OMCompiler/Compiler/FrontEnd/ExpressionSimplify.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 ExpressionSimplify | ||
| 37 | " file: ExpressionSimplify.mo | ||
| 38 | package: ExpressionSimplify | ||
| 39 | description: ExpressionSimplify | ||
| 40 | |||
| 41 | |||
| 42 | This file contains the module ExpressionSimplify, which contains | ||
| 43 | functions to simplify a DAE.Expression." | ||
| 44 | |||
| 45 | // public imports | ||
| 46 | public import Absyn; | ||
| 47 | public import ClassInf; | ||
| 48 | public import DAE; | ||
| 49 | public import Error; | ||
| 50 | public import ExpressionSimplifyTypes; | ||
| 51 | |||
| 52 | protected type ComponentRef = DAE.ComponentRef; | ||
| 53 | protected type Ident = String; | ||
| 54 | protected type Operator = DAE.Operator; | ||
| 55 | protected type Type = DAE.Type; | ||
| 56 | protected type Subscript = DAE.Subscript; | ||
| 57 | |||
| 58 | // protected imports | ||
| 59 | protected import ComponentReference; | ||
| 60 | protected import ComponentReferenceBasics; | ||
| 61 | protected import Config; | ||
| 62 | protected import DAEUtil; | ||
| 63 | protected import Debug; | ||
| 64 | protected import FCore; | ||
| 65 | protected import ElementSource; | ||
| 66 | protected import ErrorExt; | ||
| 67 | protected import Expression; | ||
| 68 | protected import ExpressionBasics; | ||
| 69 | protected import Dump; | ||
| 70 | protected import ExpressionDump; | ||
| 71 | protected import Flags; | ||
| 72 | protected import List; | ||
| 73 | protected import MetaModelica.Dangerous; | ||
| 74 | protected import System; | ||
| 75 | protected import Types; | ||
| 76 | protected import UnorderedMap; | ||
| 77 | protected import Util; | ||
| 78 | protected import Values; | ||
| 79 | protected import ValuesUtil; | ||
| 80 | |||
| 81 | protected constant ExpressionSimplifyTypes.Options optionSimplifyOnly = ExpressionSimplifyTypes.optionSimplifyOnly; | ||
| 82 | |||
| 83 | public function simplify "Simplifies expressions" | ||
| 84 | input DAE.Exp inExp; | ||
| 85 | output DAE.Exp outExp; | ||
| 86 | output Boolean hasChanged; | ||
| 87 | algorithm | ||
| 88 | 4140348 | (outExp,hasChanged) := simplifyWithOptions(inExp,optionSimplifyOnly); | |
| 89 | end simplify; | ||
| 90 | |||
| 91 | public function condsimplify "Simplifies expressions on condition" | ||
| 92 | input Boolean cond; | ||
| 93 | input output DAE.Exp ioExp; | ||
| 94 | output Boolean hasChanged = false; | ||
| 95 | algorithm | ||
| 96 |
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87665 | if cond then |
| 97 | 7863 | (ioExp,hasChanged) := simplifyWithOptions(ioExp,optionSimplifyOnly); | |
| 98 | end if; | ||
| 99 | end condsimplify; | ||
| 100 | |||
| 101 | public function simplifyBinaryExp | ||
| 102 | input DAE.Exp inExp; | ||
| 103 | output DAE.Exp outExp; | ||
| 104 | algorithm | ||
| 105 | outExp := match inExp | ||
| 106 | local | ||
| 107 | DAE.Exp e1, e2; | ||
| 108 | DAE.Operator op; | ||
| 109 | case DAE.BINARY(exp1 = e1,operator = op, exp2 = e2) | ||
| 110 | 2616103 | then simplifyBinary(inExp, op, e1, e2); | |
| 111 | |||
| 112 | else inExp; | ||
| 113 | end match; | ||
| 114 | end simplifyBinaryExp; | ||
| 115 | |||
| 116 | public function simplifyUnaryExp | ||
| 117 | input DAE.Exp inExp; | ||
| 118 | output DAE.Exp outExp; | ||
| 119 | algorithm | ||
| 120 | outExp := match inExp | ||
| 121 | local | ||
| 122 | DAE.Exp e1; | ||
| 123 | DAE.Operator op; | ||
| 124 | case DAE.UNARY(exp = e1,operator = op) | ||
| 125 | 181320 | then simplifyUnary(inExp, op, e1); | |
| 126 | |||
| 127 | else inExp; | ||
| 128 | end match; | ||
| 129 | end simplifyUnaryExp; | ||
| 130 | |||
| 131 | protected function simplifyWithOptions "Simplifies expressions" | ||
| 132 | input DAE.Exp inExp; | ||
| 133 | input ExpressionSimplifyTypes.Options options; | ||
| 134 | output DAE.Exp outExp; | ||
| 135 | output Boolean hasChanged; | ||
| 136 | algorithm | ||
| 137 | (outExp,hasChanged) := matchcontinue (inExp,options) | ||
| 138 | local | ||
| 139 | DAE.Exp e, eNew; | ||
| 140 | Boolean b; | ||
| 141 | case (e,ExpressionSimplifyTypes.DO_EVAL()) | ||
| 142 | algorithm | ||
| 143 | ✗ | (eNew,_) := simplify1WithOptions(e,options); // Basic local simplifications | |
| 144 | ✗ | Error.assertionOrAddSourceMessage(Expression.isConstValue(eNew), Error.INTERNAL_ERROR, {"eval exp failed"}, Absyn.dummyInfo); | |
| 145 | ✗ | b := not ExpressionBasics.expEqual(e,eNew); | |
| 146 | ✗ | then (eNew,b); | |
| 147 | case (e,_) | ||
| 148 | algorithm | ||
| 149 |
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4148211 | false := Config.getNoSimplify(); |
| 150 | //print("SIMPLIFY BEFORE->" + ExpressionBasics.printExpStr(e) + "\n"); | ||
| 151 | 4148211 | (eNew,_) := simplify1WithOptions(e,options); // Basic local simplifications | |
| 152 | //print("SIMPLIFY INTERMEDIATE->" + ExpressionBasics.printExpStr(eNew) + "\n"); | ||
| 153 | 4148211 | eNew := simplify2(eNew); // Advanced (global) simplifications | |
| 154 | 4142552 | (eNew,_) := simplify1WithOptions(eNew,options); // Basic local simplifications | |
| 155 | 4142552 | b := not ExpressionBasics.expEqual(e,eNew); | |
| 156 | //print("SIMPLIFY FINAL->" + ExpressionBasics.printExpStr(eNew) + "\n"); | ||
| 157 | 4142552 | then (eNew,b); | |
| 158 | case (e,_) | ||
| 159 | algorithm | ||
| 160 | 5659 | (eNew,b) := simplify1WithOptions(e,options); | |
| 161 | then (eNew,b); | ||
| 162 | end matchcontinue; | ||
| 163 | end simplifyWithOptions; | ||
| 164 | |||
| 165 | public function simplifyTraverseHelper | ||
| 166 | input DAE.Exp inExp; | ||
| 167 | input A inA; | ||
| 168 | output DAE.Exp exp; | ||
| 169 | output A a; | ||
| 170 | replaceable type A subtypeof Any; | ||
| 171 | algorithm | ||
| 172 | a := inA; | ||
| 173 | ✗ | (exp,_) := simplify(inExp); | |
| 174 | end simplifyTraverseHelper; | ||
| 175 | |||
| 176 | public function simplify1TraverseHelper | ||
| 177 | input DAE.Exp inExp; | ||
| 178 | input A inA; | ||
| 179 | output DAE.Exp outExp; | ||
| 180 | output A a; | ||
| 181 | replaceable type A subtypeof Any; | ||
| 182 | algorithm | ||
| 183 | a := inA; | ||
| 184 | 1980464 | outExp := simplify1(inExp); | |
| 185 | end simplify1TraverseHelper; | ||
| 186 | |||
| 187 | public function simplify1time "simplify1 with timing" | ||
| 188 | input DAE.Exp e; | ||
| 189 | output DAE.Exp outE; | ||
| 190 | protected | ||
| 191 | Real t1,t2; | ||
| 192 | algorithm | ||
| 193 | ✗ | t1 := clock(); | |
| 194 | ✗ | (outE,_) := simplify1(e); | |
| 195 | ✗ | t2 := clock(); | |
| 196 | ✗ | print(if t2 - t1 > 0.01 then ("simplify1 took "+realString(t2 - t1)+" seconds for exp: "+ExpressionBasics.printExpStr(e)+ " \nsimplified to :"+ExpressionBasics.printExpStr(outE)+"\n") else ""); | |
| 197 | end simplify1time; | ||
| 198 | |||
| 199 | public function simplifyWork | ||
| 200 | "This function does some very basic simplification | ||
| 201 | on expressions, like 0*a = 0, [1][1] => 1, etc. | ||
| 202 | This function can be optimised to a switch-statement due to all uniontypes being different. | ||
| 203 | " | ||
| 204 | input DAE.Exp inExp; | ||
| 205 | input ExpressionSimplifyTypes.Options options; | ||
| 206 | output DAE.Exp outExp; | ||
| 207 | output ExpressionSimplifyTypes.Options outOptions; | ||
| 208 | algorithm | ||
| 209 | (outExp,outOptions) := match /* switch: keep it as such */ inExp | ||
| 210 | local | ||
| 211 | DAE.Exp e,exp,e1,e2,e3,exp1; | ||
| 212 | Type t,tp; | ||
| 213 | Boolean b2; | ||
| 214 | list<DAE.Exp> expl; | ||
| 215 | list<DAE.Subscript> subs; | ||
| 216 | ComponentRef c_1; | ||
| 217 | Operator op; | ||
| 218 | Integer index_; | ||
| 219 | Option<tuple<DAE.Exp,Integer,Integer>> isExpisASUB; | ||
| 220 | DAE.ReductionInfo reductionInfo; | ||
| 221 | DAE.ReductionIterators riters; | ||
| 222 | Option<DAE.Exp> oe; | ||
| 223 | |||
| 224 | case DAE.SIZE(exp=e1,sz=oe) | ||
| 225 | 5471 | then (simplifySize(inExp,e1,oe),options); | |
| 226 | |||
| 227 | /* simplify different casts. Optimized to only run simplify1 once on subexpression e*/ | ||
| 228 | case DAE.CAST(ty = tp,exp=e) | ||
| 229 | algorithm | ||
| 230 | 622417 | e := simplifyCast(inExp,e,tp); | |
| 231 | then (e,options); | ||
| 232 | |||
| 233 | case DAE.ASUB(exp = e, sub = subs) | ||
| 234 | algorithm | ||
| 235 |
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1825319 | expl := list(Expression.getSubscriptExp(sub) for sub in subs); |
| 236 | 902274 | e := simplifyAsubExp(inExp,e,expl); | |
| 237 | then (e,options); | ||
| 238 | |||
| 239 | 930 | case DAE.TSUB() then (simplifyTSub(inExp),options); | |
| 240 | |||
| 241 | // unary operations | ||
| 242 | case DAE.UNARY(operator = op,exp = e1) | ||
| 243 | algorithm | ||
| 244 | 2099506 | e := simplifyUnary(inExp, op, e1); | |
| 245 | then (e,options); | ||
| 246 | |||
| 247 | case DAE.BINARY(exp1 = e1, operator = op, exp2 = e2) | ||
| 248 | algorithm | ||
| 249 | 34087503 | e := simplifyBinary(inExp, op, e1, e2); | |
| 250 | then (e,options); | ||
| 251 | |||
| 252 | // relations | ||
| 253 | case DAE.RELATION(exp1 = e1,operator = op,exp2 = e2, index=index_, optionExpisASUB=isExpisASUB) | ||
| 254 | algorithm | ||
| 255 | 532754 | e := simplifyRelation(inExp, op, e1, e2,index_,isExpisASUB); | |
| 256 | then (e,options); | ||
| 257 | |||
| 258 | // logical unary expressions | ||
| 259 | case DAE.LUNARY(operator = op,exp = e1) | ||
| 260 | algorithm | ||
| 261 | 34046 | e := simplifyUnary(inExp, op, e1); | |
| 262 | then (e,options); | ||
| 263 | |||
| 264 | // logical binary expressions | ||
| 265 | case DAE.LBINARY(exp1 = e1,operator = op,exp2 = e2) | ||
| 266 | algorithm | ||
| 267 | 172759 | e := simplifyLBinary(inExp, op, e1, e2); | |
| 268 | then (e,options); | ||
| 269 | |||
| 270 | // if true and false branches are equal | ||
| 271 | case DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3) | ||
| 272 | algorithm | ||
| 273 | 292846 | e := simplifyIfExp(inExp,e1,e2,e3); | |
| 274 | then (e,options); | ||
| 275 | |||
| 276 | // component references | ||
| 277 | case DAE.CREF(componentRef = c_1,ty=t) | ||
| 278 | algorithm | ||
| 279 | 35427158 | e := simplifyCref(inExp,c_1,t); | |
| 280 | then (e,options); | ||
| 281 | |||
| 282 | case DAE.REDUCTION(reductionInfo,e1,riters) | ||
| 283 | algorithm | ||
| 284 | 1839 | (riters,b2) := simplifyReductionIterators(riters, {}, false); | |
| 285 |
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1839 | exp1 := if b2 then DAE.REDUCTION(reductionInfo,e1,riters) else inExp; |
| 286 | 1839 | then (simplifyReduction(exp1),options); | |
| 287 | |||
| 288 | 2692820 | case DAE.CALL() then (simplifyCall(inExp),options); | |
| 289 | |||
| 290 | 165493 | case DAE.RSUB() then (simplifyRSub(inExp),options); | |
| 291 | |||
| 292 | 3885 | case DAE.MATCHEXPRESSION() then (simplifyMatch(inExp),options); | |
| 293 | 2235 | case DAE.UNBOX() then (simplifyUnbox(inExp),options); | |
| 294 | 96237 | case DAE.BOX() then (simplifyUnbox(inExp),options); | |
| 295 | 1187 | case DAE.CONS() then (simplifyCons(inExp),options); | |
| 296 | |||
| 297 | // Look for things we really *should* have simplified, but only if we did not modify anything! | ||
| 298 | /* case ((e,(false,_))) | ||
| 299 | algorithm | ||
| 300 | true = Flags.isSet(Flags.CHECK_SIMPLIFY); | ||
| 301 | true = Expression.isConst(e); | ||
| 302 | false = Expression.isConstValue(e); | ||
| 303 | str = ExpressionBasics.printExpStr(e); | ||
| 304 | Error.addSourceMessage(Error.SIMPLIFY_CONSTANT_ERROR, {str}, Absyn.dummyInfo); | ||
| 305 | then fail(); */ | ||
| 306 | |||
| 307 | // anything else | ||
| 308 | else (inExp,options); | ||
| 309 | end match; | ||
| 310 | end simplifyWork; | ||
| 311 | |||
| 312 | protected function simplifyRSub | ||
| 313 | input output DAE.Exp e; | ||
| 314 | algorithm | ||
| 315 | e := match e | ||
| 316 | local | ||
| 317 | DAE.ComponentRef cr; | ||
| 318 | list<DAE.Exp> exps; | ||
| 319 | list<String> comp; | ||
| 320 | Absyn.Path p1,p2; | ||
| 321 | DAE.Type ty; | ||
| 322 | list<DAE.Var> vars; | ||
| 323 | case DAE.RSUB(exp=DAE.CREF(componentRef=cr), ix=-1) | ||
| 324 | 15391 | then DAE.CREF(ComponentReference.joinCrefs(cr, ComponentReferenceBasics.makeCrefIdent(e.fieldName, e.ty, {})), e.ty); | |
| 325 | case DAE.RSUB(exp=DAE.CALL(path=p1, expLst=exps, attr=DAE.CALL_ATTR(ty=DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(path=p2), varLst=vars))), ix=-1) | ||
| 326 | guard AbsynUtil.pathEqual(p1,p2) | ||
| 327 |
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4 | then listGet(exps, List.position1OnTrue(list(v.name for v in vars), stringEq, e.fieldName)); |
| 328 | case DAE.RSUB(exp=DAE.RECORD(exps=exps,comp=comp), ix=-1) | ||
| 329 | 1452 | then listGet(exps, List.position1OnTrue(comp, stringEq, e.fieldName)); | |
| 330 | else e; | ||
| 331 | end match; | ||
| 332 | end simplifyRSub; | ||
| 333 | |||
| 334 | protected function simplifyAsubExp | ||
| 335 | input DAE.Exp origExp; | ||
| 336 | input DAE.Exp inExp; | ||
| 337 | input list<DAE.Exp> inSubs; | ||
| 338 | output DAE.Exp outExp; | ||
| 339 | algorithm | ||
| 340 | outExp := matchcontinue (inExp, inSubs) | ||
| 341 | local | ||
| 342 | Integer sub, istart, istep, istop; | ||
| 343 | DAE.Type tp; | ||
| 344 | DAE.Exp e; | ||
| 345 | list<DAE.Exp> eLst, subs; | ||
| 346 | Boolean hasRange; | ||
| 347 | Option<DAE.Exp> step; | ||
| 348 | // No ASUB... | ||
| 349 | case (e, {}) then e; | ||
| 350 | |||
| 351 | // ASUB(CAST(e)) -> CAST(liftArray(t), ASUB(e)) | ||
| 352 | case (DAE.CAST(tp,e), _) | ||
| 353 | algorithm | ||
| 354 | ✗ | tp := Expression.unliftArray(tp); | |
| 355 | ✗ | e := DAE.CAST(tp, DAE.ASUB(e, list(Expression.makeIndexSubscript(s) for s in inSubs))); | |
| 356 | then e; | ||
| 357 | |||
| 358 | // Simplify asubs which result from function calls | ||
| 359 | case (DAE.TUPLE(PR=eLst), {DAE.ICONST(sub)}) | ||
| 360 | guard sub<=listLength(eLst) | ||
| 361 | ✗ | then listGet(eLst,sub); | |
| 362 | |||
| 363 | // Simplify asubs where some of the subscripts are slices. | ||
| 364 | case (_, _) | ||
| 365 | algorithm | ||
| 366 | 902265 | then simplifyAsubSlicing(inExp, inSubs); | |
| 367 | |||
| 368 | // other subscripting/asub simplifications where e is not simplified first. | ||
| 369 | case (_, _) | ||
| 370 | algorithm | ||
| 371 | // Are all expressions integers? | ||
| 372 |
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1817465 | for exp in inSubs loop |
| 373 | 921109 | Expression.expInt(exp); | |
| 374 | end for; | ||
| 375 | 896356 | then List.foldr(inSubs,simplifyAsub,inExp); | |
| 376 | |||
| 377 | // Any range in the subscripts that we can evaluate? | ||
| 378 | case (_, _) | ||
| 379 | algorithm | ||
| 380 | hasRange := false; | ||
| 381 |
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308766 | subs := list(match exp |
| 382 | case DAE.RANGE(start = DAE.ICONST(istart),step = step, stop = DAE.ICONST(istop)) | ||
| 383 | algorithm | ||
| 384 | e := Expression.makeArray(list(DAE.ICONST(i) for i in simplifyRange(istart,match step case NONE() then 1; case SOME(DAE.ICONST(istep)) then istep; end match,istop)), DAE.T_INTEGER_DEFAULT, true); | ||
| 385 | hasRange := true; | ||
| 386 | then e; | ||
| 387 | 164182 | else exp; end match | |
| 388 | for exp in inSubs); | ||
| 389 |
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144584 | true := hasRange; |
| 390 | ✗ | then DAE.ASUB(inExp, list(Expression.makeIndexSubscript(s) for s in subs)); | |
| 391 | |||
| 392 | else origExp; | ||
| 393 | end matchcontinue; | ||
| 394 | end simplifyAsubExp; | ||
| 395 | |||
| 396 | protected function simplifyCall | ||
| 397 | input DAE.Exp inExp; | ||
| 398 | output DAE.Exp outExp; | ||
| 399 | algorithm | ||
| 400 | outExp := matchcontinue inExp | ||
| 401 | local | ||
| 402 | DAE.Exp e,e1,e2,exp,zero; | ||
| 403 | list<DAE.Exp> matrix,expl; | ||
| 404 | DAE.CallAttributes attr; | ||
| 405 | DAE.Type tp; | ||
| 406 | Boolean b2; | ||
| 407 | Real r1,r2; | ||
| 408 | String idn, idn2, name; | ||
| 409 | Integer n,i1,i2; | ||
| 410 | DAE.ReductionInfo ri; | ||
| 411 | |||
| 412 | // min|max|sum|product(array(x for x in ...)) -> min(x for x in ...). Only works for scalar arrays (might affect sum; other entries are not valid Modelica) | ||
| 413 | case DAE.CALL(path=Absyn.IDENT(name),expLst={e as DAE.REDUCTION(reductionInfo=ri as DAE.REDUCTIONINFO(path=Absyn.IDENT("array")), iterators={_})}, attr=DAE.CALL_ATTR(ty=tp)) | ||
| 414 | guard listMember(name, {"sum", "product", "min", "max"}) | ||
| 415 | algorithm | ||
| 416 | ✗ | e.reductionInfo := DAE.REDUCTIONINFO(Absyn.IDENT(name), Absyn.COMBINE(), tp, SOME(reductionDefaultValue(name, tp)), ri.foldName, ri.resultName, SOME(reductionExpression(name, tp, ri.foldName, ri.resultName))); | |
| 417 | then e; | ||
| 418 | |||
| 419 | // homotopy(e, e) => e | ||
| 420 | case DAE.CALL(path=Absyn.IDENT("homotopy"),expLst={e1,e2}) | ||
| 421 | guard | ||
| 422 | ExpressionBasics.expEqual(e1,e2) | ||
| 423 | then e1; | ||
| 424 | |||
| 425 | // noEvent propagated to relations and event triggering functions | ||
| 426 | case DAE.CALL(path=Absyn.IDENT("noEvent"),expLst={e}) | ||
| 427 | algorithm | ||
| 428 |
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215639 | b2 := Expression.isRelation(e) or Expression.isEventTriggeringFunctionExp(e); |
| 429 | 8539 | then if not b2 then simplifyNoEvent(e) else inExp; | |
| 430 | |||
| 431 | // der(-v) -> -der(v) | ||
| 432 | case DAE.CALL(path=Absyn.IDENT("der"), expLst={DAE.UNARY(DAE.UMINUS(tp),e1 as DAE.CREF())},attr=attr) | ||
| 433 | 130 | then | |
| 434 | DAE.UNARY(DAE.UMINUS(tp),DAE.CALL(Absyn.IDENT("der"),{e1},attr)); | ||
| 435 | case DAE.CALL(path=Absyn.IDENT("der"), expLst={DAE.UNARY(DAE.UMINUS_ARR(tp),e1 as DAE.CREF())},attr=attr) | ||
| 436 | ✗ | then DAE.UNARY(DAE.UMINUS_ARR(tp),DAE.CALL(Absyn.IDENT("der"),{e1},attr)); | |
| 437 | |||
| 438 | case DAE.CALL(path=Absyn.IDENT("pre"), expLst={DAE.CREF()}) | ||
| 439 | then inExp; | ||
| 440 | |||
| 441 | case DAE.CALL(path=Absyn.IDENT("previous"), expLst={DAE.CREF()}) | ||
| 442 | then inExp; | ||
| 443 | |||
| 444 | case DAE.CALL(path=Absyn.IDENT("change"), expLst={DAE.CREF()}) | ||
| 445 | then inExp; | ||
| 446 | |||
| 447 | case DAE.CALL(path=Absyn.IDENT("edge"), expLst={DAE.CREF()}) | ||
| 448 | then inExp; | ||
| 449 | |||
| 450 | case DAE.CALL(path=Absyn.IDENT("pre"), expLst={e as DAE.ASUB(exp = exp)}) | ||
| 451 | algorithm | ||
| 452 | ✗ | b2 := Expression.isConst(exp); | |
| 453 | ✗ | then if b2 then e else inExp; | |
| 454 | case DAE.CALL(path=Absyn.IDENT("previous"), expLst={e as DAE.ASUB(exp = exp)}) | ||
| 455 | algorithm | ||
| 456 | ✗ | b2 := Expression.isConst(exp); | |
| 457 | ✗ | then if b2 then e else inExp; | |
| 458 | case DAE.CALL(path=Absyn.IDENT("change"), expLst={DAE.ASUB(exp = exp)}) | ||
| 459 | algorithm | ||
| 460 | ✗ | b2 := Expression.isConst(exp); | |
| 461 | ✗ | then if b2 then DAE.BCONST(false) else inExp; | |
| 462 | case DAE.CALL(path=Absyn.IDENT("edge"), expLst={DAE.ASUB(exp = exp)}) | ||
| 463 | algorithm | ||
| 464 | ✗ | b2 := Expression.isConst(exp); | |
| 465 | ✗ | then if b2 then DAE.BCONST(false) else inExp; | |
| 466 | |||
| 467 | // move pre inside | ||
| 468 | case DAE.CALL(path=Absyn.IDENT("pre"), expLst={e}) | ||
| 469 | algorithm | ||
| 470 | 28 | (e,_) := Expression.traverseExpTopDown(e,preCref,false); | |
| 471 | then e; | ||
| 472 | case DAE.CALL(path=Absyn.IDENT("previous"), expLst={e}) | ||
| 473 | algorithm | ||
| 474 | ✗ | (e,_) := Expression.traverseExpTopDown(e,previousCref,false); | |
| 475 | then e; | ||
| 476 | case DAE.CALL(path=Absyn.IDENT("change"), expLst={e}) | ||
| 477 | algorithm | ||
| 478 | ✗ | (e,_) := Expression.traverseExpTopDown(e,changeCref,false); | |
| 479 | then e; | ||
| 480 | case DAE.CALL(path=Absyn.IDENT("edge"), expLst={e}) | ||
| 481 | algorithm | ||
| 482 | ✗ | (e,_) := Expression.traverseExpTopDown(e,edgeCref,false); | |
| 483 | then e; | ||
| 484 | |||
| 485 | // normal (pure) call | ||
| 486 | case DAE.CALL(path=Absyn.IDENT(idn),expLst=expl, attr=DAE.CALL_ATTR(isImpure=false)) | ||
| 487 | guard | ||
| 488 | Expression.isConstWorkList(expl) | ||
| 489 | 41119 | then simplifyBuiltinConstantCalls(idn,inExp); | |
| 490 | |||
| 491 | // simplify some builtin calls, like cross, etc | ||
| 492 | case DAE.CALL(attr=DAE.CALL_ATTR(builtin = true)) | ||
| 493 | 1549469 | then simplifyBuiltinCalls(inExp); | |
| 494 | |||
| 495 | // simplify identity | ||
| 496 | case DAE.CALL(path = Absyn.IDENT(name = "identity"), expLst = {DAE.ICONST(n)}) | ||
| 497 | algorithm | ||
| 498 |
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1280 | matrix := list(DAE.ARRAY(DAE.T_ARRAY(DAE.T_INTEGER_DEFAULT,{DAE.DIM_INTEGER(n)}),true,list(if i==j then DAE.ICONST(1) else DAE.ICONST(0) for i in 1:n)) for j in 1:n); |
| 499 | 160 | then DAE.ARRAY(DAE.T_ARRAY(DAE.T_INTEGER_DEFAULT,{DAE.DIM_INTEGER(n),DAE.DIM_INTEGER(n)}),false,matrix); | |
| 500 | |||
| 501 | case DAE.CALL(path = Absyn.IDENT(name = "diagonal"), expLst = {DAE.ARRAY(array=expl,ty=tp)}) | ||
| 502 | algorithm | ||
| 503 | 32 | n := listLength(expl); | |
| 504 | 32 | tp := Types.arrayElementType(tp); | |
| 505 | 32 | zero := Expression.makeConstZero(tp); | |
| 506 |
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512 | matrix := list(DAE.ARRAY(DAE.T_ARRAY(tp,{DAE.DIM_INTEGER(n)}),true,list(if i==j then listGet(expl,i) else zero for i in 1:n)) for j in 1:n); |
| 507 | 64 | then DAE.ARRAY(DAE.T_ARRAY(tp,{DAE.DIM_INTEGER(n),DAE.DIM_INTEGER(n)}),false,matrix); | |
| 508 | |||
| 509 | // arcxxx(xxx(e)) => e; xxx(arcxxx(e)) => e | ||
| 510 | case DAE.CALL(path=Absyn.IDENT(idn),expLst={DAE.CALL(path=Absyn.IDENT(idn2),expLst={e})}) | ||
| 511 | guard (idn=="tan" and idn2=="atan") | ||
| 512 | // or (idn=="sin" and idn2=="asin") | ||
| 513 | // or (idn=="cos" and idn2=="acos") | ||
| 514 | then e; | ||
| 515 | |||
| 516 | // modulo for real values | ||
| 517 | case DAE.CALL(path=Absyn.IDENT("mod"),expLst={DAE.RCONST(r1),DAE.RCONST(r2)}) | ||
| 518 | guard r2 <> 0.0 | ||
| 519 | 14 | then DAE.RCONST(mod(r1,r2)); | |
| 520 | // modulo for integer values | ||
| 521 | case DAE.CALL(path=Absyn.IDENT("mod"),expLst={DAE.ICONST(i1),DAE.ICONST(i2)}) | ||
| 522 | guard i2 <> 0.0 | ||
| 523 | ✗ | then DAE.ICONST(mod(i1,i2)); | |
| 524 | // integer call | ||
| 525 | case DAE.CALL(path=Absyn.IDENT("integer"),expLst={DAE.RCONST(r1)}) | ||
| 526 | ✗ | then DAE.ICONST(realInt(r1)); | |
| 527 | // sin(acos(e)) = sqrt(1-e^2) | ||
| 528 | case DAE.CALL(path=Absyn.IDENT("sin"),expLst={DAE.CALL(path=Absyn.IDENT("acos"),expLst={e})}) | ||
| 529 | ✗ | then Expression.makePureBuiltinCall("sqrt",{DAE.BINARY(DAE.RCONST(1),DAE.SUB(DAE.T_REAL_DEFAULT),DAE.BINARY(e,DAE.MUL(DAE.T_REAL_DEFAULT),e))},DAE.T_REAL_DEFAULT); | |
| 530 | // cos(asin(e)) = sqrt(1-e^2) | ||
| 531 | case DAE.CALL(path=Absyn.IDENT("cos"),expLst={DAE.CALL(path=Absyn.IDENT("asin"),expLst={e})}) | ||
| 532 | ✗ | then Expression.makePureBuiltinCall("sqrt",{DAE.BINARY(DAE.RCONST(1),DAE.SUB(DAE.T_REAL_DEFAULT),DAE.BINARY(e,DAE.MUL(DAE.T_REAL_DEFAULT),e))},DAE.T_REAL_DEFAULT); | |
| 533 | // sin(atan(e)) = e/sqrt(1+e^2) | ||
| 534 | case DAE.CALL(path=Absyn.IDENT("sin"),expLst={DAE.CALL(path=Absyn.IDENT("atan"),expLst={e})}) | ||
| 535 | ✗ | then DAE.BINARY(e,DAE.DIV(DAE.T_REAL_DEFAULT),Expression.makePureBuiltinCall("sqrt",{DAE.BINARY(DAE.RCONST(1),DAE.ADD(DAE.T_REAL_DEFAULT),DAE.BINARY(e,DAE.MUL(DAE.T_REAL_DEFAULT),e))},DAE.T_REAL_DEFAULT)); | |
| 536 | // cos(atan(e)) = 1/sqrt(1+e^2) | ||
| 537 | case DAE.CALL(path=Absyn.IDENT("cos"),expLst={DAE.CALL(path=Absyn.IDENT("atan"),expLst={e})}) | ||
| 538 | ✗ | then DAE.BINARY(DAE.RCONST(1),DAE.DIV(DAE.T_REAL_DEFAULT),Expression.makePureBuiltinCall("sqrt",{DAE.BINARY(DAE.RCONST(1),DAE.ADD(DAE.T_REAL_DEFAULT),DAE.BINARY(e,DAE.MUL(DAE.T_REAL_DEFAULT),e))},DAE.T_REAL_DEFAULT)); | |
| 539 | // atan2(y,0) = sign(y)*pi/2 | ||
| 540 | case DAE.CALL(path=Absyn.IDENT("atan2"),expLst={e1,e2}) | ||
| 541 | guard | ||
| 542 | Expression.isZero(e2) | ||
| 543 | algorithm | ||
| 544 | 8 | e := Expression.makePureBuiltinCall("sign", {e1}, DAE.T_REAL_DEFAULT); | |
| 545 | 8 | then DAE.BINARY(DAE.RCONST(1.570796326794896619231321691639751442),DAE.MUL(DAE.T_REAL_DEFAULT),e); | |
| 546 | // atan2(0,x) = 0 | ||
| 547 | case DAE.CALL(path=Absyn.IDENT("atan2"),expLst={e1 as DAE.RCONST(0.0),_}) | ||
| 548 | then e1; | ||
| 549 | case DAE.CALL(path=Absyn.IDENT("atan2"), expLst={DAE.RCONST(r1),DAE.RCONST(r2)}) | ||
| 550 | 80 | then DAE.RCONST(atan2(r1,r2)); | |
| 551 | // abs(-x) = abs(x) | ||
| 552 | case DAE.CALL(path=Absyn.IDENT("abs"),expLst={DAE.UNARY(operator = DAE.UMINUS(ty = tp),exp = e1)}) | ||
| 553 | algorithm | ||
| 554 | 1 | e := Expression.makePureBuiltinCall("abs", {e1}, tp); | |
| 555 | then e; | ||
| 556 | |||
| 557 | // MetaModelica builtin operators are calls | ||
| 558 | case _ | ||
| 559 | guard | ||
| 560 | Config.acceptMetaModelicaGrammar() | ||
| 561 | 66389 | then simplifyMetaModelicaCalls(inExp); | |
| 562 | else inExp; | ||
| 563 | end matchcontinue; | ||
| 564 | end simplifyCall; | ||
| 565 | |||
| 566 | protected function preCref | ||
| 567 | input DAE.Exp ie; | ||
| 568 | input Boolean ib; | ||
| 569 | output DAE.Exp oe; | ||
| 570 | output Boolean cont; | ||
| 571 | output Boolean ob; | ||
| 572 | algorithm | ||
| 573 | (oe,cont,ob) := match (ie,ib) | ||
| 574 | local | ||
| 575 | DAE.Exp e; | ||
| 576 | Boolean b; | ||
| 577 | DAE.Type ty; | ||
| 578 | ✗ | case (e as DAE.CREF(ty=ty),_) then (Expression.makeBuiltinCall("pre",{e},ty,false),false,true); | |
| 579 | case (e as DAE.CALL(path=Absyn.IDENT("pre")),b) then (e,false,b); | ||
| 580 | 28 | case (e,b) then (e,not b,b); | |
| 581 | end match; | ||
| 582 | end preCref; | ||
| 583 | |||
| 584 | protected function previousCref | ||
| 585 | input DAE.Exp ie; | ||
| 586 | input Boolean ib; | ||
| 587 | output DAE.Exp oe; | ||
| 588 | output Boolean cont; | ||
| 589 | output Boolean ob; | ||
| 590 | algorithm | ||
| 591 | (oe,cont,ob) := match (ie,ib) | ||
| 592 | local | ||
| 593 | DAE.Exp e; | ||
| 594 | Boolean b; | ||
| 595 | DAE.Type ty; | ||
| 596 | ✗ | case (e as DAE.CREF(ty=ty),_) then (Expression.makeBuiltinCall("previous",{e},ty,false),false,true); | |
| 597 | case (e as DAE.CALL(path=Absyn.IDENT("previous")),b) then (e,false,b); | ||
| 598 | ✗ | case (e,b) then (e,not b,b); | |
| 599 | end match; | ||
| 600 | end previousCref; | ||
| 601 | |||
| 602 | protected function changeCref | ||
| 603 | input DAE.Exp ie; | ||
| 604 | input Boolean ib; | ||
| 605 | output DAE.Exp oe; | ||
| 606 | output Boolean cont; | ||
| 607 | output Boolean ob; | ||
| 608 | algorithm | ||
| 609 | (oe,cont,ob) := match (ie,ib) | ||
| 610 | local | ||
| 611 | DAE.Exp e; | ||
| 612 | Boolean b; | ||
| 613 | DAE.Type ty; | ||
| 614 | ✗ | case (e as DAE.CREF(ty=ty),_) then (Expression.makeBuiltinCall("change",{e},ty,false),false,true); | |
| 615 | case (e as DAE.CALL(path=Absyn.IDENT("change")),b) then (e,false,b); | ||
| 616 | ✗ | case (e,b) then (e,not b,b); | |
| 617 | end match; | ||
| 618 | end changeCref; | ||
| 619 | |||
| 620 | protected function edgeCref | ||
| 621 | input DAE.Exp ie; | ||
| 622 | input Boolean ib; | ||
| 623 | output DAE.Exp oe; | ||
| 624 | output Boolean cont; | ||
| 625 | output Boolean ob; | ||
| 626 | algorithm | ||
| 627 | (oe,cont,ob) := match (ie,ib) | ||
| 628 | local | ||
| 629 | DAE.Exp e; | ||
| 630 | Boolean b; | ||
| 631 | DAE.Type ty; | ||
| 632 | ✗ | case (e as DAE.CREF(ty=ty),_) then (Expression.makeBuiltinCall("edge",{e},ty,false),false,true); | |
| 633 | case (e as DAE.CALL(path=Absyn.IDENT("edge")),b) then (e,false,b); | ||
| 634 | ✗ | case (e,b) then (e,not b,b); | |
| 635 | end match; | ||
| 636 | end edgeCref; | ||
| 637 | |||
| 638 | public function simplify1 | ||
| 639 | "This function does some very basic simplification | ||
| 640 | on expressions, like 0*a = 0, [1][1] => 1, etc." | ||
| 641 | input DAE.Exp inExp; | ||
| 642 | output DAE.Exp outExp; | ||
| 643 | output Boolean hasChanged; | ||
| 644 | algorithm | ||
| 645 | 7398648 | (outExp, hasChanged) := simplify1WithOptions(inExp, optionSimplifyOnly); | |
| 646 | end simplify1; | ||
| 647 | |||
| 648 | public function simplify1o | ||
| 649 | "This function does some very basic simplification | ||
| 650 | on expressions, like 0*a = 0, [1][1] => 1, etc." | ||
| 651 | input Option<DAE.Exp> inExp; | ||
| 652 | output Option<DAE.Exp> outExp; | ||
| 653 | algorithm | ||
| 654 | outExp := match inExp | ||
| 655 | local DAE.Exp e; | ||
| 656 | case SOME(e) algorithm | ||
| 657 | 12 | (e, _) := simplify1WithOptions(e, optionSimplifyOnly); | |
| 658 | then SOME(e); | ||
| 659 | else inExp; | ||
| 660 | end match; | ||
| 661 | end simplify1o; | ||
| 662 | |||
| 663 | |||
| 664 | public function simplify1WithOptions | ||
| 665 | "This function does some very basic simplification | ||
| 666 | on expressions, like 0*a = 0, [1][1] => 1, etc." | ||
| 667 | input DAE.Exp inExp; | ||
| 668 | input ExpressionSimplifyTypes.Options options; | ||
| 669 | output DAE.Exp outExp; | ||
| 670 | output Boolean hasChanged; | ||
| 671 | algorithm | ||
| 672 | 15695082 | (outExp, hasChanged) := simplify1FixP(inExp, options, 100, true, false); | |
| 673 | 15695082 | checkSimplify(Flags.isSet(Flags.CHECK_SIMPLIFY), inExp, outExp); | |
| 674 | end simplify1WithOptions; | ||
| 675 | |||
| 676 | protected function checkSimplify | ||
| 677 | "Verifies that the complexity of the expression is lower or equal than before the simplification was performed" | ||
| 678 | input Boolean check; | ||
| 679 | input DAE.Exp before; | ||
| 680 | input DAE.Exp after; | ||
| 681 | algorithm | ||
| 682 | () := match check | ||
| 683 | local | ||
| 684 | Integer c1,c2; | ||
| 685 | Boolean b; | ||
| 686 | String s1,s2,s3,s4; | ||
| 687 | DAE.Type ty1,ty2; | ||
| 688 | case false then (); | ||
| 689 | case true | ||
| 690 | algorithm | ||
| 691 | ✗ | ty1 := Expression.typeof(before); | |
| 692 | ✗ | ty2 := Expression.typeof(after); | |
| 693 | ✗ | b := valueEq(ty1,ty2); | |
| 694 | ✗ | if not b then | |
| 695 | ✗ | s1 := ExpressionBasics.printExpStr(before); | |
| 696 | ✗ | s2 := ExpressionBasics.printExpStr(after); | |
| 697 | ✗ | s3 := TypesDump.unparseType(ty1); | |
| 698 | ✗ | s4 := TypesDump.unparseType(ty2); | |
| 699 | ✗ | Error.addMessage(Error.SIMPLIFICATION_TYPE, {s1,s2,s3,s4}); | |
| 700 | ✗ | fail(); | |
| 701 | end if; | ||
| 702 | ✗ | c1 := Expression.complexity(before); | |
| 703 | ✗ | c2 := Expression.complexity(after); | |
| 704 | b := c1 < c2; | ||
| 705 | ✗ | if b then | |
| 706 | ✗ | s1 := intString(c2); | |
| 707 | ✗ | s2 := intString(c1); | |
| 708 | ✗ | s3 := ExpressionBasics.printExpStr(before); | |
| 709 | ✗ | s4 := ExpressionBasics.printExpStr(after); | |
| 710 | ✗ | Error.addMessage(Error.SIMPLIFICATION_COMPLEXITY, {s1,s2,s3,s4}); | |
| 711 | ✗ | fail(); | |
| 712 | end if; | ||
| 713 | then (); | ||
| 714 | end match; | ||
| 715 | end checkSimplify; | ||
| 716 | |||
| 717 | protected function simplify1FixP | ||
| 718 | "Does fixpoint simplify1 max n times" | ||
| 719 | input DAE.Exp inExp; | ||
| 720 | input ExpressionSimplifyTypes.Options inOptions; | ||
| 721 | input Integer n; | ||
| 722 | input Boolean cont; | ||
| 723 | input Boolean hasChanged; | ||
| 724 | output DAE.Exp outExp; | ||
| 725 | output Boolean outHasChanged; | ||
| 726 | algorithm | ||
| 727 | (outExp,outHasChanged) := match (inExp, inOptions, n, cont) | ||
| 728 | local | ||
| 729 | DAE.Exp exp,expAfterSimplify; | ||
| 730 | Boolean b; | ||
| 731 | String str1,str2; | ||
| 732 | ExpressionSimplifyTypes.Options options; | ||
| 733 | case (exp, _, _, false) | ||
| 734 | algorithm | ||
| 735 | // print("End fixp: " + ExpressionBasics.printExpStr(exp) + "\n"); | ||
| 736 | then (exp,hasChanged); | ||
| 737 | case (exp, options, 0, _) | ||
| 738 | algorithm | ||
| 739 | ✗ | str1 := ExpressionBasics.printExpStr(exp); | |
| 740 | ✗ | (exp,_) := Expression.traverseExpBottomUp(exp,simplifyWork,options); | |
| 741 | ✗ | str2 := ExpressionBasics.printExpStr(exp); | |
| 742 | ✗ | Error.addMessage(Error.SIMPLIFY_FIXPOINT_MAXIMUM, {str1,str2}); | |
| 743 | then (exp,hasChanged); | ||
| 744 | case (exp, options, _, true) | ||
| 745 | algorithm | ||
| 746 | // print("simplify1 start: " + ExpressionBasics.printExpStr(exp) + "\n"); | ||
| 747 | 18149716 | ErrorExt.setCheckpoint("ExpressionSimplify"); | |
| 748 | 18149716 | (expAfterSimplify,options) := Expression.traverseExpBottomUp(exp,simplifyWork,options); | |
| 749 | 18149716 | b := not referenceEq(expAfterSimplify, exp); | |
| 750 |
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18149716 | if b then |
| 751 | 2454634 | ErrorExt.rollBack("ExpressionSimplify"); | |
| 752 | else | ||
| 753 | 15695082 | ErrorExt.delCheckpoint("ExpressionSimplify"); | |
| 754 | end if; | ||
| 755 | // print("simplify1 iter: " + ExpressionBasics.printExpStr(expAfterSimplify) + "\n"); | ||
| 756 | 18149716 | (expAfterSimplify,b) := simplify1FixP(expAfterSimplify,options,n-1,b,b or hasChanged); | |
| 757 | then (expAfterSimplify,b); | ||
| 758 | end match; | ||
| 759 | end simplify1FixP; | ||
| 760 | |||
| 761 | protected function simplifyReductionIterators | ||
| 762 | input list<DAE.ReductionIterator> inIters; | ||
| 763 | input list<DAE.ReductionIterator> inAcc; | ||
| 764 | input Boolean inChange; | ||
| 765 | output list<DAE.ReductionIterator> outIters; | ||
| 766 | output Boolean outChange; | ||
| 767 | algorithm | ||
| 768 | (outIters,outChange) := match (inIters,inAcc,inChange) | ||
| 769 | local | ||
| 770 | String id; | ||
| 771 | DAE.Exp exp; | ||
| 772 | DAE.Type ty; | ||
| 773 | DAE.ReductionIterator iter; | ||
| 774 | list<DAE.ReductionIterator> iters,acc; | ||
| 775 | Boolean change; | ||
| 776 | |||
| 777 | 1835 | case ({},acc,change) then (listReverse(acc),change); | |
| 778 | |||
| 779 | case (DAE.REDUCTIONITER(id,exp,SOME(DAE.BCONST(true)),ty)::iters,acc,_) | ||
| 780 | algorithm | ||
| 781 | 24 | (iters,change) := simplifyReductionIterators(iters,DAE.REDUCTIONITER(id,exp,NONE(),ty)::acc,true); | |
| 782 | then (iters,change); | ||
| 783 | |||
| 784 | case (DAE.REDUCTIONITER(id,_,SOME(DAE.BCONST(false)),ty)::_,_,_) | ||
| 785 | 4 | then ({DAE.REDUCTIONITER(id,DAE.LIST({}),NONE(),ty)},true); | |
| 786 | |||
| 787 | case (iter::iters,acc,change) | ||
| 788 | algorithm | ||
| 789 | 1853 | (iters,change) := simplifyReductionIterators(iters,iter::acc,change); | |
| 790 | then (iters,change); | ||
| 791 | end match; | ||
| 792 | end simplifyReductionIterators; | ||
| 793 | |||
| 794 | protected function simplifyIfExp | ||
| 795 | "Handles simplification of if-expressions" | ||
| 796 | input DAE.Exp origExp; | ||
| 797 | input DAE.Exp cond; | ||
| 798 | input DAE.Exp tb; | ||
| 799 | input DAE.Exp fb; | ||
| 800 | output DAE.Exp exp; | ||
| 801 | algorithm | ||
| 802 | exp := match (cond, tb, fb) | ||
| 803 | local | ||
| 804 | DAE.Exp e,e1,e2; | ||
| 805 | // Condition is constant | ||
| 806 | case (DAE.BCONST(true), _, _) then tb; | ||
| 807 | case (DAE.BCONST(false), _, _) then fb; | ||
| 808 | // The expression is the condition | ||
| 809 | case (exp, DAE.BCONST(true), DAE.BCONST(false)) then exp; | ||
| 810 | case (exp, DAE.BCONST(false), DAE.BCONST(true)) | ||
| 811 | algorithm | ||
| 812 | 3 | exp := DAE.LUNARY(DAE.NOT(DAE.T_BOOL_DEFAULT), exp); | |
| 813 | then exp; | ||
| 814 | case (e, DAE.BOX(e1), DAE.BOX(e2)) | ||
| 815 | algorithm | ||
| 816 | 3 | e := DAE.IFEXP(e,e1,e2); | |
| 817 | 3 | then DAE.BOX(e); | |
| 818 |
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287531 | else // Are the branches equal? Then why bother with the condition |
| 819 | if ExpressionBasics.expEqual(tb,fb) then tb else origExp; | ||
| 820 | end match; | ||
| 821 | end simplifyIfExp; | ||
| 822 | |||
| 823 | protected function simplifyMetaModelicaCalls "simplifies MetaModelica operators" | ||
| 824 | input DAE.Exp exp; | ||
| 825 | output DAE.Exp outExp; | ||
| 826 | algorithm | ||
| 827 | outExp := match exp | ||
| 828 | local | ||
| 829 | DAE.Exp e,e1,e2,e1_1; | ||
| 830 | Boolean b; | ||
| 831 | Absyn.Path path; | ||
| 832 | list<DAE.Exp> el; | ||
| 833 | Integer i; | ||
| 834 | Real r; | ||
| 835 | String s; | ||
| 836 | Option<DAE.Exp> foldExp; | ||
| 837 | Option<Values.Value> v; | ||
| 838 | DAE.Type ty; | ||
| 839 | DAE.ReductionIterators riters; | ||
| 840 | String foldName,resultName; | ||
| 841 | Absyn.ReductionIterType rit; | ||
| 842 | |||
| 843 | case DAE.CALL(path=Absyn.IDENT("listAppend"),expLst={DAE.LIST(el),e2}) | ||
| 844 | algorithm | ||
| 845 | ✗ | e := List.fold(listReverse(el), Expression.makeCons, e2); | |
| 846 | then e; | ||
| 847 | |||
| 848 | case DAE.CALL(path=Absyn.IDENT("listAppend"),expLst={e1,DAE.LIST(valList={})}) | ||
| 849 | then e1; | ||
