OMCompiler/Compiler/FrontEnd/AbsynUtil.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 AbsynUtil | ||
| 37 | |||
| 38 | protected | ||
| 39 | import Absyn; | ||
| 40 | import Dump; | ||
| 41 | import Error; | ||
| 42 | import List; | ||
| 43 | import System; | ||
| 44 | import Util; | ||
| 45 | import MetaModelica.Dangerous.listReverseInPlace; | ||
| 46 | |||
| 47 | public function traverseExp<Arg> | ||
| 48 | " Traverses all subexpressions of an Absyn.Exp expression. | ||
| 49 | Takes a function and an extra argument passed through the traversal. | ||
| 50 | NOTE:This function was copied from Expression.traverseExpression." | ||
| 51 | input Absyn.Exp inExp; | ||
| 52 | input FuncType inFunc; | ||
| 53 | input Arg inArg; | ||
| 54 | output Absyn.Exp outExp; | ||
| 55 | output Arg outArg; | ||
| 56 | |||
| 57 | partial function FuncType | ||
| 58 | input output Absyn.Exp exp; | ||
| 59 | input output Arg arg; | ||
| 60 | end FuncType; | ||
| 61 | algorithm | ||
| 62 | 547532 | (outExp,outArg) := traverseExpBidir(inExp,dummyTraverseExp,inFunc,inArg); | |
| 63 | end traverseExp; | ||
| 64 | |||
| 65 | public function traverseExpTopDown<Arg> | ||
| 66 | " Traverses all subexpressions of an Absyn.Exp expression. | ||
| 67 | Takes a function and an extra argument passed through the traversal." | ||
| 68 | input Absyn.Exp inExp; | ||
| 69 | input FuncType inFunc; | ||
| 70 | input Arg inArg; | ||
| 71 | output Absyn.Exp outExp; | ||
| 72 | output Arg outArg; | ||
| 73 | |||
| 74 | partial function FuncType | ||
| 75 | input output Absyn.Exp exp; | ||
| 76 | input output Arg arg; | ||
| 77 | end FuncType; | ||
| 78 | algorithm | ||
| 79 | 30 | (outExp,outArg) := traverseExpBidir(inExp,inFunc,dummyTraverseExp,inArg); | |
| 80 | end traverseExpTopDown; | ||
| 81 | |||
| 82 | public function traverseExpList<Arg> | ||
| 83 | "calls traverseExp on each element in the given list" | ||
| 84 | input list<Absyn.Exp> inExpList; | ||
| 85 | input FuncType inFunc; | ||
| 86 | input Arg inArg; | ||
| 87 | output list<Absyn.Exp> outExpList; | ||
| 88 | output Arg outArg; | ||
| 89 | |||
| 90 | partial function FuncType | ||
| 91 | input output Absyn.Exp exp; | ||
| 92 | input output Arg arg; | ||
| 93 | end FuncType; | ||
| 94 | algorithm | ||
| 95 | 1262 | (outExpList,outArg) := traverseExpListBidir(inExpList,dummyTraverseExp,inFunc,inArg); | |
| 96 | end traverseExpList; | ||
| 97 | |||
| 98 | public function traverseExpListBidir<Arg> | ||
| 99 | "Traverses a list of expressions, calling traverseExpBidir on each | ||
| 100 | expression." | ||
| 101 | input list<Absyn.Exp> inExpl; | ||
| 102 | input FuncType enterFunc; | ||
| 103 | input FuncType exitFunc; | ||
| 104 | input Arg inArg; | ||
| 105 | output list<Absyn.Exp> outExpl; | ||
| 106 | output Arg outArg; | ||
| 107 | |||
| 108 | partial function FuncType | ||
| 109 | input output Absyn.Exp exp; | ||
| 110 | input output Arg arg; | ||
| 111 | end FuncType; | ||
| 112 | algorithm | ||
| 113 | 464730 | (outExpl, outArg) := List.map2FoldCheckReferenceEq(inExpl, traverseExpBidir, enterFunc, exitFunc, inArg); | |
| 114 | end traverseExpListBidir; | ||
| 115 | |||
| 116 | public function traverseExpBidir<Arg> | ||
| 117 | "This function takes an expression and a tuple with an enter function, an exit | ||
| 118 | function, and an extra argument. For each expression it encounters it calls | ||
| 119 | the enter function with the expression and the extra argument. It then | ||
| 120 | traverses all subexpressions in the expression and calls traverseExpBidir on | ||
| 121 | them with the updated argument. Finally it calls the exit function, again with | ||
| 122 | the updated argument. This means that this function is bidirectional, and can | ||
| 123 | be used to emulate both top-down and bottom-up traversal." | ||
| 124 | input Absyn.Exp inExp; | ||
| 125 | input FuncType enterFunc; | ||
| 126 | input FuncType exitFunc; | ||
| 127 | input Arg inArg; | ||
| 128 | output Absyn.Exp e; | ||
| 129 | output Arg arg; | ||
| 130 | |||
| 131 | partial function FuncType | ||
| 132 | input output Absyn.Exp exp; | ||
| 133 | input output Arg arg; | ||
| 134 | end FuncType; | ||
| 135 | algorithm | ||
| 136 |
2/2✓ Branch 0 taken 826 times.
✓ Branch 1 taken 3836819 times.
|
3837645 | (e, arg) := enterFunc(inExp, inArg); |
| 137 | 3837645 | (e, arg) := traverseExpBidirSubExps(e, enterFunc, exitFunc, arg); | |
| 138 |
2/2✓ Branch 0 taken 11088 times.
✓ Branch 1 taken 3826557 times.
|
3837645 | (e, arg) := exitFunc(e, arg); |
| 139 | end traverseExpBidir; | ||
| 140 | |||
| 141 | public function traverseExpOptBidir<Arg> | ||
| 142 | "Same as traverseExpBidir, but with an optional expression. Calls | ||
| 143 | traverseExpBidir if the option is SOME(), or just returns the input if it's | ||
| 144 | NONE()" | ||
| 145 | input Option<Absyn.Exp> inExp; | ||
| 146 | input FuncType enterFunc; | ||
| 147 | input FuncType exitFunc; | ||
| 148 | input Arg inArg; | ||
| 149 | output Option<Absyn.Exp> outExp; | ||
| 150 | output Arg arg; | ||
| 151 | |||
| 152 | partial function FuncType | ||
| 153 | input output Absyn.Exp exp; | ||
| 154 | input output Arg arg; | ||
| 155 | end FuncType; | ||
| 156 | algorithm | ||
| 157 | (outExp, arg) := match inExp | ||
| 158 | local | ||
| 159 | Absyn.Exp e1,e2; | ||
| 160 | |||
| 161 | case SOME(e1) | ||
| 162 | algorithm | ||
| 163 | 2869 | (e2, arg) := traverseExpBidir(e1, enterFunc, exitFunc, inArg); | |
| 164 |
2/2✓ Branch 0 taken 291 times.
✓ Branch 1 taken 2578 times.
|
3160 | then |
| 165 | (if referenceEq(e1,e2) then inExp else SOME(e2), arg); | ||
| 166 | |||
| 167 | else (inExp, inArg); | ||
| 168 | end match; | ||
| 169 | end traverseExpOptBidir; | ||
| 170 | |||
| 171 | protected function traverseExpBidirSubExps<Arg> | ||
| 172 | "Helper function to traverseExpBidir. Traverses the subexpressions of an | ||
| 173 | expression and calls traverseExpBidir on them." | ||
| 174 | input output Absyn.Exp exp; | ||
| 175 | input FuncType enterFunc; | ||
| 176 | input FuncType exitFunc; | ||
| 177 | input output Arg arg; | ||
| 178 | |||
| 179 | partial function FuncType | ||
| 180 | input output Absyn.Exp exp; | ||
| 181 | input output Arg arg; | ||
| 182 | end FuncType; | ||
| 183 | algorithm | ||
| 184 | (exp, arg) := match exp | ||
| 185 | local | ||
| 186 | Absyn.Exp e1, e1m, e2, e2m, e3, e3m; | ||
| 187 | Option<Absyn.Exp> oe1, oe1m; | ||
| 188 | Absyn.ComponentRef cref, crefm; | ||
| 189 | list<tuple<Absyn.Exp, Absyn.Exp>> else_ifs1,else_ifs2; | ||
| 190 | list<Absyn.Exp> expl1,expl2; | ||
| 191 | list<list<Absyn.Exp>> mat_expl; | ||
| 192 | Absyn.FunctionArgs fargs1,fargs2; | ||
| 193 | String error_msg; | ||
| 194 | Absyn.Ident id, enterName, exitName; | ||
| 195 | list<Absyn.Case> match_cases; | ||
| 196 | list<Absyn.Subscript> subs; | ||
| 197 | |||
| 198 | case Absyn.INTEGER() then (exp, arg); | ||
| 199 | case Absyn.REAL() then (exp, arg); | ||
| 200 | case Absyn.STRING() then (exp, arg); | ||
| 201 | case Absyn.BOOL() then (exp, arg); | ||
| 202 | |||
| 203 | case Absyn.CREF(componentRef = cref) | ||
| 204 | algorithm | ||
| 205 | 1277183 | (crefm, arg) := traverseExpBidirCref(cref, enterFunc, exitFunc, arg); | |
| 206 |
2/2✓ Branch 0 taken 3582 times.
✓ Branch 1 taken 1273601 times.
|
1277183 | then |
| 207 | (if referenceEq(cref,crefm) then exp else Absyn.CREF(crefm), arg); | ||
| 208 | |||
| 209 | case Absyn.BINARY(exp1 = e1, exp2 = e2) | ||
| 210 | algorithm | ||
| 211 | 555471 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 212 | 555471 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 213 |
2/2✓ Branch 0 taken 198866 times.
✓ Branch 1 taken 356605 times.
|
555471 | then |
| 214 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) then exp else Absyn.BINARY(e1m, exp.op, e2m), arg); | ||
| 215 | |||
| 216 | case Absyn.UNARY(exp = e1) | ||
| 217 | algorithm | ||
| 218 | 167747 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 219 |
2/2✓ Branch 0 taken 8470 times.
✓ Branch 1 taken 159277 times.
|
167747 | then |
| 220 | (if referenceEq(e1,e1m) then exp else Absyn.UNARY(exp.op, e1m), arg); | ||
| 221 | |||
| 222 | case Absyn.LBINARY(exp1 = e1, exp2 = e2) | ||
| 223 | algorithm | ||
| 224 | 14383 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 225 | 14383 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 226 |
2/2✓ Branch 0 taken 2309 times.
✓ Branch 1 taken 12074 times.
|
14383 | then |
| 227 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) then exp else Absyn.LBINARY(e1m, exp.op, e2m), arg); | ||
| 228 | |||
| 229 | case Absyn.LUNARY(exp = e1) | ||
| 230 | algorithm | ||
| 231 | 4061 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 232 |
2/2✓ Branch 0 taken 747 times.
✓ Branch 1 taken 3314 times.
|
4061 | then |
| 233 | (if referenceEq(e1,e1m) then exp else Absyn.LUNARY(exp.op, e1m), arg); | ||
| 234 | |||
| 235 | case Absyn.RELATION(exp1 = e1, exp2 = e2) | ||
| 236 | algorithm | ||
| 237 | 33567 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 238 | 33567 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 239 |
2/2✓ Branch 0 taken 7816 times.
✓ Branch 1 taken 25751 times.
|
33567 | then |
| 240 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) then exp else Absyn.RELATION(e1m, exp.op, e2m), arg); | ||
| 241 | |||
| 242 | case Absyn.IFEXP(ifExp = e1, trueBranch = e2, elseBranch = e3, elseIfBranch = else_ifs1) | ||
| 243 | algorithm | ||
| 244 | 24363 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 245 | 24363 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 246 | 24363 | (e3m, arg) := traverseExpBidir(e3, enterFunc, exitFunc, arg); | |
| 247 | 24363 | (else_ifs2, arg) := List.map2FoldCheckReferenceEq(else_ifs1, traverseExpBidirElseIf, enterFunc, exitFunc, arg); | |
| 248 |
4/4✓ Branch 0 taken 18770 times.
✓ Branch 1 taken 5593 times.
✓ Branch 2 taken 322 times.
✓ Branch 3 taken 18448 times.
|
24363 | then |
| 249 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) and referenceEq(e3,e3m) and referenceEq(else_ifs1,else_ifs2) then exp else Absyn.IFEXP(e1m, e2m, e3m, else_ifs2), arg); | ||
| 250 | |||
| 251 | case Absyn.CALL(function_ = cref, functionArgs = fargs1) | ||
| 252 | algorithm | ||
| 253 | 229273 | (fargs2, arg) := traverseExpBidirFunctionArgs(fargs1, enterFunc, exitFunc, arg); | |
| 254 |
2/2✓ Branch 0 taken 22562 times.
✓ Branch 1 taken 206711 times.
|
229273 | then |
| 255 | (if referenceEq(fargs1,fargs2) then exp else Absyn.CALL(cref, fargs2, exp.typeVars), arg); | ||
| 256 | |||
| 257 | case Absyn.PARTEVALFUNCTION(function_ = cref, functionArgs = fargs1) | ||
| 258 | algorithm | ||
| 259 | 244 | (fargs2, arg) := traverseExpBidirFunctionArgs(fargs1, enterFunc, exitFunc, arg); | |
| 260 |
2/2✓ Branch 0 taken 12 times.
✓ Branch 1 taken 232 times.
|
244 | then |
| 261 | (if referenceEq(fargs1,fargs2) then exp else Absyn.PARTEVALFUNCTION(cref, fargs2), arg); | ||
| 262 | |||
| 263 | case Absyn.ARRAY(arrayExp = expl1) | ||
| 264 | algorithm | ||
| 265 | 92672 | (expl2, arg) := traverseExpListBidir(expl1, enterFunc, exitFunc, arg); | |
| 266 |
2/2✓ Branch 0 taken 1212 times.
✓ Branch 1 taken 91460 times.
|
92672 | then |
| 267 | (if referenceEq(expl1,expl2) then exp else Absyn.ARRAY(expl2), arg); | ||
| 268 | |||
| 269 | case Absyn.MATRIX(matrix = mat_expl) | ||
| 270 | algorithm | ||
| 271 | 2042 | (mat_expl, arg) := List.map2FoldCheckReferenceEq(mat_expl, traverseExpListBidir, enterFunc, exitFunc, arg); | |
| 272 | 2042 | then | |
| 273 | (Absyn.MATRIX(mat_expl), arg); | ||
| 274 | |||
| 275 | case Absyn.RANGE(start = e1, step = oe1, stop = e2) | ||
| 276 | algorithm | ||
| 277 | 10991 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 278 | 10991 | (oe1m, arg) := traverseExpOptBidir(oe1, enterFunc, exitFunc, arg); | |
| 279 | 10991 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 280 |
3/4✓ Branch 0 taken 9709 times.
✓ Branch 1 taken 1282 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 9709 times.
|
10991 | then |
| 281 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) and referenceEq(oe1,oe1m) then exp else Absyn.RANGE(e1m, oe1m, e2m), arg); | ||
| 282 | |||
| 283 | case Absyn.END() then (exp, arg); | ||
| 284 | |||
| 285 | case Absyn.TUPLE(expressions = expl1) | ||
| 286 | algorithm | ||
| 287 | 136840 | (expl2, arg) := traverseExpListBidir(expl1, enterFunc, exitFunc, arg); | |
| 288 |
2/2✓ Branch 0 taken 53231 times.
✓ Branch 1 taken 83609 times.
|
136840 | then |
| 289 | (if referenceEq(expl1,expl2) then exp else Absyn.TUPLE(expl2), arg); | ||
| 290 | |||
| 291 | case Absyn.AS(id = id, exp = e1) | ||
| 292 | algorithm | ||
| 293 | 371 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 294 |
2/2✓ Branch 0 taken 12 times.
✓ Branch 1 taken 359 times.
|
371 | then |
| 295 | (if referenceEq(e1,e1m) then exp else Absyn.AS(id, e1m), arg); | ||
| 296 | |||
| 297 | case Absyn.CONS(head = e1, rest = e2) | ||
| 298 | algorithm | ||
| 299 | 957 | (e1m, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 300 | 957 | (e2m, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 301 |
2/2✓ Branch 0 taken 29 times.
✓ Branch 1 taken 928 times.
|
957 | then |
| 302 | (if referenceEq(e1,e1m) and referenceEq(e2,e2m) then exp else Absyn.CONS(e1m, e2m), arg); | ||
| 303 | |||
| 304 | case Absyn.MATCHEXP(inputExp = e1, cases = match_cases) | ||
| 305 | algorithm | ||
| 306 | 1363 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 307 | 1363 | (match_cases, arg) := List.map2FoldCheckReferenceEq(match_cases, traverseMatchCase, enterFunc, exitFunc, arg); | |
| 308 | 1363 | then | |
| 309 | (Absyn.MATCHEXP(exp.matchTy, e1, exp.localDecls, match_cases, exp.comment), arg); | ||
| 310 | |||
| 311 | case Absyn.LIST(exps = expl1) | ||
| 312 | algorithm | ||
| 313 | ✗ | (expl2, arg) := traverseExpListBidir(expl1, enterFunc, exitFunc, arg); | |
| 314 | ✗ | then | |
| 315 | (if referenceEq(expl1,expl2) then exp else Absyn.LIST(expl2), arg); | ||
| 316 | |||
| 317 | case Absyn.CODE() | ||
| 318 | then (exp, arg); | ||
| 319 | |||
| 320 | case Absyn.DOT() | ||
| 321 | algorithm | ||
| 322 | 4 | (e1, arg) := traverseExpBidir(exp.exp, enterFunc, exitFunc, arg); | |
| 323 | 4 | (e2, arg) := traverseExpBidir(exp.index, enterFunc, exitFunc, arg); | |
| 324 |
3/4✓ Branch 0 taken 2 times.
✓ Branch 1 taken 2 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 2 times.
|
4 | then |
| 325 | (if referenceEq(exp.exp,e1) and referenceEq(exp.index,e2) then exp else Absyn.DOT(e1, e2), arg); | ||
| 326 | |||
| 327 | case Absyn.EXPRESSIONCOMMENT() | ||
| 328 | algorithm | ||
| 329 | 698 | (e1, arg) := traverseExpBidir(exp.exp, enterFunc, exitFunc, arg); | |
| 330 |
2/2✓ Branch 0 taken 36 times.
✓ Branch 1 taken 662 times.
|
698 | then |
| 331 | (if referenceEq(exp.exp,e1) then exp else Absyn.EXPRESSIONCOMMENT(exp.commentsBefore, e1, exp.commentsAfter), arg); | ||
| 332 | |||
| 333 | case Absyn.SUBSCRIPTED_EXP() | ||
| 334 | algorithm | ||
| 335 | ✗ | (e1, arg) := traverseExpBidir(exp.exp, enterFunc, exitFunc, arg); | |
| 336 | ✗ | (subs, arg) := traverseExpBidirSubs(exp.subscripts, enterFunc, exitFunc, arg); | |
| 337 | ✗ | then | |
| 338 | (if referenceEq(exp.exp, e1) and referenceEq(exp.subscripts, subs) then exp else Absyn.SUBSCRIPTED_EXP(e1, subs), arg); | ||
| 339 | |||
| 340 | case Absyn.BREAK() then (exp, arg); | ||
| 341 | case Absyn.UNITFUL_LITERAL() then (exp, arg); | ||
| 342 | |||
| 343 | else | ||
| 344 | algorithm | ||
| 345 | ✗ | (,,enterName) := System.dladdr(enterFunc); | |
| 346 | ✗ | (,,exitName) := System.dladdr(exitFunc); | |
| 347 | ✗ | error_msg := "in traverseExpBidirSubExps(" + enterName + ", " + exitName + ") - Unknown expression: "; | |
| 348 | ✗ | error_msg := error_msg + Dump.printExpStr(exp); | |
| 349 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, {error_msg}); | |
| 350 | ✗ | then | |
| 351 | fail(); | ||
| 352 | |||
| 353 | end match; | ||
| 354 | end traverseExpBidirSubExps; | ||
| 355 | |||
| 356 | public function traverseExpBidirCref<Arg> | ||
| 357 | "Helper function to traverseExpBidirSubExps. Traverses any expressions in a | ||
| 358 | component reference (i.e. in it's subscripts)." | ||
| 359 | input output Absyn.ComponentRef cref; | ||
| 360 | input FuncType enterFunc; | ||
| 361 | input FuncType exitFunc; | ||
| 362 | input output Arg arg; | ||
| 363 | |||
| 364 | partial function FuncType | ||
| 365 | input output Absyn.Exp exp; | ||
| 366 | input output Arg arg; | ||
| 367 | end FuncType; | ||
| 368 | algorithm | ||
| 369 | (cref, arg) := match cref | ||
| 370 | local | ||
| 371 | Absyn.Ident name; | ||
| 372 | Absyn.ComponentRef cr1,cr2; | ||
| 373 | list<Absyn.Subscript> subs1,subs2; | ||
| 374 | |||
| 375 | case Absyn.CREF_FULLYQUALIFIED(componentRef = cr1) | ||
| 376 | algorithm | ||
| 377 | 7232 | (cr2, arg) := traverseExpBidirCref(cr1, enterFunc, exitFunc, arg); | |
| 378 |
2/2✓ Branch 0 taken 60 times.
