorithm | ||
| 8676 | outBoolean := match inExp | ||
| 8677 | local | ||
| 8678 | DAE.Exp e1,e2,e,e3; | ||
| 8679 | Boolean res; | ||
| 8680 | list<DAE.Exp> elst,flatexplst; | ||
| 8681 | list<list<DAE.Exp>> explst; | ||
| 8682 | |||
| 8683 | // der is not a vector function | ||
| 8684 | case DAE.CALL(path = Absyn.IDENT(name = "der")) then false; | ||
| 8685 | |||
| 8686 | // pre is not a vector function, adrpo: 2009-03-03 -> pre is also needed here! | ||
| 8687 | case DAE.CALL(path = Absyn.IDENT(name = "pre")) then false; | ||
| 8688 | case DAE.CALL(path = Absyn.IDENT(name = "previous")) then false; | ||
| 8689 | // inStream and actualStream are not a vector function, adrpo: 2010-08-31 -> they are also needed here! | ||
| 8690 | case DAE.CALL(path = Absyn.IDENT(name = "inStream")) then false; | ||
| 8691 | case DAE.CALL(path = Absyn.IDENT(name = "actualStream")) then false; | ||
| 8692 | |||
| 8693 | // a call that has an return array type returns true | ||
| 8694 | case DAE.CALL(attr = DAE.CALL_ATTR(ty = DAE.T_ARRAY())) then true; | ||
| 8695 | |||
| 8696 | // any other call returns false | ||
| 8697 | case DAE.CALL() then false; | ||
| 8698 | |||
| 8699 | // partial evaluation | ||
| 8700 | case DAE.PARTEVALFUNCTION(expList = elst) // stefan | ||
| 8701 | ✗ | then | |
| 8702 | List.any(elst,containVectorFunctioncall); | ||
| 8703 | |||
| 8704 | // binary operators, e1 has a vector function call | ||
| 8705 | case DAE.BINARY(exp1 = e1) guard containVectorFunctioncall(e1) | ||
| 8706 | then | ||
| 8707 | true; | ||
| 8708 | // binary operators, e2 has a vector function call | ||
| 8709 | case DAE.BINARY(exp2 = e2) guard containVectorFunctioncall(e2) | ||
| 8710 | then | ||
| 8711 | true; | ||
| 8712 | // unary operators | ||
| 8713 | case DAE.UNARY(exp = e) | ||
| 8714 | 513 | then | |
| 8715 | containVectorFunctioncall(e); | ||
| 8716 | // logical binary operators, e1 is a vector call | ||
| 8717 | case DAE.LBINARY(exp1 = e1) guard containVectorFunctioncall(e1) | ||
| 8718 | then | ||
| 8719 | true; | ||
| 8720 | // logical binary operators, e2 is a vector call | ||
| 8721 | case DAE.LBINARY(exp2 = e2) guard containVectorFunctioncall(e2) | ||
| 8722 | then | ||
| 8723 | true; | ||
| 8724 | // logical unary operators, e is a vector call | ||
| 8725 | case DAE.LUNARY(exp = e) | ||
| 8726 | ✗ | then | |
| 8727 | containVectorFunctioncall(e); | ||
| 8728 | // relations e1 op e2, where e1 is a vector call | ||
| 8729 | case DAE.RELATION(exp1 = e1) guard containVectorFunctioncall(e1) | ||
| 8730 | then | ||
| 8731 | true; | ||
| 8732 | // relations e1 op e2, where e2 is a vector call | ||
| 8733 | case DAE.RELATION(exp2 = e2) guard containVectorFunctioncall(e2) | ||
| 8734 | then | ||
| 8735 | true; | ||
| 8736 | // if expression where the condition is a vector call | ||
| 8737 | case DAE.IFEXP(expCond = e1) guard containVectorFunctioncall(e1) | ||
| 8738 | then | ||
| 8739 | true; | ||
| 8740 | // if expression where the then part is a vector call | ||
| 8741 | case DAE.IFEXP(expThen = e2) guard containVectorFunctioncall(e2) | ||
| 8742 | then | ||
| 8743 | true; | ||
| 8744 | // if expression where the else part is a vector call | ||
| 8745 | case DAE.IFEXP(expElse = e3) guard containVectorFunctioncall(e3) | ||
| 8746 | then | ||
| 8747 | true; | ||
| 8748 | // arrays | ||
| 8749 | case DAE.ARRAY(array = elst) | ||
| 8750 | 9784 | then | |
| 8751 | List.any(elst, containVectorFunctioncall); | ||
| 8752 | // matrices | ||
| 8753 | case DAE.MATRIX(matrix = explst) | ||
| 8754 | algorithm | ||
| 8755 | 155 | flatexplst := List.flatten(explst); | |
| 8756 | 155 | res := List.any(flatexplst, containVectorFunctioncall); | |
| 8757 | then | ||
| 8758 | res; | ||
| 8759 | // ranges [e1:step:e2], where e1 is a vector call | ||
| 8760 | case DAE.RANGE(start = e1) guard containVectorFunctioncall(e1) | ||
| 8761 | then | ||
| 8762 | true; | ||
| 8763 | // ranges [e1:step:e2], where e2 is a vector call | ||
| 8764 | case DAE.RANGE(stop = e2) guard containVectorFunctioncall(e2) | ||
| 8765 | then | ||
| 8766 | true; | ||
| 8767 | // ranges [e1:step:e2], where step is a vector call | ||
| 8768 | case DAE.RANGE(step = SOME(e)) guard containVectorFunctioncall(e) | ||
| 8769 | then | ||
| 8770 | true; | ||
| 8771 | // tuples return true all the time???!! adrpo: FIXME! TODO! is this really true? | ||
| 8772 | case DAE.TUPLE(PR = elst) | ||
| 8773 | ✗ | then | |
| 8774 | List.any(elst, containVectorFunctioncall); | ||
| 8775 | // cast | ||
| 8776 | case DAE.CAST(exp = e) | ||
| 8777 | 3 | then | |
| 8778 | containVectorFunctioncall(e); | ||
| 8779 | // size operator | ||
| 8780 | case DAE.SIZE(exp = e1) guard containVectorFunctioncall(e1) | ||
| 8781 | then | ||
| 8782 | true; | ||
| 8783 | // size operator | ||
| 8784 | case DAE.SIZE(sz = SOME(e2)) guard containVectorFunctioncall(e2) | ||
| 8785 | then | ||
| 8786 | true; | ||
| 8787 | // any other expressions return false | ||
| 8788 | else false; | ||
| 8789 | end match; | ||
| 8790 | end containVectorFunctioncall; | ||
| 8791 | |||
| 8792 | public function containFunctioncall | ||
| 8793 | "Returns true if expression or subexpression | ||
| 8794 | is a functioncall, otherwise false. | ||
| 8795 | Note: the der and pre operators are represented | ||
| 8796 | as function calls but still returns false." | ||
| 8797 | input DAE.Exp inExp; | ||
| 8798 | output Boolean outBoolean; | ||
| 8799 | algorithm | ||
| 8800 | outBoolean := match inExp | ||
| 8801 | local | ||
| 8802 | DAE.Exp e1,e2,e,e3; | ||
| 8803 | Boolean res; | ||
| 8804 | list<DAE.Exp> elst,flatexplst; | ||
| 8805 | list<list<DAE.Exp>> explst; | ||
| 8806 | |||
| 8807 | // der(x) is not a function call | ||
| 8808 | case DAE.CALL(path = Absyn.IDENT(name = "der")) then false; | ||
| 8809 | |||
| 8810 | // pre(x) is not a function call | ||
| 8811 | case DAE.CALL(path = Absyn.IDENT(name = "pre")) then false; | ||
| 8812 | |||
| 8813 | case DAE.CALL(path = Absyn.IDENT(name = "previous")) then false; | ||
| 8814 | |||
| 8815 | // any other call is a function call | ||
| 8816 | case DAE.CALL() then true; | ||
| 8817 | |||
| 8818 | // partial evaluation functions | ||
| 8819 | case DAE.PARTEVALFUNCTION(expList = elst) // stefan | ||
| 8820 | algorithm | ||
| 8821 | ✗ | res := List.any(elst,containFunctioncall); | |
| 8822 | then | ||
| 8823 | res; | ||
| 8824 | |||
| 8825 | // binary | ||
| 8826 | case DAE.BINARY(exp1 = e1) guard containFunctioncall(e1) | ||
| 8827 | then | ||
| 8828 | true; | ||
| 8829 | |||
| 8830 | case DAE.BINARY(exp2 = e2) guard containFunctioncall(e2) | ||
| 8831 | then | ||
| 8832 | true; | ||
| 8833 | |||
| 8834 | // unary | ||
| 8835 | case DAE.UNARY(exp = e) | ||
| 8836 | 11034 | then | |
| 8837 | containFunctioncall(e); | ||
| 8838 | |||
| 8839 | // logical binary | ||
| 8840 | case DAE.LBINARY(exp1 = e1) guard containFunctioncall(e1) | ||
| 8841 | then | ||
| 8842 | true; | ||
| 8843 | |||
| 8844 | case DAE.LBINARY(exp2 = e2) guard containFunctioncall(e2) | ||
| 8845 | then | ||
| 8846 | true; | ||
| 8847 | |||
| 8848 | // logical unary | ||
| 8849 | case DAE.LUNARY(exp = e) | ||
| 8850 | 970 | then | |
| 8851 | containFunctioncall(e); | ||
| 8852 | |||
| 8853 | // relations | ||
| 8854 | case DAE.RELATION(exp1 = e1) guard containFunctioncall(e1) | ||
| 8855 | then | ||
| 8856 | true; | ||
| 8857 | |||
| 8858 | case DAE.RELATION(exp2 = e2) guard containFunctioncall(e2) | ||
| 8859 | then | ||
| 8860 | true; | ||
| 8861 | |||
| 8862 | // if expressions | ||
| 8863 | case DAE.IFEXP(expCond = e1) guard containFunctioncall(e1) | ||
| 8864 | then | ||
| 8865 | true; | ||
| 8866 | |||
| 8867 | case DAE.IFEXP(expThen = e2) guard containFunctioncall(e2) | ||
| 8868 | then | ||
| 8869 | true; | ||
| 8870 | |||
| 8871 | case DAE.IFEXP(expElse = e3) guard containFunctioncall(e3) | ||
| 8872 | then | ||
| 8873 | true; | ||
| 8874 | |||
| 8875 | // arrays | ||
| 8876 | case DAE.ARRAY(array = elst) | ||
| 8877 | 6134 | then | |
| 8878 | List.any(elst, containFunctioncall); | ||
| 8879 | |||
| 8880 | // matrix | ||
| 8881 | case DAE.MATRIX(matrix = explst) | ||
| 8882 | algorithm | ||
| 8883 | 65 | flatexplst := List.flatten(explst); | |
| 8884 | 65 | res := List.any(flatexplst, containFunctioncall); | |
| 8885 | then | ||
| 8886 | res; | ||
| 8887 | |||
| 8888 | // ranges | ||
| 8889 | case DAE.RANGE(start = e1) guard containFunctioncall(e1) | ||
| 8890 | then | ||
| 8891 | true; | ||
| 8892 | |||
| 8893 | case DAE.RANGE(stop = e2) guard containFunctioncall(e2) | ||
| 8894 | then | ||
| 8895 | true; | ||
| 8896 | |||
| 8897 | case DAE.RANGE(step = SOME(e)) guard containFunctioncall(e) | ||
| 8898 | then | ||
| 8899 | true; | ||
| 8900 | |||
| 8901 | // tuples return true all the time???!! adrpo: FIXME! TODO! is this really true? | ||
| 8902 | case DAE.TUPLE(PR = elst) | ||
| 8903 | 174 | then | |
| 8904 | List.any(elst, containVectorFunctioncall); | ||
| 8905 | |||
| 8906 | // cast | ||
| 8907 | case DAE.CAST(exp = e) | ||
| 8908 | 520 | then | |
| 8909 | containFunctioncall(e); | ||
| 8910 | |||
| 8911 | // asub | ||
| 8912 | case DAE.ASUB(exp = e) | ||
| 8913 | 4132 | then | |
| 8914 | containFunctioncall(e); | ||
| 8915 | |||
| 8916 | // size | ||
| 8917 | case DAE.SIZE(exp = e1) guard containFunctioncall(e1) | ||
| 8918 | then | ||
| 8919 | true; | ||
| 8920 | |||
| 8921 | case DAE.SIZE(sz = SOME(e2)) guard containFunctioncall(e2) | ||
| 8922 | then | ||
| 8923 | true; | ||
| 8924 | |||
| 8925 | // anything else | ||
| 8926 | else false; | ||
| 8927 | |||
| 8928 | end match; | ||
| 8929 | end containFunctioncall; | ||
| 8930 | |||
| 8931 | public function expIntOrder "Function: expIntOrder | ||
| 8932 | This function takes a list of Exp, assumes they are all ICONST | ||
| 8933 | and checks wheter the ICONST are in order." | ||
| 8934 | input Integer expectedValue; | ||
| 8935 | input list<DAE.Exp> integers; | ||
| 8936 | output Boolean ob; | ||
| 8937 | algorithm | ||
| 8938 | ob := match(expectedValue,integers) | ||
| 8939 | local | ||
| 8940 | list<DAE.Exp> expl; | ||
| 8941 | Integer x1,x2; | ||
| 8942 | case(_,{}) then true; | ||
| 8943 | case(x1, DAE.ICONST(x2)::expl) guard intEq(x1, x2) | ||
| 8944 | ✗ | then | |
| 8945 | expIntOrder(x1+1,expl); | ||
| 8946 | else false; | ||
| 8947 | end match; | ||
| 8948 | end expIntOrder; | ||
| 8949 | |||
| 8950 | public function isArray "returns true if expression is an array. | ||
| 8951 | " | ||
| 8952 | input DAE.Exp inExp; | ||
| 8953 | output Boolean outB; | ||
| 8954 | algorithm | ||
| 8955 | outB := match inExp | ||
| 8956 | case DAE.ARRAY() then true; | ||
| 8957 | case DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=DAE.ARRAY()) then true; | ||
| 8958 | else false; | ||
| 8959 | end match; | ||
| 8960 | end isArray; | ||
| 8961 | |||
| 8962 | public function isMetaArray "returns true if expression is a MM array." | ||
| 8963 | input DAE.Exp inExp; | ||
| 8964 | output Boolean outB; | ||
| 8965 | algorithm | ||
| 8966 | 221 | outB := Types.isMetaArray(typeof(inExp)); | |
| 8967 | end isMetaArray; | ||
| 8968 | |||
| 8969 | public function isMatrix "returns true if expression is an matrix. | ||
| 8970 | " | ||
| 8971 | input DAE.Exp inExp; | ||
| 8972 | output Boolean outB; | ||
| 8973 | algorithm | ||
| 8974 | outB := match inExp | ||
| 8975 | case DAE.MATRIX() then true; | ||
| 8976 | case DAE.UNARY(operator=DAE.UMINUS_ARR(),exp=DAE.MATRIX()) then true; | ||
| 8977 | else false; | ||
| 8978 | end match; | ||
| 8979 | end isMatrix; | ||
| 8980 | |||
| 8981 | public function isVector | ||
| 8982 | "Returns true if the expression is a vector, i.e. an array with one dimension, | ||
| 8983 | otherwise false." | ||
| 8984 | input DAE.Exp inExp; | ||
| 8985 | output Boolean outIsVector; | ||
| 8986 | algorithm | ||
| 8987 | outIsVector := match inExp | ||
| 8988 | // Nested arrays are not vectors. | ||
| 8989 | case DAE.ARRAY(ty = DAE.T_ARRAY(ty = DAE.T_ARRAY())) then false; | ||
| 8990 | // Non-nested array with one dimension is a vector. | ||
| 8991 | case DAE.ARRAY(ty = DAE.T_ARRAY(dims = {_})) then true; | ||
| 8992 | else false; | ||
| 8993 | end match; | ||
| 8994 | end isVector; | ||
| 8995 | |||
| 8996 | public function isUnary | ||
| 8997 | "Returns true if expression is an unary." | ||
| 8998 | input DAE.Exp inExp; | ||
| 8999 | output Boolean outB; | ||
| 9000 | algorithm | ||
| 9001 | outB:= match inExp | ||
| 9002 | case DAE.UNARY() then true; | ||
| 9003 | else false; | ||
| 9004 | end match; | ||
| 9005 | end isUnary; | ||
| 9006 | |||
| 9007 | public function isBinary | ||
| 9008 | "Returns true if expression is an binary." | ||
| 9009 | input DAE.Exp inExp; | ||
| 9010 | output Boolean outB; | ||
| 9011 | algorithm | ||
| 9012 | outB:= match inExp | ||
| 9013 | case DAE.BINARY() then true; | ||
| 9014 | else false; | ||
| 9015 | end match; | ||
| 9016 | end isBinary; | ||
| 9017 | |||
| 9018 | public function isNegativeUnary | ||
| 9019 | "Returns true if expression is a negative unary." | ||
| 9020 | input DAE.Exp inExp; | ||
| 9021 | output Boolean outB; | ||
| 9022 | algorithm | ||
| 9023 | outB:= match inExp | ||
| 9024 | case DAE.UNARY(operator=DAE.UMINUS()) then true; | ||
| 9025 | else false; | ||
| 9026 | end match; | ||
| 9027 | end isNegativeUnary; | ||
| 9028 | |||
| 9029 | public function isCref | ||
| 9030 | "Returns true if the given expression is a component reference, | ||
| 9031 | otherwise false." | ||
| 9032 | input DAE.Exp inExp; | ||
| 9033 | output Boolean outIsCref; | ||
| 9034 | algorithm | ||
| 9035 | outIsCref := match inExp | ||
| 9036 | case DAE.CREF() then true; | ||
| 9037 | else false; | ||
| 9038 | end match; | ||
| 9039 | end isCref; | ||
| 9040 | |||
| 9041 | public function isUnaryCref | ||
| 9042 | input DAE.Exp inExp; | ||
| 9043 | output Boolean outIsCref; | ||
| 9044 | algorithm | ||
| 9045 | outIsCref := match inExp | ||
| 9046 | case DAE.UNARY(DAE.UMINUS(), DAE.CREF()) then true; | ||
| 9047 | else false; | ||
| 9048 | end match; | ||
| 9049 | |||
| 9050 | end isUnaryCref; | ||
| 9051 | |||
| 9052 | public function isCall | ||
| 9053 | "Returns true if the given expression is a function call, | ||
| 9054 | otherwise false." | ||
| 9055 | input DAE.Exp inExp; | ||
| 9056 | output Boolean outIsCall; | ||
| 9057 | algorithm | ||
| 9058 | outIsCall := match inExp | ||
| 9059 | case DAE.CALL() then true; | ||
| 9060 | else false; | ||
| 9061 | end match; | ||
| 9062 | end isCall; | ||
| 9063 | |||
| 9064 | public function isTSUB | ||
| 9065 | "Returns true if the given expression is TSUB, | ||
| 9066 | otherwise false." | ||
| 9067 | input DAE.Exp inExp; | ||
| 9068 | output Boolean outIsCall; | ||
| 9069 | algorithm | ||
| 9070 | outIsCall := match inExp | ||
| 9071 | case DAE.TSUB() then true; | ||
| 9072 | else false; | ||
| 9073 | end match; | ||
| 9074 | end isTSUB; | ||
| 9075 | |||
| 9076 | public function isPureCall | ||
| 9077 | "Returns true if the given expression is a pure function call, | ||
| 9078 | otherwise false." | ||
| 9079 | input DAE.Exp inExp; | ||
| 9080 | output Boolean outIsPureCall; | ||
| 9081 | algorithm | ||
| 9082 | ✗ | outIsPureCall := isCall(inExp) and not isImpure(inExp); | |
| 9083 | end isPureCall; | ||
| 9084 | |||
| 9085 | public function isImpureCall | ||
| 9086 | "Returns true if the given expression is a pure function call, | ||
| 9087 | otherwise false." | ||
| 9088 | input DAE.Exp inExp; | ||
| 9089 | output Boolean outIsPureCall; | ||
| 9090 | algorithm | ||
| 9091 |
3/4✓ Branch 1 taken 16035 times.
✗ Branch 2 not taken.
✓ Branch 4 taken 16020 times.
✓ Branch 5 taken 15 times.