| 850 | |||
| 851 | case DAE.CALL(path=Absyn.IDENT("intString"),expLst={DAE.ICONST(i)}) | ||
| 852 | algorithm | ||
| 853 | ✗ | s := intString(i); | |
| 854 | ✗ | then DAE.SCONST(s); | |
| 855 | |||
| 856 | case DAE.CALL(path=Absyn.IDENT("realString"),expLst={DAE.RCONST(r)}) | ||
| 857 | algorithm | ||
| 858 | ✗ | s := realString(r); | |
| 859 | ✗ | then DAE.SCONST(s); | |
| 860 | |||
| 861 | case DAE.CALL(path=Absyn.IDENT("boolString"),expLst={DAE.BCONST(b)}) | ||
| 862 | algorithm | ||
| 863 | ✗ | s := boolString(b); | |
| 864 | ✗ | then DAE.SCONST(s); | |
| 865 | |||
| 866 | case DAE.CALL(path=Absyn.IDENT("listReverse"),expLst={DAE.LIST(el)}) | ||
| 867 | algorithm | ||
| 868 | ✗ | el := listReverse(el); | |
| 869 | ✗ | e1_1 := DAE.LIST(el); | |
| 870 | then e1_1; | ||
| 871 | |||
| 872 | case DAE.CALL(path=Absyn.IDENT("listReverse"),expLst={DAE.REDUCTION(DAE.REDUCTIONINFO(Absyn.IDENT("list"),rit,ty,v,foldName,resultName,foldExp),e1,riters)}) | ||
| 873 | algorithm | ||
| 874 | 4 | e1 := DAE.REDUCTION(DAE.REDUCTIONINFO(Absyn.IDENT("listReverse"),rit,ty,v,foldName,resultName,foldExp),e1,riters); | |
| 875 | then e1; | ||
| 876 | |||
| 877 | case DAE.CALL(path=Absyn.IDENT("listReverse"),expLst={DAE.REDUCTION(DAE.REDUCTIONINFO(Absyn.IDENT("listReverse"),rit,ty,v,foldName,resultName,foldExp),e1,riters)}) | ||
| 878 | algorithm | ||
| 879 | 4 | e1 := DAE.REDUCTION(DAE.REDUCTIONINFO(Absyn.IDENT("list"),rit,ty,v,foldName,resultName,foldExp),e1,riters); | |
| 880 | then e1; | ||
| 881 | |||
| 882 | case DAE.CALL(path=Absyn.IDENT("listLength"),expLst={DAE.LIST(el)}) | ||
| 883 | algorithm | ||
| 884 | ✗ | i := listLength(el); | |
| 885 | ✗ | then DAE.ICONST(i); | |
| 886 | |||
| 887 | case DAE.CALL(path=Absyn.IDENT("mmc_mk_some"),expLst={e}) | ||
| 888 | ✗ | then DAE.META_OPTION(SOME(e)); | |
| 889 | |||
| 890 | case DAE.CALL(path=Absyn.IDENT("sourceInfo")) | ||
| 891 | algorithm | ||
| 892 | ✗ | print("sourceInfo() - simplify?\n"); | |
| 893 | ✗ | then fail(); | |
| 894 | end match; | ||
| 895 | end simplifyMetaModelicaCalls; | ||
| 896 | |||
| 897 | protected function simplifyCons | ||
| 898 | input DAE.Exp inExp; | ||
| 899 | output DAE.Exp outExp; | ||
| 900 | algorithm | ||
| 901 | outExp := match inExp | ||
| 902 | local | ||
| 903 | DAE.Exp e; | ||
| 904 | list<DAE.Exp> es; | ||
| 905 | 49 | case DAE.CONS(e,DAE.LIST(es)) then DAE.LIST(e::es); | |
| 906 | else inExp; | ||
| 907 | end match; | ||
| 908 | end simplifyCons; | ||
| 909 | |||
| 910 | protected function simplifyUnbox "simplifies both box and unbox expressions" | ||
| 911 | input DAE.Exp exp; | ||
| 912 | output DAE.Exp outExp; | ||
| 913 | algorithm | ||
| 914 | outExp := match exp | ||
| 915 | case DAE.UNBOX(exp=DAE.BOX(outExp)) then outExp; | ||
| 916 | case DAE.BOX(DAE.UNBOX(exp=outExp)) then outExp; | ||
| 917 | else exp; | ||
| 918 | end match; | ||
| 919 | end simplifyUnbox; | ||
| 920 | |||
| 921 | protected function simplifyMatch "simplifies MetaModelica match expressions" | ||
| 922 | input DAE.Exp exp; | ||
| 923 | output DAE.Exp outExp; | ||
| 924 | algorithm | ||
| 925 | outExp := match exp | ||
| 926 | local | ||
| 927 | DAE.Exp e,e1,e2,e1_1,e2_1; | ||
| 928 | Boolean b1,b2; | ||
| 929 | DAE.Type ty; | ||
| 930 | // match () case () then exp; end match => exp | ||
| 931 | case DAE.MATCHEXPRESSION(inputs={}, et=ty, localDecls={}, cases={ | ||
| 932 | DAE.CASE(patterns={},localDecls={},body={},result=SOME(e)) | ||
| 933 | }) | ||
| 934 | guard | ||
| 935 | not Types.isTuple(ty) | ||
| 936 | then e; | ||
| 937 | |||
| 938 | case DAE.MATCHEXPRESSION(inputs={e}, et=ty, localDecls={}, cases={ | ||
| 939 | DAE.CASE(patterns={DAE.PAT_CONSTANT(exp=DAE.BCONST(b1))},localDecls={},body={},result=SOME(e1)), | ||
| 940 | DAE.CASE(patterns={DAE.PAT_CONSTANT(exp=DAE.BCONST(b2))},localDecls={},body={},result=SOME(e2)) | ||
| 941 | }) | ||
| 942 | guard | ||
| 943 | not boolEq(b1,b2) and | ||
| 944 | not Types.isTuple(ty) | ||
| 945 | algorithm | ||
| 946 | ✗ | e1_1 := if b1 then e1 else e2; | |
| 947 | ✗ | e2_1 := if b1 then e2 else e1; | |
| 948 | ✗ | e := DAE.IFEXP(e, e1_1, e2_1); | |
| 949 | then e; | ||
| 950 | |||
| 951 | case DAE.MATCHEXPRESSION(matchType=DAE.MATCH(), et=ty, inputs={e}, localDecls={}, cases={ | ||
| 952 | DAE.CASE(patterns={DAE.PAT_CONSTANT(exp=DAE.BCONST(b1))},localDecls={},body={},result=SOME(e1)), | ||
| 953 | DAE.CASE(patterns={DAE.PAT_WILD()},localDecls={},body={},result=SOME(e2)) | ||
| 954 | }) | ||
| 955 | guard | ||
| 956 | not Types.isTuple(ty) | ||
| 957 | algorithm | ||
| 958 |
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1 | e1_1 := if b1 then e1 else e2; |
| 959 |
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|
1 | e2_1 := if b1 then e2 else e1; |
| 960 | 1 | e := DAE.IFEXP(e, e1_1, e2_1); | |
| 961 | then e; | ||
| 962 | |||
| 963 | else exp; | ||
| 964 | end match; | ||
| 965 | end simplifyMatch; | ||
| 966 | |||
| 967 | protected function simplifyCast "help function to simplify1" | ||
| 968 | input DAE.Exp origExp; | ||
| 969 | input DAE.Exp exp; | ||
| 970 | input Type tp; | ||
| 971 | output DAE.Exp outExp; | ||
| 972 | algorithm | ||
| 973 | outExp := match(exp, tp) | ||
| 974 | local | ||
| 975 | Real r; | ||
| 976 | Integer i,n; | ||
| 977 | Boolean b; | ||
| 978 | list<DAE.Exp> exps,exps_1; | ||
| 979 | Type tp_1,tp1,tp2,t1,t2; | ||
| 980 | DAE.Exp e1,e2,cond,e1_1,e2_1,e; | ||
| 981 | list<list<DAE.Exp>> mexps,mexps_1; | ||
| 982 | Option<DAE.Exp> eo; | ||
| 983 | DAE.Dimensions dims; | ||
| 984 | Absyn.Path p1,p2,p3; | ||
| 985 | list<String> fieldNames; | ||
| 986 | |||
| 987 | // Real -> Real | ||
| 988 | 8224 | case(DAE.RCONST(r), DAE.T_REAL()) then DAE.RCONST(r); | |
| 989 | |||
| 990 | // Int -> Real | ||
| 991 | case(DAE.ICONST(i), DAE.T_REAL()) | ||
| 992 | algorithm | ||
| 993 | 252777 | r := intReal(i); | |
| 994 | 252777 | then | |
| 995 | DAE.RCONST(r); | ||
| 996 | |||
| 997 | // cast of unary | ||
| 998 | case(DAE.UNARY(DAE.UMINUS_ARR(_),e), _) | ||
| 999 | algorithm | ||
| 1000 | ✗ | e := addCast(e,tp); | |
| 1001 | ✗ | then | |
| 1002 | DAE.UNARY(DAE.UMINUS_ARR(tp),e); | ||
| 1003 | // cast of unary | ||
| 1004 | case(DAE.UNARY(DAE.UMINUS(_),e), _) | ||
| 1005 | algorithm | ||
| 1006 | ✗ | e := addCast(e,tp); | |
| 1007 | ✗ | then | |
| 1008 | DAE.UNARY(DAE.UMINUS(tp),e); | ||
| 1009 | |||
| 1010 | // cast of array | ||
| 1011 | case(DAE.ARRAY(_,b,exps), _) | ||
| 1012 | algorithm | ||
| 1013 | 1419 | tp_1 := Expression.unliftArray(tp); | |
| 1014 | 1419 | exps_1 := List.map1(exps, addCast, tp_1); | |
| 1015 |
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1420 | then |
| 1016 | DAE.ARRAY(tp,b,exps_1); | ||
| 1017 | |||
| 1018 | // cast of array | ||
| 1019 | case (DAE.RANGE(ty=DAE.T_ARRAY(ty = DAE.T_INTEGER()),start=e1,step=eo,stop=e2), DAE.T_ARRAY(ty=tp2 as DAE.T_REAL())) | ||
| 1020 | algorithm | ||
| 1021 | 6 | e1 := addCast(e1,tp2); | |
| 1022 | 6 | e2 := addCast(e2,tp2); | |
| 1023 | 6 | eo := Util.applyOption1(eo, addCast, tp2); | |
| 1024 | 6 | then | |
| 1025 | DAE.RANGE(tp,e1,eo,e2); | ||
| 1026 | |||
| 1027 | // simplify cast in an if expression | ||
| 1028 | case (DAE.IFEXP(cond,e1,e2), _) | ||
| 1029 | algorithm | ||
| 1030 | 509 | e1_1 := DAE.CAST(tp,e1); | |
| 1031 | 509 | e2_1 := DAE.CAST(tp,e2); | |
| 1032 | 509 | then DAE.IFEXP(cond,e1_1,e2_1); | |
| 1033 | |||
| 1034 | // simplify cast of matrix expressions | ||
| 1035 | case (DAE.MATRIX(_,n,mexps), _) | ||
| 1036 | algorithm | ||
| 1037 | 155 | tp1 := Expression.unliftArray(tp); | |
| 1038 | 155 | tp2 := Expression.unliftArray(tp1); | |
| 1039 | 155 | mexps_1 := List.map1List(mexps, addCast, tp2); | |
| 1040 | 155 | then DAE.MATRIX(tp,n,mexps_1); | |
| 1041 | |||
| 1042 | // simplify record constructor from one to another | ||
| 1043 | case (DAE.CALL(p1,exps,DAE.CALL_ATTR(ty=DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p2)))), DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p3))) | ||
| 1044 | guard AbsynUtil.pathEqual(p1,p2) // It is a record constructor since it has the same path called as its output type | ||
| 1045 | 4 | then DAE.CALL(p3,exps,DAE.CALL_ATTR(tp,false,false,false,false,DAE.NO_INLINE(),DAE.NO_TAIL(),DAE.NoReturn.RETURNS)); | |
| 1046 | |||
| 1047 | case (DAE.RECORD(_,exps,fieldNames,_), DAE.T_COMPLEX(complexClassType=ClassInf.RECORD(p3))) | ||
| 1048 | 3897 | then DAE.RECORD(p3,exps,fieldNames,tp); | |
| 1049 | |||
| 1050 | // fill(e, ...) can be simplified | ||
| 1051 | case(DAE.CALL(path=Absyn.IDENT("fill"),expLst=e::exps), _) | ||
| 1052 | algorithm | ||
| 1053 | 10 | tp_1 := List.fold(exps,Expression.unliftArrayIgnoreFirst,tp); | |
| 1054 | 10 | e := DAE.CAST(tp_1,e); | |
| 1055 | 10 | e := Expression.makePureBuiltinCall("fill",e::exps,tp); | |
| 1056 | then e; | ||
| 1057 | |||
| 1058 | // cat(e, ...) can be simplified | ||
| 1059 | case(DAE.CALL(path=Absyn.IDENT("cat"),expLst=(e as DAE.ICONST(n))::exps), DAE.T_ARRAY(dims=dims)) | ||
| 1060 | guard | ||
| 1061 | Expression.dimensionUnknown(listGet(dims,n)) | ||
| 1062 | algorithm | ||
| 1063 | 1 | exps := List.map1(exps,addCast,tp); | |
| 1064 | 1 | then Expression.makePureBuiltinCall("cat",e::exps,tp); | |
| 1065 | |||
| 1066 | // expression already has a specified cast type. | ||
| 1067 | case(e, _) | ||
| 1068 | algorithm | ||
| 1069 | 355415 | t1 := Expression.arrayEltType(tp); | |
| 1070 | 355415 | t2 := Expression.arrayEltType(Expression.typeof(e)); | |
| 1071 |
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355415 | then if valueEq(t1, t2) then e else origExp; |
| 1072 | else origExp; | ||
| 1073 | end match; | ||
| 1074 | end simplifyCast; | ||
| 1075 | |||
| 1076 | protected function addCast | ||
| 1077 | "Adds a cast of a Type to an expression." | ||
| 1078 | input DAE.Exp inExp; | ||
| 1079 | input Type inType; | ||
| 1080 | output DAE.Exp outExp; | ||
| 1081 | annotation(__OpenModelica_EarlyInline = true); | ||
| 1082 | algorithm | ||
| 1083 | 4893 | outExp:=DAE.CAST(inType,inExp); | |
| 1084 | end addCast; | ||
| 1085 | |||
| 1086 | protected function reductionDefaultValue | ||
| 1087 | input String name; | ||
| 1088 | input DAE.Type ty; | ||
| 1089 | output Values.Value defaultValue; | ||
| 1090 | algorithm | ||
| 1091 | defaultValue := match (name, ty) | ||
| 1092 | case ("min", DAE.T_BOOL()) then Values.BOOL(true); | ||
| 1093 | ✗ | case ("min", DAE.T_INTEGER()) then Values.INTEGER(System.intMaxLit()); | |
| 1094 | ✗ | case ("min", DAE.T_REAL()) then Values.REAL(System.realMaxLit()); | |
| 1095 | case ("min", DAE.T_ENUMERATION()) | ||
| 1096 | ✗ | then Values.ENUM_LITERAL(AbsynUtil.suffixPath(ty.path, List.last(ty.names)), listLength(ty.names)); | |
| 1097 | |||
| 1098 | case ("max", DAE.T_BOOL()) then Values.BOOL(false); | ||
| 1099 | ✗ | case ("max", DAE.T_INTEGER()) then Values.INTEGER(intNeg(System.intMaxLit())); | |
| 1100 | ✗ | case ("max", DAE.T_REAL()) then Values.REAL(realNeg(System.realMaxLit())); | |
| 1101 | case ("max", DAE.T_ENUMERATION()) | ||
| 1102 | ✗ | then Values.ENUM_LITERAL(AbsynUtil.suffixPath(ty.path, List.last(ty.names)), 1); | |
| 1103 | |||
| 1104 | case ("product", DAE.T_INTEGER()) then Values.INTEGER(1); | ||
| 1105 | case ("product", DAE.T_REAL()) then Values.REAL(1.0); | ||
| 1106 | |||
| 1107 | case ("sum", DAE.T_INTEGER()) then Values.INTEGER(0); | ||
| 1108 | case ("sum", DAE.T_REAL()) then Values.REAL(0.0); | ||
| 1109 | end match; | ||
| 1110 | end reductionDefaultValue; | ||
| 1111 | |||
| 1112 | |||
| 1113 | protected function reductionExpression | ||
| 1114 | input String name; | ||
| 1115 | input DAE.Type ty; | ||
| 1116 | input String foldName; | ||
| 1117 | input String resultName; | ||
| 1118 | output DAE.Exp foldExp; | ||
| 1119 | protected | ||
| 1120 | DAE.Exp foldNameExp, resultNameExp; | ||
| 1121 | algorithm | ||
| 1122 | ✗ | foldNameExp := Expression.makeCrefExp(ComponentReferenceBasics.makeCrefIdent(foldName,ty,{}), ty); | |
| 1123 | ✗ | resultNameExp := Expression.makeCrefExp(ComponentReferenceBasics.makeCrefIdent(resultName,ty,{}), ty); | |
| 1124 | |||
| 1125 | foldExp := match name | ||
| 1126 | ✗ | case "min" then Expression.makeBuiltinCall("min",{foldNameExp, resultNameExp}, ty, false); | |
| 1127 | ✗ | case "max" then Expression.makeBuiltinCall("max",{foldNameExp, resultNameExp}, ty, false); | |
| 1128 | ✗ | case "product" then DAE.BINARY(foldNameExp, DAE.MUL(ty), resultNameExp); | |
| 1129 | ✗ | case "sum" then DAE.BINARY(foldNameExp, DAE.ADD(ty), resultNameExp); | |
| 1130 | end match; | ||
| 1131 | end reductionExpression; | ||
| 1132 | |||
| 1133 | |||
| 1134 | public function elabBuiltinFill2 | ||
| 1135 | "Helper that builds a filled array from a value list. Moved here from Static | ||
| 1136 | (and Static.elabBuiltinFill now calls this) so ExpressionSimplify does not | ||
| 1137 | depend on the instantiation cluster. The env/prefix that the old Static version | ||
| 1138 | carried were only used to decorate an internal-error message, so they are | ||
| 1139 | dropped here." | ||
| 1140 | input FCore.Cache inCache; | ||
| 1141 | input DAE.Exp inExp; | ||
| 1142 | input DAE.Type inType; | ||
| 1143 | input list<Values.Value> inValuesValueLst; | ||
| 1144 | input DAE.Const constVar; | ||
| 1145 | input list<Absyn.Exp> inDims; | ||
| 1146 | input SourceInfo inInfo; | ||
| 1147 | output FCore.Cache outCache; | ||
| 1148 | output DAE.Exp outExp; | ||
| 1149 | output DAE.Properties outProperties; | ||
| 1150 | algorithm | ||
| 1151 | (outCache,outExp,outProperties) := matchcontinue (inCache, inExp, inType, inValuesValueLst, constVar) | ||
| 1152 | local | ||
| 1153 | list<DAE.Exp> arraylist; | ||
| 1154 | DAE.Type at; | ||
| 1155 | Boolean is_scalar; | ||
| 1156 | DAE.Exp s,exp; | ||
| 1157 | DAE.Type sty,ty,sty2; | ||
| 1158 | Integer v; | ||
| 1159 | list<Values.Value> rest; | ||
| 1160 | FCore.Cache cache; | ||
| 1161 | DAE.Const c1; | ||
| 1162 | String str; | ||
| 1163 | |||
| 1164 | case (cache, s, sty, {Values.INTEGER(integer = v)}, c1) | ||
| 1165 | algorithm | ||
| 1166 |
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|
4600 | true := intLt(v, 0); // fill with 0 then! |
| 1167 | v := 0; | ||
| 1168 | ✗ | arraylist := List.fill(s, v); | |
| 1169 | ✗ | sty2 := DAE.T_ARRAY(sty, {DAE.DIM_INTEGER(v)}); | |
| 1170 | ✗ | at := Types.simplifyType(sty2); | |
| 1171 | ✗ | is_scalar := not Types.isArray(sty); | |
| 1172 | ✗ | then | |
| 1173 | (cache,DAE.ARRAY(at,is_scalar,arraylist),DAE.PROP(sty2,c1)); | ||
| 1174 | |||
| 1175 | case (cache, s, sty, {Values.INTEGER(integer = v)}, c1) | ||
| 1176 | algorithm | ||
| 1177 | 4600 | arraylist := List.fill(s, v); | |
| 1178 | 9200 | sty2 := DAE.T_ARRAY(sty, {DAE.DIM_INTEGER(v)}); | |
| 1179 | 4600 | at := Types.simplifyType(sty2); | |
| 1180 | 4600 | is_scalar := not Types.isArray(sty); | |
| 1181 |
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|
4614 | then |
| 1182 | (cache,DAE.ARRAY(at,is_scalar,arraylist),DAE.PROP(sty2,c1)); | ||
| 1183 | |||
| 1184 | case (cache, s, sty, (Values.INTEGER(integer = v) :: rest), c1) | ||
| 1185 | algorithm | ||
| 1186 |
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|
116 | (cache,exp,DAE.PROP(ty,_)) := elabBuiltinFill2(cache, s, sty, rest, c1, inDims, inInfo); |
| 1187 | 116 | arraylist := List.fill(exp, v); | |
| 1188 | 232 | sty2 := DAE.T_ARRAY(ty, {DAE.DIM_INTEGER(v)}); | |
| 1189 | 116 | at := Types.simplifyType(sty2); | |
| 1190 | 116 | then | |
| 1191 | (cache,DAE.ARRAY(at,false,arraylist),DAE.PROP(sty2,c1)); | ||
| 1192 | |||
| 1193 | else | ||
| 1194 | algorithm | ||
| 1195 | ✗ | str := "ExpressionSimplify.elabBuiltinFill2 failed for expression: fill(" + Dump.printExpLstStr(inDims) + ")"; | |
| 1196 | ✗ | Error.addSourceMessage(Error.INTERNAL_ERROR, {str}, inInfo); | |
| 1197 | ✗ | then | |
| 1198 | fail(); | ||
| 1199 | end matchcontinue; | ||
| 1200 | end elabBuiltinFill2; | ||
| 1201 | |||
| 1202 | protected function simplifyBuiltinCalls "simplifies some builtin calls (with no constant expressions)" | ||
| 1203 | input DAE.Exp exp; | ||
| 1204 | output DAE.Exp outExp; | ||
| 1205 | algorithm | ||
| 1206 | outExp := matchcontinue exp | ||
| 1207 | local | ||
| 1208 | list<list<DAE.Exp>> mexpl; | ||
| 1209 | list<DAE.Exp> es,expl; | ||
| 1210 | DAE.Exp e,len_exp,just_exp,e1,e2,e3,e4; | ||
| 1211 | DAE.Type tp,tp1,tp2; | ||
| 1212 | DAE.Operator op; | ||
| 1213 | list<DAE.Exp> v1, v2; | ||
| 1214 | Boolean scalar,sc; | ||
| 1215 | list<Values.Value> valueLst; | ||
| 1216 | Integer i,i1,i2,dim; | ||
| 1217 | Real r1; | ||
| 1218 | array<array<DAE.Exp>> marr; | ||
| 1219 | String name, s1, s2; | ||
| 1220 | list<Integer> dims; | ||
| 1221 | |||
| 1222 | // If the argument to min/max is an array, try to flatten it. | ||
| 1223 | case DAE.CALL(path=Absyn.IDENT(name),expLst={e as DAE.ARRAY()}, | ||
| 1224 | attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1225 | guard name=="max" or name=="min" | ||
| 1226 | algorithm | ||
| 1227 | 599 | expl := Expression.flattenArrayExpToList(e); | |
| 1228 | 599 | e1 := Expression.makeScalarArray(expl, tp); | |
| 1229 |
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|
599 | false := ExpressionBasics.expEqual(e, e1); |
| 1230 | 59 | then | |
| 1231 | Expression.makePureBuiltinCall(name, {e1}, tp); | ||
| 1232 | |||
| 1233 | // min/max function on arrays of only 1 element | ||
| 1234 | case DAE.CALL(path=Absyn.IDENT(name),expLst={DAE.ARRAY(array=expl as {e})}) | ||
| 1235 | guard name=="max" or name=="min" | ||
| 1236 | algorithm | ||
| 1237 |
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|
96 | if Expression.isArrayType(Expression.typeof(e)) then |
| 1238 | ✗ | exp.expLst := expl; | |
| 1239 | e := exp; | ||
| 1240 | end if; | ||
| 1241 | then e; | ||
| 1242 | case DAE.CALL(path=Absyn.IDENT("max"),expLst={DAE.ARRAY(array={e})}) then e; | ||
| 1243 | |||
| 1244 | case DAE.CALL(path=Absyn.IDENT("max"),expLst={DAE.ARRAY(array=es)},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1245 | algorithm | ||
| 1246 | 307 | i1 := listLength(es); | |
| 1247 | 307 | es := List.union(es,{}); | |
| 1248 | 307 | i2 := listLength(es); | |
| 1249 |
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|
307 | if i1 == i2 |
| 1250 | then | ||
| 1251 |
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|
265 | SOME(e) := List.fold(es, maxElement, NONE()); |
| 1252 | 7 | es := List.select(es, removeMinMaxFoldableValues); | |
| 1253 | es := e::es; | ||
| 1254 | 7 | i2 := listLength(es); | |
| 1255 |
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|
7 | true := i2 < i1; |
| 1256 | 1 | e := Expression.makeScalarArray(es,tp); | |
| 1257 | else | ||
| 1258 | 42 | e := Expression.makeScalarArray(es,tp); | |
| 1259 | end if; | ||
| 1260 | 43 | then | |
| 1261 | Expression.makePureBuiltinCall("max",{e},tp); | ||
| 1262 | |||
| 1263 | case DAE.CALL(path=Absyn.IDENT("min"),expLst={DAE.ARRAY(array=es)},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1264 | algorithm | ||
| 1265 | 137 | i1 := listLength(es); | |
| 1266 | 137 | es := List.union(es,{}); | |
| 1267 | 137 | i2 := listLength(es); | |
| 1268 |
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|
137 | if i1 == i2 |
| 1269 | then | ||
| 1270 |
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|
136 | SOME(e) := List.fold(es, minElement, NONE()); |
| 1271 | 3 | es := List.select(es, removeMinMaxFoldableValues); | |
| 1272 | es := e::es; | ||
| 1273 | 3 | i2 := listLength(es); | |
| 1274 |
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|
3 | true := i2 < i1; |
| 1275 | 1 | e := Expression.makeScalarArray(es,tp); | |
| 1276 | else | ||
| 1277 | 1 | e := Expression.makeScalarArray(es,tp); | |
| 1278 | end if; | ||
| 1279 | 2 | then | |
| 1280 | Expression.makePureBuiltinCall("min",{e},tp); | ||
| 1281 | |||
| 1282 | case DAE.CALL(path=Absyn.IDENT("min"),attr=DAE.CALL_ATTR(ty=tp),expLst={DAE.ARRAY(array={e1,e2})}) | ||
| 1283 | algorithm | ||
| 1284 | 10 | e := Expression.makePureBuiltinCall("min",{e1,e2},tp); | |
| 1285 | then e; | ||
| 1286 | case DAE.CALL(path=Absyn.IDENT("max"),attr=DAE.CALL_ATTR(ty=tp),expLst={DAE.ARRAY(array={e1,e2})}) | ||
| 1287 | algorithm | ||
| 1288 | 30 | e := Expression.makePureBuiltinCall("max",{e1,e2},tp); | |
| 1289 | then e; | ||
| 1290 | case DAE.CALL(path=Absyn.IDENT("min"),attr=DAE.CALL_ATTR(ty=DAE.T_BOOL()),expLst={e1,e2}) | ||
| 1291 | algorithm | ||
| 1292 | 10 | e := DAE.LBINARY(e1,DAE.AND(DAE.T_BOOL_DEFAULT),e2); | |
| 1293 | then e; | ||
| 1294 | case DAE.CALL(path=Absyn.IDENT("max"),attr=DAE.CALL_ATTR(ty=DAE.T_BOOL()),expLst={e1,e2}) | ||
| 1295 | algorithm | ||
| 1296 | 11 | e := DAE.LBINARY(e1,DAE.OR(DAE.T_BOOL_DEFAULT),e2); | |
| 1297 | then e; | ||
| 1298 | case DAE.CALL(path=Absyn.IDENT("min"),attr=DAE.CALL_ATTR(ty=DAE.T_BOOL()),expLst={DAE.ARRAY(array=expl)}) | ||
| 1299 | algorithm | ||
| 1300 | 5 | e := Expression.makeLBinary(expl,DAE.AND(DAE.T_BOOL_DEFAULT)); | |
| 1301 | then e; | ||
| 1302 | case DAE.CALL(path=Absyn.IDENT("max"),attr=DAE.CALL_ATTR(ty=DAE.T_BOOL()),expLst={DAE.ARRAY(array=expl)}) | ||
| 1303 | algorithm | ||
| 1304 | 5 | e := Expression.makeLBinary(expl,DAE.OR(DAE.T_BOOL_DEFAULT)); | |
| 1305 | then e; | ||
| 1306 | |||
| 1307 | case DAE.CALL(path=Absyn.IDENT(name), expLst = {DAE.ARRAY(array = expl as _ :: _ :: _)}, | ||
| 1308 | attr = DAE.CALL_ATTR(ty = tp)) | ||
| 1309 | algorithm | ||
| 1310 |
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|
879 | true := Config.scalarizeMinMax(); |
| 1311 |
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|
2 | true := stringEq(name, "max") or stringEq(name, "min"); |
| 1312 |
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|
2 | e1 :: e2 :: expl := listReverse(expl); |
| 1313 | 2 | e1 := Expression.makePureBuiltinCall(name, {e2, e1}, tp); | |
| 1314 | 2 | e1 := List.fold2(expl, makeNestedReduction, name, tp, e1); | |
| 1315 | then | ||
| 1316 | e1; | ||
| 1317 | |||
| 1318 | // cross | ||
| 1319 | case e as DAE.CALL(path = Absyn.IDENT("cross"), expLst = expl) | ||
| 1320 | algorithm | ||
| 1321 |
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|
8127 | {DAE.ARRAY(array = v1),DAE.ARRAY(array = v2)} := expl; |
| 1322 | 2587 | expl := simplifyCross(v1, v2); | |
| 1323 | 2587 | tp := Expression.typeof(e); | |
| 1324 | // Since there is a bug somewhere in simplify that gives wrong types for arrays we take the type from cross. | ||
| 1325 | 2587 | scalar := not Expression.isArrayType(Expression.unliftArray(tp)); | |
| 1326 |
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|
2587 | then |
| 1327 | DAE.ARRAY(tp, scalar,expl); | ||
| 1328 | |||
| 1329 | case e as DAE.CALL(path = Absyn.IDENT("skew"), expLst = {DAE.ARRAY(array = v1)}) | ||
| 1330 | algorithm | ||
| 1331 | 36 | mexpl := simplifySkew(v1); | |
| 1332 | 36 | tp := Expression.typeof(e); | |
| 1333 | 36 | then DAE.MATRIX(tp, 3, mexpl); | |
| 1334 | |||
| 1335 | // Simplify built-in function fill. MathCore depends on this being done here, do not remove! | ||
| 1336 | case DAE.CALL(path = Absyn.IDENT("fill"), expLst = e::expl) | ||
| 1337 | algorithm | ||
| 1338 | 153 | valueLst := List.map(expl, ValuesUtil.expValue); | |
| 1339 | 50 | (_,outExp,_) := elabBuiltinFill2(FCore.noCache(), e, Expression.typeof(e), valueLst, DAE.C_CONST(), {}, Absyn.dummyInfo); | |
| 1340 | 50 | then | |
| 1341 | outExp; | ||
| 1342 | |||
| 1343 | case DAE.CALL(path = Absyn.IDENT("String"), expLst = {e,len_exp,just_exp}) | ||
| 1344 | 3788 | then simplifyBuiltinStringFormat(e,len_exp,just_exp); | |
| 1345 | |||
| 1346 | case DAE.CALL(path = Absyn.IDENT("stringAppendList"), expLst = {DAE.LIST(expl)}) | ||
| 1347 | 310 | then simplifyStringAppendList(expl,{},false); | |
| 1348 | |||
| 1349 | // sqrt(e ^ r) => e ^ (0.5 * r) | ||
| 1350 | case DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={DAE.BINARY(e1,DAE.POW(ty = DAE.T_REAL()),e2)}) | ||
| 1351 | algorithm | ||
| 1352 | 227 | e := DAE.BINARY(e1,DAE.POW(DAE.T_REAL_DEFAULT),DAE.BINARY(DAE.RCONST(0.5),DAE.MUL(DAE.T_REAL_DEFAULT),e2)); | |
| 1353 | 227 | then Expression.makePureBuiltinCall("abs",{e},DAE.T_REAL_DEFAULT); | |
| 1354 | |||
| 1355 | // sqrt(sqrt(e)) => e ^ (0.25) | ||
| 1356 | case DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e1})}) | ||
| 1357 | 8 | then DAE.BINARY(e1,DAE.POW(DAE.T_REAL_DEFAULT),DAE.RCONST(0.25)); | |
| 1358 | |||
| 1359 | // sqrt(c*e) => c1*sqrt(e) | ||
| 1360 | case DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={DAE.BINARY(e1 as DAE.RCONST(r1),DAE.MUL(tp),e2)}) | ||
| 1361 | algorithm | ||
| 1362 |
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|
139 | true := r1 >= 0.0; |
| 1363 | 139 | e := Expression.makePureBuiltinCall("sqrt",{e1},DAE.T_REAL_DEFAULT); | |
| 1364 | 139 | e3 := Expression.makePureBuiltinCall("sqrt",{e2},DAE.T_REAL_DEFAULT); | |
| 1365 | 139 | then DAE.BINARY(e,DAE.MUL(tp),e3); | |
| 1366 | |||
| 1367 | // exp(-(...*log(x)*...)) | ||
| 1368 | case DAE.CALL(path=Absyn.IDENT("exp"),expLst={DAE.UNARY(DAE.UMINUS(),e1)}) | ||
| 1369 | algorithm | ||
| 1370 | 1978 | expl := Expression.expandFactors(e1); | |
| 1371 |
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1978 | ({e2},es) := List.split1OnTrue(expl, Expression.isFunCall, "log"); |
| 1372 | ✗ | DAE.CALL(expLst={e}):= e2; | |
| 1373 | ✗ | e3 := Expression.makeProductLst(es); | |
| 1374 | ✗ | then Expression.expPow(e, Expression.negate(e3)); | |
| 1375 | |||
| 1376 | // exp(...*log(x)*...) | ||
| 1377 | case DAE.CALL(path=Absyn.IDENT("exp"),expLst={e1}) | ||
| 1378 | algorithm | ||
| 1379 | 27796 | expl := Expression.expandFactors(e1); | |
| 1380 |
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27796 | ({e2},es) := List.split1OnTrue(expl, Expression.isFunCall, "log"); |
| 1381 |
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5 | DAE.CALL(expLst={e}):= e2; |
| 1382 | 5 | e3 := Expression.makeProductLst(es); | |
| 1383 | 5 | then Expression.expPow(e,e3); | |
| 1384 | |||
| 1385 | // exp(e)^r = exp(e*r) | ||
| 1386 | case DAE.BINARY(DAE.CALL(path=Absyn.IDENT("exp"),expLst={e}),DAE.POW(ty = DAE.T_REAL()),e2) | ||
| 1387 | algorithm | ||
| 1388 | ✗ | e3 := Expression.expMul(e,e2); | |
| 1389 | ✗ | then Expression.makePureBuiltinCall("exp",{e3},DAE.T_REAL_DEFAULT); | |
| 1390 | |||
| 1391 | // log(x^n) = n*log(x) | ||
| 1392 | case DAE.CALL(path=Absyn.IDENT("log"),expLst={DAE.BINARY(e1,DAE.POW(ty = DAE.T_REAL()), DAE.RCONST(r1))}) | ||
| 1393 | algorithm | ||
| 1394 |
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36 | 1.0 := realMod(r1,2.0); |
| 1395 | ✗ | e3 := Expression.makePureBuiltinCall("log",{e1},DAE.T_REAL_DEFAULT); | |
| 1396 | ✗ | then Expression.expMul(DAE.RCONST(r1), e3); | |
| 1397 | // log(1/x) = -log(x) | ||
| 1398 | case DAE.CALL(path=Absyn.IDENT("log"),expLst={DAE.BINARY(DAE.RCONST(1.0),DAE.DIV(ty = DAE.T_REAL()), e2)}) | ||
| 1399 | algorithm | ||
| 1400 | 1 | e3 := Expression.makePureBuiltinCall("log",{e2},DAE.T_REAL_DEFAULT); | |
| 1401 | 1 | then DAE.UNARY(DAE.UMINUS(DAE.T_REAL_DEFAULT),e3); | |
| 1402 | // log(sqrt(x)) = 0.5*log(x) | ||
| 1403 | case DAE.CALL(path=Absyn.IDENT("log"),expLst={DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e1})}) | ||
| 1404 | algorithm | ||
| 1405 | 2 | e3 := Expression.makePureBuiltinCall("log",{e1},DAE.T_REAL_DEFAULT); | |
| 1406 | 2 | then DAE.BINARY(DAE.RCONST(0.5),DAE.MUL(DAE.T_REAL_DEFAULT),e3); | |
| 1407 | |||
| 1408 | // smooth of constant expression | ||
| 1409 | case DAE.CALL(path=Absyn.IDENT("smooth"),expLst={_,e1}) | ||
| 1410 | guard Expression.isConst(e1) | ||
| 1411 | then e1; | ||
| 1412 | |||
| 1413 | // df_der(const) --> 0 | ||
| 1414 | case DAE.CALL(path=Absyn.IDENT("$_DF$DER"),expLst={e1}) | ||
| 1415 | guard Expression.isConst(e1) | ||
| 1416 | ✗ | then Expression.makeConstZeroE(e1); | |
| 1417 | |||
| 1418 | // We only match delay with 3 arguments in most places... | ||
| 1419 | case e as DAE.CALL(path=Absyn.IDENT("delay"),expLst={e1,e2}) | ||
| 1420 | algorithm | ||
| 1421 | 3 | e.expLst := {e1,e2,e2}; | |
| 1422 | then e; | ||
| 1423 | |||
| 1424 | // delay of constant expression | ||
| 1425 | case DAE.CALL(path=Absyn.IDENT("delay"),expLst={e1,_,_}) | ||
| 1426 | guard Expression.isConst(e1) | ||
| 1427 | then e1; | ||
| 1428 | |||
| 1429 | // delay of constant subexpression | ||
| 1430 | case DAE.CALL(path=Absyn.IDENT("delay"),expLst={DAE.BINARY(e1,op,e2),e3,e4},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1431 | algorithm | ||
| 1432 |
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|
2 | true := Expression.isConst(e1); |
| 1433 | 2 | e := Expression.makeImpureBuiltinCall("delay",{e2,e3,e4},tp); | |
| 1434 | 2 | then DAE.BINARY(e1,op,e); | |
| 1435 | |||
| 1436 | // delay of constant subexpression | ||
| 1437 | case DAE.CALL(path=Absyn.IDENT("delay"),expLst={DAE.BINARY(e1,op,e2),e3,e4},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1438 | algorithm | ||
| 1439 | ✗ | true := Expression.isConst(e2); | |
| 1440 | ✗ | e := Expression.makeImpureBuiltinCall("delay",{e1,e3,e4},tp); | |
| 1441 | ✗ | then DAE.BINARY(e,op,e2); | |
| 1442 | |||
| 1443 | // delay(-x) = -delay(x) | ||
| 1444 | case DAE.CALL(path=Absyn.IDENT("delay"),expLst={DAE.UNARY(op,e),e3,e4},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1445 | algorithm | ||
| 1446 | ✗ | e := Expression.makeImpureBuiltinCall("delay",{e,e3,e4},tp); | |
| 1447 | ✗ | then DAE.UNARY(op,e); | |
| 1448 | |||
| 1449 | // The sum of an empty array is simply the sum of its elements | ||
| 1450 | case DAE.CALL(path=Absyn.IDENT("sum"),expLst={DAE.ARRAY(array={})}, attr=DAE.CALL_ATTR(ty=tp1)) | ||
| 1451 | 16 | then Expression.makeConstZero(tp1); | |
| 1452 | |||
| 1453 | // To calculate sums, first try matrix concatenation | ||
| 1454 | case DAE.CALL(path=Absyn.IDENT("sum"),expLst={DAE.MATRIX(ty=tp1,matrix=mexpl)},attr=DAE.CALL_ATTR(ty=tp2)) | ||
| 1455 | algorithm | ||
| 1456 | ✗ | es := List.flatten(mexpl); | |
| 1457 | ✗ | tp1 := Expression.unliftArray(Expression.unliftArray(tp1)); | |
| 1458 | ✗ | sc := not Expression.isArrayType(tp1); | |
| 1459 | ✗ | tp1 := if sc then Expression.unliftArray(tp1) else tp1; | |
| 1460 | ✗ | tp1 := if sc then Expression.liftArrayLeft(tp1,DAE.DIM_UNKNOWN()) else tp1; | |
| 1461 | ✗ | dim := listLength(es); | |
| 1462 | ✗ | tp1 := Expression.liftArrayLeft(tp1,DAE.DIM_INTEGER(dim)); | |
| 1463 | ✗ | e := DAE.ARRAY(tp1,sc,es); | |
| 1464 | ✗ | e := Expression.makePureBuiltinCall("sum",{e},tp2); | |
| 1465 | // print("Matrix sum: " + boolString(sc) + TypesDump.unparseType(tp1) + " " + ExpressionBasics.printExpStr(e) + "\n"); | ||
| 1466 | then e; | ||
| 1467 | // Then try array concatenation | ||
| 1468 | case DAE.CALL(path=Absyn.IDENT("sum"),expLst={DAE.ARRAY(array=es,ty=tp1,scalar=false)},attr=DAE.CALL_ATTR(ty=tp2)) | ||
| 1469 | algorithm | ||
| 1470 | ✗ | es := simplifyCat(1,es); | |
| 1471 | ✗ | tp1 := Expression.unliftArray(tp1); | |
| 1472 | ✗ | sc := not Expression.isArrayType(tp1); | |
| 1473 | ✗ | tp1 := if sc then Expression.unliftArray(tp1) else tp1; | |
| 1474 | ✗ | tp1 := if sc then Expression.liftArrayLeft(tp1,DAE.DIM_UNKNOWN()) else tp1; | |
| 1475 | ✗ | dim := listLength(es); | |
| 1476 | ✗ | tp1 := Expression.liftArrayLeft(tp1,DAE.DIM_INTEGER(dim)); | |
| 1477 | ✗ | e := DAE.ARRAY(tp1,sc,es); | |
| 1478 | ✗ | e := Expression.makePureBuiltinCall("sum",{e},tp2); | |
| 1479 | // print("Array sum: " + boolString(sc) + TypesDump.unparseType(tp1) + " " + ExpressionBasics.printExpStr(e) + "\n"); | ||
| 1480 | then e; | ||
| 1481 | // Try to reduce the number of dimensions | ||
| 1482 | case DAE.CALL(path=Absyn.IDENT("sum"),expLst={DAE.ARRAY(array={e},scalar=false)},attr=DAE.CALL_ATTR(ty=tp2)) | ||
| 1483 | algorithm | ||
| 1484 | ✗ | e := Expression.makePureBuiltinCall("sum",{e},tp2); | |
| 1485 | then e; | ||
| 1486 | // The sum of a single array is simply the sum of its elements | ||
| 1487 | case DAE.CALL(path=Absyn.IDENT("sum"),expLst={DAE.ARRAY(array=es,scalar=true)}) | ||
| 1488 | algorithm | ||
| 1489 | 2165 | e := Expression.makeSum(es); | |
| 1490 | then e; | ||
| 1491 | |||
| 1492 | case DAE.CALL(path=Absyn.IDENT("cat"),expLst=_::{e1}) then e1; | ||
| 1493 | |||
| 1494 | case DAE.CALL(path=Absyn.IDENT("cat"),expLst=DAE.ICONST(i)::es,attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1495 | algorithm | ||
| 1496 | 2007 | es := simplifyCat(i,es); | |
| 1497 | 3366 | e := Expression.makePureBuiltinCall("cat",DAE.ICONST(i)::es,tp); | |
| 1498 | then e; | ||
| 1499 | |||
| 1500 | case DAE.CALL(path=Absyn.IDENT("cat"),expLst=DAE.ICONST(i)::es,attr=DAE.CALL_ATTR()) | ||
| 1501 | algorithm | ||
| 1502 | 324 | (es,dims) := ExpressionBasics.evalCat(i, es, getArrayContents=Expression.getArrayOrMatrixContents, toString=ExpressionBasics.printExpStr); | |
| 1503 |
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|
3 | e := Expression.listToArray(es, list(DAE.DIM_INTEGER(d) for d in dims)); |
| 1504 | then e; | ||
| 1505 | |||
| 1506 | // promote n-dim to n-dim | ||
| 1507 | case DAE.CALL(path=Absyn.IDENT("promote"),expLst=e1::DAE.ICONST(i)::{}) | ||
| 1508 | guard Types.numberOfDimensions(Expression.typeof(e1))==i | ||
| 1509 | then e1; | ||
| 1510 | |||
| 1511 | // promote 1-dim to 2-dim | ||
| 1512 | case DAE.CALL(path=Absyn.IDENT("promote"),expLst=(DAE.ARRAY(tp1 as DAE.T_ARRAY(dims={_}),sc,es))::DAE.ICONST(2)::{}) | ||
| 1513 | algorithm | ||
| 1514 | 359 | tp := Types.liftArray(Types.unliftArray(tp1), DAE.DIM_INTEGER(1)); | |
| 1515 |
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359 | es := List.map2(List.map(es,List.create), Expression.makeArray, tp, sc); |
| 1516 | 359 | i := listLength(es); | |
| 1517 | 359 | tp := Expression.liftArrayLeft(tp, DAE.DIM_INTEGER(i)); | |
| 1518 | 359 | then | |
| 1519 | DAE.ARRAY(tp,false,es); | ||
| 1520 | |||
| 1521 | // scalar to n-dim | ||
| 1522 | case DAE.CALL(path=Absyn.IDENT("promote"),expLst=e1::DAE.ICONST(i)::{}) | ||
| 1523 | guard not Types.isArray(Expression.typeof(e1)) | ||
| 1524 | algorithm | ||
| 1525 | ✗ | tp := Expression.typeof(e1); | |
| 1526 | ✗ | for j in 1:i loop | |
| 1527 | ✗ | tp1 := Types.liftArray(tp, DAE.DIM_INTEGER(1)); | |
| 1528 | ✗ | e1 := Expression.makeArray({e1}, tp1, not Types.isArray(tp)); | |
| 1529 | tp := tp1; | ||
| 1530 | end for; | ||
| 1531 | then e1; | ||
| 1532 | |||
| 1533 | case DAE.CALL(path=Absyn.IDENT("transpose"),expLst=e::{},attr=DAE.CALL_ATTR()) | ||
| 1534 | algorithm | ||
| 1535 |
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|
384 | (e, true) := Expression.transposeArray(e); |
| 1536 | then | ||
| 1537 | e; | ||
| 1538 | |||
| 1539 | case DAE.CALL(path=Absyn.IDENT("symmetric"),expLst=e::{},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1540 | algorithm | ||
| 1541 | 1 | mexpl := Expression.get2dArrayOrMatrixContent(e); | |
| 1542 | e := match mexpl | ||
| 1543 | case {{}} then e; | ||
| 1544 | case {{_}} then e; | ||
| 1545 | case _ algorithm | ||
| 1546 | 1 | marr := listArray(List.map(mexpl,listArray)); | |
| 1547 |
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1 | true := arrayLength(marr) == arrayLength(arrayGet(marr,1)); |
| 1548 |
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1 | true := arrayLength(marr) > 1; |
| 1549 | 1 | simplifySymmetric(marr, arrayLength(marr)-1, arrayLength(marr)); | |
| 1550 | 1 | mexpl := List.mapArray(marr, arrayList); | |
| 1551 | 1 | tp1 := Expression.unliftArray(tp); | |
| 1552 |
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2 | es := List.map2(mexpl, Expression.makeArray, tp1, not Types.isArray(tp1)); |
| 1553 | 1 | e := Expression.makeArray(es, tp, false); | |
| 1554 | then e; | ||
| 1555 | end match; | ||
| 1556 | then e; | ||
| 1557 | |||
| 1558 | case DAE.CALL(path=Absyn.IDENT("scalar"),expLst=e::{},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1559 | algorithm | ||
| 1560 | 1 | e := simplifyScalar(e,tp); | |
| 1561 | then e; | ||
| 1562 | |||
| 1563 | case DAE.CALL(path=Absyn.IDENT("vector"),expLst=es as (e::_),attr=DAE.CALL_ATTR(ty=DAE.T_ARRAY(tp,_))) | ||
| 1564 | algorithm | ||
| 1565 |
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120 | false := Types.isArray(Expression.typeof(e)); |
| 1566 | ✗ | i := listLength(es); | |
| 1567 | ✗ | tp := DAE.T_ARRAY(tp,{DAE.DIM_INTEGER(i)}); | |
| 1568 | ✗ | then DAE.ARRAY(tp,true,es); | |
| 1569 | |||
| 1570 | case DAE.CALL(path=Absyn.IDENT("vector"),expLst=(e as DAE.ARRAY(scalar=true))::{},attr=DAE.CALL_ATTR()) | ||
| 1571 | then e; | ||
| 1572 | |||
| 1573 | case DAE.CALL(path=Absyn.IDENT("vector"),expLst=DAE.MATRIX(matrix=mexpl)::{},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1574 | algorithm | ||
| 1575 | ✗ | es := List.flatten(mexpl); | |
| 1576 | ✗ | es := List.map1(es, Expression.makeVectorCall, tp); | |
| 1577 | ✗ | e := Expression.makePureBuiltinCall("cat", DAE.ICONST(1)::es, tp); | |
| 1578 | then e; | ||
| 1579 | |||