✓ Branch 1 taken 7172 times.
|
7232 | then |
| 379 | (if referenceEq(cr1,cr2) then cref else crefMakeFullyQualified(cr2), arg); | ||
| 380 | |||
| 381 | case Absyn.CREF_QUAL(name = name, subscripts = subs1, componentRef = cr1) | ||
| 382 | algorithm | ||
| 383 | 283525 | (subs2, arg) := traverseExpBidirSubs(subs1, enterFunc, exitFunc, arg); | |
| 384 | 283525 | (cr2, arg) := traverseExpBidirCref(cr1, enterFunc, exitFunc, arg); | |
| 385 |
2/2✓ Branch 0 taken 613 times.
✓ Branch 1 taken 282912 times.
|
283525 | then |
| 386 | (if referenceEq(cr1,cr2) and referenceEq(subs1,subs2) then cref else Absyn.CREF_QUAL(name, subs2, cr2), arg); | ||
| 387 | |||
| 388 | case Absyn.CREF_IDENT(name = name, subscripts = subs1) | ||
| 389 | algorithm | ||
| 390 | 1275452 | (subs2, arg) := traverseExpBidirSubs(subs1, enterFunc, exitFunc, arg); | |
| 391 |
2/2✓ Branch 0 taken 3328 times.
✓ Branch 1 taken 1272124 times.
|
1275452 | then |
| 392 | (if referenceEq(subs1,subs2) then cref else Absyn.CREF_IDENT(name, subs2), arg); | ||
| 393 | |||
| 394 | case Absyn.ALLWILD() then (cref, arg); | ||
| 395 | case Absyn.WILD() then (cref, arg); | ||
| 396 | end match; | ||
| 397 | end traverseExpBidirCref; | ||
| 398 | |||
| 399 | public function traverseExpBidirSubs<Arg> | ||
| 400 | "Helper function to traverseExpBidir. Traverses expressions in a list of subscripts." | ||
| 401 | input output list<Absyn.Subscript> subscripts; | ||
| 402 | input FuncType enterFunc; | ||
| 403 | input FuncType exitFunc; | ||
| 404 | input output Arg arg; | ||
| 405 | |||
| 406 | partial function FuncType | ||
| 407 | input output Absyn.Exp exp; | ||
| 408 | input output Arg arg; | ||
| 409 | end FuncType; | ||
| 410 | algorithm | ||
| 411 | 1558977 | (subscripts, arg) := List.map2FoldCheckReferenceEq(subscripts, traverseExpBidirSub, enterFunc, exitFunc, arg); | |
| 412 | end traverseExpBidirSubs; | ||
| 413 | |||
| 414 | public function traverseExpBidirSub<Arg> | ||
| 415 | "Helper function to traverseExpBidir. Traverses expressions in a subscript." | ||
| 416 | input output Absyn.Subscript subscript; | ||
| 417 | input FuncType enterFunc; | ||
| 418 | input FuncType exitFunc; | ||
| 419 | input output Arg arg; | ||
| 420 | |||
| 421 | partial function FuncType | ||
| 422 | input output Absyn.Exp exp; | ||
| 423 | input output Arg arg; | ||
| 424 | end FuncType; | ||
| 425 | algorithm | ||
| 426 | (subscript, arg) := match subscript | ||
| 427 | local | ||
| 428 | Absyn.Exp e1,e2; | ||
| 429 | |||
| 430 | case Absyn.SUBSCRIPT(subscript = e1) | ||
| 431 | algorithm | ||
| 432 | 196618 | (e2, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 433 |
2/2✓ Branch 0 taken 3695 times.
✓ Branch 1 taken 192923 times.
|
196618 | then |
| 434 | (if referenceEq(e1,e2) then subscript else Absyn.SUBSCRIPT(e2), arg); | ||
| 435 | |||
| 436 | case Absyn.NOSUB() then (subscript, arg); | ||
| 437 | end match; | ||
| 438 | end traverseExpBidirSub; | ||
| 439 | |||
| 440 | public function traverseExpBidirElseIf<Arg> | ||
| 441 | "Helper function to traverseExpBidirSubExps. Traverses the expressions in an | ||
| 442 | elseif branch." | ||
| 443 | input tuple<Absyn.Exp, Absyn.Exp> inElseIf; | ||
| 444 | input FuncType enterFunc; | ||
| 445 | input FuncType exitFunc; | ||
| 446 | input Arg inArg; | ||
| 447 | output tuple<Absyn.Exp, Absyn.Exp> outElseIf; | ||
| 448 | output Arg arg; | ||
| 449 | |||
| 450 | partial function FuncType | ||
| 451 | input output Absyn.Exp exp; | ||
| 452 | input output Arg arg; | ||
| 453 | end FuncType; | ||
| 454 | protected | ||
| 455 | Absyn.Exp e1, e2; | ||
| 456 | algorithm | ||
| 457 | 149 | (e1, e2) := inElseIf; | |
| 458 | 149 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, inArg); | |
| 459 | 149 | (e2, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 460 | 149 | outElseIf := (e1, e2); | |
| 461 | end traverseExpBidirElseIf; | ||
| 462 | |||
| 463 | public function traverseExpBidirFunctionArgs<Arg> | ||
| 464 | "Helper function to traverseExpBidirSubExps. Traverses the expressions in a | ||
| 465 | list of function argument." | ||
| 466 | input output Absyn.FunctionArgs args; | ||
| 467 | input FuncType enterFunc; | ||
| 468 | input FuncType exitFunc; | ||
| 469 | input output Arg arg; | ||
| 470 | |||
| 471 | partial function FuncType | ||
| 472 | input output Absyn.Exp exp; | ||
| 473 | input output Arg arg; | ||
| 474 | end FuncType; | ||
| 475 | algorithm | ||
| 476 | (args, arg) := match args | ||
| 477 | local | ||
| 478 | Absyn.Exp e1,e2; | ||
| 479 | list<Absyn.Exp> expl1,expl2; | ||
| 480 | list<Absyn.NamedArg> named_args1,named_args2; | ||
| 481 | Absyn.ForIterators iters1,iters2; | ||
| 482 | Absyn.ReductionIterType iterType; | ||
| 483 | |||
| 484 | case Absyn.FUNCTIONARGS(args = expl1, argNames = named_args1) | ||
| 485 | algorithm | ||
| 486 | 227457 | (expl2, arg) := traverseExpListBidir(expl1, enterFunc, exitFunc, arg); | |
| 487 | 227457 | (named_args2, arg) := List.map2FoldCheckReferenceEq(named_args1, traverseExpBidirNamedArg, enterFunc, exitFunc, arg); | |
| 488 |
2/2✓ Branch 0 taken 21524 times.
✓ Branch 1 taken 205933 times.
|
227457 | then |
| 489 | (if referenceEq(expl1,expl2) and referenceEq(named_args1,named_args2) then args else Absyn.FUNCTIONARGS(expl2, named_args2), arg); | ||
| 490 | |||
| 491 | case Absyn.FOR_ITER_FARG(e1, iterType, iters1) | ||
| 492 | algorithm | ||
| 493 | 2572 | (e2, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 494 | 2572 | (iters2, arg) := List.map2FoldCheckReferenceEq(iters1, traverseExpBidirIterator, enterFunc, exitFunc, arg); | |
| 495 |
2/2✓ Branch 0 taken 1051 times.
✓ Branch 1 taken 1521 times.
|
2572 | then |
| 496 | (if referenceEq(e1,e2) and referenceEq(iters1,iters2) then args else Absyn.FOR_ITER_FARG(e2, iterType, iters2), arg); | ||
| 497 | end match; | ||
| 498 | end traverseExpBidirFunctionArgs; | ||
| 499 | |||
| 500 | public function traverseExpBidirNamedArg<Arg> | ||
| 501 | "Helper function to traverseExpBidirFunctionArgs. Traverses the expressions in | ||
| 502 | a named function argument." | ||
| 503 | input Absyn.NamedArg inArg; | ||
| 504 | input FuncType enterFunc; | ||
| 505 | input FuncType exitFunc; | ||
| 506 | input Arg inExtra; | ||
| 507 | output Absyn.NamedArg outArg; | ||
| 508 | output Arg outExtra; | ||
| 509 | |||
| 510 | partial function FuncType | ||
| 511 | input output Absyn.Exp exp; | ||
| 512 | input output Arg arg; | ||
| 513 | end FuncType; | ||
| 514 | protected | ||
| 515 | Absyn.Ident name; | ||
| 516 | Absyn.Exp value1,value2; | ||
| 517 | algorithm | ||
| 518 | 37682 | Absyn.NAMEDARG(name, value1) := inArg; | |
| 519 | 37682 | (value2, outExtra) := traverseExpBidir(value1, enterFunc, exitFunc, inExtra); | |
| 520 |
2/2✓ Branch 0 taken 2724 times.
✓ Branch 1 taken 34958 times.
|
37682 | outArg := if referenceEq(value1,value2) then inArg else Absyn.NAMEDARG(name, value2); |
| 521 | end traverseExpBidirNamedArg; | ||
| 522 | |||
| 523 | public function traverseExpBidirIterator<Arg> | ||
| 524 | "Helper function to traverseExpBidirFunctionArgs. Traverses the expressions in | ||
| 525 | an iterator." | ||
| 526 | input Absyn.ForIterator inIterator; | ||
| 527 | input FuncType enterFunc; | ||
| 528 | input FuncType exitFunc; | ||
| 529 | input Arg inArg; | ||
| 530 | output Absyn.ForIterator outIterator; | ||
| 531 | output Arg outArg; | ||
| 532 | |||
| 533 | partial function FuncType | ||
| 534 | input output Absyn.Exp exp; | ||
| 535 | input output Arg arg; | ||
| 536 | end FuncType; | ||
| 537 | protected | ||
| 538 | Absyn.Ident name; | ||
| 539 | Option<Absyn.Exp> guardExp1,guardExp2,range1,range2; | ||
| 540 | algorithm | ||
| 541 | 2624 | Absyn.ITERATOR(name=name, guardExp=guardExp1, range=range1) := inIterator; | |
| 542 | 2624 | (guardExp2, outArg) := traverseExpOptBidir(guardExp1, enterFunc, exitFunc, inArg); | |
| 543 | 2624 | (range2, outArg) := traverseExpOptBidir(range1, enterFunc, exitFunc, outArg); | |
| 544 |
2/2✓ Branch 0 taken 245 times.
✓ Branch 1 taken 2379 times.
|
2624 | outIterator := if referenceEq(guardExp1,guardExp2) and referenceEq(range1,range2) then inIterator else Absyn.ITERATOR(name, guardExp2, range2); |
| 545 | end traverseExpBidirIterator; | ||
| 546 | |||
| 547 | public function traverseMatchCase<Arg> | ||
| 548 | input output Absyn.Case matchCase; | ||
| 549 | input FuncType enterFunc; | ||
| 550 | input FuncType exitFunc; | ||
| 551 | input output Arg arg; | ||
| 552 | |||
| 553 | partial function FuncType | ||
| 554 | input output Absyn.Exp exp; | ||
| 555 | input output Arg arg; | ||
| 556 | end FuncType; | ||
| 557 | algorithm | ||
| 558 | (matchCase, arg) := match matchCase | ||
| 559 | local | ||
| 560 | Absyn.Exp pattern, result; | ||
| 561 | Absyn.Info info, resultInfo, pinfo; | ||
| 562 | list<Absyn.ElementItem> ldecls; | ||
| 563 | Absyn.ClassPart cp; | ||
| 564 | Option<String> cmt; | ||
| 565 | Option<Absyn.Exp> patternGuard; | ||
| 566 | |||
| 567 | case Absyn.CASE(pattern, patternGuard, pinfo, ldecls, cp, result, resultInfo, cmt, info) | ||
| 568 | algorithm | ||
| 569 | 5279 | (pattern, arg) := traverseExpBidir(pattern, enterFunc, exitFunc, arg); | |
| 570 | 5279 | (patternGuard, arg) := traverseExpOptBidir(patternGuard, enterFunc, exitFunc, arg); | |
| 571 | 5279 | (cp, arg) := traverseClassPartBidir(cp, enterFunc, exitFunc, arg); | |
| 572 | 5279 | (result, arg) := traverseExpBidir(result, enterFunc, exitFunc, arg); | |
| 573 | 5279 | then | |
| 574 | (Absyn.CASE(pattern, patternGuard, pinfo, ldecls, cp, result, resultInfo, cmt, info), arg); | ||
| 575 | |||
| 576 | case Absyn.ELSE(ldecls, cp, result, resultInfo, cmt, info) | ||
| 577 | algorithm | ||
| 578 | 408 | (cp, arg) := traverseClassPartBidir(cp, enterFunc, exitFunc, arg); | |
| 579 | 408 | (result, arg) := traverseExpBidir(result, enterFunc, exitFunc, arg); | |
| 580 | 408 | then | |
| 581 | (Absyn.ELSE(ldecls, cp, result, resultInfo, cmt, info), arg); | ||
| 582 | |||
| 583 | end match; | ||
| 584 | end traverseMatchCase; | ||
| 585 | |||
| 586 | protected function traverseClassPartBidir<Arg> | ||
| 587 | input output Absyn.ClassPart cp; | ||
| 588 | input FuncType enterFunc; | ||
| 589 | input FuncType exitFunc; | ||
| 590 | input output Arg arg; | ||
| 591 | |||
| 592 | partial function FuncType | ||
| 593 | input output Absyn.Exp exp; | ||
| 594 | input output Arg arg; | ||
| 595 | end FuncType; | ||
| 596 | algorithm | ||
| 597 | (cp, arg) := match cp | ||
| 598 | local | ||
| 599 | list<Absyn.AlgorithmItem> algs; | ||
| 600 | list<Absyn.EquationItem> eqs; | ||
| 601 | |||
| 602 | case Absyn.ALGORITHMS(algs) | ||
| 603 | algorithm | ||
| 604 | 2743 | (algs, arg) := List.map2FoldCheckReferenceEq(algs, traverseAlgorithmItemBidir, enterFunc, exitFunc, arg); | |
| 605 | 2743 | then | |
| 606 | (Absyn.ALGORITHMS(algs),arg); | ||
| 607 | |||
| 608 | case Absyn.EQUATIONS(eqs) | ||
| 609 | algorithm | ||
| 610 | 2944 | (eqs, arg) := List.map2FoldCheckReferenceEq(eqs, traverseEquationItemBidir, enterFunc, exitFunc, arg); | |
| 611 | 2944 | then | |
| 612 | (Absyn.EQUATIONS(eqs),arg); | ||
| 613 | end match; | ||
| 614 | end traverseClassPartBidir; | ||
| 615 | |||
| 616 | public function traverseEquationItemListBidir<Arg> | ||
| 617 | input list<Absyn.EquationItem> inEquationItems; | ||
| 618 | input FuncType enterFunc; | ||
| 619 | input FuncType exitFunc; | ||
| 620 | input Arg inArg; | ||
| 621 | output list<Absyn.EquationItem> outEquationItems; | ||
| 622 | output Arg outArg; | ||
| 623 | |||
| 624 | partial function FuncType | ||
| 625 | input output Absyn.Exp exp; | ||
| 626 | input output Arg arg; | ||
| 627 | end FuncType; | ||
| 628 | algorithm | ||
| 629 | 5 | (outEquationItems, outArg) := List.map2FoldCheckReferenceEq(inEquationItems, traverseEquationItemBidir, enterFunc, exitFunc, inArg); | |
| 630 | end traverseEquationItemListBidir; | ||
| 631 | |||
| 632 | public function traverseAlgorithmItemListBidir<Arg> | ||
| 633 | input list<Absyn.AlgorithmItem> inAlgs; | ||
| 634 | input FuncType enterFunc; | ||
| 635 | input FuncType exitFunc; | ||
| 636 | input Arg inArg; | ||
| 637 | output list<Absyn.AlgorithmItem> outAlgs; | ||
| 638 | output Arg outArg; | ||
| 639 | |||
| 640 | partial function FuncType | ||
| 641 | input output Absyn.Exp exp; | ||
| 642 | input output Arg arg; | ||
| 643 | end FuncType; | ||
| 644 | algorithm | ||
| 645 | 405 | (outAlgs, outArg) := List.map2FoldCheckReferenceEq(inAlgs, traverseAlgorithmItemBidir, enterFunc, exitFunc, inArg); | |
| 646 | end traverseAlgorithmItemListBidir; | ||
| 647 | |||
| 648 | protected function traverseAlgorithmItemBidir<Arg> | ||
| 649 | input output Absyn.AlgorithmItem algorithmItem; | ||
| 650 | input FuncType enterFunc; | ||
| 651 | input FuncType exitFunc; | ||
| 652 | input output Arg arg; | ||
| 653 | |||
| 654 | partial function FuncType | ||
| 655 | input output Absyn.Exp exp; | ||
| 656 | input output Arg arg; | ||
| 657 | end FuncType; | ||
| 658 | algorithm | ||
| 659 | () := match algorithmItem | ||
| 660 | local | ||
| 661 | Absyn.Algorithm alg; | ||
| 662 | |||
| 663 | case Absyn.ALGORITHMITEM(algorithm_ = alg) | ||
| 664 | algorithm | ||
| 665 | 7867 | (alg, arg) := traverseAlgorithmBidir(alg, enterFunc, exitFunc, arg); | |
| 666 | 7867 | algorithmItem.algorithm_ := alg; | |
| 667 | then | ||
| 668 | (); | ||
| 669 | |||
| 670 | case Absyn.ALGORITHMITEMCOMMENT() then (); | ||
| 671 | end match; | ||
| 672 | end traverseAlgorithmItemBidir; | ||
| 673 | |||
| 674 | protected function traverseEquationItemBidir<Arg> | ||
| 675 | input output Absyn.EquationItem equationItem; | ||
| 676 | input FuncType enterFunc; | ||
| 677 | input FuncType exitFunc; | ||
| 678 | input output Arg arg; | ||
| 679 | |||
| 680 | partial function FuncType | ||
| 681 | input output Absyn.Exp exp; | ||
| 682 | input output Arg arg; | ||
| 683 | end FuncType; | ||
| 684 | algorithm | ||
| 685 | () := match equationItem | ||
| 686 | local | ||
| 687 | Absyn.Equation eq; | ||
| 688 | |||
| 689 | case Absyn.EQUATIONITEM(equation_ = eq) | ||
| 690 | algorithm | ||
| 691 | 48 | (eq, arg) := traverseEquationBidir(eq, enterFunc, exitFunc, arg); | |
| 692 | 48 | equationItem.equation_ := eq; | |
| 693 | then | ||
| 694 | (); | ||
| 695 | |||
| 696 | case Absyn.EQUATIONITEMCOMMENT() then (); | ||
| 697 | |||
| 698 | end match; | ||
| 699 | end traverseEquationItemBidir; | ||
| 700 | |||
| 701 | public function traverseEquationBidir<Arg> | ||
| 702 | input output Absyn.Equation eq; | ||
| 703 | input FuncType enterFunc; | ||
| 704 | input FuncType exitFunc; | ||
| 705 | input output Arg arg; | ||
| 706 | |||
| 707 | partial function FuncType | ||
| 708 | input output Absyn.Exp exp; | ||
| 709 | input output Arg arg; | ||
| 710 | end FuncType; | ||
| 711 | algorithm | ||
| 712 | eq := match eq | ||
| 713 | local | ||
| 714 | Absyn.Exp e1, e2; | ||
| 715 | list<Absyn.EquationItem> eqil1, eqil2; | ||
| 716 | list<tuple<Absyn.Exp, list<Absyn.EquationItem>>> else_branch; | ||
| 717 | Absyn.ComponentRef cref1, cref2; | ||
| 718 | Absyn.ForIterators iters; | ||
| 719 | Absyn.FunctionArgs func_args; | ||
| 720 | Absyn.EquationItem eq1; | ||
| 721 | |||
| 722 | case Absyn.EQ_IF(ifExp = e1, equationTrueItems = eqil1, elseIfBranches = else_branch, equationElseItems = eqil2) | ||
| 723 | algorithm | ||