|
16035 | outIsPureCall := isCall(inExp) and isImpure(inExp); |
| 9092 | end isImpureCall; | ||
| 9093 | |||
| 9094 | public function isRecordCall | ||
| 9095 | "Returns true if the given expression is a record call,i.e. a function call without elements | ||
| 9096 | otherwise false." | ||
| 9097 | input DAE.Exp inExp; | ||
| 9098 | input AvlTreePathFunction.Tree funcsIn; | ||
| 9099 | output Boolean outIsCall; | ||
| 9100 | algorithm | ||
| 9101 | outIsCall := match inExp | ||
| 9102 | local | ||
| 9103 | Absyn.Path path; | ||
| 9104 | DAE.Function func; | ||
| 9105 | case DAE.CALL(path=path) | ||
| 9106 | then match AvlTreePathFunction.getOpt(funcsIn,path) | ||
| 9107 | 25343 | case SOME(SOME(func)) then listEmpty(DAEUtil.getFunctionElements(func)); | |
| 9108 | else false; | ||
| 9109 | end match; | ||
| 9110 | else false; | ||
| 9111 | end match; | ||
| 9112 | end isRecordCall; | ||
| 9113 | |||
| 9114 | public function isNotCref | ||
| 9115 | "Returns true if the given expression is a not component reference, | ||
| 9116 | otherwise false." | ||
| 9117 | input DAE.Exp inExp; | ||
| 9118 | output Boolean outIsCref; | ||
| 9119 | algorithm | ||
| 9120 | outIsCref := match inExp | ||
| 9121 | case DAE.CREF() then false; | ||
| 9122 | else true; | ||
| 9123 | end match; | ||
| 9124 | end isNotCref; | ||
| 9125 | |||
| 9126 | public function isCrefArray | ||
| 9127 | "Checks whether a cref is an array or not. | ||
| 9128 | " | ||
| 9129 | input DAE.Exp inExp; | ||
| 9130 | output Boolean outIsArray; | ||
| 9131 | algorithm | ||
| 9132 | outIsArray := match inExp | ||
| 9133 | case DAE.CREF(ty = DAE.T_ARRAY()) then true; | ||
| 9134 | else false; | ||
| 9135 | end match; | ||
| 9136 | end isCrefArray; | ||
| 9137 | |||
| 9138 | public function isCrefScalar | ||
| 9139 | "Checks whether an expression is a scalar cref or not." | ||
| 9140 | input DAE.Exp inExp; | ||
| 9141 | output Boolean isScalar; | ||
| 9142 | algorithm | ||
| 9143 | isScalar := matchcontinue inExp | ||
| 9144 | local | ||
| 9145 | ComponentRef cr; | ||
| 9146 | Boolean b; | ||
| 9147 | |||
| 9148 | case DAE.CREF(ty = DAE.T_ARRAY()) | ||
| 9149 | algorithm | ||
| 9150 | ✗ | cr := expCref(inExp); | |
| 9151 | ✗ | b := ComponentReference.crefHasScalarSubscripts(cr); | |
| 9152 | then | ||
| 9153 | b; | ||
| 9154 | |||
| 9155 | case DAE.CREF() then true; | ||
| 9156 | |||
| 9157 | else false; | ||
| 9158 | end matchcontinue; | ||
| 9159 | end isCrefScalar; | ||
| 9160 | |||
| 9161 | public function isTuple | ||
| 9162 | "Returns true if the given expression is a tuple, | ||
| 9163 | otherwise false." | ||
| 9164 | input DAE.Exp inExp; | ||
| 9165 | output Boolean outIsTuple; | ||
| 9166 | algorithm | ||
| 9167 | outIsTuple := match inExp | ||
| 9168 | case DAE.TUPLE() then true; | ||
| 9169 | else false; | ||
| 9170 | end match; | ||
| 9171 | end isTuple; | ||
| 9172 | |||
| 9173 | public function isRecord | ||
| 9174 | "Returns true if the given expression is a record, | ||
| 9175 | otherwise false." | ||
| 9176 | input DAE.Exp inExp; | ||
| 9177 | output Boolean outIsRecord; | ||
| 9178 | algorithm | ||
| 9179 | outIsRecord := match inExp | ||
| 9180 | case DAE.RECORD() then true; | ||
| 9181 | else false; | ||
| 9182 | end match; | ||
| 9183 | end isRecord; | ||
| 9184 | |||
| 9185 | public function isScalarConst | ||
| 9186 | "Returns true if the given expression is a scalar constant, otherwise false." | ||
| 9187 | input DAE.Exp inExp; | ||
| 9188 | output Boolean outIsScalar; | ||
| 9189 | algorithm | ||
| 9190 | outIsScalar := match inExp | ||
| 9191 | case DAE.ICONST() then true; | ||
| 9192 | case DAE.RCONST() then true; | ||
| 9193 | case DAE.SCONST() then true; | ||
| 9194 | case DAE.BCONST() then true; | ||
| 9195 | case DAE.ENUM_LITERAL() then true; | ||
| 9196 | else false; | ||
| 9197 | end match; | ||
| 9198 | end isScalarConst; | ||
| 9199 | |||
| 9200 | public function isEven "returns true if const expression is even" | ||
| 9201 | input DAE.Exp e; | ||
| 9202 | output Boolean even; | ||
| 9203 | algorithm | ||
| 9204 | even := match e | ||
| 9205 | local | ||
| 9206 | Integer i; | ||
| 9207 | Real r; | ||
| 9208 | DAE.Exp exp; | ||
| 9209 | |||
| 9210 | ✗ | case DAE.ICONST(i) then intMod(i,2) == 0; | |
| 9211 | 9222 | case DAE.RCONST(r) then realMod(r, 2.0) == 0.0; | |
| 9212 | ✗ | case DAE.CAST(exp = exp) then isEven(exp); | |
| 9213 | else false; | ||
| 9214 | end match; | ||
| 9215 | end isEven; | ||
| 9216 | |||
| 9217 | public function isOdd "returns true if const expression is odd" | ||
| 9218 | input DAE.Exp e; | ||
| 9219 | output Boolean even; | ||
| 9220 | algorithm | ||
| 9221 | even := match e | ||
| 9222 | local | ||
| 9223 | Integer i; | ||
| 9224 | Real r; | ||
| 9225 | DAE.Exp exp; | ||
| 9226 | |||
| 9227 | ✗ | case DAE.ICONST(i) then intMod(i,2) == 1; | |
| 9228 | ✗ | case DAE.RCONST(r) then realMod(r, 2.0) == 1.0; | |
| 9229 | ✗ | case DAE.CAST(exp = exp) then isOdd(exp); | |
| 9230 | else false; | ||
| 9231 | end match; | ||
| 9232 | end isOdd; | ||
| 9233 | |||
| 9234 | public function isIntegerOrReal "Returns true if Type is Integer or Real" | ||
| 9235 | input DAE.Type tp; | ||
| 9236 | output Boolean res; | ||
| 9237 | algorithm | ||
| 9238 | res := match tp | ||
| 9239 | case DAE.T_REAL() then true; | ||
| 9240 | case DAE.T_INTEGER() then true; | ||
| 9241 | else false; | ||
| 9242 | end match; | ||
| 9243 | end isIntegerOrReal; | ||
| 9244 | |||
| 9245 | public function expStructuralEqual | ||
| 9246 | "Returns true if the two expressions are structural equal. This means | ||
| 9247 | only the componentreference can be different" | ||
| 9248 | input DAE.Exp inExp1; | ||
| 9249 | input DAE.Exp inExp2; | ||
| 9250 | output Boolean outBoolean; | ||
| 9251 | algorithm | ||
| 9252 | outBoolean := match (inExp1,inExp2) | ||
| 9253 | local | ||
| 9254 | Integer i1,i2; | ||
| 9255 | String s1,s2; | ||
| 9256 | Boolean b,b1,b2,res; | ||
| 9257 | DAE.Exp e11,e12,e21,e22,e1,e2,e13,e23; | ||
| 9258 | Operator op1,op2; | ||
| 9259 | Absyn.Path path1,path2; | ||
| 9260 | list<DAE.Exp> expl1,expl2; | ||
| 9261 | list<list<Exp>> explstlst1,explstlst2; | ||
| 9262 | Type tp1,tp2; | ||
| 9263 | Real r1,r2; | ||
| 9264 | Absyn.Path enum1, enum2; | ||
| 9265 | list<DAE.Exp> ae1,ae2; | ||
| 9266 | list<DAE.Subscript> subs1, subs2; | ||
| 9267 | |||
| 9268 | ✗ | case (DAE.ICONST(integer = i1),DAE.ICONST(integer = i2)) then (i1 == i2); | |
| 9269 | case (DAE.UNARY(DAE.UMINUS(_),DAE.ICONST(integer = i1)),DAE.ICONST(integer = i2)) | ||
| 9270 | algorithm | ||
| 9271 | ✗ | i1 := - i1; | |
| 9272 | ✗ | then (i1 == i2); | |
| 9273 | case (DAE.ICONST(integer = i1),DAE.UNARY(DAE.UMINUS(_),DAE.ICONST(integer = i2))) | ||
| 9274 | algorithm | ||
| 9275 | ✗ | i2 := - i2; | |
| 9276 | ✗ | then (i1 == i2); | |
| 9277 | ✗ | case (DAE.RCONST(real = r1),DAE.RCONST(real = r2)) then (r1 == r2); | |
| 9278 | case (DAE.UNARY(DAE.UMINUS(_),DAE.RCONST(real = r1)),DAE.RCONST(real = r2)) | ||
| 9279 | algorithm | ||
| 9280 | ✗ | r1 := - r1; | |
| 9281 | ✗ | then (r1 == r2); | |
| 9282 | case (DAE.RCONST(real = r1),DAE.UNARY(DAE.UMINUS(_),DAE.RCONST(real = r2))) | ||
| 9283 | algorithm | ||
| 9284 | ✗ | r2 := - r2; | |
| 9285 | ✗ | then (r1 == r2); | |
| 9286 | ✗ | case (DAE.SCONST(string = s1),DAE.SCONST(string = s2)) then stringEq(s1, s2); | |
| 9287 | ✗ | case (DAE.BCONST(bool = b1),DAE.BCONST(bool = b2)) then boolEq(b1, b2); | |
| 9288 | ✗ | case (DAE.ENUM_LITERAL(name = enum1), DAE.ENUM_LITERAL(name = enum2)) then AbsynUtil.pathEqual(enum1, enum2); | |
| 9289 | case (DAE.CREF(),DAE.CREF()) then true; | ||
| 9290 | |||
| 9291 | // binary ops | ||
| 9292 | case (DAE.BINARY(exp1 = e11,operator = op1,exp2 = e12),DAE.BINARY(exp1 = e21,operator = op2,exp2 = e22)) | ||
| 9293 | algorithm | ||
| 9294 | ✗ | b := operatorEqual(op1, op2); | |
| 9295 | ✗ | b := if b then expStructuralEqual(e11, e21) else b; | |
| 9296 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9297 | then | ||
| 9298 | b; | ||
| 9299 | |||
| 9300 | // logical binary ops | ||
| 9301 | case (DAE.LBINARY(exp1 = e11,operator = op1,exp2 = e12), | ||
| 9302 | DAE.LBINARY(exp1 = e21,operator = op2,exp2 = e22)) | ||
| 9303 | algorithm | ||
| 9304 | ✗ | b := operatorEqual(op1, op2); | |
| 9305 | ✗ | b := if b then expStructuralEqual(e11, e21) else b; | |
| 9306 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9307 | then | ||
| 9308 | b; | ||
| 9309 | |||
| 9310 | // unary ops | ||
| 9311 | case (DAE.UNARY(operator = op1,exp = e1),DAE.UNARY(operator = op2,exp = e2)) | ||
| 9312 | algorithm | ||
| 9313 | ✗ | b := operatorEqual(op1, op2); | |
| 9314 | ✗ | b := if b then expStructuralEqual(e1, e2) else b; | |
| 9315 | then | ||
| 9316 | b; | ||
| 9317 | |||
| 9318 | // logical unary ops | ||
| 9319 | case (DAE.LUNARY(operator = op1,exp = e1),DAE.LUNARY(operator = op2,exp = e2)) | ||
| 9320 | algorithm | ||
| 9321 | ✗ | b := operatorEqual(op1, op2); | |
| 9322 | ✗ | b := if b then expStructuralEqual(e1, e2) else b; | |
| 9323 | then | ||
| 9324 | b; | ||
| 9325 | |||
| 9326 | // relational ops | ||
| 9327 | case (DAE.RELATION(exp1 = e11,operator = op1,exp2 = e12),DAE.RELATION(exp1 = e21,operator = op2,exp2 = e22)) | ||
| 9328 | algorithm | ||
| 9329 | ✗ | b := operatorEqual(op1, op2); | |
| 9330 | ✗ | b := if b then expStructuralEqual(e11, e21) else b; | |
| 9331 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9332 | then | ||
| 9333 | b; | ||
| 9334 | |||
| 9335 | // if expressions | ||
| 9336 | case (DAE.IFEXP(expCond = e11,expThen = e12,expElse = e13),DAE.IFEXP(expCond = e21,expThen = e22,expElse = e23)) | ||
| 9337 | algorithm | ||
| 9338 | ✗ | b := expStructuralEqual(e11, e21); | |
| 9339 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9340 | ✗ | b := if b then expStructuralEqual(e13, e23) else b; | |
| 9341 | then | ||
| 9342 | b; | ||
| 9343 | |||
| 9344 | // function calls | ||
| 9345 | case (DAE.CALL(path = path1,expLst = expl1),DAE.CALL(path = path2,expLst = expl2)) | ||
| 9346 | algorithm | ||
| 9347 | ✗ | b := AbsynUtil.pathEqual(path1, path2); | |
| 9348 | ✗ | b := if b then expStructuralEqualList(expl1, expl2) else b; | |
| 9349 | then | ||
| 9350 | b; | ||
| 9351 | case (DAE.RECORD(path = path1,exps = expl1),DAE.RECORD(path = path2,exps = expl2)) | ||
| 9352 | algorithm | ||
| 9353 | ✗ | b := AbsynUtil.pathEqual(path1, path2); | |
| 9354 | ✗ | b := if b then expStructuralEqualList(expl1, expl2) else b; | |
| 9355 | then | ||
| 9356 | b; | ||
| 9357 | // partially evaluated functions | ||
| 9358 | case (DAE.PARTEVALFUNCTION(path = path1,expList = expl1),DAE.PARTEVALFUNCTION(path = path2,expList = expl2)) | ||
| 9359 | algorithm | ||
| 9360 | ✗ | b := AbsynUtil.pathEqual(path1, path2); | |
| 9361 | ✗ | b := if b then expStructuralEqualList(expl1, expl2) else b; | |
| 9362 | then | ||
| 9363 | b; | ||
| 9364 | |||
| 9365 | // arrays | ||
| 9366 | case (DAE.ARRAY(ty = tp1,array = expl1),DAE.ARRAY(ty = tp2,array = expl2)) | ||
| 9367 | algorithm | ||
| 9368 | ✗ | b := valueEq(tp1, tp2); | |
| 9369 | ✗ | b := if b then expStructuralEqualList(expl1, expl2) else b; | |
| 9370 | then | ||
| 9371 | b; | ||
| 9372 | |||
| 9373 | // matrix | ||
| 9374 | case (DAE.MATRIX(matrix = explstlst1), DAE.MATRIX(matrix = explstlst2)) | ||
| 9375 | ✗ | then | |
| 9376 | expStructuralEqualListLst(explstlst1,explstlst2); | ||
| 9377 | |||
| 9378 | // ranges [start:stop] | ||
| 9379 | case (DAE.RANGE(start = e11,step = NONE(),stop = e13), | ||
| 9380 | DAE.RANGE(start = e21,step = NONE(),stop = e23)) | ||
| 9381 | algorithm | ||
| 9382 | ✗ | b := expStructuralEqual(e11, e21); | |
| 9383 | ✗ | b := if b then expStructuralEqual(e13, e23) else b; | |
| 9384 | then | ||
| 9385 | b; | ||
| 9386 | |||
| 9387 | // ranges [start:step:stop] | ||
| 9388 | case (DAE.RANGE(start = e11,step = SOME(e12),stop = e13), | ||
| 9389 | DAE.RANGE(start = e21,step = SOME(e22),stop = e23)) | ||
| 9390 | algorithm | ||
| 9391 | ✗ | b := expStructuralEqual(e11, e21); | |
| 9392 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9393 | ✗ | b := if b then expStructuralEqual(e13, e23) else b; | |
| 9394 | then | ||
| 9395 | b; | ||
| 9396 | |||
| 9397 | // tuples | ||
| 9398 | case (DAE.TUPLE(PR = expl1),DAE.TUPLE(PR = expl2)) | ||
| 9399 | ✗ | then expStructuralEqualList(expl1, expl2); | |
| 9400 | |||
| 9401 | // casting | ||
| 9402 | case (DAE.CAST(ty = tp1,exp = e1),DAE.CAST(ty = tp2,exp = e2)) | ||
| 9403 | algorithm | ||
| 9404 | ✗ | b := valueEq(tp1, tp2); | |
| 9405 | ✗ | b := if b then expStructuralEqual(e1, e2) else b; | |
| 9406 | then | ||
| 9407 | b; | ||
| 9408 | |||
| 9409 | // array subscripts | ||
| 9410 | case (DAE.ASUB(exp = e1,sub = subs1),DAE.ASUB(sub = subs2)) | ||
| 9411 | algorithm | ||
| 9412 | ✗ | ae1 := list(Expression.getSubscriptExp(sub) for sub in subs1); | |
| 9413 | ✗ | ae2 := list(Expression.getSubscriptExp(sub) for sub in subs2); | |
| 9414 | ✗ | b := expStructuralEqual(e1, e1); | |
| 9415 | ✗ | b := if b then expStructuralEqualList(ae1, ae2) else b; | |
| 9416 | then | ||
| 9417 | b; | ||
| 9418 | |||
| 9419 | // size(a) | ||
| 9420 | case (DAE.SIZE(exp = e1,sz = NONE()),DAE.SIZE(exp = e2,sz = NONE())) | ||
| 9421 | ✗ | then expStructuralEqual(e1, e2); | |
| 9422 | |||
| 9423 | // size(a, dim) | ||
| 9424 | case (DAE.SIZE(exp = e1,sz = SOME(e11)),DAE.SIZE(exp = e2,sz = SOME(e22))) | ||
| 9425 | algorithm | ||
| 9426 | ✗ | b := expStructuralEqual(e1, e2); | |
| 9427 | ✗ | b := if b then expStructuralEqual(e11, e22) else b; | |
| 9428 | then | ||
| 9429 | b; | ||
| 9430 | |||
| 9431 | // metamodeling code | ||
| 9432 | case (DAE.CODE(),DAE.CODE()) | ||
| 9433 | algorithm | ||
| 9434 | ✗ | Debug.trace("exp_equal on CODE not impl.\n"); | |
| 9435 | then | ||
| 9436 | false; | ||
| 9437 | |||
| 9438 | case (DAE.REDUCTION(),DAE.REDUCTION()) | ||
| 9439 | algorithm | ||
| 9440 | // Reductions contain too much information to compare equality in a sane manner | ||
| 9441 | ✗ | res := valueEq(inExp1,inExp2); | |
| 9442 | then | ||
| 9443 | res; | ||
| 9444 | |||
| 9445 | // end id | ||
| 9446 | /*// everything else failed, try structural equality | ||
| 9447 | case (e1,e2) | ||
| 9448 | algorithm | ||
| 9449 | equality(e1 = e2); | ||
| 9450 | then true; | ||
| 9451 | case (e1,e2) | ||
| 9452 | algorithm | ||
| 9453 | failure(equality(e1 = e2)); | ||
| 9454 | then false; | ||
| 9455 | */ | ||
| 9456 | // not equal | ||
| 9457 | case (DAE.LIST(valList = expl1),DAE.LIST(valList = expl2)) | ||
| 9458 | ✗ | then expStructuralEqualList(expl1, expl2); | |
| 9459 | |||
| 9460 | case (DAE.CONS(car = e11,cdr = e12), | ||
| 9461 | DAE.CONS(car = e21,cdr = e22)) | ||
| 9462 | algorithm | ||
| 9463 | ✗ | b := expStructuralEqual(e11, e21); | |
| 9464 | ✗ | b := if b then expStructuralEqual(e12, e22) else b; | |
| 9465 | then | ||
| 9466 | b; | ||
| 9467 | |||
| 9468 | case (DAE.META_TUPLE(listExp = expl1),DAE.META_TUPLE(listExp = expl2)) | ||
| 9469 | ✗ | then expStructuralEqualList(expl1, expl2); | |
| 9470 | |||
| 9471 | case (DAE.META_OPTION(exp = NONE()), | ||
| 9472 | DAE.META_OPTION(exp = NONE())) | ||
| 9473 | then true; | ||
| 9474 | |||
| 9475 | case (DAE.META_OPTION(exp = SOME(e1)), | ||
| 9476 | DAE.META_OPTION(exp = SOME(e2))) | ||
| 9477 | ✗ | then expStructuralEqual(e1, e2); | |
| 9478 | |||
| 9479 | case (DAE.METARECORDCALL(path = path1,args = expl1),DAE.METARECORDCALL(path = path2,args = expl2)) | ||
| 9480 | algorithm | ||
| 9481 | ✗ | b := AbsynUtil.pathEqual(path1, path2); | |
| 9482 | ✗ | b := if b then expStructuralEqualList(expl1, expl2) else b; | |
| 9483 | then | ||
| 9484 | b; | ||
| 9485 | |||
| 9486 | case (e1 as DAE.MATCHEXPRESSION(), | ||
| 9487 | e2 as DAE.MATCHEXPRESSION()) | ||
| 9488 | ✗ | then valueEq(e1,e2); | |
| 9489 | |||
| 9490 | case (DAE.BOX(e1),DAE.BOX(e2)) | ||
| 9491 | ✗ | then expStructuralEqual(e1, e2); | |
| 9492 | |||
| 9493 | case (DAE.UNBOX(exp=e1),DAE.UNBOX(exp=e2)) | ||
| 9494 | ✗ | then expStructuralEqual(e1, e2); | |
| 9495 | |||
| 9496 | ✗ | case (DAE.SHARED_LITERAL(index=i1),DAE.SHARED_LITERAL(index=i2)) then intEq(i1,i2); | |
| 9497 | |||
| 9498 | else false; | ||
| 9499 | end match; | ||
| 9500 | end expStructuralEqual; | ||
| 9501 | |||
| 9502 | public function expStructuralEqualList | ||
| 9503 | "Returns true if the two lists of expressions are structural equal." | ||
| 9504 | input list<DAE.Exp> inExp1; | ||
| 9505 | input list<DAE.Exp> inExp2; | ||
| 9506 | output Boolean outBoolean; | ||
| 9507 | algorithm | ||
| 9508 | outBoolean := match (inExp1,inExp2) | ||
| 9509 | local | ||
| 9510 | DAE.Exp e1,e2; | ||
| 9511 | list<DAE.Exp> es1,es2; | ||
| 9512 | case ({},{}) then true; | ||
| 9513 | case (e1::es1,e2::es2) guard expStructuralEqual(e1,e2) | ||
| 9514 | ✗ | then | |
| 9515 | expStructuralEqualList(es1, es2); | ||
| 9516 | else false; | ||
| 9517 | end match; | ||
| 9518 | end expStructuralEqualList; | ||
| 9519 | |||
| 9520 | protected function expStructuralEqualListLst | ||
| 9521 | "Returns true if the two lists of lists of expressions are structural equal." | ||
| 9522 | input list<list<DAE.Exp>> inExp1; | ||
| 9523 | input list<list<DAE.Exp>> inExp2; | ||
| 9524 | output Boolean outBoolean; | ||
| 9525 | algorithm | ||
| 9526 | outBoolean := match (inExp1,inExp2) | ||
| 9527 | local | ||
| 9528 | list<DAE.Exp> e1,e2; | ||
| 9529 | list<list<DAE.Exp>> es1,es2; | ||
| 9530 | case ({},{}) then true; | ||
| 9531 | case (e1::es1,e2::es2) guard expStructuralEqualList(e1,e2) | ||
| 9532 | ✗ | then | |
| 9533 | expStructuralEqualListLst(es1, es2); | ||
| 9534 | else false; | ||
| 9535 | end match; | ||
| 9536 | end expStructuralEqualListLst; | ||
| 9537 | |||
| 9538 | public function expContainsList | ||
| 9539 | input list<DAE.Exp> expl; | ||
| 9540 | input DAE.Exp exp; | ||
| 9541 | output Boolean contains = List.any(expl, function expContains(inExp2 = exp)); | ||
| 9542 | end expContainsList; | ||
| 9543 | |||
| 9544 | public function expContains | ||
| 9545 | "Returns true if first expression contains the second one as a sub expression. | ||
| 9546 | Only constants, component references or der(componentReference) can be checked | ||
| 9547 | so far." | ||
| 9548 | input DAE.Exp inExp1; | ||
| 9549 | input DAE.Exp inExp2; | ||
| 9550 | output Boolean outBoolean; | ||
| 9551 | algorithm | ||
| 9552 | outBoolean := matchcontinue (inExp1, inExp2) | ||
| 9553 | local | ||
| 9554 | Boolean b1, b2; | ||
| 9555 | Boolean res; | ||
| 9556 | ComponentRef cr1, cr2; | ||
| 9557 | DAE.Exp e1, e2, e, c, t, f; | ||
| 9558 | Integer i1, i2; | ||
| 9559 | list<DAE.Exp> expLst; | ||
| 9560 | list<list<DAE.Exp>> expl; | ||
| 9561 | Real r1, r2; | ||
| 9562 | String str, s1, s2; | ||
| 9563 | list<DAE.Subscript> subs; | ||
| 9564 | |||
| 9565 | ✗ | case (DAE.ICONST(i1), DAE.ICONST(i2)) then i1 == i2; | |
| 9566 | case (DAE.ICONST(), _) then false; | ||
| 9567 | |||
| 9568 | ✗ | case (DAE.RCONST(r1), DAE.RCONST(r2)) then r1 == r2; | |
| 9569 | case (DAE.RCONST(), _) then false; | ||
| 9570 | |||
| 9571 | ✗ | case (DAE.SCONST(s1), DAE.SCONST(s2)) then s1 == s2; | |
| 9572 | case (DAE.SCONST(), _) then false; | ||
| 9573 | |||
| 9574 | ✗ | case (DAE.BCONST(b1), DAE.BCONST(b2)) then b1 == b2; | |
| 9575 | case (DAE.BCONST(), _) then true; | ||
| 9576 | |||
| 9577 | case (DAE.ENUM_LITERAL(), _) then false; | ||
| 9578 | |||
| 9579 | ✗ | case (DAE.ARRAY(array=expLst), _) then expContainsList(expLst, inExp2); | |
| 9580 | ✗ | case (DAE.MATRIX(matrix=expl), _) then List.any(expl, function List.any(inFunc = function expContains(inExp2 = inExp2))); | |
| 9581 | |||
| 9582 | case (DAE.CREF(componentRef=cr1), DAE.CREF(componentRef=cr2)) algorithm | ||
| 9583 | 319 | res := ComponentReferenceBasics.crefEqual(cr1, cr2); | |
| 9584 |
2/2✓ Branch 0 taken 175 times.
✓ Branch 1 taken 144 times.
|
319 | if not res then |
| 9585 | 175 | expLst := List.map(ComponentReferenceBasics.crefSubs(cr1), getSubscriptExp); | |
| 9586 | 175 | res := expContainsList(expLst, inExp2); | |
| 9587 | end if; | ||
| 9588 | then res; | ||
| 9589 | |||
| 9590 | case ((DAE.CREF()), _) then false; | ||
| 9591 | |||
| 9592 | case (DAE.BINARY(exp1=e1, exp2=e2), _) | ||
| 9593 |
3/4✓ Branch 1 taken 12 times.
✓ Branch 2 taken 18 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 12 times.
|
30 | then expContains(e1, inExp2) or expContains(e2, inExp2); |
| 9594 | |||
| 9595 | ✗ | case (DAE.UNARY(exp=e), _) then expContains(e, inExp2); | |
| 9596 | |||
| 9597 | case (DAE.LBINARY(exp1=e1, exp2=e2), _) | ||
| 9598 |
2/4✓ Branch 1 taken 10 times.
✗ Branch 2 not taken.
✗ Branch 4 not taken.
✓ Branch 5 taken 10 times.
|
10 | then expContains(e1, inExp2) or expContains(e2, inExp2); |
| 9599 | |||
| 9600 | 11 | case (DAE.LUNARY(exp=e), _) then expContains(e, inExp2); | |
| 9601 | |||
| 9602 | case (DAE.RELATION(exp1=e1, exp2=e2), _) | ||
| 9603 |
3/4✓ Branch 1 taken 34 times.
✓ Branch 2 taken 33 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 34 times.