| 1580 | case DAE.CALL(path=Absyn.IDENT("vector"),expLst=DAE.ARRAY(array=es)::{},attr=DAE.CALL_ATTR(ty=tp)) | ||
| 1581 | algorithm | ||
| 1582 | ✗ | es := List.map1(es, Expression.makeVectorCall, tp); | |
| 1583 | ✗ | e := Expression.makePureBuiltinCall("cat", DAE.ICONST(1)::es, tp); | |
| 1584 | then e; | ||
| 1585 | |||
| 1586 | /* Current design uses a special DAE.Expression */ | ||
| 1587 | |||
| 1588 | case DAE.CALL(path=Absyn.IDENT("inferredClock"),expLst={}) | ||
| 1589 | then DAE.CLKCONST(DAE.INFERRED_CLOCK()); | ||
| 1590 | |||
| 1591 | case DAE.CALL(path=Absyn.IDENT("realClock"),expLst={e1}) | ||
| 1592 | ✗ | then DAE.CLKCONST(DAE.REAL_CLOCK(e1)); | |
| 1593 | |||
| 1594 | case DAE.CALL(path=Absyn.IDENT("booleanClock"),expLst={e1,e2}) | ||
| 1595 | ✗ | then DAE.CLKCONST(DAE.EVENT_CLOCK(e1,e2)); | |
| 1596 | |||
| 1597 | case DAE.CALL(path=Absyn.IDENT("rationalClock"),expLst={e1,e2}) | ||
| 1598 | ✗ | then DAE.CLKCONST(DAE.RATIONAL_CLOCK(e1, e2)); | |
| 1599 | |||
| 1600 | case DAE.CALL(path=Absyn.IDENT("solverClock"),expLst={e1,e2}) | ||
| 1601 | ✗ | then DAE.CLKCONST(DAE.SOLVER_CLOCK(e1, e2)); | |
| 1602 | |||
| 1603 | case DAE.CALL(path=Absyn.IDENT("OpenModelica_uriToFilename"),expLst={DAE.SCONST(s1)}) | ||
| 1604 | algorithm | ||
| 1605 | ✗ | s2 := OpenModelica.Scripting.uriToFilename(s1); | |
| 1606 | ✗ | if Flags.getConfigBool(Flags.BUILDING_FMU) then | |
| 1607 | ✗ | e := Expression.makeImpureBuiltinCall("OpenModelica_fmuLoadResource",{DAE.SCONST(s2)},DAE.T_STRING_DEFAULT); | |
| 1608 | else | ||
| 1609 | ✗ | e := DAE.SCONST(s2); | |
| 1610 | end if; | ||
| 1611 | then e; | ||
| 1612 | |||
| 1613 | end matchcontinue; | ||
| 1614 | end simplifyBuiltinCalls; | ||
| 1615 | |||
| 1616 | protected function simplifyScalar "Handle the scalar() operator" | ||
| 1617 | input DAE.Exp inExp; | ||
| 1618 | input DAE.Type tp; | ||
| 1619 | output DAE.Exp exp; | ||
| 1620 | algorithm | ||
| 1621 | exp := match inExp | ||
| 1622 | case DAE.ARRAY(array={exp}) | ||
| 1623 | ✗ | then Expression.makePureBuiltinCall("scalar", {exp}, tp); | |
| 1624 | case DAE.MATRIX(matrix={{exp}}) | ||
| 1625 | ✗ | then Expression.makePureBuiltinCall("scalar", {exp}, tp); | |
| 1626 | case DAE.SIZE(exp=exp,sz=NONE()) | ||
| 1627 | algorithm | ||
| 1628 |
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1 | (_,{_}) := TypesDump.flattenArrayType(Expression.typeof(inExp)); |
| 1629 | 1 | then DAE.SIZE(exp,SOME(DAE.ICONST(1))); | |
| 1630 | else | ||
| 1631 | algorithm | ||
| 1632 | ✗ | (_,{}) := TypesDump.flattenArrayType(Expression.typeof(inExp)); | |
| 1633 | then inExp; | ||
| 1634 | end match; | ||
| 1635 | end simplifyScalar; | ||
| 1636 | |||
| 1637 | protected function makeNestedReduction | ||
| 1638 | input DAE.Exp inExp; | ||
| 1639 | input String inName; | ||
| 1640 | input DAE.Type inType; | ||
| 1641 | input DAE.Exp inCall; | ||
| 1642 | output DAE.Exp outCall; | ||
| 1643 | algorithm | ||
| 1644 | 6 | outCall := Expression.makePureBuiltinCall(inName, {inExp, inCall}, inType); | |
| 1645 | end makeNestedReduction; | ||
| 1646 | |||
| 1647 | protected function simplifySymmetric | ||
| 1648 | input array<array<DAE.Exp>> marr; | ||
| 1649 | input Integer i1; | ||
| 1650 | input Integer i2; | ||
| 1651 | algorithm | ||
| 1652 | () := match (i1, i2) | ||
| 1653 | local | ||
| 1654 | array<DAE.Exp> v1,v2; | ||
| 1655 | DAE.Exp exp; | ||
| 1656 | case (0, 1) then (); | ||
| 1657 | else | ||
| 1658 | algorithm | ||
| 1659 | 3 | v1 := arrayGet(marr, i1); | |
| 1660 | 3 | v2 := arrayGet(marr, i2); | |
| 1661 | 3 | exp := arrayGet(v1,i2); | |
| 1662 | 3 | arrayUpdate(v2, i1, exp); | |
| 1663 |
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3 | simplifySymmetric(marr, if i1==1 then (i2-2) else (i1-1), if i1==1 then (i2-1) else i2); |
| 1664 | then (); | ||
| 1665 | end match; | ||
| 1666 | end simplifySymmetric; | ||
| 1667 | |||
| 1668 | protected function simplifyCat | ||
| 1669 | input Integer inDim; | ||
| 1670 | input list<DAE.Exp> inExpList; | ||
| 1671 | output list<DAE.Exp> outExpList; | ||
| 1672 | algorithm | ||
| 1673 | outExpList := match inDim | ||
| 1674 | local | ||
| 1675 | list<DAE.Exp> expl; | ||
| 1676 | |||
| 1677 | case 1 | ||
| 1678 | algorithm | ||
| 1679 | 1997 | expl := List.map(inExpList, simplifyCatArg); | |
| 1680 | 1997 | then | |
| 1681 | simplifyCat2(inDim, expl, {}, false); | ||
| 1682 | |||
| 1683 | 10 | else simplifyCat2(inDim, inExpList, {}, false); | |
| 1684 | |||
| 1685 | end match; | ||
| 1686 | end simplifyCat; | ||
| 1687 | |||
| 1688 | function simplifyCatArg | ||
| 1689 | input DAE.Exp arg; | ||
| 1690 | output DAE.Exp outArg; | ||
| 1691 | algorithm | ||
| 1692 | outArg := match arg | ||
| 1693 | local | ||
| 1694 | DAE.Dimension dim; | ||
| 1695 | |||
| 1696 | 2 | case DAE.MATRIX() then Expression.matrixToArray(arg); | |
| 1697 | case DAE.CREF(ty = DAE.T_ARRAY(dims = {dim})) guard Expression.dimensionKnown(dim) | ||
| 1698 | 1453 | then DAE.ARRAY(arg.ty, true, Expression.expandExpression(arg, false)); | |
| 1699 | else arg; | ||
| 1700 | end match; | ||
| 1701 | end simplifyCatArg; | ||
| 1702 | |||
| 1703 | protected function simplifyCat2 | ||
| 1704 | input Integer dim; | ||
| 1705 | input list<DAE.Exp> ies; | ||
| 1706 | input list<DAE.Exp> acc; | ||
| 1707 | input Boolean changed; | ||
| 1708 | output list<DAE.Exp> oes; | ||
| 1709 | algorithm | ||
| 1710 | oes := matchcontinue (dim, ies, changed) | ||
| 1711 | local | ||
| 1712 | list<DAE.Exp> es1,es2,esn,es; | ||
| 1713 | DAE.Exp e; | ||
| 1714 | DAE.Dimension ndim,dim1,dim2,dim11; | ||
| 1715 | DAE.Dimensions dims; | ||
| 1716 | DAE.Type etp; | ||
| 1717 | Integer i; | ||
| 1718 | list<list<DAE.Exp>> ms1,ms2,mss; | ||
| 1719 | Boolean sc; | ||
| 1720 | |||
| 1721 | 1683 | case (_, {}, true) then listReverse(acc); | |
| 1722 | |||
| 1723 | case (1, DAE.ARRAY(array=es1,scalar=sc,ty=DAE.T_ARRAY(dims=dim1::dims,ty=etp)) :: | ||
| 1724 | DAE.ARRAY(array=es2,ty=DAE.T_ARRAY(dims=dim2::_))::es, _) | ||
| 1725 | algorithm | ||
| 1726 | 1699 | esn := listAppend(es1,es2); | |
| 1727 | 1699 | ndim := Expression.addDimensions(dim1,dim2); | |
| 1728 | 1699 | etp := DAE.T_ARRAY(etp,ndim::dims); | |
| 1729 |
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1700 | e := DAE.ARRAY(etp,sc,esn); |
| 1730 | 1699 | then simplifyCat2(dim,e::es,acc,true); | |
| 1731 | |||
| 1732 | case (2, DAE.MATRIX(matrix=ms1,integer=i,ty=DAE.T_ARRAY(dims=dim11::dim1::dims,ty=etp))::DAE.MATRIX(matrix=ms2,ty=DAE.T_ARRAY(dims=_::dim2::_))::es, _) | ||
| 1733 | algorithm | ||
| 1734 | 1 | mss := List.threadMap(ms1,ms2,listAppend); | |
| 1735 | 1 | ndim := Expression.addDimensions(dim1,dim2); | |
| 1736 | 1 | etp := DAE.T_ARRAY(etp,dim11::ndim::dims); | |
| 1737 | 1 | e := DAE.MATRIX(etp,i,mss); | |
| 1738 | 1 | then simplifyCat2(dim,e::es,acc,true); | |
| 1739 | |||
| 1740 | 2332 | case (_, e::es, _) then simplifyCat2(dim,es,e::acc,changed); | |
| 1741 | end matchcontinue; | ||
| 1742 | end simplifyCat2; | ||
| 1743 | |||
| 1744 | protected function simplifyBuiltinStringFormat | ||
| 1745 | input DAE.Exp exp; | ||
| 1746 | input DAE.Exp len_exp; | ||
| 1747 | input DAE.Exp just_exp; | ||
| 1748 | output DAE.Exp outExp; | ||
| 1749 | algorithm | ||
| 1750 | outExp := match (exp,len_exp,just_exp) | ||
| 1751 | local | ||
| 1752 | Integer i,len; | ||
| 1753 | Real r; | ||
| 1754 | Boolean b,just; | ||
| 1755 | String str; | ||
| 1756 | Absyn.Path name; | ||
| 1757 | case (DAE.ICONST(i),DAE.ICONST(len),DAE.BCONST(just)) | ||
| 1758 | algorithm | ||
| 1759 | 407 | str := intString(i); | |
| 1760 | 407 | str := cevalBuiltinStringFormat(str,stringLength(str),len,just); | |
| 1761 | 407 | then DAE.SCONST(str); | |
| 1762 | case (DAE.RCONST(r),DAE.ICONST(len),DAE.BCONST(just)) | ||
| 1763 | algorithm | ||
| 1764 | ✗ | str := realString(r); | |
| 1765 | ✗ | str := cevalBuiltinStringFormat(str,stringLength(str),len,just); | |
| 1766 | ✗ | then DAE.SCONST(str); | |
| 1767 | case (DAE.BCONST(b),DAE.ICONST(len),DAE.BCONST(just)) | ||
| 1768 | algorithm | ||
| 1769 |
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3 | str := boolString(b); |
| 1770 | 3 | str := cevalBuiltinStringFormat(str,stringLength(str),len,just); | |
| 1771 | 3 | then DAE.SCONST(str); | |
| 1772 | case (DAE.ENUM_LITERAL(name=name),DAE.ICONST(len),DAE.BCONST(just)) | ||
| 1773 | algorithm | ||
| 1774 | ✗ | str := AbsynUtil.pathLastIdent(name); | |
| 1775 | ✗ | str := cevalBuiltinStringFormat(str,stringLength(str),len,just); | |
| 1776 | ✗ | then DAE.SCONST(str); | |
| 1777 | end match; | ||
| 1778 | end simplifyBuiltinStringFormat; | ||
| 1779 | |||
| 1780 | public function cevalBuiltinStringFormat | ||
| 1781 | "Helper function to cevalBuiltinStringFormat, does the actual formatting." | ||
| 1782 | input String inString; | ||
| 1783 | input Integer stringLength; | ||
| 1784 | input Integer minLength; | ||
| 1785 | input Boolean leftJustified; | ||
| 1786 | output String outString; | ||
| 1787 | algorithm | ||
| 1788 |
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983 | outString := if stringLength >= minLength then inString |
| 1789 | else | ||
| 1790 | if leftJustified then | ||
| 1791 | inString + stringAppendList(List.fill(" ", minLength - stringLength)) | ||
| 1792 | else | ||
| 1793 | stringAppendList(List.fill(" ", minLength - stringLength)) + inString; | ||
| 1794 | end cevalBuiltinStringFormat; | ||
| 1795 | |||
| 1796 | protected function simplifyStringAppendList | ||
| 1797 | " | ||
| 1798 | stringAppendList({abc,def,String(time),ghi,jkl}) => stringAppendList({abcdef,String(time),ghijkl}) | ||
| 1799 | stringAppendList({abc,def,ghi,jkl}) => abcdefghijkl | ||
| 1800 | stringAppendList({}) => abcdefghijkl | ||
| 1801 | " | ||
| 1802 | input list<DAE.Exp> iexpl; | ||
| 1803 | input list<DAE.Exp> iacc; | ||
| 1804 | input Boolean ichange; | ||
| 1805 | output DAE.Exp exp; | ||
| 1806 | algorithm | ||
| 1807 | exp := match (iexpl,iacc,ichange) | ||
| 1808 | local | ||
| 1809 | String s1,s2,s; | ||
| 1810 | DAE.Exp exp1,exp2; | ||
| 1811 | list<DAE.Exp> rest,acc; | ||
| 1812 | Boolean change; | ||
| 1813 | |||
| 1814 | case ({},{},_) then DAE.SCONST(""); | ||
| 1815 | case ({},{exp},_) then exp; | ||
| 1816 | case ({},{exp1,exp2},_) | ||
| 1817 | ✗ | then DAE.BINARY(exp2,DAE.ADD(DAE.T_STRING_DEFAULT),exp1); | |
| 1818 | case ({},acc,true) | ||
| 1819 | algorithm | ||
| 1820 | ✗ | acc := listReverse(acc); | |
| 1821 | ✗ | exp := DAE.LIST(acc); | |
| 1822 | ✗ | then Expression.makePureBuiltinCall("stringAppendList",{exp},DAE.T_STRING_DEFAULT); | |
| 1823 | case (DAE.SCONST(s1)::rest,DAE.SCONST(s2)::acc,_) | ||
| 1824 | algorithm | ||
| 1825 | ✗ | s := s2 + s1; | |
| 1826 | ✗ | then simplifyStringAppendList(rest,DAE.SCONST(s)::acc,true); | |
| 1827 | 1444 | case (exp::rest,acc,change) then simplifyStringAppendList(rest,exp::acc,change); | |
| 1828 | end match; | ||
| 1829 | end simplifyStringAppendList; | ||
| 1830 | |||
| 1831 | protected function simplifyBuiltinConstantCalls "simplifies some builtin calls if constant arguments" | ||
| 1832 | input String name; | ||
| 1833 | input DAE.Exp exp "assumes already simplified call arguments"; | ||
| 1834 | output DAE.Exp outExp; | ||
| 1835 | algorithm | ||
| 1836 | outExp := matchcontinue (name,exp) | ||
| 1837 | local | ||
| 1838 | Real r,v1,v2; | ||
| 1839 | Integer i, j; | ||
| 1840 | DAE.Exp e,e1,e2; | ||
| 1841 | |||
| 1842 | // der(constant) ==> 0 | ||
| 1843 | case ("der",DAE.CALL(expLst ={e})) | ||
| 1844 | algorithm | ||
| 1845 | 10 | e1 := simplifyBuiltinConstantDer(e); | |
| 1846 | then e1; | ||
| 1847 | |||
| 1848 | // pre(constant) ==> constant | ||
| 1849 | case ("pre",DAE.CALL(expLst ={e})) | ||
| 1850 | then e; | ||
| 1851 | |||
| 1852 | // previous(constant) ==> constant | ||
| 1853 | case ("previous",DAE.CALL(expLst ={e})) | ||
| 1854 | then e; | ||
| 1855 | |||
| 1856 | // edge(constant) ==> false | ||
| 1857 | case ("edge",DAE.CALL(expLst ={_})) | ||
| 1858 | then DAE.BCONST(false); | ||
| 1859 | |||
| 1860 | // change(constant) ==> false | ||
| 1861 | case ("change",DAE.CALL(expLst ={_})) | ||
| 1862 | then DAE.BCONST(false); | ||
| 1863 | |||
| 1864 | // sqrt function; a negative argument is left for the generated code's | ||
| 1865 | // assertion to report rather than folded to NaN. | ||
| 1866 | case("sqrt",DAE.CALL(expLst={e})) | ||
| 1867 | algorithm | ||
| 1868 | 2034 | r := Expression.toReal(e); | |
| 1869 |
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1574 | true := r >= 0.0; |
| 1870 |
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1574 | r := sqrt(r); |
| 1871 | 1574 | then | |
| 1872 | DAE.RCONST(r); | ||
| 1873 | |||
| 1874 | // abs on real | ||
| 1875 | case("abs",DAE.CALL(expLst={DAE.RCONST(r)})) | ||
| 1876 | algorithm | ||
| 1877 | 9154 | r := abs(r); | |
| 1878 | 9154 | then | |
| 1879 | DAE.RCONST(r); | ||
| 1880 | |||
| 1881 | // abs on integer | ||
| 1882 | case("abs",DAE.CALL(expLst={DAE.ICONST(i)})) | ||
| 1883 | algorithm | ||
| 1884 | ✗ | i := abs(i); | |
| 1885 | ✗ | then | |
| 1886 | DAE.ICONST(i); | ||
| 1887 | |||
| 1888 | // sin function | ||
| 1889 | case("sin",DAE.CALL(expLst={e})) | ||
| 1890 | algorithm | ||
| 1891 | 1659 | r := sin(Expression.toReal(e)); | |
| 1892 | 1659 | then DAE.RCONST(r); | |
| 1893 | |||
| 1894 | // cos function | ||
| 1895 | case("cos",DAE.CALL(expLst={e})) | ||
| 1896 | algorithm | ||
| 1897 | 1138 | r := cos(Expression.toReal(e)); | |
| 1898 | 1138 | then DAE.RCONST(r); | |
| 1899 | |||
| 1900 | // sin function | ||
| 1901 | case("asin",DAE.CALL(expLst={e})) | ||
| 1902 | algorithm | ||
| 1903 | 14 | r := Expression.toReal(e); | |
| 1904 |
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14 | true := r >= -1.0 and r <= 1.0; |
| 1905 | ✗ | r := asin(r); | |
| 1906 | ✗ | then DAE.RCONST(r); | |
| 1907 | |||
| 1908 | // cos function | ||
| 1909 | case("acos",DAE.CALL(expLst={e})) | ||
| 1910 | algorithm | ||
| 1911 | 144 | r := Expression.toReal(e); | |
| 1912 |
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144 | true := r >= -1.0 and r <= 1.0; |
| 1913 |
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144 | r := acos(Expression.toReal(e)); |
| 1914 | 144 | then DAE.RCONST(r); | |
| 1915 | |||
| 1916 | // tangent function | ||
| 1917 | case("tan",DAE.CALL(expLst={e})) | ||
| 1918 | algorithm | ||
| 1919 | ✗ | r := tan(Expression.toReal(e)); | |
| 1920 | ✗ | then DAE.RCONST(r); | |
| 1921 | |||
| 1922 | // DAE.Exp function | ||
| 1923 | case("exp",DAE.CALL(expLst={e})) | ||
| 1924 | algorithm | ||
| 1925 | 256 | r := .exp(Expression.toReal(e)); | |
| 1926 | 256 | then DAE.RCONST(r); | |
| 1927 | |||
| 1928 | // log function | ||
| 1929 | case("log",DAE.CALL(expLst={e})) | ||
| 1930 | algorithm | ||
| 1931 | 912 | r := Expression.toReal(e); | |
| 1932 |
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912 | true := r > 0; |
| 1933 |
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912 | r := log(r); |
| 1934 | 912 | then | |
| 1935 | DAE.RCONST(r); | ||
| 1936 | |||
| 1937 | // log10 function | ||
| 1938 | case("log10",DAE.CALL(expLst={e})) | ||
| 1939 | algorithm | ||
| 1940 | ✗ | r := Expression.toReal(e); | |
| 1941 | ✗ | true := r > 0; | |
| 1942 | ✗ | r := log10(r); | |
| 1943 | ✗ | then | |
| 1944 | DAE.RCONST(r); | ||
| 1945 | |||
| 1946 | // min function on integers | ||
| 1947 | case("min",DAE.CALL(expLst={DAE.ICONST(i), DAE.ICONST(j)})) | ||
| 1948 | algorithm | ||
| 1949 | i := min(i, j); | ||
| 1950 | 88 | then DAE.ICONST(i); | |
| 1951 | |||
| 1952 | // min function on reals | ||
| 1953 | case("min",DAE.CALL(expLst={e, e1},attr=DAE.CALL_ATTR(ty=DAE.T_REAL()))) | ||
| 1954 | algorithm | ||
| 1955 | 5610 | v1 := Expression.toReal(e); | |
| 1956 | 5610 | v2 := Expression.toReal(e1); | |
| 1957 | 5610 | r := min(v1, v2); | |
| 1958 | 5610 | then DAE.RCONST(r); | |
| 1959 | |||
| 1960 | // min function on enumerations | ||
| 1961 | case("min",DAE.CALL(expLst={e as DAE.ENUM_LITERAL(index=i), e1 as DAE.ENUM_LITERAL(index=j)})) | ||
| 1962 | algorithm | ||
| 1963 |
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674 | e2 := if i<j then e else e1; |
| 1964 | then e2; | ||
| 1965 | |||
| 1966 | // max function on integers | ||
| 1967 | case("max",DAE.CALL(expLst={DAE.ICONST(i), DAE.ICONST(j)})) | ||
| 1968 | algorithm | ||
| 1969 | i := max(i, j); | ||
| 1970 | 89 | then DAE.ICONST(i); | |
| 1971 | |||
| 1972 | // max function on reals | ||
| 1973 | case("max",DAE.CALL(expLst={e, e1},attr=DAE.CALL_ATTR(ty=DAE.T_REAL()))) | ||
| 1974 | algorithm | ||
| 1975 | 6981 | v1 := Expression.toReal(e); | |
| 1976 | 6981 | v2 := Expression.toReal(e1); | |
| 1977 | 6981 | r := max(v1, v2); | |
| 1978 | 6981 | then DAE.RCONST(r); | |
| 1979 | |||
| 1980 | // max function on enumerations | ||
| 1981 | case("max",DAE.CALL(expLst={e as DAE.ENUM_LITERAL(index=i), e1 as DAE.ENUM_LITERAL(index=j)})) | ||
| 1982 | algorithm | ||
| 1983 |
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674 | e2 := if i>j then e else e1; |
| 1984 | then e2; | ||
| 1985 | |||
| 1986 | case("sign",DAE.CALL(expLst={DAE.RCONST(r)})) | ||
| 1987 | algorithm | ||
| 1988 |
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36 | i := if realEq(r,0.0) then 0 else (if realGt(r,0.0) then 1 else -1); |
| 1989 | 36 | then DAE.ICONST(i); | |
| 1990 | |||
| 1991 | end matchcontinue; | ||
| 1992 | end simplifyBuiltinConstantCalls; | ||
| 1993 | |||
| 1994 | protected function simplifyCref | ||
| 1995 | " Function for simplifying | ||
| 1996 | x[{y,z,q}] to {x[y], x[z], x[q]}" | ||
| 1997 | input DAE.Exp origExp; | ||
| 1998 | input ComponentRef inCREF; | ||
| 1999 | input Type inType; | ||
| 2000 | output DAE.Exp exp; | ||
| 2001 | algorithm | ||
| 2002 | exp := matchcontinue inCREF | ||
| 2003 | local | ||
| 2004 | Type t2; | ||
| 2005 | list<Subscript> ssl; | ||
| 2006 | ComponentRef cr; | ||
| 2007 | Ident idn; | ||
| 2008 | DAE.Exp expCref; | ||
| 2009 | |||
| 2010 | case DAE.CREF_IDENT(idn,t2,(ssl as ((DAE.SLICE(DAE.ARRAY(_,_,_))) :: _))) | ||
| 2011 | algorithm | ||
| 2012 | 22 | cr := ComponentReferenceBasics.makeCrefIdent(idn,t2,{}); | |
| 2013 | 22 | expCref := Expression.makeCrefExp(cr, inType); | |
| 2014 | 22 | exp := simplifyCref2(expCref,ssl); | |
| 2015 | then exp; | ||
| 2016 | |||
| 2017 | case DAE.CREF_IDENT(subscriptLst = DAE.SLICE(exp = DAE.RANGE()) :: _) | ||
| 2018 | algorithm | ||
| 2019 | 87 | cr := ComponentReference.crefStripSubs(inCREF); | |
| 2020 | 87 | expCref := Expression.makeCrefExp(cr, inType); | |
| 2021 | 87 | then | |
| 2022 | simplifyCref2(expCref, inCREF.subscriptLst); | ||
| 2023 | |||
| 2024 | case DAE.CREF_QUAL(idn, DAE.T_METATYPE(ty=t2), ssl, cr) | ||
| 2025 | algorithm | ||
| 2026 | 733 | exp := simplifyCrefMM1(idn, t2, ssl); | |
| 2027 | 733 | exp := simplifyCrefMM(exp, Expression.typeof(exp), cr); | |
| 2028 | then exp; | ||
| 2029 | |||
| 2030 | else origExp; | ||
| 2031 | end matchcontinue; | ||
| 2032 | end simplifyCref; | ||
| 2033 | |||
| 2034 | protected function simplifyCref2 | ||
| 2035 | "Helper function for simplifyCref | ||
| 2036 | Does the recursion." | ||
| 2037 | input DAE.Exp inExp; | ||
| 2038 | input list<Subscript> inSsl; | ||
| 2039 | output DAE.Exp outExp; | ||
| 2040 | algorithm | ||
| 2041 | outExp := matchcontinue(inExp,inSsl) | ||
| 2042 | local | ||
| 2043 | Type t,tp; | ||
| 2044 | DAE.Exp exp_1, exp; | ||
| 2045 | list<DAE.Exp> expl_1,expl; | ||
| 2046 | Subscript ss; | ||
| 2047 | list<Subscript> ssl,subs; | ||
| 2048 | list<ComponentRef> crefs; | ||
| 2049 | ComponentRef cr; | ||
| 2050 | Integer dim; | ||
| 2051 | Boolean sc; | ||
| 2052 | |||
| 2053 | case(exp_1,{}) then exp_1; | ||
| 2054 | |||
| 2055 | case(DAE.CREF(cr as DAE.CREF_IDENT(_, _,_),t), (((DAE.SLICE(DAE.ARRAY(_,_,(expl_1))))) :: ssl)) | ||
| 2056 | algorithm | ||
| 2057 | 22 | subs := List.map(expl_1,Expression.makeIndexSubscript); | |
| 2058 | 22 | crefs := List.map1r(List.map(subs,List.create),ComponentReference.subscriptCref,cr); | |
| 2059 | 22 | t := Types.unliftArray(t); | |
| 2060 | 22 | expl := List.map1(crefs,Expression.makeCrefExp,t); | |
| 2061 | 22 | dim := listLength(expl); | |
| 2062 | 44 | exp := simplifyCref2(DAE.ARRAY(DAE.T_ARRAY(t,{DAE.DIM_INTEGER(dim)}),true,expl),ssl); | |
| 2063 | then | ||
| 2064 | exp; | ||
| 2065 | |||
| 2066 | case (DAE.CREF(cr as DAE.CREF_IDENT(), t), | ||
| 2067 | (ss as DAE.SLICE(exp = DAE.RANGE())) :: ssl) | ||
| 2068 | algorithm | ||
| 2069 | 87 | subs := Expression.expandSliceExp(ss.exp); | |
| 2070 |
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|
23 | crefs := list(ComponentReference.subscriptCref(cr, List.create(s)) for s in subs); |
| 2071 | 6 | t := Types.unliftArray(t); | |
| 2072 |
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|
23 | expl := list(Expression.makeCrefExp(cr, t) for cr in crefs); |
| 2073 | 6 | dim := listLength(expl); | |
| 2074 | 12 | exp := DAE.ARRAY(DAE.T_ARRAY(t, {DAE.DIM_INTEGER(dim)}), true, expl); | |
| 2075 | 6 | then | |
| 2076 | simplifyCref2(exp, ssl); | ||
| 2077 | |||
| 2078 | case(DAE.ARRAY(tp,sc,expl), ssl ) | ||
| 2079 | algorithm | ||
| 2080 | ✗ | expl := List.map1(expl,simplifyCref2,ssl); | |
| 2081 | ✗ | then | |
| 2082 | DAE.ARRAY(tp,sc,expl); | ||
| 2083 | |||
| 2084 | end matchcontinue; | ||
| 2085 | end simplifyCref2; | ||
| 2086 | |||
| 2087 | protected function simplifyCrefMM_index | ||
| 2088 | input DAE.Exp inExp; | ||
| 2089 | input String ident; | ||
| 2090 | input DAE.Type ty; | ||
| 2091 | output DAE.Exp exp; | ||
| 2092 | protected | ||
| 2093 | Integer index; | ||
| 2094 | DAE.Type nty; | ||
| 2095 | list<DAE.Var> fields; | ||
| 2096 | algorithm | ||
| 2097 | 733 | fields := Types.getMetaRecordFields(ty); | |
| 2098 | 733 | index := Types.findVarIndex(ident, fields)+1; | |
| 2099 | 733 | DAE.TYPES_VAR(ty=nty) := listGet(fields, index); | |
| 2100 | 733 | exp := DAE.RSUB(inExp, index, ident, nty); | |
| 2101 | end simplifyCrefMM_index; | ||
| 2102 | |||
| 2103 | protected function simplifyCrefMM | ||
| 2104 | input DAE.Exp inExp; | ||
| 2105 | input DAE.Type inType; | ||
| 2106 | input ComponentRef inCref; | ||
| 2107 | output DAE.Exp exp; | ||
| 2108 | algorithm | ||
| 2109 | exp := match inCref | ||
| 2110 | case DAE.CREF_IDENT() | ||
| 2111 | algorithm | ||
| 2112 | 733 | exp := simplifyCrefMM_index(inExp, inCref.ident, inType); | |
| 2113 |
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|
733 | exp := if listEmpty(inCref.subscriptLst) then exp else DAE.ASUB(exp, inCref.subscriptLst); |
| 2114 | then exp; | ||
| 2115 | case DAE.CREF_QUAL() | ||
| 2116 | algorithm | ||
| 2117 | ✗ | exp := simplifyCrefMM_index(inExp, inCref.ident, inType); | |
| 2118 | ✗ | exp := if listEmpty(inCref.subscriptLst) then exp else DAE.ASUB(exp, inCref.subscriptLst); | |
| 2119 | ✗ | exp := simplifyCrefMM(exp, Expression.typeof(exp), inCref.componentRef); | |
| 2120 | then exp; | ||
| 2121 | end match; | ||
| 2122 | end simplifyCrefMM; | ||
| 2123 | |||
| 2124 | protected function simplifyCrefMM1 | ||
| 2125 | input String ident; | ||
| 2126 | input DAE.Type ty; | ||
| 2127 | input list<Subscript> ssl; | ||
| 2128 | output DAE.Exp outExp; | ||
| 2129 | algorithm | ||
| 2130 | outExp := match ssl | ||
| 2131 | 733 | case {} then DAE.CREF(DAE.CREF_IDENT(ident,ty,{}),ty); | |
| 2132 | ✗ | else DAE.ASUB(DAE.CREF(DAE.CREF_IDENT(ident,ty,{}),ty), ssl); | |
| 2133 | end match; | ||
| 2134 | end simplifyCrefMM1; | ||
| 2135 | |||
| 2136 | public function simplify2 | ||
| 2137 | "Advanced simplifications covering several | ||
| 2138 | terms or factors, like a +2a +3a = 5a " | ||
| 2139 | input DAE.Exp inExp; | ||
| 2140 | input Boolean simplifyAddOrSub = true; | ||
| 2141 | input Boolean simplifyMulOrDiv = true; | ||
| 2142 | output DAE.Exp outExp; | ||
| 2143 | protected | ||
| 2144 | DAE.Type ty; | ||
| 2145 | algorithm | ||
| 2146 | 19144365 | ty := Expression.typeof(inExp); | |
| 2147 | |||
| 2148 |
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|
19144365 | if not Expression.isIntegerOrReal(ty) then |
| 2149 | outExp := inExp; | ||
| 2150 | 569296 | return; | |
| 2151 | end if; | ||
| 2152 | |||
| 2153 | outExp := match inExp | ||
| 2154 | local | ||
| 2155 | DAE.Exp e1,e2,exp_2,exp_3, resConst; | ||
| 2156 | list<DAE.Exp> lstConstExp, lstExp; | ||
| 2157 | Operator op; | ||
| 2158 | Boolean hasConst; | ||
| 2159 | |||
| 2160 | // global simplify ADD and SUB | ||
| 2161 | case DAE.BINARY(operator = op) /* multiple terms simplifications */ | ||
| 2162 | guard simplifyAddOrSub and Expression.isAddOrSub(op) | ||
| 2163 | algorithm | ||
| 2164 | /* Sorting constants, 1+a+2+b => 3+a+b */ | ||
| 2165 | 2374582 | lstExp := Expression.terms(inExp); | |
| 2166 | 2374582 | (lstConstExp, lstExp) := List.splitOnTrue(lstExp, Expression.isConstValue); | |
| 2167 | 2374582 | hasConst := not listEmpty(lstConstExp); | |
| 2168 |
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|
2374582 | resConst := if hasConst then simplifyBinaryAddConstants(lstConstExp) else Expression.makeConstZero(ty); |
| 2169 |
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|
2374582 | exp_2 := if hasConst then Expression.makeSum1(lstExp) else inExp; |
| 2170 | /* Merging coefficients 2a+4b+3a+b => 5a+5b */ | ||
| 2171 | 2374582 | exp_3 := simplifyBinaryCoeff(exp_2); | |
| 2172 |
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|
2374582 | exp_3 := if hasConst then Expression.expAdd(resConst,simplify2(exp_3, false, true)) else simplify2(exp_3, false, true); |
| 2173 | then | ||
| 2174 | exp_3; | ||
| 2175 | |||
| 2176 | //locked global simplify ADD and SUB | ||
| 2177 | //unlocked global simplify MUL and DIV | ||
| 2178 | case DAE.BINARY(exp1 = e1,operator = op,exp2 = e2) /* multiple factors simplifications */ | ||
| 2179 | guard Expression.isAddOrSub(op) | ||
| 2180 | algorithm | ||
| 2181 | 1394550 | e1 := simplify2(e1, false, true); | |
| 2182 | 1394251 | e2 := simplify2(e2, false, true); | |
| 2183 | 1392729 | then | |
| 2184 | DAE.BINARY(e1,op,e2); | ||
| 2185 | |||
| 2186 | //global simplify MUL and DIV | ||
| 2187 | case DAE.BINARY(operator = op) /* multiple factors simplifications */ | ||
| 2188 | guard simplifyMulOrDiv and Expression.isMulOrDiv(op) | ||
| 2189 | algorithm | ||
| 2190 | /* Sorting constants, 1+a+2+b => 3+a+b */ | ||
| 2191 | 3175664 | lstExp := Expression.factors(inExp); | |
| 2192 | 3174689 | (lstConstExp, lstExp) := List.splitOnTrue(lstExp, Expression.isConst); | |
| 2193 |
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|
3174689 | if not listEmpty(lstConstExp) then |
| 2194 | 1156665 | resConst := simplifyBinaryMulConstants(lstConstExp); | |
| 2195 |
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|
1151981 | exp_2 := Expression.makeProductLst(if Types.isScalarReal(Expression.typeofOp(op)) then simplifyMul(lstExp) else lstExp); |
| 2196 |
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|
1151981 | if Expression.isConstOne(resConst) then |
| 2197 | 87 | exp_3 := simplify2(exp_2, true, false); | |
| 2198 | elseif Expression.isConstMinusOne(resConst) then | ||
| 2199 | 3204 | exp_3 := Expression.negate(simplify2(exp_2, true, false)); | |
| 2200 | else | ||
| 2201 | 1148690 | exp_3 := Expression.expMul(resConst,simplify2(exp_2, true, false)); | |
| 2202 | end if; | ||
| 2203 | else | ||
| 2204 | 2018024 | exp_2 := simplifyBinaryCoeff(inExp); | |
| 2205 | 2018024 | exp_3 := simplify2(exp_2, true, false); | |
| 2206 | end if; | ||
| 2207 | then | ||
| 2208 | exp_3; | ||
| 2209 | |||
| 2210 | //unlocked global simplify ADD and SUB | ||
| 2211 | //locked global simplify MUL and DIV | ||
| 2212 | case DAE.BINARY(exp1 = e1,operator = op,exp2 = e2) /* multiple terms simplifications */ | ||
| 2213 | guard Expression.isMulOrDiv(op) | ||
| 2214 | algorithm | ||
| 2215 | 2700115 | e1 := simplify2(e1, true, false); | |
| 2216 | 2700115 | e2 := simplify2(e2, true, false); | |
| 2217 | 2700115 | then | |
| 2218 | DAE.BINARY(e1,op,e2); | ||
| 2219 | |||
| 2220 | //others operators | ||
| 2221 | case DAE.BINARY(exp1 = e1,operator = op,exp2 = e2) /* multiple terms/factor simplifications */ | ||
| 2222 | algorithm | ||
| 2223 | 248222 | e1 := simplify2(e1); | |
| 2224 | 248222 | e2 := simplify2(e2); | |
| 2225 | 248222 | then | |
| 2226 | DAE.BINARY(e1,op,e2); | ||
| 2227 | |||
| 2228 | case DAE.UNARY(op,e1) | ||
| 2229 | algorithm | ||
| 2230 | 765881 | e1 := simplify2(e1); | |
| 2231 | 765881 | then | |
| 2232 | DAE.UNARY(op,e1); | ||
| 2233 | |||
| 2234 | else inExp; | ||
| 2235 | |||
| 2236 | end match; | ||
| 2237 | end simplify2; | ||
| 2238 | |||
| 2239 | protected function simplifyBinaryArrayOp | ||
| 2240 | input Operator inOperator; | ||
| 2241 | output Boolean found; | ||
| 2242 | algorithm | ||
| 2243 | found := match inOperator | ||
| 2244 | case DAE.MUL_MATRIX_PRODUCT() then true; | ||
| 2245 | case DAE.ADD_ARR() then true; | ||
| 2246 | case DAE.SUB_ARR() then true; | ||
| 2247 | case DAE.MUL_ARR() then true; | ||
| 2248 | case DAE.DIV_ARR() then true; | ||
| 2249 | case DAE.POW_ARR() then true; | ||
| 2250 | case DAE.POW_ARR2() then true; | ||
| 2251 | case DAE.MUL_ARRAY_SCALAR() then true; | ||
| 2252 | case DAE.ADD_ARRAY_SCALAR() then true; | ||
| 2253 | case DAE.DIV_ARRAY_SCALAR() then true; | ||
| 2254 | case DAE.POW_ARRAY_SCALAR() then true; | ||
| 2255 | case DAE.SUB_SCALAR_ARRAY() then true; | ||
| 2256 | case DAE.DIV_SCALAR_ARRAY() then true; | ||
| 2257 | case DAE.POW_SCALAR_ARRAY() then true; | ||
| 2258 | case DAE.MUL_SCALAR_PRODUCT() then true; | ||
| 2259 | else false; | ||
| 2260 | end match; | ||
| 2261 | end simplifyBinaryArrayOp; | ||
| 2262 | |||
| 2263 | protected function simplifyBinaryArray "Simplifies binary array expressions, | ||
| 2264 | e.g. matrix multiplication, etc." | ||
| 2265 | input DAE.Exp inExp1; | ||
| 2266 | input Operator inOperator2; | ||
| 2267 | input DAE.Exp inExp3; | ||
| 2268 | output DAE.Exp outExp; | ||
| 2269 | algorithm | ||
| 2270 | outExp := matchcontinue (inExp1,inOperator2,inExp3) | ||
| 2271 | local | ||
| 2272 | DAE.Exp e_1,e1,e2,res,s1,a1; | ||
| 2273 | Type tp; | ||
| 2274 | Operator op; | ||
| 2275 | |||
| 2276 | case (e1,DAE.MUL_MATRIX_PRODUCT(),e2) | ||
| 2277 | algorithm | ||
| 2278 | 1929 | e_1 := simplifyMatrixProduct(e1, e2); | |
| 2279 | then | ||
| 2280 | e_1; | ||
| 2281 | |||
| 2282 | case(e1,op as DAE.ADD_ARR(),e2) | ||
| 2283 | algorithm | ||
| 2284 | 32073 | a1 := simplifyVectorBinary0(e1,op,e2); | |
| 2285 | then | ||
| 2286 | a1; | ||
| 2287 | |||
| 2288 | case (e1,op as DAE.SUB_ARR(),e2) | ||
| 2289 | algorithm | ||
| 2290 | 8090 | a1 := simplifyVectorBinary0(e1, op, e2); | |
| 2291 | then | ||
| 2292 | a1; | ||
| 2293 | |||
| 2294 | case (e1,op as DAE.MUL_ARR(),e2) | ||
| 2295 | algorithm | ||
| 2296 | 80 | a1 := simplifyVectorBinary(e1, op, e2); | |
| 2297 | then a1; | ||
| 2298 | |||
| 2299 | case (e1,op as DAE.DIV_ARR(),e2) | ||
| 2300 | algorithm | ||
| 2301 | 30 | a1 := simplifyVectorBinary(e1, op, e2); | |
| 2302 | then a1; | ||
| 2303 | |||
| 2304 | case (e1,DAE.POW_ARR(),e2) | ||
| 2305 | algorithm | ||
| 2306 | 5 | tp := Expression.typeof(e1); | |
| 2307 | 5 | a1 := simplifyMatrixPow(e1, tp, e2); | |
| 2308 | then a1; | ||
| 2309 | |||
| 2310 | case (e1,DAE.POW_ARR2(),e2) | ||
| 2311 | algorithm | ||
| 2312 | 10 | tp := Expression.typeof(e1); | |
| 2313 | 10 | a1 := simplifyVectorBinary(e1, DAE.POW_ARR2(tp), e2); | |
| 2314 | then a1; | ||
| 2315 | |||
| 2316 | // v1 - -v2 => v1 + v2 | ||
| 2317 | case (e1,DAE.SUB_ARR(ty=tp),DAE.UNARY(_,e2)) | ||
| 2318 | ✗ | then | |
| 2319 | DAE.BINARY(e1,DAE.ADD_ARR(tp),e2); | ||
| 2320 | |||
| 2321 | // v1 + -v2 => v1 - v2 | ||
| 2322 | case (e1,DAE.ADD_ARR(ty=tp),DAE.UNARY(_,e2)) | ||
| 2323 | ✗ | then | |
| 2324 | DAE.BINARY(e1,DAE.SUB_ARR(tp),e2); | ||
| 2325 | |||
| 2326 | case (a1, op, s1) | ||
| 2327 | algorithm | ||
| 2328 |
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|
48684 | true := Expression.isArrayScalarOp(op); |
| 2329 | 9223 | op := unliftOperator(a1, op); | |
| 2330 | 9223 | then | |
| 2331 | simplifyVectorScalar(a1, op, s1); | ||
| 2332 | |||
| 2333 | case (s1, op, a1) | ||
| 2334 | algorithm | ||
| 2335 |
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|
45866 | true := Expression.isScalarArrayOp(op); |
| 2336 | 8 | op := unliftOperator(a1, op); | |
| 2337 | 8 | then | |
| 2338 | simplifyVectorScalar(s1, op, a1); | ||
| 2339 | |||
| 2340 | case (e1,DAE.MUL_SCALAR_PRODUCT(),e2) | ||
| 2341 | algorithm | ||
| 2342 | 3645 | res := simplifyScalarProduct(e1, e2); | |
| 2343 | then | ||
| 2344 | res; | ||
| 2345 | |||
| 2346 | case (e1,op as DAE.ADD_ARR(),e2) | ||
| 2347 | algorithm | ||
| 2348 | 28885 | a1 := simplifyMatrixBinary(e1, op, e2); | |
| 2349 | then a1; | ||
| 2350 | |||
| 2351 | case (e1,op as DAE.SUB_ARR(),e2) | ||
| 2352 | algorithm | ||
| 2353 | 5747 | a1 := simplifyMatrixBinary(e1, op, e2); | |
| 2354 | // print("simplifyMatrixBinary: " + ExpressionBasics.printExpStr(e1) + "=>" + ExpressionBasics.printExpStr(a1) + "\n"); | ||
| 2355 | then a1; | ||
| 2356 | |||
| 2357 | case (e1,op as DAE.MUL_ARR(),e2) | ||
| 2358 | algorithm | ||
| 2359 | 52 | a1 := simplifyMatrixBinary(e1, op, e2); | |
| 2360 | then a1; | ||
| 2361 | |||
| 2362 | case (e1,op as DAE.DIV_ARR(),e2) | ||
| 2363 | algorithm | ||
| 2364 | 1 | a1 := simplifyMatrixBinary(e1, op, e2); | |
| 2365 | then a1; | ||
| 2366 | |||
| 2367 | case (e1,op as DAE.POW_ARR2(),e2) | ||
| 2368 | algorithm | ||
| 2369 | 2 | a1 := simplifyMatrixBinary(e1, op, e2); | |
| 2370 | then a1; | ||
| 2371 | |||
| 2372 | case (_,DAE.MUL_ARRAY_SCALAR(ty = tp),e2) | ||
| 2373 | algorithm | ||
| 2374 |
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|
5815 | true := Expression.isZero(e2); |
| 2375 | 21 | (a1, _) := Expression.makeZeroExpression(Expression.arrayDimension(tp)); | |
| 2376 | then a1; | ||
| 2377 | |||
| 2378 | case (e1,DAE.DIV_ARR(),_) | ||
| 2379 | algorithm | ||
| 2380 |
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|
1 | true := Expression.isZero(e1); |
| 2381 | ✗ | tp := Expression.typeof(e1); | |
| 2382 | ✗ | (a1, _) := Expression.makeZeroExpression(Expression.arrayDimension(tp)); | |
| 2383 | then a1; | ||
| 2384 | |||
| 2385 | case (e1,DAE.DIV_ARRAY_SCALAR(),_) | ||
| 2386 | algorithm | ||
| 2387 |
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|
491 | true := Expression.isZero(e1); |
| 2388 | ✗ | tp := Expression.typeof(e1); | |
| 2389 | ✗ | (a1, _) := Expression.makeZeroExpression(Expression.arrayDimension(tp)); | |
| 2390 | then a1; | ||
| 2391 | |||
| 2392 | end matchcontinue; | ||
| 2393 | end simplifyBinaryArray; | ||
| 2394 | |||
| 2395 | public function simplifyScalarProduct | ||
| 2396 | "Simplifies the scalar product of two vectors." | ||
| 2397 | input DAE.Exp inVector1; | ||
| 2398 | input DAE.Exp inVector2; | ||
| 2399 | output DAE.Exp outProduct; | ||
| 2400 | algorithm | ||
| 2401 | outProduct := match(inVector1, inVector2) | ||
| 2402 | local | ||
| 2403 | list<DAE.Exp> expl, expl1, expl2; | ||
| 2404 | DAE.Exp exp; | ||
| 2405 | Type tp; | ||
| 2406 | ComponentRef cr1, cr2; | ||
| 2407 | |||
| 2408 | // Both arrays are empty. The result is defined in the spec by sum, so we | ||
| 2409 | // return the default value which is 0. | ||
| 2410 | case (DAE.ARRAY(ty = tp, array = {}), DAE.ARRAY(array = {})) | ||
| 2411 | ✗ | then Expression.makeConstZero(tp); | |
| 2412 | |||
| 2413 | // Normal scalar product of two vectors. | ||
| 2414 | case (DAE.ARRAY(array = expl1), DAE.ARRAY(array = expl2)) | ||
| 2415 | algorithm | ||
| 2416 |
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|
6244 | true := Expression.isVector(inVector1) and Expression.isVector(inVector2); |
| 2417 | 6244 | expl := List.threadMap(expl1, expl2, Expression.expMul); | |
| 2418 | 6244 | exp := List.reduce(expl, Expression.expAdd); | |
| 2419 | then | ||
| 2420 | exp; | ||
| 2421 | |||
| 2422 | // scalar product with two crefs: expand both! (issue #13853) | ||
| 2423 | case (DAE.CREF(componentRef = cr1), DAE.CREF(componentRef = cr2)) | ||
| 2424 | guard Config.simCodeTarget() <> "Cpp" | ||
| 2425 | algorithm | ||
| 2426 |
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|
515 | expl1 := list(Expression.crefToExp(c) for c in ComponentReference.expandCref(cr1, true)); |
| 2427 |
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|
213 | true := listLength(expl1) <= 3; |
| 2428 |
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|
515 | expl2 := list(Expression.crefToExp(c) for c in ComponentReference.expandCref(cr2, true)); |
| 2429 |
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|
213 | true := listLength(expl1) == listLength(expl2); |
| 2430 | // expandCref leaves a non-constant slice alone; expMul would make it an array product. | ||
| 2431 |
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|