| 724 | 2 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 725 | 2 | (eqil1, arg) := traverseEquationItemListBidir(eqil1, enterFunc, exitFunc, arg); | |
| 726 | 2 | (else_branch,arg) := List.map2FoldCheckReferenceEq(else_branch, traverseEquationBidirElse, enterFunc, exitFunc, arg); | |
| 727 | 2 | (eqil2,arg) := traverseEquationItemListBidir(eqil2, enterFunc, exitFunc, arg); | |
| 728 | 2 | then | |
| 729 | Absyn.EQ_IF(e1, eqil1, else_branch, eqil2); | ||
| 730 | |||
| 731 | case Absyn.EQ_EQUALS(leftSide = e1, rightSide = e2) | ||
| 732 | algorithm | ||
| 733 | 22 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 734 | 22 | (e2, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 735 | 22 | then | |
| 736 | Absyn.EQ_EQUALS(e1, e2); | ||
| 737 | |||
| 738 | case Absyn.EQ_PDE(leftSide = e1, rightSide = e2, domain = cref1) | ||
| 739 | algorithm | ||
| 740 | ✗ | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 741 | ✗ | (e2, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 742 | ✗ | cref1 := traverseExpBidirCref(cref1, enterFunc, exitFunc, arg); | |
| 743 | ✗ | then | |
| 744 | Absyn.EQ_PDE(e1, e2,cref1); | ||
| 745 | |||
| 746 | case Absyn.EQ_CONNECT(connector1 = cref1, connector2 = cref2) | ||
| 747 | algorithm | ||
| 748 | ✗ | (cref1, arg) := traverseExpBidirCref(cref1, enterFunc, exitFunc, arg); | |
| 749 | ✗ | (cref2, arg) := traverseExpBidirCref(cref2, enterFunc, exitFunc, arg); | |
| 750 | ✗ | then | |
| 751 | Absyn.EQ_CONNECT(cref1, cref2); | ||
| 752 | |||
| 753 | case Absyn.EQ_FOR(iterators = iters, forEquations = eqil1) | ||
| 754 | algorithm | ||
| 755 | ✗ | (iters, arg) := List.map2FoldCheckReferenceEq(iters, traverseExpBidirIterator, enterFunc, exitFunc, arg); | |
| 756 | ✗ | (eqil1, arg) := traverseEquationItemListBidir(eqil1, enterFunc, exitFunc, arg); | |
| 757 | ✗ | then | |
| 758 | Absyn.EQ_FOR(iters, eqil1); | ||
| 759 | |||
| 760 | case Absyn.EQ_WHEN_E(whenExp = e1, whenEquations = eqil1, elseWhenEquations = else_branch) | ||
| 761 | algorithm | ||
| 762 | ✗ | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 763 | ✗ | (eqil1, arg) := traverseEquationItemListBidir(eqil1, enterFunc, exitFunc, arg); | |
| 764 | ✗ | (else_branch, arg) := List.map2FoldCheckReferenceEq(else_branch, traverseEquationBidirElse, enterFunc, exitFunc, arg); | |
| 765 | ✗ | then | |
| 766 | Absyn.EQ_WHEN_E(e1, eqil1, else_branch); | ||
| 767 | |||
| 768 | case Absyn.EQ_NORETCALL(functionName = cref1, functionArgs = func_args) | ||
| 769 | algorithm | ||
| 770 | 22 | (cref1, arg) := traverseExpBidirCref(cref1, enterFunc, exitFunc, arg); | |
| 771 | 22 | (func_args, arg) := traverseExpBidirFunctionArgs(func_args, enterFunc, exitFunc, arg); | |
| 772 | 22 | then | |
| 773 | Absyn.EQ_NORETCALL(cref1, func_args); | ||
| 774 | |||
| 775 | case Absyn.EQ_FAILURE(equ = eq1) | ||
| 776 | algorithm | ||
| 777 | 2 | (eq1, arg) := traverseEquationItemBidir(eq1, enterFunc, exitFunc, arg); | |
| 778 | 2 | then | |
| 779 | Absyn.EQ_FAILURE(eq1); | ||
| 780 | |||
| 781 | end match; | ||
| 782 | end traverseEquationBidir; | ||
| 783 | |||
| 784 | protected function traverseEquationBidirElse<Arg> | ||
| 785 | input tuple<Absyn.Exp, list<Absyn.EquationItem>> inElse; | ||
| 786 | input FuncType enterFunc; | ||
| 787 | input FuncType exitFunc; | ||
| 788 | input Arg inArg; | ||
| 789 | output tuple<Absyn.Exp, list<Absyn.EquationItem>> outElse; | ||
| 790 | output Arg arg; | ||
| 791 | |||
| 792 | partial function FuncType | ||
| 793 | input output Absyn.Exp exp; | ||
| 794 | input output Arg arg; | ||
| 795 | end FuncType; | ||
| 796 | protected | ||
| 797 | Absyn.Exp e; | ||
| 798 | list<Absyn.EquationItem> eqil; | ||
| 799 | algorithm | ||
| 800 | ✗ | (e, eqil) := inElse; | |
| 801 | ✗ | (e, arg) := traverseExpBidir(e, enterFunc, exitFunc, inArg); | |
| 802 | ✗ | (eqil, arg) := traverseEquationItemListBidir(eqil, enterFunc, exitFunc, arg); | |
| 803 | ✗ | outElse := (e, eqil); | |
| 804 | end traverseEquationBidirElse; | ||
| 805 | |||
| 806 | protected function traverseAlgorithmBidirElse<Arg> | ||
| 807 | input tuple<Absyn.Exp, list<Absyn.AlgorithmItem>> inElse; | ||
| 808 | input FuncType enterFunc; | ||
| 809 | input FuncType exitFunc; | ||
| 810 | input Arg inArg; | ||
| 811 | output tuple<Absyn.Exp, list<Absyn.AlgorithmItem>> outElse; | ||
| 812 | output Arg arg; | ||
| 813 | |||
| 814 | partial function FuncType | ||
| 815 | input output Absyn.Exp exp; | ||
| 816 | input output Arg arg; | ||
| 817 | end FuncType; | ||
| 818 | protected | ||
| 819 | Absyn.Exp e; | ||
| 820 | list<Absyn.AlgorithmItem> algs; | ||
| 821 | algorithm | ||
| 822 | 36 | (e, algs) := inElse; | |
| 823 | 36 | (e, arg) := traverseExpBidir(e, enterFunc, exitFunc, inArg); | |
| 824 | 36 | (algs, arg) := traverseAlgorithmItemListBidir(algs, enterFunc, exitFunc, arg); | |
| 825 | 36 | outElse := (e, algs); | |
| 826 | end traverseAlgorithmBidirElse; | ||
| 827 | |||
| 828 | protected function traverseAlgorithmBidir<Arg> | ||
| 829 | input output Absyn.Algorithm alg; | ||
| 830 | input FuncType enterFunc; | ||
| 831 | input FuncType exitFunc; | ||
| 832 | input output Arg arg; | ||
| 833 | |||
| 834 | partial function FuncType | ||
| 835 | input output Absyn.Exp exp; | ||
| 836 | input output Arg arg; | ||
| 837 | end FuncType; | ||
| 838 | algorithm | ||
| 839 | alg := match alg | ||
| 840 | local | ||
| 841 | Absyn.Exp e1, e2; | ||
| 842 | list<Absyn.AlgorithmItem> algs1, algs2; | ||
| 843 | list<tuple<Absyn.Exp, list<Absyn.AlgorithmItem>>> else_branch; | ||
| 844 | Absyn.ComponentRef cref1; | ||
| 845 | Absyn.ForIterators iters; | ||
| 846 | Absyn.FunctionArgs func_args; | ||
| 847 | |||
| 848 | case Absyn.ALG_ASSIGN(e1, e2) | ||
| 849 | algorithm | ||
| 850 | 7161 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 851 | 7161 | (e2, arg) := traverseExpBidir(e2, enterFunc, exitFunc, arg); | |
| 852 | 7161 | then | |
| 853 | Absyn.ALG_ASSIGN(e1, e2); | ||
| 854 | |||
| 855 | case Absyn.ALG_IF(e1, algs1, else_branch, algs2) | ||
| 856 | algorithm | ||
| 857 | 179 | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 858 | 179 | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 859 | 179 | (else_branch, arg) := List.map2FoldCheckReferenceEq(else_branch, traverseAlgorithmBidirElse, enterFunc, exitFunc, arg); | |
| 860 | 179 | (algs2, arg) := traverseAlgorithmItemListBidir(algs2, enterFunc, exitFunc, arg); | |
| 861 | 179 | then | |
| 862 | Absyn.ALG_IF(e1, algs1, else_branch, algs2); | ||
| 863 | |||
| 864 | case Absyn.ALG_FOR(iters, algs1) | ||
| 865 | algorithm | ||
| 866 | 8 | (iters, arg) := List.map2FoldCheckReferenceEq(iters, traverseExpBidirIterator, enterFunc, exitFunc, arg); | |
| 867 | 8 | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 868 | 8 | then | |
| 869 | Absyn.ALG_FOR(iters, algs1); | ||
| 870 | |||
| 871 | case Absyn.ALG_PARFOR(iters, algs1) | ||
| 872 | algorithm | ||
| 873 | ✗ | (iters, arg) := List.map2FoldCheckReferenceEq(iters, traverseExpBidirIterator, enterFunc, exitFunc, arg); | |
| 874 | ✗ | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 875 | ✗ | then | |
| 876 | Absyn.ALG_PARFOR(iters, algs1); | ||
| 877 | |||
| 878 | case Absyn.ALG_WHILE(e1, algs1) | ||
| 879 | algorithm | ||
| 880 | ✗ | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 881 | ✗ | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 882 | ✗ | then | |
| 883 | Absyn.ALG_WHILE(e1, algs1); | ||
| 884 | |||
| 885 | case Absyn.ALG_WHEN_A(e1, algs1, else_branch) | ||
| 886 | algorithm | ||
| 887 | ✗ | (e1, arg) := traverseExpBidir(e1, enterFunc, exitFunc, arg); | |
| 888 | ✗ | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 889 | ✗ | (else_branch, arg) := List.map2FoldCheckReferenceEq(else_branch, traverseAlgorithmBidirElse, enterFunc, exitFunc, arg); | |
| 890 | ✗ | then | |
| 891 | Absyn.ALG_WHEN_A(e1, algs1, else_branch); | ||
| 892 | |||
| 893 | case Absyn.ALG_NORETCALL(cref1, func_args) | ||
| 894 | algorithm | ||
| 895 | 490 | (cref1, arg) := traverseExpBidirCref(cref1, enterFunc, exitFunc, arg); | |
| 896 | 490 | (func_args, arg) := traverseExpBidirFunctionArgs(func_args, enterFunc, exitFunc, arg); | |
| 897 | 490 | then | |
| 898 | Absyn.ALG_NORETCALL(cref1, func_args); | ||
| 899 | |||
| 900 | case Absyn.ALG_RETURN() then alg; | ||
| 901 | case Absyn.ALG_BREAK() then alg; | ||
| 902 | case Absyn.ALG_CONTINUE() then alg; | ||
| 903 | |||
| 904 | case Absyn.ALG_FAILURE(algs1) | ||
| 905 | algorithm | ||
| 906 | 2 | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 907 | 2 | then | |
| 908 | Absyn.ALG_FAILURE(algs1); | ||
| 909 | |||
| 910 | case Absyn.ALG_TRY(algs1, algs2) | ||
| 911 | algorithm | ||
| 912 | ✗ | (algs1, arg) := traverseAlgorithmItemListBidir(algs1, enterFunc, exitFunc, arg); | |
| 913 | ✗ | (algs2, arg) := traverseAlgorithmItemListBidir(algs2, enterFunc, exitFunc, arg); | |
| 914 | ✗ | then | |
| 915 | Absyn.ALG_TRY(algs1, algs2); | ||
| 916 | |||
| 917 | end match; | ||
| 918 | end traverseAlgorithmBidir; | ||
| 919 | |||
| 920 | public function makeIdentPathFromString | ||
| 921 | input String s; | ||
| 922 | output Absyn.Path p; | ||
| 923 | algorithm | ||
| 924 | 7521204 | p := Absyn.IDENT(s); | |
| 925 | annotation(__OpenModelica_EarlyInline = true); | ||
| 926 | end makeIdentPathFromString; | ||
| 927 | |||
| 928 | public function makeQualifiedPathFromStrings | ||
| 929 | input String s1; | ||
| 930 | input String s2; | ||
| 931 | output Absyn.Path p; | ||
| 932 | algorithm | ||
| 933 | ✗ | p := Absyn.QUALIFIED(s1,Absyn.IDENT(s2)); | |
| 934 | annotation(__OpenModelica_EarlyInline = true); | ||
| 935 | end makeQualifiedPathFromStrings; | ||
| 936 | |||
| 937 | public function className | ||
| 938 | "Returns the class name of a Absyn.Class." | ||
| 939 | input Absyn.Class cl; | ||
| 940 | output String name; | ||
| 941 | algorithm | ||
| 942 | 20 | Absyn.CLASS(name = name) := cl; | |
| 943 | end className; | ||
| 944 | |||
| 945 | public function isClassNamed | ||
| 946 | input String inName; | ||
| 947 | input Absyn.Class inClass; | ||
| 948 | output Boolean outIsNamed; | ||
| 949 | algorithm | ||
| 950 | outIsNamed := match inClass | ||
| 951 |
4/4✓ Branch 0 taken 64070 times.
✓ Branch 1 taken 240091 times.
✓ Branch 3 taken 20243 times.
✓ Branch 4 taken 43827 times.
|
304161 | case Absyn.CLASS() then inName == inClass.name; |
| 952 | else false; | ||
| 953 | end match; | ||
| 954 | end isClassNamed; | ||
| 955 | |||
| 956 | public function isComponentItemNamed | ||
| 957 | input String name; | ||
| 958 | input Absyn.ComponentItem component; | ||
| 959 | output Boolean res = isComponentNamed(name, component.component); | ||
| 960 | end isComponentItemNamed; | ||
| 961 | |||
| 962 | public function isComponentNamed | ||
| 963 | input String name; | ||
| 964 | input Absyn.Component component; | ||
| 965 | output Boolean res = name == component.name; | ||
| 966 | end isComponentNamed; | ||
| 967 | |||
| 968 | public function elementSpecName | ||
| 969 | "The Absyn.ElementSpec type contains the name of the element, and this function | ||
| 970 | extracts this name." | ||
| 971 | input Absyn.ElementSpec inElementSpec; | ||
| 972 | output Absyn.Ident outIdent; | ||
| 973 | algorithm | ||
| 974 | outIdent := match inElementSpec | ||
| 975 | local Absyn.Ident n; | ||
| 976 | |||
| 977 | case Absyn.CLASSDEF(class_ = Absyn.CLASS(name = n)) then n; | ||
| 978 | case Absyn.COMPONENTS(components = {Absyn.COMPONENTITEM(component = Absyn.COMPONENT(name = n))}) then n; | ||
| 979 | end match; | ||
| 980 | end elementSpecName; | ||
| 981 | |||
| 982 | public function elementItemNames | ||
| 983 | input Absyn.ElementItem item; | ||
| 984 | output list<String> names; | ||
| 985 | algorithm | ||
| 986 | names := match item | ||
| 987 | 12 | case Absyn.ElementItem.ELEMENTITEM() then elementNames(item.element); | |
| 988 | else {}; | ||
| 989 | end match; | ||
| 990 | end elementItemNames; | ||
| 991 | |||
| 992 | public function elementNames | ||
| 993 | input Absyn.Element element; | ||
| 994 | output list<String> names; | ||
| 995 | algorithm | ||
| 996 | names := match element | ||
| 997 | 12 | case Absyn.Element.ELEMENT() then elementSpecNames(element.specification); | |
| 998 | else {}; | ||
| 999 | end match; | ||
| 1000 | end elementNames; | ||
| 1001 | |||
| 1002 | public function elementSpecNames | ||
| 1003 | input Absyn.ElementSpec spec; | ||
| 1004 | output list<String> names; | ||
| 1005 | algorithm | ||
| 1006 | names := match spec | ||
| 1007 | 2 | case Absyn.ElementSpec.CLASSDEF() then {className(spec.class_)}; | |
| 1008 |
4/4✓ Branch 0 taken 10 times.
✓ Branch 1 taken 10 times.
✓ Branch 2 taken 10 times.
✓ Branch 3 taken 10 times.
|
20 | case Absyn.ElementSpec.COMPONENTS() then list(componentName(c) for c in spec.components); |
| 1009 | else {}; | ||
| 1010 | end match; | ||
| 1011 | end elementSpecNames; | ||
| 1012 | |||
| 1013 | public function isClassdef | ||
| 1014 | input Absyn.Element inElement; | ||
| 1015 | output Boolean b; | ||
| 1016 | algorithm | ||
| 1017 | b := match inElement | ||
| 1018 | case Absyn.ELEMENT(specification=Absyn.CLASSDEF()) then true; | ||
| 1019 | else false; | ||
| 1020 | end match; | ||
| 1021 | end isClassdef; | ||
| 1022 | |||
| 1023 | public function printImportString | ||
| 1024 | "This function takes a Absyn.Import and prints it as a flat-string." | ||
| 1025 | input Absyn.Import imp; | ||
| 1026 | output String ostring; | ||
| 1027 | algorithm | ||
| 1028 | ostring := match imp | ||
| 1029 | ✗ | case Absyn.NAMED_IMPORT() then imp.name; | |
| 1030 | 2839 | case Absyn.QUAL_IMPORT() then pathString(imp.path); | |
| 1031 | ✗ | case Absyn.UNQUAL_IMPORT() then pathString(imp.path); | |
| 1032 | end match; | ||
| 1033 | end printImportString; | ||
| 1034 | |||
| 1035 | public function expString "returns the string of an expression if it is a string constant." | ||
| 1036 | input Absyn.Exp exp; | ||
| 1037 | output String str; | ||
| 1038 | algorithm | ||
| 1039 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 456 times.
|
456 | Absyn.STRING(str) := exp; |
| 1040 | end expString; | ||
| 1041 | |||
| 1042 | public function expCref "returns the componentRef of an expression if matches." | ||
| 1043 | input Absyn.Exp exp; | ||
| 1044 | output Absyn.ComponentRef cr; | ||
| 1045 | algorithm | ||
| 1046 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 33 times.
|
33 | Absyn.CREF(cr) := exp; |
| 1047 | end expCref; | ||
| 1048 | |||
| 1049 | public function crefExp "returns the componentRef of an expression if matches." | ||
| 1050 | input Absyn.ComponentRef cr; | ||
| 1051 | output Absyn.Exp exp; | ||
| 1052 | algorithm | ||
| 1053 | ✗ | exp := Absyn.CREF(cr); | |
| 1054 | annotation(__OpenModelica_EarlyInline = true); | ||
| 1055 | end crefExp; | ||
| 1056 | |||
| 1057 | public function pathEqual "Returns true if two paths are equal." | ||
| 1058 | input Absyn.Path path1; | ||
| 1059 | input Absyn.Path path2; | ||
| 1060 | output Boolean equal; | ||
| 1061 | algorithm | ||
| 1062 | equal := match (path1, path2) | ||
| 1063 | // fully qual vs. path | ||
| 1064 | 3064186 | case (Absyn.FULLYQUALIFIED(), _) then pathEqual(path1.path, path2); | |
| 1065 | // path vs. fully qual | ||
| 1066 | 3496407 | case (_, Absyn.FULLYQUALIFIED()) then pathEqual(path1, path2.path); | |
| 1067 | // ident vs. ident | ||
| 1068 |
4/4✓ Branch 0 taken 8691340 times.