|
67 | then expContains(e1, inExp2) or expContains(e2, inExp2); |
| 9604 | |||
| 9605 | case (DAE.IFEXP(expCond=c, expThen=t, expElse=f), _) | ||
| 9606 | ✗ | then expContains(c, inExp2) or expContains(t, inExp2) or expContains(f, inExp2); | |
| 9607 | |||
| 9608 | case (DAE.CALL(path=Absyn.IDENT(name="der"), expLst={DAE.CREF(cr1)}), | ||
| 9609 | DAE.CALL(path=Absyn.IDENT(name="der"), expLst={DAE.CREF(cr2)})) algorithm | ||
| 9610 | ✗ | res := ComponentReferenceBasics.crefEqual(cr1, cr2); | |
| 9611 | then res; | ||
| 9612 | |||
| 9613 | // pre(v) does not contain variable v | ||
| 9614 | case (DAE.CALL(path=Absyn.IDENT(name="pre")), _) then false; | ||
| 9615 | case (DAE.CALL(path=Absyn.IDENT(name="previous")), _) then false; | ||
| 9616 | |||
| 9617 | // special rule for no arguments | ||
| 9618 | case (DAE.CALL(expLst={}), _) then false; | ||
| 9619 | |||
| 9620 | // general case for arguments | ||
| 9621 | ✗ | case (DAE.CALL(expLst=expLst), _) then expContainsList(expLst, inExp2); | |
| 9622 | ✗ | case (DAE.RECORD(exps=expLst), _) then expContainsList(expLst, inExp2); | |
| 9623 | ✗ | case (DAE.PARTEVALFUNCTION(expList=expLst), DAE.CREF()) then expContainsList(expLst, inExp2); | |
| 9624 | case (DAE.CAST(ty=DAE.T_REAL(), exp=DAE.ICONST()), _) then false; | ||
| 9625 | ✗ | case (DAE.CAST(ty=DAE.T_REAL(), exp=e), _) then expContains(e, inExp2); | |
| 9626 | ✗ | case (DAE.ASUB(exp=e, sub=subs), _) then expContainsList(list(Expression.getSubscriptExp(sub) for sub in subs), inExp2) or expContains(e, inExp2); | |
| 9627 | ✗ | case (DAE.REDUCTION(expr=e), _) then expContains(e, inExp2); | |
| 9628 | |||
| 9629 | else algorithm | ||
| 9630 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 9631 | ✗ | Debug.trace("- Expression.expContains failed\n"); | |
| 9632 | ✗ | s1 := ExpressionBasics.printExpStr(inExp1); | |
| 9633 | ✗ | s2 := ExpressionBasics.printExpStr(inExp2); | |
| 9634 | ✗ | str := stringAppendList({"exp = ", s1," subexp = ", s2}); | |
| 9635 | ✗ | Debug.traceln(str); | |
| 9636 | ✗ | then fail(); | |
| 9637 | end matchcontinue; | ||
| 9638 | end expContains; | ||
| 9639 | |||
| 9640 | public function containsExp | ||
| 9641 | "Author BZ 2008-06 same as expContains, but reversed." | ||
| 9642 | input DAE.Exp inExp1; | ||
| 9643 | input DAE.Exp inExp2; | ||
| 9644 | output Boolean outBoolean; | ||
| 9645 | algorithm | ||
| 9646 | ✗ | outBoolean:= expContains(inExp2,inExp1); | |
| 9647 | end containsExp; | ||
| 9648 | |||
| 9649 | public function isExpCref | ||
| 9650 | "Returns true if expression is a componentRef" | ||
| 9651 | input DAE.Exp e; | ||
| 9652 | output Boolean res; | ||
| 9653 | algorithm | ||
| 9654 | res := match e | ||
| 9655 | case DAE.CREF(_,_) then true; | ||
| 9656 | else false; | ||
| 9657 | end match; | ||
| 9658 | end isExpCref; | ||
| 9659 | |||
| 9660 | public function isExpCrefOrIfExp | ||
| 9661 | "Returns true if expression is a componentRef or an if expression" | ||
| 9662 | input DAE.Exp e; | ||
| 9663 | output Boolean res; | ||
| 9664 | algorithm | ||
| 9665 | res := match e | ||
| 9666 | case DAE.CREF(_,_) then true; | ||
| 9667 | case DAE.IFEXP(_,_,_) then true; | ||
| 9668 | else false; | ||
| 9669 | end match; | ||
| 9670 | end isExpCrefOrIfExp; | ||
| 9671 | |||
| 9672 | public function isExpIfExp | ||
| 9673 | "Returns true if expression is an if expression" | ||
| 9674 | input DAE.Exp e; | ||
| 9675 | output Boolean res; | ||
| 9676 | algorithm | ||
| 9677 | res := match e | ||
| 9678 | case DAE.IFEXP() then true; | ||
| 9679 | else false; | ||
| 9680 | end match; | ||
| 9681 | end isExpIfExp; | ||
| 9682 | |||
| 9683 | public function operatorEqual | ||
| 9684 | "Helper function to expEqual." | ||
| 9685 | input DAE.Operator inOperator1; | ||
| 9686 | input DAE.Operator inOperator2; | ||
| 9687 | output Boolean outBoolean; | ||
| 9688 | algorithm | ||
| 9689 | 6620273 | outBoolean := 0==ExpressionBasics.operatorCompare(inOperator1,inOperator2); | |
| 9690 | end operatorEqual; | ||
| 9691 | |||
| 9692 | public function arrayContainZeroDimension | ||
| 9693 | "Checks if one of the dimensions in a list is zero." | ||
| 9694 | input list<DAE.Dimension> inDimensions; | ||
| 9695 | output Boolean outContainZeroDim; | ||
| 9696 | algorithm | ||
| 9697 | outContainZeroDim := match inDimensions | ||
| 9698 | local | ||
| 9699 | list<DAE.Dimension> rest_dims; | ||
| 9700 | |||
| 9701 | case DAE.DIM_INTEGER(0) :: _ then true; | ||
| 9702 | 1609 | case _ :: rest_dims then arrayContainZeroDimension(rest_dims); | |
| 9703 | else false; | ||
| 9704 | |||
| 9705 | end match; | ||
| 9706 | end arrayContainZeroDimension; | ||
| 9707 | |||
| 9708 | public function arrayContainWholeDimension | ||
| 9709 | "Checks if a list of dimensions contain a wholedim, i.e. NONE." | ||
| 9710 | input DAE.Dimensions inDim; | ||
| 9711 | output Boolean wholedim; | ||
| 9712 | algorithm | ||
| 9713 | wholedim := match inDim | ||
| 9714 | local | ||
| 9715 | DAE.Dimensions rest_dims; | ||
| 9716 | case DAE.DIM_UNKNOWN() :: _ then true; | ||
| 9717 | ✗ | case _ :: rest_dims then arrayContainWholeDimension(rest_dims); | |
| 9718 | else false; | ||
| 9719 | end match; | ||
| 9720 | end arrayContainWholeDimension; | ||
| 9721 | |||
| 9722 | public function isArrayType | ||
| 9723 | "Returns true if inType is an T_ARRAY" | ||
| 9724 | input DAE.Type inType; | ||
| 9725 | output Boolean b; | ||
| 9726 | algorithm | ||
| 9727 | b := match inType | ||
| 9728 | case DAE.T_ARRAY() then true; | ||
| 9729 | else false; | ||
| 9730 | end match; | ||
| 9731 | end isArrayType; | ||
| 9732 | |||
| 9733 | public function isRecordType | ||
| 9734 | "Return true if the type is a record type." | ||
| 9735 | input DAE.Type inType; | ||
| 9736 | output Boolean b; | ||
| 9737 | algorithm | ||
| 9738 | b := match inType | ||
| 9739 | case DAE.T_COMPLEX(complexClassType = ClassInf.RECORD()) then true; | ||
| 9740 | else false; | ||
| 9741 | end match; | ||
| 9742 | end isRecordType; | ||
| 9743 | |||
| 9744 | public function isNotComplex "returns true if the exp is 1-dimensional" | ||
| 9745 | input DAE.Exp e; | ||
| 9746 | output Boolean b; | ||
| 9747 | algorithm | ||
| 9748 | b := match e | ||
| 9749 | local | ||
| 9750 | Boolean b2; | ||
| 9751 | DAE.Exp e2; | ||
| 9752 | case DAE.CALL() | ||
| 9753 | then | ||
| 9754 | false; | ||
| 9755 | case DAE.RECORD() | ||
| 9756 | then | ||
| 9757 | false; | ||
| 9758 | case DAE.ARRAY() | ||
| 9759 | then | ||
| 9760 | false; | ||
| 9761 | case DAE.CAST(exp=e2) | ||
| 9762 | algorithm | ||
| 9763 | ✗ | b2 := isNotComplex(e2); | |
| 9764 | then b2; | ||
| 9765 | else | ||
| 9766 | true; | ||
| 9767 | end match; | ||
| 9768 | end isNotComplex; | ||
| 9769 | |||
| 9770 | public function isRealType | ||
| 9771 | "Return true if the type is Real." | ||
| 9772 | input DAE.Type inType; | ||
| 9773 | output Boolean b; | ||
| 9774 | algorithm | ||
| 9775 | b := match inType | ||
| 9776 | case DAE.T_REAL() then true; | ||
| 9777 | else false; | ||
| 9778 | end match; | ||
| 9779 | end isRealType; | ||
| 9780 | |||
| 9781 | public function dimensionsEqual | ||
| 9782 | "Returns whether two dimensions are equal or not." | ||
| 9783 | input DAE.Dimension dim1; | ||
| 9784 | input DAE.Dimension dim2; | ||
| 9785 | output Boolean res; | ||
| 9786 | algorithm | ||
| 9787 | res := match(dim1, dim2) | ||
| 9788 | local Boolean b; | ||
| 9789 | case (DAE.DIM_UNKNOWN(), _) then true; | ||
| 9790 | case (_, DAE.DIM_UNKNOWN()) then true; | ||
| 9791 | case (DAE.DIM_EXP(), _) then true; | ||
| 9792 | case (_, DAE.DIM_EXP()) then true; | ||
| 9793 | |||
| 9794 | else | ||
| 9795 | algorithm | ||
| 9796 | 30297 | b := intEq(dimensionSize(dim1), dimensionSize(dim2)); | |
| 9797 | then | ||
| 9798 | b; | ||
| 9799 | end match; | ||
| 9800 | end dimensionsEqual; | ||
| 9801 | |||
| 9802 | public function dimsEqual | ||
| 9803 | "Returns whether two dimensions are equal or not." | ||
| 9804 | input DAE.Dimensions dims1; | ||
| 9805 | input DAE.Dimensions dims2; | ||
| 9806 | output Boolean res; | ||
| 9807 | algorithm | ||
| 9808 | res := match(dims1, dims2) | ||
| 9809 | local | ||
| 9810 | DAE.Dimension d1, d2; | ||
| 9811 | DAE.Dimensions dl1, dl2; | ||
| 9812 | |||
| 9813 | case ({}, {}) then true; | ||
| 9814 | case (d1::dl1, d2::dl2) guard dimensionsEqual(d1, d2) | ||
| 9815 | 27726 | then | |
| 9816 | dimsEqual(dl1, dl2); | ||
| 9817 | else false; | ||
| 9818 | end match; | ||
| 9819 | end dimsEqual; | ||
| 9820 | |||
| 9821 | public function dimsEqualAllowZero | ||
| 9822 | "Returns whether two dimensions are equal or not. | ||
| 9823 | 0 == anydim is allowed" | ||
| 9824 | input DAE.Dimensions dims1; | ||
| 9825 | input DAE.Dimensions dims2; | ||
| 9826 | output Boolean res; | ||
| 9827 | algorithm | ||
| 9828 | res := match(dims1, dims2) | ||
| 9829 | local | ||
| 9830 | DAE.Dimension d1, d2; | ||
| 9831 | DAE.Dimensions dl1, dl2; | ||
| 9832 | |||
| 9833 | case ({}, {}) then true; | ||
| 9834 | case (d1::dl1, d2::dl2) guard dimensionsEqualAllowZero(d1, d2) | ||
| 9835 | ✗ | then | |
| 9836 | dimsEqualAllowZero(dl1, dl2); | ||
| 9837 | else false; | ||
| 9838 | end match; | ||
| 9839 | end dimsEqualAllowZero; | ||
| 9840 | |||
| 9841 | public function dimensionsEqualAllowZero | ||
| 9842 | "Returns whether two dimensions are equal or not. | ||
| 9843 | 0 == anyDim is allowed" | ||
| 9844 | input DAE.Dimension dim1; | ||
| 9845 | input DAE.Dimension dim2; | ||
| 9846 | output Boolean res; | ||
| 9847 | algorithm | ||
| 9848 | res := match(dim1, dim2) | ||
| 9849 | local | ||
| 9850 | Boolean b; | ||
| 9851 | Integer d1, d2; | ||
| 9852 | |||
| 9853 | case (DAE.DIM_UNKNOWN(), _) then true; | ||
| 9854 | case (_, DAE.DIM_UNKNOWN()) then true; | ||
| 9855 | case (DAE.DIM_EXP(), _) then true; | ||
| 9856 | case (_, DAE.DIM_EXP()) then true; | ||
| 9857 | |||
| 9858 | else | ||
| 9859 | algorithm | ||
| 9860 | ✗ | d1 := dimensionSize(dim1); | |
| 9861 | ✗ | d2 := dimensionSize(dim2); | |
| 9862 | ✗ | b := boolOr( | |
| 9863 | intEq(d1, d2), | ||
| 9864 | boolOr( | ||
| 9865 | boolAnd(intEq(d1,0), intNe(d2,0)), | ||
| 9866 | boolAnd(intEq(d2,0), intNe(d1,0)))); | ||
| 9867 | then | ||
| 9868 | b; | ||
| 9869 | end match; | ||
| 9870 | end dimensionsEqualAllowZero; | ||
| 9871 | |||
| 9872 | public function dimensionsKnownAndEqual | ||
| 9873 | "Checks that two dimensions are specified and equal." | ||
| 9874 | input DAE.Dimension dim1; | ||
| 9875 | input DAE.Dimension dim2; | ||
| 9876 | output Boolean res; | ||
| 9877 | algorithm | ||
| 9878 | res := match (dim1,dim2) | ||
| 9879 | case (DAE.DIM_UNKNOWN(),_) then false; // dimensionSizeExp fails on DIM_UNKNOWN... | ||
| 9880 | case (_,DAE.DIM_UNKNOWN()) then false; | ||
| 9881 | 416232 | else ExpressionBasics.expEqual(dimensionSizeExp(dim1), dimensionSizeExp(dim2)); | |
| 9882 | end match; | ||
| 9883 | end dimensionsKnownAndEqual; | ||
| 9884 | |||
| 9885 | public function dimensionKnown | ||
| 9886 | "Checks whether a dimension is known or not." | ||
| 9887 | input DAE.Dimension dim; | ||
| 9888 | output Boolean known; | ||
| 9889 | algorithm | ||
| 9890 | known := match dim | ||
| 9891 | case DAE.DIM_UNKNOWN() then false; | ||
| 9892 | case DAE.DIM_EXP(exp = DAE.ICONST()) then true; | ||
| 9893 | case DAE.DIM_EXP(exp = DAE.BCONST()) then true; | ||
| 9894 | case DAE.DIM_EXP(exp = DAE.ENUM_LITERAL()) then true; | ||
| 9895 | case DAE.DIM_EXP() then false; | ||
| 9896 | else true; | ||
| 9897 | end match; | ||
| 9898 | end dimensionKnown; | ||
| 9899 | |||
| 9900 | public function dimensionKnownAndNonZero | ||
| 9901 | "Checks whether a dimensions is known or not." | ||
| 9902 | input DAE.Dimension dim; | ||
| 9903 | output Boolean known; | ||
| 9904 | algorithm | ||
| 9905 | known := match dim | ||
| 9906 | case DAE.DIM_EXP(exp = DAE.ICONST(0)) then false; | ||
| 9907 | case DAE.DIM_INTEGER(0) then false; | ||
| 9908 | 2467 | else dimensionKnown(dim); | |
| 9909 | end match; | ||
| 9910 | end dimensionKnownAndNonZero; | ||
| 9911 | |||
| 9912 | public function dimensionsKnownAndNonZero | ||
| 9913 | "Checks whether all dimensions are known or not." | ||
| 9914 | input list<DAE.Dimension> dims; | ||
| 9915 | output Boolean allKnown; | ||
| 9916 | algorithm | ||
| 9917 | 32044 | allKnown := List.all(dims, dimensionKnownAndNonZero); | |
| 9918 | end dimensionsKnownAndNonZero; | ||
| 9919 | |||
| 9920 | public function dimensionUnknownOrExp | ||
| 9921 | "Checks whether a dimensions is known or not." | ||
| 9922 | input DAE.Dimension dim; | ||
| 9923 | output Boolean known; | ||
| 9924 | algorithm | ||
| 9925 | known := match dim | ||
| 9926 | case DAE.DIM_UNKNOWN() then true; | ||
| 9927 | case DAE.DIM_EXP() then true; | ||
| 9928 | else false; | ||
| 9929 | end match; | ||
| 9930 | end dimensionUnknownOrExp; | ||
| 9931 | |||
| 9932 | public function dimensionUnknown | ||
| 9933 | input DAE.Dimension inDimension; | ||
| 9934 | output Boolean outUnknown; | ||
| 9935 | algorithm | ||
| 9936 | outUnknown := match inDimension | ||
| 9937 | case DAE.DIM_UNKNOWN() then true; | ||
| 9938 | else false; | ||
| 9939 | end match; | ||
| 9940 | end dimensionUnknown; | ||
| 9941 | |||
| 9942 | public function hasUnknownDims | ||
| 9943 | input list<DAE.Dimension> dims; | ||
| 9944 | output Boolean hasUnkown; | ||
| 9945 | algorithm | ||
| 9946 | 11097 | hasUnkown := List.any(dims, dimensionUnknown); | |
| 9947 | end hasUnknownDims; | ||
| 9948 | |||
| 9949 | public function subscriptConstant | ||
| 9950 | input DAE.Subscript sub; | ||
| 9951 | output Boolean b; | ||
| 9952 | algorithm | ||
| 9953 | b := match sub | ||
| 9954 | case DAE.INDEX(exp = DAE.ICONST()) then true; | ||
| 9955 | case DAE.INDEX(exp = DAE.ENUM_LITERAL()) then true; | ||
| 9956 | case DAE.INDEX(exp = DAE.BCONST()) then true; | ||
| 9957 | else false; | ||
| 9958 | end match; | ||
| 9959 | end subscriptConstant; | ||
| 9960 | |||
| 9961 | public function subscriptConstants " | ||
| 9962 | returns true if all subscripts are known (i.e no cref) constant values (no slice or wholedim)" | ||
| 9963 | input list<DAE.Subscript> inSubs; | ||
| 9964 | output Boolean areConstant = true; | ||
| 9965 | algorithm | ||
| 9966 |
2/2✓ Branch 0 taken 1488797 times.
✓ Branch 1 taken 1249745 times.
|
2738542 | for sub in inSubs loop |
| 9967 | 1488797 | areConstant := subscriptConstant(sub); | |
| 9968 |
2/2✓ Branch 0 taken 2274 times.
✓ Branch 1 taken 1486523 times.
|
1488797 | if not areConstant then return; end if; |
| 9969 | end for; | ||
| 9970 | end subscriptConstants; | ||
| 9971 | |||
| 9972 | public function isValidSubscript | ||
| 9973 | "Checks if an expression is a valid subscript, i.e. an integer or enumeration | ||
| 9974 | literal." | ||
| 9975 | input DAE.Exp inSub; | ||
| 9976 | output Boolean isValid; | ||
| 9977 | algorithm | ||
| 9978 | isValid := match inSub | ||
| 9979 | case DAE.ICONST() then true; | ||
| 9980 | case DAE.ENUM_LITERAL() then true; | ||
| 9981 | case DAE.BCONST() then true; | ||
| 9982 | else false; | ||
| 9983 | end match; | ||
| 9984 | end isValidSubscript; | ||
| 9985 | |||
| 9986 | public function subscriptContain "This function checks whether sub2 contains sub1 or not(DAE.WHOLEDIM())" | ||
| 9987 | input list<DAE.Subscript> issl1; | ||
| 9988 | input list<DAE.Subscript> issl2; | ||
| 9989 | output Boolean contained; | ||
| 9990 | algorithm | ||
| 9991 | contained := match(issl1,issl2) | ||
| 9992 | local | ||
| 9993 | Boolean b; | ||
| 9994 | Subscript ss1,ss2; | ||
| 9995 | list<DAE.Subscript> ssl1,ssl2; | ||
| 9996 | Integer i; | ||
| 9997 | list<DAE.Exp> expl; | ||
| 9998 | |||
| 9999 | case({},_) then true; | ||
| 10000 | |||
| 10001 | case(_ ::ssl1, (DAE.WHOLEDIM())::ssl2) | ||
| 10002 | algorithm | ||
| 10003 | ✗ | b := subscriptContain(ssl1,ssl2); | |
| 10004 | then b; | ||
| 10005 | |||
| 10006 | // Should there be additional checking in this case? | ||
| 10007 | case(_ ::ssl1, (DAE.WHOLE_NONEXP(_))::ssl2) | ||
| 10008 | algorithm | ||
| 10009 | ✗ | b := subscriptContain(ssl1,ssl2); | |
| 10010 | then b; | ||
| 10011 | /* case(ss1::ssl1, (ss2 as DAE.SLICE(exp)) ::ssl2) | ||
| 10012 | local DAE.Exp exp; | ||
| 10013 | algorithm | ||
| 10014 | b = subscriptContain(ssl1,ssl2); | ||
| 10015 | then | ||
| 10016 | b; | ||
| 10017 | */ | ||
| 10018 | case((DAE.INDEX(DAE.ICONST(i)))::ssl1, (DAE.SLICE(DAE.ARRAY(_,_,expl))) ::ssl2) | ||
| 10019 | algorithm | ||
| 10020 | ✗ | true := subscriptContain2(i,expl); | |
| 10021 | ✗ | b := subscriptContain(ssl1,ssl2); | |
| 10022 | then | ||
| 10023 | b; | ||
| 10024 | |||
| 10025 | case(ss1::ssl1,ss2::ssl2) | ||
| 10026 | algorithm | ||
| 10027 | ✗ | true := ExpressionBasics.subscriptEqual({ss1},{ss2}); | |
| 10028 | ✗ | b := subscriptContain(ssl1,ssl2); | |
| 10029 | then | ||
| 10030 | b; | ||
| 10031 | else false; | ||
| 10032 | end match; | ||
| 10033 | end subscriptContain; | ||
| 10034 | |||
| 10035 | protected function subscriptContain2 " | ||
| 10036 | " | ||
| 10037 | input Integer inInt; | ||
| 10038 | input list<DAE.Exp> inExp2; | ||
| 10039 | output Boolean contained; | ||
| 10040 | algorithm | ||
| 10041 | contained := match(inInt,inExp2) | ||
| 10042 | local | ||
| 10043 | Boolean b,b2; | ||
| 10044 | list<DAE.Exp> expl,expl2; | ||
| 10045 | Integer i,j; | ||
| 10046 | case(i,( (DAE.ICONST(j)) :: _)) guard (i == j) | ||
| 10047 | then | ||
| 10048 | true; | ||
| 10049 | case(i,(( DAE.ICONST(_)) :: expl)) guard subscriptContain2(i,expl) | ||
| 10050 | then | ||
| 10051 | true; | ||
| 10052 | case(i,( (DAE.ARRAY(_,_,expl2)) :: expl)) | ||
| 10053 | algorithm | ||
| 10054 | ✗ | b := subscriptContain2(i,expl2); | |
| 10055 | ✗ | b2 := if b then true else subscriptContain2(i,expl); | |
| 10056 | then | ||
| 10057 | b2; | ||
| 10058 | else false; | ||
| 10059 | end match; | ||
| 10060 | end subscriptContain2; | ||
| 10061 | |||
| 10062 | public function hasNoSideEffects | ||
| 10063 | "Returns true if the expression is free from side-effects. Use with traverseExpBottomUp." | ||
| 10064 | input DAE.Exp inExp; | ||
| 10065 | input Boolean ib; | ||
| 10066 | output DAE.Exp outExp; | ||
| 10067 | output Boolean ob; | ||
| 10068 | algorithm | ||
| 10069 | (outExp,ob) := match inExp | ||
| 10070 | local | ||
| 10071 | case DAE.CALL() then (inExp,false); | ||
| 10072 | case DAE.MATCHEXPRESSION() then (inExp,false); | ||
| 10073 | else (inExp,ib); | ||
| 10074 | end match; | ||
| 10075 | end hasNoSideEffects; | ||
| 10076 | |||
| 10077 | public function isBuiltinFunctionReference | ||
| 10078 | "Returns true if the expression is a reference to a builtin function" | ||
| 10079 | input DAE.Exp exp; | ||
| 10080 | output Boolean b; | ||
| 10081 | algorithm | ||
| 10082 | b := match exp | ||
| 10083 | case DAE.CREF(ty=DAE.T_FUNCTION_REFERENCE_FUNC(builtin=true)) then true; | ||
| 10084 | else false; | ||
| 10085 | end match; | ||
| 10086 | end isBuiltinFunctionReference; | ||
| 10087 | |||
| 10088 | public function makeCons "DAE.CONS" | ||
| 10089 | input DAE.Exp car; | ||
| 10090 | input DAE.Exp cdr; | ||
| 10091 | output DAE.Exp exp; | ||
| 10092 | annotation(__OpenModelica_EarlyInline = true); | ||
| 10093 | algorithm | ||
| 10094 | ✗ | exp := DAE.CONS(car,cdr); | |
| 10095 | end makeCons; | ||
| 10096 | |||
| 10097 | public function makeBuiltinCall | ||
| 10098 | "Create a DAE.CALL with the given data for a call to a builtin function." | ||
| 10099 | input String name; | ||
| 10100 | input list<DAE.Exp> args; | ||
| 10101 | input DAE.Type result_type; | ||
| 10102 | input Boolean isImpure; | ||
| 10103 | output DAE.Exp call; | ||
| 10104 | annotation(__OpenModelica_EarlyInline = true); | ||
| 10105 | algorithm | ||
| 10106 |
2/2✓ Branch 1 taken 29635 times.
✓ Branch 2 taken 4 times.
|
59274 | call := DAE.CALL(Absyn.IDENT(name),args,DAE.CALL_ATTR(result_type,false,true,isImpure,false,DAE.NO_INLINE(),DAE.NO_TAIL(),DAE.NoReturn.RETURNS)); |
| 10107 | end makeBuiltinCall; | ||
| 10108 | |||
| 10109 | public function makePureBuiltinCall | ||
| 10110 | "Create a DAE.CALL with the given data for a call to a builtin function." | ||
| 10111 | input String name; | ||
| 10112 | input list<DAE.Exp> args; | ||
| 10113 | input DAE.Type result_type; | ||
| 10114 | output DAE.Exp call; | ||
| 10115 | annotation(__OpenModelica_EarlyInline = true); | ||
| 10116 | algorithm | ||
| 10117 | 29621 | call := makeBuiltinCall(name, args, result_type, false); | |
| 10118 | end makePureBuiltinCall; | ||
| 10119 | |||
| 10120 | public function makeImpureBuiltinCall | ||
| 10121 | "Create a DAE.CALL with the given data for a call to a builtin function." | ||
| 10122 | input String name; | ||
| 10123 | input list<DAE.Exp> args; | ||
| 10124 | input DAE.Type result_type; | ||
| 10125 | output DAE.Exp call; | ||
| 10126 | annotation(__OpenModelica_EarlyInline = true); | ||
| 10127 | algorithm | ||
| 10128 | 4 | call := makeBuiltinCall(name, args, result_type, true); | |
| 10129 | end makeImpureBuiltinCall; | ||
| 10130 | |||
| 10131 | public function reductionIterName | ||
| 10132 | input DAE.ReductionIterator iter; | ||
| 10133 | output String name; | ||
| 10134 | algorithm | ||
| 10135 | 28 | DAE.REDUCTIONITER(id=name) := iter; | |
| 10136 | end reductionIterName; | ||
| 10137 | |||
| 10138 | protected function traverseReductionIteratorBidir<ArgT> | ||
| 10139 | input DAE.ReductionIterator inIter; | ||
| 10140 | input FuncType inEnterFunc; | ||
| 10141 | input FuncType inExitFunc; | ||
| 10142 | input ArgT inArg; | ||
| 10143 | output DAE.ReductionIterator outIter; | ||
| 10144 | output ArgT outArg; | ||
| 10145 | |||
| 10146 | partial function FuncType | ||
| 10147 | input DAE.Exp inExp; | ||
| 10148 | input ArgT inArg; | ||
| 10149 | output DAE.Exp outExp; | ||
| 10150 | output ArgT outArg; | ||
| 10151 | end FuncType; | ||
| 10152 | algorithm | ||
| 10153 | (outIter, outArg) := match inIter | ||
| 10154 | local | ||
| 10155 | String id; | ||
| 10156 | DAE.Exp exp; | ||
| 10157 | Option<DAE.Exp> gexp; | ||
| 10158 | DAE.Type ty; | ||
| 10159 | ArgT arg; | ||
| 10160 | |||
| 10161 | case DAE.REDUCTIONITER(id, exp, gexp, ty) | ||
| 10162 | algorithm | ||
| 10163 | 28 | (exp, arg) := traverseExpBidir(exp, inEnterFunc, inExitFunc, inArg); | |
| 10164 | 28 | (gexp, arg) := traverseExpOptBidir(gexp, inEnterFunc, inExitFunc, arg); | |
| 10165 |
1/2✓ Branch 1 taken 28 times.
✗ Branch 2 not taken.
|
28 | then |
| 10166 | (DAE.REDUCTIONITER(id, exp, gexp, ty), arg); | ||
| 10167 | |||
| 10168 | end match; | ||
| 10169 | end traverseReductionIteratorBidir; | ||
| 10170 | |||
| 10171 | protected function traverseReductionIteratorTopDown | ||
| 10172 | input DAE.ReductionIterator iter; | ||
| 10173 | input FuncExpType func; | ||
| 10174 | input Type_a inArg; | ||
| 10175 | output DAE.ReductionIterator outIter; | ||
| 10176 | output Type_a outArg; | ||
| 10177 | |||
| 10178 | partial function FuncExpType | ||
| 10179 | input DAE.Exp inExp; | ||
| 10180 | input Type_a inTypeA; | ||
| 10181 | output DAE.Exp outExp; | ||
| 10182 | output Boolean cont; | ||
| 10183 | output Type_a outA; | ||
| 10184 | end FuncExpType; | ||
| 10185 | |||
| 10186 | replaceable type Type_a subtypeof Any; | ||
| 10187 | algorithm | ||
| 10188 | (outIter,outArg) := match (iter, inArg) | ||
| 10189 | local | ||
| 10190 | String id; | ||
| 10191 | DAE.Exp exp; | ||
| 10192 | Option<DAE.Exp> gexp; | ||
| 10193 | DAE.Type ty; | ||
| 10194 | Type_a arg; | ||
| 10195 | case (DAE.REDUCTIONITER(id,exp,gexp,ty), arg) | ||
| 10196 | algorithm | ||
| 10197 | 249 | (exp, arg) := traverseExpTopDown(exp, func, arg); | |
| 10198 | 249 | (gexp, arg) := traverseExpOptTopDown(gexp, func, arg); | |
| 10199 |
1/2✓ Branch 1 taken 249 times.