213 | true := List.none(expl1, isArrayTypedExp) and List.none(expl2, isArrayTypedExp); |
| 2432 | 207 | expl := List.threadMap(expl1, expl2, Expression.expMul); | |
| 2433 | 207 | exp := List.reduce(expl, Expression.expAdd); | |
| 2434 | then | ||
| 2435 | exp; | ||
| 2436 | |||
| 2437 | // Scalar product of any expression with zeros | ||
| 2438 | case (_, _) | ||
| 2439 | algorithm | ||
| 2440 |
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|
1273 | true := Expression.isZero(inVector1) or Expression.isZero(inVector2); |
| 2441 | 13 | then | |
| 2442 | Expression.makeConstZero(DAE.T_REAL_DEFAULT); | ||
| 2443 | |||
| 2444 | end match; | ||
| 2445 | end simplifyScalarProduct; | ||
| 2446 | |||
| 2447 | protected function isArrayTypedExp | ||
| 2448 | input DAE.Exp exp; | ||
| 2449 | output Boolean b = Expression.isArrayType(Expression.typeof(exp)); | ||
| 2450 | end isArrayTypedExp; | ||
| 2451 | |||
| 2452 | protected function unliftOperator | ||
| 2453 | input DAE.Exp inArray; | ||
| 2454 | input Operator inOperator; | ||
| 2455 | output Operator outOperator; | ||
| 2456 | algorithm | ||
| 2457 | outOperator := match inArray | ||
| 2458 | 154 | case DAE.MATRIX() then Expression.unliftOperatorX(inOperator, 2); | |
| 2459 | 9077 | else Expression.unliftOperator(inOperator); | |
| 2460 | end match; | ||
| 2461 | end unliftOperator; | ||
| 2462 | |||
| 2463 | protected function simplifyVectorScalar | ||
| 2464 | "Simplifies vector scalar operations." | ||
| 2465 | input DAE.Exp inLhs; | ||
| 2466 | input Operator inOperator; | ||
| 2467 | input DAE.Exp inRhs; | ||
| 2468 | output DAE.Exp outExp; | ||
| 2469 | algorithm | ||
| 2470 | outExp := match(inLhs, inOperator, inRhs) | ||
| 2471 | local | ||
| 2472 | DAE.Exp s1; | ||
| 2473 | Operator op; | ||
| 2474 | Type tp; | ||
| 2475 | Boolean sc; | ||
| 2476 | list<DAE.Exp> es; | ||
| 2477 | list<list<DAE.Exp>> mexpl; | ||
| 2478 | Integer dims; | ||
| 2479 | |||
| 2480 | // scalar operator array | ||
| 2481 | case (_, _, DAE.ARRAY(ty = tp, scalar = sc, array = es)) | ||
| 2482 | algorithm | ||
| 2483 |
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|
6 | es := list(Expression.makeBinaryExp(inLhs, inOperator, e) for e in es); |
| 2484 |
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|
2 | then |
| 2485 | DAE.ARRAY(tp, sc, es); | ||
| 2486 | |||
| 2487 | case (s1,op,DAE.MATRIX(tp,dims,mexpl)) | ||
| 2488 | algorithm | ||
| 2489 | 2 | mexpl := simplifyVectorScalarMatrix(mexpl,op,s1,false /*scalar-array*/); | |
| 2490 | 2 | then | |
| 2491 | DAE.MATRIX(tp,dims,mexpl); | ||
| 2492 | |||
| 2493 | // array operator scalar | ||
| 2494 | case (DAE.ARRAY(ty = tp, scalar = sc, array = es), _, _) | ||
| 2495 | algorithm | ||
| 2496 | 2666 | es := List.map2(es, Expression.makeBinaryExp, inOperator, inRhs); | |
| 2497 |
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|
2812 | then |
| 2498 | DAE.ARRAY(tp, sc, es); | ||
| 2499 | |||
| 2500 | case (DAE.MATRIX(tp,dims,mexpl),op,s1) | ||
| 2501 | algorithm | ||
| 2502 | 152 | mexpl := simplifyVectorScalarMatrix(mexpl,op,s1,true/*array-scalar*/); | |
| 2503 | 152 | then | |
| 2504 | DAE.MATRIX(tp,dims,mexpl); | ||
| 2505 | |||
| 2506 | end match; | ||
| 2507 | end simplifyVectorScalar; | ||
| 2508 | |||
| 2509 | protected function simplifyVectorBinary0 "help function to simplify1, prevents simplify1 to be called multiple times | ||
| 2510 | in subsequent cases" | ||
| 2511 | input DAE.Exp e1; | ||
| 2512 | input Operator op; | ||
| 2513 | input DAE.Exp e2; | ||
| 2514 | output DAE.Exp res; | ||
| 2515 | algorithm | ||
| 2516 | res := matchcontinue op | ||
| 2517 | local DAE.Exp a1; | ||
| 2518 | |||
| 2519 | case _ | ||
| 2520 | algorithm | ||
| 2521 | 40163 | a1 := simplifyVectorBinary(e1,op,e2); | |
| 2522 | then a1; | ||
| 2523 | |||
| 2524 | case DAE.ADD() | ||
| 2525 | algorithm | ||
| 2526 | ✗ | true := Expression.isZero(e1); | |
| 2527 | then | ||
| 2528 | e2; | ||
| 2529 | |||
| 2530 | case DAE.ADD_ARR() | ||
| 2531 | algorithm | ||
| 2532 |
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|
28976 | true := Expression.isZero(e1); |
| 2533 | then | ||
| 2534 | e2; | ||
| 2535 | |||
| 2536 | case DAE.SUB_ARR() | ||
| 2537 | algorithm | ||
| 2538 |
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|
5842 | true := Expression.isZero(e1); |
| 2539 | 1 | then | |
| 2540 | Expression.negate(e2); | ||
| 2541 | |||
| 2542 | case DAE.SUB() | ||
| 2543 | algorithm | ||
| 2544 | ✗ | true := Expression.isZero(e1); | |
| 2545 | ✗ | then | |
| 2546 | Expression.negate(e2); | ||
| 2547 | |||
| 2548 | else | ||
| 2549 | algorithm | ||
| 2550 |
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|
34812 | true := Expression.isZero(e2); |
| 2551 | then | ||
| 2552 | e1; | ||
| 2553 | |||
| 2554 | end matchcontinue; | ||
| 2555 | end simplifyVectorBinary0; | ||
| 2556 | |||
| 2557 | protected function simplifyVectorBinary | ||
| 2558 | input DAE.Exp inLhs; | ||
| 2559 | input Operator inOperator; | ||
| 2560 | input DAE.Exp inRhs; | ||
| 2561 | output DAE.Exp outResult; | ||
| 2562 | protected | ||
| 2563 | DAE.Type ty; | ||
| 2564 | Boolean sc; | ||
| 2565 | list<DAE.Exp> lhs, rhs, res; | ||
| 2566 | Operator op; | ||
| 2567 | algorithm | ||
| 2568 |
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|
40283 | DAE.ARRAY(ty = ty, scalar = sc, array = lhs) := inLhs; |
| 2569 |
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|
13491 | DAE.ARRAY(array = rhs) := inRhs; |
| 2570 | 5410 | op := removeOperatorDimension(inOperator); | |
| 2571 | 5410 | res := List.threadMap1(lhs, rhs, simplifyVectorBinary2, op); | |
| 2572 |
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|
5645 | outResult := DAE.ARRAY(ty, sc, res); |
| 2573 | end simplifyVectorBinary; | ||
| 2574 | |||
| 2575 | protected function simplifyVectorBinary2 | ||
| 2576 | input DAE.Exp inLhs; | ||
| 2577 | input DAE.Exp inRhs; | ||
| 2578 | input Operator inOperator; | ||
| 2579 | output DAE.Exp outExp; | ||
| 2580 | algorithm | ||
| 2581 | 15842 | outExp := DAE.BINARY(inLhs, inOperator, inRhs); | |
| 2582 | end simplifyVectorBinary2; | ||
| 2583 | |||
| 2584 | protected function simplifyMatrixBinary | ||
| 2585 | "Simplifies matrix addition and subtraction" | ||
| 2586 | input DAE.Exp inLhs; | ||
| 2587 | input Operator inOperator; | ||
| 2588 | input DAE.Exp inRhs; | ||
| 2589 | output DAE.Exp outResult; | ||
| 2590 | protected | ||
| 2591 | list<list<DAE.Exp>> lhs, rhs, res; | ||
| 2592 | Operator op; | ||
| 2593 | Integer sz; | ||
| 2594 | DAE.Type ty; | ||
| 2595 | algorithm | ||
| 2596 | 34687 | lhs := Expression.get2dArrayOrMatrixContent(inLhs); | |
| 2597 | 51 | rhs := Expression.get2dArrayOrMatrixContent(inRhs); | |
| 2598 | 45 | op := removeOperatorDimension(inOperator); | |
| 2599 | 45 | res := List.threadMap1(lhs, rhs, simplifyMatrixBinary1, op); | |
| 2600 | 45 | sz := listLength(res); | |
| 2601 | 45 | ty := Expression.typeof(inLhs); | |
| 2602 | 45 | outResult := DAE.MATRIX(ty, sz, res); | |
| 2603 | end simplifyMatrixBinary; | ||
| 2604 | |||
| 2605 | protected function simplifyMatrixBinary1 | ||
| 2606 | "Simplifies matrix addition and subtraction." | ||
| 2607 | input list<DAE.Exp> inLhs; | ||
| 2608 | input list<DAE.Exp> inRhs; | ||
| 2609 | input Operator inOperator; | ||
| 2610 | output list<DAE.Exp> outExpl; | ||
| 2611 | algorithm | ||
| 2612 | 165 | outExpl := List.threadMap1(inLhs, inRhs, simplifyMatrixBinary2, inOperator); | |
| 2613 | end simplifyMatrixBinary1; | ||
| 2614 | |||
| 2615 | protected function simplifyMatrixBinary2 | ||
| 2616 | input DAE.Exp inLhs; | ||
| 2617 | input DAE.Exp inRhs; | ||
| 2618 | input Operator inOperator; | ||
| 2619 | output DAE.Exp outExp; | ||
| 2620 | protected | ||
| 2621 | Operator op; | ||
| 2622 | algorithm | ||
| 2623 | 389 | op := removeOperatorDimension(inOperator); | |
| 2624 | 389 | outExp := DAE.BINARY(inLhs, op, inRhs); | |
| 2625 | end simplifyMatrixBinary2; | ||
| 2626 | |||
| 2627 | protected function simplifyMatrixPow | ||
| 2628 | "author: Frenkel TUD | ||
| 2629 | Simplifies matrix powers." | ||
| 2630 | input DAE.Exp inExp1; | ||
| 2631 | input Type inType; | ||
| 2632 | input DAE.Exp inExp2; | ||
| 2633 | output DAE.Exp outExp; | ||
| 2634 | algorithm | ||
| 2635 | outExp:= | ||
| 2636 | matchcontinue (inExp1, inExp2) | ||
| 2637 | local | ||
| 2638 | list<list<DAE.Exp>> expl_1,expl2; | ||
| 2639 | list<DAE.Exp> el; | ||
| 2640 | Type tp1; | ||
| 2641 | Integer size1,i,i_1; | ||
| 2642 | list<Integer> range; | ||
| 2643 | DAE.Exp e,m,res; | ||
| 2644 | /* A^0=I */ | ||
| 2645 | case (DAE.MATRIX(ty = tp1,integer = size1), DAE.ICONST(integer = i)) | ||
| 2646 | algorithm | ||
| 2647 |
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|
5 | 0:=i; |
| 2648 | 2 | el := List.fill(DAE.RCONST(0.0),size1); | |
| 2649 | 2 | expl2 := List.fill(el,size1); | |
| 2650 | 2 | range := List.intRange2(0,size1-1); | |
| 2651 | 2 | expl_1 := simplifyMatrixPow1(range,expl2,DAE.RCONST(1.0)); | |
| 2652 | 2 | then | |
| 2653 | DAE.MATRIX(tp1,size1,expl_1); | ||
| 2654 | /* A^1=A */ | ||
| 2655 | case (m as DAE.MATRIX(), DAE.ICONST(integer = i)) | ||
| 2656 | algorithm | ||
| 2657 |
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|
3 | 1:=i; |
| 2658 | then | ||
| 2659 | m; | ||
| 2660 | |||
| 2661 | // A^2 = A * A | ||
| 2662 | case (m as DAE.MATRIX(), DAE.ICONST(integer = i)) | ||
| 2663 | algorithm | ||
| 2664 |
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|
2 | 2 := i; |
| 2665 | 2 | res := simplifyMatrixProduct(m,m); | |
| 2666 | then | ||
| 2667 | res; | ||
| 2668 | |||
| 2669 | // A^n = A^m*A^m where n = 2*m | ||
| 2670 | case(m as DAE.MATRIX(ty = tp1), DAE.ICONST(integer = i)) | ||
| 2671 | algorithm | ||
| 2672 | ✗ | true := i > 3; | |
| 2673 | ✗ | 0 := intMod(i,2); | |
| 2674 | ✗ | i_1 := intDiv(i,2); | |
| 2675 | ✗ | e := simplifyMatrixPow(m,tp1,DAE.ICONST(i_1)); | |
| 2676 | ✗ | res := simplifyMatrixProduct(e,e); | |
| 2677 | then | ||
| 2678 | res; | ||
| 2679 | |||
| 2680 | /* A^i */ | ||
| 2681 | case (m as DAE.MATRIX(ty = tp1), DAE.ICONST(integer = i)) | ||
| 2682 | algorithm | ||
| 2683 | ✗ | true := 1 < i; | |
| 2684 | ✗ | i_1 := i - 1; | |
| 2685 | ✗ | e := simplifyMatrixPow(m,tp1,DAE.ICONST(i_1)); | |
| 2686 | ✗ | res := simplifyMatrixProduct(m,e); | |
| 2687 | then | ||
| 2688 | res; | ||
| 2689 | end matchcontinue; | ||
| 2690 | end simplifyMatrixPow; | ||
| 2691 | |||
| 2692 | protected function simplifyMatrixPow1 | ||
| 2693 | "author: Frenkel TUD | ||
| 2694 | Simplifies matrix powers." | ||
| 2695 | input list<Integer> inRange; | ||
| 2696 | input list<list<DAE.Exp>> inMatrix; | ||
| 2697 | input DAE.Exp inValue; | ||
| 2698 | output list<list<DAE.Exp>> outMatrix; | ||
| 2699 | algorithm | ||
| 2700 | outMatrix:= | ||
| 2701 | matchcontinue (inRange,inMatrix,inValue) | ||
| 2702 | local | ||
| 2703 | list<list<DAE.Exp>> rm,rm1; | ||
| 2704 | list<DAE.Exp> row,row1; | ||
| 2705 | DAE.Exp e; | ||
| 2706 | Integer i; | ||
| 2707 | list<Integer> rr; | ||
| 2708 | case ({},{},_) | ||
| 2709 | then | ||
| 2710 | {}; | ||
| 2711 | case (i::{},row::{},e) | ||
| 2712 | algorithm | ||
| 2713 | 2 | row1 := List.replaceAt(e,i+1,row); | |
| 2714 | then | ||
| 2715 | {row1}; | ||
| 2716 | case (i::rr,row::rm,e) | ||
| 2717 | algorithm | ||
| 2718 | 3 | row1 := List.replaceAt(e,i+1,row); | |
| 2719 | 3 | rm1 := simplifyMatrixPow1(rr,rm,e); | |
| 2720 | then | ||
| 2721 | row1::rm1; | ||
| 2722 | end matchcontinue; | ||
| 2723 | end simplifyMatrixPow1; | ||
| 2724 | |||
| 2725 | protected function simplifyMatrixProduct | ||
| 2726 | "Simplifies matrix multiplication." | ||
| 2727 | input DAE.Exp inMatrix1; | ||
| 2728 | input DAE.Exp inMatrix2; | ||
| 2729 | output DAE.Exp outProduct; | ||
| 2730 | protected | ||
| 2731 | DAE.Exp mat1, mat2; | ||
| 2732 | algorithm | ||
| 2733 | // Convert any DAE.MATRIX expressions to DAE.ARRAY. | ||
| 2734 | 2525 | mat1 := Expression.matrixToArray(inMatrix1); | |
| 2735 | 2525 | mat2 := Expression.matrixToArray(inMatrix2); | |
| 2736 | // Transpose the second matrix. This makes it easier to do the multiplication, | ||
| 2737 | // since we can do row-row multiplications instead of row-column. | ||
| 2738 | 2525 | (mat2, _) := Expression.transposeArray(mat2); | |
| 2739 | 2525 | outProduct := simplifyMatrixProduct2(mat1, mat2); | |
| 2740 | end simplifyMatrixProduct; | ||
| 2741 | |||
| 2742 | protected function simplifyMatrixProduct2 | ||
| 2743 | "Helper function to simplifyMatrixProduct, does the actual work. Assumes that | ||
| 2744 | the second matrix has been transposed to make the multiplication easier." | ||
| 2745 | input DAE.Exp inMatrix1; | ||
| 2746 | input DAE.Exp inMatrix2; | ||
| 2747 | output DAE.Exp outProduct; | ||
| 2748 | algorithm | ||
| 2749 | outProduct := matchcontinue(inMatrix1, inMatrix2) | ||
| 2750 | local | ||
| 2751 | DAE.Dimension n, m, p; | ||
| 2752 | list<DAE.Exp> expl1, expl2; | ||
| 2753 | DAE.Type ty, row_ty; | ||
| 2754 | list<list<DAE.Exp>> matrix; | ||
| 2755 | DAE.Exp zero; | ||
| 2756 | list<DAE.Dimension> dims; | ||
| 2757 | |||
| 2758 | // The common dimension of the matrices is zero, the result will be an array | ||
| 2759 | // of zeroes (the default value of sum). | ||
| 2760 | case (DAE.ARRAY(ty = ty as DAE.T_ARRAY(dims = dims)), DAE.ARRAY()) | ||
| 2761 | algorithm | ||
| 2762 | // It's sufficient to check the first array, because the only case where | ||
| 2763 | // the second array alone determines the result dimensions is the | ||
| 2764 | // vector-matrix case. The instantiation should just remove the | ||
| 2765 | // equations in that case, since the result will be an empty array. | ||
| 2766 |
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|
811 | true := Expression.arrayContainZeroDimension(dims); |
| 2767 | 5 | zero := Expression.makeConstZero(ty); | |
| 2768 | 5 | dims := simplifyMatrixProduct4(inMatrix1, inMatrix2); | |
| 2769 | 4 | then | |
| 2770 | Expression.arrayFill(dims, zero); | ||
| 2771 | |||
| 2772 | // Matrix-vector multiplication, c[n] = a[n, m] * b[m]. | ||
| 2773 | case (DAE.ARRAY(ty = DAE.T_ARRAY(ty, {n, _}), array = expl1), | ||
| 2774 | DAE.ARRAY(ty = DAE.T_ARRAY(dims = {_}))) | ||
| 2775 | algorithm | ||
| 2776 | // c[i] = a[i, :] * b for i in 1:n | ||
| 2777 | 520 | expl1 := List.map1(expl1, simplifyScalarProduct, inMatrix2); | |
| 2778 | 520 | ty := DAE.T_ARRAY(ty, {n}); | |
| 2779 | 520 | then | |
| 2780 | DAE.ARRAY(ty, true, expl1); | ||
| 2781 | |||
| 2782 | // Vector-matrix multiplication, c[m] = a[n] * b[n, m]. | ||
| 2783 | case (DAE.ARRAY(ty = DAE.T_ARRAY(dims = {_})), | ||
| 2784 | DAE.ARRAY(ty = DAE.T_ARRAY(ty, {m, _}), array = expl2)) | ||
| 2785 | algorithm | ||
| 2786 | // c[i] = a * b[:, i] for i in 1:m | ||
| 2787 | 4 | expl1 := List.map1r(expl2, simplifyScalarProduct, inMatrix1); | |
| 2788 | 4 | ty := DAE.T_ARRAY(ty, {m}); | |
| 2789 | 4 | then | |
| 2790 | DAE.ARRAY(ty, true, expl1); | ||
| 2791 | |||
| 2792 | // Matrix-matrix multiplication, c[n, p] = a[n, m] * b[m, p]. | ||
| 2793 | case (DAE.ARRAY(ty = DAE.T_ARRAY(ty, {n, _}), array = expl1), | ||
| 2794 | DAE.ARRAY(ty = DAE.T_ARRAY(dims = {p, _}), array = expl2)) | ||
| 2795 | algorithm | ||
| 2796 | // c[i, j] = a[i, :] * b[:, j] for i in 1:n, j in 1:p | ||
| 2797 | 282 | matrix := List.map1(expl1, simplifyMatrixProduct3, expl2); | |
| 2798 | 282 | row_ty := DAE.T_ARRAY(ty, {p}); | |
| 2799 | 282 | expl1 := List.map2(matrix, Expression.makeArray, row_ty, true); | |
| 2800 | 282 | then | |
| 2801 | DAE.ARRAY(DAE.T_ARRAY(ty, {n, p}), false, expl1); | ||
| 2802 | |||
| 2803 | end matchcontinue; | ||
| 2804 | end simplifyMatrixProduct2; | ||
| 2805 | |||
| 2806 | protected function simplifyMatrixProduct3 | ||
| 2807 | "Helper function to simplifyMatrixProduct2. Multiplies the given matrix row | ||
| 2808 | with each row in the given matrix and returns a list with the results." | ||
| 2809 | input DAE.Exp inRow; | ||
| 2810 | input list<DAE.Exp> inMatrix; | ||
| 2811 | output list<DAE.Exp> outRow; | ||
| 2812 | algorithm | ||
| 2813 | 910 | outRow := List.map1r(inMatrix, simplifyScalarProduct, inRow); | |
| 2814 | end simplifyMatrixProduct3; | ||
| 2815 | |||
| 2816 | protected function simplifyMatrixProduct4 | ||
| 2817 | "Helper function to simplifyMatrixProduct2. Returns the dimensions of the | ||
| 2818 | matrix multiplication product for two matrices." | ||
| 2819 | input DAE.Exp inMatrix1; | ||
| 2820 | input DAE.Exp inMatrix2; | ||
| 2821 | output list<DAE.Dimension> outDimensions; | ||
| 2822 | algorithm | ||
| 2823 | outDimensions := match(inMatrix1, inMatrix2) | ||
| 2824 | local | ||
| 2825 | DAE.Dimension n, m, p; | ||
| 2826 | |||
| 2827 | // c[n] = a[n, m] * b[m] | ||
| 2828 | case (DAE.ARRAY(ty = DAE.T_ARRAY(dims = {n, _})), | ||
| 2829 | DAE.ARRAY(ty = DAE.T_ARRAY(dims = {_}))) | ||
| 2830 | then {n}; | ||
| 2831 | |||
| 2832 | // c[m] = a[n] * b[n, m] | ||
| 2833 | case (DAE.ARRAY(ty = DAE.T_ARRAY(dims = {_})), | ||
| 2834 | DAE.ARRAY(ty = DAE.T_ARRAY(dims = {m, _}))) | ||
| 2835 | then {m}; | ||
| 2836 | |||
| 2837 | // c[n, p] = a[n, m] * b[m, p] | ||
| 2838 | case (DAE.ARRAY(ty = DAE.T_ARRAY(dims = {n, _})), | ||
| 2839 | DAE.ARRAY(ty = DAE.T_ARRAY(dims = {p, _}))) | ||
| 2840 | then {n, p}; | ||
| 2841 | |||
| 2842 | end match; | ||
| 2843 | end simplifyMatrixProduct4; | ||
| 2844 | |||
| 2845 | protected function simplifyBinarySortConstants | ||
| 2846 | "author: PA | ||
| 2847 | Sorts all constants of a sum or product to the | ||
| 2848 | beginning of the expression. | ||
| 2849 | Also combines expressions like 2a+4a and aaa+3a^3." | ||
| 2850 | input DAE.Exp inExp; | ||
| 2851 | output DAE.Exp outExp; | ||
| 2852 | algorithm | ||
| 2853 | outExp := matchcontinue inExp | ||
| 2854 | local | ||
| 2855 | list<DAE.Exp> e_lst,const_es1,notconst_es1; | ||
| 2856 | DAE.Exp res,e,e1,e2,res1,res2; | ||
| 2857 | Type tp; | ||
| 2858 | |||
| 2859 | // e1 * e2 | ||
| 2860 | case e as DAE.BINARY(operator = DAE.MUL()) | ||
| 2861 | algorithm | ||
| 2862 | ✗ | res := simplifyBinarySortConstantsMul(e); | |
| 2863 | then | ||
| 2864 | res; | ||
| 2865 | |||
| 2866 | // e1 / e2 | ||
| 2867 | case DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = tp),exp2 = e2) | ||
| 2868 | algorithm | ||
| 2869 | ✗ | e1 := simplifyBinarySortConstantsMul(e1); | |
| 2870 | ✗ | e2 := simplifyBinarySortConstantsMul(e2); | |
| 2871 | ✗ | then | |
| 2872 | DAE.BINARY(e1,DAE.DIV(tp),e2); | ||
| 2873 | |||
| 2874 | // e1 + e2 | ||
| 2875 | case e as DAE.BINARY(operator = DAE.ADD()) | ||
| 2876 | algorithm | ||
| 2877 | ✗ | e_lst := Expression.terms(e); | |
| 2878 | //e_lst_1 = List.map(e_lst,simplify2); | ||
| 2879 | ✗ | (const_es1, notconst_es1) := | |
| 2880 | List.splitOnTrue(e_lst, Expression.isConstValue); | ||
| 2881 | ✗ | if not listEmpty(const_es1) then | |
| 2882 | ✗ | res1 := simplifyBinaryAddConstants(const_es1); | |
| 2883 | ✗ | res2 := Expression.makeSum1(notconst_es1); // Cannot simplify this, if const_es1_1 empty => infinite recursion. | |
| 2884 | ✗ | res := Expression.expAdd(res1, res2); | |
| 2885 | else | ||
| 2886 | res := inExp; | ||
| 2887 | end if; | ||
| 2888 | then | ||
| 2889 | res; | ||
| 2890 | |||
| 2891 | // return e | ||
| 2892 | else inExp; | ||
| 2893 | |||
| 2894 | end matchcontinue; | ||
| 2895 | end simplifyBinarySortConstants; | ||
| 2896 | |||
| 2897 | protected function simplifyBinaryCoeff | ||
| 2898 | "author: PA | ||
| 2899 | Combines expressions like 2a+4a and aaa+3a^3, etc" | ||
| 2900 | input DAE.Exp inExp; | ||
| 2901 | output DAE.Exp outExp; | ||
| 2902 | algorithm | ||
| 2903 | outExp := matchcontinue inExp | ||
| 2904 | local | ||
| 2905 | list<DAE.Exp> e_lst,e_lst_1,e1_lst,e2_lst,e2_lst_1; | ||
| 2906 | DAE.Exp res,e,e1,e2; | ||
| 2907 | Type tp; | ||
| 2908 | |||
| 2909 | case e as DAE.BINARY(operator = DAE.MUL(tp)) | ||
| 2910 | guard Types.isScalarReal(tp) | ||
| 2911 | algorithm | ||
| 2912 | 2867073 | e_lst := Expression.factors(e); | |
| 2913 | 2867073 | e_lst_1 := simplifyMul(e_lst); | |
| 2914 | 2867073 | res := Expression.makeProductLst(e_lst_1); | |
| 2915 | then | ||
| 2916 | res; | ||
| 2917 | |||
| 2918 | case DAE.BINARY(exp1 = e1,operator = DAE.DIV(),exp2 = e2) | ||
| 2919 | algorithm | ||
| 2920 |
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|
133799 | false := Expression.isZero(e2); |
| 2921 | 133156 | e1_lst := Expression.factors(e1); | |
| 2922 | 133156 | e2_lst := Expression.factors(e2); | |
| 2923 | 133156 | e2_lst_1 := List.map(e2_lst, Expression.inverseFactors); | |
| 2924 | 133156 | e_lst := listAppend(e1_lst, e2_lst_1); | |
| 2925 | 133156 | e_lst_1 := simplifyMul(e_lst); | |
| 2926 | 133156 | res := Expression.makeProductLst(e_lst_1); | |
| 2927 | then | ||
| 2928 | res; | ||
| 2929 | |||
| 2930 | case e as DAE.BINARY(operator = DAE.ADD()) | ||
| 2931 | algorithm | ||
| 2932 | 763730 | e_lst := Expression.terms(e); | |
| 2933 | 763730 | e_lst_1 := simplifyAdd(e_lst); | |
| 2934 | 763730 | res := Expression.makeSum(e_lst_1); | |
| 2935 | then | ||
| 2936 | res; | ||
| 2937 | |||
| 2938 | case DAE.BINARY(exp1 = e1,operator = DAE.SUB(),exp2 = e2) | ||
| 2939 | algorithm | ||
| 2940 | 461153 | e1_lst := Expression.terms(e1); | |
| 2941 | 461153 | e2_lst := Expression.terms(e2); | |
| 2942 | 461153 | e2_lst := List.map(e2_lst, Expression.negate); | |
| 2943 | 461153 | e_lst := listAppend(e1_lst, e2_lst); | |
| 2944 | 461153 | e_lst_1 := simplifyAdd(e_lst); | |
| 2945 | 461153 | res := Expression.makeSum(e_lst_1); | |
| 2946 | then | ||
| 2947 | res; | ||
| 2948 | |||
| 2949 | else inExp; | ||
| 2950 | |||
| 2951 | end matchcontinue; | ||
| 2952 | end simplifyBinaryCoeff; | ||
| 2953 | |||
| 2954 | protected function simplifyBinaryAddConstants | ||
| 2955 | "author: PA | ||
| 2956 | Adds all expressions in the list, given that they are constant." | ||
| 2957 | input list<DAE.Exp> inExpLst; | ||
| 2958 | output DAE.Exp outExp; | ||
| 2959 | protected | ||
| 2960 | Type tp; | ||
| 2961 | list<DAE.Exp> es; | ||
| 2962 | algorithm | ||
| 2963 |
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|
1321332 | outExp :: es := inExpLst; |
| 2964 | 1321332 | tp := Expression.typeof(outExp); | |
| 2965 |
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|
1324244 | for e in es loop |
| 2966 | 2912 | outExp := simplifyBinaryConst(DAE.ADD(tp), outExp, e); | |
| 2967 | end for; | ||
| 2968 | |||
| 2969 | end simplifyBinaryAddConstants; | ||
| 2970 | |||
| 2971 | protected function simplifyBinaryMulConstants | ||
| 2972 | "author: PA | ||
| 2973 | Multiplies all expressions in the list, given that they are constant." | ||
| 2974 | input list<DAE.Exp> inExpLst; | ||
| 2975 | output DAE.Exp outExp; | ||
| 2976 | protected | ||
| 2977 | list<DAE.Exp> es; | ||
| 2978 | Type tp; | ||
| 2979 | algorithm | ||
| 2980 |
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|
1156665 | outExp :: es := inExpLst; |
| 2981 | 1156665 | tp := Expression.typeof(outExp); | |
| 2982 |
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|
1159095 | for e in es loop |
| 2983 | 7114 | outExp := simplifyBinaryConst(DAE.MUL(tp), outExp, e); | |
| 2984 | end for; | ||
| 2985 | end simplifyBinaryMulConstants; | ||
| 2986 | |||
| 2987 | protected function simplifyMul | ||
| 2988 | "author: PA | ||
| 2989 | Simplifies expressions like a*a*a*b*a*b*a" | ||
| 2990 | input list<DAE.Exp> expl; | ||
| 2991 | output list<DAE.Exp> expl_1; | ||
| 2992 | protected | ||
| 2993 | list<tuple<DAE.Exp, Real>> exp_const,exp_const_1; | ||
| 2994 | algorithm | ||
| 2995 | 4152079 | exp_const := List.map(expl, simplifyBinaryMulCoeff2); | |
| 2996 | 4152079 | exp_const_1 := simplifyMulJoinFactors(exp_const); | |
| 2997 | 4152079 | expl_1 := simplifyMulMakePow(exp_const_1); | |
| 2998 | end simplifyMul; | ||
| 2999 | |||
| 3000 | protected function simplifyMulJoinFactors | ||
| 3001 | " author: PA | ||
| 3002 | Helper function to simplifyMul. | ||
| 3003 | Joins expressions that have the same base. | ||
| 3004 | E.g. {(a,2), (a,4), (b,2)} => {(a,6), (b,2)}" | ||
| 3005 | input list<tuple<DAE.Exp, Real>> inTplExpRealLst; | ||
| 3006 | output list<tuple<DAE.Exp, Real>> outTplExpRealLst = {}; | ||
| 3007 | protected | ||
| 3008 | list<tuple<DAE.Exp, Real>> tplExpRealLst = inTplExpRealLst; | ||
| 3009 | DAE.Exp e; | ||
| 3010 | Real coeff, coeff2; | ||
| 3011 | algorithm | ||
| 3012 | |||
| 3013 |
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|
11913977 | while not listEmpty(tplExpRealLst) loop |
| 3014 | 7761898 | (e, coeff) :: tplExpRealLst := tplExpRealLst; | |
| 3015 | 7761898 | (coeff2, tplExpRealLst) := simplifyMulJoinFactorsFind(e, tplExpRealLst); | |
| 3016 | 7761898 | coeff := coeff + coeff2; | |
| 3017 | 7761898 | outTplExpRealLst := (e, coeff) :: outTplExpRealLst; | |
| 3018 | end while; | ||
| 3019 | |||
| 3020 | // outTplExpRealLst := listReverse(outTplExpRealLst); | ||
| 3021 | |||
| 3022 | end simplifyMulJoinFactors; | ||
| 3023 | |||
| 3024 | protected function simplifyMulJoinFactorsFind | ||
| 3025 | "author: PA | ||
| 3026 | Helper function to simplifyMulJoinFactors. | ||
| 3027 | Searches rest of list to find all occurences of a base." | ||
| 3028 | input DAE.Exp inExp; | ||
| 3029 | input list<tuple<DAE.Exp, Real>> inTplExpRealLst; | ||
| 3030 | output Real outReal = 0.0; | ||
| 3031 | output list<tuple<DAE.Exp, Real>> outTplExpRealLst = {}; | ||
| 3032 | protected | ||
| 3033 | tuple<DAE.Exp, Real> tplExpReal; | ||
| 3034 | algorithm | ||
| 3035 |
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|
12087141 | for tplExpReal in inTplExpRealLst loop |
| 3036 | |||
| 3037 | (outReal,outTplExpRealLst) := match tplExpReal | ||
| 3038 | local | ||
| 3039 | Real coeff; | ||
| 3040 | DAE.Exp e2,e1; | ||
| 3041 | DAE.Operator op; | ||
| 3042 | |||
| 3043 | case (e2,coeff) /* e1 == e2 */ | ||
| 3044 | guard ExpressionBasics.expEqual(inExp, e2) | ||
| 3045 | 5689 | then | |
| 3046 | (coeff + outReal, outTplExpRealLst); | ||
| 3047 | |||
| 3048 | case (DAE.BINARY(exp1 = e1,operator = op as DAE.DIV(),exp2 = e2),coeff) // pow(a/b,n) * pow(b/a,m) = pow(a/b,n-m) | ||
| 3049 | guard if Expression.isOne(e1) then ExpressionBasics.expEqual(inExp, e2) else ExpressionBasics.expEqual(inExp, DAE.BINARY(e2, op, e1)) | ||
| 3050 | 39 | then | |
| 3051 | (outReal - coeff, outTplExpRealLst); | ||
| 3052 | |||
| 3053 | else /* not ExpressionBasics.expEqual */ | ||
| 3054 | (outReal, tplExpReal :: outTplExpRealLst); | ||
| 3055 | end match; | ||
| 3056 | |||
| 3057 | end for; | ||
| 3058 | |||
| 3059 | 7761898 | outTplExpRealLst := listReverse(outTplExpRealLst); | |
| 3060 | end simplifyMulJoinFactorsFind; | ||
| 3061 | |||
| 3062 | protected function simplifyMulMakePow | ||
| 3063 | "author: PA | ||
| 3064 | Helper function to simplifyMul. | ||
| 3065 | Makes each item in the list into a pow | ||
| 3066 | expression, except when exponent is 1.0." | ||
| 3067 | input list<tuple<DAE.Exp, Real>> inTplExpRealLst; | ||
| 3068 | output list<DAE.Exp> outExpLst = {}; | ||
| 3069 | protected | ||
| 3070 | tuple<DAE.Exp, Real> tplExpReal; | ||
| 3071 | DAE.Exp e; | ||
| 3072 | Real r; | ||
| 3073 | algorithm | ||
| 3074 |
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|
11913977 | for tplExpReal in inTplExpRealLst loop |
| 3075 |
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|
7761898 | (e,r) := tplExpReal; |
| 3076 |
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|
7761898 | outExpLst := if r == 1.0 then e :: outExpLst else DAE.BINARY(e,DAE.POW(DAE.T_REAL_DEFAULT),DAE.RCONST(r)) :: outExpLst; |
| 3077 | end for; | ||
| 3078 | end simplifyMulMakePow; | ||
| 3079 | |||
| 3080 | protected function simplifyAdd | ||
| 3081 | "author: PA | ||
| 3082 | Simplifies terms like 2a+4b+2a+a+b" | ||
| 3083 | input list<DAE.Exp> inExpLst; | ||
| 3084 | output list<DAE.Exp> outExpLst; | ||
| 3085 | protected | ||
| 3086 | list<tuple<DAE.Exp, Real>> coeffs; | ||
| 3087 | algorithm | ||
| 3088 | try | ||
| 3089 | 1224883 | coeffs := List.map(inExpLst, simplifyBinaryAddCoeff2); | |
| 3090 | 1224883 | coeffs := simplifyAddJoinTerms(coeffs); | |
| 3091 | 1224883 | outExpLst := simplifyAddMakeMul(coeffs); | |
| 3092 | else | ||
| 3093 | ✗ | if Flags.isSet(Flags.FAILTRACE) then | |
| 3094 | ✗ | Debug.trace("- ExpressionSimplify.simplifyAdd failed\n"); | |
| 3095 | end if; | ||
| 3096 | ✗ | fail(); | |
| 3097 | end try; | ||
| 3098 | end simplifyAdd; | ||
| 3099 | |||
| 3100 | protected function simplifyAddJoinTerms | ||
| 3101 | "O(n) | ||
| 3102 | author: PA | ||
| 3103 | Helper function to simplifyAdd. | ||
| 3104 | Join all terms with the same expression. | ||
| 3105 | i.e. 2a+4a gives an element (a,6) in the list." | ||
| 3106 | input list<tuple<DAE.Exp, Real>> inTplExpRealLst; | ||
| 3107 | output list<tuple<DAE.Exp, Real>> outTplExpRealLst; | ||
| 3108 | protected | ||
| 3109 | function addCoeff | ||
| 3110 | input Option<Real> oldCoeff; | ||
| 3111 | input Real newCoeff; | ||
| 3112 | output Real coeff; | ||
| 3113 | algorithm | ||
| 3114 |
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|
162081 | coeff := if isSome(oldCoeff) then Util.getOption(oldCoeff) + newCoeff else newCoeff; |
| 3115 | end addCoeff; | ||
| 3116 | algorithm | ||
| 3117 | outTplExpRealLst := match inTplExpRealLst | ||
| 3118 | local | ||
| 3119 | DAE.Exp exp1, exp2, exp3; | ||
| 3120 | Real coeff1, coeff2, coeff3; | ||
| 3121 | UnorderedMap<DAE.Exp, Real> coeff_map; | ||
| 3122 | |||
| 3123 | // explicitly roll out the small cases since they happen a lot | ||
| 3124 | case {} then {}; | ||
| 3125 | case {_} then inTplExpRealLst; | ||
| 3126 | |||
| 3127 | case {(exp1, coeff1), (exp2, coeff2)} | ||
| 3128 |
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|
1120459 | then if ExpressionBasics.expEqual(exp1, exp2) then {(exp1, coeff1 + coeff2)} else inTplExpRealLst; |
| 3129 | |||
| 3130 | case {(exp1, coeff1), (exp2, coeff2), (exp3, coeff3)} algorithm | ||
| 3131 |
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|
73016 | if ExpressionBasics.expEqual(exp1, exp2) then |
| 3132 |
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|
53 | if ExpressionBasics.expEqual(exp1, exp3) then |
| 3133 | ✗ | outTplExpRealLst := {(exp1, coeff1 + coeff2 + coeff3)}; | |
| 3134 | else | ||
| 3135 | 53 | outTplExpRealLst := {(exp1, coeff1 + coeff2), (exp3, coeff3)}; | |
| 3136 | end if; | ||
| 3137 | elseif ExpressionBasics.expEqual(exp1, exp3) then | ||
| 3138 | 1439 | outTplExpRealLst := {(exp1, coeff1 + coeff3), (exp2, coeff2)}; | |
| 3139 | elseif ExpressionBasics.expEqual(exp2, exp3) then | ||
| 3140 | 76 | outTplExpRealLst := {(exp1, coeff1), (exp2, coeff2 + coeff3)}; | |
| 3141 | else | ||
| 3142 | outTplExpRealLst := inTplExpRealLst; | ||
| 3143 | end if; | ||
| 3144 | then outTplExpRealLst; | ||
| 3145 | |||
| 3146 | // general case, this is O(n) but has a small overhead | ||
| 3147 | else algorithm | ||
| 3148 | 31408 | coeff_map := UnorderedMap.new<Real>(ExpressionBasics.hashExp, ExpressionBasics.expEqual, listLength(inTplExpRealLst)); | |
| 3149 |
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|
193489 | for tpl in inTplExpRealLst loop |
| 3150 | 162081 | (exp1, coeff1) := tpl; | |
| 3151 | // set the coefficient of exp1 to coeff1, add the previous coefficient if exp1 is already in the map | ||
| 3152 | 162081 | UnorderedMap.addUpdate(exp1, function addCoeff(newCoeff = coeff1), coeff_map); | |
| 3153 | end for; | ||
| 3154 | 31408 | then UnorderedMap.toList(coeff_map); | |
| 3155 | end match; | ||
| 3156 | end simplifyAddJoinTerms; | ||
| 3157 | |||
| 3158 | protected function simplifyAddMakeMul | ||
| 3159 | "author: PA | ||
| 3160 | Makes multiplications of each element | ||
| 3161 | in the list, except for coefficient 1.0" | ||
| 3162 | input list<tuple<DAE.Exp, Real>> inTplExpRealLst; | ||
| 3163 | output list<DAE.Exp> outExpLst = {}; | ||
| 3164 | algorithm | ||
| 3165 |
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|
3844707 | outExpLst := list(match tplExpReal |
| 3166 | local | ||
| 3167 | DAE.Exp e; | ||
| 3168 | Real r; | ||
| 3169 | case (e, 1.0) then e; | ||
| 3170 | 385357 | case (e, -1.0) then Expression.negate(e); | |
| 3171 | case (e, r) | ||
| 3172 | then match Expression.typeof(e) | ||
| 3173 | 44 | case DAE.T_INTEGER() then DAE.BINARY(DAE.ICONST(realInt(r)), DAE.MUL(DAE.T_INTEGER_DEFAULT), e); | |
| 3174 | 461169 | else DAE.BINARY(DAE.RCONST(r), DAE.MUL(DAE.T_REAL_DEFAULT), e); | |
| 3175 | end match; | ||
| 3176 | end match for tplExpReal in inTplExpRealLst); | ||
| 3177 | end simplifyAddMakeMul; | ||
| 3178 | |||
| 3179 | protected function simplifyBinaryAddCoeff2 | ||
| 3180 | "This function checks for x+x+x+x and returns (x,4.0)" | ||
| 3181 | input DAE.Exp inExp; | ||
| 3182 | output tuple<DAE.Exp, Real> outRes; | ||
| 3183 | algorithm | ||
| 3184 | outRes := match inExp | ||
| 3185 | local | ||
| 3186 | DAE.Exp exp,e1,e2; | ||
| 3187 | Real coeff,coeff_1; | ||
| 3188 | Integer icoeff; | ||
| 3189 | |||
| 3190 | 871733 | case DAE.CREF() then ((inExp,1.0)); | |
| 3191 | |||
| 3192 | case DAE.UNARY(operator = DAE.UMINUS(ty = DAE.T_REAL()), exp = exp) | ||
| 3193 | algorithm | ||
| 3194 | 385708 | (exp,coeff) := simplifyBinaryAddCoeff2(exp); | |
| 3195 | 385708 | coeff := realMul(-1.0,coeff); | |
| 3196 | 385708 | then ((exp,coeff)); | |
| 3197 | |||
| 3198 | case DAE.BINARY(exp1 = DAE.RCONST(real = coeff),operator = DAE.MUL(),exp2 = e1) | ||
| 3199 | 451065 | then ((e1,coeff)); | |
| 3200 | |||
| 3201 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = DAE.RCONST(real = coeff)) | ||
| 3202 | 8397 | then ((e1,coeff)); | |
| 3203 | |||
| 3204 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = DAE.ICONST(integer = icoeff)) | ||
| 3205 | algorithm | ||
| 3206 | 6 | coeff_1 := intReal(icoeff); | |
| 3207 | 6 | then | |
| 3208 | ((e1,coeff_1)); | ||
| 3209 | |||
| 3210 | case DAE.BINARY(exp1 = DAE.ICONST(integer = icoeff),operator = DAE.MUL(),exp2 = e1) | ||
| 3211 | algorithm | ||
| 3212 | 38 | coeff_1 := intReal(icoeff); | |
| 3213 | 38 | then | |
| 3214 | ((e1,coeff_1)); | ||
| 3215 | |||
| 3216 | case DAE.BINARY(exp1 = e1,operator = DAE.ADD(),exp2 = e2) | ||
| 3217 | guard | ||
| 3218 | ExpressionBasics.expEqual(e1, e2) | ||
| 3219 | ✗ | then | |
| 3220 | ((e1,2.0)); | ||
| 3221 | |||
| 3222 | 1290808 | else ((inExp,1.0)); | |
| 3223 | |||
| 3224 | end match; | ||
| 3225 | end simplifyBinaryAddCoeff2; | ||
| 3226 | |||
| 3227 | protected function simplifyBinaryMulCoeff2 | ||
| 3228 | "This function takes an expression XXXXX | ||
| 3229 | and return (X,5.0) to be used for X^5." | ||
| 3230 | input DAE.Exp inExp; | ||
| 3231 | output tuple<DAE.Exp, Real> outRes; | ||
| 3232 | algorithm | ||
| 3233 | outRes := match inExp | ||
| 3234 | local | ||
| 3235 | DAE.Exp e,e1,e2; | ||
| 3236 | Real coeff,coeff_1; | ||
| 3237 | Integer icoeff; | ||
| 3238 | |||
| 3239 | case e as DAE.CREF() | ||
| 3240 | 4571935 | then ((e,1.0)); | |
| 3241 | |||
| 3242 | case DAE.BINARY(exp1 = e1,operator = DAE.POW(),exp2 = DAE.RCONST(real = coeff)) | ||
| 3243 | 72274 | then ((e1,coeff)); | |
| 3244 | |||
| 3245 | case DAE.BINARY(exp1 = e1,operator = DAE.POW(),exp2 = DAE.UNARY(operator = DAE.UMINUS(), exp = DAE.RCONST(real = coeff))) | ||
| 3246 | algorithm | ||
| 3247 | 28033 | coeff_1 := 0.0 - coeff; | |
| 3248 | 28033 | then | |
| 3249 | ((e1,coeff_1)); | ||
| 3250 | |||
| 3251 | case DAE.BINARY(exp1 = e1, operator = DAE.POW(), exp2 = DAE.ICONST(integer = icoeff)) | ||
| 3252 | algorithm | ||
| 3253 | ✗ | coeff_1 := intReal(icoeff); | |
| 3254 | ✗ | then | |
| 3255 | ((e1,coeff_1)); | ||
| 3256 | |||
| 3257 | case DAE.BINARY(exp1 = e1, operator = DAE.POW(), exp2 = DAE.UNARY(operator = DAE.UMINUS(), exp = DAE.ICONST(integer = icoeff))) | ||
| 3258 | algorithm | ||
| 3259 | ✗ | coeff_1 := 0.0 - intReal(icoeff); | |
| 3260 | ✗ | then | |
| 3261 | ((e1,coeff_1)); | ||
| 3262 | |||
| 3263 | case DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2) | ||
| 3264 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 3265 | ✗ | then | |
| 3266 | ((e1,2.0)); | ||
| 3267 | |||
| 3268 | 3095384 | else ((inExp,1.0)); | |
| 3269 | |||
| 3270 | end match; | ||
| 3271 | end simplifyBinaryMulCoeff2; | ||
| 3272 | |||
| 3273 | public function simplifySumOperatorExpression | ||
| 3274 | " | ||
| 3275 | In: (a/b + c + d + e/b) | ||
| 3276 | In: operator in {MUL, DIV} | ||
| 3277 | In: b | ||
| 3278 | -> (a/b + c + d) operator b | ||
| 3279 | Out: a' + e' + (c + b) operator b | ||
| 3280 | |||
| 3281 | where a' = simplified(a operator b) and e' = simplified(e operator b) | ||
| 3282 | |||
| 3283 | author: Vitalij Ruge | ||
| 3284 | " | ||
| 3285 | input DAE.Exp iSum; | ||
| 3286 | input DAE.Operator iop "MUL or DIV"; | ||
| 3287 | input DAE.Exp iExp; | ||
| 3288 | output DAE.Exp oExp; | ||
| 3289 | protected | ||