✓ Branch 1 taken 185613 times.
✓ Branch 3 taken 4964 times.
✓ Branch 4 taken 8686376 times.
|
8876953 | case (Absyn.IDENT(),Absyn.IDENT()) then stringEq(path1.name, path2.name); |
| 1069 | // qual ident vs. qual ident | ||
| 1070 | case (Absyn.QUALIFIED(),Absyn.QUALIFIED()) | ||
| 1071 |
6/6✓ Branch 0 taken 21342484 times.
✓ Branch 1 taken 891486 times.
✓ Branch 3 taken 21300725 times.
✓ Branch 4 taken 41759 times.
✓ Branch 6 taken 806621 times.
✓ Branch 7 taken 20494104 times.
|
22233970 | then stringEq(path1.name, path2.name) and pathEqual(path1.path, path2.path); |
| 1072 | // other return false | ||
| 1073 | else false; | ||
| 1074 | end match; | ||
| 1075 | end pathEqual; | ||
| 1076 | |||
| 1077 | public function pathEqualCaseInsensitive "Returns true if two paths are equal." | ||
| 1078 | input Absyn.Path path1; | ||
| 1079 | input Absyn.Path path2; | ||
| 1080 | output Boolean equal; | ||
| 1081 | algorithm | ||
| 1082 | equal := match (path1, path2) | ||
| 1083 | // fully qual vs. path | ||
| 1084 | ✗ | case (Absyn.FULLYQUALIFIED(), _) then pathEqualCaseInsensitive(path1.path, path2); | |
| 1085 | // path vs. fully qual | ||
| 1086 | ✗ | case (_, Absyn.FULLYQUALIFIED()) then pathEqualCaseInsensitive(path1, path2.path); | |
| 1087 | // ident vs. ident | ||
| 1088 | ✗ | case (Absyn.IDENT(),Absyn.IDENT()) then stringEq(System.tolower(path1.name), System.tolower(path2.name)); | |
| 1089 | // qual ident vs. qual ident | ||
| 1090 | case (Absyn.QUALIFIED(),Absyn.QUALIFIED()) | ||
| 1091 | ✗ | then stringEq(System.tolower(path1.name), System.tolower(path2.name)) and | |
| 1092 | pathEqualCaseInsensitive(path1.path, path2.path); | ||
| 1093 | // other return false | ||
| 1094 | else false; | ||
| 1095 | end match; | ||
| 1096 | end pathEqualCaseInsensitive; | ||
| 1097 | |||
| 1098 | public function typeSpecEqual | ||
| 1099 | "Author BZ 2009-01 | ||
| 1100 | Check whether two type specs are equal or not." | ||
| 1101 | input Absyn.TypeSpec a,b; | ||
| 1102 | output Boolean ob; | ||
| 1103 | algorithm | ||
| 1104 | ob := match(a,b) | ||
| 1105 | local | ||
| 1106 | |||
| 1107 | case (Absyn.TPATH(), Absyn.TPATH()) | ||
| 1108 |
3/4✓ Branch 1 taken 464013 times.
✓ Branch 2 taken 13 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 464013 times.
|
464026 | then pathEqual(a.path, b.path) and optArrayDimEqual(a.arrayDim, b.arrayDim); |
| 1109 | |||
| 1110 | case (Absyn.TCOMPLEX(), Absyn.TCOMPLEX()) | ||
| 1111 |
3/6✓ Branch 1 taken 5718 times.
✗ Branch 2 not taken.
✓ Branch 4 taken 5718 times.
✗ Branch 5 not taken.
✗ Branch 7 not taken.
✓ Branch 8 taken 5718 times.
|
5718 | then pathEqual(a.path, b.path) and |
| 1112 | List.isEqualOnTrue(a.typeSpecs, b.typeSpecs, typeSpecEqual) and | ||
| 1113 | optArrayDimEqual(a.arrayDim, b.arrayDim); | ||
| 1114 | |||
| 1115 | else false; | ||
| 1116 | end match; | ||
| 1117 | end typeSpecEqual; | ||
| 1118 | |||
| 1119 | public function optArrayDimEqual | ||
| 1120 | "Author BZ | ||
| 1121 | helper function for typeSpecEqual" | ||
| 1122 | input Option<Absyn.ArrayDim> oad1,oad2; | ||
| 1123 | output Boolean b; | ||
| 1124 | algorithm | ||
| 1125 | b:= match(oad1,oad2) | ||
| 1126 | local | ||
| 1127 | list<Absyn.Subscript> ad1,ad2; | ||
| 1128 | |||
| 1129 | case(SOME(ad1),SOME(ad2)) | ||
| 1130 | ✗ | then List.isEqualOnTrue(ad1,ad2,subscriptEqual); | |
| 1131 | case(NONE(),NONE()) then true; | ||
| 1132 | else false; | ||
| 1133 | end match; | ||
| 1134 | end optArrayDimEqual; | ||
| 1135 | |||
| 1136 | public function typeSpecPathString "This function simply converts a Absyn.Path to a string." | ||
| 1137 | input Absyn.TypeSpec tp; | ||
| 1138 | output String s = pathString(typeSpecPath(tp)); | ||
| 1139 | end typeSpecPathString; | ||
| 1140 | |||
| 1141 | public function typeSpecPath | ||
| 1142 | "Converts a Absyn.TypeSpec to Absyn.Path" | ||
| 1143 | input Absyn.TypeSpec tp; | ||
| 1144 | output Absyn.Path op; | ||
| 1145 | algorithm | ||
| 1146 | op := match tp | ||
| 1147 | 5232 | case Absyn.TCOMPLEX() then tp.path; | |
| 1148 | 798855 | case Absyn.TPATH() then tp.path; | |
| 1149 | end match; | ||
| 1150 | end typeSpecPath; | ||
| 1151 | |||
| 1152 | public function typeSpecDimensions | ||
| 1153 | "Returns the dimensions of a Absyn.TypeSpec." | ||
| 1154 | input Absyn.TypeSpec inTypeSpec; | ||
| 1155 | output Absyn.ArrayDim outDimensions; | ||
| 1156 | algorithm | ||
| 1157 | outDimensions := match inTypeSpec | ||
| 1158 | local | ||
| 1159 | Absyn.ArrayDim dim; | ||
| 1160 | |||
| 1161 | case Absyn.TPATH(arrayDim = SOME(dim)) then dim; | ||
| 1162 | case Absyn.TCOMPLEX(arrayDim = SOME(dim)) then dim; | ||
| 1163 | else {}; | ||
| 1164 | end match; | ||
| 1165 | end typeSpecDimensions; | ||
| 1166 | |||
| 1167 | public function pathString "This function simply converts a Absyn.Path to a string." | ||
| 1168 | input Absyn.Path path; | ||
| 1169 | input String delimiter="."; | ||
| 1170 | input Boolean usefq=true; | ||
| 1171 | input Boolean reverse=false; | ||
| 1172 | output String s; | ||
| 1173 | protected | ||
| 1174 | Absyn.Path p1,p2; | ||
| 1175 | Integer count=0, len=0, dlen=stringLength(delimiter); | ||
| 1176 | Boolean b; | ||
| 1177 | algorithm | ||
| 1178 | // First, calculate the length of the string to be generated | ||
| 1179 |
3/4✓ Branch 0 taken 768557 times.
✓ Branch 1 taken 2817188 times.
✓ Branch 3 taken 15788 times.
✗ Branch 4 not taken.
|
3601533 | p1 := if usefq then path else makeNotFullyQualified(path); |
| 1180 | () := match p1 | ||
| 1181 | case Absyn.IDENT() | ||
| 1182 | algorithm | ||
| 1183 | // Do not allocate memory if we're just going to copy the only identifier | ||
| 1184 | 1435645 | s := p1.name; | |
| 1185 | 1435645 | return; | |
| 1186 | then (); | ||
| 1187 | else (); | ||
| 1188 | end match; | ||
| 1189 | p2 := p1; | ||
| 1190 | b := true; | ||
| 1191 |
4/4✓ Branch 0 taken 8134369 times.
✓ Branch 1 taken 2150336 times.
✓ Branch 2 taken 53241 times.
✓ Branch 3 taken 15552 times.
|
10353498 | while b loop |
| 1192 | (p2,len,count,b) := match p2 | ||
| 1193 | 2165888 | case Absyn.IDENT() then (p2,len+1,count+stringLength(p2.name),false); | |
| 1194 | 5433736 | case Absyn.QUALIFIED() then (p2.path,len+1,count+stringLength(p2.name),true); | |
| 1195 | 587986 | case Absyn.FULLYQUALIFIED() then (p2.path,len+1,count,true); | |
| 1196 | end match; | ||
| 1197 | end while; | ||
| 1198 | 2165888 | s := pathStringWork(p1, (len-1)*dlen+count, delimiter, dlen, reverse); | |
| 1199 | end pathString; | ||
| 1200 | |||
| 1201 | protected | ||
| 1202 | |||
| 1203 | function pathStringWork | ||
| 1204 | input Absyn.Path inPath; | ||
| 1205 | input Integer len; | ||
| 1206 | input String delimiter; | ||
| 1207 | input Integer dlen; | ||
| 1208 | input Boolean reverse; | ||
| 1209 | output String s=""; | ||
| 1210 | protected | ||
| 1211 | Absyn.Path p=inPath; | ||
| 1212 | Boolean b=true; | ||
| 1213 | Integer count=0; | ||
| 1214 | // Allocate a string of the exact required length | ||
| 1215 | System.StringAllocator sb=System.StringAllocator(len); | ||
| 1216 | algorithm | ||
| 1217 | // Fill the string | ||
| 1218 |
2/2✓ Branch 0 taken 8187610 times.
✓ Branch 1 taken 2165888 times.
|
10353498 | while b loop |
| 1219 | (p,count,b) := match p | ||
| 1220 | case Absyn.IDENT() | ||
| 1221 | algorithm | ||
| 1222 |
2/2✓ Branch 0 taken 498608 times.
✓ Branch 1 taken 1667280 times.
|
2165888 | System.stringAllocatorStringCopy(sb, p.name, if reverse then len-count-stringLength(p.name) else count); |
| 1223 | 2165888 | then (p,count+stringLength(p.name),false); | |
| 1224 | case Absyn.QUALIFIED() | ||
| 1225 | algorithm | ||
| 1226 | // In reverse order the delimiter goes to the left of the name | ||
| 1227 |
2/2✓ Branch 0 taken 867444 times.
✓ Branch 1 taken 4566292 times.
|
5433736 | System.stringAllocatorStringCopy(sb, p.name, if reverse then len-count-stringLength(p.name) else count); |
| 1228 |
2/2✓ Branch 0 taken 867444 times.
✓ Branch 1 taken 4566292 times.
|
5433736 | System.stringAllocatorStringCopy(sb, delimiter, if reverse then len-count-stringLength(p.name)-dlen else count+stringLength(p.name)); |
| 1229 | 5433736 | then (p.path,count+stringLength(p.name)+dlen,true); | |
| 1230 | case Absyn.FULLYQUALIFIED() | ||
| 1231 | algorithm | ||
| 1232 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 587986 times.
|
587986 | System.stringAllocatorStringCopy(sb, delimiter, if reverse then len-count-dlen else count); |
| 1233 | 587986 | then (p.path,count+dlen,true); | |
| 1234 | end match; | ||
| 1235 | end while; | ||
| 1236 | // Return the string | ||
| 1237 | 2165888 | s := System.stringAllocatorResult(sb,s); | |
| 1238 | end pathStringWork; | ||
| 1239 | |||
| 1240 | public | ||
| 1241 | |||
| 1242 | function pathStringNoQual = pathString(usefq=false); | ||
| 1243 | |||
| 1244 | function pathStringDefault | ||
| 1245 | input Absyn.Path path; | ||
| 1246 | output String s = pathString(path); | ||
| 1247 | end pathStringDefault; | ||
| 1248 | |||
| 1249 | public function classNameCompare | ||
| 1250 | input Absyn.Class c1,c2; | ||
| 1251 | output Integer o; | ||
| 1252 | algorithm | ||
| 1253 | ✗ | o := stringCompare(c1.name, c2.name); | |
| 1254 | end classNameCompare; | ||
| 1255 | |||
| 1256 | public function classNameGreater | ||
| 1257 | input Absyn.Class c1,c2; | ||
| 1258 | output Boolean b; | ||
| 1259 | algorithm | ||
| 1260 | 2789 | b := stringCompare(c1.name, c2.name) > 0; | |
| 1261 | end classNameGreater; | ||
| 1262 | |||
| 1263 | public function pathCompare | ||
| 1264 | input Absyn.Path ip1; | ||
| 1265 | input Absyn.Path ip2; | ||
| 1266 | output Integer o; | ||
| 1267 | algorithm | ||
| 1268 | o := match (ip1,ip2) | ||
| 1269 | local | ||
| 1270 | Absyn.Path p1,p2; | ||
| 1271 | String i1,i2; | ||
| 1272 | 27117 | case (Absyn.FULLYQUALIFIED(p1),Absyn.FULLYQUALIFIED(p2)) then pathCompare(p1,p2); | |
| 1273 | case (Absyn.FULLYQUALIFIED(),_) then 1; | ||
| 1274 | case (_,Absyn.FULLYQUALIFIED()) then -1; | ||
| 1275 | case (Absyn.QUALIFIED(i1,p1),Absyn.QUALIFIED(i2,p2)) | ||
| 1276 | algorithm | ||
| 1277 | 7073998 | o := stringCompare(i1,i2); | |
| 1278 |
2/2✓ Branch 0 taken 6420428 times.
✓ Branch 1 taken 653570 times.
|
7073998 | o := if o == 0 then pathCompare(p1, p2) else o; |
| 1279 | then o; | ||
| 1280 | case (Absyn.QUALIFIED(),_) then 1; | ||
| 1281 | case (_,Absyn.QUALIFIED()) then -1; | ||
| 1282 | case (Absyn.IDENT(i1),Absyn.IDENT(i2)) | ||
| 1283 | 2365628 | then stringCompare(i1,i2); | |
| 1284 | end match; | ||
| 1285 | end pathCompare; | ||
| 1286 | |||
| 1287 | public function pathCompareNoQual | ||
| 1288 | input Absyn.Path ip1; | ||
| 1289 | input Absyn.Path ip2; | ||
| 1290 | output Integer o; | ||
| 1291 | algorithm | ||
| 1292 | o := match (ip1,ip2) | ||
| 1293 | local | ||
| 1294 | Absyn.Path p1,p2; | ||
| 1295 | String i1,i2; | ||
| 1296 | 1524267 | case (Absyn.FULLYQUALIFIED(p1),p2) then pathCompareNoQual(p1,p2); | |
| 1297 | 1887530 | case (p1,Absyn.FULLYQUALIFIED(p2)) then pathCompareNoQual(p1,p2); | |
| 1298 | case (Absyn.QUALIFIED(i1,p1),Absyn.QUALIFIED(i2,p2)) | ||
| 1299 | algorithm | ||
| 1300 | 2437145 | o := stringCompare(i1,i2); | |
| 1301 |
2/2✓ Branch 0 taken 2192563 times.
✓ Branch 1 taken 244582 times.
|
2437145 | o := if o == 0 then pathCompare(p1, p2) else o; |
| 1302 | then o; | ||
| 1303 | case (Absyn.QUALIFIED(),_) then 1; | ||
| 1304 | case (_,Absyn.QUALIFIED()) then -1; | ||
| 1305 | case (Absyn.IDENT(i1),Absyn.IDENT(i2)) | ||
| 1306 | 309223 | then stringCompare(i1,i2); | |
| 1307 | end match; | ||
| 1308 | end pathCompareNoQual; | ||
| 1309 | |||
| 1310 | public function pathHash "Hashes a path." | ||
| 1311 | input Absyn.Path path; | ||
| 1312 | output Integer hash; | ||
| 1313 | algorithm | ||
| 1314 | 4132760 | hash := pathHashContinue(path, Util.HASH_SEED); | |
| 1315 | end pathHash; | ||
| 1316 | |||
| 1317 | public function pathHashContinue "Hashes a path." | ||
| 1318 | input Absyn.Path path; | ||
| 1319 | input output Integer hash; | ||
| 1320 | algorithm | ||
| 1321 | hash := match path | ||
| 1322 | case Absyn.FULLYQUALIFIED() | ||
| 1323 | algorithm | ||
| 1324 | ✗ | hash := stringHashDjb2Continue(".", hash); | |
| 1325 | ✗ | then pathHashContinue(path.path, hash); | |
| 1326 | |||
| 1327 | case Absyn.QUALIFIED() | ||
| 1328 | algorithm | ||
| 1329 | 9103749 | hash := stringHashDjb2Continue(".", hash); | |
| 1330 | 9103749 | hash := stringHashDjb2Continue(path.name, hash); | |
| 1331 | 9103749 | then pathHashContinue(path.path, hash); | |
| 1332 | |||
| 1333 | case Absyn.IDENT() | ||
| 1334 | algorithm | ||
| 1335 | 4132822 | hash := stringHashDjb2Continue(".", hash); | |
| 1336 | 4132822 | hash := stringHashDjb2Continue(path.name, hash); | |
| 1337 | then hash; | ||
| 1338 | end match; | ||
| 1339 | end pathHashContinue; | ||
| 1340 | |||
| 1341 | public function optPathString "Returns a path converted to string or an empty string if nothing exist" | ||
| 1342 | input Option<Absyn.Path> inPathOption; | ||
| 1343 | output String outString; | ||
| 1344 | algorithm | ||
| 1345 | outString := match inPathOption | ||
| 1346 | local | ||
| 1347 | Absyn.Path p; | ||
| 1348 | case NONE() then ""; | ||
| 1349 | ✗ | case SOME(p) then pathString(p); | |
| 1350 | end match; | ||
| 1351 | end optPathString; | ||
| 1352 | |||
| 1353 | public function pathStringUnquoteReplaceDot | ||
| 1354 | " Changes a path to string. Uses the input string as separator. | ||
| 1355 | If the separtor exists in the string then it is doubled (sep _ then | ||
| 1356 | a_b changes to a__b) before delimiting | ||
| 1357 | (Replaces dots with that separator). And also unquotes each ident. | ||
| 1358 | " | ||
| 1359 | input Absyn.Path inPath; | ||
| 1360 | input String repStr; | ||
| 1361 | output String outString; | ||
| 1362 | protected | ||
| 1363 | list<String> strlst; | ||
| 1364 | String rep_rep; | ||
| 1365 | algorithm | ||
| 1366 | 33859 | rep_rep := repStr + repStr; | |
| 1367 | 33859 | strlst := pathToStringList(inPath); | |
| 1368 | 33859 | strlst := List.map2(strlst,System.stringReplace, repStr, rep_rep); | |
| 1369 | 33859 | strlst := List.map(strlst,System.unquoteIdentifier); | |
| 1370 | 33859 | outString := stringDelimitList(strlst,repStr); | |
| 1371 | end pathStringUnquoteReplaceDot; | ||
| 1372 | |||
| 1373 | public function stringPath | ||
| 1374 | "Converts a string into a qualified path." | ||
| 1375 | input String str; | ||
| 1376 | output Absyn.Path qualifiedPath; | ||
| 1377 | |||
| 1378 | protected | ||
| 1379 | list<String> paths; | ||
| 1380 | algorithm | ||
| 1381 | 148 | paths := Util.stringSplitAtChar(str, "."); | |
| 1382 | 148 | qualifiedPath := stringListPath(paths); | |
| 1383 | end stringPath; | ||
| 1384 | |||
| 1385 | public function stringListPath | ||
| 1386 | "Converts a list of strings into a qualified path." | ||
| 1387 | input list<String> paths; | ||
| 1388 | output Absyn.Path qualifiedPath = stringListPathReversed(listReverse(paths)); | ||
| 1389 | end stringListPath; | ||
| 1390 | |||
| 1391 | public function stringListPathReversed | ||
| 1392 | "Converts a list of strings into a qualified path, in reverse order. | ||
| 1393 | Ex: {'a', 'b', 'c'} => c.b.a" | ||
| 1394 | input list<String> inStrings; | ||
| 1395 | output Absyn.Path outPath; | ||
| 1396 | protected | ||
| 1397 | String id; | ||
| 1398 | list<String> rest_str; | ||
| 1399 | algorithm | ||
| 1400 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 113731 times.
|
113731 | id :: rest_str := inStrings; |
| 1401 | 113731 | outPath := Absyn.IDENT(id); | |
| 1402 | |||
| 1403 |
2/2✓ Branch 0 taken 304093 times.