✗ Branch 2 not taken.
|
249 | then (DAE.REDUCTIONITER(id,exp,gexp,ty),arg); |
| 10200 | end match; | ||
| 10201 | end traverseReductionIteratorTopDown; | ||
| 10202 | |||
| 10203 | protected function traverseReductionIteratorsTopDown | ||
| 10204 | input DAE.ReductionIterators inIters; | ||
| 10205 | input FuncExpType func; | ||
| 10206 | input Type_a inArg; | ||
| 10207 | output DAE.ReductionIterators outIters; | ||
| 10208 | output Type_a outArg; | ||
| 10209 | |||
| 10210 | partial function FuncExpType | ||
| 10211 | input DAE.Exp inExp; | ||
| 10212 | input Type_a inTypeA; | ||
| 10213 | output DAE.Exp outExp; | ||
| 10214 | output Boolean cont; | ||
| 10215 | output Type_a outA; | ||
| 10216 | end FuncExpType; | ||
| 10217 | |||
| 10218 | replaceable type Type_a subtypeof Any; | ||
| 10219 | algorithm | ||
| 10220 | (outIters,outArg) := match (inIters, inArg) | ||
| 10221 | local | ||
| 10222 | Type_a arg; | ||
| 10223 | DAE.ReductionIterator iter; | ||
| 10224 | DAE.ReductionIterators iters; | ||
| 10225 | |||
| 10226 | case ({}, arg) then (inIters,arg); | ||
| 10227 | case (iter::iters, arg) | ||
| 10228 | algorithm | ||
| 10229 | 249 | (iter, arg) := traverseReductionIteratorTopDown(iter, func, arg); | |
| 10230 | 249 | (iters, arg) := traverseReductionIteratorsTopDown(iters, func, arg); | |
| 10231 | 249 | then (iter::iters,arg); | |
| 10232 | end match; | ||
| 10233 | end traverseReductionIteratorsTopDown; | ||
| 10234 | |||
| 10235 | protected function traverseReductionIterator | ||
| 10236 | input DAE.ReductionIterator iter; | ||
| 10237 | input FuncExpType func; | ||
| 10238 | input Type_a iarg; | ||
| 10239 | output DAE.ReductionIterator outIter; | ||
| 10240 | output Type_a outArg; | ||
| 10241 | |||
| 10242 | partial function FuncExpType | ||
| 10243 | input DAE.Exp inExp; | ||
| 10244 | input Type_a inTypeA; | ||
| 10245 | output DAE.Exp outExp; | ||
| 10246 | output Type_a outA; | ||
| 10247 | end FuncExpType; | ||
| 10248 | replaceable type Type_a subtypeof Any; | ||
| 10249 | algorithm | ||
| 10250 | (outIter,outArg) := match (iter, iarg) | ||
| 10251 | local | ||
| 10252 | String id; | ||
| 10253 | DAE.Exp exp,exp1; | ||
| 10254 | Option<DAE.Exp> gexp,gexp1; | ||
| 10255 | DAE.Type ty; | ||
| 10256 | Type_a arg; | ||
| 10257 | |||
| 10258 | case (DAE.REDUCTIONITER(id,exp,gexp,ty), arg) | ||
| 10259 | algorithm | ||
| 10260 | 3767 | (exp1, arg) := traverseExpBottomUp(exp, func, arg); | |
| 10261 | 3767 | (gexp1, arg) := traverseExpOpt(gexp, func, arg); | |
| 10262 |
2/2✓ Branch 0 taken 41 times.
✓ Branch 1 taken 3726 times.
|
3767 | outIter := if referenceEq(exp,exp1) and referenceEq(gexp,gexp1) then iter else DAE.REDUCTIONITER(id,exp1,gexp1,ty); |
| 10263 |
1/2✓ Branch 0 taken 3767 times.
✗ Branch 1 not taken.
|
3767 | then (outIter, arg); |
| 10264 | end match; | ||
| 10265 | end traverseReductionIterator; | ||
| 10266 | |||
| 10267 | protected function traverseReductionIterators | ||
| 10268 | input output DAE.ReductionIterators iters; | ||
| 10269 | input FuncExpType func; | ||
| 10270 | input output Type_a arg; | ||
| 10271 | |||
| 10272 | partial function FuncExpType | ||
| 10273 | input DAE.Exp inExp; | ||
| 10274 | input Type_a inTypeA; | ||
| 10275 | output DAE.Exp outExp; | ||
| 10276 | output Type_a outA; | ||
| 10277 | end FuncExpType; | ||
| 10278 | replaceable type Type_a subtypeof Any; | ||
| 10279 | algorithm | ||
| 10280 | (iters,arg) := match iters | ||
| 10281 | local | ||
| 10282 | DAE.ReductionIterator iter,iter1; | ||
| 10283 | DAE.ReductionIterators rest,iters1; | ||
| 10284 | |||
| 10285 | case {} then (iters,arg); | ||
| 10286 | case iter::rest | ||
| 10287 | algorithm | ||
| 10288 | 3767 | (iter1, arg) := traverseReductionIterator(iter, func, arg); | |
| 10289 | 3767 | (iters1, arg) := traverseReductionIterators(rest, func, arg); | |
| 10290 |
2/2✓ Branch 0 taken 41 times.
✓ Branch 1 taken 3726 times.
|
3767 | iters := if referenceEq(iter,iter1) and referenceEq(rest,iters1) then iters else (iter1::iters1); |
| 10291 | 3767 | then (iters, arg); | |
| 10292 | end match; | ||
| 10293 | end traverseReductionIterators; | ||
| 10294 | |||
| 10295 | public function simpleCrefName | ||
| 10296 | input DAE.Exp exp; | ||
| 10297 | output String name; | ||
| 10298 | algorithm | ||
| 10299 |
6/6✓ Branch 0 taken 58 times.
✓ Branch 1 taken 6267 times.
✓ Branch 3 taken 486 times.
✓ Branch 4 taken 5781 times.
✓ Branch 6 taken 24 times.
✓ Branch 7 taken 5757 times.
|
6325 | DAE.CREF(componentRef=DAE.CREF_IDENT(ident=name,subscriptLst={})) := exp; |
| 10300 | end simpleCrefName; | ||
| 10301 | |||
| 10302 | public function isTailCall | ||
| 10303 | input DAE.Exp exp; | ||
| 10304 | output Boolean isTail; | ||
| 10305 | algorithm | ||
| 10306 | isTail := match exp | ||
| 10307 | case DAE.CALL(attr=DAE.CALL_ATTR(tailCall=DAE.TAIL())) then true; | ||
| 10308 | else false; | ||
| 10309 | end match; | ||
| 10310 | end isTailCall; | ||
| 10311 | |||
| 10312 | public function complexityTraverse | ||
| 10313 | input DAE.Exp exp; | ||
| 10314 | input Integer complexity; | ||
| 10315 | output DAE.Exp outExp; | ||
| 10316 | output Integer outComplexity; | ||
| 10317 | algorithm | ||
| 10318 | ✗ | (outExp,outComplexity) := traverseExpBottomUp(exp,complexityTraverse2,complexity); | |
| 10319 | end complexityTraverse; | ||
| 10320 | |||
| 10321 | protected function complexityTraverse2 | ||
| 10322 | input DAE.Exp exp; | ||
| 10323 | input Integer complexity_; | ||
| 10324 | output DAE.Exp outExp; | ||
| 10325 | output Integer outComplexity; | ||
| 10326 | algorithm | ||
| 10327 | ✗ | outComplexity := complexity_ + complexity(exp); | |
| 10328 | outExp := exp; | ||
| 10329 | end complexityTraverse2; | ||
| 10330 | |||
| 10331 | protected constant Integer complexityAlloc = 5; | ||
| 10332 | protected constant Integer complexityVeryBig = 500000 "Things that are too hard to calculate :("; | ||
| 10333 | protected constant Integer complexityDimLarge = 1000 "Unknown dimensions usually aren't big, but might be"; | ||
| 10334 | |||
| 10335 | public function complexity | ||
| 10336 | input DAE.Exp exp; | ||
| 10337 | output Integer i; | ||
| 10338 | algorithm | ||
| 10339 | i := match exp | ||
| 10340 | local | ||
| 10341 | DAE.Operator op; | ||
| 10342 | DAE.Exp e,e1,e2,e3; | ||
| 10343 | Integer c1,c2,c3; | ||
| 10344 | list<DAE.Exp> exps; | ||
| 10345 | list<list<DAE.Exp>> matrix; | ||
| 10346 | String str,name; | ||
| 10347 | DAE.Type tp; | ||
| 10348 | list<DAE.Subscript> subs; | ||
| 10349 | |||
| 10350 | case DAE.ICONST() then 0; | ||
| 10351 | case DAE.RCONST() then 0; | ||
| 10352 | case DAE.SCONST() then 0; | ||
| 10353 | case DAE.BCONST() then 0; | ||
| 10354 | case DAE.SHARED_LITERAL() then 0; | ||
| 10355 | case DAE.ENUM_LITERAL() then 0; | ||
| 10356 | ✗ | case DAE.CREF(ty=tp) then tpComplexity(tp); | |
| 10357 | case DAE.BINARY(exp1=e1,operator=op,exp2=e2) | ||
| 10358 | algorithm | ||
| 10359 | ✗ | c1 := complexity(e1); | |
| 10360 | ✗ | c2 := complexity(e2); | |
| 10361 | ✗ | c3 := opComplexity(op); | |
| 10362 | ✗ | then c1+c2+c3; | |
| 10363 | case DAE.UNARY(exp=e,operator=op) | ||
| 10364 | algorithm | ||
| 10365 | ✗ | c1 := complexity(e); | |
| 10366 | ✗ | c2 := opComplexity(op); | |
| 10367 | ✗ | then c1+c2; | |
| 10368 | case DAE.LBINARY(exp1=e1,exp2=e2,operator=op) | ||
| 10369 | algorithm | ||
| 10370 | ✗ | c1 := complexity(e1); | |
| 10371 | ✗ | c2 := complexity(e2); | |
| 10372 | ✗ | c3 := opComplexity(op); | |
| 10373 | ✗ | then c1+c2+c3; | |
| 10374 | case DAE.LUNARY(exp=e,operator=op) | ||
| 10375 | algorithm | ||
| 10376 | ✗ | c1 := complexity(e); | |
| 10377 | ✗ | c2 := opComplexity(op); | |
| 10378 | ✗ | then c1+c2; | |
| 10379 | case DAE.RELATION(exp1=e1,exp2=e2,operator=op) | ||
| 10380 | algorithm | ||
| 10381 | ✗ | c1 := complexity(e1); | |
| 10382 | ✗ | c2 := complexity(e2); | |
| 10383 | ✗ | c3 := opComplexity(op); | |
| 10384 | ✗ | then c1+c2+c3; | |
| 10385 | case DAE.IFEXP(expCond=e1,expThen=e2,expElse=e3) | ||
| 10386 | algorithm | ||
| 10387 | ✗ | c1 := complexity(e1); | |
| 10388 | ✗ | c2 := complexity(e2); | |
| 10389 | ✗ | c3 := complexity(e3); | |
| 10390 | ✗ | then c1+intMax(c2,c3); | |
| 10391 | case DAE.CALL(path=Absyn.IDENT(name),expLst=exps,attr=DAE.CALL_ATTR(ty=tp,builtin=true)) | ||
| 10392 | algorithm | ||
| 10393 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,0); | |
| 10394 | ✗ | c2 := complexityBuiltin(name,tp); | |
| 10395 | /* TODO: Cost is based on type and size of inputs. Maybe even name for builtins :) */ | ||
| 10396 | ✗ | then c1+c2; | |
| 10397 | case DAE.CALL(expLst=exps) | ||
| 10398 | algorithm | ||
| 10399 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,0); | |
| 10400 | ✗ | c2 := listLength(exps); | |
| 10401 | /* TODO: Cost is based on type and size of inputs. Maybe even name for builtins :) */ | ||
| 10402 | ✗ | then c1+c2+25; | |
| 10403 | case DAE.RECORD(exps=exps) | ||
| 10404 | algorithm | ||
| 10405 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,1); | |
| 10406 | then c1; | ||
| 10407 | case DAE.PARTEVALFUNCTION() | ||
| 10408 | then complexityVeryBig; /* This should not be here anyway :) */ | ||
| 10409 | case DAE.ARRAY(array=exps,ty=tp) | ||
| 10410 | algorithm | ||
| 10411 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,if isArrayType(tp) then 0 else complexityAlloc); | |
| 10412 | ✗ | c2 := listLength(exps); | |
| 10413 | ✗ | then c1+c2; | |
| 10414 | case DAE.MATRIX(matrix=matrix as (exps::_)) | ||
| 10415 | algorithm | ||
| 10416 | ✗ | c1 := List.applyAndFold(List.flatten(matrix),intAdd,complexity,complexityAlloc); | |
| 10417 | ✗ | c2 := listLength(exps)*listLength(matrix); | |
| 10418 | ✗ | then c1 + c2; | |
| 10419 | case DAE.RANGE(start=e1,stop=e2,step=NONE()) | ||
| 10420 | ✗ | then complexityDimLarge+complexity(e1)+complexity(e2); /* TODO: Check type maybe? */ | |
| 10421 | case DAE.RANGE(start=e1,stop=e2,step=SOME(e3)) | ||
| 10422 | ✗ | then complexityDimLarge+complexity(e1)+complexity(e2)+complexity(e3); /* TODO: Check type maybe? */ | |
| 10423 | case DAE.TUPLE(PR=exps) | ||
| 10424 | algorithm | ||
| 10425 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,complexityAlloc); | |
| 10426 | ✗ | c2 := listLength(exps); | |
| 10427 | ✗ | then c1+c2; | |
| 10428 | ✗ | case DAE.CAST(exp=e,ty=tp) then tpComplexity(tp)+complexity(e); | |
| 10429 | case DAE.ASUB(exp=e,sub=subs) | ||
| 10430 | algorithm | ||
| 10431 | ✗ | exps := list(Expression.getSubscriptExp(sub) for sub in subs); | |
| 10432 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,complexityAlloc); | |
| 10433 | ✗ | c2 := listLength(exps); | |
| 10434 | c3 := complexity(e); | ||
| 10435 | then c1+c2+c3; | ||
| 10436 | case DAE.TSUB(exp=e) then complexity(e)+1; | ||
| 10437 | case DAE.SIZE(exp=e,sz=NONE()) then complexity(e)+complexityAlloc+10; /* TODO: Cost is based on type (creating the array) */ | ||
| 10438 | ✗ | case DAE.SIZE(exp=e1,sz=SOME(e2)) then complexity(e1)+complexity(e2)+1; | |
| 10439 | case DAE.CODE() then complexityVeryBig; | ||
| 10440 | case DAE.EMPTY() then complexityVeryBig; | ||
| 10441 | case DAE.REDUCTION() then complexityVeryBig; /* TODO: We need a real traversal... */ | ||
| 10442 | case DAE.LIST(valList=exps) | ||
| 10443 | algorithm | ||
| 10444 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,complexityAlloc); | |
| 10445 | ✗ | c2 := listLength(exps); | |
| 10446 | ✗ | then c1+c2+complexityAlloc; | |
| 10447 | case DAE.CONS(car=e1,cdr=e2) | ||
| 10448 | ✗ | then complexityAlloc+complexity(e1)+complexity(e2); | |
| 10449 | case DAE.META_TUPLE(listExp=exps) | ||
| 10450 | algorithm | ||
| 10451 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,complexityAlloc); | |
| 10452 | ✗ | c2 := listLength(exps); | |
| 10453 | ✗ | then complexityAlloc+c1+c2; | |
| 10454 | case DAE.META_OPTION(exp=NONE()) then 0; | ||
| 10455 | case DAE.META_OPTION(exp=SOME(e)) then complexity(e)+complexityAlloc; | ||
| 10456 | case DAE.METARECORDCALL(args=exps) | ||
| 10457 | algorithm | ||
| 10458 | ✗ | c1 := List.applyAndFold(exps,intAdd,complexity,complexityAlloc); | |
| 10459 | ✗ | c2 := listLength(exps); | |
| 10460 | ✗ | then c1+c2+complexityAlloc; | |
| 10461 | case DAE.MATCHEXPRESSION() then complexityVeryBig; | ||
| 10462 | case DAE.BOX(exp=e) then complexityAlloc+complexity(e); | ||
| 10463 | case DAE.UNBOX(exp=e) then 1+complexity(e); | ||
| 10464 | case DAE.PATTERN() then 0; | ||
| 10465 | else | ||
| 10466 | algorithm | ||
| 10467 | ✗ | str := "Expression.complexityWork failed: " + ExpressionBasics.printExpStr(exp); | |
| 10468 | ✗ | Error.addMessage(Error.INTERNAL_ERROR,{str}); | |
| 10469 | ✗ | then fail(); | |
| 10470 | end match; | ||
| 10471 | end complexity; | ||
| 10472 | |||
| 10473 | protected function complexityBuiltin | ||
| 10474 | input String name; | ||
| 10475 | input DAE.Type tp; | ||
| 10476 | output Integer complexity; | ||
| 10477 | algorithm | ||
| 10478 | complexity := match name | ||
| 10479 | ✗ | case "identity" then complexityAlloc+tpComplexity(tp); | |
| 10480 | case "cross" then 3*3; | ||
| 10481 | else 25; | ||
| 10482 | end match; | ||
| 10483 | end complexityBuiltin; | ||
| 10484 | |||
| 10485 | protected function tpComplexity | ||
| 10486 | input DAE.Type tp; | ||
| 10487 | output Integer i; | ||
| 10488 | algorithm | ||
| 10489 | i := match tp | ||
| 10490 | local | ||
| 10491 | list<DAE.Dimension> dims; | ||
| 10492 | case DAE.T_ARRAY(dims=dims) | ||
| 10493 | algorithm | ||
| 10494 | ✗ | i := List.applyAndFold(dims,intMul,dimComplexity,1); | |
| 10495 | then i; | ||
| 10496 | else 0; | ||
| 10497 | end match; | ||
| 10498 | end tpComplexity; | ||
| 10499 | |||
| 10500 | public function dimComplexity | ||
| 10501 | input DAE.Dimension dim; | ||
| 10502 | output Integer i; | ||
| 10503 | algorithm | ||
| 10504 | i := match dim | ||
| 10505 | case DAE.DIM_INTEGER(integer=i) then i; | ||
| 10506 | case DAE.DIM_ENUM(size=i) then i; | ||
| 10507 | case DAE.DIM_BOOLEAN() then 2; | ||
| 10508 | else complexityDimLarge; | ||
| 10509 | end match; | ||
| 10510 | end dimComplexity; | ||
| 10511 | |||
| 10512 | protected function opComplexity | ||
| 10513 | input DAE.Operator op; | ||
| 10514 | output Integer i; | ||
| 10515 | algorithm | ||
| 10516 | i := match op | ||
| 10517 | local | ||
| 10518 | DAE.Type tp; | ||
| 10519 | case DAE.ADD(ty=DAE.T_STRING()) then 100; | ||
| 10520 | case DAE.ADD() then 1; | ||
| 10521 | case DAE.SUB() then 1; | ||
| 10522 | case DAE.MUL() then 1; | ||
| 10523 | case DAE.DIV() then 1; | ||
| 10524 | case DAE.POW() then 30; | ||
| 10525 | case DAE.UMINUS() then 1; | ||
| 10526 | /* TODO: Array dims? */ | ||
| 10527 | ✗ | case DAE.UMINUS_ARR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10528 | ✗ | case DAE.ADD_ARR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10529 | ✗ | case DAE.SUB_ARR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10530 | ✗ | case DAE.MUL_ARR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10531 | ✗ | case DAE.DIV_ARR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10532 | ✗ | case DAE.MUL_ARRAY_SCALAR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10533 | ✗ | case DAE.ADD_ARRAY_SCALAR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10534 | ✗ | case DAE.SUB_SCALAR_ARRAY(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10535 | ✗ | case DAE.MUL_SCALAR_PRODUCT(ty=tp) then complexityAlloc+3*tpComplexity(tp); | |
| 10536 | ✗ | case DAE.MUL_MATRIX_PRODUCT(ty=tp) then complexityAlloc+3*tpComplexity(tp); | |
| 10537 | ✗ | case DAE.DIV_ARRAY_SCALAR(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10538 | ✗ | case DAE.DIV_SCALAR_ARRAY(ty=tp) then complexityAlloc+tpComplexity(tp); | |
| 10539 | ✗ | case DAE.POW_ARRAY_SCALAR(ty=tp) then complexityAlloc+30*tpComplexity(tp); | |
| 10540 | ✗ | case DAE.POW_SCALAR_ARRAY(ty=tp) then complexityAlloc+30*tpComplexity(tp); | |
| 10541 | ✗ | case DAE.POW_ARR(ty=tp) then complexityAlloc+30*tpComplexity(tp); | |
| 10542 | ✗ | case DAE.POW_ARR2(ty=tp) then complexityAlloc+30*tpComplexity(tp); | |
| 10543 | /* TODO: Array ops? */ | ||
| 10544 | case DAE.AND() then 1; | ||
| 10545 | case DAE.OR() then 1; | ||
| 10546 | case DAE.NOT() then 1; | ||
| 10547 | case DAE.LESS() then 1; | ||
| 10548 | case DAE.LESSEQ() then 1; | ||
| 10549 | case DAE.GREATER() then 1; | ||
| 10550 | case DAE.GREATEREQ() then 1; | ||
| 10551 | case DAE.EQUAL() then 1; | ||
| 10552 | case DAE.NEQUAL() then 1; | ||
| 10553 | case DAE.USERDEFINED() then 100; | ||
| 10554 | else | ||
| 10555 | algorithm | ||
| 10556 | ✗ | Error.addMessage(Error.INTERNAL_ERROR,{"Expression.opWCET failed"}); | |
| 10557 | ✗ | then fail(); | |
| 10558 | end match; | ||
| 10559 | end opComplexity; | ||
| 10560 | |||
| 10561 | public function makeEnumLiterals | ||
| 10562 | "Construct a list of enumeration literal expression given the type name of an | ||
| 10563 | enumeration an a list of literal names." | ||
| 10564 | input Absyn.Path inTypeName; | ||
| 10565 | input list<String> inLiterals; | ||
| 10566 | output list<DAE.Exp> outLiterals; | ||
| 10567 | protected | ||
| 10568 | list<Absyn.Path> enum_lit_names; | ||
| 10569 | algorithm | ||
| 10570 | 277 | enum_lit_names := List.map1r(inLiterals, AbsynUtil.suffixPath, inTypeName); | |
| 10571 | 277 | (outLiterals, _) := List.mapFold(enum_lit_names, makeEnumLiteral, 1); | |
| 10572 | end makeEnumLiterals; | ||
| 10573 | |||
| 10574 | protected function makeEnumLiteral | ||
| 10575 | "Creates a new enumeration literal. For use with listMapAndFold." | ||
| 10576 | input Absyn.Path name; | ||
| 10577 | input Integer index; | ||
| 10578 | output DAE.Exp enumExp; | ||
| 10579 | output Integer newIndex; | ||
| 10580 | algorithm | ||
| 10581 | 1488 | enumExp := DAE.ENUM_LITERAL(name, index); | |
| 10582 |
1/2✓ Branch 0 taken 1488 times.
✗ Branch 1 not taken.
|
1488 | newIndex := index + 1; |
| 10583 | end makeEnumLiteral; | ||
| 10584 | |||
| 10585 | public function isWild | ||
| 10586 | input DAE.Exp exp; | ||
| 10587 | output Boolean b; | ||
| 10588 | algorithm | ||
| 10589 | b := match exp | ||
| 10590 | case DAE.CREF(componentRef=DAE.WILD()) then true; | ||
| 10591 | else false; | ||
| 10592 | end match; | ||
| 10593 | end isWild; | ||
| 10594 | |||
| 10595 | public function isNotWild | ||
| 10596 | input DAE.Exp exp; | ||
| 10597 | output Boolean b; | ||
| 10598 | algorithm | ||
| 10599 | b := match exp | ||
| 10600 | case DAE.CREF(componentRef=DAE.WILD()) then false; | ||
| 10601 | else true; | ||
| 10602 | end match; | ||
| 10603 | end isNotWild; | ||
| 10604 | |||
| 10605 | public function dimensionsToExps "Takes a list of dimensions and select the expressions dimensions, returning a list of expressions" | ||
| 10606 | input list<DAE.Dimension> dims; | ||
| 10607 | output list<DAE.Exp> exps = {}; | ||
| 10608 | algorithm | ||
| 10609 | ✗ | for d in dims loop | |
| 10610 | exps := match d | ||
| 10611 | local | ||
| 10612 | DAE.Exp exp; | ||
| 10613 | case DAE.DIM_EXP(exp) then exp::exps; | ||
| 10614 | else exps; | ||
| 10615 | end match; | ||
| 10616 | end for; | ||
| 10617 | ✗ | exps := listReverse(exps); | |
| 10618 | end dimensionsToExps; | ||
| 10619 | |||
| 10620 | public function splitRecord | ||
| 10621 | "Splits a record into its elements. Works for crefs, records constructor calls, and casts of the same" | ||
| 10622 | input DAE.Exp inExp; | ||
| 10623 | input DAE.Type ty; | ||
| 10624 | output list<DAE.Exp> outExps; | ||
| 10625 | algorithm | ||
| 10626 | outExps := match (inExp,ty) | ||
| 10627 | local | ||
| 10628 | DAE.Exp exp; | ||
| 10629 | list<DAE.Var> vs; | ||
| 10630 | DAE.ComponentRef cr; | ||
| 10631 | Absyn.Path p1,p2; | ||
| 10632 | list<DAE.Exp> exps; | ||
| 10633 | 140 | case (DAE.CAST(exp=exp),_) then splitRecord(exp,ty); | |
| 10634 | case (DAE.CREF(),DAE.T_COMPLEX(complexClassType=ClassInf.EXTERNAL_OBJ(), varLst = {})) | ||
| 10635 | //Don't split External objects | ||
| 10636 | 30 | then fail(); | |
| 10637 | case (DAE.CREF(componentRef=cr),DAE.T_COMPLEX(varLst = vs)) | ||
| 10638 | 10053 | then List.map1(vs,splitRecord2,cr); | |
| 10639 | case (DAE.CALL(path=p1,expLst=exps,attr=DAE.CALL_ATTR(ty=DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p2)))),_) | ||
| 10640 | algorithm | ||
| 10641 |
2/2✓ Branch 1 taken 4198 times.