| 3290 | list<DAE.Exp> T = Expression.termsExpandUnary(iSum); | ||
| 3291 | Boolean b "simplifed?"; | ||
| 3292 | DAE.Exp e, newE, sE; | ||
| 3293 | DAE.Type tp = Expression.typeofOp(iop); | ||
| 3294 | algorithm | ||
| 3295 | 59316 | oExp := Expression.makeConstZero(tp); | |
| 3296 | sE := oExp; | ||
| 3297 | |||
| 3298 |
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|
144509 | for elem in T loop |
| 3299 | 85193 | e := DAE.BINARY(elem,iop,iExp); | |
| 3300 | 85193 | newE := simplifyBinaryCoeff(e); | |
| 3301 | 85193 | b := not ExpressionBasics.expEqual(e, newE); | |
| 3302 |
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|
85193 | if b then |
| 3303 | 83855 | sE := Expression.expAdd(sE, newE); | |
| 3304 | else | ||
| 3305 | 1338 | oExp := Expression.expAdd(oExp, elem); | |
| 3306 | end if; | ||
| 3307 | end for; | ||
| 3308 | |||
| 3309 | 59316 | e := DAE.BINARY(oExp, iop, iExp); | |
| 3310 | 59316 | oExp := Expression.expAdd(sE, e); | |
| 3311 | |||
| 3312 | end simplifySumOperatorExpression; | ||
| 3313 | |||
| 3314 | |||
| 3315 | protected function simplifyAsub0 "simplifies asub when expression already has been simplified with simplify1 | ||
| 3316 | Earlier these cases were directly in simplify1, but now they are here so simplify1 only is called once for | ||
| 3317 | the subexpression" | ||
| 3318 | input DAE.Exp ie; | ||
| 3319 | input Integer sub; | ||
| 3320 | input DAE.Exp inSubExp; | ||
| 3321 | output DAE.Exp res; | ||
| 3322 | algorithm | ||
| 3323 | res := match ie | ||
| 3324 | local | ||
| 3325 | Type t,t1; | ||
| 3326 | Boolean b, bstart, bstop; | ||
| 3327 | list<DAE.Exp> exps; | ||
| 3328 | list<list<DAE.Exp>> mexps; | ||
| 3329 | list<DAE.Exp> mexpl; | ||
| 3330 | DAE.Exp e1,e2,cond,exp,e; | ||
| 3331 | Integer istart,istop,istep,ival; | ||
| 3332 | Real rstart,rstop,rstep,rval; | ||
| 3333 | DAE.ComponentRef c,c_1; | ||
| 3334 | Operator op; | ||
| 3335 | |||
| 3336 | // subscript of an array | ||
| 3337 | case DAE.ARRAY(_,_,exps) | ||
| 3338 | algorithm | ||
| 3339 | 530157 | exp := listGet(exps, sub); | |
| 3340 | then | ||
| 3341 | exp; | ||
| 3342 | |||
| 3343 | case DAE.RANGE(start = DAE.BCONST(bstart), stop = DAE.BCONST(bstop)) | ||
| 3344 | algorithm | ||
| 3345 | ✗ | b := listGet(simplifyRangeBool(bstart, bstop), sub); | |
| 3346 | ✗ | then | |
| 3347 | DAE.BCONST(b); | ||
| 3348 | |||
| 3349 | case DAE.RANGE(start = DAE.ICONST(istart), step = NONE(), stop = DAE.ICONST(istop)) | ||
| 3350 | algorithm | ||
| 3351 | 3 | ival := listGet(simplifyRange(istart,1,istop),sub); | |
| 3352 | 3 | exp := DAE.ICONST(ival); | |
| 3353 | then exp; | ||
| 3354 | |||
| 3355 | case DAE.RANGE(start = DAE.ICONST(istart), step = SOME(DAE.ICONST(istep)), stop = DAE.ICONST(istop)) | ||
| 3356 | algorithm | ||
| 3357 | 5 | ival := listGet(simplifyRange(istart,istep,istop),sub); | |
| 3358 | 5 | exp := DAE.ICONST(ival); | |
| 3359 | then exp; | ||
| 3360 | |||
| 3361 | case DAE.RANGE(start = DAE.RCONST(rstart), step = NONE(), stop = DAE.RCONST(rstop)) | ||
| 3362 | algorithm | ||
| 3363 | 7 | rval := listGet(simplifyRangeReal(rstart,1.0,rstop),sub); | |
| 3364 | 7 | exp := DAE.RCONST(rval); | |
| 3365 | then exp; | ||
| 3366 | |||
| 3367 | case DAE.RANGE(start = DAE.RCONST(rstart), step = SOME(DAE.RCONST(rstep)), stop = DAE.RCONST(rstop)) | ||
| 3368 | algorithm | ||
| 3369 | 4 | rval := listGet(simplifyRangeReal(rstart,rstep,rstop),sub); | |
| 3370 | 4 | exp := DAE.RCONST(rval); | |
| 3371 | then exp; | ||
| 3372 | |||
| 3373 | // subscript of a matrix | ||
| 3374 | case DAE.MATRIX(t,_,mexps) | ||
| 3375 | algorithm | ||
| 3376 | 168688 | t1 := Expression.unliftArray(t); | |
| 3377 | 168688 | mexpl := listGet(mexps, sub); | |
| 3378 | 168688 | then | |
| 3379 | DAE.ARRAY(t1,true,mexpl); | ||
| 3380 | |||
| 3381 | // subscript of an if-expression | ||
| 3382 | case DAE.IFEXP(cond,e1,e2) | ||
| 3383 | algorithm | ||
| 3384 | 769 | e1 := Expression.makeASUB(e1,{inSubExp}); | |
| 3385 | 769 | e2 := Expression.makeASUB(e2,{inSubExp}); | |
| 3386 | 769 | e := DAE.IFEXP(cond,e1,e2); | |
| 3387 | then | ||
| 3388 | e; | ||
| 3389 | |||
| 3390 | // name subscript | ||
| 3391 | case DAE.CREF(c,t) | ||
| 3392 | algorithm | ||
| 3393 |
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|
53161 | true := Types.isArray(t); |
| 3394 | 53161 | t := Expression.unliftArray(t); | |
| 3395 | 53161 | c_1 := simplifyAsubCref(c, inSubExp); | |
| 3396 | 53161 | exp := Expression.makeCrefExp(c_1, t); | |
| 3397 | then | ||
| 3398 | exp; | ||
| 3399 | |||
| 3400 | // BINARAY | ||
| 3401 | case DAE.BINARY(e1,op,e2) | ||
| 3402 | guard Expression.isMulOrDiv(op) or Expression.isAddOrSub(op) | ||
| 3403 | algorithm | ||
| 3404 | 5978 | e1 := Expression.makeASUB(e1,{inSubExp}); | |
| 3405 | 5978 | e2 := Expression.makeASUB(e2,{inSubExp}); | |
| 3406 | //wrap operator | ||
| 3407 |
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|
5978 | e := if Expression.isMul(op) then |
| 3408 | Expression.expMul(e1,e2) | ||
| 3409 | elseif Expression.isDiv(op) then | ||
| 3410 | Expression.makeDiv(e1,e2) | ||
| 3411 | elseif Expression.isAdd(op) then | ||
| 3412 | Expression.expAdd(e1,e2) | ||
| 3413 | else | ||
| 3414 | Expression.expSub(e1,e2); | ||
| 3415 | then | ||
| 3416 | e; | ||
| 3417 | |||
| 3418 | end match; | ||
| 3419 | end simplifyAsub0; | ||
| 3420 | |||
| 3421 | protected function simplifyAsubCref | ||
| 3422 | input DAE.ComponentRef cr; | ||
| 3423 | input DAE.Exp sub; | ||
| 3424 | output DAE.ComponentRef res; | ||
| 3425 | algorithm | ||
| 3426 | res := matchcontinue cr | ||
| 3427 | local | ||
| 3428 | Type t2; | ||
| 3429 | DAE.ComponentRef c,c_1; | ||
| 3430 | list<Subscript> s,s_1; | ||
| 3431 | String idn; | ||
| 3432 | DAE.Dimensions dims; | ||
| 3433 | |||
| 3434 | // simple name subscript | ||
| 3435 | case DAE.CREF_IDENT(idn,t2,s) | ||
| 3436 | algorithm | ||
| 3437 | /* TODO: Make sure that the IDENT has enough dimensions? */ | ||
| 3438 | 53161 | s_1 := Expression.subscriptsAppend(s, sub); | |
| 3439 | 53161 | c_1 := ComponentReferenceBasics.makeCrefIdent(idn,t2,s_1); | |
| 3440 | then | ||
| 3441 | c_1; | ||
| 3442 | |||
| 3443 | // qualified name subscript | ||
| 3444 | case DAE.CREF_QUAL(idn,t2 as DAE.T_ARRAY(dims=dims),s,c) | ||
| 3445 | algorithm | ||
| 3446 |
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|
8656 | true := listLength(dims) > listLength(s); |
| 3447 | ✗ | s_1 := Expression.subscriptsAppend(s, sub); | |
| 3448 | ✗ | c_1 := ComponentReferenceBasics.makeCrefQual(idn,t2,s_1,c); | |
| 3449 | then | ||
| 3450 | c_1; | ||
| 3451 | |||
| 3452 | case DAE.CREF_QUAL(idn, t2, s, c) | ||
| 3453 | algorithm | ||
| 3454 | 175864 | s := Expression.subscriptsReplaceSlice(s, DAE.INDEX(sub)); | |
| 3455 | ✗ | then | |
| 3456 | ComponentReferenceBasics.makeCrefQual(idn, t2, s, c); | ||
| 3457 | |||
| 3458 | case DAE.CREF_QUAL(idn,t2,s,c) | ||
| 3459 | algorithm | ||
| 3460 | 175864 | c_1 := simplifyAsubCref(c,sub); | |
| 3461 | 175864 | c_1 := ComponentReferenceBasics.makeCrefQual(idn,t2,s,c_1); | |
| 3462 | then | ||
| 3463 | c_1; | ||
| 3464 | |||
| 3465 | end matchcontinue; | ||
| 3466 | end simplifyAsubCref; | ||
| 3467 | |||
| 3468 | protected function simplifyAsub | ||
| 3469 | "This function simplifies array subscripts on vector operations" | ||
| 3470 | input DAE.Exp inExp; | ||
| 3471 | input DAE.Exp inSub; | ||
| 3472 | output DAE.Exp outExp; | ||
| 3473 | algorithm | ||
| 3474 | outExp := matchcontinue (inExp,inSub) | ||
| 3475 | local | ||
| 3476 | DAE.Exp e_1,e,e1_1,e2_1,e1,e2,exp,cond,sub; | ||
| 3477 | Type t,t_1,t2; | ||
| 3478 | Integer indx; | ||
| 3479 | Operator op,op2; | ||
| 3480 | Boolean b; | ||
| 3481 | list<DAE.Exp> exps,expl; | ||
| 3482 | list<list<DAE.Exp>> lstexps; | ||
| 3483 | list<DAE.ReductionIterator> iters; | ||
| 3484 | DAE.ReductionIterator iter; | ||
| 3485 | |||
| 3486 | case (e,sub) | ||
| 3487 | algorithm | ||
| 3488 | 905884 | exp := simplifyAsub0(e,Expression.expInt(sub), inSub); | |
| 3489 | then | ||
| 3490 | exp; | ||
| 3491 | |||
| 3492 | case (DAE.UNARY(operator = DAE.UMINUS_ARR(),exp = e),sub) | ||
| 3493 | algorithm | ||
| 3494 | 7182 | e_1 := simplifyAsub(e, sub); | |
| 3495 | ✗ | t2 := Expression.typeof(e_1); | |
| 3496 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3497 | ✗ | op2 := if b then DAE.UMINUS_ARR(t2) else DAE.UMINUS(t2); | |
| 3498 | ✗ | exp := DAE.UNARY(op2,e_1); | |
| 3499 | then | ||
| 3500 | exp; | ||
| 3501 | |||
| 3502 | case (DAE.LUNARY(operator = DAE.NOT(), exp = e), sub) | ||
| 3503 | algorithm | ||
| 3504 | ✗ | e_1 := simplifyAsub(e, sub); | |
| 3505 | ✗ | t2 := Expression.typeof(e_1); | |
| 3506 | ✗ | exp := DAE.LUNARY(DAE.NOT(t2), e_1); | |
| 3507 | then | ||
| 3508 | exp; | ||
| 3509 | |||
| 3510 | case (DAE.BINARY(exp1 = e1,operator = DAE.SUB_ARR(),exp2 = e2),sub) | ||
| 3511 | algorithm | ||
| 3512 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3513 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3514 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3515 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3516 | ✗ | op2 := if b then DAE.SUB_ARR(t2) else DAE.SUB(t2); | |
| 3517 | ✗ | exp := DAE.BINARY(e1_1,op2,e2_1); | |
| 3518 | then | ||
| 3519 | exp; | ||
| 3520 | |||
| 3521 | case (DAE.BINARY(exp1 = e1,operator = DAE.MUL_ARRAY_SCALAR(),exp2 = e2),sub) | ||
| 3522 | algorithm | ||
| 3523 | 1143 | e1_1 := simplifyAsub(e1, sub); | |
| 3524 | 732 | t2 := Expression.typeof(e1_1); | |
| 3525 | 732 | b := DAEUtil.expTypeArray(t2); | |
| 3526 |
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|
732 | op := if b then DAE.MUL_ARRAY_SCALAR(t2) else DAE.MUL(t2); |
| 3527 | 732 | exp := DAE.BINARY(e1_1,op,e2); | |
| 3528 | then | ||
| 3529 | exp; | ||
| 3530 | |||
| 3531 | case (DAE.BINARY(exp1 = e1,operator = DAE.ADD_ARRAY_SCALAR(),exp2 = e2),sub) | ||
| 3532 | algorithm | ||
| 3533 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3534 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3535 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3536 | ✗ | op := if b then DAE.ADD_ARRAY_SCALAR(t2) else DAE.ADD(t2); | |
| 3537 | ✗ | exp := DAE.BINARY(e1_1,op,e2); | |
| 3538 | then | ||
| 3539 | exp; | ||
| 3540 | |||
| 3541 | case (DAE.BINARY(exp1 = e1,operator = DAE.SUB_SCALAR_ARRAY(),exp2 = e2),sub) | ||
| 3542 | algorithm | ||
| 3543 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3544 | ✗ | t2 := Expression.typeof(e2_1); | |
| 3545 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3546 | ✗ | op := if b then DAE.SUB_SCALAR_ARRAY(t2) else DAE.SUB(t2); | |
| 3547 | ✗ | exp := DAE.BINARY(e1,op,e2_1); | |
| 3548 | then | ||
| 3549 | exp; | ||
| 3550 | |||
| 3551 | // For Matrix product M1 * M2 | ||
| 3552 | case (DAE.BINARY(exp1 = e1,operator = DAE.MUL_MATRIX_PRODUCT(),exp2 = e2),sub) | ||
| 3553 | algorithm | ||
| 3554 | 594 | e := simplifyMatrixProduct(e1,e2); | |
| 3555 | ✗ | e := simplifyAsub(e, sub); | |
| 3556 | then | ||
| 3557 | e; | ||
| 3558 | |||
| 3559 | case (DAE.BINARY(exp1 = e1,operator = DAE.DIV_SCALAR_ARRAY(),exp2 = e2),sub) | ||
| 3560 | algorithm | ||
| 3561 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3562 | ✗ | t2 := Expression.typeof(e2_1); | |
| 3563 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3564 | ✗ | op := if b then DAE.DIV_SCALAR_ARRAY(t2) else DAE.DIV(t2); | |
| 3565 | ✗ | exp := DAE.BINARY(e1,op,e2_1); | |
| 3566 | then | ||
| 3567 | exp; | ||
| 3568 | |||
| 3569 | case (DAE.BINARY(exp1 = e1,operator = DAE.DIV_ARRAY_SCALAR(),exp2 = e2),sub) | ||
| 3570 | algorithm | ||
| 3571 | 42 | e1_1 := simplifyAsub(e1, sub); | |
| 3572 | 42 | t2 := Expression.typeof(e1_1); | |
| 3573 | 42 | b := DAEUtil.expTypeArray(t2); | |
| 3574 |
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|
42 | op := if b then DAE.DIV_ARRAY_SCALAR(t2) else DAE.DIV(t2); |
| 3575 | 42 | exp := DAE.BINARY(e1_1,op,e2); | |
| 3576 | then | ||
| 3577 | exp; | ||
| 3578 | |||
| 3579 | case (DAE.BINARY(exp1 = e1,operator = DAE.POW_SCALAR_ARRAY(),exp2 = e2),sub) | ||
| 3580 | algorithm | ||
| 3581 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3582 | ✗ | t2 := Expression.typeof(e2_1); | |
| 3583 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3584 | ✗ | op := if b then DAE.POW_SCALAR_ARRAY(t2) else DAE.POW(t2); | |
| 3585 | ✗ | exp := DAE.BINARY(e1,op,e2_1); | |
| 3586 | then | ||
| 3587 | exp; | ||
| 3588 | |||
| 3589 | case (DAE.BINARY(exp1 = e1,operator = DAE.POW_ARRAY_SCALAR(),exp2 = e2),sub) | ||
| 3590 | algorithm | ||
| 3591 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3592 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3593 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3594 | ✗ | op := if b then DAE.POW_ARRAY_SCALAR(t2) else DAE.POW(t2); | |
| 3595 | ✗ | exp := DAE.BINARY(e1_1,op,e2); | |
| 3596 | then | ||
| 3597 | exp; | ||
| 3598 | |||
| 3599 | case (DAE.BINARY(exp1 = e1,operator = DAE.ADD_ARR(),exp2 = e2),sub) | ||
| 3600 | algorithm | ||
| 3601 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3602 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3603 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3604 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3605 | ✗ | op2 := if b then DAE.ADD_ARR(t2) else DAE.ADD(t2); | |
| 3606 | ✗ | exp := DAE.BINARY(e1_1,op2,e2_1); | |
| 3607 | then | ||
| 3608 | exp; | ||
| 3609 | |||
| 3610 | case (DAE.BINARY(exp1 = e1,operator = DAE.MUL_ARR(),exp2 = e2),sub) | ||
| 3611 | algorithm | ||
| 3612 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3613 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3614 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3615 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3616 | ✗ | op2 := if b then DAE.MUL_ARR(t2) else DAE.MUL(t2); | |
| 3617 | ✗ | exp := DAE.BINARY(e1_1,op2,e2_1); | |
| 3618 | then | ||
| 3619 | exp; | ||
| 3620 | |||
| 3621 | case (DAE.BINARY(exp1 = e1,operator = DAE.DIV_ARR(),exp2 = e2),sub) | ||
| 3622 | algorithm | ||
| 3623 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3624 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3625 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3626 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3627 | ✗ | op2 := if b then DAE.DIV_ARR(t2) else DAE.DIV(t2); | |
| 3628 | ✗ | exp := DAE.BINARY(e1_1,op2,e2_1); | |
| 3629 | then | ||
| 3630 | exp; | ||
| 3631 | |||
| 3632 | case (DAE.BINARY(exp1 = e1,operator = DAE.POW_ARR2(),exp2 = e2),sub) | ||
| 3633 | algorithm | ||
| 3634 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3635 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3636 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3637 | ✗ | b := DAEUtil.expTypeArray(t2); | |
| 3638 | ✗ | op2 := if b then DAE.POW_ARR2(t2) else DAE.POW(t2); | |
| 3639 | ✗ | exp := DAE.BINARY(e1_1,op2,e2_1); | |
| 3640 | then | ||
| 3641 | exp; | ||
| 3642 | |||
| 3643 | case (DAE.LBINARY(exp1 = e1, operator = op, exp2 = e2), sub) | ||
| 3644 | algorithm | ||
| 3645 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3646 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3647 | ✗ | t2 := Expression.typeof(e1_1); | |
| 3648 | ✗ | op := Expression.setOpType(op, t2); | |
| 3649 | ✗ | exp := DAE.LBINARY(e1_1, op, e2_1); | |
| 3650 | then | ||
| 3651 | exp; | ||
| 3652 | |||
| 3653 | case (DAE.ARRAY(array = exps),sub) | ||
| 3654 | algorithm | ||
| 3655 | 3 | indx := Expression.expInt(sub); | |
| 3656 | 3 | exp := listGet(exps, indx); | |
| 3657 | then | ||
| 3658 | exp; | ||
| 3659 | |||
| 3660 | case (DAE.MATRIX(ty = t,matrix = lstexps),sub) | ||
| 3661 | algorithm | ||
| 3662 | ✗ | indx := Expression.expInt(sub); | |
| 3663 | ✗ | expl := listGet(lstexps, indx); | |
| 3664 | ✗ | t_1 := Expression.unliftArray(t); | |
| 3665 | ✗ | then DAE.ARRAY(t_1,true,expl); | |
| 3666 | |||
| 3667 | case(DAE.IFEXP(cond,e1,e2),sub) | ||
| 3668 | algorithm | ||
| 3669 | ✗ | e1_1 := simplifyAsub(e1, sub); | |
| 3670 | ✗ | e2_1 := simplifyAsub(e2, sub); | |
| 3671 | ✗ | then DAE.IFEXP(cond,e1_1,e2_1); | |
| 3672 | |||
| 3673 | case(DAE.REDUCTION(DAE.REDUCTIONINFO(path=Absyn.IDENT("array"),iterType=Absyn.THREAD()),exp,iters), sub) | ||
| 3674 | algorithm | ||
| 3675 | ✗ | exp := List.fold1(iters,simplifyAsubArrayReduction,sub,exp); | |
| 3676 | then exp; | ||
| 3677 | |||
| 3678 | case(DAE.REDUCTION(DAE.REDUCTIONINFO(path=Absyn.IDENT("array"),iterType=Absyn.COMBINE()),exp,{iter}), sub) | ||
| 3679 | algorithm | ||
| 3680 | ✗ | exp := simplifyAsubArrayReduction(iter,sub,exp); | |
| 3681 | then exp; | ||
| 3682 | |||
| 3683 | end matchcontinue; | ||
| 3684 | end simplifyAsub; | ||
| 3685 | |||
| 3686 | protected function simplifyAsubArrayReduction | ||
| 3687 | input DAE.ReductionIterator iter; | ||
| 3688 | input DAE.Exp sub; | ||
| 3689 | input DAE.Exp acc; | ||
| 3690 | output DAE.Exp res; | ||
| 3691 | algorithm | ||
| 3692 | res := match iter | ||
| 3693 | local | ||
| 3694 | DAE.Exp exp; | ||
| 3695 | String id; | ||
| 3696 | case DAE.REDUCTIONITER(id=id,exp=exp,guardExp=NONE()) | ||
| 3697 | algorithm | ||
| 3698 | ✗ | exp := Expression.makeASUB(exp, {sub}); | |
| 3699 | ✗ | exp := replaceIteratorWithExp(exp, acc, id); | |
| 3700 | then exp; | ||
| 3701 | end match; | ||
| 3702 | end simplifyAsubArrayReduction; | ||
| 3703 | |||
| 3704 | protected function simplifyAsubOperator | ||
| 3705 | input DAE.Exp inExp1; | ||
| 3706 | input Operator inOperator2; | ||
| 3707 | input Operator inOperator3; | ||
| 3708 | output Operator outOperator; | ||
| 3709 | algorithm | ||
| 3710 | outOperator:= | ||
| 3711 | match inExp1 | ||
| 3712 | case DAE.ARRAY() then inOperator3; | ||
| 3713 | case DAE.MATRIX() then inOperator3; | ||
| 3714 | case DAE.RANGE() then inOperator3; | ||
| 3715 | else inOperator2; | ||
| 3716 | end match; | ||
| 3717 | end simplifyAsubOperator; | ||
| 3718 | |||
| 3719 | protected function simplifyAsubSlicing | ||
| 3720 | "Simplifies asubs where some of the subscripts are slices. | ||
| 3721 | Ex: x[i, 1:3] => {x[i, 1], x[i, 2], x[i, 3]}" | ||
| 3722 | input DAE.Exp inExp; | ||
| 3723 | input list<DAE.Exp> inSubscripts; | ||
| 3724 | output DAE.Exp outAsubArray; | ||
| 3725 | protected | ||
| 3726 | list<list<DAE.Exp>> indices; | ||
| 3727 | list<DAE.Exp> asubs, es; | ||
| 3728 | Boolean didSplit=false,b; | ||
| 3729 | algorithm | ||
| 3730 | // Expand the subscripts. | ||
| 3731 |
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|
2748355 | indices := list(match () case () algorithm (es,b) := Expression.splitArray(simplify1(e)); didSplit := didSplit or b; then es; end match for e in inSubscripts); |
| 3732 | // We don't want to loop forever... So keep track of if we actually expanded something | ||
| 3733 |
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|
902265 | true := didSplit; |
| 3734 |
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|
167 | for is in indices loop |
| 3735 |
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|
251 | for i in is loop |
| 3736 | // Make sure all asubs are scalar (were split by splitArray; no function calls or weird stuff left) | ||
| 3737 | () := match Expression.typeof(i) | ||
| 3738 | case DAE.T_INTEGER() then (); | ||
| 3739 | case DAE.T_BOOL() then (); | ||
| 3740 | case DAE.T_ENUMERATION() then (); | ||
| 3741 | else fail(); | ||
| 3742 | end match; | ||
| 3743 | end for; | ||
| 3744 | end for; | ||
| 3745 | // Make asubs from all combinations of the subscript indices. | ||
| 3746 | 73 | asubs := List.combinationMap(indices, function simplifyAsubSlicing2(inExp = inExp)); | |
| 3747 | 73 | outAsubArray := Expression.makeScalarArray(asubs, Types.unliftArray(Expression.typeof(inExp))); | |
| 3748 | end simplifyAsubSlicing; | ||
| 3749 | |||
| 3750 | protected function simplifyAsubSlicing2 | ||
| 3751 | input list<DAE.Exp> inSubscripts; | ||
| 3752 | input DAE.Exp inExp; | ||
| 3753 | output DAE.Exp outAsub; | ||
| 3754 | algorithm | ||
| 3755 | 136 | outAsub := Expression.makeASUB(inExp, inSubscripts); | |
| 3756 | end simplifyAsubSlicing2; | ||
| 3757 | |||
| 3758 | protected function simplifyBinaryConst | ||
| 3759 | "This function evaluates constant binary expressions." | ||
| 3760 | input Operator inOperator1; | ||
| 3761 | input DAE.Exp inExp2; | ||
| 3762 | input DAE.Exp inExp3; | ||
| 3763 | output DAE.Exp outExp; | ||
| 3764 | algorithm | ||
| 3765 | outExp := match (inOperator1,inExp2,inExp3) | ||
| 3766 | local | ||
| 3767 | Integer ie1,ie2; | ||
| 3768 | Real e2_1,e1_1; | ||
| 3769 | DAE.Exp val; | ||
| 3770 | Real re1,re2,re3; | ||
| 3771 | String str,s1,s2; | ||
| 3772 | |||
| 3773 | case (DAE.ADD(),DAE.ICONST(integer = ie1),DAE.ICONST(integer = ie2)) | ||
| 3774 | algorithm | ||
| 3775 | 9862 | val := safeIntOp(ie1,ie2,ExpressionSimplifyTypes.ADDOP()); | |
| 3776 | then val; | ||
| 3777 | |||
| 3778 | case (DAE.ADD(),DAE.RCONST(real = re1),DAE.RCONST(real = re2)) | ||
| 3779 | algorithm | ||
| 3780 | 26955 | re3 := re1 + re2; | |
| 3781 | 26955 | then DAE.RCONST(re3); | |
| 3782 | |||
| 3783 | case (DAE.ADD(),DAE.RCONST(real = re1),DAE.ICONST(integer = ie2)) | ||
| 3784 | algorithm | ||
| 3785 | ✗ | e2_1 := intReal(ie2); | |
| 3786 | ✗ | re3 := re1 + e2_1; | |
| 3787 | ✗ | then DAE.RCONST(re3); | |
| 3788 | |||
| 3789 | case (DAE.ADD(),DAE.ICONST(integer = ie1),DAE.RCONST(real = re2)) | ||
| 3790 | algorithm | ||
| 3791 | ✗ | e1_1 := intReal(ie1); | |
| 3792 | ✗ | re3 := e1_1 + re2; | |
| 3793 | ✗ | then DAE.RCONST(re3); | |
| 3794 | |||
| 3795 | case (DAE.ADD(),DAE.SCONST(string = s1),DAE.SCONST(string = s2)) | ||
| 3796 | algorithm | ||
| 3797 | 2655 | str := s1 + s2; | |
| 3798 | 2655 | then DAE.SCONST(str); | |
| 3799 | |||
| 3800 | case (DAE.SUB(),DAE.ICONST(integer = ie1),DAE.ICONST(integer = ie2)) | ||
| 3801 | algorithm | ||
| 3802 | 6627 | val := safeIntOp(ie1,ie2,ExpressionSimplifyTypes.SUBOP()); | |
| 3803 | then val; | ||
| 3804 | |||
| 3805 | case (DAE.SUB(),DAE.RCONST(real = re1),DAE.RCONST(real = re2)) | ||
| 3806 | algorithm | ||
| 3807 | 469705 | re3 := re1 - re2; | |
| 3808 | 469705 | then DAE.RCONST(re3); | |
| 3809 | |||
| 3810 | case (DAE.SUB(),DAE.RCONST(real = re1),DAE.ICONST(integer = ie2)) | ||
| 3811 | algorithm | ||
| 3812 | 33 | e2_1 := intReal(ie2); | |
| 3813 | 33 | re3 := re1 - e2_1; | |
| 3814 | 33 | then DAE.RCONST(re3); | |
| 3815 | |||
| 3816 | case (DAE.SUB(),DAE.ICONST(integer = ie1),DAE.RCONST(real = re2)) | ||
| 3817 | algorithm | ||
| 3818 | 2 | e1_1 := intReal(ie1); | |
| 3819 | 2 | re3 := e1_1 - re2; | |
| 3820 | 2 | then DAE.RCONST(re3); | |
| 3821 | |||
| 3822 | case (DAE.MUL(),DAE.ICONST(integer = ie1),DAE.ICONST(integer = ie2)) | ||
| 3823 | algorithm | ||
| 3824 | 305 | val := safeIntOp(ie1,ie2,ExpressionSimplifyTypes.MULOP()); | |
| 3825 | then val; | ||
| 3826 | |||
| 3827 | case (DAE.MUL(),DAE.RCONST(real = re1),DAE.RCONST(real = re2)) | ||
| 3828 | algorithm | ||
| 3829 | 65981 | re3 := re1 * re2; | |
| 3830 | 65981 | then DAE.RCONST(re3); | |
| 3831 | |||
| 3832 | case (DAE.MUL(),DAE.RCONST(real = re1),DAE.ICONST(integer = ie2)) | ||
| 3833 | algorithm | ||
| 3834 | ✗ | e2_1 := intReal(ie2); | |
| 3835 | ✗ | re3 := re1 * e2_1; | |
| 3836 | ✗ | then DAE.RCONST(re3); | |
| 3837 | |||
| 3838 | case (DAE.MUL(),DAE.ICONST(integer = ie1),DAE.RCONST(real = re2)) | ||
| 3839 | algorithm | ||
| 3840 | ✗ | e1_1 := intReal(ie1); | |
| 3841 | ✗ | re3 := e1_1 * re2; | |
| 3842 | ✗ | then DAE.RCONST(re3); | |
| 3843 | |||
| 3844 | case (DAE.DIV(),DAE.ICONST(integer = ie1),DAE.ICONST(integer = ie2)) | ||
| 3845 | algorithm | ||
| 3846 | ✗ | val := safeIntOp(ie1,ie2,ExpressionSimplifyTypes.DIVOP()); | |
| 3847 | then val; | ||
| 3848 | |||
| 3849 | case (DAE.DIV(),DAE.RCONST(real = re1),DAE.RCONST(real = re2)) | ||
| 3850 | algorithm | ||
| 3851 |
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|
37864 | re3 := re1 / re2; |
| 3852 | 34038 | then DAE.RCONST(re3); | |
| 3853 | |||
| 3854 | case (DAE.DIV(),DAE.RCONST(real = re1),DAE.ICONST(integer = ie2)) | ||
| 3855 | algorithm | ||
| 3856 | ✗ | e2_1 := intReal(ie2); | |
| 3857 | ✗ | re3 := re1 / e2_1; | |
| 3858 | ✗ | then DAE.RCONST(re3); | |
| 3859 | |||
| 3860 | case (DAE.DIV(),DAE.ICONST(integer = ie1),DAE.RCONST(real = re2)) | ||
| 3861 | algorithm | ||
| 3862 | 18 | e1_1 := intReal(ie1); | |
| 3863 |
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|
18 | re3 := e1_1 / re2; |
| 3864 | 18 | then DAE.RCONST(re3); | |
| 3865 | |||
| 3866 | case (DAE.POW(),DAE.RCONST(real = re1),DAE.RCONST(real = re2)) | ||
| 3867 | algorithm | ||
| 3868 |
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|
23219 | re3 := re1 ^ re2; |
| 3869 | 23219 | then DAE.RCONST(re3); | |
| 3870 | |||
| 3871 | end match; | ||
| 3872 | end simplifyBinaryConst; | ||
| 3873 | |||
| 3874 | |||
| 3875 | protected function simplifyRelationConst | ||
| 3876 | "This function evaluates constant binary expressions." | ||
| 3877 | input Operator op; | ||
| 3878 | input DAE.Exp e1; | ||
| 3879 | input DAE.Exp e2; | ||
| 3880 | output Boolean b; | ||
| 3881 | algorithm | ||
| 3882 | b := match (op,e1,e2) | ||
| 3883 | local | ||
| 3884 | Real v1,v2; | ||
| 3885 | Boolean b1,b2; | ||
| 3886 | String s1,s2; | ||
| 3887 | // Relation operations | ||
| 3888 | case(DAE.LESS(),DAE.BCONST(false),DAE.BCONST(true)) | ||
| 3889 | then true; | ||
| 3890 | |||
| 3891 | case(DAE.LESS(),DAE.BCONST(_),DAE.BCONST(_)) | ||
| 3892 | then false; | ||
| 3893 | |||
| 3894 | case(DAE.LESS(),_,_) | ||
| 3895 | algorithm | ||
| 3896 | 1318 | v1 := Expression.toReal(e1); | |
| 3897 | 1318 | v2 := Expression.toReal(e2); | |
| 3898 | 1318 | b := v1 < v2; | |
| 3899 | then b; | ||
| 3900 | |||
| 3901 | case(DAE.LESSEQ(),DAE.BCONST(true),DAE.BCONST(false)) | ||
| 3902 | then false; | ||
| 3903 | |||
| 3904 | case(DAE.LESSEQ(),DAE.BCONST(_),DAE.BCONST(_)) | ||
| 3905 | then true; | ||
| 3906 | |||
| 3907 | case(DAE.LESSEQ(),_,_) | ||
| 3908 | algorithm | ||
| 3909 | 2840 | v1 := Expression.toReal(e1); | |
| 3910 | 2840 | v2 := Expression.toReal(e2); | |
| 3911 | 2840 | b := v1 <= v2; | |
| 3912 | then b; | ||
| 3913 | |||
| 3914 | case(DAE.EQUAL(),DAE.BCONST(b1),DAE.BCONST(b2)) | ||
| 3915 | 5 | then boolEq(b1,b2); | |
| 3916 | |||
| 3917 | case(DAE.EQUAL(),DAE.SCONST(s1),DAE.SCONST(s2)) | ||
| 3918 |
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16 | then stringEqual(s1,s2); |
| 3919 | |||
| 3920 | case(DAE.EQUAL(),_,_) | ||
| 3921 | algorithm | ||
| 3922 | 7564 | v1 := Expression.toReal(e1); | |
| 3923 | 7564 | v2 := Expression.toReal(e2); | |
| 3924 | 7564 | then realEq(v1,v2); | |
| 3925 | |||
| 3926 | // Express GT, GE, NE using LE, LT, EQ | ||
| 3927 | case (DAE.GREATER(),_,_) | ||
| 3928 | 2293 | then not simplifyRelationConst(DAE.LESSEQ(DAE.T_REAL_DEFAULT),e1,e2); | |
| 3929 | |||
| 3930 | case (DAE.GREATEREQ(),_,_) | ||
| 3931 | 391 | then not simplifyRelationConst(DAE.LESS(DAE.T_REAL_DEFAULT),e1,e2); | |
| 3932 | |||
| 3933 | case(DAE.GREATER(),DAE.BCONST(false),DAE.BCONST(true)) | ||
| 3934 | ✗ | then not simplifyRelationConst(DAE.LESSEQ(DAE.T_REAL_DEFAULT),e1,e2); | |
| 3935 | |||
| 3936 | case(DAE.GREATEREQ(),DAE.BCONST(false),DAE.BCONST(true)) | ||
| 3937 | ✗ | then not simplifyRelationConst(DAE.LESS(DAE.T_REAL_DEFAULT),e1,e2); | |
| 3938 | |||
| 3939 | case(DAE.NEQUAL(),_,_) | ||
| 3940 | 988 | then not simplifyRelationConst(DAE.EQUAL(DAE.T_REAL_DEFAULT),e1,e2); | |
| 3941 | end match; | ||
| 3942 | end simplifyRelationConst; | ||
| 3943 | |||
| 3944 | public function safeIntOp | ||
| 3945 | "Safe mul, add, sub or pow operations for integers. | ||
| 3946 | The function returns an integer if possible, otherwise a real. | ||
| 3947 | " | ||
| 3948 | input Integer val1; | ||
| 3949 | input Integer val2; | ||
| 3950 | input ExpressionSimplifyTypes.IntOp op; | ||
| 3951 | output DAE.Exp outv; | ||
| 3952 | algorithm | ||
| 3953 | outv := match op | ||
| 3954 | local | ||
| 3955 | Real rv1,rv2,rv3; | ||
| 3956 | Integer ires; | ||
| 3957 | |||
| 3958 | case ExpressionSimplifyTypes.MULOP() | ||
| 3959 | algorithm | ||
| 3960 | 15270 | rv1 := intReal(val1); | |
| 3961 | 15270 | rv2 := intReal(val2); | |
| 3962 | 15270 | rv3 := rv1 * rv2; | |
| 3963 | 15270 | outv := Expression.realToIntIfPossible(rv3); | |
| 3964 | then | ||
| 3965 | outv; | ||
| 3966 | |||
| 3967 | case ExpressionSimplifyTypes.DIVOP() | ||
| 3968 | algorithm | ||
| 3969 | ✗ | ires := intDiv(val1,val2); | |
| 3970 | ✗ | then | |
| 3971 | DAE.ICONST(ires); | ||
| 3972 | |||
| 3973 | case ExpressionSimplifyTypes.SUBOP() | ||
| 3974 | algorithm | ||
| 3975 | 6632 | rv1 := intReal(val1); | |
| 3976 | 6632 | rv2 := intReal(val2); | |
| 3977 | 6632 | rv3 := rv1 - rv2; | |
| 3978 | 6632 | outv := Expression.realToIntIfPossible(rv3); | |
| 3979 | then | ||
| 3980 | outv; | ||
| 3981 | |||
| 3982 | case ExpressionSimplifyTypes.ADDOP() | ||
| 3983 | algorithm | ||
| 3984 | 21347 | rv1 := intReal(val1); | |
| 3985 | 21347 | rv2 := intReal(val2); | |
| 3986 | 21347 | rv3 := rv1 + rv2; | |
| 3987 | 21347 | outv := Expression.realToIntIfPossible(rv3); | |
| 3988 | then | ||
| 3989 | outv; | ||
| 3990 | |||
| 3991 | case ExpressionSimplifyTypes.POWOP() | ||
| 3992 | algorithm | ||
| 3993 | ✗ | rv1 := intReal(val1); | |
| 3994 | ✗ | rv2 := intReal(val2); | |
| 3995 | ✗ | rv3 := realPow(rv1,rv2); | |
| 3996 | ✗ | outv := Expression.realToIntIfPossible(rv3); | |
| 3997 | then | ||
| 3998 | outv; | ||
| 3999 | end match; | ||
| 4000 | end safeIntOp; | ||
| 4001 | |||
| 4002 | protected function simplifyBinaryCommutativeWork | ||
| 4003 | "This function simplifies commutative binary expressions." | ||
| 4004 | input Operator op; | ||
| 4005 | input DAE.Exp lhs; | ||
| 4006 | input DAE.Exp rhs; | ||
| 4007 | output DAE.Exp exp; | ||
| 4008 | algorithm | ||
| 4009 | exp := matchcontinue (op,lhs,rhs) | ||
| 4010 | local | ||
| 4011 | DAE.Exp e3,e4,e,e1,e2; | ||
| 4012 | Operator op1,op2; | ||
| 4013 | Type ty,tp,tp2; | ||
| 4014 | Real r1,r2; | ||
| 4015 | /* sin(2*x) = 2*sin(x)*cos(x) */ | ||
| 4016 | case (DAE.MUL(_),DAE.CALL(path=Absyn.IDENT("sin"),expLst={e1}),DAE.CALL(path=Absyn.IDENT("cos"),expLst={e2})) | ||
| 4017 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4018 | algorithm | ||
| 4019 | op1 := DAE.MUL(DAE.T_REAL_DEFAULT); | ||
| 4020 | ✗ | e := DAE.BINARY(DAE.RCONST(2.0),op1,e1); | |
| 4021 | ✗ | e := Expression.makePureBuiltinCall("sin",{e},DAE.T_REAL_DEFAULT); | |
| 4022 | ✗ | then DAE.BINARY(DAE.RCONST(0.5),op1,e); | |
| 4023 | |||
| 4024 | /* sin^2(x)+cos^2(x) = 1 */ | ||
| 4025 | case (DAE.ADD(_),DAE.BINARY(DAE.CALL(path=Absyn.IDENT("sin"),expLst={e1}),DAE.POW(DAE.T_REAL()),DAE.RCONST(real = 2.0)), | ||
| 4026 | DAE.BINARY(DAE.CALL(path=Absyn.IDENT("cos"),expLst={e2}),DAE.POW(DAE.T_REAL()),DAE.RCONST(real = 2.0))) | ||
| 4027 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4028 | then DAE.RCONST(1.0); | ||
| 4029 | |||
| 4030 | // tan(e)*cos(e) = sin(e) | ||
| 4031 | case(DAE.MUL(tp),DAE.CALL(path=Absyn.IDENT("tan"),expLst={e1}),DAE.CALL(path=Absyn.IDENT("cos"),expLst={e2})) | ||
| 4032 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4033 | ✗ | then Expression.makePureBuiltinCall("sin",{e1},tp); | |
| 4034 | |||
| 4035 | /* cosh^2(x)-sinh^2(x) = 1 */ | ||
| 4036 | case (DAE.ADD(_),DAE.BINARY(DAE.CALL(path=Absyn.IDENT("cosh"),expLst={e1}),DAE.POW(DAE.T_REAL()),DAE.RCONST(real = 2.0)), | ||
| 4037 | DAE.UNARY(operator = DAE.UMINUS(),exp=DAE.BINARY(DAE.CALL(path=Absyn.IDENT("sinh"),expLst={e2}),DAE.POW(DAE.T_REAL()),DAE.RCONST(real = 2.0)))) | ||
| 4038 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4039 | then DAE.RCONST(1.0); | ||
| 4040 | |||
| 4041 | // tanh(e)*cosh(e) = sinh(e) | ||
| 4042 | case(DAE.MUL(tp),DAE.CALL(path=Absyn.IDENT("tanh"),expLst={e1}),DAE.CALL(path=Absyn.IDENT("cosh"),expLst={e2})) | ||
| 4043 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4044 | ✗ | then Expression.makePureBuiltinCall("sinh",{e1},tp); | |
| 4045 | |||
| 4046 | // a+(-b) | ||
| 4047 | case (DAE.ADD(ty = tp),e1,DAE.UNARY(operator = DAE.UMINUS(),exp = e2)) | ||
| 4048 | 415226 | then DAE.BINARY(e1,DAE.SUB(tp),e2); | |
| 4049 | |||
| 4050 | // a + ((-b) op2 c) = a - (b op2 c) | ||
| 4051 | case (DAE.ADD(ty = tp),e1,DAE.BINARY(DAE.UNARY(operator = DAE.UMINUS(),exp = e2), op2, e3)) | ||
| 4052 | guard Expression.isMulOrDiv(op2) | ||
| 4053 | 235864 | then DAE.BINARY(e1, DAE.SUB(tp), DAE.BINARY(e2,op2,e3)); | |
| 4054 | |||
| 4055 | // Commutative | ||
| 4056 | // (-a)+b = b + (-a) | ||
| 4057 | //case (DAE.ADD(ty = tp),DAE.UNARY(operator = DAE.UMINUS(ty = tp2),exp = e1),e2) | ||
| 4058 | // equation | ||
| 4059 | // e = DAE.BINARY(e2,DAE.SUB(tp),e1); | ||
| 4060 | // then e; | ||
| 4061 | |||
| 4062 | // 0+e => e | ||
| 4063 | case (DAE.ADD(),e1,e2) | ||
| 4064 | guard Expression.isZero(e1) | ||
| 4065 | then e2; | ||
| 4066 | |||
| 4067 | // e1*(e2/e3) => (e1e2)/e3 | ||
| 4068 | case (DAE.MUL(ty = tp),e1,DAE.BINARY(exp1 = e2,operator = DAE.DIV(ty = tp2),exp2 = e3)) | ||
| 4069 | algorithm | ||
| 4070 |
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|
479088 | (e,true) := simplify1(DAE.BINARY(e1,DAE.MUL(tp),e2)); |
| 4071 | 95808 | then DAE.BINARY(e,DAE.DIV(tp2),e3); | |
| 4072 | |||
| 4073 | // 0 * a = 0 | ||
| 4074 | case (DAE.MUL(),_,e2) | ||
| 4075 | guard Expression.isZero(e2) | ||
| 4076 | then e2; | ||
| 4077 | |||
| 4078 | // 1 * a = a | ||
| 4079 | case (DAE.MUL(),e1,e2) | ||
| 4080 | guard Expression.isConstOne(e2) | ||
| 4081 | then e1; | ||
| 4082 | |||
| 4083 | // -1 * a = -a | ||
| 4084 | case (DAE.MUL(ty = ty),e1,e2) | ||
| 4085 | guard Expression.isConstMinusOne(e2) | ||
| 4086 | 28744 | then DAE.UNARY(DAE.UMINUS(ty),e1); | |
| 4087 | |||
| 4088 | // done in simplifyBinary | ||
| 4089 | // -a * -b = a * b | ||
| 4090 | //case (DAE.MUL(ty = ty),DAE.UNARY(operator = DAE.UMINUS(ty = ty1),exp = e1),DAE.UNARY(operator = DAE.UMINUS(ty = ty2),exp = e2)) | ||
| 4091 | // equation | ||
| 4092 | // e = DAE.BINARY(e1,DAE.MUL(ty),e2); | ||
| 4093 | // then | ||
| 4094 | // e; | ||
| 4095 | |||
| 4096 | // (e * e1) * e => e1*e^2 | ||
| 4097 | case (DAE.MUL(),DAE.BINARY(e2,op1 as DAE.MUL(ty),e3),e1) | ||
| 4098 | guard Types.isScalarReal(ty) and ExpressionBasics.expEqual(e2,e1) | ||
| 4099 | 10791 | then DAE.BINARY(e3,op1,DAE.BINARY(e1,DAE.POW(ty),DAE.RCONST(2.0))); | |
| 4100 | |||
| 4101 | // e * (e1 * e) => e1*e^2 | ||
| 4102 | case (DAE.MUL(),e1,DAE.BINARY(e2,op1 as DAE.MUL(ty),e3)) | ||
| 4103 | guard Types.isScalarReal(ty) and ExpressionBasics.expEqual(e1,e3) | ||
| 4104 | 10876 | then DAE.BINARY(e2,op1,DAE.BINARY(e1,DAE.POW(ty),DAE.RCONST(2.0))); | |
| 4105 | |||
| 4106 | // r1 * (r2 * e) => (r1*r2)*e | ||
| 4107 | case (DAE.MUL(),DAE.RCONST(real = r1),DAE.BINARY(DAE.RCONST(real = r2),DAE.MUL(DAE.T_REAL()),e2)) | ||
| 4108 | 31515 | then DAE.BINARY(DAE.RCONST(r1 * r2),DAE.MUL(DAE.T_REAL_DEFAULT),e2); | |
| 4109 | |||
| 4110 | // r1 * (e * r2) => (r1*r2)*e | ||
| 4111 | case (DAE.MUL(),DAE.RCONST(real = r1),DAE.BINARY(e2,DAE.MUL(DAE.T_REAL()),DAE.RCONST(real = r2))) | ||
| 4112 | 4347 | then DAE.BINARY(DAE.RCONST(r1 * r2),DAE.MUL(DAE.T_REAL_DEFAULT),e2); | |
| 4113 | |||
| 4114 | // (r1 + (r2 - e)) => (r3 - e) | ||
| 4115 | case (DAE.ADD(),DAE.RCONST(r1),DAE.BINARY(DAE.RCONST(r2),DAE.SUB(ty=ty),e1 as DAE.CREF(_))) | ||
| 4116 | 1029 | then DAE.BINARY(DAE.RCONST(realAdd(r1,r2)),DAE.SUB(ty),e1); | |
| 4117 | |||
| 4118 | // |e1| /e1 = e1/|e1| => sign(e1) | ||
| 4119 | case(DAE.DIV(ty),DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}),e2) | ||
| 4120 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4121 | ✗ | then Expression.makePureBuiltinCall("sign",{e1},ty); | |
| 4122 | |||
| 4123 | // SUB is not commutative | ||
| 4124 | // (e*e1) - (e*e2) => e*(e1-e2) | ||
| 4125 | //case (op1 as DAE.SUB(ty = _),DAE.BINARY(e1,op2 as DAE.MUL(ty=_),e2),DAE.BINARY(e3,DAE.MUL(ty=_),e4)) | ||
| 4126 | // equation | ||
| 4127 | // true = ExpressionBasics.expEqual(e1,e3); | ||
| 4128 | // then | ||
| 4129 | // DAE.BINARY(e1,op2,DAE.BINARY(e2,op1,e4)); | ||
| 4130 | // (e*e1) - (e2*e) => e*(e1-e2) | ||
| 4131 | //case (op1 as DAE.SUB(ty = _),DAE.BINARY(e1,op2 as DAE.MUL(ty=_),e2),DAE.BINARY(e3,DAE.MUL(ty=_),e4)) | ||
| 4132 | // equation | ||
| 4133 | // true = ExpressionBasics.expEqual(e1,e4); | ||
| 4134 | // then | ||
| 4135 | // DAE.BINARY(e1,op2,DAE.BINARY(e2,op1,e3)); | ||
| 4136 | |||
| 4137 | // e2 + (e*e2) = (1 + e)*e2 | ||
| 4138 | // e2 + (e2*e) = (1 + e)*e2; | ||
| 4139 | case (op1 as DAE.ADD(ty), e1, DAE.BINARY(e2, op2 as DAE.MUL(),e3)) | ||
| 4140 | guard not Expression.isConstValue(e1) | ||
| 4141 | algorithm | ||
| 4142 |
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|
8031054 | if ExpressionBasics.expEqual(e1,e3) |
| 4143 | then | ||
| 4144 | 117 | exp := DAE.BINARY(e1,op2,DAE.BINARY(Expression.makeConstOne(ty),op1,e2)); | |
| 4145 |
2/2✓ Branch 1 taken 5 times.