✓ Branch 1 taken 113731 times.
|
417824 | for s in rest_str loop |
| 1404 | 304093 | outPath := Absyn.QUALIFIED(s, outPath); | |
| 1405 | end for; | ||
| 1406 | end stringListPathReversed; | ||
| 1407 | |||
| 1408 | public function pathLastIdent | ||
| 1409 | "Returns the last ident (after last dot) in a path" | ||
| 1410 | input Absyn.Path path; | ||
| 1411 | output String outIdent; | ||
| 1412 | algorithm | ||
| 1413 | outIdent := match path | ||
| 1414 | 1345624 | case Absyn.QUALIFIED() then pathLastIdent(path.path); | |
| 1415 | 1321249 | case Absyn.IDENT() then path.name; | |
| 1416 | 272304 | case Absyn.FULLYQUALIFIED() then pathLastIdent(path.path); | |
| 1417 | end match; | ||
| 1418 | end pathLastIdent; | ||
| 1419 | |||
| 1420 | public function pathSetLastIdent | ||
| 1421 | "Replaces the last identifier in the path." | ||
| 1422 | input Absyn.Path path; | ||
| 1423 | input String ident; | ||
| 1424 | output Absyn.Path outPath; | ||
| 1425 | algorithm | ||
| 1426 | outPath := match path | ||
| 1427 | 8990 | case Absyn.IDENT() then Absyn.IDENT(ident); | |
| 1428 | case Absyn.QUALIFIED() | ||
| 1429 | 44026 | then Absyn.QUALIFIED(path.name, pathSetLastIdent(path.path, ident)); | |
| 1430 | case Absyn.FULLYQUALIFIED() | ||
| 1431 | 3514 | then Absyn.FULLYQUALIFIED(pathSetLastIdent(path.path, ident)); | |
| 1432 | end match; | ||
| 1433 | end pathSetLastIdent; | ||
| 1434 | |||
| 1435 | public function pathLast | ||
| 1436 | "Returns the last ident (after last dot) in a path" | ||
| 1437 | input output Absyn.Path path; | ||
| 1438 | algorithm | ||
| 1439 | path := match path | ||
| 1440 | 42 | case Absyn.QUALIFIED() then pathLast(path.path); | |
| 1441 | case Absyn.IDENT() then path; | ||
| 1442 | ✗ | case Absyn.FULLYQUALIFIED() then pathLast(path.path); | |
| 1443 | end match; | ||
| 1444 | end pathLast; | ||
| 1445 | |||
| 1446 | public function pathFirstIdent "Returns the first ident (before first dot) in a path" | ||
| 1447 | input Absyn.Path path; | ||
| 1448 | output Absyn.Ident outIdent; | ||
| 1449 | algorithm | ||
| 1450 | outIdent := match path | ||
| 1451 | 6391 | case Absyn.FULLYQUALIFIED() then pathFirstIdent(path.path); | |
| 1452 | 140358 | case Absyn.QUALIFIED() then path.name; | |
| 1453 | 870061 | case Absyn.IDENT() then path.name; | |
| 1454 | end match; | ||
| 1455 | end pathFirstIdent; | ||
| 1456 | |||
| 1457 | public function pathSetFirstIdent | ||
| 1458 | "Replaces the first identifier in a path." | ||
| 1459 | input Absyn.Path path; | ||
| 1460 | input String ident; | ||
| 1461 | output Absyn.Path outPath; | ||
| 1462 | algorithm | ||
| 1463 | outPath := match path | ||
| 1464 | ✗ | case Absyn.IDENT() then Absyn.IDENT(ident); | |
| 1465 | ✗ | case Absyn.QUALIFIED() then Absyn.QUALIFIED(ident, path.path); | |
| 1466 | case Absyn.FULLYQUALIFIED() | ||
| 1467 | ✗ | then Absyn.FULLYQUALIFIED(pathSetFirstIdent(path.path, ident)); | |
| 1468 | end match; | ||
| 1469 | end pathSetFirstIdent; | ||
| 1470 | |||
| 1471 | public function pathFirstPath | ||
| 1472 | input Absyn.Path path; | ||
| 1473 | output Absyn.Path outPath; | ||
| 1474 | algorithm | ||
| 1475 | outPath := match path | ||
| 1476 | case Absyn.IDENT() then path; | ||
| 1477 | 1 | case Absyn.QUALIFIED() then Absyn.IDENT(path.name); | |
| 1478 | ✗ | case Absyn.FULLYQUALIFIED() then pathFirstPath(path.path); | |
| 1479 | end match; | ||
| 1480 | end pathFirstPath; | ||
| 1481 | |||
| 1482 | public function pathSecondIdent | ||
| 1483 | input Absyn.Path inPath; | ||
| 1484 | output Absyn.Ident outIdent; | ||
| 1485 | algorithm | ||
| 1486 | outIdent := match inPath | ||
| 1487 | local | ||
| 1488 | Absyn.Ident n; | ||
| 1489 | Absyn.Path p; | ||
| 1490 | |||
| 1491 | case Absyn.QUALIFIED(path = Absyn.QUALIFIED(name = n)) then n; | ||
| 1492 | case Absyn.QUALIFIED(path = Absyn.IDENT(name = n)) then n; | ||
| 1493 | ✗ | case Absyn.FULLYQUALIFIED(path = p) then pathSecondIdent(p); | |
| 1494 | |||
| 1495 | end match; | ||
| 1496 | end pathSecondIdent; | ||
| 1497 | |||
| 1498 | public function pathNthIdent | ||
| 1499 | "Returns the n:th identifier in a path. Fails if n is out of bounds." | ||
| 1500 | input Absyn.Path path; | ||
| 1501 | input Integer n; | ||
| 1502 | output Absyn.Ident ident; | ||
| 1503 | protected | ||
| 1504 | Absyn.Path p = makeNotFullyQualified(path); | ||
| 1505 | algorithm | ||
| 1506 | ✗ | for i in 2:n loop | |
| 1507 | ✗ | Absyn.QUALIFIED(path = p) := p; | |
| 1508 | end for; | ||
| 1509 | |||
| 1510 | ✗ | ident := pathFirstIdent(p); | |
| 1511 | end pathNthIdent; | ||
| 1512 | |||
| 1513 | public function pathSetNthIdent | ||
| 1514 | "Replaces the n:th identifier in a path. Fails if n is out of bounds." | ||
| 1515 | input Absyn.Path path; | ||
| 1516 | input Absyn.Ident ident; | ||
| 1517 | input Integer n; | ||
| 1518 | output Absyn.Path outPath; | ||
| 1519 | algorithm | ||
| 1520 | ✗ | if n == 1 then | |
| 1521 | ✗ | outPath := pathSetFirstIdent(path, ident); | |
| 1522 | else | ||
| 1523 | outPath := match path | ||
| 1524 | case Absyn.QUALIFIED() | ||
| 1525 | ✗ | then Absyn.QUALIFIED(path.name, pathSetNthIdent(path.path, ident, n - 1)); | |
| 1526 | case Absyn.FULLYQUALIFIED() | ||
| 1527 | ✗ | then Absyn.FULLYQUALIFIED(pathSetNthIdent(path.path, ident, n)); | |
| 1528 | end match; | ||
| 1529 | end if; | ||
| 1530 | end pathSetNthIdent; | ||
| 1531 | |||
| 1532 | public function pathRest | ||
| 1533 | input Absyn.Path inPath; | ||
| 1534 | output Absyn.Path outPath; | ||
| 1535 | algorithm | ||
| 1536 | outPath := match inPath | ||
| 1537 | case Absyn.QUALIFIED(path = outPath) then outPath; | ||
| 1538 | ✗ | case Absyn.FULLYQUALIFIED(path = outPath) then pathRest(outPath); | |
| 1539 | end match; | ||
| 1540 | end pathRest; | ||
| 1541 | |||
| 1542 | public function pathStripSamePrefix | ||
| 1543 | "strips the same prefix paths and returns the stripped path. e.g pathStripSamePrefix(P.M.A, P.M.B) => A" | ||
| 1544 | input Absyn.Path inPath1; | ||
| 1545 | input Absyn.Path inPath2; | ||
| 1546 | output Option<Absyn.Path> outPath; | ||
| 1547 | protected | ||
| 1548 | Absyn.Path path1 = makeNotFullyQualified(inPath1), path2 = makeNotFullyQualified(inPath2); | ||
| 1549 | algorithm | ||
| 1550 |
4/4✓ Branch 2 taken 4 times.
✓ Branch 3 taken 26 times.
✓ Branch 7 taken 1 time.
✓ Branch 8 taken 3 times.
|
30 | while pathFirstIdent(path1) == pathFirstIdent(path2) loop |
| 1551 |
1/2✗ Branch 1 not taken.
✓ Branch 2 taken 1 time.
|
1 | if pathIsIdent(path1) then |
| 1552 | // The whole first path is a prefix of the second. | ||
| 1553 | outPath := NONE(); | ||
| 1554 | ✗ | return; | |
| 1555 | end if; | ||
| 1556 | |||
| 1557 | 1 | path1 := pathRest(path1); | |
| 1558 | |||
| 1559 |
1/2✓ Branch 1 taken 1 time.
✗ Branch 2 not taken.
|
1 | if pathIsIdent(path2) then |
| 1560 | // The whole second path is a prefix of the first. | ||
| 1561 | break; | ||
| 1562 | end if; | ||
| 1563 | |||
| 1564 | 1 | path2 := pathRest(path2); | |
| 1565 | end while; | ||
| 1566 | |||
| 1567 | outPath := SOME(path1); | ||
| 1568 | end pathStripSamePrefix; | ||
| 1569 | |||
| 1570 | public function pathPrefix | ||
| 1571 | "Returns the prefix of a path, i.e. this.is.a.path => this.is.a" | ||
| 1572 | input Absyn.Path path; | ||
| 1573 | output Absyn.Path prefix; | ||
| 1574 | algorithm | ||
| 1575 | prefix := match path | ||
| 1576 | ✗ | case Absyn.FULLYQUALIFIED() then pathPrefix(path.path); | |
| 1577 | 2016 | case Absyn.QUALIFIED(path = Absyn.IDENT()) then Absyn.IDENT(path.name); | |
| 1578 | 4742 | case Absyn.QUALIFIED() then Absyn.QUALIFIED(path.name, pathPrefix(path.path)); | |
| 1579 | end match; | ||
| 1580 | end pathPrefix; | ||
| 1581 | |||
| 1582 | public function prefixPath | ||
| 1583 | "Prefixes a path with an identifier." | ||
| 1584 | input Absyn.Ident prefix; | ||
| 1585 | input Absyn.Path path; | ||
| 1586 | output Absyn.Path outPath; | ||
| 1587 | algorithm | ||
| 1588 | 35 | outPath := Absyn.QUALIFIED(prefix, path); | |
| 1589 | end prefixPath; | ||
| 1590 | |||
| 1591 | public function suffixPath | ||
| 1592 | "Adds a suffix to a path. Ex: | ||
| 1593 | suffixPath(a.b.c, 'd') => a.b.c.d" | ||
| 1594 | input Absyn.Path inPath; | ||
| 1595 | input Absyn.Ident inSuffix; | ||
| 1596 | output Absyn.Path outPath; | ||
| 1597 | algorithm | ||
| 1598 | outPath := match inPath | ||
| 1599 | local | ||
| 1600 | Absyn.Ident name; | ||
| 1601 | Absyn.Path path; | ||
| 1602 | |||
| 1603 | case Absyn.IDENT(name) | ||
| 1604 | 576042 | then Absyn.QUALIFIED(name, Absyn.IDENT(inSuffix)); | |
| 1605 | |||
| 1606 | case Absyn.QUALIFIED(name, path) | ||
| 1607 | algorithm | ||
| 1608 | 628455 | path := suffixPath(path, inSuffix); | |
| 1609 | 628455 | then | |
| 1610 | Absyn.QUALIFIED(name, path); | ||
| 1611 | |||
| 1612 | case Absyn.FULLYQUALIFIED(path) | ||
| 1613 | algorithm | ||
| 1614 | 534497 | path := suffixPath(path, inSuffix); | |
| 1615 | 534497 | then | |
| 1616 | Absyn.FULLYQUALIFIED(path); | ||
| 1617 | |||
| 1618 | end match; | ||
| 1619 | end suffixPath; | ||
| 1620 | |||
| 1621 | public function pathSuffixOf "returns true if suffix_path is a suffix of path" | ||
| 1622 | input Absyn.Path suffix_path; | ||
| 1623 | input Absyn.Path path; | ||
| 1624 | output Boolean res; | ||
| 1625 | algorithm | ||
| 1626 | res := match path | ||
| 1627 | local Absyn.Path p; | ||
| 1628 | case _ guard pathEqual(suffix_path,path) | ||
| 1629 | then true; | ||
| 1630 | case Absyn.FULLYQUALIFIED(path = p) | ||
| 1631 | 532999 | then pathSuffixOf(suffix_path,p); | |
| 1632 | case Absyn.QUALIFIED(path = p) | ||
| 1633 | 671467 | then pathSuffixOf(suffix_path,p); | |
| 1634 | else false; | ||
| 1635 | end match; | ||
| 1636 | end pathSuffixOf; | ||
| 1637 | |||
| 1638 | public function pathSuffixOfr "returns true if suffix_path is a suffix of path" | ||
| 1639 | input Absyn.Path path; | ||
| 1640 | input Absyn.Path suffix_path; | ||
| 1641 | output Boolean res; | ||
| 1642 | algorithm | ||
| 1643 | 7280 | res := pathSuffixOf(suffix_path, path); | |
| 1644 | end pathSuffixOfr; | ||
| 1645 | |||
| 1646 | public function pathToStringList | ||
| 1647 | input Absyn.Path path; | ||
| 1648 | output list<String> outPaths; | ||
| 1649 | algorithm | ||
| 1650 | 64170 | outPaths := listReverse(pathToStringListReverse(path)); | |
| 1651 | end pathToStringList; | ||
| 1652 | |||
| 1653 | public function pathToStringListReverse | ||
| 1654 | input Absyn.Path path; | ||
| 1655 | input list<String> acc = {}; | ||
| 1656 | output list<String> outPaths; | ||
| 1657 | algorithm | ||
| 1658 | outPaths := match path | ||
| 1659 | 64172 | case Absyn.IDENT() then path.name :: acc; | |
| 1660 | 118882 | case Absyn.QUALIFIED() then pathToStringListReverse(path.path, path.name :: acc); | |
| 1661 | 6730 | case Absyn.FULLYQUALIFIED() then pathToStringListReverse(path.path, acc); | |
| 1662 | end match; | ||
| 1663 | end pathToStringListReverse; | ||
| 1664 | |||
| 1665 | public function addSubscriptsLast | ||
| 1666 | "Function for appending subscripts at end of last ident" | ||
| 1667 | input Absyn.ComponentRef icr; | ||
| 1668 | input list<Absyn.Subscript> i; | ||
| 1669 | output Absyn.ComponentRef ocr; | ||
| 1670 | algorithm | ||
| 1671 | ocr := match icr | ||
| 1672 | local | ||
| 1673 | list<Absyn.Subscript> subs; | ||
| 1674 | String id; | ||
| 1675 | Absyn.ComponentRef cr; | ||
| 1676 | |||
| 1677 | case Absyn.CREF_IDENT(id,subs) | ||
| 1678 | 74694 | then Absyn.CREF_IDENT(id, listAppend(subs, i)); | |
| 1679 | |||
| 1680 | case Absyn.CREF_QUAL(id,subs,cr) | ||
| 1681 | algorithm | ||
| 1682 | 39180 | cr := addSubscriptsLast(cr,i); | |
| 1683 | 39180 | then | |
| 1684 | Absyn.CREF_QUAL(id,subs,cr); | ||
| 1685 | case Absyn.CREF_FULLYQUALIFIED(cr) | ||
| 1686 | algorithm | ||
| 1687 | ✗ | cr := addSubscriptsLast(cr,i); | |
| 1688 | ✗ | then | |
| 1689 | crefMakeFullyQualified(cr); | ||
| 1690 | end match; | ||
| 1691 | end addSubscriptsLast; | ||
| 1692 | |||
| 1693 | public function crefReplaceFirst | ||
| 1694 | "Replaces the first part of a cref with another cref." | ||
| 1695 | input Absyn.ComponentRef cref; | ||
| 1696 | input Absyn.ComponentRef replacement; | ||
| 1697 | output Absyn.ComponentRef outCref; | ||
| 1698 | algorithm | ||
| 1699 | outCref := match cref | ||
| 1700 | case Absyn.ComponentRef.CREF_IDENT() then replacement; | ||
| 1701 | case Absyn.ComponentRef.CREF_QUAL() | ||
| 1702 | 6 | then joinCrefs(replacement, crefStripFirst(cref)); | |
| 1703 | case Absyn.ComponentRef.CREF_FULLYQUALIFIED() | ||
| 1704 | ✗ | then Absyn.ComponentRef.CREF_FULLYQUALIFIED(crefReplaceFirst(cref.componentRef, replacement)); | |
| 1705 | end match; | ||
| 1706 | end crefReplaceFirst; | ||
| 1707 | |||
| 1708 | public function crefReplaceFirstIdent " | ||
| 1709 | Replaces the first part of a cref with a replacement path: | ||
| 1710 | (a[4].b.c[3], d.e) => d.e[4].b.c[3] | ||
| 1711 | (a[3], b.c.d) => b.c.d[3] | ||
| 1712 | " | ||
| 1713 | input Absyn.ComponentRef icref; | ||
| 1714 | input Absyn.Path replPath; | ||
| 1715 | output Absyn.ComponentRef outCref; | ||
| 1716 | algorithm | ||
| 1717 | outCref := match icref | ||
| 1718 | local | ||
| 1719 | list<Absyn.Subscript> subs; | ||
| 1720 | Absyn.ComponentRef cr,cref; | ||
| 1721 | case Absyn.CREF_FULLYQUALIFIED(componentRef = cr) | ||
| 1722 | algorithm | ||
| 1723 | ✗ | cr := crefReplaceFirstIdent(cr,replPath); | |
| 1724 | ✗ | then crefMakeFullyQualified(cr); | |
| 1725 | case Absyn.CREF_QUAL(componentRef = cr, subscripts = subs) | ||
| 1726 | algorithm | ||
| 1727 | 45310 | cref := pathToCref(replPath); | |
| 1728 | 45310 | cref := addSubscriptsLast(cref,subs); | |
| 1729 | 45310 | then joinCrefs(cref,cr); | |
| 1730 | case Absyn.CREF_IDENT(subscripts = subs) | ||
| 1731 | algorithm | ||
| 1732 | 29384 | cref := pathToCref(replPath); | |
| 1733 | 29384 | cref := addSubscriptsLast(cref,subs); | |
| 1734 | then cref; | ||
| 1735 | end match; | ||
| 1736 | end crefReplaceFirstIdent; | ||
| 1737 | |||
| 1738 | public function pathPrefixOf | ||
| 1739 | "Returns true if prefixPath is a prefix of path, false otherwise." | ||
| 1740 | input Absyn.Path prefixPath; | ||
| 1741 | input Absyn.Path path; | ||
| 1742 | output Boolean isPrefix; | ||
| 1743 | algorithm | ||
| 1744 | isPrefix := match(prefixPath, path) | ||
| 1745 | local | ||
| 1746 | Absyn.Path p, p2; | ||
| 1747 | String id, id2; | ||
| 1748 | 3948 | case (Absyn.FULLYQUALIFIED(p), p2) then pathPrefixOf(p, p2); | |
| 1749 | 659 | case (p, Absyn.FULLYQUALIFIED(p2)) then pathPrefixOf(p, p2); | |
| 1750 |
4/4✓ Branch 0 taken 655 times.
✓ Branch 1 taken 3620 times.
✓ Branch 3 taken 131 times.
✓ Branch 4 taken 524 times.
|
4275 | case (Absyn.IDENT(id), Absyn.IDENT(id2)) then stringEq(id, id2); |
| 1751 |
4/4✓ Branch 0 taken 1339 times.