✓ Branch 2 taken 339 times.
|
4537 | true := AbsynUtil.pathEqual(p1,p2) "is record constructor"; |
| 10642 | then exps; | ||
| 10643 | case (DAE.RECORD(exps=exps),_) | ||
| 10644 | then exps; | ||
| 10645 | end match; | ||
| 10646 | end splitRecord; | ||
| 10647 | |||
| 10648 | protected function splitRecord2 | ||
| 10649 | input DAE.Var var; | ||
| 10650 | input DAE.ComponentRef cr; | ||
| 10651 | output DAE.Exp exp; | ||
| 10652 | protected | ||
| 10653 | String n; | ||
| 10654 | DAE.Type tt,ty; | ||
| 10655 | algorithm | ||
| 10656 | 49380 | DAE.TYPES_VAR(name = n,ty = tt) := var; | |
| 10657 | 49380 | ty := Types.simplifyType(tt); | |
| 10658 | 49380 | exp := makeCrefExp(ComponentReference.crefPrependIdent(cr, n, {}, ty), ty); | |
| 10659 | end splitRecord2; | ||
| 10660 | |||
| 10661 | public function splitArray | ||
| 10662 | "Splits an array into a list of elements." | ||
| 10663 | input DAE.Exp inExp; | ||
| 10664 | output list<DAE.Exp> outExp; | ||
| 10665 | output Boolean didSplit; | ||
| 10666 | algorithm | ||
| 10667 | (outExp,didSplit) := match inExp | ||
| 10668 | local | ||
| 10669 | list<DAE.Exp> expl; | ||
| 10670 | list<list<DAE.Exp>> mat; | ||
| 10671 | Integer istart, istop, istep; | ||
| 10672 | Option<DAE.Exp> step; | ||
| 10673 | |||
| 10674 | case DAE.ARRAY(array = expl) then (expl,true); | ||
| 10675 | ✗ | case DAE.MATRIX(matrix = mat) then (List.flatten(mat),true); | |
| 10676 | case DAE.RANGE(start = DAE.ICONST(istart), step = step, stop = DAE.ICONST(istop)) | ||
| 10677 | then (list(DAE.ICONST(i) for i in ExpressionSimplify.simplifyRange(istart,match step case NONE() then 1; case SOME(DAE.ICONST(istep)) then istep; end match,istop)),true); | ||
| 10678 | else ({inExp},false); | ||
| 10679 | end match; | ||
| 10680 | end splitArray; | ||
| 10681 | |||
| 10682 | public function equationExpEqual | ||
| 10683 | input DAE.EquationExp exp1; | ||
| 10684 | input DAE.EquationExp exp2; | ||
| 10685 | output Boolean b; | ||
| 10686 | algorithm | ||
| 10687 | b := match (exp1,exp2) | ||
| 10688 | local | ||
| 10689 | DAE.Exp e1,e2,e3,e4; | ||
| 10690 | ✗ | case (DAE.PARTIAL_EQUATION(e1),DAE.PARTIAL_EQUATION(e2)) then ExpressionBasics.expEqual(e1,e2); | |
| 10691 | ✗ | case (DAE.RESIDUAL_EXP(e1),DAE.RESIDUAL_EXP(e2)) then ExpressionBasics.expEqual(e1,e2); | |
| 10692 | ✗ | case (DAE.EQUALITY_EXPS(e1,e2),DAE.EQUALITY_EXPS(e3,e4)) then ExpressionBasics.expEqual(e1,e3) and ExpressionBasics.expEqual(e2,e4); | |
| 10693 | else false; | ||
| 10694 | end match; | ||
| 10695 | end equationExpEqual; | ||
| 10696 | |||
| 10697 | public function promoteExp | ||
| 10698 | "This function corresponds to the promote function described in the Modelica | ||
| 10699 | spec. It takes an expression, the type of the expression and a number of | ||
| 10700 | dimensions, and adds dimensions of size 1 to the right of the expression | ||
| 10701 | until the expression has as many dimensions as given. It also returns the | ||
| 10702 | type of the promoted expression. E.g.: | ||
| 10703 | |||
| 10704 | promoteExp({1, 2, 3}, Integer[3], 3) => | ||
| 10705 | ({{{1}}, {{2}}, {{3}}}, Integer[3,1,1]) | ||
| 10706 | |||
| 10707 | The reason why this function takes a type instead of using the type of the | ||
| 10708 | expression is because it's used by Static.promoteExp, which already knows the | ||
| 10709 | type." | ||
| 10710 | input DAE.Exp inExp; | ||
| 10711 | input DAE.Type inType; | ||
| 10712 | input Integer inDims; | ||
| 10713 | output DAE.Exp outExp; | ||
| 10714 | output DAE.Type outType; | ||
| 10715 | algorithm | ||
| 10716 | (outExp, outType) := matchcontinue inDims | ||
| 10717 | local | ||
| 10718 | Integer dims_to_add; | ||
| 10719 | DAE.Type ty, res_ty; | ||
| 10720 | DAE.Exp exp; | ||
| 10721 | list<DAE.Type> tys; | ||
| 10722 | list<DAE.Dimension> dims, added_dims; | ||
| 10723 | Boolean is_array_ty; | ||
| 10724 | |||
| 10725 | case _ | ||
| 10726 | algorithm | ||
| 10727 | // Figure out how many dimensions we need to add. | ||
| 10728 | 5482 | dims_to_add := inDims - Types.numberOfDimensions(inType); | |
| 10729 | // If the expression already has at least as many dimensions as we want, | ||
| 10730 | // fail and return the unchanged expression. | ||
| 10731 |
2/2✓ Branch 0 taken 17 times.
✓ Branch 1 taken 5465 times.
|
5482 | true := dims_to_add > 0; |
| 10732 | |||
| 10733 | // Construct all the types we will need here, to avoid having to | ||
| 10734 | // construct new types for all the subexpressions created. | ||
| 10735 | |||
| 10736 | // Add as many dimensions of size 1 as needed. | ||
| 10737 | 5465 | added_dims := List.fill(DAE.DIM_INTEGER(1), dims_to_add); | |
| 10738 | // Append the dimensions from the type and the added dimensions. | ||
| 10739 | 5465 | dims := listAppend(TypesDump.getDimensions(inType), added_dims); | |
| 10740 | // Construct the result type. | ||
| 10741 | 5465 | ty := Types.arrayElementType(inType); | |
| 10742 | 5465 | res_ty := Types.liftArrayListDims(ty, dims); | |
| 10743 | // Construct the expression types. | ||
| 10744 | 5465 | ty := Types.simplifyType(ty); | |
| 10745 | 5465 | tys := makePromotedTypes(dims, ty, {}); | |
| 10746 | |||
| 10747 | // Use the constructed types to promote the expression. | ||
| 10748 | 5465 | is_array_ty := Types.isArray(inType); | |
| 10749 | 5465 | exp := promoteExp2(inExp, is_array_ty, inDims, tys); | |
| 10750 | then | ||
| 10751 | (exp, res_ty); | ||
| 10752 | |||
| 10753 | else (inExp, inType); | ||
| 10754 | |||
| 10755 | end matchcontinue; | ||
| 10756 | end promoteExp; | ||
| 10757 | |||
| 10758 | protected function makePromotedTypes | ||
| 10759 | "Creates a lift of types given a list of dimensions and an element type. The | ||
| 10760 | types are created by removing the head of the dimension list one by one and | ||
| 10761 | creating types from the remaining dimensions. E.g.: | ||
| 10762 | |||
| 10763 | makePromotedTypes({[2], [3], [1]}, Real) => | ||
| 10764 | {Real[2,3,1], Real[3,1], Real[1]} | ||
| 10765 | " | ||
| 10766 | input list<DAE.Dimension> inDimensions; | ||
| 10767 | input DAE.Type inElementType; | ||
| 10768 | input list<DAE.Type> inAccumTypes; | ||
| 10769 | output list<DAE.Type> outAccumTypes; | ||
| 10770 | algorithm | ||
| 10771 | outAccumTypes := match inDimensions | ||
| 10772 | local | ||
| 10773 | list<DAE.Dimension> rest_dims; | ||
| 10774 | DAE.Type ty; | ||
| 10775 | |||
| 10776 | case _ :: rest_dims | ||
| 10777 | algorithm | ||
| 10778 | 10930 | ty := DAE.T_ARRAY(inElementType, inDimensions); | |
| 10779 | 10930 | then | |
| 10780 | makePromotedTypes(rest_dims, inElementType, ty :: inAccumTypes); | ||
| 10781 | |||
| 10782 | 5465 | case {} then listReverse(inAccumTypes); | |
| 10783 | |||
| 10784 | end match; | ||
| 10785 | end makePromotedTypes; | ||
| 10786 | |||
| 10787 | protected function promoteExp2 | ||
| 10788 | "Helper function to promoteExp." | ||
| 10789 | input DAE.Exp inExp; | ||
| 10790 | input Boolean inIsArray; | ||
| 10791 | input Integer inDims; | ||
| 10792 | input list<DAE.Type> inTypes; | ||
| 10793 | output DAE.Exp outExp; | ||
| 10794 | algorithm | ||
| 10795 | outExp := match(inExp, inIsArray, inTypes) | ||
| 10796 | local | ||
| 10797 | DAE.Type ty; | ||
| 10798 | list<DAE.Exp> expl; | ||
| 10799 | list<DAE.Type> rest_ty; | ||
| 10800 | |||
| 10801 | // No types left, we're done! | ||
| 10802 | case (_, _, {}) then inExp; | ||
| 10803 | |||
| 10804 | // An array, promote each element in the array. | ||
| 10805 | case (DAE.ARRAY(_, _, expl), _, ty :: rest_ty) | ||
| 10806 | algorithm | ||
| 10807 | 156 | expl := List.map3(expl, promoteExp2, false, inDims, rest_ty); | |
| 10808 | 156 | then | |
| 10809 | DAE.ARRAY(ty, false, expl); | ||
| 10810 | |||
| 10811 | // An expression with array type, but which is not an array expression. Such | ||
| 10812 | // an expression can't be promoted here, so we create a promote call instead. | ||
| 10813 | case (_, true, ty :: _) | ||
| 10814 | 108 | then makePureBuiltinCall("promote", {inExp, DAE.ICONST(inDims)}, ty); | |
| 10815 | |||
| 10816 | // Any other expression, call promoteExp3. | ||
| 10817 | 5615 | else promoteExp3(inExp, inTypes); | |
| 10818 | |||
| 10819 | end match; | ||
| 10820 | end promoteExp2; | ||
| 10821 | |||
| 10822 | protected function promoteExp3 | ||
| 10823 | "Helper function to promoteExp2. Promotes a scalar expression as many times as | ||
| 10824 | the number of types given." | ||
| 10825 | input DAE.Exp inExp; | ||
| 10826 | input list<DAE.Type> inTypes; | ||
| 10827 | output DAE.Exp outExp; | ||
| 10828 | algorithm | ||
| 10829 | outExp := match inTypes | ||
| 10830 | local | ||
| 10831 | DAE.Type ty; | ||
| 10832 | list<DAE.Type> rest_ty; | ||
| 10833 | DAE.Exp exp; | ||
| 10834 | |||
| 10835 | // No types left, were' done! | ||
| 10836 | case {} then inExp; | ||
| 10837 | |||
| 10838 | // Only one type left, create a scalar array with it. | ||
| 10839 | 5615 | case {ty} then makeArray({inExp}, ty, true); | |
| 10840 | |||
| 10841 | // Several types left. Promote the expression using the rest of the types, | ||
| 10842 | // and then create an non-scalar array of the expression with the first type. | ||
| 10843 | case ty :: rest_ty | ||
| 10844 | algorithm | ||
| 10845 | 5255 | exp := promoteExp3(inExp, rest_ty); | |
| 10846 | 5255 | then | |
| 10847 | makeArray({exp}, ty, false); | ||
| 10848 | |||
| 10849 | end match; | ||
| 10850 | end promoteExp3; | ||
| 10851 | |||
| 10852 | public function matrixToArray | ||
| 10853 | input DAE.Exp inMatrix; | ||
| 10854 | output DAE.Exp outArray; | ||
| 10855 | algorithm | ||
| 10856 | outArray := match inMatrix | ||
| 10857 | local | ||
| 10858 | DAE.Type ty, row_ty; | ||
| 10859 | list<list<Exp>> matrix; | ||
| 10860 | list<DAE.Exp> rows; | ||
| 10861 | |||
| 10862 | case DAE.MATRIX(ty = ty, matrix = matrix) | ||
| 10863 | algorithm | ||
| 10864 | 896 | row_ty := unliftArray(ty); | |
| 10865 | 896 | rows := List.map2(matrix, makeArray, row_ty, true); | |
| 10866 | 896 | then | |
| 10867 | DAE.ARRAY(ty, false, rows); | ||
| 10868 | |||
| 10869 | else inMatrix; | ||
| 10870 | |||
| 10871 | end match; | ||
| 10872 | end matrixToArray; | ||
| 10873 | |||
| 10874 | public function transposeArray | ||
| 10875 | input DAE.Exp inArray; | ||
| 10876 | output DAE.Exp outArray; | ||
| 10877 | output Boolean outWasTransposed; | ||
| 10878 | algorithm | ||
| 10879 | (outArray, outWasTransposed) := match inArray | ||
| 10880 | local | ||
| 10881 | DAE.Type ty, row_ty; | ||
| 10882 | DAE.Dimension dim1, dim2; | ||
| 10883 | DAE.Dimensions rest_dims; | ||
| 10884 | list<Exp> expl; | ||
| 10885 | list<list<Exp>> matrix; | ||
| 10886 | Integer i; | ||
| 10887 | |||
| 10888 | // Empty array, just transpose the type. | ||
| 10889 | case DAE.ARRAY(DAE.T_ARRAY(ty, dim1 :: dim2 :: rest_dims), _, {}) | ||
| 10890 | ✗ | then (DAE.ARRAY(DAE.T_ARRAY(ty, dim2 :: dim1 :: rest_dims), false, {}), true); | |
| 10891 | |||
| 10892 | case DAE.ARRAY(DAE.T_ARRAY(ty, dim1 :: dim2 :: rest_dims), _, expl) | ||
| 10893 | algorithm | ||
| 10894 | 621 | row_ty := DAE.T_ARRAY(ty, dim1 :: rest_dims); | |
| 10895 | 621 | matrix := List.map(expl, getArrayOrMatrixContents); | |
| 10896 | 621 | matrix := List.transposeList(matrix); | |
| 10897 | 621 | expl := List.map2(matrix, makeArray, row_ty, true); | |
| 10898 | 621 | then | |
| 10899 | (DAE.ARRAY(DAE.T_ARRAY(ty, dim2 :: dim1 :: rest_dims), false, expl), true); | ||
| 10900 | |||
| 10901 | case DAE.MATRIX (matrix=matrix,ty=DAE.T_ARRAY(ty, {dim1, dim2})) | ||
| 10902 | algorithm | ||
| 10903 | 81 | matrix := List.transposeList(matrix); | |
| 10904 | 81 | ty := DAE.T_ARRAY(ty, {dim2, dim1}); | |
| 10905 | 81 | i := listLength(matrix); | |
| 10906 | 81 | then | |
| 10907 | (DAE.MATRIX(ty,i,matrix), true); | ||
| 10908 | |||
| 10909 | else (inArray, false); | ||
| 10910 | |||
| 10911 | end match; | ||
| 10912 | end transposeArray; | ||
| 10913 | |||
| 10914 | public function getCrefFromCrefOrAsub | ||
| 10915 | "Get the cref from an expression that might be ASUB. If so, return the base CREF (this function does *not* always return a CREF with the same type as the full expression)." | ||
| 10916 | input DAE.Exp exp; | ||
| 10917 | output DAE.ComponentRef cr; | ||
| 10918 | algorithm | ||
| 10919 | cr := match exp | ||
| 10920 | case DAE.CREF(componentRef=cr) then cr; | ||
| 10921 | case DAE.ASUB(exp=DAE.CREF(componentRef=cr)) then cr; | ||
| 10922 | end match; | ||
| 10923 | end getCrefFromCrefOrAsub; | ||
| 10924 | |||
| 10925 | public function arrayElements | ||
| 10926 | "Returns the array elements of an expression." | ||
| 10927 | input DAE.Exp inExp; | ||
| 10928 | output list<DAE.Exp> outExp; | ||
| 10929 | algorithm | ||
| 10930 | outExp := match inExp | ||
| 10931 | local | ||
| 10932 | list<DAE.Exp> expl; | ||
| 10933 | DAE.ComponentRef cr; | ||
| 10934 | list<DAE.ComponentRef> crl; | ||
| 10935 | list<list<DAE.Exp>> mat; | ||
| 10936 | |||
| 10937 | case DAE.CREF(componentRef = cr) | ||
| 10938 | algorithm | ||
| 10939 | 422620 | crl := ComponentReference.expandCref(cr, false); | |
| 10940 | 422620 | expl := List.map(crl, crefExp); | |
| 10941 | then | ||
| 10942 | expl; | ||
| 10943 | |||
| 10944 | case DAE.ARRAY(array = expl, ty = DAE.T_ARRAY()) | ||
| 10945 | 6260 | then List.mapFlat(expl, arrayElements); | |
| 10946 | |||
| 10947 | case DAE.ARRAY(array = expl) then expl; | ||
| 10948 | |||
| 10949 | ✗ | case DAE.MATRIX(matrix = mat) then List.flatten(mat); | |
| 10950 | |||
| 10951 | else {inExp}; | ||
| 10952 | |||
| 10953 | end match; | ||
| 10954 | end arrayElements; | ||
| 10955 | |||
| 10956 | public function arrayContent | ||
| 10957 | "Returns the contents of an array expression, i.e. a list of expressions." | ||
| 10958 | input DAE.Exp inExp; | ||
| 10959 | output list<DAE.Exp> outContent; | ||
| 10960 | algorithm | ||
| 10961 |
2/2✓ Branch 0 taken 3 times.
✓ Branch 1 taken 15431 times.
|
15434 | DAE.ARRAY(array = outContent) := inExp; |
| 10962 | end arrayContent; | ||
| 10963 | |||
| 10964 | public function fromAbsynExp | ||
| 10965 | "@author: adrpo | ||
| 10966 | transform Absyn.Exp into DAE.Exp, unknown types are used" | ||
| 10967 | input Absyn.Exp inAExp; | ||
| 10968 | output DAE.Exp outDExp; | ||
| 10969 | algorithm | ||
| 10970 | outDExp := match inAExp | ||
| 10971 | local | ||
| 10972 | Integer i; | ||
| 10973 | Real r; | ||
| 10974 | Boolean b; | ||
| 10975 | String s; | ||
| 10976 | Absyn.Exp ae, ae1, ae2, cond; | ||
| 10977 | Absyn.Operator aop; | ||
| 10978 | Absyn.ComponentRef acr; | ||
| 10979 | list<Absyn.Exp> aexps; | ||
| 10980 | list<list<Absyn.Exp>> aexpslst; | ||
| 10981 | Absyn.FunctionArgs fargs; | ||
| 10982 | Absyn.Path p; | ||
| 10983 | Option<Absyn.Exp> aoe; | ||
| 10984 | DAE.ComponentRef cr; | ||
| 10985 | DAE.Exp e, e1, e2; | ||
| 10986 | DAE.Operator op; | ||
| 10987 | list<DAE.Exp> exps; | ||
| 10988 | list<list<DAE.Exp>> expslst; | ||
| 10989 | Option<DAE.Exp> oe; | ||
| 10990 | |||
| 10991 | 188 | case Absyn.INTEGER(i) then DAE.ICONST(i); | |
| 10992 | case Absyn.REAL(s) | ||
| 10993 | algorithm | ||
| 10994 | ✗ | r := stringReal(s); | |
| 10995 | ✗ | then DAE.RCONST(r); | |
| 10996 |
2/2✓ Branch 0 taken 602 times.
✓ Branch 1 taken 4559 times.