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|
8030937 | else if ExpressionBasics.expEqual(e1,e2) |
| 4146 | then | ||
| 4147 | 5 | exp := DAE.BINARY(e1,op2,DAE.BINARY(Expression.makeConstOne(ty),op1,e3)); | |
| 4148 | else | ||
| 4149 | 8030932 | fail(); | |
| 4150 | end if; | ||
| 4151 | end if; | ||
| 4152 | then | ||
| 4153 | exp; | ||
| 4154 | |||
| 4155 | // sqrt(e) * e => e^1.5 | ||
| 4156 | case (DAE.MUL(),DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e1}),e2) | ||
| 4157 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4158 | 79 | then DAE.BINARY(e1,DAE.POW(DAE.T_REAL_DEFAULT),DAE.RCONST(1.5)); | |
| 4159 | // sqrt(e) * e^r => e^(r+0.5) | ||
| 4160 | case (DAE.MUL(),DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e1}),DAE.BINARY(e2,DAE.POW(),e)) | ||
| 4161 | guard ExpressionBasics.expEqual(e1,e2) | ||
| 4162 | 48 | then DAE.BINARY(e1,DAE.POW(DAE.T_REAL_DEFAULT),DAE.BINARY(e,DAE.ADD(DAE.T_REAL_DEFAULT),DAE.RCONST(0.5))); | |
| 4163 | // x*x^y => x^(y+1) | ||
| 4164 | case (DAE.MUL(),e1,DAE.BINARY(e3, op1 as DAE.POW(tp),e4)) | ||
| 4165 | guard ExpressionBasics.expEqual(e1,e3) | ||
| 4166 | algorithm | ||
| 4167 | 1282 | e := Expression.makeConstOne(tp); | |
| 4168 | 1282 | then | |
| 4169 | DAE.BINARY(e1,op1,DAE.BINARY(e,DAE.ADD(tp),e4)); | ||
| 4170 | |||
| 4171 | end matchcontinue; | ||
| 4172 | end simplifyBinaryCommutativeWork; | ||
| 4173 | |||
| 4174 | protected function simplifyBinary | ||
| 4175 | "This function simplifies binary expressions." | ||
| 4176 | input DAE.Exp origExp; | ||
| 4177 | input Operator inOperator2; | ||
| 4178 | input DAE.Exp lhs "Note: already simplified"; | ||
| 4179 | input DAE.Exp rhs "Note: aldready simplified"; | ||
| 4180 | output DAE.Exp outExp; | ||
| 4181 | protected | ||
| 4182 | Boolean lhsIsConstValue = Expression.isConstValue(lhs); | ||
| 4183 | Boolean rhsIsConstValue = Expression.isConstValue(rhs); | ||
| 4184 | algorithm | ||
| 4185 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 4186 | local | ||
| 4187 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 4188 | Operator oper, op1 ,op2, op3, op; | ||
| 4189 | Type ty,ty2,tp,tp2; | ||
| 4190 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 4191 | Boolean b,b2; | ||
| 4192 | Real r, r1; | ||
| 4193 | Option<DAE.Exp> oexp; | ||
| 4194 | |||
| 4195 | |||
| 4196 | // binary operations on arrays | ||
| 4197 | case (op, e1, e2, _, _) guard simplifyBinaryArrayOp(op) | ||
| 4198 | 55093 | then simplifyBinaryArray(e1, op, e2); | |
| 4199 | |||
| 4200 | // binary scalar simplifications | ||
| 4201 | case (op, e1, e2, _, _) | ||
| 4202 | 36692038 | then simplifyBinaryCommutativeWork(op, e1, e2); | |
| 4203 | case (op, e1, e2, _, _) | ||
| 4204 | 34519282 | then simplifyBinaryCommutativeWork(op, e2, e1); | |
| 4205 | |||
| 4206 | // constants | ||
| 4207 | case (oper, e1, e2, true, true) | ||
| 4208 | algorithm | ||
| 4209 | // print("simplifyBinaryConst " + ExpressionBasics.printExpStr(e1) + ExpressionDump.binopSymbol1(oper) + ExpressionBasics.printExpStr(e2) + "\n"); | ||
| 4210 | 633277 | e3 := simplifyBinaryConst(oper, e1, e2); | |
| 4211 | // print("simplifyBinaryConst " + ExpressionBasics.printExpStr(e1) + "," + ExpressionBasics.printExpStr(e2) + " => " + ExpressionBasics.printExpStr(e3) + "\n"); | ||
| 4212 | then e3; | ||
| 4213 | |||
| 4214 | case (oper, DAE.BINARY(e1,op1,e2), DAE.BINARY(e3,op2,e4), _, _) | ||
| 4215 | 6613674 | then simplifyTwoBinaryExpressions(e1,op1,e2,oper,e3,op2,e4, | |
| 4216 | /* These are checked in multiple cases and improve performance */ | ||
| 4217 | ExpressionBasics.expEqual(e1,e3), | ||
| 4218 | ExpressionBasics.expEqual(e1,e4), | ||
| 4219 | ExpressionBasics.expEqual(e2,e3), | ||
| 4220 | ExpressionBasics.expEqual(e2,e4), | ||
| 4221 | Expression.isConstValue(e1), | ||
| 4222 | Expression.isConstValue(e2), | ||
| 4223 | Expression.isConstValue(e3), | ||
| 4224 | Expression.operatorEqual(op1,op2) | ||
| 4225 | ); | ||
| 4226 | |||
| 4227 | // Look for empty arrays | ||
| 4228 | case (oper, e1, e2, _, _) | ||
| 4229 | algorithm | ||
| 4230 |
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|
31710096 | true := Expression.isConstZeroLength(e1) or Expression.isConstZeroLength(e2); |
| 4231 | 1 | checkZeroLengthArrayOp(oper); | |
| 4232 | then e1; | ||
| 4233 | 31710095 | else simplifyBinaryByOperator(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4234 | end matchcontinue; | ||
| 4235 | end simplifyBinary; | ||
| 4236 | |||
| 4237 | protected function simplifyBinaryByOperator | ||
| 4238 | "The operator-specific simplifyBinary cases. Cases for different operators | ||
| 4239 | never match the same input, so each operator only tries its own." | ||
| 4240 | input DAE.Exp origExp; | ||
| 4241 | input Operator inOperator2; | ||
| 4242 | input DAE.Exp lhs; | ||
| 4243 | input DAE.Exp rhs; | ||
| 4244 | input Boolean lhsIsConstValue; | ||
| 4245 | input Boolean rhsIsConstValue; | ||
| 4246 | output DAE.Exp outExp; | ||
| 4247 | algorithm | ||
| 4248 | outExp := match inOperator2 | ||
| 4249 | 15489114 | case DAE.MUL() then simplifyBinaryMul(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4250 | 1582474 | case DAE.DIV() then simplifyBinaryDiv(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4251 | 3843503 | case DAE.SUB() then simplifyBinarySub(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4252 | 8973300 | case DAE.ADD() then simplifyBinaryAdd(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4253 | 1778180 | case DAE.POW() then simplifyBinaryPow(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4254 | 43524 | else simplifyBinaryOther(origExp, inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue); | |
| 4255 | end match; | ||
| 4256 | end simplifyBinaryByOperator; | ||
| 4257 | |||
| 4258 | protected function simplifyBinaryMul | ||
| 4259 | "simplifyBinary cases for DAE.MUL." | ||
| 4260 | input DAE.Exp origExp; | ||
| 4261 | input Operator inOperator2; | ||
| 4262 | input DAE.Exp lhs; | ||
| 4263 | input DAE.Exp rhs; | ||
| 4264 | input Boolean lhsIsConstValue; | ||
| 4265 | input Boolean rhsIsConstValue; | ||
| 4266 | output DAE.Exp outExp; | ||
| 4267 | algorithm | ||
| 4268 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 4269 | local | ||
| 4270 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 4271 | Operator oper, op1 ,op2, op3, op; | ||
| 4272 | Type ty,ty2,tp,tp2; | ||
| 4273 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 4274 | Boolean b,b2; | ||
| 4275 | Real r, r1; | ||
| 4276 | Option<DAE.Exp> oexp; | ||
| 4277 | |||
| 4278 | // a*(b^(-e)) => a/(b^e) | ||
| 4279 | case (DAE.MUL(), e1, DAE.BINARY(exp1 = e2,operator = op1 as DAE.POW(ty = ty2),exp2 = DAE.UNARY(exp=e3,operator=DAE.UMINUS())), _, _) | ||
| 4280 | algorithm | ||
| 4281 | 241 | res := DAE.BINARY(e1,DAE.DIV(ty2),DAE.BINARY(e2,op1,e3)); | |
| 4282 | then res; | ||
| 4283 | |||
| 4284 | // a*(b^(-r)) => a/(b^r) | ||
| 4285 | case (DAE.MUL(), e1, DAE.BINARY(exp1 = e2,operator = op1 as DAE.POW(ty = ty2),exp2 = DAE.RCONST(r)), _, _) | ||
| 4286 | algorithm | ||
| 4287 |
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|
455708 | true := realLt(r,0.0); |
| 4288 | 23243 | r := realNeg(r); | |
| 4289 | 23243 | res := DAE.BINARY(e1,DAE.DIV(ty2),DAE.BINARY(e2,op1,DAE.RCONST(r))); | |
| 4290 | then res; | ||
| 4291 | |||
| 4292 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 4293 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 4294 | algorithm | ||
| 4295 |
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|
11 | true := Expression.isMulOrDiv(op2); |
| 4296 | 11 | ty := Expression.typeof(e1); | |
| 4297 | 11 | res := DAE.BINARY(e1, op2, e2); | |
| 4298 | 11 | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 4299 | // exp(e1) * exp(e2) => exp(e1 + e2) | ||
| 4300 | case(DAE.MUL(ty), DAE.CALL(path=Absyn.IDENT("exp"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("exp"),expLst={e2}), _, _) | ||
| 4301 | algorithm | ||
| 4302 |
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|
2 | false := Expression.isConstValue(e1) or Expression.isConstValue(e2); |
| 4303 | 2 | e := DAE.BINARY(e1, DAE.ADD(ty),e2); | |
| 4304 | 2 | res := Expression.makePureBuiltinCall("exp",{e},ty); | |
| 4305 | then res; | ||
| 4306 | |||
| 4307 | // a * a = a^2 | ||
| 4308 | case (DAE.MUL(ty = ty), e1, e2, _, _) | ||
| 4309 | algorithm | ||
| 4310 |
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|
15465617 | false := Expression.isZero(e2); |
| 4311 |
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|
15465617 | true := Types.isRealOrSubTypeReal(ty); |
| 4312 |
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|
15464524 | true := ExpressionBasics.expEqual(e1,e2); |
| 4313 | 88639 | res := DAE.BINARY(e1,DAE.POW(ty),DAE.RCONST(2.0)); | |
| 4314 | then res; | ||
| 4315 | // -a*(b-c) = a*(c -b) | ||
| 4316 | case (op2 as DAE.MUL(), DAE.UNARY(operator = DAE.UMINUS(),exp = e1), DAE.BINARY(e2, op1 as DAE.SUB(_),e3), _, _) | ||
| 4317 | 3695 | then DAE.BINARY(e1,op2,DAE.BINARY(e3,op1,e2)); | |
| 4318 | // a*(-b-c) = (-a)*(c + b) | ||
| 4319 | case (op2 as DAE.MUL(), e1, DAE.BINARY(DAE.UNARY(operator = op3 as DAE.UMINUS(),exp = e2), DAE.SUB(ty = ty), e3), _, _) | ||
| 4320 | 148 | then DAE.BINARY(DAE.UNARY(op3,e1),op2,DAE.BINARY(e2, DAE.ADD(ty),e3)); | |
| 4321 | |||
| 4322 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 4323 | // => (if b then x1 op x2 else y1 op y2) | ||
| 4324 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 4325 | algorithm | ||
| 4326 |
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|
124 | true := ExpressionBasics.expEqual(e1,e4); |
| 4327 | ✗ | e := DAE.BINARY(e2,op1,e5); | |
| 4328 | ✗ | res := DAE.BINARY(e3,op1,e6); | |
| 4329 | ✗ | then DAE.IFEXP(e1,e,res); | |
| 4330 | |||
| 4331 | |||
| 4332 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 4333 | // x *(a op2 b op1 c op3 d) | ||
| 4334 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4335 | algorithm | ||
| 4336 |
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|
15374 | true := Expression.isAddOrSub(op1); |
| 4337 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4338 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 4339 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 4340 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 4341 | |||
| 4342 | // a*x op1 c*x op3 d | ||
| 4343 | // x *(a op1 c op3 d) | ||
| 4344 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4345 | algorithm | ||
| 4346 |
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|
19100 | true := Expression.isAddOrSub(op1); |
| 4347 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 4348 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 4349 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 4350 | |||
| 4351 | // a*(x op2 b) op1 c*x | ||
| 4352 | // x*(a op2 b op1 c) | ||
| 4353 | // or | ||
| 4354 | // a*(x op2 b) op1 x*c | ||
| 4355 | // x*(a op2 b op1 c) | ||
| 4356 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4357 | algorithm | ||
| 4358 |
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|
16892 | true := Expression.isAddOrSub(op1); |
| 4359 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4360 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 4361 | then | ||
| 4362 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4363 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 4364 | then | ||
| 4365 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4366 | else | ||
| 4367 | ✗ | fail(); | |
| 4368 | end if; | ||
| 4369 | end if; | ||
| 4370 | then | ||
| 4371 | outExp; | ||
| 4372 | |||
| 4373 | // a*(x op2 b) op1 c*x | ||
| 4374 | // x*(a op2 b op1 c) | ||
| 4375 | // or | ||
| 4376 | // a*(x op2 b) op1 x*c | ||
| 4377 | // x*(a op2 b op1 c) | ||
| 4378 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4379 | algorithm | ||
| 4380 |
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|
17811 | true := Expression.isAddOrSub(op1); |
| 4381 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4382 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 4383 | then | ||
| 4384 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4385 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 4386 | then | ||
| 4387 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4388 | else | ||
| 4389 | ✗ | fail(); | |
| 4390 | end if; | ||
| 4391 | end if; | ||
| 4392 | then | ||
| 4393 | outExp; | ||
| 4394 | |||
| 4395 | // e1 -e2 => -e1 e2 | ||
| 4396 | // Note: This rule is *not* commutative | ||
| 4397 | case (DAE.MUL(ty = ty), e1, DAE.UNARY(operator = DAE.UMINUS(),exp = e2), _, _) | ||
| 4398 | algorithm | ||
| 4399 | 33684 | e1_1 := DAE.UNARY(DAE.UMINUS(ty),e1); | |
| 4400 | 33684 | then DAE.BINARY(e1_1,DAE.MUL(ty),e2); | |
| 4401 | else origExp; | ||
| 4402 | end matchcontinue; | ||
| 4403 | end simplifyBinaryMul; | ||
| 4404 | |||
| 4405 | protected function simplifyBinaryDiv | ||
| 4406 | "simplifyBinary cases for DAE.DIV." | ||
| 4407 | input DAE.Exp origExp; | ||
| 4408 | input Operator inOperator2; | ||
| 4409 | input DAE.Exp lhs; | ||
| 4410 | input DAE.Exp rhs; | ||
| 4411 | input Boolean lhsIsConstValue; | ||
| 4412 | input Boolean rhsIsConstValue; | ||
| 4413 | output DAE.Exp outExp; | ||
| 4414 | algorithm | ||
| 4415 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 4416 | local | ||
| 4417 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 4418 | Operator oper, op1 ,op2, op3, op; | ||
| 4419 | Type ty,ty2,tp,tp2; | ||
| 4420 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 4421 | Boolean b,b2; | ||
| 4422 | Real r, r1; | ||
| 4423 | Option<DAE.Exp> oexp; | ||
| 4424 | |||
| 4425 | // a/(b^(-e)) => a*(b^e) | ||
| 4426 | case (DAE.DIV(), e1, DAE.BINARY(exp1 = e2,operator = op1 as DAE.POW(ty = ty2),exp2 = DAE.UNARY(exp=e3,operator=DAE.UMINUS())), _, _) | ||
| 4427 | algorithm | ||
| 4428 | ✗ | res := DAE.BINARY(e1,DAE.MUL(ty2),DAE.BINARY(e2,op1,e3)); | |
| 4429 | then res; | ||
| 4430 | |||
| 4431 | // a/(b^(-r)) => a*(b^r) | ||
| 4432 | case (DAE.DIV(), e1, DAE.BINARY(exp1 = e2,operator = op1 as DAE.POW(ty = ty2),exp2 = DAE.RCONST(r)), _, _) | ||
| 4433 | algorithm | ||
| 4434 |
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|
177067 | true := realLt(r,0.0); |
| 4435 | ✗ | r := realNeg(r); | |
| 4436 | ✗ | res := DAE.BINARY(e1,DAE.MUL(ty2),DAE.BINARY(e2,op1,DAE.RCONST(r))); | |
| 4437 | then res; | ||
| 4438 | |||
| 4439 | // (a*b op1 c)/b => a op1 c/b | ||
| 4440 | case (DAE.DIV(_), DAE.BINARY(DAE.BINARY(e1, DAE.MUL(_), e2), op1,e3), e4, _, _) | ||
| 4441 | algorithm | ||
| 4442 |
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|
190140 | true := Expression.isAddOrSub(op1); |
| 4443 |
2/2✓ Branch 1 taken 147163 times.
✓ Branch 2 taken 209 times.
|
147372 | true := ExpressionBasics.expEqual(e2,e4); |
| 4444 | 209 | e := Expression.makeDiv(e3,e4); | |
| 4445 | 209 | res := DAE.BINARY(e1,op1,e); | |
| 4446 | then res; | ||
| 4447 | |||
| 4448 | // (c op1 a*b)/b => c/b op1 a | ||
| 4449 | case (DAE.DIV(_), DAE.BINARY(e3, op1,DAE.BINARY(e1, DAE.MUL(_), e2)), e4, _, _) | ||
| 4450 | algorithm | ||
| 4451 |
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|
232025 | true := Expression.isAddOrSub(op1); |
| 4452 |
2/2✓ Branch 1 taken 187830 times.
✓ Branch 2 taken 94 times.
|
187924 | true := ExpressionBasics.expEqual(e2,e4); |
| 4453 | 94 | e := Expression.makeDiv(e3,e4); | |
| 4454 | 94 | res := DAE.BINARY(e,op1,e1); | |
| 4455 | then res; | ||
| 4456 | |||
| 4457 | // (e1 * e2*e3 op1 e4)/e3 => e1 * e2 op1 e4/e3 | ||
| 4458 | case (DAE.DIV(_), DAE.BINARY(DAE.BINARY(e1, op2 as DAE.MUL(), DAE.BINARY(e2, DAE.MUL(_), e3)), op1,e4), e5, _, _) | ||
| 4459 | algorithm | ||
| 4460 |
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✓ Branch 2 taken 32616 times.
|
33928 | true := Expression.isAddOrSub(op1); |
| 4461 |
2/2✓ Branch 1 taken 32580 times.
✓ Branch 2 taken 36 times.
|
32616 | true := ExpressionBasics.expEqual(e3,e5); |
| 4462 | 36 | e := Expression.makeDiv(e4,e3); | |
| 4463 | 36 | e1_1 := DAE.BINARY(e1,op2,e2); | |
| 4464 | 36 | res := DAE.BINARY(e1_1,op1,e); | |
| 4465 | then res; | ||
| 4466 | |||
| 4467 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 4468 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 4469 | algorithm | ||
| 4470 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4471 | ✗ | ty := Expression.typeof(e1); | |
| 4472 | ✗ | res := DAE.BINARY(e1, op2, e2); | |
| 4473 | ✗ | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 4474 | // e1 / exp(e2) => e1*exp(-e2) | ||
| 4475 | case(DAE.DIV(ty), e1, DAE.CALL(path=Absyn.IDENT("exp"),expLst={e2}), _, _) | ||
| 4476 | algorithm | ||
| 4477 | 15 | e := DAE.UNARY(DAE.UMINUS(ty),e2); | |
| 4478 | 15 | (e,_) := simplify1(e); | |
| 4479 | 15 | e3 := Expression.makePureBuiltinCall("exp",{e},ty); | |
| 4480 | 15 | res := DAE.BINARY(e1,DAE.MUL(ty),e3); | |
| 4481 | then res; | ||
| 4482 | |||
| 4483 | // (a+b)/c1 => a/c1+b/c1, for constant c1 | ||
| 4484 | case (op1 as DAE.DIV(), DAE.BINARY(exp1 = e1,operator = op2 as DAE.ADD(),exp2 = e2), e3, _, true) | ||
| 4485 | algorithm | ||
| 4486 | 3380 | (e,b) := simplify1(DAE.BINARY(e1,op1,e3)); | |
| 4487 | 3380 | (e4,b2) := simplify1(DAE.BINARY(e2,op1,e3)); | |
| 4488 |
4/4✓ Branch 0 taken 490 times.
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|
3380 | true := b or b2; |
| 4489 | 2899 | then DAE.BINARY(e ,op2,e4); | |
| 4490 | |||
| 4491 | // (a-b)/c1 => a/c1-b/c1, for constant c1 | ||
| 4492 | case (op1 as DAE.DIV(), DAE.BINARY(exp1 = e1,operator = op2 as DAE.SUB(),exp2 = e2), e3, _, true) | ||
| 4493 | algorithm | ||
| 4494 | 16763 | (e,b) := simplify1(DAE.BINARY(e1,op1,e3)); | |
| 4495 | 16763 | (e4,b2) := simplify1(DAE.BINARY(e2,op1,e3)); | |
| 4496 |
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✓ Branch 3 taken 336 times.
|
16763 | true := b or b2; |
| 4497 | 2553 | then DAE.BINARY(e,op2,e4); | |
| 4498 | |||
| 4499 | // a/(b/c) => (ac)/b | ||
| 4500 | case (DAE.DIV(ty = tp), e1, DAE.BINARY(exp1 = e2,operator = op2 as DAE.DIV(),exp2 = e3), _, _) | ||
| 4501 | 4375 | then DAE.BINARY(DAE.BINARY(e1,DAE.MUL(tp),e3),op2,e2); | |
| 4502 | |||
| 4503 | // (a/b)/c => a/(bc)) | ||
| 4504 | case (DAE.DIV(ty = tp), DAE.BINARY(exp1 = e1,operator = DAE.DIV(ty = tp2),exp2 = e2), e3, _, _) | ||
| 4505 | 74387 | then DAE.BINARY(e1,DAE.DIV(tp2),DAE.BINARY(e2,DAE.MUL(tp),e3)); | |
| 4506 | |||
| 4507 | // a / (b*a) = 1/b | ||
| 4508 | case (DAE.DIV(), e1, DAE.BINARY(exp1 = e2,operator = DAE.MUL(ty = tp2),exp2 = e3), _, _) | ||
| 4509 | algorithm | ||
| 4510 |
2/2✓ Branch 1 taken 213670 times.
✓ Branch 2 taken 37 times.
|
213707 | true := ExpressionBasics.expEqual(e1,e3); |
| 4511 | 37 | then DAE.BINARY(DAE.RCONST(1.0),DAE.DIV(tp2),e2); | |
| 4512 | |||
| 4513 | // a / (a*b) = 1/b | ||
| 4514 | case (DAE.DIV(), e1, DAE.BINARY(exp1 = e2,operator = DAE.MUL(ty = tp2),exp2 = e3), _, _) | ||
| 4515 | algorithm | ||
| 4516 |
2/2✓ Branch 1 taken 213542 times.
✓ Branch 2 taken 128 times.
|
213670 | true := ExpressionBasics.expEqual(e1,e2); |
| 4517 | 128 | then DAE.BINARY(DAE.RCONST(1.0),DAE.DIV(tp2),e3); | |
| 4518 | |||
| 4519 | // (a*b)/ a = b | ||
| 4520 | case (DAE.DIV(), DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2), e3, _, _) | ||
| 4521 | algorithm | ||
| 4522 |
2/2✓ Branch 1 taken 198295 times.
✓ Branch 2 taken 562 times.
|
198857 | true := ExpressionBasics.expEqual(e1,e3); |
| 4523 | then e2; | ||
| 4524 | |||
| 4525 | // (a*b)/ b = a | ||
| 4526 | case (DAE.DIV(), DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2), e3, _, _) | ||
| 4527 | algorithm | ||
| 4528 |
2/2✓ Branch 1 taken 198260 times.
✓ Branch 2 taken 35 times.
|
198295 | true := ExpressionBasics.expEqual(e2,e3); |
| 4529 | then e1; | ||
| 4530 | |||
| 4531 | // (-a*b)/ a = -b | ||
| 4532 | case (DAE.DIV(), DAE.BINARY(exp1 = DAE.UNARY(operator = DAE.UMINUS(),exp = e1),operator = DAE.MUL(),exp2 = e2), e3, _, _) | ||
| 4533 | algorithm | ||
| 4534 |
2/2✓ Branch 1 taken 27682 times.
✓ Branch 2 taken 3 times.
|
27685 | true := ExpressionBasics.expEqual(e1,e3); |
| 4535 | 3 | tp2 := Expression.typeof(e2); | |
| 4536 | 3 | e := DAE.UNARY(DAE.UMINUS(tp2),e2); | |
| 4537 | then e; | ||
| 4538 | |||
| 4539 | // (-a*b)/ b = -a | ||
| 4540 | case (DAE.DIV(), DAE.BINARY(exp1 = DAE.UNARY(operator = DAE.UMINUS(),exp = e1),operator = DAE.MUL(),exp2 = e2), e3, _, _) | ||
| 4541 | algorithm | ||
| 4542 |
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|
27682 | true := ExpressionBasics.expEqual(e2,e3); |
| 4543 | ✗ | tp2 := Expression.typeof(e1); | |
| 4544 | ✗ | e := DAE.UNARY(DAE.UMINUS(tp2),e1); | |
| 4545 | then e; | ||
| 4546 | |||
| 4547 | // (a*b)/ -b = -a | ||
| 4548 | case (DAE.DIV(), DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2), DAE.UNARY(operator = DAE.UMINUS(),exp = e3), _, _) | ||
| 4549 | algorithm | ||
| 4550 |
2/2✓ Branch 1 taken 321 times.
✓ Branch 2 taken 1 time.
|
322 | true := ExpressionBasics.expEqual(e2,e3); |
| 4551 | 1 | tp2 := Expression.typeof(e1); | |
| 4552 | 1 | then DAE.UNARY(DAE.UMINUS(tp2),e1); | |
| 4553 | |||
| 4554 | // (a*b)/ -a = -b | ||
| 4555 | case (DAE.DIV(), DAE.BINARY(exp1 = e1,operator = DAE.MUL(),exp2 = e2), DAE.UNARY(operator = DAE.UMINUS(),exp = e3), _, _) | ||
| 4556 | algorithm | ||
| 4557 |
2/2✓ Branch 1 taken 320 times.
✓ Branch 2 taken 1 time.
|
321 | true := ExpressionBasics.expEqual(e1,e3); |
| 4558 | 1 | tp2 := Expression.typeof(e2); | |
| 4559 | 1 | then DAE.UNARY(DAE.UMINUS(tp2),e2); | |
| 4560 | |||
| 4561 | // 0 / x = 0 | ||
| 4562 | case (DAE.DIV(), e1, e2, true, false) | ||
| 4563 | algorithm | ||
| 4564 |
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|
504669 | true := Expression.isZero(e1); |
| 4565 |
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✓ Branch 2 taken 35357 times.
|
35357 | false := Expression.isZero(e2); |
| 4566 | then DAE.RCONST(0.0); | ||
| 4567 | |||
| 4568 | // a / 1 = a | ||
| 4569 | case (DAE.DIV(), e1, e2, false, true) | ||
| 4570 | algorithm | ||
| 4571 |
2/2✓ Branch 1 taken 97246 times.
✓ Branch 2 taken 1834 times.
|
99080 | true := Expression.isConstOne(e2); |
| 4572 | then e1; | ||
| 4573 | |||
| 4574 | // a / -1 = -a | ||
| 4575 | case (DAE.DIV(ty = ty), e1, e2, _, _) | ||
| 4576 | algorithm | ||
| 4577 |
2/2✓ Branch 1 taken 1459937 times.
✓ Branch 2 taken 11 times.
|
1459948 | true := Expression.isConstMinusOne(e2); |
| 4578 | 11 | e := DAE.UNARY(DAE.UMINUS(ty),e1); | |
| 4579 | then e; | ||
| 4580 | |||
| 4581 | // a / a = 1 | ||
| 4582 | case (DAE.DIV(ty = ty), e1, e2, _, _) | ||
| 4583 | algorithm | ||
| 4584 |
2/2✓ Branch 1 taken 4795 times.
✓ Branch 2 taken 1455142 times.
|
1459937 | false := Expression.isZero(e2); |
| 4585 |
2/2✓ Branch 1 taken 1455098 times.
✓ Branch 2 taken 44 times.
|
1455142 | true := ExpressionBasics.expEqual(e1,e2); |
| 4586 | 44 | res := Expression.makeConstOne(ty); | |
| 4587 | then res; | ||
| 4588 | |||
| 4589 | // exp / r = (1/r)*exp | ||
| 4590 | case(DAE.DIV(ty=tp), e1, DAE.RCONST(real=r1), _, _) | ||
| 4591 | algorithm | ||
| 4592 |
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|
101061 | true := realAbs(r1) > 0.0; |
| 4593 |
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|
96266 | r := 1.0 / r1; |
| 4594 |
2/2✓ Branch 0 taken 81732 times.
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|
96266 | r1 := 1e12 * r; |
| 4595 |
2/2✓ Branch 0 taken 81732 times.
✓ Branch 1 taken 14534 times.
|
96266 | 0.0 := realMod(r1, 1.0); |
| 4596 | 14534 | e3 := DAE.BINARY(DAE.RCONST(r),DAE.MUL(tp),e1); | |
| 4597 | then e3; | ||
| 4598 | // x / (r*y) = (1/r)*x/y | ||
| 4599 | case(op2 as DAE.DIV(ty=tp), e1, DAE.BINARY(DAE.RCONST(real=r1),DAE.MUL(_),e3), _, _) | ||
| 4600 | algorithm | ||
| 4601 |
2/2✓ Branch 0 taken 8 times.
✓ Branch 1 taken 10171 times.
|
10179 | true := realAbs(r1) > 0.0; |
| 4602 |
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|
10171 | r := 1.0 / r1; |
| 4603 |
2/2✓ Branch 0 taken 7046 times.
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|
10171 | r1 := 1e12 * r; |
| 4604 |
2/2✓ Branch 0 taken 7046 times.
✓ Branch 1 taken 3125 times.
|
10171 | 0.0 := realMod(r1, 1.0); |
| 4605 | 3125 | then DAE.BINARY(DAE.BINARY(DAE.RCONST(r),DAE.MUL(tp),e1),op2,e3); | |
| 4606 | // -a / -b = a / b | ||
| 4607 | case (op1 as DAE.DIV(), DAE.UNARY(operator = DAE.UMINUS(),exp = e1), DAE.UNARY(operator = DAE.UMINUS(),exp = e2), _, _) | ||
| 4608 | 2222 | then DAE.BINARY(e1,op1,e2); | |
| 4609 | // -a/(b-c) = a/(c -b) | ||
| 4610 | case (op2 as DAE.DIV(), DAE.UNARY(operator = DAE.UMINUS(),exp = e1), DAE.BINARY(e2, op1 as DAE.SUB(_),e3), _, _) | ||
| 4611 | 4 | then DAE.BINARY(e1,op2,DAE.BINARY(e3,op1,e2)); | |
| 4612 | // a/(-b-c) = (-a)/(c + b) | ||
| 4613 | case (op2 as DAE.DIV(), e1, DAE.BINARY(DAE.UNARY(operator = op3 as DAE.UMINUS(),exp = e2), DAE.SUB(ty = ty), e3), _, _) | ||
| 4614 | 14 | then DAE.BINARY(DAE.UNARY(op3,e1),op2,DAE.BINARY(e2, DAE.ADD(ty),e3)); | |
| 4615 | // e1 / -e2 => -e1 / e2 | ||
| 4616 | case (op1 as DAE.DIV(ty = ty), e1, DAE.UNARY(operator = DAE.UMINUS(),exp = e2), _, _) | ||
| 4617 | algorithm | ||
| 4618 | 1869 | e1_1 := DAE.UNARY(DAE.UMINUS(ty),e1); | |
| 4619 | 1869 | then DAE.BINARY(e1_1,op1,e2); | |
| 4620 | |||
| 4621 | // (e2*e3)/e1 => (e3/e1)*e2 | ||
| 4622 | case (op1 as DAE.DIV(), DAE.BINARY(exp1 = e2,operator = op2 as DAE.MUL(),exp2 = e3), e1, _, true) | ||
| 4623 | algorithm | ||
| 4624 |
2/2✓ Branch 1 taken 8748 times.
✓ Branch 2 taken 238 times.
|
8990 | true := Expression.isConstValue(e3); |
| 4625 |
2/2✓ Branch 2 taken 4 times.
✓ Branch 3 taken 234 times.
|
238 | (e,true) := simplify1(DAE.BINARY(e3,op1,e1)); |
| 4626 | 234 | then DAE.BINARY(e,op2,e2); | |
| 4627 | |||
| 4628 | // e2*e3 / e1 => e2 / e1 * e3 | ||
| 4629 | case (op1 as DAE.DIV(), DAE.BINARY(exp1 = e2,operator = op2 as DAE.MUL(),exp2 = e3), e1, _, true) | ||
| 4630 | algorithm | ||
| 4631 |
2/2✓ Branch 1 taken 5951 times.
✓ Branch 2 taken 2801 times.
|
8752 | true := Expression.isConstValue(e2); |
| 4632 |
1/2✗ Branch 2 not taken.
✓ Branch 3 taken 2801 times.
|
2801 | (e,true) := simplify1(DAE.BINARY(e2,op1,e1)); |
| 4633 | 2801 | then DAE.BINARY(e,op2,e3); | |
| 4634 | |||
| 4635 | // e/sqrt(e) = sqrt(e) | ||
| 4636 | case (DAE.DIV(), e1, DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e2}), _, _) | ||
| 4637 | algorithm | ||
| 4638 |
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|
10628 | true := ExpressionBasics.expEqual(e1,e2); |
| 4639 | ✗ | then Expression.makePureBuiltinCall("sqrt",{e1},DAE.T_REAL_DEFAULT); | |
| 4640 | // x^y/x => x^(y-1) | ||
| 4641 | case (DAE.DIV(), DAE.BINARY(e1,op1 as DAE.POW(ty), e2), e3, _, _) | ||
| 4642 | algorithm | ||
| 4643 |
2/2✓ Branch 1 taken 46843 times.
✓ Branch 2 taken 17 times.
|
46860 | true := ExpressionBasics.expEqual(e1,e3); |
| 4644 | 17 | e4 := Expression.makeConstOne(ty); | |
| 4645 | 17 | e4 := DAE.BINARY(e2,DAE.SUB(ty), e4); | |
| 4646 | 17 | then DAE.BINARY(e1,op1, e4); | |
| 4647 | // x^y*z/x = x^(y-1)*z | ||
| 4648 | case (DAE.DIV(), DAE.BINARY(DAE.BINARY(e1,op1 as DAE.POW(ty), e2),op2 as DAE.MUL(_),e5), e3, _, _) | ||
| 4649 | algorithm | ||
| 4650 |
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|
2223 | true := ExpressionBasics.expEqual(e1,e3); |
| 4651 | ✗ | e4 := Expression.makeConstOne(ty); | |
| 4652 | ✗ | e4 := DAE.BINARY(e2,DAE.SUB(ty), e4); | |
| 4653 | ✗ | then DAE.BINARY(DAE.BINARY(e1,op1, e4),op2,e5); | |
| 4654 | //x/x^y => x^(1-y) | ||
| 4655 | case (DAE.DIV(), e3, DAE.BINARY(e1,op1 as DAE.POW(ty), e2), _, _) | ||
| 4656 | algorithm | ||
| 4657 |
2/2✓ Branch 1 taken 152989 times.
✓ Branch 2 taken 5759 times.
|
158748 | true := ExpressionBasics.expEqual(e1,e3); |
| 4658 | 5759 | e4 := Expression.makeConstOne(ty); | |
| 4659 | 5759 | e4 := DAE.BINARY(e4,DAE.SUB(ty), e2); | |
| 4660 | 5759 | then DAE.BINARY(e1,op1, e4); | |
| 4661 | //(x/y)^(-r) => (y/x)^r | ||
| 4662 | case (op2 as DAE.POW(), DAE.BINARY(e1, op1 as DAE.DIV(_), e2), DAE.RCONST(r), _, _) | ||
| 4663 | algorithm | ||
| 4664 | ✗ | true := realLt(r,0.0); | |
| 4665 | ✗ | r := realNeg(r); | |
| 4666 | ✗ | then DAE.BINARY(DAE.BINARY(e2,op1,e1),op2,DAE.RCONST(r)); | |
| 4667 | |||
| 4668 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 4669 | // => (if b then x1 op x2 else y1 op y2) | ||
| 4670 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 4671 | algorithm | ||
| 4672 |
2/2✓ Branch 1 taken 5 times.
✓ Branch 2 taken 14 times.
|
19 | true := ExpressionBasics.expEqual(e1,e4); |
| 4673 | 14 | e := DAE.BINARY(e2,op1,e5); | |
| 4674 | 14 | res := DAE.BINARY(e3,op1,e6); | |
| 4675 | 14 | then DAE.IFEXP(e1,e,res); | |
| 4676 | |||
| 4677 | |||
| 4678 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 4679 | // x *(a op2 b op1 c op3 d) | ||
| 4680 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4681 | algorithm | ||
| 4682 |
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✗ Branch 2 not taken.
|
2581 | true := Expression.isAddOrSub(op1); |
| 4683 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4684 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 4685 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 4686 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 4687 | |||
| 4688 | // a*x op1 c*x op3 d | ||
| 4689 | // x *(a op1 c op3 d) | ||
| 4690 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4691 | algorithm | ||
| 4692 |
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✗ Branch 2 not taken.
|
7439 | true := Expression.isAddOrSub(op1); |
| 4693 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 4694 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 4695 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 4696 | |||
| 4697 | // a*(x op2 b) op1 c*x | ||
| 4698 | // x*(a op2 b op1 c) | ||
| 4699 | // or | ||
| 4700 | // a*(x op2 b) op1 x*c | ||
| 4701 | // x*(a op2 b op1 c) | ||
| 4702 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4703 | algorithm | ||
| 4704 |
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|
12624 | true := Expression.isAddOrSub(op1); |
| 4705 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4706 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 4707 | then | ||
| 4708 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4709 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 4710 | then | ||
| 4711 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4712 | else | ||
| 4713 | ✗ | fail(); | |
| 4714 | end if; | ||
| 4715 | end if; | ||
| 4716 | then | ||
| 4717 | outExp; | ||
| 4718 | |||
| 4719 | // a*(x op2 b) op1 c*x | ||
| 4720 | // x*(a op2 b op1 c) | ||
| 4721 | // or | ||
| 4722 | // a*(x op2 b) op1 x*c | ||
| 4723 | // x*(a op2 b op1 c) | ||
| 4724 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4725 | algorithm | ||
| 4726 |
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✗ Branch 2 not taken.
|
60524 | true := Expression.isAddOrSub(op1); |
| 4727 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 4728 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 4729 | then | ||
| 4730 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4731 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 4732 | then | ||
| 4733 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4734 | else | ||
| 4735 | ✗ | fail(); | |
| 4736 | end if; | ||
| 4737 | end if; | ||
| 4738 | then | ||
| 4739 | outExp; | ||
| 4740 | |||
| 4741 | // sin(e)/cos(e) => tan(e) | ||
| 4742 | case(DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("sin"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("cos"),expLst={e2}), _, _) | ||
| 4743 | algorithm | ||
| 4744 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 2 times.
|
2 | true := ExpressionBasics.expEqual(e1,e2); |
| 4745 | 2 | then Expression.makePureBuiltinCall("tan",{e1},ty); | |
| 4746 | // tan(e2)/sin(e2) => 1.0/cos(e2) | ||
| 4747 | case(op2 as DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("tan"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("sin"),expLst={e2}), _, _) | ||
| 4748 | algorithm | ||
| 4749 | ✗ | true := ExpressionBasics.expEqual(e1,e2); | |
| 4750 | e3 := DAE.RCONST(1.0); | ||
| 4751 | ✗ | e4 := Expression.makePureBuiltinCall("cos",{e2},ty); | |
| 4752 | ✗ | e := DAE.BINARY(e3,op2,e4); | |
| 4753 | then e; | ||
| 4754 | // sin(e2)/tan(e2) => cos(e2) | ||
| 4755 | case(DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("sin"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("tan"),expLst={e2}), _, _) | ||
| 4756 | algorithm | ||
| 4757 | ✗ | true := ExpressionBasics.expEqual(e1,e2); | |
| 4758 | ✗ | e := Expression.makePureBuiltinCall("cos",{e2},ty); | |
| 4759 | then e; | ||
| 4760 | // e1/tan(e2) => e1*cos(e2)/sin(e2) | ||
| 4761 | case(op2 as DAE.DIV(ty), e1, DAE.CALL(path=Absyn.IDENT("tan"),expLst={e2}), _, _) | ||
| 4762 | algorithm | ||
| 4763 | ✗ | e3 := Expression.makePureBuiltinCall("sin",{e2},ty); | |
| 4764 | ✗ | e4 := Expression.makePureBuiltinCall("cos",{e2},ty); | |
| 4765 | ✗ | e := DAE.BINARY(e4,op2,e3); | |
| 4766 | ✗ | then DAE.BINARY(e1,DAE.MUL(ty), e); | |
| 4767 | // sinh(e)/cosh(e) => tanh(e) | ||
| 4768 | case(DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("sinh"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("cosh"),expLst={e2}), _, _) | ||
| 4769 | algorithm | ||
| 4770 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 1 time.
|
1 | true := ExpressionBasics.expEqual(e1,e2); |
| 4771 | 1 | then Expression.makePureBuiltinCall("tanh",{e1},ty); | |
| 4772 | // tanh(e2)/sinh(e2) => 1.0/cosh(e2) | ||
| 4773 | case(op2 as DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("tanh"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("sinh"),expLst={e2}), _, _) | ||
| 4774 | algorithm | ||
| 4775 | ✗ | true := ExpressionBasics.expEqual(e1,e2); | |
| 4776 | e3 := DAE.RCONST(1.0); | ||
| 4777 | ✗ | e4 := Expression.makePureBuiltinCall("cosh",{e2},ty); | |
| 4778 | ✗ | e := DAE.BINARY(e3,op2,e4); | |
| 4779 | then e; | ||
| 4780 | // sinh(e2)/tanh(e2) => cosh(e2) | ||
| 4781 | case(DAE.DIV(ty), DAE.CALL(path=Absyn.IDENT("sinh"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("tanh"),expLst={e2}), _, _) | ||
| 4782 | algorithm | ||
| 4783 | ✗ | true := ExpressionBasics.expEqual(e1,e2); | |
| 4784 | ✗ | e := Expression.makePureBuiltinCall("cosh",{e2},ty); | |
| 4785 | then e; | ||
| 4786 | else origExp; | ||
| 4787 | end matchcontinue; | ||
| 4788 | end simplifyBinaryDiv; | ||
| 4789 | |||
| 4790 | protected function simplifyBinarySub | ||
| 4791 | "simplifyBinary cases for DAE.SUB." | ||
| 4792 | input DAE.Exp origExp; | ||
| 4793 | input Operator inOperator2; | ||
| 4794 | input DAE.Exp lhs; | ||
| 4795 | input DAE.Exp rhs; | ||
| 4796 | input Boolean lhsIsConstValue; | ||
| 4797 | input Boolean rhsIsConstValue; | ||
| 4798 | output DAE.Exp outExp; | ||
| 4799 | algorithm | ||
| 4800 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 4801 | local | ||
| 4802 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 4803 | Operator oper, op1 ,op2, op3, op; | ||
| 4804 | Type ty,ty2,tp,tp2; | ||
| 4805 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 4806 | Boolean b,b2; | ||
| 4807 | Real r, r1; | ||
| 4808 | Option<DAE.Exp> oexp; | ||
| 4809 | |||
| 4810 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 4811 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 4812 | algorithm | ||
| 4813 |
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|
636 | true := Expression.isMulOrDiv(op2); |
| 4814 | ✗ | ty := Expression.typeof(e1); | |
| 4815 | ✗ | res := DAE.BINARY(e1, op2, e2); | |
| 4816 | ✗ | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 4817 | |||
| 4818 | // subtract from zero | ||
| 4819 | case (DAE.SUB(ty = ty), e1, e2, true, _) | ||
| 4820 | algorithm | ||
| 4821 |
2/2✓ Branch 1 taken 792597 times.
✓ Branch 2 taken 182789 times.
|
975386 | true := Expression.isZero(e1); |
| 4822 | 182789 | then DAE.UNARY(DAE.UMINUS(ty),e2); | |
| 4823 | |||
| 4824 | // subtract zero | ||
| 4825 | case (DAE.SUB(), e1, e2, _, true) | ||
| 4826 | algorithm | ||
| 4827 |
2/2✓ Branch 1 taken 425071 times.
✓ Branch 2 taken 103387 times.
|
528458 | true := Expression.isZero(e2); |
| 4828 | then e1; | ||
| 4829 | |||
| 4830 | // a - a = 0 | ||
| 4831 | case (DAE.SUB(ty = ty), e1, e2, _, _) | ||
| 4832 | algorithm | ||
| 4833 |
2/2✓ Branch 1 taken 3556885 times.
✓ Branch 2 taken 442 times.
|
3557327 | true := ExpressionBasics.expEqual(e1,e2); |
| 4834 | 442 | then Expression.makeConstZero(ty); | |
| 4835 | |||
| 4836 | // a-(-b) = a+b | ||
| 4837 | case (DAE.SUB(ty = ty), e1, DAE.UNARY(operator = DAE.UMINUS(),exp = e2), _, _) | ||
| 4838 | 5244 | then DAE.BINARY(e1,DAE.ADD(ty),e2); | |
| 4839 | |||
| 4840 | // a-(-b)*c = a+b*c | ||
| 4841 | case (DAE.SUB(ty = ty), e1, DAE.BINARY(DAE.UNARY(operator = DAE.UMINUS(),exp = e2),op1 as DAE.MUL(_),e3), _, _) | ||
| 4842 | 1787 | then DAE.BINARY(e1,DAE.ADD(ty),DAE.BINARY(e2,op1,e3)); | |
| 4843 | |||
| 4844 | // a-(-b)/c = a+b/c | ||
| 4845 | case (DAE.SUB(ty = ty), e1, DAE.BINARY(DAE.UNARY(operator = DAE.UMINUS(),exp = e2),op1 as DAE.DIV(_),e3), _, _) | ||
| 4846 | 24 | then DAE.BINARY(e1,DAE.ADD(ty),DAE.BINARY(e2,op1,e3)); | |
| 4847 | |||
| 4848 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 4849 | // => (if b then x1 op x2 else y1 op y2) | ||
| 4850 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 4851 | algorithm | ||
| 4852 |
1/2✓ Branch 1 taken 33 times.
✗ Branch 2 not taken.
|
33 | true := ExpressionBasics.expEqual(e1,e4); |
| 4853 | ✗ | e := DAE.BINARY(e2,op1,e5); | |
| 4854 | ✗ | res := DAE.BINARY(e3,op1,e6); | |
| 4855 | ✗ | then DAE.IFEXP(e1,e,res); | |
| 4856 | |||
| 4857 | // (-x) * y - x * z = (-x)*(y+z) | ||
| 4858 | case (DAE.SUB(ty), DAE.BINARY(e as DAE.UNARY(operator = DAE.UMINUS(),exp = e1), op2 as DAE.MUL(), e2), DAE.BINARY(e3,DAE.MUL(),e4), false, false) | ||
| 4859 | algorithm | ||
| 4860 |
2/2✓ Branch 1 taken 64757 times.
✓ Branch 2 taken 426 times.
|
65183 | true := ExpressionBasics.expEqual(e1,e3); |
| 4861 | 426 | res := DAE.BINARY(e, op2, DAE.BINARY(e2, DAE.ADD(ty),e4)); | |
| 4862 | then res; | ||
| 4863 | |||
| 4864 | // (-x) / y - x / z = -x(1/y+1/z) | ||
| 4865 | case (DAE.SUB(ty), DAE.BINARY(e as DAE.UNARY(operator = DAE.UMINUS(),exp = e1), DAE.DIV(), e2), DAE.BINARY(e3, DAE.DIV(),e4), false, false) | ||
| 4866 | algorithm | ||
| 4867 |
2/2✓ Branch 1 taken 28 times.
✓ Branch 2 taken 28 times.
|
56 | true := ExpressionBasics.expEqual(e1,e3); |
| 4868 | 28 | res := DAE.BINARY(e, DAE.MUL(ty), DAE.BINARY(Expression.inverseFactors(e2), DAE.ADD(ty), Expression.inverseFactors(e4))); | |
| 4869 | then res; | ||
| 4870 | |||
| 4871 | |||
| 4872 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 4873 | // x *(a op2 b op1 c op3 d) | ||
| 4874 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4875 | algorithm | ||
| 4876 |
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✓ Branch 2 taken 117400 times.
|
117400 | true := Expression.isAddOrSub(op1); |
| 4877 |
2/2✓ Branch 1 taken 85070 times.
✓ Branch 2 taken 32330 times.
|
117400 | true := Expression.isMulOrDiv(op2); |
| 4878 |
2/2✓ Branch 1 taken 15522 times.
✓ Branch 2 taken 16808 times.
|
32330 | true := Expression.isMulOrDiv(op3); |
| 4879 |
2/2✓ Branch 1 taken 16399 times.
✓ Branch 2 taken 409 times.
|
16808 | true := ExpressionBasics.expEqual(e2,e5); |
| 4880 | 409 | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 4881 | |||
| 4882 | // a*x op1 c*x op3 d | ||
| 4883 | // x *(a op1 c op3 d) | ||
| 4884 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4885 | algorithm | ||
| 4886 |
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✓ Branch 2 taken 159222 times.
|
159222 | true := Expression.isAddOrSub(op1); |
| 4887 |
2/2✓ Branch 1 taken 77554 times.
✓ Branch 2 taken 81668 times.
|
159222 | true := Expression.isMulOrDiv(op3); |
| 4888 |
2/2✓ Branch 1 taken 81574 times.
✓ Branch 2 taken 94 times.
|
81668 | true := ExpressionBasics.expEqual(e2,e5); |
| 4889 | 94 | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 4890 | |||
| 4891 | // a*(x op2 b) op1 c*x | ||
| 4892 | // x*(a op2 b op1 c) | ||
| 4893 | // or | ||
| 4894 | // a*(x op2 b) op1 x*c | ||
| 4895 | // x*(a op2 b op1 c) | ||
| 4896 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4897 | algorithm | ||
| 4898 |
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✓ Branch 2 taken 212366 times.
|
212366 | true := Expression.isAddOrSub(op1); |
| 4899 |
2/2✓ Branch 1 taken 170254 times.
✓ Branch 2 taken 42112 times.
|
212366 | true := Expression.isMulOrDiv(op2); |
| 4900 |
2/2✓ Branch 1 taken 229 times.
✓ Branch 2 taken 41883 times.
|
42112 | if ExpressionBasics.expEqual(e2,e5) |
| 4901 | then | ||
| 4902 | 229 | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4903 |
2/2✓ Branch 1 taken 252 times.
✓ Branch 2 taken 41631 times.
|
41883 | else if ExpressionBasics.expEqual(e2,e4) |
| 4904 | then | ||
| 4905 | 252 | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4906 | else | ||
| 4907 | 41631 | fail(); | |
| 4908 | end if; | ||
| 4909 | end if; | ||
| 4910 | then | ||
| 4911 | outExp; | ||
| 4912 | |||
| 4913 | // a*(x op2 b) op1 c*x | ||
| 4914 | // x*(a op2 b op1 c) | ||
| 4915 | // or | ||
| 4916 | // a*(x op2 b) op1 x*c | ||
| 4917 | // x*(a op2 b op1 c) | ||
| 4918 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 4919 | algorithm | ||
| 4920 |
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✓ Branch 2 taken 91302 times.
|
91302 | true := Expression.isAddOrSub(op1); |
| 4921 |
2/2✓ Branch 1 taken 70866 times.
✓ Branch 2 taken 20436 times.
|
91302 | true := Expression.isMulOrDiv(op2); |
| 4922 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 20436 times.
|
20436 | if ExpressionBasics.expEqual(e2,e5) |
| 4923 | then | ||
| 4924 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 4925 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 20436 times.
|
20436 | else if ExpressionBasics.expEqual(e2,e4) |
| 4926 | then | ||
| 4927 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 4928 | else | ||
| 4929 | 20436 | fail(); | |
| 4930 | end if; | ||
| 4931 | end if; | ||
| 4932 | then | ||
| 4933 | outExp; | ||
| 4934 | |||
| 4935 | case (DAE.SUB(), DAE.RANGE(ty=ty,start = e1,step=oexp,stop=e2), _, _, _) | ||
| 4936 | algorithm | ||
| 4937 | ✗ | e1 := simplifyBinary(DAE.BINARY(e1,inOperator2,rhs), inOperator2, e1, rhs); | |
| 4938 | ✗ | e2 := simplifyBinary(DAE.BINARY(e2,inOperator2,rhs), inOperator2, e2, rhs); | |
| 4939 | ✗ | then DAE.RANGE(ty,e1,oexp,e2); | |
| 4940 | |||
| 4941 | case (DAE.SUB(), _, DAE.RANGE(ty=ty,start = e1,step=oexp,stop=e2), _, _) | ||
| 4942 | algorithm | ||
| 4943 | ✗ | e1 := simplifyBinary(DAE.BINARY(lhs,inOperator2,e1), inOperator2, lhs, e1); | |
| 4944 | ✗ | e2 := simplifyBinary(DAE.BINARY(lhs,inOperator2,e1), inOperator2, lhs, e2); | |
| 4945 | ✗ | then DAE.RANGE(ty,e1,oexp,e2); | |
| 4946 | else origExp; | ||
| 4947 | end matchcontinue; | ||
| 4948 | end simplifyBinarySub; | ||
| 4949 | |||
| 4950 | protected function simplifyBinaryAdd | ||
| 4951 | "simplifyBinary cases for DAE.ADD." | ||
| 4952 | input DAE.Exp origExp; | ||
| 4953 | input Operator inOperator2; | ||
| 4954 | input DAE.Exp lhs; | ||
| 4955 | input DAE.Exp rhs; | ||
| 4956 | input Boolean lhsIsConstValue; | ||
| 4957 | input Boolean rhsIsConstValue; | ||
| 4958 | output DAE.Exp outExp; | ||
| 4959 | algorithm | ||
| 4960 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 4961 | local | ||
| 4962 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 4963 | Operator oper, op1 ,op2, op3, op; | ||
| 4964 | Type ty,ty2,tp,tp2; | ||
| 4965 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 4966 | Boolean b,b2; | ||
| 4967 | Real r, r1; | ||
| 4968 | Option<DAE.Exp> oexp; | ||
| 4969 | |||
| 4970 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 4971 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 4972 | algorithm | ||
| 4973 |
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✗ Branch 2 not taken.
|
167 | true := Expression.isMulOrDiv(op2); |
| 4974 | ✗ | ty := Expression.typeof(e1); | |
| 4975 | ✗ | res := DAE.BINARY(e1, op2, e2); | |
| 4976 | ✗ | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 4977 | |||
| 4978 | // a + a = 2*a | ||
| 4979 | case (DAE.ADD(ty = ty), e1, e2, _, _) | ||
| 4980 | algorithm | ||
| 4981 |
2/2✓ Branch 1 taken 348834 times.
✓ Branch 2 taken 8624466 times.
|
8973300 | true := Types.isRealOrSubTypeReal(ty); |
| 4982 |
2/2✓ Branch 1 taken 8623938 times.
✓ Branch 2 taken 528 times.
|
8624466 | true := ExpressionBasics.expEqual(e1,e2); |
| 4983 | 528 | e := Expression.makeConstNumber(ty, 2); | |
| 4984 | 528 | then DAE.BINARY(e,DAE.MUL(ty),e1); | |
| 4985 | |||
| 4986 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 4987 | // => (if b then x1 op x2 else y1 op y2) | ||
| 4988 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 4989 | algorithm | ||
| 4990 |
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✗ Branch 2 not taken.
|
179 | true := ExpressionBasics.expEqual(e1,e4); |
| 4991 | ✗ | e := DAE.BINARY(e2,op1,e5); | |
| 4992 | ✗ | res := DAE.BINARY(e3,op1,e6); | |
| 4993 | ✗ | then DAE.IFEXP(e1,e,res); | |
| 4994 | |||
| 4995 | |||
| 4996 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 4997 | // x *(a op2 b op1 c op3 d) | ||
| 4998 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 4999 | algorithm | ||
| 5000 |
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✓ Branch 2 taken 1003359 times.
|
1003359 | true := Expression.isAddOrSub(op1); |
| 5001 |
2/2✓ Branch 1 taken 669933 times.