✓ Branch 1 taken 17148 times.
✓ Branch 3 taken 531 times.
✓ Branch 4 taken 808 times.
|
18487 | case (Absyn.IDENT(id), Absyn.QUALIFIED(name = id2)) then stringEq(id, id2); |
| 1752 | case (Absyn.QUALIFIED(id, p), Absyn.QUALIFIED(id2, p2)) | ||
| 1753 |
6/6✓ Branch 0 taken 78224 times.
✓ Branch 1 taken 33978 times.
✓ Branch 3 taken 22510 times.
✓ Branch 4 taken 55714 times.
✓ Branch 6 taken 21320 times.
✓ Branch 7 taken 1190 times.
|
112202 | then stringEq(id, id2) and pathPrefixOf(p, p2); |
| 1754 | else false; | ||
| 1755 | end match; | ||
| 1756 | end pathPrefixOf; | ||
| 1757 | |||
| 1758 | public function removePrefix "removes the prefix_path from path, and returns the rest of path" | ||
| 1759 | input Absyn.Path prefix_path; | ||
| 1760 | input Absyn.Path path; | ||
| 1761 | output Absyn.Path newPath; | ||
| 1762 | algorithm | ||
| 1763 | newPath := match(prefix_path,path) | ||
| 1764 | local Absyn.Path p,p2; Absyn.Ident id1,id2; | ||
| 1765 | // fullyqual path | ||
| 1766 | 616559 | case (p,Absyn.FULLYQUALIFIED(p2)) then removePrefix(p,p2); | |
| 1767 | // qual | ||
| 1768 | case (Absyn.QUALIFIED(name=id1,path=p),Absyn.QUALIFIED(name=id2,path=p2)) | ||
| 1769 | algorithm | ||
| 1770 |
4/4✓ Branch 0 taken 823006 times.
✓ Branch 1 taken 103286 times.
✓ Branch 3 taken 543581 times.
✓ Branch 4 taken 279425 times.
|
926292 | true := stringEq(id1, id2); |
| 1771 | 543581 | then | |
| 1772 | removePrefix(p,p2); | ||
| 1773 | // ids | ||
| 1774 | case(Absyn.IDENT(id1),Absyn.QUALIFIED(name=id2,path=p2)) | ||
| 1775 | algorithm | ||
| 1776 |
4/4✓ Branch 0 taken 178014 times.
✓ Branch 1 taken 71398 times.
✓ Branch 3 taken 86335 times.
✓ Branch 4 taken 91679 times.
|
249412 | true := stringEq(id1, id2); |
| 1777 | then p2; | ||
| 1778 | end match; | ||
| 1779 | end removePrefix; | ||
| 1780 | |||
| 1781 | public function removePrefixOpt | ||
| 1782 | "Removes prefixPath from path and returns the rest of the path, or returns | ||
| 1783 | NONE() if prefixPath isn't a prefix of path." | ||
| 1784 | input Absyn.Path prefixPath; | ||
| 1785 | input Absyn.Path path; | ||
| 1786 | output Option<Absyn.Path> outPath; | ||
| 1787 | algorithm | ||
| 1788 | outPath := match (prefixPath, path) | ||
| 1789 | ✗ | case (_, Absyn.FULLYQUALIFIED()) then removePrefixOpt(prefixPath, path.path); | |
| 1790 | |||
| 1791 | case (Absyn.QUALIFIED(), Absyn.QUALIFIED()) | ||
| 1792 | guard prefixPath.name == path.name | ||
| 1793 | 75 | then removePrefixOpt(prefixPath.path, path.path); | |
| 1794 | |||
| 1795 | case (Absyn.IDENT(), Absyn.QUALIFIED()) | ||
| 1796 | guard prefixPath.name == path.name | ||
| 1797 | 3 | then SOME(path.path); | |
| 1798 | |||
| 1799 | else NONE(); | ||
| 1800 | end match; | ||
| 1801 | end removePrefixOpt; | ||
| 1802 | |||
| 1803 | public function removePartialPrefix | ||
| 1804 | "Tries to remove a given prefix from a path with removePrefix. If it fails it | ||
| 1805 | removes the first identifier in the prefix and tries again, until it either | ||
| 1806 | succeeds or reaches the end of the prefix. Ex: | ||
| 1807 | removePartialPrefix(A.B.C, B.C.D.E) => D.E | ||
| 1808 | " | ||
| 1809 | input Absyn.Path inPrefix; | ||
| 1810 | input Absyn.Path inPath; | ||
| 1811 | output Absyn.Path outPath; | ||
| 1812 | algorithm | ||
| 1813 | outPath := matchcontinue inPrefix | ||
| 1814 | 37499 | case _ then removePrefix(inPrefix, inPath); | |
| 1815 | ✗ | case Absyn.QUALIFIED() then removePrefix(inPrefix.path, inPath); | |
| 1816 | ✗ | case Absyn.FULLYQUALIFIED() then removePartialPrefix(inPrefix.path, inPath); | |
| 1817 | else inPath; | ||
| 1818 | end matchcontinue; | ||
| 1819 | end removePartialPrefix; | ||
| 1820 | |||
| 1821 | public function getCrefsFromSubs | ||
| 1822 | "Author BZ 2009-08 | ||
| 1823 | Function for getting ComponentRefs out from Subscripts" | ||
| 1824 | input list<Absyn.Subscript> isubs; | ||
| 1825 | input Boolean includeSubs "include crefs from array subscripts"; | ||
| 1826 | input Boolean includeFunctions "note that if you say includeSubs = false then you won't get the functions from array subscripts"; | ||
| 1827 | output list<Absyn.ComponentRef> crefs; | ||
| 1828 | algorithm | ||
| 1829 | crefs := match isubs | ||
| 1830 | local | ||
| 1831 | list<Absyn.ComponentRef> crefs1; | ||
| 1832 | Absyn.Exp exp; | ||
| 1833 | list<Absyn.Subscript> subs; | ||
| 1834 | |||
| 1835 | case {} then {}; | ||
| 1836 | |||
| 1837 | 597 | case Absyn.NOSUB()::subs then getCrefsFromSubs(subs,includeSubs,includeFunctions); | |
| 1838 | |||
| 1839 | case Absyn.SUBSCRIPT(exp)::subs | ||
| 1840 | algorithm | ||
| 1841 | 4256 | crefs1 := getCrefsFromSubs(subs,includeSubs,includeFunctions); | |
| 1842 | 4256 | crefs := getCrefFromExp(exp,includeSubs,includeFunctions); | |
| 1843 | 4256 | then | |
| 1844 | listAppend(crefs,crefs1); | ||
| 1845 | end match; | ||
| 1846 | end getCrefsFromSubs; | ||
| 1847 | |||
| 1848 | public function getCrefFromExp | ||
| 1849 | "Returns a flattened list of the | ||
| 1850 | component references in an expression" | ||
| 1851 | input Absyn.Exp inExp; | ||
| 1852 | input Boolean includeSubs "include crefs from array subscripts"; | ||
| 1853 | input Boolean includeFunctions "note that if you say includeSubs = false then you won't get the functions from array subscripts"; | ||
| 1854 | output list<Absyn.ComponentRef> outComponentRefLst; | ||
| 1855 | algorithm | ||
| 1856 | outComponentRefLst := match inExp | ||
| 1857 | local | ||
| 1858 | Absyn.ComponentRef cr; | ||
| 1859 | list<Absyn.ComponentRef> l1,l2,res; | ||
| 1860 | Absyn.ComponentCondition e1,e2,e3; | ||
| 1861 | Absyn.FunctionArgs farg; | ||
| 1862 | list<Absyn.ComponentCondition> expl; | ||
| 1863 | list<list<Absyn.ComponentCondition>> expll; | ||
| 1864 | list<Absyn.Subscript> subs; | ||
| 1865 | list<list<Absyn.ComponentRef>> lstres1; | ||
| 1866 | list<list<Absyn.ComponentRef>> crefll; | ||
| 1867 | |||
| 1868 | case Absyn.INTEGER() then {}; | ||
| 1869 | case Absyn.REAL() then {}; | ||
| 1870 | case Absyn.STRING() then {}; | ||
| 1871 | case Absyn.BOOL() then {}; | ||
| 1872 | case Absyn.CREF(componentRef = Absyn.ALLWILD()) then {}; | ||
| 1873 | case Absyn.CREF(componentRef = Absyn.WILD()) then {}; | ||
| 1874 | case Absyn.CREF(componentRef = cr) guard not includeSubs then {cr}; | ||
| 1875 | |||
| 1876 | case Absyn.CREF(componentRef = (cr)) | ||
| 1877 | algorithm | ||
| 1878 | 74849 | subs := getSubsFromCref(cr,includeSubs,includeFunctions); | |
| 1879 | 74849 | l1 := getCrefsFromSubs(subs,includeSubs,includeFunctions); | |
| 1880 | then cr::l1; | ||
| 1881 | |||
| 1882 | case Absyn.BINARY(exp1 = e1,exp2 = e2) | ||
| 1883 | algorithm | ||
| 1884 | 16433 | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1885 | 16433 | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1886 | 16433 | res := listAppend(l1, l2); | |
| 1887 | then | ||
| 1888 | res; | ||
| 1889 | |||
| 1890 | case Absyn.UNARY(exp = e1) | ||
| 1891 | algorithm | ||
| 1892 | 66961 | res := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1893 | then | ||
| 1894 | res; | ||
| 1895 | |||
| 1896 | case Absyn.LBINARY(exp1 = e1,exp2 = e2) | ||
| 1897 | algorithm | ||
| 1898 | 1117 | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1899 | 1117 | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1900 | 1117 | res := listAppend(l1, l2); | |
| 1901 | then | ||
| 1902 | res; | ||
| 1903 | |||
| 1904 | case Absyn.LUNARY(exp = e1) | ||
| 1905 | algorithm | ||
| 1906 | 101 | res := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1907 | then | ||
| 1908 | res; | ||
| 1909 | |||
| 1910 | case Absyn.RELATION(exp1 = e1,exp2 = e2) | ||
| 1911 | algorithm | ||
| 1912 | 1168 | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1913 | 1168 | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1914 | 1168 | res := listAppend(l1, l2); | |
| 1915 | then | ||
| 1916 | res; | ||
| 1917 | |||
| 1918 | // TODO: Handle else if-branches. | ||
| 1919 | case Absyn.IFEXP(ifExp = e1,trueBranch = e2,elseBranch = e3) | ||
| 1920 | 13820 | then List.flatten({ | |
| 1921 | getCrefFromExp(e1, includeSubs, includeFunctions), | ||
| 1922 | getCrefFromExp(e2, includeSubs, includeFunctions), | ||
| 1923 | getCrefFromExp(e3, includeSubs, includeFunctions)}); | ||
| 1924 | |||
| 1925 | case Absyn.CALL(function_ = cr, functionArgs = farg) | ||
| 1926 | algorithm | ||
| 1927 | 32342 | res := getCrefFromFarg(farg,includeSubs,includeFunctions); | |
| 1928 |
1/2✓ Branch 0 taken 32342 times.
✗ Branch 1 not taken.
|
32342 | res := if includeFunctions then cr::res else res; |
| 1929 | then | ||
| 1930 | res; | ||
| 1931 | case Absyn.PARTEVALFUNCTION(function_ = cr, functionArgs = farg) | ||
| 1932 | algorithm | ||
| 1933 | 1 | res := getCrefFromFarg(farg,includeSubs,includeFunctions); | |
| 1934 |
1/2✓ Branch 0 taken 1 time.
✗ Branch 1 not taken.
|
1 | res := if includeFunctions then cr::res else res; |
| 1935 | then | ||
| 1936 | res; | ||
| 1937 | case Absyn.ARRAY(arrayExp = expl) | ||
| 1938 | algorithm | ||
| 1939 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 49126 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 49126 times.
|
49126 | lstres1 := List.map2(expl, getCrefFromExp, includeSubs, includeFunctions); |
| 1940 | 49126 | res := List.flatten(lstres1); | |
| 1941 | then | ||
| 1942 | res; | ||
| 1943 | case Absyn.MATRIX(matrix = expll) | ||
| 1944 | algorithm | ||
| 1945 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 489 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 489 times.
|
489 | res := List.flatten(List.flatten(List.map2List(expll, getCrefFromExp, includeSubs, includeFunctions))); |
| 1946 | then | ||
| 1947 | res; | ||
| 1948 | case Absyn.RANGE(start = e1,step = SOME(e3),stop = e2) | ||
| 1949 | algorithm | ||
| 1950 | 4 | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1951 | 4 | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1952 | 4 | l2 := listAppend(l1, l2); | |
| 1953 | 4 | l1 := getCrefFromExp(e3,includeSubs,includeFunctions); | |
| 1954 | 4 | res := listAppend(l1, l2); | |
| 1955 | then | ||
| 1956 | res; | ||
| 1957 | case Absyn.RANGE(start = e1,step = NONE(),stop = e2) | ||
| 1958 | algorithm | ||
| 1959 | 413 | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1960 | 413 | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1961 | 413 | res := listAppend(l1, l2); | |
| 1962 | then | ||
| 1963 | res; | ||
| 1964 | |||
| 1965 | case Absyn.END() then {}; | ||
| 1966 | |||
| 1967 | case Absyn.TUPLE(expressions = expl) | ||
| 1968 | algorithm | ||
| 1969 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 3255 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 3255 times.
|
3255 | crefll := List.map2(expl,getCrefFromExp,includeSubs,includeFunctions); |
| 1970 | 3255 | res := List.flatten(crefll); | |
| 1971 | then | ||
| 1972 | res; | ||
| 1973 | |||
| 1974 | case Absyn.CODE() then {}; | ||
| 1975 | |||
| 1976 | ✗ | case Absyn.AS(exp = e1) then getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1977 | |||
| 1978 | case Absyn.CONS(e1,e2) | ||
| 1979 | algorithm | ||
| 1980 | ✗ | l1 := getCrefFromExp(e1,includeSubs,includeFunctions); | |
| 1981 | ✗ | l2 := getCrefFromExp(e2,includeSubs,includeFunctions); | |
| 1982 | ✗ | res := listAppend(l1, l2); | |
| 1983 | then | ||
| 1984 | res; | ||
| 1985 | |||
| 1986 | case Absyn.LIST(expl) | ||
| 1987 | algorithm | ||
| 1988 | ✗ | crefll := List.map2(expl,getCrefFromExp,includeSubs,includeFunctions); | |
| 1989 | ✗ | res := List.flatten(crefll); | |
| 1990 | then | ||
| 1991 | res; | ||
| 1992 | |||
| 1993 | ✗ | case Absyn.MATCHEXP() then fail(); | |
| 1994 | |||
| 1995 | case Absyn.DOT() | ||
| 1996 | // inExp.index is only allowed to contain names to index the function call; not crefs that are evaluated in any way | ||
| 1997 | 4 | then getCrefFromExp(inExp.exp,includeSubs,includeFunctions); | |
| 1998 | |||
| 1999 | case Absyn.EXPRESSIONCOMMENT() | ||
| 2000 | 4 | then getCrefFromExp(inExp.exp,includeSubs,includeFunctions); | |
| 2001 | |||
| 2002 | case Absyn.SUBSCRIPTED_EXP() | ||
| 2003 | algorithm | ||
| 2004 | ✗ | l1 := getCrefFromExp(inExp.exp, includeSubs, includeFunctions); | |
| 2005 | |||
| 2006 | ✗ | if includeSubs then | |
| 2007 | ✗ | l2 := getCrefsFromSubs(inExp.subscripts, includeSubs, includeFunctions); | |
| 2008 | ✗ | l1 := listAppend(l2, l1); | |
| 2009 | end if; | ||
| 2010 | then | ||
| 2011 | l1; | ||
| 2012 | |||
| 2013 | case Absyn.BREAK() then {}; | ||
| 2014 | case Absyn.UNITFUL_LITERAL() then {}; | ||
| 2015 | |||
| 2016 | else | ||
| 2017 | algorithm | ||
| 2018 | ✗ | Error.addInternalError(getInstanceName() + " failed " + Dump.printExpStr(inExp), sourceInfo()); | |
| 2019 | ✗ | then fail(); | |
| 2020 | end match; | ||
| 2021 | end getCrefFromExp; | ||
| 2022 | |||
| 2023 | public function getCrefFromFarg "Returns the flattened list of all component references | ||
| 2024 | present in a list of function arguments." | ||
| 2025 | input Absyn.FunctionArgs inFunctionArgs; | ||
| 2026 | input Boolean includeSubs "include crefs from array subscripts"; | ||
| 2027 | input Boolean includeFunctions "note that if you say includeSubs = false then you won't get the functions from array subscripts"; | ||
| 2028 | output list<Absyn.ComponentRef> outComponentRefLst; | ||
| 2029 | algorithm | ||
| 2030 | outComponentRefLst := match inFunctionArgs | ||
| 2031 | local | ||
| 2032 | list<list<Absyn.ComponentRef>> l1,l2; | ||
| 2033 | list<Absyn.ComponentRef> fl1,fl2,fl3,res; | ||
| 2034 | list<Absyn.ComponentCondition> expl; | ||
| 2035 | list<Absyn.NamedArg> nargl; | ||
| 2036 | Absyn.ForIterators iterators; | ||
| 2037 | Absyn.Exp exp; | ||
| 2038 | |||
| 2039 | case Absyn.FUNCTIONARGS(args = expl,argNames = nargl) | ||
| 2040 | algorithm | ||
| 2041 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 32106 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 32106 times.
|
32106 | l1 := List.map2(expl, getCrefFromExp, includeSubs, includeFunctions); |
| 2042 | 32106 | fl1 := List.flatten(l1); | |
| 2043 | 32106 | l2 := List.map2(nargl, getCrefFromNarg, includeSubs, includeFunctions); | |
| 2044 | 32106 | fl2 := List.flatten(l2); | |
| 2045 | 32106 | res := listAppend(fl1, fl2); | |
| 2046 | then | ||
| 2047 | res; | ||
| 2048 | |||
| 2049 | case Absyn.FOR_ITER_FARG(exp,_,iterators) | ||
| 2050 | algorithm | ||
| 2051 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 237 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 237 times.
|
237 | l1 := List.map2Option(List.map(iterators,iteratorRange),getCrefFromExp,includeSubs,includeFunctions); |
| 2052 | 237 | l2 := List.map2Option(List.map(iterators,iteratorGuard),getCrefFromExp,includeSubs,includeFunctions); | |
| 2053 | 237 | fl1 := List.flatten(l1); | |
| 2054 | 237 | fl2 := List.flatten(l2); | |
| 2055 | 237 | fl3 := getCrefFromExp(exp,includeSubs,includeFunctions); | |
| 2056 | 237 | res := listAppend(fl1,listAppend(fl2, fl3)); | |
| 2057 | then | ||
| 2058 | res; | ||
| 2059 | |||
| 2060 | end match; | ||
| 2061 | end getCrefFromFarg; | ||
| 2062 | |||
| 2063 | public function iteratorName | ||
| 2064 | input Absyn.ForIterator iterator; | ||
| 2065 | output String name; | ||
| 2066 | algorithm | ||
| 2067 | ✗ | Absyn.ITERATOR(name=name) := iterator; | |
| 2068 | end iteratorName; | ||
| 2069 | |||
| 2070 | public function iteratorRange | ||
| 2071 | input Absyn.ForIterator iterator; | ||
| 2072 | output Option<Absyn.Exp> range; | ||
| 2073 | algorithm | ||
| 2074 | 242 | Absyn.ITERATOR(range=range) := iterator; | |
| 2075 | end iteratorRange; | ||
| 2076 | |||
| 2077 | public function iteratorGuard | ||
| 2078 | input Absyn.ForIterator iterator; | ||
| 2079 | output Option<Absyn.Exp> guardExp; | ||
| 2080 | algorithm | ||
| 2081 | 242 | Absyn.ITERATOR(guardExp=guardExp) := iterator; | |
| 2082 | end iteratorGuard; | ||
| 2083 | |||
| 2084 | // stefan | ||
| 2085 | public function getNamedFuncArgNamesAndValues | ||
| 2086 | "returns the names from a list of NamedArgs as a string list" | ||
| 2087 | input list<Absyn.NamedArg> namedArgs; | ||
| 2088 | output list<String> names = {}; | ||
| 2089 | output list<Absyn.Exp> values = {}; | ||
| 2090 | algorithm | ||
| 2091 |
2/2✓ Branch 1 taken 4 times.