|
5763 | case Absyn.BOOL(b) then DAE.BCONST(b); |
| 10997 | ✗ | case Absyn.STRING(s) then DAE.SCONST(s); | |
| 10998 | |||
| 10999 | case Absyn.CREF(acr) | ||
| 11000 | algorithm | ||
| 11001 | 186 | cr := ComponentReference.toExpCref(acr); | |
| 11002 | 186 | e := makeCrefExp(cr, DAE.T_UNKNOWN_DEFAULT); | |
| 11003 | then | ||
| 11004 | e; | ||
| 11005 | |||
| 11006 | case Absyn.BINARY(ae1, aop, ae2) | ||
| 11007 | algorithm | ||
| 11008 | 15 | op := fromAbsynOperator(aop, DAE.T_UNKNOWN_DEFAULT); | |
| 11009 | 15 | e1 := fromAbsynExp(ae1); | |
| 11010 | 15 | e2 := fromAbsynExp(ae2); | |
| 11011 | 15 | e := DAE.BINARY(e1, op, e2); | |
| 11012 | then | ||
| 11013 | e; | ||
| 11014 | |||
| 11015 | case Absyn.UNARY(aop, ae) | ||
| 11016 | algorithm | ||
| 11017 | ✗ | op := fromAbsynOperator(aop, DAE.T_UNKNOWN_DEFAULT); | |
| 11018 | ✗ | e := fromAbsynExp(ae); | |
| 11019 | ✗ | e := DAE.UNARY(op, e); | |
| 11020 | then | ||
| 11021 | e; | ||
| 11022 | |||
| 11023 | case Absyn.LBINARY(ae1, aop, ae2) | ||
| 11024 | algorithm | ||
| 11025 | 1 | op := fromAbsynOperator(aop, DAE.T_UNKNOWN_DEFAULT); | |
| 11026 | 1 | e1 := fromAbsynExp(ae1); | |
| 11027 | 1 | e2 := fromAbsynExp(ae2); | |
| 11028 | 1 | e := DAE.LBINARY(e1, op, e2); | |
| 11029 | then | ||
| 11030 | e; | ||
| 11031 | |||
| 11032 | case Absyn.LUNARY(aop, ae) | ||
| 11033 | algorithm | ||
| 11034 | 3 | op := fromAbsynOperator(aop, DAE.T_UNKNOWN_DEFAULT); | |
| 11035 | 3 | e := fromAbsynExp(ae); | |
| 11036 | 3 | e := DAE.LUNARY(op, e); | |
| 11037 | then | ||
| 11038 | e; | ||
| 11039 | |||
| 11040 | case Absyn.RELATION(ae1, aop, ae2) | ||
| 11041 | algorithm | ||
| 11042 | ✗ | op := fromAbsynOperator(aop, DAE.T_UNKNOWN_DEFAULT); | |
| 11043 | ✗ | e1 := fromAbsynExp(ae1); | |
| 11044 | ✗ | e2 := fromAbsynExp(ae2); | |
| 11045 | ✗ | e := DAE.RELATION(e1, op, e2, 0, NONE()); | |
| 11046 | then | ||
| 11047 | e; | ||
| 11048 | |||
| 11049 | case ae as Absyn.IFEXP() | ||
| 11050 | algorithm | ||
| 11051 | ✗ | Absyn.IFEXP(ifExp = cond, trueBranch = ae1, elseBranch = ae2) := AbsynUtil.canonIfExp(ae); | |
| 11052 | ✗ | e := fromAbsynExp(cond); | |
| 11053 | ✗ | e1 := fromAbsynExp(ae1); | |
| 11054 | ✗ | e2 := fromAbsynExp(ae2); | |
| 11055 | ✗ | e := DAE.IFEXP(e, e1, e2); | |
| 11056 | then | ||
| 11057 | e; | ||
| 11058 | |||
| 11059 | case Absyn.CALL(acr, fargs) | ||
| 11060 | algorithm | ||
| 11061 | 5 | exps := fargsToExps(fargs); | |
| 11062 | 5 | p := AbsynUtil.crefToPath(acr); | |
| 11063 | 5 | e := DAE.CALL(p, exps, DAE.callAttrBuiltinOther); | |
| 11064 | then | ||
| 11065 | e; | ||
| 11066 | |||
| 11067 | case Absyn.PARTEVALFUNCTION(acr, fargs) | ||
| 11068 | algorithm | ||
| 11069 | ✗ | exps := fargsToExps(fargs); | |
| 11070 | ✗ | p := AbsynUtil.crefToPath(acr); | |
| 11071 | ✗ | e := DAE.PARTEVALFUNCTION(p, exps, DAE.T_UNKNOWN_DEFAULT, DAE.T_UNKNOWN_DEFAULT); | |
| 11072 | then | ||
| 11073 | e; | ||
| 11074 | |||
| 11075 | case Absyn.ARRAY(aexps) | ||
| 11076 | algorithm | ||
| 11077 | ✗ | exps := List.map(aexps, fromAbsynExp); | |
| 11078 | ✗ | e := DAE.ARRAY(DAE.T_UNKNOWN_DEFAULT, false, exps); | |
| 11079 | then | ||
| 11080 | e; | ||
| 11081 | |||
| 11082 | case Absyn.MATRIX(aexpslst) | ||
| 11083 | algorithm | ||
| 11084 | ✗ | expslst := List.mapList(aexpslst, fromAbsynExp); | |
| 11085 | ✗ | i := listLength(listHead(expslst)); | |
| 11086 | ✗ | e := DAE.MATRIX(DAE.T_UNKNOWN_DEFAULT, i, expslst); | |
| 11087 | then | ||
| 11088 | e; | ||
| 11089 | |||
| 11090 | case Absyn.RANGE(ae1, aoe, ae2) | ||
| 11091 | algorithm | ||
| 11092 | 20 | e1 := fromAbsynExp(ae1); | |
| 11093 | 20 | e2 := fromAbsynExp(ae2); | |
| 11094 | 20 | oe := fromAbsynExpOpt(aoe); | |
| 11095 | 20 | e := DAE.RANGE(DAE.T_UNKNOWN_DEFAULT, e1, oe, e2); | |
| 11096 | then | ||
| 11097 | e; | ||
| 11098 | |||
| 11099 | case Absyn.TUPLE(aexps) | ||
| 11100 | algorithm | ||
| 11101 | ✗ | exps := List.map(aexps, fromAbsynExp); | |
| 11102 | ✗ | e := DAE.TUPLE(exps); | |
| 11103 | then | ||
| 11104 | e; | ||
| 11105 | |||
| 11106 | else | ||
| 11107 | algorithm | ||
| 11108 | ✗ | print("Expression.fromAbsynExp: Unhandled expression: " + Dump.printExpStr(inAExp) + "\n"); | |
| 11109 | ✗ | then | |
| 11110 | fail(); | ||
| 11111 | |||
| 11112 | end match; | ||
| 11113 | end fromAbsynExp; | ||
| 11114 | |||
| 11115 | public function fargsToExps | ||
| 11116 | input Absyn.FunctionArgs inFargs; | ||
| 11117 | output list<DAE.Exp> outExps; | ||
| 11118 | algorithm | ||
| 11119 | outExps := matchcontinue inFargs | ||
| 11120 | local | ||
| 11121 | list<DAE.Exp> exps; | ||
| 11122 | list<Absyn.Exp> aexps; | ||
| 11123 | |||
| 11124 | case Absyn.FUNCTIONARGS(aexps, {}) | ||
| 11125 | algorithm | ||
| 11126 | 5 | exps := List.map(aexps, fromAbsynExp); | |
| 11127 | then | ||
| 11128 | exps; | ||
| 11129 | |||
| 11130 | case Absyn.FUNCTIONARGS(_, _) | ||
| 11131 | algorithm | ||
| 11132 | ✗ | print("Expression.fargsToExps: Named arguments are not handled!\n"); | |
| 11133 | then | ||
| 11134 | {}; | ||
| 11135 | |||
| 11136 | end matchcontinue; | ||
| 11137 | end fargsToExps; | ||
| 11138 | |||
| 11139 | protected function fromAbsynExpOpt | ||
| 11140 | input Option<Absyn.Exp> aoe; | ||
| 11141 | output Option<DAE.Exp> oe; | ||
| 11142 | algorithm | ||
| 11143 | oe := match aoe | ||
| 11144 | local | ||
| 11145 | Absyn.Exp ae; | ||
| 11146 | DAE.Exp e; | ||
| 11147 | |||
| 11148 | case NONE() then NONE(); | ||
| 11149 | |||
| 11150 | case SOME(ae) | ||
| 11151 | algorithm | ||
| 11152 | ✗ | e := fromAbsynExp(ae); | |
| 11153 | then | ||
| 11154 | SOME(e); | ||
| 11155 | |||
| 11156 | end match; | ||
| 11157 | end fromAbsynExpOpt; | ||
| 11158 | |||
| 11159 | protected function fromAbsynOperator | ||
| 11160 | "@author: adrpo" | ||
| 11161 | input Absyn.Operator aop; | ||
| 11162 | input DAE.Type ty; | ||
| 11163 | output DAE.Operator op; | ||
| 11164 | algorithm | ||
| 11165 | op := match aop | ||
| 11166 | 7 | case Absyn.ADD() then DAE.ADD(ty); | |
| 11167 | 8 | case Absyn.SUB() then DAE.SUB(ty); | |
| 11168 | ✗ | case Absyn.MUL() then DAE.MUL(ty); | |
| 11169 | ✗ | case Absyn.DIV() then DAE.DIV(ty); | |
| 11170 | ✗ | case Absyn.POW() then DAE.POW(ty); | |
| 11171 | ✗ | case Absyn.UMINUS() then DAE.UMINUS(ty); | |
| 11172 | 1 | case Absyn.AND() then DAE.AND(ty); | |
| 11173 | ✗ | case Absyn.OR() then DAE.OR(ty); | |
| 11174 | 3 | case Absyn.NOT() then DAE.NOT(ty); | |
| 11175 | ✗ | case Absyn.LESS() then DAE.LESS(ty); | |
| 11176 | ✗ | case Absyn.LESSEQ() then DAE.LESSEQ(ty); | |
| 11177 | ✗ | case Absyn.GREATER() then DAE.GREATER(ty); | |
| 11178 | ✗ | case Absyn.GREATEREQ() then DAE.GREATEREQ(ty); | |
| 11179 | ✗ | case Absyn.EQUAL() then DAE.EQUAL(ty); | |
| 11180 | ✗ | case Absyn.NEQUAL() then DAE.NEQUAL(ty); | |
| 11181 | else | ||
| 11182 | algorithm | ||
| 11183 | ✗ | print("Expression.fromAbsynOperator: Unhandled operator: " + Dump.opSymbol(aop) + "\n"); | |
| 11184 | ✗ | then | |
| 11185 | fail(); | ||
| 11186 | end match; | ||
| 11187 | end fromAbsynOperator; | ||
| 11188 | |||
| 11189 | public function replaceDerOpInExp | ||
| 11190 | "Replaces all der(cref) with $DER.cref in an expression." | ||
| 11191 | input DAE.Exp inExp; | ||
| 11192 | output DAE.Exp outExp; | ||
| 11193 | algorithm | ||
| 11194 | 24675 | (outExp, _) := traverseExpBottomUp(inExp, replaceDerOpInExpTraverser, NONE()); | |
| 11195 | end replaceDerOpInExp; | ||
| 11196 | |||
| 11197 | public function replaceDerOpInExpCond | ||
| 11198 | "Replaces der(cref) with $DER.cref in an expression, where the cref to replace | ||
| 11199 | is explicitly given." | ||
| 11200 | input DAE.Exp e; | ||
| 11201 | input Option<DAE.ComponentRef> cr; | ||
| 11202 | output DAE.Exp outExp; | ||
| 11203 | output Option<DAE.ComponentRef> outCr; | ||
| 11204 | algorithm | ||
| 11205 | 283811 | (outExp, outCr) := traverseExpBottomUp(e, replaceDerOpInExpTraverser, cr); | |
| 11206 | end replaceDerOpInExpCond; | ||
| 11207 | |||
| 11208 | public function replaceDerOpInExpTraverser | ||
| 11209 | "Used with Expression.traverseExpBottomUp to traverse an expression an replace calls to | ||
| 11210 | der(cref) with a component reference $DER.cref. If an optional component | ||
| 11211 | reference is supplied, then only that component reference is replaced. | ||
| 11212 | Otherwise all calls to der are replaced. | ||
| 11213 | |||
| 11214 | This is done since some parts of the compiler can't handle der-calls, such as | ||
| 11215 | Derive.differentiateExpression. Ideally these parts should be fixed so that they can | ||
| 11216 | handle der-calls, but until that happens we just replace the der-calls with | ||
| 11217 | crefs." | ||
| 11218 | input DAE.Exp e; | ||
| 11219 | input Option<DAE.ComponentRef> optCr; | ||
| 11220 | output DAE.Exp outExp; | ||
| 11221 | output Option<DAE.ComponentRef> outCr; | ||
| 11222 | algorithm | ||
| 11223 | (outExp,outCr) := matchcontinue (e,optCr) | ||
| 11224 | local | ||
| 11225 | DAE.ComponentRef cr, derCr; | ||
| 11226 | DAE.Exp cref_exp; | ||
| 11227 | DAE.ComponentRef cref; | ||
| 11228 | |||
| 11229 | case (DAE.CALL(path = Absyn.IDENT("der"), expLst = {DAE.CREF(componentRef = cr)}), SOME(cref)) | ||
| 11230 | algorithm | ||
| 11231 | ✗ | derCr := ComponentReference.crefPrefixDer(cr); | |
| 11232 | ✗ | true := ComponentReferenceBasics.crefEqualNoStringCompare(derCr, cref); | |
| 11233 | ✗ | cref_exp := crefExp(derCr); | |
| 11234 | then (cref_exp, optCr); | ||
| 11235 | |||
| 11236 | case (DAE.CALL(path = Absyn.IDENT("der"), expLst = {DAE.CREF(componentRef = cr)}), NONE()) | ||
| 11237 | algorithm | ||
| 11238 | 19263 | cr := ComponentReference.crefPrefixDer(cr); | |
| 11239 | 19263 | cref_exp := crefExp(cr); | |
| 11240 | then (cref_exp, NONE()); | ||
| 11241 | else (e,optCr); | ||
| 11242 | end matchcontinue; | ||
| 11243 | end replaceDerOpInExpTraverser; | ||
| 11244 | |||
| 11245 | public function makeBinaryExp | ||
| 11246 | input DAE.Exp inLhs; | ||
| 11247 | input DAE.Operator inOp; | ||
| 11248 | input DAE.Exp inRhs; | ||
| 11249 | output DAE.Exp outExp; | ||
| 11250 | algorithm | ||
| 11251 | 7714 | outExp := DAE.BINARY(inLhs, inOp, inRhs); | |
| 11252 | end makeBinaryExp; | ||
| 11253 | |||
| 11254 | public function checkExpDimensionSizes | ||
| 11255 | "Extracts an integer from an exp" | ||
| 11256 | input DAE.Exp dim; | ||
| 11257 | output Boolean value; | ||
| 11258 | algorithm | ||
| 11259 | value := match dim | ||
| 11260 | ✗ | case DAE.ICONST() then dim.integer > 0; | |
| 11261 | else | ||
| 11262 | false; | ||
| 11263 | end match; | ||
| 11264 | end checkExpDimensionSizes; | ||
| 11265 | |||
| 11266 | public function checkDimensionSizes | ||
| 11267 | "Extracts an integer from an array dimension. Also handles DIM_EXP and | ||
| 11268 | DIM_UNKNOWN if checkModel is used." | ||
| 11269 | input DAE.Dimension dim; | ||
| 11270 | output Boolean value; | ||
| 11271 | algorithm | ||
| 11272 | value := match dim | ||
| 11273 | case DAE.DIM_INTEGER() then true; | ||
| 11274 | case DAE.DIM_ENUM() then true; | ||
| 11275 | case DAE.DIM_BOOLEAN() then true; | ||
| 11276 | case DAE.DIM_EXP() then true; | ||
| 11277 | case DAE.DIM_UNKNOWN() then false; | ||
| 11278 | end match; | ||
| 11279 | end checkDimensionSizes; | ||
| 11280 | |||
| 11281 | public function dimensionsList | ||
| 11282 | "Extracts a list of integers from a list of array dimensions" | ||
| 11283 | input DAE.Dimensions inDims; | ||
| 11284 | output list<Integer> outValues; | ||
| 11285 | protected | ||
| 11286 | list<Integer> dims; | ||
| 11287 | algorithm | ||
| 11288 | outValues := matchcontinue inDims | ||
| 11289 | case _ | ||
| 11290 | algorithm | ||
| 11291 |
2/2✓ Branch 1 taken 45 times.
✓ Branch 2 taken 6088 times.
|
6133 | true := List.all(inDims, checkDimensionSizes); |
| 11292 | 6088 | dims := List.map(inDims, dimensionSizeAll); | |
| 11293 | then dims; | ||
| 11294 | else {}; | ||
| 11295 | end matchcontinue; | ||
| 11296 | end dimensionsList; | ||
| 11297 | |||
| 11298 | public function hasZeroDimension | ||
| 11299 | "Returns true if at least one dimension is zero or dimensions is empty list." | ||
| 11300 | input DAE.Dimensions inDims; | ||
| 11301 | output Boolean hasZeroDimension = false; | ||
| 11302 | protected | ||
| 11303 | list<Integer> intDims; | ||
| 11304 | algorithm | ||
| 11305 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 4345 times.
|
4345 | if listEmpty(inDims)then |
| 11306 | hasZeroDimension := true; | ||
| 11307 | ✗ | return; | |
| 11308 | end if; | ||
| 11309 | 4345 | intDims := dimensionsList(inDims); | |
| 11310 |
2/2✓ Branch 0 taken 5010 times.
✓ Branch 1 taken 4342 times.
|
9352 | for dim in intDims loop |
| 11311 |
2/2✓ Branch 0 taken 5007 times.
✓ Branch 1 taken 3 times.
|
5010 | if dim == 0 then |
| 11312 | hasZeroDimension := true; | ||
| 11313 | break; | ||
| 11314 | end if; | ||
| 11315 | end for; | ||
| 11316 | end hasZeroDimension; | ||
| 11317 | |||
| 11318 | public function expDimensionsList | ||
| 11319 | "Extracts a list of integers from a list of expressions" | ||
| 11320 | input list<DAE.Exp> inDims; | ||
| 11321 | output list<Integer> outValues; | ||
| 11322 | protected | ||
| 11323 | list<Integer> dims; | ||
| 11324 | algorithm | ||
| 11325 | outValues := matchcontinue inDims | ||
| 11326 | case _ | ||
| 11327 | algorithm | ||
| 11328 | ✗ | true := List.all(inDims, checkExpDimensionSizes); | |
| 11329 | ✗ | dims := List.map(inDims, expInt); | |
| 11330 | then dims; | ||
| 11331 | else {}; | ||
| 11332 | end matchcontinue; | ||
| 11333 | end expDimensionsList; | ||
| 11334 | |||
| 11335 | public function isCrefListWithEqualIdents | ||
| 11336 | "Checks if all expressions in the given list are crefs with the same identifiers. | ||
| 11337 | e.g. {A[1],A[2],…,A[n]} -> true | ||
| 11338 | {A[1],B[1]} -> false" | ||
| 11339 | input list<DAE.Exp> iExpressions; | ||
| 11340 | output Boolean oCrefWithEqualIdents; | ||
| 11341 | protected | ||
| 11342 | Boolean tmpCrefWithEqualIdents; | ||
| 11343 | list<DAE.ComponentRef> crefs; | ||
| 11344 | DAE.Exp head; | ||
| 11345 | DAE.ComponentRef headCref; | ||
| 11346 | algorithm | ||
| 11347 | oCrefWithEqualIdents := matchcontinue iExpressions | ||
| 11348 | case head::_ | ||
| 11349 | algorithm | ||
| 11350 | //print("isCrefListWithEqualIdents: \n" + stringDelimitList(List.map1(iExpressions, ExpressionDump.dumpExpStr, 1), "")); | ||
| 11351 | ✗ | true := List.all(iExpressions, isCref); | |
| 11352 | //print("isCrefListWithEqualIdents: all crefs!\n"); | ||
| 11353 | ✗ | crefs := List.map(iExpressions, expCref); | |
| 11354 | ✗ | headCref := expCref(head); | |
| 11355 | ✗ | tmpCrefWithEqualIdents := List.all(crefs, function ComponentReferenceBasics.crefEqualWithoutLastSubs(cr2 = headCref)); | |
| 11356 | //print("isCrefListWithEqualIdents: returns " + boolString(tmpCrefWithEqualIdents) + "\n\n"); | ||
| 11357 | then tmpCrefWithEqualIdents; | ||
| 11358 | case {} | ||
| 11359 | then true; | ||
| 11360 | else | ||
| 11361 | algorithm | ||
| 11362 | //print("isCrefListWithEqualIdents: returns false\n\n"); | ||
| 11363 | then false; | ||
| 11364 | end matchcontinue; | ||
| 11365 | end isCrefListWithEqualIdents; | ||
| 11366 | |||
| 11367 | public function renameExpCrefIdent | ||
| 11368 | input DAE.Exp inExp; | ||
| 11369 | input tuple<String,String> inTpl; | ||
| 11370 | output DAE.Exp outExp; | ||
| 11371 | output tuple<String,String> outTpl; | ||
| 11372 | algorithm | ||
| 11373 | (outExp,outTpl) := match (inExp,inTpl) | ||
| 11374 | local | ||
| 11375 | DAE.Type ty1,ty2; | ||
| 11376 | String name,from,to; | ||
| 11377 | DAE.Exp exp; | ||
| 11378 | case (DAE.CREF(DAE.CREF_IDENT(name,ty1,{}),ty2),(from,to)) | ||
| 11379 | algorithm | ||
| 11380 | ✗ | exp := if stringEq(name,from) then DAE.CREF(DAE.CREF_IDENT(to,ty1,{}),ty2) else inExp; | |
| 11381 | then (exp,inTpl); | ||
| 11382 | else (inExp,inTpl); | ||
| 11383 | end match; | ||
| 11384 | end renameExpCrefIdent; | ||
| 11385 | |||
| 11386 | public function emptyToWild | ||
| 11387 | input DAE.Exp exp; | ||
| 11388 | output DAE.Exp outExp; | ||
| 11389 | protected | ||
| 11390 | DAE.Type ty; | ||
| 11391 | algorithm | ||
| 11392 | 117 | ty := typeof(exp); | |
| 11393 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 117 times.
|
117 | outExp := if Types.isZeroLengthArray(ty) then DAE.CREF(DAE.WILD(),ty) else exp; |
| 11394 | end emptyToWild; | ||
| 11395 | |||
| 11396 | public function makeVectorCall | ||
| 11397 | input DAE.Exp exp; | ||
| 11398 | input DAE.Type tp; | ||
| 11399 | output DAE.Exp outExp; | ||
| 11400 | algorithm | ||
| 11401 | ✗ | outExp := makePureBuiltinCall("vector",{exp},tp); | |
| 11402 | end makeVectorCall; | ||
| 11403 | |||
| 11404 | |||
| 11405 | public function expandCrefs | ||
| 11406 | input DAE.Exp inExp; | ||
| 11407 | input Boolean expandRecord; | ||
| 11408 | output DAE.Exp outExp; | ||
| 11409 | input output Integer dummy=0 "For traversal"; | ||
| 11410 | algorithm | ||
| 11411 | outExp := match inExp | ||
| 11412 | local | ||
| 11413 | DAE.Type arr_ty; | ||
| 11414 | list<DAE.Exp> exp_lst; | ||
| 11415 | DAE.Exp exp; | ||
| 11416 | case DAE.CREF(ty=arr_ty as DAE.T_ARRAY()) algorithm | ||
| 11417 |
4/4✓ Branch 1 taken 766 times.
✓ Branch 2 taken 77 times.
✓ Branch 3 taken 766 times.
✓ Branch 4 taken 77 times.
|
843 | exp_lst := list(makeCrefExp(cr, arr_ty.ty) for cr in ComponentReference.expandCref(inExp.componentRef, expandRecord)); |
| 11418 | 77 | exp := listToArray(exp_lst, arr_ty.dims); | |
| 11419 | then exp; | ||
| 11420 | else inExp; | ||
| 11421 | end match; | ||
| 11422 | end expandCrefs; | ||
| 11423 | |||
| 11424 | public function expandExpression | ||
| 11425 | " mahge: | ||
| 11426 | Expands a given expression to a list of expression. this means flattening any records in the | ||
| 11427 | expression and vectorizing arrays. | ||
| 11428 | |||
| 11429 | Currently can only handle crefs and array expressions. Maybe we need to handle binary operations at least. | ||
| 11430 | |||
| 11431 | Right now this is used in generating simple residual equations from complex ones in SimCode. | ||
| 11432 | " | ||
| 11433 | |||
| 11434 | input DAE.Exp inExp; | ||
| 11435 | input Boolean expandRecord; | ||
| 11436 | output list<DAE.Exp> outExps; | ||
| 11437 | algorithm | ||
| 11438 | outExps := match inExp | ||
| 11439 | local | ||
| 11440 | DAE.ComponentRef cr; | ||
| 11441 | list<DAE.ComponentRef> crlst; | ||
| 11442 | list<DAE.Exp> expl = {}, expl1, expl2; | ||
| 11443 | String msg; | ||
| 11444 | DAE.Exp e1, e2; | ||
| 11445 | DAE.Operator op; | ||
| 11446 | |||
| 11447 | case DAE.CREF(cr,_) | ||
| 11448 | algorithm | ||
| 11449 | 35649 | crlst := ComponentReference.expandCref(cr, expandRecord); | |
| 11450 | 35649 | outExps := List.map(crlst, crefToExp); | |
| 11451 | then outExps; | ||
| 11452 | |||
| 11453 | case DAE.UNARY(operator=DAE.UMINUS()) | ||
| 11454 | algorithm | ||
| 11455 | ✗ | expl := list(DAE.UNARY(inExp.operator, exp) for exp in expandExpression(inExp.exp, expandRecord)); | |
| 11456 | then expl; | ||
| 11457 | |||
| 11458 | case DAE.BINARY() | ||
| 11459 | algorithm | ||
| 11460 | // TODO! FIXME! we should change the type in the operator, | ||
| 11461 | // i.e. use Types.unliftArray on the type inside the operator | ||
| 11462 | ✗ | op := inExp.operator; | |
| 11463 | ✗ | expl1 := expandExpression(inExp.exp1, expandRecord); | |
| 11464 | ✗ | expl2 := expandExpression(inExp.exp2, expandRecord); | |
| 11465 | // TODO! FIXME! maybe we should also support (array op scalar) | ||
| 11466 | // make sure the lists have the same length | ||
| 11467 | ✗ | if listLength(expl1) <> listLength(expl2) then | |
| 11468 | ✗ | fail(); | |
| 11469 | end if; | ||
| 11470 | ✗ | e1 := listGet(expl1, 1); | |
| 11471 | ✗ | e2 := listGet(expl1, 2); | |
| 11472 | ✗ | for i in 1:listLength(expl1) loop | |
| 11473 | ✗ | e1 := listGet(expl1, i); | |
| 11474 | ✗ | e2 := listGet(expl2, i); | |
| 11475 | ✗ | expl := DAE.BINARY(e1, op, e2)::expl; | |
| 11476 | end for; | ||
| 11477 | ✗ | expl := listReverse(expl); | |
| 11478 | then expl; | ||
| 11479 | |||
| 11480 | case DAE.ARRAY(_,_,expl) | ||
| 11481 | algorithm | ||
| 11482 | ✗ | expl := List.mapFlat(expl, function expandExpression(expandRecord = expandRecord)); | |
| 11483 | then expl; | ||
| 11484 | |||
| 11485 | else | ||
| 11486 | algorithm | ||
| 11487 | ✗ | msg := "- Expression.expandExpression failed for " + ExpressionBasics.printExpStr(inExp); | |
| 11488 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {msg}); | |
| 11489 | ✗ | then | |
| 11490 | fail(); | ||
| 11491 | end match; | ||
| 11492 | |||
| 11493 | end expandExpression; | ||
| 11494 | |||
| 11495 | public function extendArrExp "author: Frenkel TUD 2010-07 | ||
| 11496 | alternative name: vectorizeExp" | ||
| 11497 | input DAE.Exp inExp; | ||
| 11498 | input Boolean inExpanded = false "True if something was expanded, otherwise false."; | ||
| 11499 | output DAE.Exp outExp; | ||
| 11500 | output Boolean outExpanded; | ||
| 11501 | algorithm | ||
| 11502 | (outExp, outExpanded) := matchcontinue inExp | ||
| 11503 | local | ||
| 11504 | DAE.Exp exp; | ||
| 11505 | Boolean b; | ||
| 11506 | |||
| 11507 | case outExp | ||
| 11508 | algorithm | ||
| 11509 | 169843 | (exp, b) := traverseExpBottomUp(inExp, traversingextendArrExp, false); | |
| 11510 | then | ||
| 11511 | (exp, b); | ||
| 11512 | |||
| 11513 | else (inExp, inExpanded); | ||
| 11514 | |||
| 11515 | end matchcontinue; | ||
| 11516 | end extendArrExp; | ||
| 11517 | |||
| 11518 | protected function traversingextendArrExp "author: Frenkel TUD 2010-07. | ||
| 11519 | This function extend all array and record componentrefs to their | ||
| 11520 | elements. This is necessary for BLT and substitution of simple | ||
| 11521 | equations." | ||
| 11522 | input DAE.Exp inExp; | ||
| 11523 | input Boolean inExpanded; | ||
| 11524 | output DAE.Exp outExp; | ||
| 11525 | output Boolean outExpanded; | ||
| 11526 | algorithm | ||
| 11527 | (outExp, outExpanded) := match inExp | ||
| 11528 | local | ||
| 11529 | DAE.ComponentRef cr; | ||
| 11530 | DAE.Type ty; | ||
| 11531 | DAE.Dimension id, jd; | ||
| 11532 | Integer i, j; | ||
| 11533 | list<DAE.Exp> expl; | ||
| 11534 | DAE.Exp e; | ||
| 11535 | list<DAE.Var> varLst; | ||
| 11536 | Absyn.Path name; | ||
| 11537 | list<list<DAE.Exp>> mat; | ||
| 11538 | list<String> field_names; | ||
| 11539 | |||
| 11540 | // CASE for Matrix | ||
| 11541 | case DAE.CREF(ty=ty as DAE.T_ARRAY(dims={id, jd})) | ||
| 11542 | algorithm | ||
| 11543 | 8258 | i := dimensionSize(id); | |
| 11544 | 8258 | j := dimensionSize(jd); | |
| 11545 | 8258 | expl := expandExpression(inExp, expandRecord = false); | |
| 11546 | 8258 | mat := makeMatrix(expl, j); | |
| 11547 | 8258 | e := DAE.MATRIX(ty, i, mat); | |
| 11548 | then | ||
| 11549 | (e, true); | ||
| 11550 | |||
| 11551 | // CASE for Array | ||
| 11552 | case DAE.CREF(ty=ty as DAE.T_ARRAY()) | ||
| 11553 | algorithm | ||
| 11554 | 25817 | expl := expandExpression(inExp, expandRecord = false); | |
| 11555 | 25817 | e := DAE.ARRAY(ty, true, expl); | |
| 11556 | then | ||
| 11557 | (e, true); | ||
| 11558 | |||
| 11559 | // CASE for Records | ||
| 11560 | case DAE.CREF(componentRef=cr, ty=ty as DAE.T_COMPLEX(varLst=varLst, complexClassType=ClassInf.RECORD(name))) | ||
| 11561 | algorithm | ||
| 11562 | 8225 | expl := List.map1(varLst, generateCrefsExpFromExpVar, cr); | |
| 11563 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 8225 times.
|
8225 | true := not listEmpty(expl); |
| 11564 |
4/4✓ Branch 0 taken 32408 times.
✓ Branch 1 taken 8225 times.
✓ Branch 2 taken 32408 times.
✓ Branch 3 taken 8225 times.
|
40633 | field_names := list(v.name for v in varLst); |
| 11565 | 8225 | e := DAE.RECORD(name, expl, field_names, ty); | |
| 11566 | 8225 | (e, _) := traverseExpBottomUp(e, traversingextendArrExp, true); | |
| 11567 | then | ||
| 11568 | (e, true); | ||
| 11569 | |||
| 11570 | else (inExp, inExpanded); | ||
| 11571 | |||
| 11572 | end match; | ||
| 11573 | end traversingextendArrExp; | ||
| 11574 | |||
| 11575 | protected function makeMatrix | ||
| 11576 | input list<DAE.Exp> expl; | ||
| 11577 | input Integer n; | ||
| 11578 | output list<list<DAE.Exp>> res; | ||
| 11579 | protected | ||
| 11580 | list<DAE.Exp> col; | ||
| 11581 | Integer r; | ||
| 11582 | import listReverse = MetaModelica.Dangerous.listReverseInPlace; | ||
| 11583 | algorithm | ||
| 11584 | res := {}; | ||
| 11585 | col := {}; | ||
| 11586 | r := n; | ||
| 11587 |
2/2✓ Branch 0 taken 74230 times.
✓ Branch 1 taken 8258 times.
|
82488 | for e in expl loop |
| 11588 | 74230 | r := r-1; | |
| 11589 | col := e::col; | ||
| 11590 |
2/2✓ Branch 0 taken 24850 times.
✓ Branch 1 taken 49380 times.
|
74230 | if r==0 then |
| 11591 | 24850 | res := listReverse(col)::res; | |
| 11592 | col := {}; | ||
| 11593 | r := n; | ||
| 11594 | end if; | ||
| 11595 | end for; | ||
| 11596 | 8258 | Error.assertionOrAddSourceMessage(listEmpty(col), Error.INTERNAL_ERROR, {"Expression.makeMatrix failed"}, sourceInfo()); | |
| 11597 | 8258 | res := listReverse(res); | |
| 11598 | end makeMatrix; | ||
| 11599 | |||
| 11600 | public function rangesToSubscripts | ||
| 11601 | "This function takes a list of subscript ranges representing dimensions, e.g. | ||
| 11602 | {{1, 2, 3}, {1, 2}} which corresponds to dimensions [3, 2], and generates | ||
| 11603 | all subscript combinations, e.g. {{1, 1}, {1, 2}, {2, 1}, {2, 2}, {3, 1}, | ||
| 11604 | {3, 2}}." | ||
| 11605 | input list<list<DAE.Subscript>> inRangelist; | ||
| 11606 | output list<list<DAE.Subscript>> outSubslst; | ||
| 11607 | algorithm | ||
| 11608 | 2201 | outSubslst := List.allCombinations(inRangelist, NONE(), Absyn.dummyInfo); | |
| 11609 | end rangesToSubscripts; | ||
| 11610 | |||
| 11611 | public function expandSubscript | ||
| 11612 | "Expands a subscript into a list of subscripts. Also takes a dimension to be | ||
| 11613 | able to evaluate : subscripts." | ||
| 11614 | input DAE.Subscript inSubscript; | ||
| 11615 | input DAE.Dimension inDimension; | ||
| 11616 | output list<DAE.Subscript> outSubscripts; | ||
| 11617 | algorithm | ||
| 11618 | outSubscripts := match inSubscript | ||
| 11619 | local | ||
| 11620 | DAE.Exp exp; | ||
| 11621 | |||
| 11622 | // An index subscript from range. | ||
| 11623 | case DAE.INDEX(exp = DAE.RANGE()) | ||
| 11624 |
4/4✓ Branch 1 taken 16167 times.