✓ Branch 2 taken 333426 times.
|
1003359 | true := Expression.isMulOrDiv(op2); |
| 5002 |
2/2✓ Branch 1 taken 178185 times.
✓ Branch 2 taken 155241 times.
|
333426 | true := Expression.isMulOrDiv(op3); |
| 5003 |
2/2✓ Branch 1 taken 154590 times.
✓ Branch 2 taken 651 times.
|
155241 | true := ExpressionBasics.expEqual(e2,e5); |
| 5004 | 651 | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 5005 | |||
| 5006 | // a*x op1 c*x op3 d | ||
| 5007 | // x *(a op1 c op3 d) | ||
| 5008 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 5009 | algorithm | ||
| 5010 |
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|
1579878 | true := Expression.isAddOrSub(op1); |
| 5011 |
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|
1579878 | true := Expression.isMulOrDiv(op3); |
| 5012 |
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|
388118 | true := ExpressionBasics.expEqual(e2,e5); |
| 5013 | 1189 | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 5014 | |||
| 5015 | // a*(x op2 b) op1 c*x | ||
| 5016 | // x*(a op2 b op1 c) | ||
| 5017 | // or | ||
| 5018 | // a*(x op2 b) op1 x*c | ||
| 5019 | // x*(a op2 b op1 c) | ||
| 5020 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5021 | algorithm | ||
| 5022 |
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|
1415655 | true := Expression.isAddOrSub(op1); |
| 5023 |
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|
1415655 | true := Expression.isMulOrDiv(op2); |
| 5024 |
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|
405474 | if ExpressionBasics.expEqual(e2,e5) |
| 5025 | then | ||
| 5026 | 5 | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5027 |
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|
405469 | else if ExpressionBasics.expEqual(e2,e4) |
| 5028 | then | ||
| 5029 | 110084 | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5030 | else | ||
| 5031 | 295385 | fail(); | |
| 5032 | end if; | ||
| 5033 | end if; | ||
| 5034 | then | ||
| 5035 | outExp; | ||
| 5036 | |||
| 5037 | // a*(x op2 b) op1 c*x | ||
| 5038 | // x*(a op2 b op1 c) | ||
| 5039 | // or | ||
| 5040 | // a*(x op2 b) op1 x*c | ||
| 5041 | // x*(a op2 b op1 c) | ||
| 5042 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5043 | algorithm | ||
| 5044 |
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|
263256 | true := Expression.isAddOrSub(op1); |
| 5045 |
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|
263256 | true := Expression.isMulOrDiv(op2); |
| 5046 |
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|
33798 | if ExpressionBasics.expEqual(e2,e5) |
| 5047 | then | ||
| 5048 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5049 |
2/2✓ Branch 1 taken 11 times.
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|
33798 | else if ExpressionBasics.expEqual(e2,e4) |
| 5050 | then | ||
| 5051 | 11 | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5052 | else | ||
| 5053 | 33787 | fail(); | |
| 5054 | end if; | ||
| 5055 | end if; | ||
| 5056 | then | ||
| 5057 | outExp; | ||
| 5058 | |||
| 5059 | case (DAE.ADD(), DAE.RANGE(ty=ty,start = e1,step=oexp,stop=e2), _, _, _) | ||
| 5060 | algorithm | ||
| 5061 | ✗ | e1 := simplifyBinary(DAE.BINARY(e1,inOperator2,rhs), inOperator2, e1, rhs); | |
| 5062 | ✗ | e2 := simplifyBinary(DAE.BINARY(e2,inOperator2,rhs), inOperator2, e2, rhs); | |
| 5063 | ✗ | then DAE.RANGE(ty,e1,oexp,e2); | |
| 5064 | |||
| 5065 | case (DAE.ADD(), _, DAE.RANGE(ty=ty,start = e1,step=oexp,stop=e2), _, _) | ||
| 5066 | algorithm | ||
| 5067 | ✗ | e1 := simplifyBinary(DAE.BINARY(lhs,inOperator2,e1), inOperator2, lhs, e1); | |
| 5068 | ✗ | e2 := simplifyBinary(DAE.BINARY(lhs,inOperator2,e1), inOperator2, lhs, e2); | |
| 5069 | ✗ | then DAE.RANGE(ty,e1,oexp,e2); | |
| 5070 | else origExp; | ||
| 5071 | end matchcontinue; | ||
| 5072 | end simplifyBinaryAdd; | ||
| 5073 | |||
| 5074 | protected function simplifyBinaryPow | ||
| 5075 | "simplifyBinary cases for DAE.POW." | ||
| 5076 | input DAE.Exp origExp; | ||
| 5077 | input Operator inOperator2; | ||
| 5078 | input DAE.Exp lhs; | ||
| 5079 | input DAE.Exp rhs; | ||
| 5080 | input Boolean lhsIsConstValue; | ||
| 5081 | input Boolean rhsIsConstValue; | ||
| 5082 | output DAE.Exp outExp; | ||
| 5083 | algorithm | ||
| 5084 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 5085 | local | ||
| 5086 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 5087 | Operator oper, op1 ,op2, op3, op; | ||
| 5088 | Type ty,ty2,tp,tp2; | ||
| 5089 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 5090 | Boolean b,b2; | ||
| 5091 | Real r, r1; | ||
| 5092 | Option<DAE.Exp> oexp; | ||
| 5093 | |||
| 5094 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 5095 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 5096 | algorithm | ||
| 5097 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5098 | ✗ | ty := Expression.typeof(e1); | |
| 5099 | ✗ | res := DAE.BINARY(e1, op2, e2); | |
| 5100 | ✗ | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 5101 | // (-x)^2 = x^2 | ||
| 5102 | case (op2 as DAE.POW(), DAE.UNARY(operator = DAE.UMINUS(),exp = e1), e2 as DAE.RCONST(2.0), _, _) | ||
| 5103 | 367 | then DAE.BINARY(e1, op2, e2); | |
| 5104 | |||
| 5105 | // e ^ 1 => e | ||
| 5106 | case (DAE.POW(), e1, e, _, true) | ||
| 5107 | algorithm | ||
| 5108 |
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|
1749303 | true := Expression.isConstOne(e); |
| 5109 | then e1; | ||
| 5110 | |||
| 5111 | // e ^ - 1 => 1 / e | ||
| 5112 | case (DAE.POW(ty = tp), e2, e, _, _) | ||
| 5113 | algorithm | ||
| 5114 |
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|
1756411 | true := Expression.isConstMinusOne(e); |
| 5115 | 8182 | one := Expression.makeConstOne(tp); | |
| 5116 | 8182 | then DAE.BINARY(one,DAE.DIV(DAE.T_REAL_DEFAULT),e2); | |
| 5117 | |||
| 5118 | // e ^ 0 => 1 | ||
| 5119 | case (DAE.POW(), e1, e, _, true) | ||
| 5120 | algorithm | ||
| 5121 |
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|
1719719 | true := Expression.isZero(e); |
| 5122 | 485 | tp := Expression.typeof(e1); | |
| 5123 | 485 | then Expression.makeConstOne(tp); | |
| 5124 | |||
| 5125 | // sqrt(e) ^ 2.0 => e | ||
| 5126 | case (DAE.POW(), DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e}), DAE.RCONST(2.0), _, _) | ||
| 5127 | then e; | ||
| 5128 | // phi: assert(e >= 0)? | ||
| 5129 | |||
| 5130 | // sqrt(e) ^ r => e ^ 0.5*r | ||
| 5131 | case (oper as DAE.POW(), DAE.CALL(path=Absyn.IDENT("sqrt"),expLst={e1}), e, _, _) | ||
| 5132 | ✗ | then DAE.BINARY(e1,oper,DAE.BINARY(DAE.RCONST(0.5),DAE.MUL(DAE.T_REAL_DEFAULT),e)); | |
| 5133 | |||
| 5134 | |||
| 5135 | // 1 ^ e => 1 | ||
| 5136 | case (DAE.POW(), e1, _, true, _) | ||
| 5137 | algorithm | ||
| 5138 |
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|
187 | true := Expression.isConstOne(e1); |
| 5139 | then e1; | ||
| 5140 | |||
| 5141 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 5142 | // => (if b then x1 op x2 else y1 op y2) | ||
| 5143 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 5144 | algorithm | ||
| 5145 | ✗ | true := ExpressionBasics.expEqual(e1,e4); | |
| 5146 | ✗ | e := DAE.BINARY(e2,op1,e5); | |
| 5147 | ✗ | res := DAE.BINARY(e3,op1,e6); | |
| 5148 | ✗ | then DAE.IFEXP(e1,e,res); | |
| 5149 | |||
| 5150 | |||
| 5151 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 5152 | // x *(a op2 b op1 c op3 d) | ||
| 5153 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 5154 | algorithm | ||
| 5155 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5156 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5157 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 5158 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 5159 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 5160 | |||
| 5161 | // a*x op1 c*x op3 d | ||
| 5162 | // x *(a op1 c op3 d) | ||
| 5163 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 5164 | algorithm | ||
| 5165 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5166 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 5167 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 5168 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 5169 | |||
| 5170 | // a*(x op2 b) op1 c*x | ||
| 5171 | // x*(a op2 b op1 c) | ||
| 5172 | // or | ||
| 5173 | // a*(x op2 b) op1 x*c | ||
| 5174 | // x*(a op2 b op1 c) | ||
| 5175 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5176 | algorithm | ||
| 5177 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5178 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5179 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 5180 | then | ||
| 5181 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5182 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 5183 | then | ||
| 5184 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5185 | else | ||
| 5186 | ✗ | fail(); | |
| 5187 | end if; | ||
| 5188 | end if; | ||
| 5189 | then | ||
| 5190 | outExp; | ||
| 5191 | |||
| 5192 | // a*(x op2 b) op1 c*x | ||
| 5193 | // x*(a op2 b op1 c) | ||
| 5194 | // or | ||
| 5195 | // a*(x op2 b) op1 x*c | ||
| 5196 | // x*(a op2 b op1 c) | ||
| 5197 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5198 | algorithm | ||
| 5199 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5200 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5201 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 5202 | then | ||
| 5203 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5204 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 5205 | then | ||
| 5206 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5207 | else | ||
| 5208 | ✗ | fail(); | |
| 5209 | end if; | ||
| 5210 | end if; | ||
| 5211 | then | ||
| 5212 | outExp; | ||
| 5213 | |||
| 5214 | // ticket #9575 | ||
| 5215 | // For fractional exponents, i.e. roots, only distribute over non-negative factors | ||
| 5216 | case (DAE.POW(), e1, e2 as DAE.RCONST(r), _, true) guard r <> intReal(realInt(r)) | ||
| 5217 | algorithm | ||
| 5218 | /* | ||
| 5219 | * Only do this for constant exponent and any constant expression. | ||
| 5220 | * Exponentation is very expensive compared to the inner expressions. | ||
| 5221 | */ | ||
| 5222 |
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|
313701 | exp_lst as (_ :: _ :: _ :: _) := Expression.factors(e1); |
| 5223 |
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|
18775 | true := List.any(exp_lst, Expression.isEvaluatedConst); |
| 5224 | 88 | (exp_lst, exp_lst_1) := List.splitOnTrue(exp_lst, Expression.isPositiveOrZero); | |
| 5225 | 88 | exp_lst := simplifyBinaryDistributePow(exp_lst, e2); | |
| 5226 | 88 | e := Expression.makeProductLst(exp_lst_1); | |
| 5227 | 88 | e := DAE.BINARY(e, inOperator2, e2); | |
| 5228 | 88 | outExp := Expression.makeProductLst(e :: exp_lst); | |
| 5229 | then outExp; | ||
| 5230 | |||
| 5231 | // (a1a2...an)^e2 => a1^e2a2^e2..an^e2 | ||
| 5232 | case (DAE.POW(), e1, e2, _, true) guard Expression.isEvaluatedConst(e2) | ||
| 5233 | algorithm | ||
| 5234 | /* | ||
| 5235 | * Only do this for constant exponent and any constant expression. | ||
| 5236 | * Exponentation is very expensive compared to the inner expressions. | ||
| 5237 | */ | ||
| 5238 |
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|
1719090 | exp_lst as (_ :: _ :: _ :: _) := Expression.factors(e1); |
| 5239 |
2/2✓ Branch 1 taken 25641 times.
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|
26211 | true := List.any(exp_lst,Expression.isEvaluatedConst); |
| 5240 | 570 | exp_lst_1 := simplifyBinaryDistributePow(exp_lst, e2); | |
| 5241 | 570 | then Expression.makeProductLst(exp_lst_1); | |
| 5242 | |||
| 5243 | // ticket #6068 (second issue) | ||
| 5244 | // (e1^e2)^e3 => abs(e1)^(e2*e3) if e2 is even but e2*e3 is not | ||
| 5245 | case (DAE.POW(), DAE.BINARY(e1,DAE.POW(),e2), e3, _, _) guard Expression.isEven(e2) | ||
| 5246 | algorithm | ||
| 5247 |
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|
4608 | if Expression.isEvaluatedConst(e3) then |
| 5248 | 4608 | e := simplifyBinaryConst(DAE.MUL(DAE.T_REAL_DEFAULT), e2, e3); | |
| 5249 |
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|
4608 | false := Expression.isEven(e); |
| 5250 | else | ||
| 5251 | ✗ | e := DAE.BINARY(e2,DAE.MUL(DAE.T_REAL_DEFAULT),e3); | |
| 5252 | end if; | ||
| 5253 | 81 | then DAE.BINARY(Expression.makePureBuiltinCall("abs", {e1}, Expression.typeof(e1)),DAE.POW(DAE.T_REAL_DEFAULT), e); | |
| 5254 | |||
| 5255 | // (e1^e2)^e3 => e1^(e2*e3) | ||
| 5256 | case (DAE.POW(), DAE.BINARY(e1,DAE.POW(),e2), e3, _, _) | ||
| 5257 | 4808 | then DAE.BINARY(e1,DAE.POW(DAE.T_REAL_DEFAULT),DAE.BINARY(e2,DAE.MUL(DAE.T_REAL_DEFAULT),e3)); | |
| 5258 | else origExp; | ||
| 5259 | end matchcontinue; | ||
| 5260 | end simplifyBinaryPow; | ||
| 5261 | |||
| 5262 | protected function simplifyBinaryOther | ||
| 5263 | "simplifyBinary cases for any other operator." | ||
| 5264 | input DAE.Exp origExp; | ||
| 5265 | input Operator inOperator2; | ||
| 5266 | input DAE.Exp lhs; | ||
| 5267 | input DAE.Exp rhs; | ||
| 5268 | input Boolean lhsIsConstValue; | ||
| 5269 | input Boolean rhsIsConstValue; | ||
| 5270 | output DAE.Exp outExp; | ||
| 5271 | algorithm | ||
| 5272 | outExp := matchcontinue (inOperator2, lhs, rhs, lhsIsConstValue, rhsIsConstValue) | ||
| 5273 | local | ||
| 5274 | DAE.Exp e1_1,e3,e,e1,e2,e4,e5,e6,res,one; | ||
| 5275 | Operator oper, op1 ,op2, op3, op; | ||
| 5276 | Type ty,ty2,tp,tp2; | ||
| 5277 | list<DAE.Exp> exp_lst,exp_lst_1; | ||
| 5278 | Boolean b,b2; | ||
| 5279 | Real r, r1; | ||
| 5280 | Option<DAE.Exp> oexp; | ||
| 5281 | |||
| 5282 | // |e1| op2 |e2| => |e1 op2 e2| | ||
| 5283 | case(op2, DAE.CALL(path=Absyn.IDENT("abs"),expLst={e1}), DAE.CALL(path=Absyn.IDENT("abs"),expLst={e2}), _, _) | ||
| 5284 | algorithm | ||
| 5285 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5286 | ✗ | ty := Expression.typeof(e1); | |
| 5287 | ✗ | res := DAE.BINARY(e1, op2, e2); | |
| 5288 | ✗ | then Expression.makePureBuiltinCall("abs",{res},ty); | |
| 5289 | |||
| 5290 | // (if b then x1 else y1) op (if b then x2 else y2) | ||
| 5291 | // => (if b then x1 op x2 else y1 op y2) | ||
| 5292 | case (op1, DAE.IFEXP(expCond = e1,expThen = e2,expElse = e3), DAE.IFEXP(expCond = e4,expThen = e5,expElse = e6), _, _) | ||
| 5293 | algorithm | ||
| 5294 |
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|
93 | true := ExpressionBasics.expEqual(e1,e4); |
| 5295 | ✗ | e := DAE.BINARY(e2,op1,e5); | |
| 5296 | ✗ | res := DAE.BINARY(e3,op1,e6); | |
| 5297 | ✗ | then DAE.IFEXP(e1,e,res); | |
| 5298 | |||
| 5299 | |||
| 5300 | // a*(x op2 b) op1 c*(x op3 d) | ||
| 5301 | // x *(a op2 b op1 c op3 d) | ||
| 5302 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 5303 | algorithm | ||
| 5304 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5305 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5306 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 5307 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 5308 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,DAE.BINARY(e4,op3,e6))); | |
| 5309 | |||
| 5310 | // a*x op1 c*x op3 d | ||
| 5311 | // x *(a op1 c op3 d) | ||
| 5312 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),e2), DAE.BINARY(e4,DAE.MUL(_),DAE.BINARY(e5,op3,e6)), false, false) | ||
| 5313 | algorithm | ||
| 5314 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5315 | ✗ | true := Expression.isMulOrDiv(op3); | |
| 5316 | ✗ | true := ExpressionBasics.expEqual(e2,e5); | |
| 5317 | ✗ | then DAE.BINARY(e5, oper, DAE.BINARY(e1,op1,DAE.BINARY(e4,op3,e6))); | |
| 5318 | |||
| 5319 | // a*(x op2 b) op1 c*x | ||
| 5320 | // x*(a op2 b op1 c) | ||
| 5321 | // or | ||
| 5322 | // a*(x op2 b) op1 x*c | ||
| 5323 | // x*(a op2 b op1 c) | ||
| 5324 | case (op1, DAE.BINARY(e1,oper as DAE.MUL(_),DAE.BINARY(e2,op2,e3)), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5325 | algorithm | ||
| 5326 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5327 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5328 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 5329 | then | ||
| 5330 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5331 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 5332 | then | ||
| 5333 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5334 | else | ||
| 5335 | ✗ | fail(); | |
| 5336 | end if; | ||
| 5337 | end if; | ||
| 5338 | then | ||
| 5339 | outExp; | ||
| 5340 | |||
| 5341 | // a*(x op2 b) op1 c*x | ||
| 5342 | // x*(a op2 b op1 c) | ||
| 5343 | // or | ||
| 5344 | // a*(x op2 b) op1 x*c | ||
| 5345 | // x*(a op2 b op1 c) | ||
| 5346 | case (op1, DAE.BINARY(DAE.BINARY(e1,oper as DAE.MUL(_),e2),op2,e3), DAE.BINARY(e4,DAE.MUL(),e5), false, false) | ||
| 5347 | algorithm | ||
| 5348 | ✗ | true := Expression.isAddOrSub(op1); | |
| 5349 | ✗ | true := Expression.isMulOrDiv(op2); | |
| 5350 | ✗ | if ExpressionBasics.expEqual(e2,e5) | |
| 5351 | then | ||
| 5352 | ✗ | outExp := DAE.BINARY(e5, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e4)); | |
| 5353 | ✗ | else if ExpressionBasics.expEqual(e2,e4) | |
| 5354 | then | ||
| 5355 | ✗ | outExp := DAE.BINARY(e4, oper, DAE.BINARY(DAE.BINARY(e1,op2,e3),op1,e5)); | |
| 5356 | else | ||
| 5357 | ✗ | fail(); | |
| 5358 | end if; | ||
| 5359 | end if; | ||
| 5360 | then | ||
| 5361 | outExp; | ||
| 5362 | else origExp; | ||
| 5363 | end matchcontinue; | ||
| 5364 | end simplifyBinaryOther; | ||
| 5365 | |||
| 5366 | protected function simplifyTwoBinaryExpressions | ||
| 5367 | "This function simplifies a binary expression of two binary expressions: | ||
| 5368 | (e1 lhsOp e2) mainOp (e3 rhsOp e4) | ||
| 5369 | " | ||
| 5370 | input DAE.Exp e1; | ||
| 5371 | input Operator lhsOperator; | ||
| 5372 | input DAE.Exp e2; | ||
| 5373 | input Operator mainOperator; | ||
| 5374 | input DAE.Exp e3; | ||
| 5375 | input Operator rhsOperator; | ||
| 5376 | input DAE.Exp e4; | ||
| 5377 | input Boolean expEqual_e1_e3; | ||
| 5378 | input Boolean expEqual_e1_e4; | ||
| 5379 | input Boolean expEqual_e2_e3; | ||
| 5380 | input Boolean expEqual_e2_e4; | ||
| 5381 | input Boolean isConst_e1; | ||
| 5382 | input Boolean isConst_e2; | ||
| 5383 | input Boolean isConst_e3; | ||
| 5384 | input Boolean operatorEqualLhsRhs; | ||
| 5385 | output DAE.Exp outExp; | ||
| 5386 | algorithm | ||
| 5387 | outExp := match (e1, lhsOperator, e2, mainOperator, e3, rhsOperator, e4, expEqual_e1_e3, expEqual_e1_e4, expEqual_e2_e3, expEqual_e2_e4, isConst_e1, isConst_e2, operatorEqualLhsRhs) | ||
| 5388 | local | ||
| 5389 | DAE.Exp e1_1,e,e_1,e_2,e_3,e_4,e_5,e_6,res,one; | ||
| 5390 | Operator op1 ,op2, op3, op; | ||
| 5391 | Type ty; | ||
| 5392 | |||
| 5393 | // (e*e1) + (e*e2) => e*(e1+e2) | ||
| 5394 | case (_, op2 as DAE.MUL(), _, op1 as DAE.ADD(), _, DAE.MUL(), _, true, _, _, _, _, _, _) | ||
| 5395 | 174211 | then DAE.BINARY(e1,op2,DAE.BINARY(e2,op1,e4)); | |
| 5396 | |||
| 5397 | // (e*e1) + (e2*e) = e*(e1+e2) | ||
| 5398 | case (_, op2 as DAE.MUL(), _, op1 as DAE.ADD(), _, DAE.MUL(), _, _, true, _, _, _, _, _) | ||
| 5399 | 613 | then DAE.BINARY(e1,op2,DAE.BINARY(e2,op1,e3)); | |
| 5400 | |||
| 5401 | // (e1*e) + (e*e4) = e*(e1+e2) | ||
| 5402 | case (_, op2 as DAE.MUL(), _, op1 as DAE.ADD(), _, DAE.MUL(), _, _, _, true, _, _, _, _) | ||
| 5403 | 555690 | then DAE.BINARY(e2,op2,DAE.BINARY(e1,op1,e4)); | |
| 5404 | |||
| 5405 | // (e1*e) + (e*e4) = e*(e1+e2) | ||
| 5406 | case (_, op2 as DAE.MUL(), _, op1 as DAE.ADD(), _, DAE.MUL(), _, _, _, _, true, _, _, _) | ||
| 5407 | 279 | then DAE.BINARY(e2,op2,DAE.BINARY(e1,op1,e3)); | |
| 5408 | |||
| 5409 | // a^e*b^e => (a*b)^e | ||
| 5410 | case (_, DAE.POW(), _, DAE.MUL(), _, DAE.POW(), _, _, _, _, true, _, _, _) | ||
| 5411 | algorithm | ||
| 5412 | 7464 | res := DAE.BINARY(DAE.BINARY(e1,mainOperator,e3),lhsOperator,e2); | |
| 5413 | then res; | ||
| 5414 | |||
| 5415 | // a^e/b^e => (a/b)^e | ||
| 5416 | case (_, DAE.POW(), _, DAE.DIV(), _, DAE.POW(), _, _, _, _, true, _, _, _) | ||
| 5417 | algorithm | ||
| 5418 | 996 | res := DAE.BINARY(DAE.BINARY(e1,mainOperator,e3),lhsOperator,e2); | |
| 5419 | then res; | ||
| 5420 | |||
| 5421 | // a^e1*a^e2 => a^(e1+e2) | ||
| 5422 | case (_, DAE.POW(), _, DAE.MUL(), _, DAE.POW(), _, true, _, _, _, _, _, _) | ||
| 5423 | algorithm | ||
| 5424 | 18 | res := Expression.expAdd(e2,e4); | |
| 5425 | 18 | res := Expression.expPow(e1,res); | |
| 5426 | then res; | ||
| 5427 | |||
| 5428 | // a^e1/a^e2 => a^(e1-e2) | ||
| 5429 | case (_, DAE.POW(), _, DAE.DIV(), _, DAE.POW(), _, true, _, _, _, _, _, _) | ||
| 5430 | algorithm | ||
| 5431 | 325 | res := Expression.expSub(e2,e4); | |
| 5432 | 325 | res := Expression.expPow(e1,res); | |
| 5433 | then res; | ||
| 5434 | |||
| 5435 | // (e1 op2 e2) op1 (e3 op3 e4) => (e1 op1 e3) op2 e2 | ||
| 5436 | // e2 = e4; op2=op3 \in {*, /}; op1 \in {+, -} | ||
| 5437 | case (_, op2, _, op1, _, _, _, _, _, _, true, _, false, true) | ||
| 5438 | guard Expression.isAddOrSub(op1) and Expression.isMulOrDiv(op2) | ||
| 5439 | 2009 | then | |
| 5440 | DAE.BINARY(DAE.BINARY(e1,op1,e3),op2,e4); | ||
| 5441 | |||
| 5442 | // (e1 * e2) op1 (e3 / e4) => (e1 * e2) op1 (e1 * (1/ e4) ) => e1*(e2 op1 (1/ e4)) | ||
| 5443 | // e1 = e3; op1 \in {+, -} | ||
| 5444 | case (_, op as DAE.MUL(ty), _, op1, _, DAE.DIV(_), _, true, _, _, _, false, _, _) | ||
| 5445 | guard Expression.isAddOrSub(op1) | ||
| 5446 | algorithm | ||
| 5447 | 2 | one := Expression.makeConstOne(ty); | |
| 5448 | 2 | e := Expression.makeDiv(one,e4); | |
| 5449 | 2 | then | |
| 5450 | DAE.BINARY(DAE.BINARY(e2,op1,e),op,e1); | ||
| 5451 | |||
| 5452 | // (e1 / e2) op1 (e3 * e4) => (e1 * (1/e2)) op1 (e1 * e4 ) => e1*(1/e2 op1 e4) | ||
| 5453 | // e1 = e3; op1 \in {+, -} | ||
| 5454 | case (_, DAE.DIV(ty), _, op1, _, DAE.MUL(_), _, true, _, _, _, false, _, _) | ||
| 5455 | guard Expression.isAddOrSub(op1) | ||
| 5456 | algorithm | ||
| 5457 | 19 | one := Expression.makeConstOne(ty); | |
| 5458 | 19 | e := Expression.makeDiv(one,e2); | |
| 5459 | 19 | then | |
| 5460 | DAE.BINARY(DAE.BINARY(e,op1,e4),DAE.MUL(ty),e1); | ||
| 5461 | |||
| 5462 | // [x op2 e] op1 [y op2 e] => (x op1 y) op2 e | ||
| 5463 | // op2 \in {*, /}; op1 \in {+, -} | ||
| 5464 | case (e1_1, op2, e_3, op1, e, _, _, _, _, _, true, _, false, true) | ||
| 5465 | guard Expression.isAddOrSub(op1) and Expression.isMulOrDiv(op2) | ||
| 5466 | algorithm | ||
| 5467 | ✗ | res := DAE.BINARY(e1_1,op1,e); | |
| 5468 | ✗ | then DAE.BINARY(res,op2,e_3); | |
| 5469 | |||
| 5470 | // [(e1 op2 e) * e3] op1 [e4 op2 e] => (e1*e3 op1 e4) op2 e | ||
| 5471 | // op2 \in {*, /}; op1 \in {+, -} | ||
| 5472 | case (DAE.BINARY(e_1,op2,e_2), op as DAE.MUL(_), e_3, op1, e, op3, e_6, _, _, _, _, _, _, _) | ||
| 5473 | guard (not Expression.isConstValue(e_2)) and ExpressionBasics.expEqual(e_2,e_6) and Expression.operatorEqual(op2,op3) and Expression.isAddOrSub(op1) | ||
| 5474 | and Expression.isMulOrDiv(op2) | ||
| 5475 | algorithm | ||
| 5476 | 1183 | e1_1 := DAE.BINARY(e_1, op,e_3); | |
| 5477 | 1183 | res := DAE.BINARY(e1_1,op1,e); | |
| 5478 | 1183 | then DAE.BINARY(res,op2,e_2); | |
| 5479 | |||
| 5480 | // [(e1 op2 e) * e3] op1 [(e4 op2 e) * e6] => (e1*e3 op1 e4*e6) op2 e | ||
| 5481 | // op2 \in {*, /}; op1 \in {+, -} | ||
| 5482 | case (DAE.BINARY(e_1,op2,e_2), op as DAE.MUL(_), e_3, op1, DAE.BINARY(e_4,op3,e_5), DAE.MUL(_), e_6, _, _, _, _, _, _, _) | ||
| 5483 | guard (not Expression.isConstValue(e_2)) and ExpressionBasics.expEqual(e_2,e_5) and Expression.operatorEqual(op2,op3) and Expression.isAddOrSub(op1) | ||
| 5484 | and Expression.isMulOrDiv(op2) | ||
| 5485 | algorithm | ||
| 5486 | 484 | e1_1 := DAE.BINARY(e_1, op,e_3); | |
| 5487 | 484 | e := DAE.BINARY(e_4, op,e_6); | |
| 5488 | 484 | res := DAE.BINARY(e1_1,op1,e); | |
| 5489 | 484 | then DAE.BINARY(res,op2,e_2); | |
| 5490 | |||
| 5491 | // [e1 op2 e] op1 [(e4 op2 e) * e6] => (e1 op1 e4*e6) op2 e | ||
| 5492 | // op2 \in {*, /}; op1 \in {+, -} | ||
| 5493 | case (e_1, op2, e_3, op1, DAE.BINARY(e_4,op3,e_5), op as DAE.MUL(_), e_6, _, _, _, _, _, false, _) | ||
| 5494 | guard ExpressionBasics.expEqual(e_3,e_5) and Expression.operatorEqual(op2,op3) and Expression.isAddOrSub(op1) | ||
| 5495 | and Expression.isMulOrDiv(op2) | ||
| 5496 | algorithm | ||
| 5497 | 2512 | e := DAE.BINARY(e_4,op,e_6); | |
| 5498 | 2512 | res := DAE.BINARY(e_1,op1,e); | |
| 5499 | 2512 | then DAE.BINARY(res,op2,e_3); | |
| 5500 | |||
| 5501 | // (e*e1) - (e*e2) => e*(e1-e2) | ||
| 5502 | case (_, DAE.MUL(), _, DAE.SUB(), _, DAE.MUL(), _, true, _, _, _, _, _, _) | ||
| 5503 | 31262 | then DAE.BINARY(e1,lhsOperator,DAE.BINARY(e2,mainOperator,e4)); | |
| 5504 | |||
| 5505 | // (e*e1) - (e2*e) => e*(e1-e2) | ||
| 5506 | case (_, DAE.MUL(), _, DAE.SUB(), _, DAE.MUL(), _, _, true, _, _, _, _, _) | ||
| 5507 | 151 | then DAE.BINARY(e1,lhsOperator,DAE.BINARY(e2,mainOperator,e3)); | |
| 5508 | |||
| 5509 | end match; | ||
| 5510 | end simplifyTwoBinaryExpressions; | ||
| 5511 | |||
| 5512 | protected function simplifyLBinary | ||
| 5513 | "This function simplifies logical binary expressions." | ||
| 5514 | input DAE.Exp origExp; | ||
| 5515 | input Operator inOperator2; | ||
| 5516 | input DAE.Exp inExp3 "Note: already simplified"; // lhs | ||
| 5517 | input DAE.Exp inExp4 "Note: aldready simplified"; // rhs | ||
| 5518 | output DAE.Exp outExp; | ||
| 5519 | algorithm | ||
| 5520 | outExp := match (inOperator2, inExp3, inExp4) | ||
| 5521 | local | ||
| 5522 | DAE.Exp e1,e2; | ||
| 5523 | Boolean b; | ||
| 5524 | |||
| 5525 | // fix for PNLib where "{} and not {}" is evaluated | ||
| 5526 | case (_, DAE.ARRAY(array={}), _) | ||
| 5527 | then origExp; | ||
| 5528 | case (_, _, DAE.ARRAY(array={})) | ||
| 5529 | then origExp; | ||
| 5530 | // a AND not a -> false | ||
| 5531 | case (DAE.AND(DAE.T_BOOL()), e1, DAE.LUNARY(DAE.NOT(_),e2)) | ||
| 5532 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5533 | then DAE.BCONST(false); | ||
| 5534 | case (DAE.AND(DAE.T_BOOL()), DAE.LUNARY(DAE.NOT(_),e1), e2) | ||
| 5535 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5536 | then DAE.BCONST(false); | ||
| 5537 | |||
| 5538 | // a OR not a -> true | ||
| 5539 | case (DAE.OR(DAE.T_BOOL()), e1, DAE.LUNARY(DAE.NOT(_),e2)) | ||
| 5540 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5541 | then DAE.BCONST(true); | ||
| 5542 | case (DAE.OR(DAE.T_BOOL()), DAE.LUNARY(DAE.NOT(_),e1), e2) | ||
| 5543 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5544 | then DAE.BCONST(true); | ||
| 5545 | |||
| 5546 | // true AND e => e | ||
| 5547 |
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|
2410 | case (DAE.AND(_), e1 as DAE.BCONST(b), e2) then if b then e2 else e1; |
| 5548 |
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|
172 | case (DAE.AND(_), e1, e2 as DAE.BCONST(b)) then if b then e1 else e2; |
| 5549 | // false OR e => e | ||
| 5550 |
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|
587 | case (DAE.OR(_), e1 as DAE.BCONST(b), e2) then if b then e1 else e2; |
| 5551 |
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|
215 | case (DAE.OR(_), e1, e2 as DAE.BCONST(b)) then if b then e2 else e1; |
| 5552 | |||
| 5553 | // a AND a -> a | ||
| 5554 | case (DAE.AND(_), e1, e2) | ||
| 5555 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5556 | then e1; | ||
| 5557 | // a OR a -> a | ||
| 5558 | case (DAE.OR(_), e1, e2) | ||
| 5559 | guard ExpressionBasics.expEqual(e1, e2) | ||
| 5560 | then e1; | ||
| 5561 | |||
| 5562 | else origExp; | ||
| 5563 | |||
| 5564 | end match; | ||
| 5565 | end simplifyLBinary; | ||
| 5566 | |||
| 5567 | protected function simplifyRelation | ||
| 5568 | "This function simplifies logical binary expressions." | ||
| 5569 | input DAE.Exp origExp; | ||
| 5570 | input Operator inOperator2; | ||
| 5571 | input DAE.Exp inExp3 "Note: already simplified"; // lhs | ||
| 5572 | input DAE.Exp inExp4 "Note: aldready simplified"; // rhs | ||
| 5573 | input Integer index; | ||
| 5574 | input Option<tuple<DAE.Exp,Integer,Integer>> optionExpisASUB; | ||
| 5575 | output DAE.Exp outExp; | ||
| 5576 | algorithm | ||
| 5577 | outExp := matchcontinue (inOperator2, inExp3, inExp4) | ||
| 5578 | local | ||
| 5579 | DAE.Exp e1,e2; | ||
| 5580 | Operator oper; | ||
| 5581 | DAE.ComponentRef cr1,cr2; | ||
| 5582 | Boolean b ; | ||
| 5583 | |||
| 5584 | // constants | ||
| 5585 | case (oper, e1, e2) | ||
| 5586 | algorithm | ||
| 5587 |
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|
532754 | true := Expression.isConstValue(e1); |
| 5588 |
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|
27159 | true := Expression.isConstValue(e2); |
| 5589 | 11743 | b := simplifyRelationConst(oper, e1, e2); | |
| 5590 |
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|
17119 | then DAE.BCONST(b); |
| 5591 | |||
| 5592 | // relation: cr1 == cr2, where cr1 and cr2 are the same | ||
| 5593 | case (DAE.EQUAL(_), DAE.CREF(cr1,_), DAE.CREF(cr2,_)) | ||
| 5594 | algorithm | ||
| 5595 |
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|
14800 | true := ComponentReferenceBasics.crefEqual(cr1,cr2); |
| 5596 | then DAE.BCONST(true); | ||
| 5597 | |||
| 5598 | // relation: cr1 <> cr2 . where cr1 and cr2 are the same | ||
| 5599 | case (DAE.NEQUAL(_), DAE.CREF(cr1,_), DAE.CREF(cr2,_)) | ||
| 5600 | algorithm | ||
| 5601 |
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|
2158 | true := ComponentReferenceBasics.crefEqual(cr1,cr2); |
| 5602 | then DAE.BCONST(false); | ||
| 5603 | |||
| 5604 | // a >= b | ||
| 5605 | case(DAE.GREATEREQ(), _, _) | ||
| 5606 | 129754 | then simplifyRelation2(origExp,inOperator2, inExp3,inExp4); | |
| 5607 | // a > b | ||
| 5608 | case(DAE.GREATER(), _, _) | ||
| 5609 | 121449 | then simplifyRelation2(origExp,inOperator2, inExp3,inExp4); | |
| 5610 | // a <= b | ||
| 5611 | case(DAE.LESSEQ(), _, _) | ||
| 5612 | 82311 | then simplifyRelation2(origExp,inOperator2, inExp4,inExp3); | |
| 5613 | // a < b | ||
| 5614 | case(DAE.LESS(), _, _) | ||
| 5615 | 92842 | then simplifyRelation2(origExp,inOperator2, inExp4,inExp3); | |
| 5616 | |||
| 5617 | else origExp; | ||
| 5618 | |||
| 5619 | end matchcontinue; | ||
| 5620 | end simplifyRelation; | ||
| 5621 | |||
| 5622 | protected function simplifyRelation2 | ||
| 5623 | "This function simplifies logical binary expressions." | ||
| 5624 | input DAE.Exp origExp; | ||
| 5625 | input Operator inOp; | ||
| 5626 | input DAE.Exp lhs "Note: already simplified"; | ||
| 5627 | input DAE.Exp rhs "Note: aldready simplified"; | ||
| 5628 | output DAE.Exp oExp; | ||
| 5629 | algorithm | ||
| 5630 | 426356 | (oExp, _) := simplify(Expression.expSub(lhs, rhs)); | |
| 5631 |
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|
426330 | if Expression.isGreatereqOrLesseq(inOp) then |
| 5632 | // lhs >= rhs holds when lhs - rhs is known to be >= 0. | ||
| 5633 |
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|
212065 | oExp := if Expression.isPositiveOrZero(oExp) then DAE.BCONST(true) else origExp; |
| 5634 | else | ||
| 5635 | // lhs > rhs is false when lhs - rhs is known to be <= 0. isNegativeOrZero | ||
| 5636 | // is the structural dual of isPositiveOrZero, so it answers here what | ||
| 5637 | // negating the difference and simplifying it a second time used to. | ||
| 5638 |
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|
214265 | oExp := if Expression.isNegativeOrZero(oExp) then DAE.BCONST(false) else origExp; |
| 5639 | end if; | ||
| 5640 | end simplifyRelation2; | ||
| 5641 | |||
| 5642 | protected function simplifyBinaryDistributePow | ||
| 5643 | "author: PA | ||
| 5644 | Distributes the pow operator over a list of expressions. | ||
| 5645 | Removes 1^pow_e | ||
| 5646 | ({e1,e2,..,en} , pow_e) => {e1^pow_e, e2^pow_e,..,en^pow_e}" | ||
| 5647 | input list<DAE.Exp> inExpLst; | ||
| 5648 | input DAE.Exp inExp; | ||
| 5649 | output list<DAE.Exp> outExpLst; | ||
| 5650 | algorithm | ||
| 5651 |
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|
2769 | outExpLst := list (DAE.BINARY(e,DAE.POW(Expression.typeof(e)),inExp) for e guard not Expression.isConstOne(e) in inExpLst); |
| 5652 | end simplifyBinaryDistributePow; | ||
| 5653 | |||
| 5654 | protected function simplifyUnary | ||
| 5655 | "Simplifies unary expressions." | ||
| 5656 | input DAE.Exp origExp; | ||
| 5657 | input Operator inOperator2; | ||
| 5658 | input DAE.Exp inExp3; | ||
| 5659 | output DAE.Exp outExp; | ||
| 5660 | algorithm | ||
| 5661 | outExp := matchcontinue (inOperator2, inExp3) | ||
| 5662 | local | ||
| 5663 | Type ty1; | ||
| 5664 | DAE.Exp e1,e_1,e2,e3; | ||
| 5665 | Integer i_1,i; | ||
| 5666 | Real r_1,r; | ||
| 5667 | Boolean b1; | ||
| 5668 | DAE.CallAttributes attr; | ||
| 5669 | list<DAE.Exp> expl; | ||
| 5670 | list<list<DAE.Exp>> mat; | ||
| 5671 | Operator op, op2; | ||
| 5672 | Absyn.Path path; | ||
| 5673 | |||
| 5674 | // not true => false, not false => true | ||
| 5675 | case (DAE.NOT(), e1) | ||
| 5676 | algorithm | ||
| 5677 | 34046 | b1 := Expression.toBool(e1); | |
| 5678 | b1 := not b1; | ||
| 5679 |
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|
422 | then DAE.BCONST(b1); |
| 5680 | |||
| 5681 | // not(not(exp)) -> exp | ||
| 5682 | case (DAE.NOT(_), DAE.LUNARY(DAE.NOT(_),e1)) | ||
| 5683 | then e1; | ||
| 5684 | |||
| 5685 | // -x => 0 - x | ||
| 5686 | case (DAE.UMINUS(), DAE.ICONST(integer = i)) | ||
| 5687 | algorithm | ||
| 5688 | 1548 | i_1 := intNeg(i); | |
| 5689 | 1548 | then DAE.ICONST(i_1); | |
| 5690 | |||
| 5691 | // -x => 0.0 - x | ||
| 5692 | case (DAE.UMINUS(), DAE.RCONST(real = r)) | ||
| 5693 | algorithm | ||
| 5694 | 345071 | r_1 := realNeg(r); | |
| 5695 | 345071 | then DAE.RCONST(r_1); | |
| 5696 | |||
| 5697 | // -(a * b) => (-a) * b | ||
| 5698 | case (op2 as DAE.UMINUS(), DAE.BINARY(exp1 = e1,operator = op as DAE.MUL(),exp2 = e2)) | ||
| 5699 | 178908 | then DAE.BINARY(DAE.UNARY(op2,e1),op,e2); | |
| 5700 | // -(a*b) => (-a)*b | ||
| 5701 | case (op2 as DAE.UMINUS_ARR(), DAE.BINARY(exp1 = e1,operator = op as DAE.MUL_ARR(),exp2 = e2)) | ||
| 5702 | ✗ | then DAE.BINARY(DAE.UNARY(op2,e1),op,e2); | |
| 5703 | // -0 => 0 | ||
| 5704 | case (DAE.UMINUS(), e1) | ||
| 5705 | guard Expression.isZero(e1) | ||
| 5706 | then e1; | ||
| 5707 | case (DAE.UMINUS_ARR(), e1) | ||
| 5708 | guard Expression.isZero(e1) | ||
| 5709 | then e1; | ||
| 5710 | // -(a-b) => b - a | ||
| 5711 | case (DAE.UMINUS(), DAE.BINARY(exp1 = e1,operator = op as DAE.SUB(),exp2 = e2)) | ||
| 5712 | 21986 | then DAE.BINARY(e2,op,e1); | |
| 5713 | case (DAE.UMINUS_ARR(), DAE.BINARY(exp1 = e1,operator = op as DAE.SUB_ARR(),exp2 = e2)) | ||
| 5714 | ✗ | then DAE.BINARY(e2,op,e1); | |
| 5715 | // -(a + b) => -b - a | ||
| 5716 | case (op2 as DAE.UMINUS(), DAE.BINARY(exp1 = e1,operator = op as DAE.ADD(),exp2 = e2)) | ||
| 5717 | algorithm | ||
| 5718 |
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|
111536 | (e_1,true) := simplify1(DAE.BINARY(DAE.UNARY(op2,e1),op,DAE.UNARY(op2,e2))); |
| 5719 | then e_1; | ||
| 5720 | case (op2 as DAE.UMINUS_ARR(), DAE.BINARY(exp1 = e1,operator = op as DAE.ADD_ARR(),exp2 = e2)) | ||
| 5721 | ✗ | then DAE.BINARY(DAE.UNARY(op2,e1),op,DAE.UNARY(op2,e2)); | |
| 5722 | // -( a / b) => (-a) / b | ||
| 5723 | case (op2 as DAE.UMINUS(), DAE.BINARY(exp1 = e1,operator = op as DAE.DIV(),exp2 = e2)) | ||
| 5724 | 25830 | then DAE.BINARY(DAE.UNARY(op2,e1),op,e2); | |
| 5725 | case (op2 as DAE.UMINUS_ARR(), DAE.BINARY(exp1 = e1,operator = op as DAE.DIV_ARR(),exp2 = e2)) | ||
| 5726 | ✗ | then DAE.BINARY(DAE.UNARY(op2,e1),op,e2); | |
| 5727 | // --a => a | ||
| 5728 | case (DAE.UMINUS(), DAE.UNARY(operator = DAE.UMINUS(),exp = e1)) /* --a => a */ | ||
| 5729 | then e1; | ||
| 5730 | case (DAE.UMINUS_ARR(), DAE.UNARY(operator = DAE.UMINUS_ARR(),exp = e1)) /* --a => a */ | ||
| 5731 | then e1; | ||
| 5732 | // -semiLinear(-x,sb,sa) = semiLinear(x,sa,sb) | ||
| 5733 | case (DAE.UMINUS(), DAE.CALL(path=path as Absyn.IDENT("semiLinear"),expLst={DAE.UNARY(exp=e1),e2,e3},attr=attr)) | ||
| 5734 | 59 | then DAE.CALL(path,{e1,e3,e2},attr); | |
| 5735 | |||
| 5736 | case (DAE.UMINUS_ARR(), DAE.ARRAY(ty1, b1, expl)) | ||
| 5737 | algorithm | ||
| 5738 | 4583 | expl := List.map(expl, Expression.negate); | |
| 5739 |
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|
4583 | then |
| 5740 | DAE.ARRAY(ty1, b1, expl); | ||
| 5741 | |||
| 5742 | case (DAE.UMINUS_ARR(), DAE.MATRIX(ty1, i, mat)) | ||
| 5743 | algorithm | ||
| 5744 | 2 | mat := List.mapList(mat, Expression.negate); | |
| 5745 | 2 | then | |
| 5746 | DAE.MATRIX(ty1, i, mat); | ||
| 5747 | |||
| 5748 | else origExp; | ||
| 5749 | end matchcontinue; | ||
| 5750 | end simplifyUnary; | ||
| 5751 | |||
| 5752 | protected function simplifyVectorScalarMatrix "Help function to simplifyVectorScalar, | ||
| 5753 | handles MATRIX expressions" | ||
| 5754 | input list<list<DAE.Exp>> imexpl; | ||
| 5755 | input Operator op; | ||
| 5756 | input DAE.Exp s1; | ||
| 5757 | input Boolean arrayScalar "if true, array op scalar, otherwise scalar op array"; | ||
| 5758 | output list<list<DAE.Exp>> outExp; | ||
| 5759 | algorithm | ||
| 5760 |
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|
1288 | outExp := (if arrayScalar then |
| 5761 | list(list(DAE.BINARY(e,op,s1) for e in row) for row in imexpl) | ||
| 5762 | else | ||
| 5763 | list(list(DAE.BINARY(s1,op,e) for e in row) for row in imexpl)); | ||
| 5764 | end simplifyVectorScalarMatrix; | ||
| 5765 | |||
| 5766 | protected function simplifyBinarySortConstantsMul | ||
| 5767 | "Helper relation to simplifyBinarySortConstants" | ||
| 5768 | input DAE.Exp inExp; | ||
| 5769 | output DAE.Exp outExp; | ||
| 5770 | protected list<DAE.Exp> e_lst, const_es1,notconst_es1; | ||
| 5771 | DAE.Exp res1,res2; | ||
| 5772 | algorithm | ||
| 5773 | ✗ | e_lst := Expression.factors(inExp); | |
| 5774 | //e_lst_1 := List.map(e_lst,simplify2); // simplify2 for recursive | ||
| 5775 | ✗ | (const_es1, notconst_es1) := | |
| 5776 | List.splitOnTrue(e_lst, Expression.isConst); | ||
| 5777 | |||
| 5778 | ✗ | if not listEmpty(const_es1) then | |
| 5779 | ✗ | res1 := simplifyBinaryMulConstants(const_es1); | |
| 5780 | ✗ | (res1,_) := simplify1(res1); // simplify1 for basic constant evaluation. | |
| 5781 | ✗ | res2 := Expression.makeProductLst(notconst_es1); // Cannot simplify this, if const_es1_1 empty => infinite recursion. | |
| 5782 | ✗ | outExp := Expression.expMul(res1,res2); | |
| 5783 | else | ||
| 5784 | outExp := inExp; | ||
| 5785 | end if; | ||
| 5786 | |||
| 5787 | end simplifyBinarySortConstantsMul; | ||
| 5788 | |||
| 5789 | protected function simplifyBuiltinConstantDer | ||
| 5790 | "returns 0.0 or an array filled with 0.0 if the input is Real, Integer or an array of Real/Integer" | ||
| 5791 | input DAE.Exp inExp "assumes already simplified constant expression"; | ||
| 5792 | output DAE.Exp outExp; | ||
| 5793 | algorithm | ||
| 5794 | outExp := match inExp | ||
| 5795 | local | ||
| 5796 | DAE.Exp e; | ||
| 5797 | DAE.Dimensions dims; | ||
| 5798 | case DAE.RCONST(_) then DAE.RCONST(0.0); | ||
| 5799 | case DAE.ICONST(_) then DAE.RCONST(0.0); | ||
| 5800 | case DAE.ARRAY(ty=DAE.T_ARRAY(ty=DAE.T_REAL(), dims=dims)) | ||
| 5801 | algorithm | ||
| 5802 | ✗ | (e,_) := Expression.makeZeroExpression(dims); | |
| 5803 | then | ||
| 5804 | e; | ||
| 5805 | case DAE.ARRAY(ty=DAE.T_ARRAY(ty=DAE.T_INTEGER(), dims=dims)) | ||
| 5806 | algorithm | ||
| 5807 | ✗ | (e,_) := Expression.makeZeroExpression(dims); | |
| 5808 | then | ||
| 5809 | e; | ||
| 5810 | end match; | ||
| 5811 | end simplifyBuiltinConstantDer; | ||