✓ Branch 2 taken 2 times.
|
6 | for arg in listReverse(namedArgs) loop |
| 2092 | 4 | names := arg.argName :: names; | |
| 2093 | 4 | values := arg.argValue :: values; | |
| 2094 | end for; | ||
| 2095 | end getNamedFuncArgNamesAndValues; | ||
| 2096 | |||
| 2097 | protected function getCrefFromNarg "Returns the flattened list of all component references | ||
| 2098 | present in a list of named function arguments." | ||
| 2099 | input Absyn.NamedArg inNamedArg; | ||
| 2100 | input Boolean includeSubs "include crefs from array subscripts"; | ||
| 2101 | input Boolean includeFunctions "note that if you say includeSubs = false then you won't get the functions from array subscripts"; | ||
| 2102 | output list<Absyn.ComponentRef> outComponentRefLst; | ||
| 2103 | algorithm | ||
| 2104 | 213 | outComponentRefLst := getCrefFromExp(inNamedArg.argValue, includeSubs, includeFunctions); | |
| 2105 | end getCrefFromNarg; | ||
| 2106 | |||
| 2107 | public function joinPaths "This function joins two paths" | ||
| 2108 | input Absyn.Path inPath1; | ||
| 2109 | input Absyn.Path inPath2; | ||
| 2110 | output Absyn.Path outPath; | ||
| 2111 | algorithm | ||
| 2112 | outPath := match (inPath1,inPath2) | ||
| 2113 | local | ||
| 2114 | Absyn.Ident str; | ||
| 2115 | Absyn.Path p2,p_1,p; | ||
| 2116 | 7658179 | case (Absyn.IDENT(name = str),p2) then Absyn.QUALIFIED(str,p2); | |
| 2117 | case (Absyn.QUALIFIED(name = str,path = p),p2) | ||
| 2118 | algorithm | ||
| 2119 | 6184959 | p_1 := joinPaths(p, p2); | |
| 2120 | 6184959 | then | |
| 2121 | Absyn.QUALIFIED(str,p_1); | ||
| 2122 | 62632 | case(Absyn.FULLYQUALIFIED(p),p2) then joinPaths(p,p2); | |
| 2123 | ✗ | case(p,Absyn.FULLYQUALIFIED(p2)) then joinPaths(p,p2); | |
| 2124 | end match; | ||
| 2125 | end joinPaths; | ||
| 2126 | |||
| 2127 | public function joinPathsOpt "This function joins two paths when the first one might be NONE" | ||
| 2128 | input Option<Absyn.Path> inPath1; | ||
| 2129 | input Absyn.Path inPath2; | ||
| 2130 | output Absyn.Path outPath; | ||
| 2131 | algorithm | ||
| 2132 | outPath := match inPath1 | ||
| 2133 | local Absyn.Path p; | ||
| 2134 | case NONE() then inPath2; | ||
| 2135 | ✗ | case SOME(p) then joinPaths(p, inPath2); | |
| 2136 | end match; | ||
| 2137 | end joinPathsOpt; | ||
| 2138 | |||
| 2139 | public function joinPathsOptSuffix | ||
| 2140 | input Absyn.Path inPath1; | ||
| 2141 | input Option<Absyn.Path> inPath2; | ||
| 2142 | output Absyn.Path outPath; | ||
| 2143 | algorithm | ||
| 2144 | outPath := match inPath2 | ||
| 2145 | local | ||
| 2146 | Absyn.Path p; | ||
| 2147 | |||
| 2148 | 1276038 | case SOME(p) then joinPaths(inPath1, p); | |
| 2149 | else inPath1; | ||
| 2150 | end match; | ||
| 2151 | end joinPathsOptSuffix; | ||
| 2152 | |||
| 2153 | public function stripLast "Returns the path given as argument to | ||
| 2154 | the function minus the last ident." | ||
| 2155 | input Absyn.Path inPath; | ||
| 2156 | output Absyn.Path outPath; | ||
| 2157 | algorithm | ||
| 2158 | outPath := match inPath | ||
| 2159 | local | ||
| 2160 | Absyn.Ident str; | ||
| 2161 | Absyn.Path p; | ||
| 2162 | |||
| 2163 | case Absyn.QUALIFIED(name = str, path = Absyn.IDENT()) | ||
| 2164 | 209509 | then Absyn.IDENT(str); | |
| 2165 | |||
| 2166 | case Absyn.QUALIFIED(name = str, path = p) | ||
| 2167 | algorithm | ||
| 2168 | 187872 | p := stripLast(p); | |
| 2169 | 187872 | then | |
| 2170 | Absyn.QUALIFIED(str, p); | ||
| 2171 | |||
| 2172 | case Absyn.FULLYQUALIFIED(p) | ||
| 2173 | algorithm | ||
| 2174 | 56755 | p := stripLast(p); | |
| 2175 | 56530 | then | |
| 2176 | Absyn.FULLYQUALIFIED(p); | ||
| 2177 | |||
| 2178 | end match; | ||
| 2179 | end stripLast; | ||
| 2180 | |||
| 2181 | public function crefStripLast "Returns the path given as argument to | ||
| 2182 | the function minus the last ident." | ||
| 2183 | input Absyn.ComponentRef inCref; | ||
| 2184 | output Absyn.ComponentRef outCref; | ||
| 2185 | algorithm | ||
| 2186 | outCref := match inCref | ||
| 2187 | local | ||
| 2188 | Absyn.Ident str; | ||
| 2189 | Absyn.ComponentRef c_1, c; | ||
| 2190 | list<Absyn.Subscript> subs; | ||
| 2191 | |||
| 2192 | ✗ | case Absyn.CREF_IDENT() then fail(); | |
| 2193 | 3384 | case Absyn.CREF_QUAL(name = str,subscripts = subs, componentRef = Absyn.CREF_IDENT()) then Absyn.CREF_IDENT(str,subs); | |
| 2194 | case Absyn.CREF_QUAL(name = str,subscripts = subs,componentRef = c) | ||
| 2195 | algorithm | ||
| 2196 | 2204 | c_1 := crefStripLast(c); | |
| 2197 | 2204 | then | |
| 2198 | Absyn.CREF_QUAL(str,subs,c_1); | ||
| 2199 | case Absyn.CREF_FULLYQUALIFIED(componentRef = c) | ||
| 2200 | algorithm | ||
| 2201 | ✗ | c_1 := crefStripLast(c); | |
| 2202 | ✗ | then | |
| 2203 | crefMakeFullyQualified(c_1); | ||
| 2204 | end match; | ||
| 2205 | end crefStripLast; | ||
| 2206 | |||
| 2207 | public function splitQualAndIdentPath " | ||
| 2208 | Author BZ 2008-04 | ||
| 2209 | Function for splitting Absynpath into two parts, | ||
| 2210 | qualified part, and ident part (all_but_last, last); | ||
| 2211 | " | ||
| 2212 | input Absyn.Path inPath; | ||
| 2213 | output Absyn.Path outPath1; | ||
| 2214 | output Absyn.Path outPath2; | ||
| 2215 | algorithm (outPath1,outPath2) := match inPath | ||
| 2216 | local | ||
| 2217 | Absyn.Path qPath,curPath,identPath; | ||
| 2218 | String s1,s2; | ||
| 2219 | |||
| 2220 | case Absyn.QUALIFIED(name = s1, path = Absyn.IDENT(name = s2)) | ||
| 2221 | 9161 | then (Absyn.IDENT(s1), Absyn.IDENT(s2)); | |
| 2222 | |||
| 2223 | case Absyn.QUALIFIED(name = s1, path = qPath) | ||
| 2224 | algorithm | ||
| 2225 | 25118 | (curPath, identPath) := splitQualAndIdentPath(qPath); | |
| 2226 | 25118 | then | |
| 2227 | (Absyn.QUALIFIED(s1, curPath), identPath); | ||
| 2228 | |||
| 2229 | case Absyn.FULLYQUALIFIED(qPath) | ||
| 2230 | algorithm | ||
| 2231 | 8874 | (curPath, identPath) := splitQualAndIdentPath(qPath); | |
| 2232 | then | ||
| 2233 | (curPath, identPath); | ||
| 2234 | end match; | ||
| 2235 | end splitQualAndIdentPath; | ||
| 2236 | |||
| 2237 | public function crefToPath "This function converts a Absyn.ComponentRef to a Absyn.Path, if possible. | ||
| 2238 | If the component reference contains subscripts, it will silently fail." | ||
| 2239 | input Absyn.ComponentRef inComponentRef; | ||
| 2240 | output Absyn.Path outPath; | ||
| 2241 | algorithm | ||
| 2242 | outPath:= | ||
| 2243 | match inComponentRef | ||
| 2244 | local | ||
| 2245 | Absyn.Ident i; | ||
| 2246 | Absyn.Path p; | ||
| 2247 | Absyn.ComponentRef c; | ||
| 2248 | 220400 | case Absyn.CREF_IDENT(name = i,subscripts = {}) then Absyn.IDENT(i); | |
| 2249 | case Absyn.CREF_QUAL(name = i,subscripts = {},componentRef = c) | ||
| 2250 | algorithm | ||
| 2251 | 234710 | p := crefToPath(c); | |
| 2252 | 234512 | then | |
| 2253 | Absyn.QUALIFIED(i,p); | ||
| 2254 | case Absyn.CREF_FULLYQUALIFIED(componentRef = c) | ||
| 2255 | algorithm | ||
| 2256 | 5429 | p := crefToPath(c); | |
| 2257 | 5429 | then | |
| 2258 | Absyn.FULLYQUALIFIED(p); | ||
| 2259 | end match; | ||
| 2260 | end crefToPath; | ||
| 2261 | |||
| 2262 | public function elementSpecToPath "This function converts a Absyn.ElementSpec to a Absyn.Path, if possible. | ||
| 2263 | If the Absyn.ElementSpec is not EXTENDS, it will silently fail." | ||
| 2264 | input Absyn.ElementSpec inElementSpec; | ||
| 2265 | output Absyn.Path outPath; | ||
| 2266 | algorithm | ||
| 2267 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 27 times.
|
27 | Absyn.EXTENDS(path = outPath) := inElementSpec; |
| 2268 | end elementSpecToPath; | ||
| 2269 | |||
| 2270 | public function crefToPathIgnoreSubs | ||
| 2271 | "Converts a Absyn.ComponentRef to a Absyn.Path, ignoring any subscripts." | ||
| 2272 | input Absyn.ComponentRef inComponentRef; | ||
| 2273 | output Absyn.Path outPath; | ||
| 2274 | algorithm | ||
| 2275 | outPath := match inComponentRef | ||
| 2276 | local | ||
| 2277 | Absyn.Ident i; | ||
| 2278 | Absyn.Path p; | ||
| 2279 | Absyn.ComponentRef c; | ||
| 2280 | |||
| 2281 | 250087 | case Absyn.CREF_IDENT(name = i) then Absyn.IDENT(i); | |
| 2282 | |||
| 2283 | case Absyn.CREF_QUAL(name = i, componentRef = c) | ||
| 2284 | algorithm | ||
| 2285 | 79908 | p := crefToPathIgnoreSubs(c); | |
| 2286 | 79908 | then | |
| 2287 | Absyn.QUALIFIED(i, p); | ||
| 2288 | |||
| 2289 | case Absyn.CREF_FULLYQUALIFIED(componentRef = c) | ||
| 2290 | algorithm | ||
| 2291 | 1340 | p := crefToPathIgnoreSubs(c); | |
| 2292 | 1340 | then | |
| 2293 | Absyn.FULLYQUALIFIED(p); | ||
| 2294 | end match; | ||
| 2295 | end crefToPathIgnoreSubs; | ||
| 2296 | |||
| 2297 | public function crefToTypeSpec | ||
| 2298 | "Converts a ComponentRef to a TypeSpec, treating subscripts on the last | ||
| 2299 | identifier as dimensions and failing if any other identifier is subscripted." | ||
| 2300 | input Absyn.ComponentRef cref; | ||
| 2301 | output Absyn.TypeSpec ty; | ||
| 2302 | protected | ||
| 2303 | list<Absyn.Subscript> subs; | ||
| 2304 | Absyn.Path path; | ||
| 2305 | algorithm | ||
| 2306 | ✗ | subs := crefGetLastSubs(cref); | |
| 2307 | ✗ | path := crefToPath(crefStripLastSubs(cref)); | |
| 2308 | ✗ | ty := Absyn.TypeSpec.TPATH(path, if listEmpty(subs) then NONE() else SOME(subs)); | |
| 2309 | end crefToTypeSpec; | ||
| 2310 | |||
| 2311 | public function pathToCref "This function converts a Absyn.Path to a Absyn.ComponentRef." | ||
| 2312 | input Absyn.Path inPath; | ||
| 2313 | output Absyn.ComponentRef outComponentRef; | ||
| 2314 | algorithm | ||
| 2315 | outComponentRef:= | ||
| 2316 | match inPath | ||
| 2317 | local | ||
| 2318 | Absyn.Ident i; | ||
| 2319 | Absyn.ComponentRef c; | ||
| 2320 | Absyn.Path p; | ||
| 2321 | 375615 | case Absyn.IDENT(name = i) then Absyn.CREF_IDENT(i,{}); | |
| 2322 | case Absyn.QUALIFIED(name = i,path = p) | ||
| 2323 | algorithm | ||
| 2324 | 512630 | c := pathToCref(p); | |
| 2325 | 512630 | then | |
| 2326 | Absyn.CREF_QUAL(i,{},c); | ||
| 2327 | case Absyn.FULLYQUALIFIED(p) | ||
| 2328 | algorithm | ||
| 2329 | 29289 | c := pathToCref(p); | |
| 2330 | 29289 | then crefMakeFullyQualified(c); | |
| 2331 | end match; | ||
| 2332 | end pathToCref; | ||
| 2333 | |||
| 2334 | public function pathToCrefWithSubs | ||
| 2335 | "This function converts a Absyn.Path to a Absyn.ComponentRef, and applies the given | ||
| 2336 | subscripts to the last identifier." | ||
| 2337 | input Absyn.Path inPath; | ||
| 2338 | input list<Absyn.Subscript> inSubs; | ||
| 2339 | output Absyn.ComponentRef outComponentRef; | ||
| 2340 | algorithm | ||
| 2341 | outComponentRef := match inPath | ||
| 2342 | local | ||
| 2343 | Absyn.Ident i; | ||
| 2344 | Absyn.ComponentRef c; | ||
| 2345 | Absyn.Path p; | ||
| 2346 | |||
| 2347 | 301050 | case Absyn.IDENT(name = i) then Absyn.CREF_IDENT(i, inSubs); | |
| 2348 | |||
| 2349 | case Absyn.QUALIFIED(name = i, path = p) | ||
| 2350 | algorithm | ||
| 2351 | 9854 | c := pathToCrefWithSubs(p, inSubs); | |
| 2352 | 9854 | then | |
| 2353 | Absyn.CREF_QUAL(i, {}, c); | ||
| 2354 | |||
| 2355 | case Absyn.FULLYQUALIFIED(p) | ||
| 2356 | algorithm | ||
| 2357 | 3180 | c := pathToCrefWithSubs(p, inSubs); | |
| 2358 | 3180 | then | |
| 2359 | crefMakeFullyQualified(c); | ||
| 2360 | end match; | ||
| 2361 | end pathToCrefWithSubs; | ||
| 2362 | |||
| 2363 | public function crefLastIdent | ||
| 2364 | "Returns the last identifier in a component reference." | ||
| 2365 | input Absyn.ComponentRef cref; | ||
| 2366 | output Absyn.Ident outIdent; | ||
| 2367 | algorithm | ||
| 2368 | outIdent := match cref | ||
| 2369 | ✗ | case Absyn.CREF_IDENT() then cref.name; | |
| 2370 | ✗ | case Absyn.CREF_QUAL() then crefLastIdent(cref.componentRef); | |
| 2371 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefLastIdent(cref.componentRef); | |
| 2372 | end match; | ||
| 2373 | end crefLastIdent; | ||
| 2374 | |||
| 2375 | public function crefFirstIdentNoSubs | ||
| 2376 | "Returns the basename of the component reference, but fails if it encounters | ||
| 2377 | any subscripts." | ||
| 2378 | input Absyn.ComponentRef cref; | ||
| 2379 | output Absyn.Ident outIdent; | ||
| 2380 | algorithm | ||
| 2381 | outIdent := match cref | ||
| 2382 | ✗ | case Absyn.CREF_IDENT(subscripts = {}) then cref.name; | |
| 2383 | ✗ | case Absyn.CREF_QUAL(subscripts = {}) then cref.name; | |
| 2384 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefFirstIdentNoSubs(cref.componentRef); | |
| 2385 | end match; | ||
| 2386 | end crefFirstIdentNoSubs; | ||
| 2387 | |||
| 2388 | public function crefIsIdent | ||
| 2389 | "Returns true if the component reference is a simple identifier, otherwise false." | ||
| 2390 | input Absyn.ComponentRef inComponentRef; | ||
| 2391 | output Boolean outIsIdent; | ||
| 2392 | algorithm | ||
| 2393 | outIsIdent := match inComponentRef | ||
| 2394 | case Absyn.CREF_IDENT() then true; | ||
| 2395 | else false; | ||
| 2396 | end match; | ||
| 2397 | end crefIsIdent; | ||
| 2398 | |||
| 2399 | public function crefIsQual | ||
| 2400 | "Returns true if the component reference is a qualified identifier, otherwise false." | ||
| 2401 | input Absyn.ComponentRef inComponentRef; | ||
| 2402 | output Boolean outIsQual; | ||
| 2403 | algorithm | ||
| 2404 | outIsQual := match inComponentRef | ||
| 2405 | case Absyn.CREF_QUAL() then true; | ||
| 2406 | case Absyn.CREF_FULLYQUALIFIED() then true; | ||
| 2407 | else false; | ||
| 2408 | end match; | ||
| 2409 | end crefIsQual; | ||
| 2410 | |||
| 2411 | public function crefFirstSubs | ||
| 2412 | "Returns the subscripts on the first part of an Absyn.ComponentRef." | ||
| 2413 | input Absyn.ComponentRef cref; | ||
| 2414 | output list<Absyn.Subscript> subscripts; | ||
| 2415 | algorithm | ||
| 2416 | subscripts := match cref | ||
| 2417 | 395165 | case Absyn.ComponentRef.CREF_IDENT() then cref.subscripts; | |
| 2418 | 86727 | case Absyn.ComponentRef.CREF_QUAL() then cref.subscripts; | |
| 2419 | ✗ | case Absyn.ComponentRef.CREF_FULLYQUALIFIED() then crefFirstSubs(cref.componentRef); | |
| 2420 | end match; | ||
| 2421 | end crefFirstSubs; | ||
| 2422 | |||
| 2423 | public function crefLastSubs "Return the last subscripts of an Absyn.ComponentRef" | ||
| 2424 | input Absyn.ComponentRef cref; | ||
| 2425 | output list<Absyn.Subscript> subscripts; | ||
| 2426 | algorithm | ||
| 2427 | subscripts := match cref | ||
| 2428 | 760142 | case Absyn.CREF_IDENT() then cref.subscripts; | |
| 2429 | ✗ | case Absyn.CREF_QUAL() then crefLastSubs(cref.componentRef); | |
| 2430 | 2881 | case Absyn.CREF_FULLYQUALIFIED() then crefLastSubs(cref.componentRef); | |
| 2431 | end match; | ||
| 2432 | end crefLastSubs; | ||
| 2433 | |||
| 2434 | public function crefSetFirstSubs | ||
| 2435 | "Sets the subscripts of the first part of an Absyn.ComponentRef." | ||
| 2436 | input output Absyn.ComponentRef cref; | ||
| 2437 | input list<Absyn.Subscript> subscripts; | ||
| 2438 | algorithm | ||
| 2439 | () := match cref | ||
| 2440 | case Absyn.ComponentRef.CREF_IDENT() | ||
| 2441 | algorithm | ||
| 2442 | ✗ | cref.subscripts := subscripts; | |
| 2443 | then | ||
| 2444 | (); | ||
| 2445 | |||
| 2446 | case Absyn.ComponentRef.CREF_QUAL() | ||
| 2447 | algorithm | ||
| 2448 | ✗ | cref.subscripts := subscripts; | |
| 2449 | then | ||
| 2450 | (); | ||
| 2451 | |||
| 2452 | case Absyn.ComponentRef.CREF_FULLYQUALIFIED() | ||
| 2453 | algorithm | ||
| 2454 | ✗ | cref.componentRef := crefSetFirstSubs(cref.componentRef, subscripts); | |
| 2455 | then | ||
| 2456 | (); | ||
| 2457 | end match; | ||
| 2458 | end crefSetFirstSubs; | ||
| 2459 | |||
| 2460 | public function crefSetLastSubs | ||
| 2461 | input output Absyn.ComponentRef cref; | ||
| 2462 | input list<Absyn.Subscript> inSubscripts; | ||
| 2463 | algorithm | ||
| 2464 | () := match cref | ||
| 2465 | case Absyn.CREF_IDENT() | ||
| 2466 | algorithm | ||
| 2467 | 80126 | cref.subscripts := inSubscripts; | |
| 2468 | then | ||
| 2469 | (); | ||
| 2470 | |||
| 2471 | case Absyn.CREF_QUAL() | ||
| 2472 | algorithm | ||
| 2473 | 2074 | cref.componentRef := crefSetLastSubs(cref.componentRef, inSubscripts); | |
| 2474 | then | ||
| 2475 | (); | ||
| 2476 | |||
| 2477 | case Absyn.CREF_FULLYQUALIFIED() | ||
| 2478 | algorithm | ||
| 2479 | 68 | cref.componentRef := crefSetLastSubs(cref.componentRef, inSubscripts); | |
| 2480 | then | ||
| 2481 | (); | ||
| 2482 | |||
| 2483 | end match; | ||
| 2484 | end crefSetLastSubs; | ||
| 2485 | |||
| 2486 | public function crefHasSubscripts "This function finds if a cref has subscripts" | ||
| 2487 | input Absyn.ComponentRef cref; | ||
| 2488 | output Boolean hasSubscripts; | ||
| 2489 | algorithm | ||
| 2490 | hasSubscripts := match cref | ||
| 2491 | 3965 | case Absyn.CREF_IDENT() then not listEmpty(cref.subscripts); | |
| 2492 | 3981 | case Absyn.CREF_QUAL(subscripts = {}) then crefHasSubscripts(cref.componentRef); | |
| 2493 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefHasSubscripts(cref.componentRef); | |
| 2494 | case Absyn.WILD() then false; | ||
| 2495 | case Absyn.ALLWILD() then false; | ||
| 2496 | else true; | ||
| 2497 | end match; | ||
| 2498 | end crefHasSubscripts; | ||
| 2499 | |||
| 2500 | public function getSubsFromCref " | ||
| 2501 | Author: BZ, 2009-09 | ||
| 2502 | Extract subscripts of crefs." | ||
| 2503 | input Absyn.ComponentRef cr; | ||
| 2504 | input Boolean includeSubs "include crefs from array subscripts"; | ||
| 2505 | input Boolean includeFunctions "note that if you say includeSubs = false then you won't get the functions from array subscripts"; | ||
| 2506 | output list<Absyn.Subscript> subscripts; | ||
| 2507 | algorithm | ||
| 2508 | subscripts := match cr | ||
| 2509 | local | ||
| 2510 | list<Absyn.Subscript> subs2; | ||
| 2511 | Absyn.ComponentRef child; | ||
| 2512 | |||
| 2513 | case Absyn.CREF_IDENT(_,subs2) then subs2; | ||
| 2514 | |||
| 2515 | case Absyn.CREF_QUAL(_,subs2,child) | ||
| 2516 | algorithm | ||
| 2517 | 43730 | subscripts := getSubsFromCref(child, includeSubs, includeFunctions); | |
| 2518 | 43730 | subscripts := List.unionOnTrue(subscripts,subs2, subscriptEqual); | |
| 2519 | then | ||
| 2520 | subscripts; | ||
| 2521 | |||
| 2522 | case Absyn.CREF_FULLYQUALIFIED(child) | ||
| 2523 | algorithm | ||
| 2524 | 1010 | subscripts := getSubsFromCref(child, includeSubs, includeFunctions); | |
| 2525 | then | ||
| 2526 | subscripts; | ||
| 2527 | end match; | ||
| 2528 | end getSubsFromCref; | ||
| 2529 | |||
| 2530 | public function getString | ||
| 2531 | input Absyn.Exp exp; | ||
| 2532 | output String str; | ||
| 2533 | algorithm | ||
| 2534 | str := match exp | ||
| 2535 | ✗ | case Absyn.EXPRESSIONCOMMENT() then getString(exp.exp); | |
| 2536 | case Absyn.STRING(str) then str; | ||
| 2537 | end match; | ||
| 2538 | end getString; | ||
| 2539 | |||
| 2540 | public function stripCommentExpressions | ||
| 2541 | "Strips comment expressions from the given expression. If onlyComments is | ||
| 2542 | false it also strips parentheses (represented by tuples)." | ||
| 2543 | input output Absyn.Exp exp; | ||
| 2544 | input Boolean onlyComments = false; | ||
| 2545 | algorithm | ||
| 2546 |
2/2✓ Branch 0 taken 112248 times.