✓ Branch 2 taken 9115 times.
✓ Branch 3 taken 16167 times.
✓ Branch 4 taken 9115 times.
|
25470 | then list(DAE.INDEX(e) for e in expandRange(inSubscript.exp)); |
| 11625 | |||
| 11626 | // An index subscript from array. | ||
| 11627 | // This really shouldn't be happening. But the backend creats things like this. | ||
| 11628 | // e.g. When finding Adjacency Matrix entry for for-loops in Algorithm sections. | ||
| 11629 | // That whole creating IM should be done the way checkModel works. but it's not. :( so | ||
| 11630 | // we have this. | ||
| 11631 | case DAE.INDEX(exp = DAE.ARRAY()) | ||
| 11632 | ✗ | then expandSliceExp(inSubscript.exp); | |
| 11633 | |||
| 11634 | // An index subscript, return it as an array. | ||
| 11635 | case DAE.INDEX() then {inSubscript}; | ||
| 11636 | |||
| 11637 | // A : subscript, use the dimension to generate all subscripts. | ||
| 11638 | case DAE.WHOLEDIM() | ||
| 11639 | 97605 | then expandDimension(inDimension); | |
| 11640 | |||
| 11641 | // A slice subscript. | ||
| 11642 | case DAE.SLICE() | ||
| 11643 | 287 | then expandSliceExp(inSubscript.exp); | |
| 11644 | |||
| 11645 | end match; | ||
| 11646 | end expandSubscript; | ||
| 11647 | |||
| 11648 | public function expandDimension | ||
| 11649 | "Generates a list of subscripts given an array dimension." | ||
| 11650 | input DAE.Dimension inDimension; | ||
| 11651 | output list<DAE.Subscript> outSubscript; | ||
| 11652 | algorithm | ||
| 11653 | outSubscript := match inDimension | ||
| 11654 | local | ||
| 11655 | Integer dim_int; | ||
| 11656 | Absyn.Path enum_ty; | ||
| 11657 | list<String> enum_lits; | ||
| 11658 | list<DAE.Exp> enum_expl; | ||
| 11659 | |||
| 11660 | // An integer dimension, generate a list of integer subscripts. | ||
| 11661 | case DAE.DIM_INTEGER(integer = dim_int) | ||
| 11662 | 97030 | then dimensionSizeSubscripts(dim_int); | |
| 11663 | |||
| 11664 | // An enumeration dimension, construct all enumeration literals and make | ||
| 11665 | // subscript out of them. | ||
| 11666 | case DAE.DIM_ENUM(enumTypeName = enum_ty, literals = enum_lits) | ||
| 11667 | algorithm | ||
| 11668 | 242 | enum_expl := makeEnumLiterals(enum_ty, enum_lits); | |
| 11669 | 242 | then | |
| 11670 | List.map(enum_expl, makeIndexSubscript); | ||
| 11671 | |||
| 11672 | case DAE.DIM_BOOLEAN() | ||
| 11673 | then DAE.INDEX(DAE.BCONST(false))::DAE.INDEX(DAE.BCONST(true))::{}; | ||
| 11674 | |||
| 11675 | else {}; | ||
| 11676 | end match; | ||
| 11677 | end expandDimension; | ||
| 11678 | |||
| 11679 | public function expandSliceExp | ||
| 11680 | "Expands a slice subscript expression." | ||
| 11681 | input DAE.Exp inSliceExp; | ||
| 11682 | output list<DAE.Subscript> outSubscripts; | ||
| 11683 | algorithm | ||
| 11684 | outSubscripts := match inSliceExp | ||
| 11685 | local | ||
| 11686 | list<DAE.Exp> expl; | ||
| 11687 | |||
| 11688 | case DAE.ARRAY(array = expl) | ||
| 11689 | 159 | then List.map(expl, makeIndexSubscript); | |
| 11690 | |||
| 11691 | case DAE.RANGE() | ||
| 11692 | 207 | then List.map(Expression.expandRange(inSliceExp), makeIndexSubscript); | |
| 11693 | |||
| 11694 | end match; | ||
| 11695 | end expandSliceExp; | ||
| 11696 | |||
| 11697 | public function dimensionSizesSubscripts | ||
| 11698 | input list<Integer> inDimSizes; | ||
| 11699 | output list<list<DAE.Subscript>> outSubscripts; | ||
| 11700 | algorithm | ||
| 11701 | 26 | outSubscripts := List.map(inDimSizes, dimensionSizeSubscripts); | |
| 11702 | end dimensionSizesSubscripts; | ||
| 11703 | |||
| 11704 | public function dimensionSizesSubcriptsOpt | ||
| 11705 | input list<Option<Integer>> inDimSizes; | ||
| 11706 | output list<list<DAE.Subscript>> outSubscripts; | ||
| 11707 | algorithm | ||
| 11708 | ✗ | outSubscripts := List.mapOption(inDimSizes, dimensionSizeSubscripts); | |
| 11709 | end dimensionSizesSubcriptsOpt; | ||
| 11710 | |||
| 11711 | public function dimensionSizeSubscripts | ||
| 11712 | "Converts a dimension size in the form of an integer into a list of | ||
| 11713 | subscripts, e.g.: [3] => {1, 2, 3}." | ||
| 11714 | input Integer inDimSize; | ||
| 11715 | output list<DAE.Subscript> outSubscripts; | ||
| 11716 | algorithm | ||
| 11717 |
2/2✓ Branch 0 taken 339668 times.
✓ Branch 1 taken 99837 times.
|
439505 | outSubscripts := list(DAE.INDEX(DAE.ICONST(i)) for i in 1:inDimSize); |
| 11718 | end dimensionSizeSubscripts; | ||
| 11719 | |||
| 11720 | public function createResidualExp | ||
| 11721 | "author: Frenkel TUD 2012-10 | ||
| 11722 | do some numerical helpfull thinks like | ||
| 11723 | a = b/c - > a*c-b" | ||
| 11724 | input DAE.Exp inExp1; | ||
| 11725 | input DAE.Exp inExp2; | ||
| 11726 | output DAE.Exp resExp; | ||
| 11727 | protected | ||
| 11728 | DAE.Exp iExp1, iExp2; | ||
| 11729 | algorithm | ||
| 11730 | 34512 | (iExp1,iExp2) := createResidualExp2(inExp1,inExp2); | |
| 11731 | |||
| 11732 | resExp := matchcontinue(iExp1, iExp2) | ||
| 11733 | local | ||
| 11734 | DAE.Exp res, res1, res2, N1, D1, N2, D2; | ||
| 11735 | list<DAE.Exp> explst, explst1; | ||
| 11736 | DAE.Type ty; | ||
| 11737 | |||
| 11738 | 4623 | case(_, DAE.RCONST(real = 0.0)) then iExp1; | |
| 11739 | ✗ | case(_, DAE.ICONST(0)) then iExp1; | |
| 11740 | ✗ | case(DAE.RCONST(real = 0.0), _) then iExp2; | |
| 11741 | ✗ | case(DAE.ICONST(0), _) then iExp2; | |
| 11742 | case(_, _) | ||
| 11743 | algorithm | ||
| 11744 | 29889 | ty := typeof(iExp1); | |
| 11745 |
2/2✓ Branch 1 taken 259 times.
✓ Branch 2 taken 29630 times.
|
29889 | true := Types.isIntegerOrRealOrSubTypeOfEither(ty); |
| 11746 | // N1/D1 = N2/D2 | ||
| 11747 | 29630 | (N1,D1) := makeFraction(iExp1); | |
| 11748 | 29630 | (N2,D2) := makeFraction(iExp2); | |
| 11749 | // N1*D2 = N2*D1 // simplify N1*D2 e.g. N1*D2 = (a/b + c)*b -> a+c/b | ||
| 11750 | 29630 | res1 := ExpressionSimplify.simplifySumOperatorExpression(N1, DAE.MUL(ty), D2); | |
| 11751 | 29630 | res2 := ExpressionSimplify.simplifySumOperatorExpression(N2, DAE.MUL(ty), D1); | |
| 11752 | |||
| 11753 | //heuristic | ||
| 11754 | 29630 | explst := terms(iExp1); | |
| 11755 | 29630 | explst1 := terms(iExp2); | |
| 11756 |
4/4✓ Branch 1 taken 29499 times.
✓ Branch 2 taken 131 times.
✓ Branch 5 taken 28496 times.
✓ Branch 6 taken 1003 times.
|
29630 | if isConst(res1) or (listLength(explst1) + 1) > listLength(explst) then |
| 11757 | 28627 | res := expSub(res2,res1); | |
| 11758 | else | ||
| 11759 | 1003 | res := expSub(res1,res2); | |
| 11760 | end if; | ||
| 11761 | |||
| 11762 | 29630 | (res, _) := ExpressionSimplify.simplify(res); | |
| 11763 | //print("\n\niExp1:\n");print(ExpressionBasics.printExpStr(iExp1)); | ||
| 11764 | //print("\niExp2:\n");print(ExpressionBasics.printExpStr(iExp2)); | ||
| 11765 | //print("\nres:\n");print(ExpressionBasics.printExpStr(res)); | ||
| 11766 | then | ||
| 11767 | res; | ||
| 11768 | case(_, _) | ||
| 11769 | algorithm | ||
| 11770 | 259 | ty := typeof(iExp1); | |
| 11771 |
1/2✓ Branch 1 taken 259 times.
✗ Branch 2 not taken.
|
259 | true := Types.isEnumeration(ty); |
| 11772 | ✗ | res := expSub(iExp1, iExp2); | |
| 11773 | then | ||
| 11774 | res; | ||
| 11775 | case(_, _) | ||
| 11776 | algorithm | ||
| 11777 | 259 | ty := typeof(iExp1); | |
| 11778 |
2/2✓ Branch 1 taken 4 times.
✓ Branch 2 taken 255 times.
|
259 | true := Types.isBooleanOrSubTypeBoolean(ty); |
| 11779 | 255 | res := DAE.LUNARY(DAE.NOT(ty), DAE.RELATION(iExp1, DAE.EQUAL(ty), iExp2, -1, NONE())); | |
| 11780 | then | ||
| 11781 | res; | ||
| 11782 | case(_, _) | ||
| 11783 | algorithm | ||
| 11784 | 4 | ty := typeof(iExp1); | |
| 11785 |
1/2✓ Branch 1 taken 4 times.
✗ Branch 2 not taken.
|
4 | true := Types.isStringOrSubTypeString(ty); |
| 11786 | ✗ | res := DAE.LUNARY(DAE.NOT(ty), DAE.RELATION(iExp1, DAE.EQUAL(ty), iExp2, -1, NONE())); | |
| 11787 | then | ||
| 11788 | res; | ||
| 11789 | else | ||
| 11790 | algorithm | ||
| 11791 | 4 | res := expSub(iExp1, iExp2); | |
| 11792 | ✗ | (res, _) := ExpressionSimplify.simplify(res); | |
| 11793 | then | ||
| 11794 | res; | ||
| 11795 | end matchcontinue; | ||
| 11796 | end createResidualExp; | ||
| 11797 | |||
| 11798 | public function makeFraction | ||
| 11799 | " | ||
| 11800 | In: f(x) {+,-} g(x) | ||
| 11801 | Out: {N,D} | ||
| 11802 | |||
| 11803 | where f(x) {+,-} g(x) = N/D | ||
| 11804 | |||
| 11805 | author: Vitalij Ruge | ||
| 11806 | |||
| 11807 | " | ||
| 11808 | input DAE.Exp iExp; | ||
| 11809 | output DAE.Exp n "numerator"; | ||
| 11810 | output DAE.Exp d "denominator"; | ||
| 11811 | protected | ||
| 11812 | list<DAE.Exp> N, D, T; | ||
| 11813 | algorithm | ||
| 11814 | 73899 | T := terms(iExp); | |
| 11815 | 73899 | T := ExpressionSimplify.simplifyList(T); | |
| 11816 | 73899 | (N,D) := moveDivToMul(T, {}, {}); | |
| 11817 | 73899 | N := ExpressionSimplify.simplifyList(N); | |
| 11818 | 73899 | D := ExpressionSimplify.simplifyList(D); | |
| 11819 | 73899 | n := makeSum1(N); | |
| 11820 | 73899 | d := makeProductLst(D); | |
| 11821 | 73899 | (n,_) := ExpressionSimplify.simplify1(n); | |
| 11822 | 73899 | (d,_) := ExpressionSimplify.simplify1(d); | |
| 11823 | end makeFraction; | ||
| 11824 | |||
| 11825 | protected function moveDivToMul | ||
| 11826 | input list<DAE.Exp> iExpLst; | ||
| 11827 | input list<DAE.Exp> iExpLstAcc; | ||
| 11828 | input list<DAE.Exp> iExpMuls; | ||
| 11829 | output list<DAE.Exp> oExpLst; | ||
| 11830 | output list<DAE.Exp> oExpMuls; | ||
| 11831 | algorithm | ||
| 11832 | (oExpLst, oExpMuls) := match iExpLst | ||
| 11833 | local | ||
| 11834 | DAE.Exp e, e1, e2; | ||
| 11835 | list<DAE.Exp> rest, acc, elst, elst1; | ||
| 11836 | case {} then (iExpLstAcc, iExpMuls); | ||
| 11837 | //-(a/b) | ||
| 11838 | case DAE.UNARY(_,DAE.BINARY(exp1=e1, operator=DAE.DIV(), exp2=e2))::rest | ||
| 11839 | algorithm | ||
| 11840 | ✗ | acc := List.map1(iExpLstAcc, Expression.expMul, e2); | |
| 11841 | ✗ | rest := List.map1(rest, Expression.expMul, e2); | |
| 11842 | ✗ | rest := ExpressionSimplify.simplifyList(rest); | |
| 11843 | ✗ | (elst, elst1) := moveDivToMul(rest, negate(e1)::acc, e2::iExpMuls); | |
| 11844 | then | ||
| 11845 | (elst, elst1); | ||
| 11846 | case DAE.UNARY(_,DAE.BINARY(exp1=e1, operator=DAE.DIV_ARRAY_SCALAR(), exp2=e2))::rest | ||
| 11847 | algorithm | ||
| 11848 | ✗ | acc := List.map1(iExpLstAcc, Expression.expMul, e2); | |
| 11849 | ✗ | rest := List.map1(rest, Expression.expMul, e2); | |
| 11850 | ✗ | rest := ExpressionSimplify.simplifyList(rest); | |
| 11851 | ✗ | (elst, elst1) := moveDivToMul(rest, negate(e1)::acc, e2::iExpMuls); | |
| 11852 | then | ||
| 11853 | (elst, elst1); | ||
| 11854 | // a/b | ||
| 11855 | case DAE.BINARY(exp1=e1, operator=DAE.DIV(), exp2=e2)::rest | ||
| 11856 | algorithm | ||
| 11857 | 1761 | acc := List.map1(iExpLstAcc, Expression.expMul, e2); | |
| 11858 | 1761 | rest := List.map1(rest, Expression.expMul, e2); | |
| 11859 | 1761 | rest := ExpressionSimplify.simplifyList(rest); | |
| 11860 | 1761 | (elst, elst1) := moveDivToMul(rest, e1::acc, e2::iExpMuls); | |
| 11861 | then | ||
| 11862 | (elst, elst1); | ||
| 11863 | case DAE.BINARY(exp1=e1, operator=DAE.DIV_ARRAY_SCALAR(), exp2=e2)::rest | ||
| 11864 | algorithm | ||
| 11865 | ✗ | acc := List.map1(iExpLstAcc, Expression.expMul, e2); | |
| 11866 | ✗ | rest := List.map1(rest, Expression.expMul, e2); | |
| 11867 | ✗ | rest := ExpressionSimplify.simplifyList(rest); | |
| 11868 | ✗ | (elst, elst1) := moveDivToMul(rest, e1::acc, e2::iExpMuls); | |
| 11869 | then | ||
| 11870 | (elst, elst1); | ||
| 11871 | case e::rest | ||
| 11872 | algorithm | ||
| 11873 | 107705 | (elst, elst1) := moveDivToMul(rest, e::iExpLstAcc, iExpMuls); | |
| 11874 | then | ||
| 11875 | (elst, elst1); | ||
| 11876 | end match; | ||
| 11877 | end moveDivToMul; | ||
| 11878 | |||
| 11879 | protected function createResidualExp2 | ||
| 11880 | "author: Vitalij | ||
| 11881 | do some numerical helpfull thinks on like | ||
| 11882 | sqrt(f()) - sqrt(g(.)) = 0 -> f(.) - g(.)" | ||
| 11883 | input DAE.Exp iExp1; | ||
| 11884 | input DAE.Exp iExp2; | ||
| 11885 | output DAE.Exp oExp1 = iExp1; | ||
| 11886 | output DAE.Exp oExp2 = iExp2; | ||
| 11887 | protected | ||
| 11888 | Boolean con = true, con1; | ||
| 11889 | Integer ii = 1; | ||
| 11890 | algorithm | ||
| 11891 | |||
| 11892 |
2/2✓ Branch 0 taken 34577 times.
✓ Branch 1 taken 34512 times.
|
69089 | while con and ii < 15 loop |
| 11893 | (oExp1, oExp2, con) := matchcontinue oExp2 | ||
| 11894 | local DAE.Exp e1, e2; | ||
| 11895 | |||
| 11896 | case _ | ||
| 11897 | algorithm | ||
| 11898 |
2/2✓ Branch 1 taken 34574 times.
✓ Branch 2 taken 3 times.
|
34577 | (e1,e2,true) := createResidualExp3(oExp1, oExp2); |
| 11899 | 3 | (e1,_) := ExpressionSimplify.simplify1(e1); | |
| 11900 | 3 | (e2,_) := ExpressionSimplify.simplify1(e2); | |
| 11901 | then (e1 ,e2, true); | ||
| 11902 | |||
| 11903 | case _ | ||
| 11904 | algorithm | ||
| 11905 |
2/2✓ Branch 1 taken 34560 times.
✓ Branch 2 taken 14 times.
|
34574 | (e2,e1,true) := createResidualExp3(oExp2, oExp1); |
| 11906 | 14 | (e1,_) := ExpressionSimplify.simplify1(e1); | |
| 11907 | 14 | (e2,_) := ExpressionSimplify.simplify1(e2); | |
| 11908 | then (e1 ,e2, true); | ||
| 11909 | 34560 | else (oExp1, oExp2, false); | |
| 11910 | end matchcontinue; | ||
| 11911 | |||
| 11912 | (oExp1, oExp2, con1) := matchcontinue oExp2 | ||
| 11913 | local DAE.Exp e1, e2; | ||
| 11914 | case _ | ||
| 11915 | algorithm | ||
| 11916 |
2/2✓ Branch 1 taken 32456 times.
✓ Branch 2 taken 2121 times.
|
34577 | true := isZero(oExp1); |
| 11917 | 2121 | (e1,e2) := makeFraction(oExp2); | |
| 11918 | 2121 | then (e1 ,oExp1, not isOne(e2)); | |
| 11919 | |||
| 11920 | case _ | ||
| 11921 | algorithm | ||
| 11922 |
2/2✓ Branch 1 taken 29939 times.
✓ Branch 2 taken 2517 times.
|
32456 | true := isZero(oExp2); |
| 11923 | 2517 | (e1,e2) := makeFraction(oExp1); | |
| 11924 | 2517 | then (e1 ,oExp2, not isOne(e2)); | |
| 11925 | |||
| 11926 | case _ | ||
| 11927 | algorithm | ||
| 11928 |
2/2✓ Branch 1 taken 29937 times.
✓ Branch 2 taken 2 times.
|
29939 | true := isOne(oExp1); |
| 11929 | 2 | (e1,e2) := makeFraction(oExp2); | |
| 11930 | 2 | then (e1 ,e2, not isOne(e2)); | |
| 11931 | |||
| 11932 | case _ | ||
| 11933 | algorithm | ||
| 11934 |
2/2✓ Branch 1 taken 29881 times.
✓ Branch 2 taken 56 times.
|
29937 | true := isOne(oExp2); |
| 11935 | 56 | (e1,e2) := makeFraction(oExp1); | |
| 11936 | 56 | then (e1 ,e2, not isOne(e2)); | |
| 11937 | |||
| 11938 | 29881 | else (oExp1, oExp2, false); | |
| 11939 | end matchcontinue; | ||
| 11940 | 34577 | con := con or con1; | |
| 11941 | |||
| 11942 | 34577 | ii := ii + 1; | |
| 11943 |
2/2✓ Branch 0 taken 35 times.
✓ Branch 1 taken 34542 times.
|
34577 | if not con then |
| 11944 | 34542 | (oExp1,con) := ExpressionSimplify.simplify1(oExp1); | |
| 11945 | 34542 | (oExp2,con1) := ExpressionSimplify.simplify1(oExp2); | |
| 11946 |
4/4✓ Branch 0 taken 34541 times.
✓ Branch 1 taken 1 time.
✓ Branch 2 taken 34512 times.
✓ Branch 3 taken 29 times.
|
34542 | con := con or con1; |
| 11947 | 34542 | ii := ii + 3; | |
| 11948 | // else | ||
| 11949 | // print("\niExp1");print(ExpressionBasics.printExpStr(iExp1)); | ||
| 11950 | // print("\te1");print(ExpressionBasics.printExpStr(oExp2)); | ||
| 11951 | // print("\niExp2");print(ExpressionBasics.printExpStr(iExp2)); | ||
| 11952 | // print("\te2");print(ExpressionBasics.printExpStr(oExp2)); | ||
| 11953 | end if; | ||
| 11954 | |||
| 11955 | end while; | ||
| 11956 | |||
| 11957 | 34512 | (oExp1,_) := ExpressionSimplify.simplify1(oExp1); | |
| 11958 | 34512 | (oExp2,_) := ExpressionSimplify.simplify1(oExp2); | |
| 11959 | |||
| 11960 | end createResidualExp2; | ||
| 11961 | |||
| 11962 | public function createResidualExp3 | ||
| 11963 | "author: Vitalij | ||
| 11964 | helper function of createResidualExp3 | ||
| 11965 | swaps args" | ||
| 11966 | input DAE.Exp iExp1; | ||
| 11967 | input DAE.Exp iExp2; | ||
| 11968 | output DAE.Exp oExp1; | ||
| 11969 | output DAE.Exp oExp2; | ||
| 11970 | output Boolean con; | ||
| 11971 | algorithm | ||
| 11972 | (oExp1, oExp2, con) := matchcontinue(iExp1, iExp2) | ||
| 11973 | local | ||
| 11974 | DAE.Exp e,e1,e2; | ||
| 11975 | String s1, s2; | ||
| 11976 | DAE.Type tp; | ||
| 11977 | |||
| 11978 | // f(x) = f(y) -> x = y | ||
| 11979 | case(DAE.CALL(path = Absyn.IDENT(s1), expLst={e1}),DAE.CALL(path = Absyn.IDENT(s2) ,expLst={e2})) | ||
| 11980 | guard s1 == s2 and createResidualExp4(s1) | ||
| 11981 | then (e1,e2, true); | ||
| 11982 | // sqrt(f(x)) = 0.0 -> f(x) = 0 | ||
| 11983 | case(DAE.CALL(path = Absyn.IDENT("sqrt"), expLst={e1}), DAE.RCONST(0.0)) | ||
| 11984 | then (e1,iExp2,true); | ||
| 11985 | // sqrt(f(x)) = c -> f(x) = c^2 | ||
| 11986 | case(DAE.CALL(path = Absyn.IDENT("sqrt"), expLst={e1}), e2) | ||
| 11987 | guard(Expression.isConst(e2)) | ||
| 11988 | algorithm | ||
| 11989 | ✗ | e := Expression.expPow(iExp2, DAE.RCONST(2.0)); | |
| 11990 | then (e1,e,true); | ||
| 11991 | // log(f(x)) = c -> f(x) = exp(c) | ||
| 11992 | case(DAE.CALL(path = Absyn.IDENT("log"), expLst={e1}), e2) | ||
| 11993 | guard(Expression.isConst(e2)) | ||
| 11994 | algorithm | ||
| 11995 | 4 | tp := Expression.typeof(iExp2); | |
| 11996 | 4 | e := Expression.makePureBuiltinCall("exp", {iExp2}, tp); | |
| 11997 | then (e1,e,true); | ||
| 11998 | // log10(f(x)) = c -> f(x) = 10^(c) | ||
| 11999 | case(DAE.CALL(path = Absyn.IDENT("log10"), expLst={e1}), e2) | ||
| 12000 | guard(Expression.isConst(e2)) | ||
| 12001 | algorithm | ||
| 12002 | ✗ | e := Expression.expPow(DAE.RCONST(10.0),iExp2); | |
| 12003 | then (e1,e,true); | ||
| 12004 | /* | ||
| 12005 | // f(x)^y = 0 -> x = 0 | ||
| 12006 | case(DAE.BINARY(e1,DAE.POW(_),e2),DAE.RCONST(0.0)) | ||
| 12007 | then (e1, iExp2, true); | ||
| 12008 | // abs(f(x)) = 0.0 -> f(x) = 0 | ||
| 12009 | case(DAE.CALL(path = Absyn.IDENT("abs"), expLst={e1}), DAE.RCONST(0.0)) | ||
| 12010 | then (e1,iExp2,true); | ||
| 12011 | */ | ||
| 12012 | // semiLinear(0,e1,e2) = 0 -> e1 - e2 = 0 | ||
| 12013 | case(DAE.CALL(path = Absyn.IDENT("semiLinear"), expLst={DAE.RCONST(0.0), e1, e2}), DAE.RCONST(0.0)) | ||
| 12014 | then (e1,e2,true); | ||
| 12015 | // -f(.) = 0 -> f(.) = 0 | ||
| 12016 | case(DAE.UNARY(operator = DAE.UMINUS(),exp = e1), e2 as DAE.RCONST(0.0)) | ||
| 12017 | then (e1,e2,true); | ||
| 12018 | // f(x) - f(y) = 0 -> x = y | ||
| 12019 | case(DAE.BINARY(DAE.CALL(path = Absyn.IDENT(s1), expLst={e1}),DAE.SUB(),DAE.CALL(path = Absyn.IDENT(s2) ,expLst={e2})), DAE.RCONST(0.0)) | ||
| 12020 | guard s1 == s2 and createResidualExp4(s1) | ||
| 12021 | then (e1,e2,true); | ||
| 12022 | else (iExp1, iExp2, false); | ||
| 12023 | end matchcontinue; | ||
| 12024 | end createResidualExp3; | ||
| 12025 | |||
| 12026 | protected function createResidualExp4" | ||
| 12027 | author: Vitalij | ||
| 12028 | helper function of createResidualExp3 | ||
| 12029 | return true if f(x) = f(y), then it can be transformed into x = y. | ||
| 12030 | |||
| 12031 | Beware: function is not complete, yet! | ||
| 12032 | " | ||
| 12033 | input String f; | ||
| 12034 | output Boolean resB; | ||
| 12035 | algorithm | ||
| 12036 | resB := match f | ||
| 12037 | case "sqrt" then true; | ||
| 12038 | case "exp" then true; | ||
| 12039 | case "log" then true; | ||
| 12040 | case "log10" then true; | ||
| 12041 | case "tanh" then true; | ||
| 12042 | case "sinh" then true; | ||
| 12043 | else false; | ||
| 12044 | end match; | ||
| 12045 | end createResidualExp4; | ||
| 12046 | |||
| 12047 | public function isAsubExp | ||
| 12048 | input DAE.Exp expIn; | ||
| 12049 | output Boolean isAsub; | ||
| 12050 | algorithm | ||
| 12051 | isAsub := match expIn | ||
| 12052 | case DAE.ASUB(_,_) algorithm | ||
| 12053 | then true; | ||
| 12054 | else false; | ||
| 12055 | end match; | ||
| 12056 | end isAsubExp; | ||
| 12057 | |||
| 12058 | public function typeCast | ||
| 12059 | input DAE.Exp inExp; | ||
| 12060 | input DAE.Type inType; | ||
| 12061 | output DAE.Exp outExp; | ||
| 12062 | algorithm | ||
| 12063 | 788 | outExp := DAE.CAST(inType, inExp); | |
| 12064 | 788 | outExp := ExpressionSimplify.simplify1(outExp); | |
| 12065 | end typeCast; | ||
| 12066 | |||
| 12067 | public function typeCastElements | ||
| 12068 | input DAE.Exp inExp; | ||
| 12069 | input DAE.Type inType; | ||
| 12070 | output DAE.Exp outExp; | ||
| 12071 | protected | ||
| 12072 | DAE.Type ty; | ||
| 12073 | algorithm | ||
| 12074 | 788 | ty := typeof(inExp); | |
| 12075 | 788 | ty := Types.setArrayElementType(ty, inType); | |
| 12076 | 788 | outExp := typeCast(inExp, ty); | |
| 12077 | end typeCastElements; | ||
| 12078 | |||
| 12079 | public function expandRange | ||
| 12080 | "Expands a range expression into its elements: | ||
| 12081 | expandRange(1:4) => {1, 2, 3, 4}" | ||
| 12082 | input DAE.Exp inRange; | ||
| 12083 | output list<DAE.Exp> outValues; | ||
| 12084 | protected | ||
| 12085 | DAE.Exp start_exp, stop_exp; | ||
| 12086 | Option<DAE.Exp> ostep_exp; | ||
| 12087 | Integer istep; | ||
| 12088 | Real rstep; | ||
| 12089 | list<DAE.Exp> vals; | ||
| 12090 | list<String> enum_names; | ||
| 12091 | Absyn.Path enum_type; | ||
| 12092 | DAE.Type range_ty; | ||
| 12093 | algorithm | ||
| 12094 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 41584 times.
|
41584 | DAE.RANGE(start = start_exp, step = ostep_exp, stop = stop_exp) := inRange; |
| 12095 | |||
| 12096 | outValues := match (start_exp, stop_exp) | ||
| 12097 | // An integer range, with or without a step value. | ||
| 12098 | case (DAE.ICONST(), DAE.ICONST()) | ||
| 12099 | algorithm | ||
| 12100 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 41177 times.
|
41177 | DAE.ICONST(istep) := Util.getOptionOrDefault(ostep_exp, DAE.ICONST(1)); |
| 12101 |
4/4✓ Branch 1 taken 117492 times.