| 5812 | |||
| 5813 | protected function removeOperatorDimension "Function: removeOperatorDimension | ||
| 5814 | Helper function for simplifyVectorBinary, removes an dimension from the operator. | ||
| 5815 | " | ||
| 5816 | input Operator inop; | ||
| 5817 | output Operator outop; | ||
| 5818 | algorithm outop := match inop | ||
| 5819 | local | ||
| 5820 | Type ty1,ty2; | ||
| 5821 | Boolean b; | ||
| 5822 | Operator op; | ||
| 5823 | case DAE.ADD_ARR(ty=ty1) | ||
| 5824 | algorithm | ||
| 5825 | 3106 | ty2 := Expression.unliftArray(ty1); | |
| 5826 | 3106 | b := DAEUtil.expTypeArray(ty2); | |
| 5827 |
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|
3106 | op := if b then DAE.ADD_ARR(ty2) else DAE.ADD(ty2); |
| 5828 | then op; | ||
| 5829 | case DAE.SUB_ARR(ty=ty1) | ||
| 5830 | algorithm | ||
| 5831 | 2663 | ty2 := Expression.unliftArray(ty1); | |
| 5832 | 2663 | b := DAEUtil.expTypeArray(ty2); | |
| 5833 |
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|
2663 | op := if b then DAE.SUB_ARR(ty2) else DAE.SUB(ty2); |
| 5834 | then op; | ||
| 5835 | case DAE.DIV_ARR(ty=ty1) | ||
| 5836 | algorithm | ||
| 5837 | 29 | ty2 := Expression.unliftArray(ty1); | |
| 5838 | 29 | b := DAEUtil.expTypeArray(ty2); | |
| 5839 |
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|
29 | op := if b then DAE.DIV_ARR(ty2) else DAE.DIV(ty2); |
| 5840 | then op; | ||
| 5841 | case DAE.MUL_ARR(ty=ty1) | ||
| 5842 | algorithm | ||
| 5843 | 28 | ty2 := Expression.unliftArray(ty1); | |
| 5844 | 28 | b := DAEUtil.expTypeArray(ty2); | |
| 5845 |
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|
28 | op := if b then DAE.MUL_ARR(ty2) else DAE.MUL(ty2); |
| 5846 | then op; | ||
| 5847 | case DAE.POW_ARR2(ty=ty1) | ||
| 5848 | algorithm | ||
| 5849 | 18 | ty2 := Expression.unliftArray(ty1); | |
| 5850 | 18 | b := DAEUtil.expTypeArray(ty2); | |
| 5851 |
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|
18 | op := if b then DAE.POW_ARR2(ty2) else DAE.POW(ty2); |
| 5852 | then op; | ||
| 5853 | end match; | ||
| 5854 | end removeOperatorDimension; | ||
| 5855 | |||
| 5856 | public function simplifyRangeBool | ||
| 5857 | "This function evaluates a Boolean range expression." | ||
| 5858 | input Boolean inStart; | ||
| 5859 | input Boolean inStop; | ||
| 5860 | output list<Boolean> outRange; | ||
| 5861 | algorithm | ||
| 5862 |
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|
5 | outRange := (if inStart then |
| 5863 | (if inStop then {true} else {}) | ||
| 5864 | else | ||
| 5865 | (if inStop then {false, true} else {false}) | ||
| 5866 | ); | ||
| 5867 | end simplifyRangeBool; | ||
| 5868 | |||
| 5869 | public function simplifyRange | ||
| 5870 | "This function evaluates an Integer range expression." | ||
| 5871 | input Integer inStart; | ||
| 5872 | input Integer inStep; | ||
| 5873 | input Integer inStop; | ||
| 5874 | output list<Integer> outValues; | ||
| 5875 | algorithm | ||
| 5876 | 3246 | outValues := List.intRange3(inStart, inStep, inStop); | |
| 5877 | end simplifyRange; | ||
| 5878 | |||
| 5879 | public function simplifyRangeReal | ||
| 5880 | "This function evaluates a Real range expression." | ||
| 5881 | input Real inStart; | ||
| 5882 | input Real inStep; | ||
| 5883 | input Real inStop; | ||
| 5884 | output list<Real> outValues; | ||
| 5885 | algorithm | ||
| 5886 | outValues := matchcontinue inStop | ||
| 5887 | local | ||
| 5888 | String error_str; | ||
| 5889 | Integer steps; | ||
| 5890 | |||
| 5891 | case _ | ||
| 5892 | algorithm | ||
| 5893 |
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|
16 | true := realAbs(inStep) <= 1e-14; |
| 5894 | ✗ | error_str := stringDelimitList( | |
| 5895 | List.map({inStart, inStep, inStop}, realString), ":"); | ||
| 5896 | ✗ | Error.addMessage(Error.ZERO_STEP_IN_ARRAY_CONSTRUCTOR, {error_str}); | |
| 5897 | ✗ | then | |
| 5898 | fail(); | ||
| 5899 | |||
| 5900 | case _ guard valueEq(inStart, inStop) | ||
| 5901 | ✗ | then {inStart}; | |
| 5902 | |||
| 5903 | else | ||
| 5904 | algorithm | ||
| 5905 | 16 | steps := Util.realRangeSize(inStart, inStep, inStop) - 1; | |
| 5906 | 16 | then | |
| 5907 | simplifyRangeReal2(inStart, inStep, steps, {}); | ||
| 5908 | |||
| 5909 | end matchcontinue; | ||
| 5910 | end simplifyRangeReal; | ||
| 5911 | |||
| 5912 | protected function simplifyRangeReal2 | ||
| 5913 | "Helper function to simplifyRangeReal." | ||
| 5914 | input Real inStart; | ||
| 5915 | input Real inStep; | ||
| 5916 | input Integer inSteps; | ||
| 5917 | input list<Real> inValues; | ||
| 5918 | output list<Real> outValues; | ||
| 5919 | algorithm | ||
| 5920 | outValues := match inSteps | ||
| 5921 | local | ||
| 5922 | Real next; | ||
| 5923 | list<Real> vals; | ||
| 5924 | |||
| 5925 | case -1 then inValues; | ||
| 5926 | |||
| 5927 | else | ||
| 5928 | algorithm | ||
| 5929 | 152 | next := inStart + inStep * intReal(inSteps); | |
| 5930 | 152 | vals := next :: inValues; | |
| 5931 | 152 | then | |
| 5932 | simplifyRangeReal2(inStart, inStep, inSteps - 1, vals); | ||
| 5933 | |||
| 5934 | end match; | ||
| 5935 | end simplifyRangeReal2; | ||
| 5936 | |||
| 5937 | protected function simplifyReduction | ||
| 5938 | input DAE.Exp inReduction; | ||
| 5939 | output DAE.Exp outValue; | ||
| 5940 | algorithm | ||
| 5941 | outValue := matchcontinue inReduction | ||
| 5942 | local | ||
| 5943 | DAE.Exp expr, range, foldExpr, foldExpr2; | ||
| 5944 | DAE.Ident iter_name; | ||
| 5945 | list<DAE.Exp> values; | ||
| 5946 | Option<Values.Value> defaultValue; | ||
| 5947 | Values.Value v; | ||
| 5948 | Option<DAE.Exp> foldExp; | ||
| 5949 | DAE.Type ty,ty1,ety; | ||
| 5950 | DAE.ReductionIterator iter; | ||
| 5951 | list<DAE.ReductionIterator> iterators; | ||
| 5952 | String foldName,resultName,foldName2,resultName2; | ||
| 5953 | Absyn.Path path; | ||
| 5954 | |||
| 5955 | case DAE.REDUCTION(iterators = iterators, reductionInfo=DAE.REDUCTIONINFO(defaultValue = SOME(v))) | ||
| 5956 | algorithm | ||
| 5957 |
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|
1364 | true := hasZeroLengthIterator(iterators); |
| 5958 | 6 | expr := ValuesUtil.valueExp(v); | |
| 5959 | then expr; | ||
| 5960 | |||
| 5961 | case DAE.REDUCTION(iterators = iterators) | ||
| 5962 | algorithm | ||
| 5963 |
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|
1833 | true := hasZeroLengthIterator(iterators); |
| 5964 | ✗ | expr := ValuesUtil.valueExp(Values.META_FAIL()); | |
| 5965 | then expr; | ||
| 5966 | |||
| 5967 | case DAE.REDUCTION(reductionInfo = DAE.REDUCTIONINFO(path = path, foldName=foldName, resultName=resultName, foldExp=foldExp, exprType = ty, defaultValue = defaultValue), expr = expr, iterators = {DAE.REDUCTIONITER(id = iter_name, guardExp = NONE(), exp = range)}) | ||
| 5968 | algorithm | ||
| 5969 | 1657 | values := Expression.getArrayOrRangeContents(range); | |
| 5970 | // TODO: Use foldExp | ||
| 5971 | //ty = Types.unliftArray(ty); | ||
| 5972 | 962 | ety := Types.simplifyType(ty); | |
| 5973 | 962 | values := replaceIteratorWithValues(values, expr, iter_name); | |
| 5974 | 962 | expr := simplifyReductionFoldPhase(path,foldExp,foldName,resultName,ety,values,defaultValue); | |
| 5975 | then expr; | ||
| 5976 | |||
| 5977 | // iterType=THREAD() can handle multiple iterators | ||
| 5978 | case DAE.REDUCTION(reductionInfo = DAE.REDUCTIONINFO(path = path, iterType = Absyn.THREAD(), foldName=foldName, resultName=resultName, exprType = ty, foldExp=foldExp, defaultValue = defaultValue), expr = expr, iterators = iterators) | ||
| 5979 | algorithm | ||
| 5980 | // Start like for the normal reductions | ||
| 5981 |
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|
32 | DAE.REDUCTIONITER(id = iter_name, guardExp = NONE(), exp = range)::iterators := iterators; |
| 5982 | 32 | values := Expression.getArrayOrRangeContents(range); | |
| 5983 | ✗ | ety := Types.simplifyType(ty); | |
| 5984 | ✗ | values := List.map2(values, replaceIteratorWithExp, expr, iter_name); | |
| 5985 | // Then also fix the rest of the iterators | ||
| 5986 | ✗ | values := List.fold(iterators, getIteratorValues, values); | |
| 5987 | // And fold | ||
| 5988 | ✗ | expr := simplifyReductionFoldPhase(path,foldExp,foldName,resultName,ety,values,defaultValue); | |
| 5989 | then expr; | ||
| 5990 | |||
| 5991 | // array can handle multiple iterators | ||
| 5992 | case DAE.REDUCTION(reductionInfo = DAE.REDUCTIONINFO(path = path as Absyn.IDENT("array"), iterType = Absyn.COMBINE(), foldName=foldName, resultName=resultName, exprType = ty), expr = expr, iterators = iter::(iterators as _::_)) | ||
| 5993 | algorithm | ||
| 5994 | 2 | foldName2 := Util.getTempVariableIndex(); | |
| 5995 | 2 | resultName2 := Util.getTempVariableIndex(); | |
| 5996 | 2 | ty1 := Expression.unliftArray(ty); | |
| 5997 | 4 | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty1,NONE(),foldName2,resultName2,NONE()),expr,{iter}); | |
| 5998 | 2 | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty,NONE(),foldName,resultName,NONE()),expr,iterators); | |
| 5999 | then expr; | ||
| 6000 | // rest can also handle multiple iterators | ||
| 6001 | case DAE.REDUCTION(reductionInfo = DAE.REDUCTIONINFO(path = path, iterType = Absyn.COMBINE(), foldName=foldName, resultName=resultName, exprType = ty, foldExp=NONE(), defaultValue = defaultValue), expr = expr, iterators = iter::(iterators as _::_)) | ||
| 6002 | algorithm | ||
| 6003 | ✗ | foldName2 := Util.getTempVariableIndex(); | |
| 6004 | ✗ | resultName2 := Util.getTempVariableIndex(); | |
| 6005 | ✗ | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty,defaultValue,foldName2,resultName2,NONE()),expr,{iter}); | |
| 6006 | ✗ | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty,defaultValue,foldName,resultName,NONE()),expr,iterators); | |
| 6007 | then expr; | ||
| 6008 | |||
| 6009 | case DAE.REDUCTION(reductionInfo = DAE.REDUCTIONINFO(path = path, iterType = Absyn.COMBINE(), foldName=foldName, resultName=resultName, exprType = ty, foldExp=SOME(foldExpr), defaultValue = defaultValue), expr = expr, iterators = iter::(iterators as _::_)) | ||
| 6010 | algorithm | ||
| 6011 | ✗ | foldName2 := Util.getTempVariableIndex(); | |
| 6012 | ✗ | resultName2 := Util.getTempVariableIndex(); | |
| 6013 | ✗ | (foldExpr2,_) := Expression.traverseExpBottomUp(foldExpr,Expression.renameExpCrefIdent,(foldName,foldName2)); | |
| 6014 | ✗ | (foldExpr2,_) := Expression.traverseExpBottomUp(foldExpr2,Expression.renameExpCrefIdent,(resultName,resultName2)); | |
| 6015 | ✗ | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty,defaultValue,foldName2,resultName2,SOME(foldExpr2)),expr,{iter}); | |
| 6016 | ✗ | expr := DAE.REDUCTION(DAE.REDUCTIONINFO(path,Absyn.COMBINE(),ty,defaultValue,foldName,resultName,SOME(foldExpr)),expr,iterators); | |
| 6017 | then expr; | ||
| 6018 | |||
| 6019 | else inReduction; | ||
| 6020 | |||
| 6021 | end matchcontinue; | ||
| 6022 | end simplifyReduction; | ||
| 6023 | |||
| 6024 | protected function getIteratorValues | ||
| 6025 | input DAE.ReductionIterator iter; | ||
| 6026 | input list<DAE.Exp> inValues; | ||
| 6027 | output list<DAE.Exp> values; | ||
| 6028 | protected | ||
| 6029 | String iter_name; | ||
| 6030 | DAE.Exp range; | ||
| 6031 | algorithm | ||
| 6032 | ✗ | DAE.REDUCTIONITER(id = iter_name, guardExp = NONE(), exp = range) := iter; | |
| 6033 | ✗ | values := Expression.getArrayOrRangeContents(range); | |
| 6034 | ✗ | values := List.threadMap1(values, inValues, replaceIteratorWithExp, iter_name); | |
| 6035 | end getIteratorValues; | ||
| 6036 | |||
| 6037 | protected function replaceIteratorWithExp | ||
| 6038 | input DAE.Exp iterExp; | ||
| 6039 | input DAE.Exp exp; | ||
| 6040 | input String name; | ||
| 6041 | output DAE.Exp outExp; | ||
| 6042 | algorithm | ||
| 6043 |
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|
13422 | (outExp,(_,_,true)) := Expression.traverseExpBottomUp(exp, replaceIteratorWithExpTraverser, (name,iterExp,true)); |
| 6044 | end replaceIteratorWithExp; | ||
| 6045 | |||
| 6046 | protected function replaceIteratorWithExpTraverser | ||
| 6047 | input DAE.Exp inExp; | ||
| 6048 | input tuple<String,DAE.Exp,Boolean> inTpl; | ||
| 6049 | output DAE.Exp outExp; | ||
| 6050 | output tuple<String,DAE.Exp,Boolean> outTpl; | ||
| 6051 | algorithm | ||
| 6052 | (outExp,outTpl) := matchcontinue (inExp,inTpl) | ||
| 6053 | local | ||
| 6054 | String id,id2,name,replName; | ||
| 6055 | DAE.Exp iterExp; | ||
| 6056 | DAE.Type ty,ty1; | ||
| 6057 | list<DAE.Subscript> ss; | ||
| 6058 | DAE.ComponentRef cr; | ||
| 6059 | DAE.Exp exp; | ||
| 6060 | tuple<String,DAE.Exp,Boolean> tpl; | ||
| 6061 | Absyn.Path callPath,recordPath; | ||
| 6062 | list<DAE.Var> varLst; | ||
| 6063 | list<DAE.Exp> exps; | ||
| 6064 | Integer i; | ||
| 6065 | case (_,(_,_,false)) then (inExp,inTpl); | ||
| 6066 | case (DAE.CREF(DAE.CREF_IDENT(id,_,{}),_),tpl as (name,iterExp,_)) | ||
| 6067 | guard | ||
| 6068 | stringEq(name,id) | ||
| 6069 | then (iterExp,tpl); | ||
| 6070 | case (exp as DAE.CREF(componentRef=DAE.CREF_IDENT(ident=id)),(name,iterExp,_)) | ||
| 6071 | guard stringEq(name,id) | ||
| 6072 | ✗ | then (exp,(name,iterExp,false)); | |
| 6073 | case (DAE.CREF(DAE.CREF_QUAL(id,ty1,ss,cr),ty),tpl as (name,DAE.CREF(componentRef=DAE.CREF_IDENT(ident=replName,subscriptLst={})),_)) | ||
| 6074 | guard stringEq(name,id) | ||
| 6075 | ✗ | then (DAE.CREF(DAE.CREF_QUAL(replName,ty1,ss,cr),ty), tpl); | |
| 6076 | case (DAE.CREF(DAE.CREF_QUAL(id,ty1,{},cr),ty),tpl as (name,DAE.CREF(componentRef=DAE.CREF_IDENT(ident=replName,subscriptLst=ss)),_)) | ||
| 6077 | guard stringEq(name,id) | ||
| 6078 | ✗ | then (DAE.CREF(DAE.CREF_QUAL(replName,ty1,ss,cr),ty), tpl); | |
| 6079 | case (DAE.CREF(componentRef=DAE.CREF_QUAL(id,_,{},DAE.CREF_IDENT(id2,_,{}))),tpl as (name,DAE.CALL(expLst=exps,path=callPath,attr=DAE.CALL_ATTR(ty=DAE.T_COMPLEX(varLst=varLst,complexClassType=ClassInf.RECORD(recordPath)))),_)) | ||
| 6080 | algorithm | ||
| 6081 | ✗ | true := stringEq(name,id); | |
| 6082 | ✗ | true := AbsynUtil.pathEqual(callPath,recordPath); | |
| 6083 | ✗ | true := listLength(varLst) == listLength(exps); | |
| 6084 | ✗ | i := List.position1OnTrue(varLst,DAEUtil.typeVarIdentEqual,id2); | |
| 6085 | ✗ | exp := listGet(exps,i); | |
| 6086 | then (exp,tpl); | ||
| 6087 | case (exp as DAE.CREF(componentRef=DAE.CREF_QUAL(ident=id)),(name,iterExp,_)) | ||
| 6088 | guard stringEq(name,id) | ||
| 6089 | ✗ | then (exp,(name,iterExp,false)); | |
| 6090 | else (inExp,inTpl); | ||
| 6091 | end matchcontinue; | ||
| 6092 | end replaceIteratorWithExpTraverser; | ||
| 6093 | |||
| 6094 | protected function replaceIteratorWithValues | ||
| 6095 | "The reduction body instantiated for each iterator value. Each x[iter] where x | ||
| 6096 | does not depend on the iterator becomes the selected element of x, so the | ||
| 6097 | copies do not each carry (and later simplify) all of x." | ||
| 6098 | input list<DAE.Exp> values; | ||
| 6099 | input DAE.Exp exp; | ||
| 6100 | input String name; | ||
| 6101 | output list<DAE.Exp> exps; | ||
| 6102 | protected | ||
| 6103 | DAE.Exp body = exp; | ||
| 6104 | list<DAE.Exp> sites = {}; | ||
| 6105 | array<DAE.Exp> sitesArr; | ||
| 6106 | algorithm | ||
| 6107 |
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|
962 | if List.all(values, isIntegerConstant) then |
| 6108 | 722 | (body, (_, sites)) := Expression.traverseExpBottomUp(exp, extractIteratorSubscript, (name, {})); | |
| 6109 | end if; | ||
| 6110 |
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|
962 | if listEmpty(sites) then |
| 6111 | 852 | exps := List.map2(values, replaceIteratorWithExp, exp, name); | |
| 6112 | else | ||
| 6113 | 110 | sitesArr := listArray(listReverse(sites)); | |
| 6114 |
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|
1880 | exps := list(Expression.traverseExpBottomUp(replaceIteratorWithExp(v, body, name), fillIteratorSubscript, (sitesArr, v)) for v in values); |
| 6115 | end if; | ||
| 6116 | end replaceIteratorWithValues; | ||
| 6117 | |||
| 6118 | protected function isIntegerConstant | ||
| 6119 | input DAE.Exp exp; | ||
| 6120 | output Boolean b; | ||
| 6121 | algorithm | ||
| 6122 | b := match exp case DAE.ICONST() then true; else false; end match; | ||
| 6123 | end isIntegerConstant; | ||
| 6124 | |||
| 6125 | protected function extractIteratorSubscript | ||
| 6126 | "Replaces x[iter] by the placeholder $iterSub[n], where n indexes x in the | ||
| 6127 | accumulated list." | ||
| 6128 | input DAE.Exp inExp; | ||
| 6129 | input tuple<String, list<DAE.Exp>> inTpl; | ||
| 6130 | output DAE.Exp outExp; | ||
| 6131 | output tuple<String, list<DAE.Exp>> outTpl; | ||
| 6132 | algorithm | ||
| 6133 | (outExp, outTpl) := match (inExp, inTpl) | ||
| 6134 | local | ||
| 6135 | String id, name; | ||
| 6136 | DAE.Exp arr; | ||
| 6137 | list<DAE.Exp> sites; | ||
| 6138 | DAE.Type ty; | ||
| 6139 | case (DAE.ASUB(exp = arr, sub = {DAE.INDEX(DAE.CREF(componentRef = DAE.CREF_IDENT(ident = id, subscriptLst = {})))}), (name, sites)) | ||
| 6140 | guard stringEq(id, name) and not iteratorOrPlaceholderOccurs(arr, name) | ||
| 6141 | algorithm | ||
| 6142 | 332 | ty := Expression.typeof(inExp); | |
| 6143 | 996 | then (DAE.CREF(DAE.CREF_IDENT("$iterSub", ty, {DAE.INDEX(DAE.ICONST(listLength(sites) + 1))}), ty), (name, arr :: sites)); | |
| 6144 | else (inExp, inTpl); | ||
| 6145 | end match; | ||
| 6146 | end extractIteratorSubscript; | ||
| 6147 | |||
| 6148 | protected function iteratorOrPlaceholderOccurs | ||
| 6149 | input DAE.Exp exp; | ||
| 6150 | input String name; | ||
| 6151 | output Boolean occurs; | ||
| 6152 | algorithm | ||
| 6153 | 332 | (_, (_, occurs)) := Expression.traverseExpBottomUp(exp, iteratorOrPlaceholderOccursTraverser, (name, false)); | |
| 6154 | end iteratorOrPlaceholderOccurs; | ||
| 6155 | |||
| 6156 | protected function iteratorOrPlaceholderOccursTraverser | ||
| 6157 | input DAE.Exp inExp; | ||
| 6158 | input tuple<String, Boolean> inTpl; | ||
| 6159 | output DAE.Exp outExp = inExp; | ||
| 6160 | output tuple<String, Boolean> outTpl; | ||
| 6161 | algorithm | ||
| 6162 | outTpl := match (inExp, inTpl) | ||
| 6163 | local | ||
| 6164 | String id, name; | ||
| 6165 | case (_, (_, true)) then inTpl; | ||
| 6166 | case (DAE.CREF(componentRef = DAE.CREF_IDENT(ident = id)), (name, _)) | ||
| 6167 | ✗ | then (name, stringEq(id, name) or stringEq(id, "$iterSub")); | |
| 6168 | case (DAE.CREF(componentRef = DAE.CREF_QUAL(ident = id)), (name, _)) | ||
| 6169 | ✗ | then (name, stringEq(id, name)); | |
| 6170 | else inTpl; | ||
| 6171 | end match; | ||
| 6172 | end iteratorOrPlaceholderOccursTraverser; | ||
| 6173 | |||
| 6174 | protected function fillIteratorSubscript | ||
| 6175 | input DAE.Exp inExp; | ||
| 6176 | input tuple<array<DAE.Exp>, DAE.Exp> inTpl; | ||
| 6177 | output DAE.Exp outExp; | ||
| 6178 | output tuple<array<DAE.Exp>, DAE.Exp> outTpl = inTpl; | ||
| 6179 | algorithm | ||
| 6180 | outExp := match (inExp, inTpl) | ||
| 6181 | local | ||
| 6182 | Integer n; | ||
| 6183 | array<DAE.Exp> sites; | ||
| 6184 | DAE.Exp sub; | ||
| 6185 | case (DAE.CREF(componentRef = DAE.CREF_IDENT(ident = "$iterSub", subscriptLst = {DAE.INDEX(DAE.ICONST(n))})), (sites, sub)) | ||
| 6186 | 5620 | then selectElement(arrayGet(sites, n), sub); | |
| 6187 | else inExp; | ||
| 6188 | end match; | ||
| 6189 | end fillIteratorSubscript; | ||
| 6190 | |||
| 6191 | protected function selectElement | ||
| 6192 | "exp[sub] for a constant sub, selected the way simplifyAsub does but before | ||
| 6193 | the other elements are simplified." | ||
| 6194 | input DAE.Exp exp; | ||
| 6195 | input DAE.Exp sub; | ||
| 6196 | output DAE.Exp outExp; | ||
| 6197 | protected | ||
| 6198 | Integer i = Expression.expInt(sub); | ||
| 6199 | algorithm | ||
| 6200 | outExp := matchcontinue exp | ||
| 6201 | local | ||
| 6202 | DAE.Exp e1, e2; | ||
| 6203 | list<DAE.Exp> exps; | ||
| 6204 | list<list<DAE.Exp>> rows; | ||
| 6205 | DAE.Type ty; | ||
| 6206 | DAE.ComponentRef cr; | ||
| 6207 | Operator op; | ||
| 6208 | |||
| 6209 | case DAE.ARRAY(array = exps) guard i >= 1 and i <= listLength(exps) | ||
| 6210 | 5620 | then listGet(exps, i); | |
| 6211 | |||
| 6212 | case DAE.MATRIX(ty = ty, matrix = rows) guard i >= 1 and i <= listLength(rows) | ||
| 6213 | ✗ | then DAE.ARRAY(Expression.unliftArray(ty), true, listGet(rows, i)); | |
| 6214 | |||
| 6215 | case DAE.CREF(componentRef = cr, ty = ty) | ||
| 6216 | guard Types.isArray(ty) and referenceEq(simplifyCref(exp, cr, ty), exp) | ||
| 6217 | ✗ | then Expression.makeCrefExp(simplifyAsubCref(cr, sub), Expression.unliftArray(ty)); | |
| 6218 | |||
| 6219 | case DAE.UNARY(operator = DAE.UMINUS_ARR(), exp = e1) | ||
| 6220 | algorithm | ||
| 6221 | ✗ | e1 := selectElement(e1, sub); | |
| 6222 | ✗ | ty := Expression.typeof(e1); | |
| 6223 | ✗ | then DAE.UNARY(if DAEUtil.expTypeArray(ty) then DAE.UMINUS_ARR(ty) else DAE.UMINUS(ty), e1); | |
| 6224 | |||
| 6225 | case DAE.BINARY(exp1 = e1, operator = op, exp2 = e2) | ||
| 6226 | guard isSelectableOperator(op) | ||
| 6227 | algorithm | ||
| 6228 | ✗ | if not Expression.isScalarArrayOp(op) then | |
| 6229 | ✗ | e1 := selectElement(e1, sub); | |
| 6230 | end if; | ||
| 6231 | ✗ | if not Expression.isArrayScalarOp(op) then | |
| 6232 | ✗ | e2 := selectElement(e2, sub); | |
| 6233 | end if; | ||
| 6234 | ✗ | ty := Expression.typeof(if Expression.isScalarArrayOp(op) then e2 else e1); | |
| 6235 | ✗ | then DAE.BINARY(e1, selectedOperator(op, ty, DAEUtil.expTypeArray(ty)), e2); | |
| 6236 | |||
| 6237 | ✗ | else DAE.ASUB(exp, {DAE.INDEX(sub)}); | |
| 6238 | end matchcontinue; | ||
| 6239 | end selectElement; | ||
| 6240 | |||
| 6241 | protected function isSelectableOperator | ||
| 6242 | input Operator op; | ||
| 6243 | output Boolean b; | ||
| 6244 | algorithm | ||
| 6245 | b := match op | ||
| 6246 | case DAE.ADD_ARR() then true; | ||
| 6247 | case DAE.SUB_ARR() then true; | ||
| 6248 | case DAE.MUL_ARR() then true; | ||
| 6249 | case DAE.DIV_ARR() then true; | ||
| 6250 | case DAE.POW_ARR2() then true; | ||
| 6251 | ✗ | else Expression.isArrayScalarOp(op) or Expression.isScalarArrayOp(op); | |
| 6252 | end match; | ||
| 6253 | end isSelectableOperator; | ||
| 6254 | |||
| 6255 | protected function selectedOperator | ||
| 6256 | "The operator simplifyAsub gives an element of an array operation." | ||
| 6257 | input Operator op; | ||
| 6258 | input DAE.Type ty; | ||
| 6259 | input Boolean isArray; | ||
| 6260 | output Operator outOp; | ||
| 6261 | algorithm | ||
| 6262 | outOp := match op | ||
| 6263 | ✗ | case DAE.ADD_ARR() then if isArray then DAE.ADD_ARR(ty) else DAE.ADD(ty); | |
| 6264 | ✗ | case DAE.SUB_ARR() then if isArray then DAE.SUB_ARR(ty) else DAE.SUB(ty); | |
| 6265 | ✗ | case DAE.MUL_ARR() then if isArray then DAE.MUL_ARR(ty) else DAE.MUL(ty); | |
| 6266 | ✗ | case DAE.DIV_ARR() then if isArray then DAE.DIV_ARR(ty) else DAE.DIV(ty); | |
| 6267 | ✗ | case DAE.POW_ARR2() then if isArray then DAE.POW_ARR2(ty) else DAE.POW(ty); | |
| 6268 | ✗ | case DAE.MUL_ARRAY_SCALAR() then if isArray then DAE.MUL_ARRAY_SCALAR(ty) else DAE.MUL(ty); | |
| 6269 | ✗ | case DAE.ADD_ARRAY_SCALAR() then if isArray then DAE.ADD_ARRAY_SCALAR(ty) else DAE.ADD(ty); | |
| 6270 | ✗ | case DAE.DIV_ARRAY_SCALAR() then if isArray then DAE.DIV_ARRAY_SCALAR(ty) else DAE.DIV(ty); | |
| 6271 | ✗ | case DAE.POW_ARRAY_SCALAR() then if isArray then DAE.POW_ARRAY_SCALAR(ty) else DAE.POW(ty); | |
| 6272 | ✗ | case DAE.SUB_SCALAR_ARRAY() then if isArray then DAE.SUB_SCALAR_ARRAY(ty) else DAE.SUB(ty); | |
| 6273 | ✗ | case DAE.DIV_SCALAR_ARRAY() then if isArray then DAE.DIV_SCALAR_ARRAY(ty) else DAE.DIV(ty); | |
| 6274 | ✗ | case DAE.POW_SCALAR_ARRAY() then if isArray then DAE.POW_SCALAR_ARRAY(ty) else DAE.POW(ty); | |
| 6275 | end match; | ||
| 6276 | end selectedOperator; | ||
| 6277 | |||
| 6278 | protected function simplifyReductionFoldPhase | ||
| 6279 | input Absyn.Path path; | ||
| 6280 | input Option<DAE.Exp> optFoldExp; | ||
| 6281 | input String foldName,resultName; | ||
| 6282 | input DAE.Type ty; | ||
| 6283 | input list<DAE.Exp> inExps; | ||
| 6284 | input Option<Values.Value> defaultValue; | ||
| 6285 | output DAE.Exp exp; | ||
| 6286 | protected | ||
| 6287 | Boolean checkForSimplifications; | ||
| 6288 | algorithm | ||
| 6289 | (exp, checkForSimplifications) := match (path, optFoldExp, inExps, defaultValue) | ||
| 6290 | local | ||
| 6291 | Values.Value val; | ||
| 6292 | DAE.Exp arr_exp,foldExp; | ||
| 6293 | DAE.Type aty,ty2; | ||
| 6294 | list<DAE.Exp> exps; | ||
| 6295 | Integer length; | ||
| 6296 | |||
| 6297 | case (Absyn.IDENT("array"), _, _, _) | ||
| 6298 | algorithm | ||
| 6299 | 664 | aty := Types.unliftArray(Types.expTypetoTypesType(ty)); | |
| 6300 | 664 | length := listLength(inExps); | |
| 6301 | 664 | ty2 := Types.liftArray(aty, DAE.DIM_INTEGER(length)); // The size can be unknown before the reduction... | |
| 6302 | 664 | exp := Expression.makeArray(inExps, ty2, not Types.isArray(aty)); | |
| 6303 | then (exp, false); | ||
| 6304 | |||
| 6305 | ✗ | case (_, _, {}, SOME(val)) then (ValuesUtil.valueExp(val), false); | |
| 6306 | ✗ | case (_, _, {}, NONE()) then fail(); | |
| 6307 | |||
| 6308 | case (Absyn.IDENT("min"), _, _, _) | ||
| 6309 | algorithm | ||
| 6310 | 15 | arr_exp := Expression.makeScalarArray(inExps, ty); | |
| 6311 | 15 | then (Expression.makePureBuiltinCall("min", {arr_exp}, ty), true); | |
| 6312 | |||
| 6313 | case (Absyn.IDENT("max"), _, _, _) | ||
| 6314 | algorithm | ||
| 6315 | 17 | arr_exp := Expression.makeScalarArray(inExps, ty); | |
| 6316 | 17 | then (Expression.makePureBuiltinCall("max", {arr_exp}, ty), true); | |
| 6317 | |||
| 6318 | case (_, SOME(_), {exp}, _) | ||
| 6319 | then (exp, false); | ||
| 6320 | |||
| 6321 | |||
| 6322 | // foldExp=(a+b) ; exps={1,2,3,4} | ||
| 6323 | // step 1: result=4 | ||
| 6324 | // step 2: result= (replace b in (a+b) with 4, a with 3): 3+4 | ||
| 6325 | // ... | ||
| 6326 | // Why reverse order? Smaller expressions to perform the replacements in | ||
| 6327 | case (_, SOME(foldExp), exp::exps, _) | ||
| 6328 | algorithm | ||
| 6329 | 195 | exp := simplifyReductionFoldPhase2(exps,foldExp,foldName,resultName,exp); | |
| 6330 | then (exp, false); | ||
| 6331 | |||
| 6332 | end match; | ||
| 6333 | if checkForSimplifications then | ||
| 6334 |
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|
32 | (exp,true) := simplify1(exp); |
| 6335 | end if; | ||
| 6336 | end simplifyReductionFoldPhase; | ||
| 6337 | |||
| 6338 | protected function simplifyReductionFoldPhase2 | ||
| 6339 | input list<DAE.Exp> inExps; | ||
| 6340 | input DAE.Exp foldExp; | ||
| 6341 | input String foldName,resultName; | ||
| 6342 | input DAE.Exp acc; | ||
| 6343 | output DAE.Exp exp; | ||
| 6344 | algorithm | ||
| 6345 | exp := match inExps | ||
| 6346 | local | ||
| 6347 | list<DAE.Exp> exps; | ||
| 6348 | |||
| 6349 | case {} then acc; | ||
| 6350 | case exp::exps | ||
| 6351 | algorithm | ||
| 6352 | 2406 | exp := replaceIteratorWithExp(exp, foldExp, foldName); | |
| 6353 | 2406 | exp := replaceIteratorWithExp(acc, exp, resultName); | |
| 6354 | 2406 | then simplifyReductionFoldPhase2(exps,foldExp,foldName,resultName,exp); | |
| 6355 | |||
| 6356 | end match; | ||
| 6357 | end simplifyReductionFoldPhase2; | ||
| 6358 | |||
| 6359 | protected function hasZeroLengthIterator | ||
| 6360 | input list<DAE.ReductionIterator> inIters; | ||
| 6361 | output Boolean b; | ||
| 6362 | algorithm | ||
| 6363 | b := match inIters | ||
| 6364 | local list<DAE.ReductionIterator> iters; | ||
| 6365 | case {} then false; | ||
| 6366 | case DAE.REDUCTIONITER(guardExp=SOME(DAE.BCONST(false)))::_ then true; | ||
| 6367 | case DAE.REDUCTIONITER(exp=DAE.LIST({}))::_ then true; | ||
| 6368 | case DAE.REDUCTIONITER(exp=DAE.ARRAY(array={}))::_ then true; | ||
| 6369 | 3251 | case _::iters then hasZeroLengthIterator(iters); | |
| 6370 | end match; | ||
| 6371 | end hasZeroLengthIterator; | ||
| 6372 | |||
| 6373 | public function simplifyList | ||
| 6374 | input list<DAE.Exp> expl; | ||
| 6375 | output list<DAE.Exp> outExpl; | ||
| 6376 | algorithm | ||
| 6377 |
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|
2098240 | outExpl := list(simplify1(exp) for exp in expl); |
| 6378 | end simplifyList; | ||
| 6379 | |||
| 6380 | public function simplifyList1 | ||
| 6381 | input list<DAE.Exp> expl; | ||
| 6382 | output list<DAE.Exp> outExpl; | ||
| 6383 | output list<Boolean> outBool = {}; | ||
| 6384 | algorithm | ||
| 6385 | ✗ | outExpl := list(match exp | |
| 6386 | local | ||
| 6387 | DAE.Exp e; | ||
| 6388 | Boolean b2; | ||
| 6389 | case _ | ||
| 6390 | algorithm | ||
| 6391 | ✗ | (e,b2) := simplify(exp); | |
| 6392 | ✗ | outBool := b2::outBool; | |
| 6393 | then e; | ||
| 6394 | end match for exp in expl); | ||
| 6395 | ✗ | outBool := Dangerous.listReverseInPlace(outBool); | |
| 6396 | end simplifyList1; | ||
| 6397 | |||
| 6398 | public function condsimplifyList1 | ||
| 6399 | input list<Boolean> blst; | ||
| 6400 | input list<DAE.Exp> expl; | ||
| 6401 | output list<DAE.Exp> outExpl = {}; | ||
| 6402 | output list<Boolean> outBool = {}; | ||
| 6403 | protected | ||
| 6404 | list<DAE.Exp> rest_expl = expl; | ||
| 6405 | DAE.Exp exp; | ||
| 6406 | Boolean b2; | ||
| 6407 | algorithm | ||
| 6408 |
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|
584 | for b in blst loop |
| 6409 |
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|
429 | exp::rest_expl := rest_expl; |
| 6410 | 429 | (exp,b2) := condsimplify(b,exp); | |
| 6411 | outExpl := exp::outExpl; | ||
| 6412 |
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|
429 | outBool := b2::outBool; |
| 6413 | end for; | ||
| 6414 | 155 | outExpl := Dangerous.listReverseInPlace(outExpl); | |
| 6415 | 155 | outBool := Dangerous.listReverseInPlace(outBool); | |
| 6416 | end condsimplifyList1; | ||
| 6417 | |||
| 6418 | protected function checkZeroLengthArrayOp | ||
| 6419 | "If this succeeds, and either argument to the operation is empty, the whole operation is empty" | ||
| 6420 | input DAE.Operator op; | ||
| 6421 | algorithm | ||
| 6422 | () := match op | ||
| 6423 | case DAE.ADD_ARR() then (); | ||
| 6424 | case DAE.SUB_ARR() then (); | ||
| 6425 | case DAE.MUL_ARR() then (); | ||
| 6426 | case DAE.DIV_ARR() then (); | ||
| 6427 | case DAE.POW_ARR() then (); | ||
| 6428 | case DAE.POW_ARR2() then (); | ||
| 6429 | case DAE.MUL_ARRAY_SCALAR() then (); | ||
| 6430 | case DAE.ADD_ARRAY_SCALAR() then (); | ||
| 6431 | case DAE.DIV_ARRAY_SCALAR() then (); | ||
| 6432 | case DAE.SUB_SCALAR_ARRAY() then (); | ||
| 6433 | case DAE.DIV_SCALAR_ARRAY() then (); | ||
| 6434 | case DAE.MUL_MATRIX_PRODUCT() then (); | ||
| 6435 | end match; | ||
| 6436 | end checkZeroLengthArrayOp; | ||
| 6437 | |||
| 6438 | public function simplifyAddSymbolicOperation | ||
| 6439 | input DAE.EquationExp exp; | ||
| 6440 | input DAE.ElementSource source; | ||
| 6441 | output DAE.EquationExp outExp; | ||
| 6442 | output DAE.ElementSource outSource; | ||
| 6443 | algorithm | ||
| 6444 | (outExp,outSource) := match exp | ||
| 6445 | local | ||
| 6446 | Boolean changed,changed1,changed2; | ||
| 6447 | DAE.Exp e,e1,e2; | ||
| 6448 | case DAE.PARTIAL_EQUATION(e) | ||
| 6449 | algorithm | ||
| 6450 | 9736 | (e,changed) := simplify(e); | |
| 6451 |
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|
9736 | outExp := if changed then DAE.PARTIAL_EQUATION(e) else exp; |
| 6452 | 9736 | outSource := ElementSource.condAddSymbolicTransformation(changed,source,DAE.SIMPLIFY(exp,outExp)); | |
| 6453 | then (outExp,outSource); | ||
| 6454 | case DAE.RESIDUAL_EXP(e) | ||
| 6455 | algorithm | ||
| 6456 | ✗ | (e,changed) := simplify(e); | |
| 6457 | ✗ | outExp := if changed then DAE.RESIDUAL_EXP(e) else exp; | |
| 6458 | ✗ | outSource := ElementSource.condAddSymbolicTransformation(changed,source,DAE.SIMPLIFY(exp,outExp)); | |
| 6459 | then (outExp,outSource); | ||
| 6460 | case DAE.EQUALITY_EXPS(e1,e2) | ||
| 6461 | algorithm | ||
| 6462 | 155271 | (e1,changed1) := simplify(e1); | |
| 6463 | 155271 | (e2,changed2) := simplify(e2); | |
| 6464 |
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|
155271 | changed := changed1 or changed2; |
| 6465 |
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155271 | outExp := if changed then DAE.EQUALITY_EXPS(e1,e2) else exp; |
| 6466 | 155271 | outSource := ElementSource.condAddSymbolicTransformation(changed,source,DAE.SIMPLIFY(exp,outExp)); | |
| 6467 | then (outExp,outSource); | ||
| 6468 | else | ||
| 6469 | algorithm | ||
| 6470 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {"ExpressionSimplify.simplifyAddSymbolicOperation failed"}); | |
| 6471 | ✗ | then fail(); | |
| 6472 | end match; | ||
| 6473 | end simplifyAddSymbolicOperation; | ||
| 6474 | |||
| 6475 | public function condSimplifyAddSymbolicOperation | ||
| 6476 | input Boolean cond; | ||
| 6477 | input output DAE.EquationExp exp; | ||
| 6478 | input output DAE.ElementSource source; | ||
| 6479 | algorithm | ||
| 6480 |
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3050 | if cond then |
| 6481 | 1846 | (exp,source) := simplifyAddSymbolicOperation(exp,source); | |
| 6482 | end if; | ||
| 6483 | end condSimplifyAddSymbolicOperation; | ||
| 6484 | |||
| 6485 | protected function simplifySize | ||
| 6486 | input DAE.Exp origExp; | ||
| 6487 | input DAE.Exp exp; | ||
| 6488 | input Option<DAE.Exp> optDim; | ||
| 6489 | output DAE.Exp outExp; | ||
| 6490 | algorithm | ||
| 6491 | outExp := matchcontinue optDim | ||
| 6492 | local | ||
| 6493 | Integer i,n; | ||
| 6494 | DAE.Type t; | ||
| 6495 | DAE.Dimensions dims; | ||
| 6496 | DAE.Dimension dim; | ||
| 6497 | DAE.Exp dimExp; | ||
| 6498 | |||
| 6499 | // simplify size operator | ||
| 6500 | case SOME(dimExp) | ||
| 6501 | algorithm | ||
| 6502 | 5469 | i := Expression.expInt(dimExp); | |
| 6503 | 5469 | t := Expression.typeof(exp); | |
| 6504 | 5469 | dims := Expression.arrayDimension(t); | |
| 6505 | 5469 | dim := listGet(dims,i); | |
| 6506 | 5451 | n := Expression.dimensionSize(dim); | |
| 6507 | 1757 | then DAE.ICONST(n); | |
| 6508 | // TODO: Handle optDim=NONE() when dims are known | ||
| 6509 | else origExp; | ||
| 6510 | end matchcontinue; | ||
| 6511 | end simplifySize; | ||
| 6512 | |||
| 6513 | protected function simplifyTSub | ||
| 6514 | input DAE.Exp origExp; | ||
| 6515 | output DAE.Exp outExp; | ||
| 6516 | algorithm | ||
| 6517 | outExp := match origExp | ||
| 6518 | local | ||
| 6519 | list<DAE.Exp> expl; | ||
| 6520 | Integer i; | ||
| 6521 | DAE.Exp e; | ||
| 6522 | |||
| 6523 | // NOTE: It should be impossible for TSUB to use an index that becomes out of range, so match is correct here... | ||
| 6524 | case DAE.TSUB(exp = DAE.CAST(exp = DAE.TUPLE(PR = expl)), ix = i) | ||
| 6525 | ✗ | then listGet(expl, i); | |
| 6526 | case DAE.TSUB(exp = DAE.TUPLE(PR = expl), ix = i) | ||
| 6527 | 17 | then listGet(expl, i); | |
| 6528 | case DAE.TSUB(exp= e as (DAE.RCONST())) then e; | ||
| 6529 | else origExp; | ||
| 6530 | end match; | ||
| 6531 | end simplifyTSub; | ||
| 6532 | |||
| 6533 | protected function simplifyNoEvent "Adds noEvent() only to required subexpressions" | ||
| 6534 | input DAE.Exp inExp; | ||
| 6535 | output DAE.Exp e; | ||
| 6536 | algorithm | ||
| 6537 | 8539 | e := Expression.addNoEventToEventTriggeringFunctions(Expression.addNoEventToRelations(Expression.stripNoEvent(inExp))); | |
| 6538 | end simplifyNoEvent; | ||
| 6539 | |||
| 6540 | protected function maxElement | ||
| 6541 | input DAE.Exp e1; | ||
| 6542 | input Option<DAE.Exp> e2; | ||
| 6543 | output Option<DAE.Exp> elt; | ||
| 6544 | algorithm | ||
| 6545 | elt := match (e1,e2) | ||
| 6546 | local | ||
| 6547 | Real r1,r2; | ||
| 6548 | Integer i1,i2; | ||
| 6549 | Boolean b1,b2; | ||
| 6550 | case (DAE.RCONST(_),NONE()) then SOME(e1); | ||
| 6551 | case (DAE.ICONST(_),NONE()) then SOME(e1); | ||
| 6552 | case (DAE.BCONST(_),NONE()) then SOME(e1); | ||
| 6553 | ✗ | case (DAE.RCONST(r1),SOME(DAE.RCONST(r2))) then if r1 > r2 then SOME(e1) else e2; | |
| 6554 | ✗ | case (DAE.ICONST(i1),SOME(DAE.ICONST(i2))) then if intGt(i1,i2) then SOME(e1) else e2; | |
| 6555 |
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1 | case (DAE.BCONST(b1),SOME(DAE.BCONST(b2))) then (if b2 or b1==b2 then e2 else SOME(DAE.BCONST(b1))); |
| 6556 | else e2; | ||
| 6557 | end match; | ||
| 6558 | end maxElement; | ||
| 6559 | |||
| 6560 | protected function minElement | ||
| 6561 | input DAE.Exp e1; | ||
| 6562 | input Option<DAE.Exp> e2; | ||
| 6563 | output Option<DAE.Exp> elt; | ||
| 6564 | algorithm | ||
| 6565 | elt := match (e1,e2) | ||
| 6566 | local | ||
| 6567 | Real r1,r2; | ||
| 6568 | Integer i1,i2; | ||
| 6569 | Boolean b1,b2; | ||
| 6570 | case (DAE.RCONST(_),NONE()) then SOME(e1); | ||
| 6571 | case (DAE.ICONST(_),NONE()) then SOME(e1); | ||
| 6572 | case (DAE.BCONST(_),NONE()) then SOME(e1); | ||
| 6573 | ✗ | case (DAE.RCONST(r1),SOME(DAE.RCONST(r2))) then if r1 < r2 then SOME(e1) else e2; | |
| 6574 | ✗ | case (DAE.ICONST(i1),SOME(DAE.ICONST(i2))) then if intLt(i1,i2) then SOME(e1) else e2; | |
| 6575 |
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1 | case (DAE.BCONST(b1),SOME(DAE.BCONST(b2))) then (if not b2 or b1==b2 then e2 else SOME(DAE.BCONST(b1))); |
| 6576 | else e2; | ||
| 6577 | end match; | ||
| 6578 | end minElement; | ||
| 6579 | |||
| 6580 | protected function removeMinMaxFoldableValues | ||
| 6581 | input DAE.Exp e; | ||
| 6582 | output Boolean filter; | ||
| 6583 | algorithm | ||
| 6584 | filter := match e | ||
| 6585 | case DAE.RCONST(_) then false; | ||
| 6586 | case DAE.ICONST(_) then false; | ||
| 6587 | case DAE.BCONST(_) then false; | ||
| 6588 | else true; | ||
| 6589 | end match; | ||
| 6590 | end removeMinMaxFoldableValues; | ||
| 6591 | |||
| 6592 | public function simplifySkew | ||
| 6593 | "Simplifies the skew operator." | ||
| 6594 | input list<DAE.Exp> v1; | ||
| 6595 | output list<list<DAE.Exp>> res; | ||
| 6596 | protected | ||
| 6597 | DAE.Exp x1, x2, x3, zero; | ||
| 6598 | algorithm | ||
| 6599 |
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36 | {x1, x2, x3} := v1; |
| 6600 | 36 | zero := Expression.makeConstZero(Expression.typeof(x1)); | |
| 6601 | |||
| 6602 | 108 | res := {{zero, Expression.negate(x3), x2}, | |
| 6603 | {x3, zero, Expression.negate(x1)}, | ||
| 6604 | {Expression.negate(x2), x1, zero}}; | ||
| 6605 | end simplifySkew; | ||
| 6606 | |||
| 6607 | public function simplifyCross | ||
| 6608 | "Simplifies the cross operator." | ||
| 6609 | input list<DAE.Exp> v1; | ||
| 6610 | input list<DAE.Exp> v2; | ||
| 6611 | output list<DAE.Exp> res; | ||
| 6612 | protected | ||
| 6613 | DAE.Exp x1, x2, x3, y1, y2, y3; | ||
| 6614 | algorithm | ||
| 6615 |
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2587 | {x1, x2, x3} := v1; |
| 6616 |
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2587 | {y1, y2, y3} := v2; |
| 6617 | |||
| 6618 | // res = {x[2]*y[3] - x[3]*y[2], x[3]*y[1] - x[1]*y[3], x[1]*y[2] - x[2]*y[1]} | ||
| 6619 | 7761 | res := {Expression.expSub(Expression.makeProduct(x2, y3), Expression.makeProduct(x3, y2)), | |
| 6620 | Expression.expSub(Expression.makeProduct(x3, y1), Expression.makeProduct(x1, y3)), | ||
| 6621 | Expression.expSub(Expression.makeProduct(x1, y2), Expression.makeProduct(x2, y1))}; | ||
| 6622 | end simplifyCross; | ||
| 6623 | |||
| 6624 | annotation(__OpenModelica_Interface="frontend_base"); | ||
| 6625 | end ExpressionSimplify; | ||
| 6626 |