✓ Branch 2 taken 41177 times.
✓ Branch 3 taken 117492 times.
✓ Branch 4 taken 41177 times.
|
158669 | then |
| 12102 | list(DAE.ICONST(i) for i in | ||
| 12103 | List.intRange3(start_exp.integer, istep, stop_exp.integer)); | ||
| 12104 | |||
| 12105 | // A real range, with or without a step value. | ||
| 12106 | case (DAE.RCONST(), DAE.RCONST()) | ||
| 12107 | algorithm | ||
| 12108 | ✗ | DAE.RCONST(rstep) := Util.getOptionOrDefault(ostep_exp, DAE.RCONST(1.0)); | |
| 12109 | ✗ | then | |
| 12110 | list(DAE.RCONST(r) for r in | ||
| 12111 | ExpressionSimplify.simplifyRangeReal(start_exp.real, rstep, stop_exp.real)); | ||
| 12112 | |||
| 12113 | // false:true => {false, true} | ||
| 12114 | case (DAE.BCONST(false), DAE.BCONST(true)) | ||
| 12115 | then {start_exp, stop_exp}; | ||
| 12116 | |||
| 12117 | // true:false => {} | ||
| 12118 | case (DAE.BCONST(true), DAE.BCONST(false)) | ||
| 12119 | then {}; | ||
| 12120 | |||
| 12121 | // true:true => true, false:false => false | ||
| 12122 | case (DAE.BCONST(), DAE.BCONST()) | ||
| 12123 | then {start_exp}; | ||
| 12124 | |||
| 12125 | // An enumeration range, no step value allowed. | ||
| 12126 | case (DAE.ENUM_LITERAL(), DAE.ENUM_LITERAL()) | ||
| 12127 | algorithm | ||
| 12128 |
1/2✓ Branch 0 taken 30 times.
✗ Branch 1 not taken.
|
30 | if start_exp.index > stop_exp.index then |
| 12129 | vals := {}; | ||
| 12130 | elseif start_exp.index == stop_exp.index then | ||
| 12131 | vals := {start_exp}; | ||
| 12132 | else | ||
| 12133 | 30 | DAE.RANGE(ty = range_ty) := inRange; | |
| 12134 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 30 times.
|
30 | DAE.T_ENUMERATION(path = enum_type, names = enum_names) := Types.arrayElementType(range_ty); |
| 12135 | 30 | enum_names := List.sublist(enum_names, start_exp.index, | |
| 12136 | (stop_exp.index - start_exp.index) + 1); | ||
| 12137 | 30 | vals := makeEnumLiterals(enum_type, enum_names); | |
| 12138 | end if; | ||
| 12139 | then | ||
| 12140 | vals; | ||
| 12141 | |||
| 12142 | end match; | ||
| 12143 | end expandRange; | ||
| 12144 | |||
| 12145 | public function isScalarSubscript | ||
| 12146 | input DAE.Subscript sub; | ||
| 12147 | output Boolean b; | ||
| 12148 | algorithm | ||
| 12149 | b := match sub | ||
| 12150 | ✗ | case DAE.SLICE() then isScalar(sub.exp); | |
| 12151 | 78909 | case DAE.INDEX() then isScalar(sub.exp); | |
| 12152 | ✗ | case DAE.WHOLE_NONEXP() then isScalar(sub.exp); | |
| 12153 | else false; | ||
| 12154 | end match; | ||
| 12155 | end isScalarSubscript; | ||
| 12156 | |||
| 12157 | public function isScalar | ||
| 12158 | input DAE.Exp inExp; | ||
| 12159 | output Boolean outIsScalar; | ||
| 12160 | algorithm | ||
| 12161 | outIsScalar := match inExp | ||
| 12162 | case DAE.ICONST() then true; | ||
| 12163 | case DAE.RCONST() then true; | ||
| 12164 | case DAE.SCONST() then true; | ||
| 12165 | case DAE.BCONST() then true; | ||
| 12166 | case DAE.CLKCONST() then true; | ||
| 12167 | case DAE.ENUM_LITERAL() then true; | ||
| 12168 | ✗ | case DAE.UNARY() then isScalar(inExp.exp); | |
| 12169 | ✗ | case DAE.LUNARY() then isScalar(inExp.exp); | |
| 12170 | case DAE.RELATION() then true; | ||
| 12171 | case DAE.ARRAY() then false; | ||
| 12172 | case DAE.MATRIX() then false; | ||
| 12173 | case DAE.RANGE() then false; | ||
| 12174 | ✗ | case DAE.CAST() then isScalar(inExp.exp); | |
| 12175 | ✗ | case DAE.SIZE() then isSome(inExp.sz); | |
| 12176 | 4959 | else Types.isSimpleType(typeof(inExp)); | |
| 12177 | end match; | ||
| 12178 | end isScalar; | ||
| 12179 | |||
| 12180 | public function containsAnyCall | ||
| 12181 | "Returns true if the given expression contains any function calls, | ||
| 12182 | otherwise false." | ||
| 12183 | input DAE.Exp inExp; | ||
| 12184 | output Boolean outContainsCall; | ||
| 12185 | algorithm | ||
| 12186 | 129420 | (_, outContainsCall) := traverseExpTopDown(inExp, containsAnyCall_traverser, false); | |
| 12187 | end containsAnyCall; | ||
| 12188 | |||
| 12189 | protected function containsAnyCall_traverser | ||
| 12190 | input DAE.Exp inExp; | ||
| 12191 | input Boolean inContainsCall; | ||
| 12192 | output DAE.Exp outExp = inExp; | ||
| 12193 | output Boolean outContinue; | ||
| 12194 | output Boolean outContainsCall; | ||
| 12195 | algorithm | ||
| 12196 | outContainsCall := match inExp | ||
| 12197 | case DAE.CALL() then true; | ||
| 12198 | else inContainsCall; | ||
| 12199 | end match; | ||
| 12200 | |||
| 12201 |
1/2✓ Branch 0 taken 129654 times.
✗ Branch 1 not taken.
|
129654 | outContinue := not outContainsCall; |
| 12202 | end containsAnyCall_traverser; | ||
| 12203 | |||
| 12204 | public function containsCallTo | ||
| 12205 | "Returns true if the given expression contains any function calls, | ||
| 12206 | otherwise false." | ||
| 12207 | input DAE.Exp inExp; | ||
| 12208 | input Absyn.Path path; | ||
| 12209 | output Boolean outContainsCall; | ||
| 12210 | algorithm | ||
| 12211 | ✗ | (_, (_,outContainsCall)) := traverseExpTopDown(inExp, containsCallTo_traverser, (path,false)); | |
| 12212 | end containsCallTo; | ||
| 12213 | |||
| 12214 | protected function containsCallTo_traverser | ||
| 12215 | input DAE.Exp inExp; | ||
| 12216 | input tuple<Absyn.Path,Boolean> inTpl; | ||
| 12217 | output DAE.Exp outExp = inExp; | ||
| 12218 | output Boolean outContinue = false; | ||
| 12219 | output tuple<Absyn.Path,Boolean> outTpl = inTpl; | ||
| 12220 | protected | ||
| 12221 | Boolean containsCall; | ||
| 12222 | Absyn.Path path; | ||
| 12223 | algorithm | ||
| 12224 | ✗ | (path,containsCall) := outTpl; | |
| 12225 | ✗ | if containsCall then | |
| 12226 | ✗ | return; | |
| 12227 | end if; | ||
| 12228 | outContinue := match inExp | ||
| 12229 | ✗ | case DAE.CALL() then AbsynUtil.pathEqual(path,inExp.path); | |
| 12230 | else true; | ||
| 12231 | end match; | ||
| 12232 | ✗ | if not outContinue then | |
| 12233 | ✗ | outTpl := (path,false); | |
| 12234 | end if; | ||
| 12235 | end containsCallTo_traverser; | ||
| 12236 | |||
| 12237 | public function rangeSize | ||
| 12238 | "Tries to figure out the size of a range expression. Either return the size or | ||
| 12239 | fails." | ||
| 12240 | input DAE.Exp inRange; | ||
| 12241 | output Integer outSize; | ||
| 12242 | algorithm | ||
| 12243 | outSize := match inRange | ||
| 12244 | local | ||
| 12245 | Integer start, step, stop; | ||
| 12246 | |||
| 12247 | case DAE.RANGE(ty = DAE.T_ARRAY(dims = {DAE.DIM_INTEGER(outSize)})) then outSize; | ||
| 12248 | |||
| 12249 | case DAE.RANGE(start = DAE.ICONST(start), | ||
| 12250 | step = NONE(), | ||
| 12251 | stop = DAE.ICONST(stop)) | ||
| 12252 | ✗ | then max(stop - start, 0); | |
| 12253 | |||
| 12254 | case DAE.RANGE(start = DAE.ICONST(start), | ||
| 12255 | step = SOME(DAE.ICONST(step)), | ||
| 12256 | stop = DAE.ICONST(stop)) | ||
| 12257 | algorithm | ||
| 12258 | ✗ | if step <> 0 then | |
| 12259 | ✗ | outSize := max(realInt(floor(realDiv(stop - start, step))) + 1, 0); | |
| 12260 | else | ||
| 12261 | ✗ | fail(); | |
| 12262 | end if; | ||
| 12263 | then | ||
| 12264 | outSize; | ||
| 12265 | |||
| 12266 | end match; | ||
| 12267 | end rangeSize; | ||
| 12268 | |||
| 12269 | public function isInvariantExpNoTraverse "For use with traverseExp" | ||
| 12270 | input output DAE.Exp e; | ||
| 12271 | input output Boolean b; | ||
| 12272 | algorithm | ||
| 12273 | ✗ | if not b then | |
| 12274 | ✗ | return; | |
| 12275 | end if; | ||
| 12276 | b := match e | ||
| 12277 | case DAE.ICONST() then true; | ||
| 12278 | case DAE.RCONST() then true; | ||
| 12279 | case DAE.SCONST() then true; | ||
| 12280 | case DAE.BCONST() then true; | ||
| 12281 | case DAE.ENUM_LITERAL() then true; | ||
| 12282 | case DAE.BINARY() then true; | ||
| 12283 | case DAE.UNARY() then true; | ||
| 12284 | case DAE.LBINARY() then true; | ||
| 12285 | case DAE.LUNARY() then true; | ||
| 12286 | case DAE.RELATION() then true; | ||
| 12287 | case DAE.IFEXP() then true; | ||
| 12288 | case DAE.CALL(path=Absyn.FULLYQUALIFIED()) then true; | ||
| 12289 | case DAE.PARTEVALFUNCTION(path=Absyn.FULLYQUALIFIED()) then true; | ||
| 12290 | case DAE.ARRAY() then true; | ||
| 12291 | case DAE.MATRIX() then true; | ||
| 12292 | case DAE.RANGE() then true; | ||
| 12293 | case DAE.CONS() then true; | ||
| 12294 | case DAE.LIST() then true; | ||
| 12295 | else false; | ||
| 12296 | end match; | ||
| 12297 | end isInvariantExpNoTraverse; | ||
| 12298 | |||
| 12299 | public function findCallIsInlineAfterIndexReduction | ||
| 12300 | input output DAE.Exp e; | ||
| 12301 | output Boolean cont; | ||
| 12302 | input output Boolean res; | ||
| 12303 | algorithm | ||
| 12304 |
2/2✓ Branch 0 taken 24188 times.
✓ Branch 1 taken 834 times.
|
25022 | if not res then |
| 12305 | res := match e | ||
| 12306 | case DAE.CALL(attr=DAE.CALL_ATTR(inlineType=DAE.AFTER_INDEX_RED_INLINE())) then true; | ||
| 12307 | else false; | ||
| 12308 | end match; | ||
| 12309 | end if; | ||
| 12310 |
1/2✓ Branch 0 taken 25022 times.
✗ Branch 1 not taken.
|
25022 | cont := not res; |
| 12311 | end findCallIsInlineAfterIndexReduction; | ||
| 12312 | |||
| 12313 | public function tupleHead | ||
| 12314 | input DAE.Exp exp; | ||
| 12315 | input DAE.Properties prop; | ||
| 12316 | output DAE.Exp outExp; | ||
| 12317 | output DAE.Properties outProp; | ||
| 12318 | algorithm | ||
| 12319 | (outExp, outProp) := match (exp, prop) | ||
| 12320 | local | ||
| 12321 | DAE.Type ty; | ||
| 12322 | |||
| 12323 | case (DAE.Exp.TUPLE(_ :: _), DAE.Properties.PROP_TUPLE()) | ||
| 12324 | 1 | then (listHead(exp.PR), Types.propTupleFirstProp(prop)); | |
| 12325 | case (_, DAE.Properties.PROP_TUPLE(type_ = DAE.T_TUPLE(types = ty :: _))) | ||
| 12326 | ✗ | then (DAE.Exp.TSUB(exp, 1, ty), Types.propTupleFirstProp(prop)); | |
| 12327 | else (exp, prop); | ||
| 12328 | end match; | ||
| 12329 | end tupleHead; | ||
| 12330 | |||
| 12331 | public function isSimpleLiteralValue "A value that requires nothing special during code generation. String literals are special and not included." | ||
| 12332 | input DAE.Exp exp; | ||
| 12333 | input Boolean allow_arrays = false; | ||
| 12334 | output Boolean b; | ||
| 12335 | algorithm | ||
| 12336 | b := match exp | ||
| 12337 | case DAE.SCONST() then allow_arrays /* allow string constants with arrays */; | ||
| 12338 | case DAE.ICONST() then true; | ||
| 12339 | case DAE.RCONST() then true; | ||
| 12340 | case DAE.BCONST() then true; | ||
| 12341 | case DAE.ENUM_LITERAL() then true; | ||
| 12342 | 89 | case DAE.ARRAY() guard(allow_arrays) then List.all(exp.array, function isSimpleLiteralValue(allow_arrays = true)); | |
| 12343 | else false; | ||
| 12344 | end match; | ||
| 12345 | end isSimpleLiteralValue; | ||
| 12346 | |||
| 12347 | public function consToListIgnoreSharedLiteral | ||
| 12348 | input output DAE.Exp e; | ||
| 12349 | algorithm | ||
| 12350 | if match e | ||
| 12351 | case DAE.SHARED_LITERAL() then true; | ||
| 12352 | case DAE.LIST() then true; | ||
| 12353 | case DAE.CONS() then true; | ||
| 12354 | else false; end match then | ||
| 12355 | try | ||
| 12356 | ✗ | e := consToListIgnoreSharedLiteralWork(e); | |
| 12357 | else | ||
| 12358 | end try; | ||
| 12359 | end if; | ||
| 12360 | end consToListIgnoreSharedLiteral; | ||
| 12361 | |||
| 12362 | protected function consToListIgnoreSharedLiteralWork | ||
| 12363 | input output DAE.Exp e; | ||
| 12364 | input list<DAE.Exp> acc={}; | ||
| 12365 | algorithm | ||
| 12366 | e := match (e,acc) | ||
| 12367 | ✗ | case (DAE.SHARED_LITERAL(),_) then consToListIgnoreSharedLiteralWork(e.exp, acc); | |
| 12368 | case (DAE.LIST(),{}) then e; | ||
| 12369 | ✗ | case (DAE.LIST(),_) then DAE.LIST(List.append_reverse(acc, e.valList)); | |
| 12370 | ✗ | case (DAE.CONS(),_) then consToListIgnoreSharedLiteralWork(e.cdr, e.car::acc); | |
| 12371 | end match; | ||
| 12372 | end consToListIgnoreSharedLiteralWork; | ||
| 12373 | |||
| 12374 | public function arrayFirstScalar | ||
| 12375 | "Returns the first scalar element of an array, i.e. exp[1, 1, ...]." | ||
| 12376 | input DAE.Exp exp; | ||
| 12377 | output DAE.Exp outExp; | ||
| 12378 | algorithm | ||
| 12379 | outExp := match exp | ||
| 12380 | 497 | case DAE.ARRAY() then arrayFirstScalar(listHead(exp.array)); | |
| 12381 | else exp; | ||
| 12382 | end match; | ||
| 12383 | end arrayFirstScalar; | ||
| 12384 | |||
| 12385 | public function traverseCases | ||
| 12386 | "Traverses the expressions in a list of match-expression cases (bottom-up). | ||
| 12387 | Moved here from Patternm so Expression does not depend on the instantiation | ||
| 12388 | cluster; the body/guard/result are pure DAE expressions." | ||
| 12389 | replaceable type A subtypeof Any; | ||
| 12390 | input list<DAE.MatchCase> inCases; | ||
| 12391 | input FuncExpType func; | ||
| 12392 | input A inA; | ||
| 12393 | output list<DAE.MatchCase> outCases; | ||
| 12394 | output A oa; | ||
| 12395 | partial function FuncExpType | ||
| 12396 | input DAE.Exp inExp; | ||
| 12397 | input A inTypeA; | ||
| 12398 | output DAE.Exp outExp; | ||
| 12399 | output A outA; | ||
| 12400 | end FuncExpType; | ||
| 12401 | algorithm | ||
| 12402 | (outCases,oa) := match (inCases, inA) | ||
| 12403 | local | ||
| 12404 | list<DAE.Pattern> patterns; | ||
| 12405 | list<DAE.Element> decls; | ||
| 12406 | list<DAE.Statement> body,body1; | ||
| 12407 | Option<DAE.Exp> result,result1,patternGuard,patternGuard1; | ||
| 12408 | Integer jump; | ||
| 12409 | SourceInfo resultInfo,info; | ||
| 12410 | list<DAE.MatchCase> cases,cases1; | ||
| 12411 | A a; | ||
| 12412 | |||
| 12413 | case ({}, a) then ({},a); | ||
| 12414 | case (DAE.CASE(patterns,patternGuard,decls,body,result,resultInfo,jump,info)::cases, a) | ||
| 12415 | algorithm | ||
| 12416 | 48445 | (body1,(_,a)) := DAEUtil.traverseDAEEquationsStmts(body,traverseSubexpressionsHelper,(func,a)); | |
| 12417 | 48445 | (patternGuard1,a) := traverseExpOpt(patternGuard,func,a); | |
| 12418 | 48445 | (result1,a) := traverseExpOpt(result,func,a); | |
| 12419 | 48445 | (cases1,a) := traverseCases(cases,func,a); | |
| 12420 |
4/4✓ Branch 0 taken 27311 times.
✓ Branch 1 taken 21134 times.
✓ Branch 2 taken 552 times.
✓ Branch 3 taken 26759 times.
|
48445 | cases := if referenceEq(cases,cases1) and referenceEq(patternGuard,patternGuard1) and referenceEq(result,result1) and referenceEq(body,body1) |
| 12421 | then inCases | ||
| 12422 | else DAE.CASE(patterns,patternGuard1,decls,body1,result1,resultInfo,jump,info)::cases1; | ||
| 12423 | 48445 | then (cases,a); | |
| 12424 | end match; | ||
| 12425 | end traverseCases; | ||
| 12426 | |||
| 12427 | protected function traverseMatchCases<A> | ||
| 12428 | "traverseCases for a match expression met by traverseExpBottomUp." | ||
| 12429 | input list<DAE.MatchCase> inCases; | ||
| 12430 | input FuncExpType func; | ||
| 12431 | input A inA; | ||
| 12432 | output list<DAE.MatchCase> outCases; | ||
| 12433 | output A oa; | ||
| 12434 | partial function FuncExpType | ||
| 12435 | input DAE.Exp inExp; | ||
| 12436 | input A inTypeA; | ||
| 12437 | output DAE.Exp outExp; | ||
| 12438 | output A outA; | ||
| 12439 | end FuncExpType; | ||
| 12440 | algorithm | ||
| 12441 | 9880 | (outCases, oa) := traverseCases(inCases, func, inA); | |
| 12442 | end traverseMatchCases; | ||
| 12443 | |||
| 12444 | protected function traverseMatchCasesTopDown<A> | ||
| 12445 | "traverseCasesTopDown for a match expression met by traverseExpTopDown." | ||
| 12446 | input list<DAE.MatchCase> inCases; | ||
| 12447 | input FuncExpType func; | ||
| 12448 | input A inA; | ||
| 12449 | output list<DAE.MatchCase> cases; | ||
| 12450 | output A a; | ||
| 12451 | partial function FuncExpType | ||
| 12452 | input DAE.Exp inExp; | ||
| 12453 | input A inTypeA; | ||
| 12454 | output DAE.Exp outExp; | ||
| 12455 | output Boolean cont; | ||
| 12456 | output A outA; | ||
| 12457 | end FuncExpType; | ||
| 12458 | algorithm | ||
| 12459 | 1171 | (cases, a) := traverseCasesTopDown(inCases, func, inA); | |
| 12460 | end traverseMatchCasesTopDown; | ||
| 12461 | |||
| 12462 | public function traverseCasesTopDown<A> | ||
| 12463 | "Traverses the expressions in a list of match-expression cases (top-down). | ||
| 12464 | Moved here from Patternm (see traverseCases)." | ||
| 12465 | input list<DAE.MatchCase> inCases; | ||
| 12466 | input FuncExpType func; | ||
| 12467 | input A inA; | ||
| 12468 | output list<DAE.MatchCase> cases = {}; | ||
| 12469 | output A a = inA; | ||
| 12470 | partial function FuncExpType | ||
| 12471 | input DAE.Exp inExp; | ||
| 12472 | input A inTypeA; | ||
| 12473 | output DAE.Exp outExp; | ||
| 12474 | output Boolean cont; | ||
| 12475 | output A outA; | ||
| 12476 | end FuncExpType; | ||
| 12477 | protected | ||
| 12478 | list<DAE.Pattern> patterns; | ||
| 12479 | list<DAE.Element> decls; | ||
| 12480 | list<DAE.Statement> body,body1; | ||
| 12481 | Option<DAE.Exp> result,result1,patternGuard,patternGuard1; | ||
| 12482 | Integer jump; | ||
| 12483 | SourceInfo resultInfo,info; | ||
| 12484 | tuple<FuncExpType,A> tpl; | ||
| 12485 | algorithm | ||
| 12486 |
2/2✓ Branch 0 taken 5165 times.
✓ Branch 1 taken 1171 times.
|
6336 | for c in inCases loop |
| 12487 | 5165 | DAE.CASE(patterns,patternGuard,decls,body,result,resultInfo,jump,info) := c; | |
| 12488 | 5165 | tpl := (func,a); | |
| 12489 | 5165 | (body1,(_,a)) := DAEUtil.traverseDAEEquationsStmts(body,traverseSubexpressionsTopDownHelper,tpl); | |
| 12490 | 5165 | (patternGuard1,a) := traverseExpOptTopDown(patternGuard,func,a); | |
| 12491 | 5165 | (result1,a) := traverseExpOptTopDown(result,func,a); | |
| 12492 | 5165 | cases := DAE.CASE(patterns,patternGuard1,decls,body1,result1,resultInfo,jump,info)::cases; | |
| 12493 | end for; | ||
| 12494 | 1171 | cases := listReverse(cases); | |
| 12495 | end traverseCasesTopDown; | ||
| 12496 | |||
| 12497 | annotation(__OpenModelica_Interface="frontend_base"); | ||
| 12498 | end Expression; | ||
| 12499 |