✓ Branch 1 taken 45 times.
|
224541 | (exp,_) := traverseExp(exp, stripCommentExpressionsHelper, onlyComments); |
| 2547 | end stripCommentExpressions; | ||
| 2548 | |||
| 2549 | protected function stripCommentExpressionsHelper | ||
| 2550 | input output Absyn.Exp exp; | ||
| 2551 | input output Boolean onlyComments; | ||
| 2552 | protected | ||
| 2553 | Absyn.Exp e; | ||
| 2554 | algorithm | ||
| 2555 | exp := match exp | ||
| 2556 | case Absyn.TUPLE({e}) guard not onlyComments then e; | ||
| 2557 | 683 | case Absyn.EXPRESSIONCOMMENT() then exp.exp; | |
| 2558 | else exp; | ||
| 2559 | end match; | ||
| 2560 | end stripCommentExpressionsHelper; | ||
| 2561 | |||
| 2562 | public function crefGetLastIdent | ||
| 2563 | "Gets the last ident in a Absyn.ComponentRef" | ||
| 2564 | input Absyn.ComponentRef cref; | ||
| 2565 | output Absyn.Ident ident; | ||
| 2566 | algorithm | ||
| 2567 | ident := match cref | ||
| 2568 | 1692 | case Absyn.CREF_IDENT() then cref.name; | |
| 2569 | 2794 | case Absyn.CREF_QUAL() then crefGetLastIdent(cref.componentRef); | |
| 2570 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefGetLastIdent(cref.componentRef); | |
| 2571 | end match; | ||
| 2572 | end crefGetLastIdent; | ||
| 2573 | |||
| 2574 | public function crefGetLastSubs | ||
| 2575 | "Gets the last subscripts in a Absyn.ComponentRef" | ||
| 2576 | input Absyn.ComponentRef cref; | ||
| 2577 | output list<Absyn.Subscript> subscripts; | ||
| 2578 | algorithm | ||
| 2579 | subscripts := match cref | ||
| 2580 | ✗ | case Absyn.CREF_IDENT() then cref.subscripts; | |
| 2581 | ✗ | case Absyn.CREF_QUAL() then crefGetLastSubs(cref.componentRef); | |
| 2582 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefGetLastSubs(cref.componentRef); | |
| 2583 | end match; | ||
| 2584 | end crefGetLastSubs; | ||
| 2585 | |||
| 2586 | public function crefStripLastSubs "Strips the last subscripts of a Absyn.ComponentRef" | ||
| 2587 | input output Absyn.ComponentRef cref; | ||
| 2588 | algorithm | ||
| 2589 | () := match cref | ||
| 2590 | case Absyn.CREF_IDENT() | ||
| 2591 | algorithm | ||
| 2592 | 760142 | cref.subscripts := {}; | |
| 2593 | then | ||
| 2594 | (); | ||
| 2595 | |||
| 2596 | case Absyn.CREF_QUAL() | ||
| 2597 | algorithm | ||
| 2598 | ✗ | cref.componentRef := crefStripLastSubs(cref.componentRef); | |
| 2599 | then | ||
| 2600 | (); | ||
| 2601 | |||
| 2602 | case Absyn.CREF_FULLYQUALIFIED() | ||
| 2603 | algorithm | ||
| 2604 | 2881 | cref.componentRef := crefStripLastSubs(cref.componentRef); | |
| 2605 | then | ||
| 2606 | (); | ||
| 2607 | end match; | ||
| 2608 | end crefStripLastSubs; | ||
| 2609 | |||
| 2610 | public function joinCrefs "This function joins two ComponentRefs." | ||
| 2611 | input Absyn.ComponentRef inComponentRef1; | ||
| 2612 | input Absyn.ComponentRef inComponentRef2; | ||
| 2613 | output Absyn.ComponentRef outComponentRef; | ||
| 2614 | algorithm | ||
| 2615 | outComponentRef:= | ||
| 2616 | match (inComponentRef1,inComponentRef2) | ||
| 2617 | local | ||
| 2618 | Absyn.Ident id; | ||
| 2619 | list<Absyn.Subscript> sub; | ||
| 2620 | Absyn.ComponentRef cr2,cr_1,cr; | ||
| 2621 | case (Absyn.CREF_IDENT(name = id,subscripts = sub),cr2) | ||
| 2622 | algorithm | ||
| 2623 |
2/4✓ Branch 0 taken 324578 times.
✗ Branch 1 not taken.
✓ Branch 2 taken 324578 times.
✗ Branch 3 not taken.
|
324578 | failure(Absyn.CREF_FULLYQUALIFIED() := cr2); |
| 2624 | 324578 | then Absyn.CREF_QUAL(id,sub,cr2); | |
| 2625 | case (Absyn.CREF_QUAL(name = id,subscripts = sub,componentRef = cr),cr2) | ||
| 2626 | algorithm | ||
| 2627 | 146119 | cr_1 := joinCrefs(cr, cr2); | |
| 2628 | 146119 | then | |
| 2629 | Absyn.CREF_QUAL(id,sub,cr_1); | ||
| 2630 | case (Absyn.CREF_FULLYQUALIFIED(componentRef = cr),cr2) | ||
| 2631 | algorithm | ||
| 2632 | 9135 | cr_1 := joinCrefs(cr, cr2); | |
| 2633 | 9135 | then | |
| 2634 | crefMakeFullyQualified(cr_1); | ||
| 2635 | end match; | ||
| 2636 | end joinCrefs; | ||
| 2637 | |||
| 2638 | public function crefFirstIdent "Returns first ident from a Absyn.ComponentRef" | ||
| 2639 | input Absyn.ComponentRef inCref; | ||
| 2640 | output Absyn.Ident outIdent; | ||
| 2641 | algorithm | ||
| 2642 | outIdent := match inCref | ||
| 2643 | 1325427 | case Absyn.CREF_IDENT() then inCref.name; | |
| 2644 | 492297 | case Absyn.CREF_QUAL() then inCref.name; | |
| 2645 | 9595 | case Absyn.CREF_FULLYQUALIFIED() then crefFirstIdent(inCref.componentRef); | |
| 2646 | end match; | ||
| 2647 | end crefFirstIdent; | ||
| 2648 | |||
| 2649 | public function crefSetFirstIdent | ||
| 2650 | input output Absyn.ComponentRef cref; | ||
| 2651 | input Absyn.Ident ident; | ||
| 2652 | algorithm | ||
| 2653 | () := match cref | ||
| 2654 | case Absyn.CREF_IDENT() | ||
| 2655 | algorithm | ||
| 2656 | 1 | cref.name := ident; | |
| 2657 | then | ||
| 2658 | (); | ||
| 2659 | |||
| 2660 | case Absyn.CREF_QUAL() | ||
| 2661 | algorithm | ||
| 2662 | ✗ | cref.name := ident; | |
| 2663 | then | ||
| 2664 | (); | ||
| 2665 | |||
| 2666 | case Absyn.CREF_FULLYQUALIFIED() | ||
| 2667 | algorithm | ||
| 2668 | ✗ | cref.componentRef := crefSetFirstIdent(cref.componentRef, ident); | |
| 2669 | then | ||
| 2670 | (); | ||
| 2671 | |||
| 2672 | else (); | ||
| 2673 | end match; | ||
| 2674 | end crefSetFirstIdent; | ||
| 2675 | |||
| 2676 | public function crefSecondIdent | ||
| 2677 | input Absyn.ComponentRef cref; | ||
| 2678 | output Absyn.Ident ident; | ||
| 2679 | algorithm | ||
| 2680 | ident := match cref | ||
| 2681 | ✗ | case Absyn.CREF_QUAL() then crefFirstIdent(cref.componentRef); | |
| 2682 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefSecondIdent(cref.componentRef); | |
| 2683 | end match; | ||
| 2684 | end crefSecondIdent; | ||
| 2685 | |||
| 2686 | public function crefFirstCref | ||
| 2687 | "Returns the first part of a cref." | ||
| 2688 | input Absyn.ComponentRef inCref; | ||
| 2689 | output Absyn.ComponentRef outCref; | ||
| 2690 | algorithm | ||
| 2691 | outCref := match inCref | ||
| 2692 | 181310 | case Absyn.CREF_QUAL() then Absyn.CREF_IDENT(inCref.name, inCref.subscripts); | |
| 2693 | ✗ | case Absyn.CREF_FULLYQUALIFIED() then crefFirstCref(inCref.componentRef); | |
| 2694 | else inCref; | ||
| 2695 | end match; | ||
| 2696 | end crefFirstCref; | ||
| 2697 | |||
| 2698 | public function crefStripFirst "Strip the first ident from a Absyn.ComponentRef" | ||
| 2699 | input Absyn.ComponentRef inComponentRef; | ||
| 2700 | output Absyn.ComponentRef outComponentRef; | ||
| 2701 | algorithm | ||
| 2702 | outComponentRef:= | ||
| 2703 | match inComponentRef | ||
| 2704 | local Absyn.ComponentRef cr; | ||
| 2705 | case Absyn.CREF_QUAL(componentRef = cr) then cr; | ||
| 2706 | ✗ | case Absyn.CREF_FULLYQUALIFIED(componentRef = cr) then crefStripFirst(cr); | |
| 2707 | end match; | ||
| 2708 | end crefStripFirst; | ||
| 2709 | |||
| 2710 | public function crefIsFullyQualified | ||
| 2711 | input Absyn.ComponentRef inCref; | ||
| 2712 | output Boolean outIsFullyQualified; | ||
| 2713 | algorithm | ||
| 2714 | outIsFullyQualified := match inCref | ||
| 2715 | case Absyn.CREF_FULLYQUALIFIED() then true; | ||
| 2716 | else false; | ||
| 2717 | end match; | ||
| 2718 | end crefIsFullyQualified; | ||
| 2719 | |||
| 2720 | public function crefMakeFullyQualified | ||
| 2721 | "Makes a component reference fully qualified unless it already is." | ||
| 2722 | input Absyn.ComponentRef inComponentRef; | ||
| 2723 | output Absyn.ComponentRef outComponentRef; | ||
| 2724 | algorithm | ||
| 2725 | outComponentRef := match inComponentRef | ||
| 2726 | case Absyn.CREF_FULLYQUALIFIED() then inComponentRef; | ||
| 2727 | 46132 | else Absyn.CREF_FULLYQUALIFIED(inComponentRef); | |
| 2728 | end match; | ||
| 2729 | end crefMakeFullyQualified; | ||
| 2730 | |||
| 2731 | public function restrString "Maps a class restriction to the corresponding string for printing" | ||
| 2732 | input Absyn.Restriction inRestriction; | ||
| 2733 | output String outString; | ||
| 2734 | algorithm | ||
| 2735 | outString:= | ||
| 2736 | match inRestriction | ||
| 2737 | case Absyn.R_CLASS() then "CLASS"; | ||
| 2738 | case Absyn.R_OPTIMIZATION() then "OPTIMIZATION"; | ||
| 2739 | case Absyn.R_MODEL() then "MODEL"; | ||
| 2740 | case Absyn.R_RECORD() then "RECORD"; | ||
| 2741 | case Absyn.R_BLOCK() then "BLOCK"; | ||
| 2742 | case Absyn.R_CONNECTOR() then "CONNECTOR"; | ||
| 2743 | case Absyn.R_EXP_CONNECTOR() then "EXPANDABLE CONNECTOR"; | ||
| 2744 | case Absyn.R_TYPE() then "TYPE"; | ||
| 2745 | case Absyn.R_PACKAGE() then "PACKAGE"; | ||
| 2746 | case Absyn.R_FUNCTION(Absyn.FR_NORMAL_FUNCTION(Absyn.PURE())) then "PURE FUNCTION"; | ||
| 2747 | case Absyn.R_FUNCTION(Absyn.FR_NORMAL_FUNCTION(Absyn.IMPURE())) then "IMPURE FUNCTION"; | ||
| 2748 | case Absyn.R_FUNCTION(Absyn.FR_NORMAL_FUNCTION(Absyn.NO_PURITY())) then "FUNCTION"; | ||
| 2749 | case Absyn.R_FUNCTION(Absyn.FR_OPERATOR_FUNCTION()) then "OPERATOR FUNCTION"; | ||
| 2750 | case Absyn.R_PREDEFINED_INTEGER() then "PREDEFINED_INT"; | ||
| 2751 | case Absyn.R_PREDEFINED_REAL() then "PREDEFINED_REAL"; | ||
| 2752 | case Absyn.R_PREDEFINED_STRING() then "PREDEFINED_STRING"; | ||
| 2753 | case Absyn.R_PREDEFINED_BOOLEAN() then "PREDEFINED_BOOL"; | ||
| 2754 | // BTH | ||
| 2755 | case Absyn.R_PREDEFINED_CLOCK() then "PREDEFINED_CLOCK"; | ||
| 2756 | |||
| 2757 | /* MetaModelica restriction */ | ||
| 2758 | case Absyn.R_UNIONTYPE() then "UNIONTYPE"; | ||
| 2759 | else "* Unknown restriction *"; | ||
| 2760 | end match; | ||
| 2761 | end restrString; | ||
| 2762 | |||
| 2763 | public function lastClassname "Returns the path (=name) of the last class in a program" | ||
| 2764 | input Absyn.Program inProgram; | ||
| 2765 | output Absyn.Path outPath; | ||
| 2766 | protected | ||
| 2767 | list<Absyn.Class> lst; | ||
| 2768 | Absyn.Ident id; | ||
| 2769 | algorithm | ||
| 2770 | 1260 | Absyn.PROGRAM(classes = lst) := inProgram; | |
| 2771 | 1260 | Absyn.CLASS(name = id) := List.last(lst); | |
| 2772 | 1259 | outPath := Absyn.IDENT(id); | |
| 2773 | end lastClassname; | ||
| 2774 | |||
| 2775 | public function classFilename | ||
| 2776 | "Retrieves the filename where the class is stored." | ||
| 2777 | input Absyn.Class inClass; | ||
| 2778 | output String outFilename; | ||
| 2779 | algorithm | ||
| 2780 | 9422 | Absyn.CLASS(info = SOURCEINFO(fileName = outFilename)) := inClass; | |
| 2781 | end classFilename; | ||
| 2782 | |||
| 2783 | public function setClassFilename | ||
| 2784 | "Sets the filename where the class is stored. The elements that were stored in | ||
| 2785 | the same file as the class are updated too, since they are stored in the new | ||
| 2786 | file as well. Elements that come from another file, like the classes of a | ||
| 2787 | package stored with a folder structure, keep their filename." | ||
| 2788 | input Absyn.Class inClass; | ||
| 2789 | input String fileName; | ||
| 2790 | output Absyn.Class outClass; | ||
| 2791 | algorithm | ||
| 2792 | outClass := match inClass | ||
| 2793 | local | ||
| 2794 | SourceInfo info; | ||
| 2795 | Absyn.Class cl; | ||
| 2796 | String old_filename; | ||
| 2797 | case cl as Absyn.CLASS(info=info as SOURCEINFO(fileName = old_filename)) | ||
| 2798 | guard not stringEq(old_filename, fileName) | ||
| 2799 | algorithm | ||
| 2800 | 1 | info.fileName := fileName; | |
| 2801 | 1 | cl.info := info; | |
| 2802 | 1 | cl.body := setClassDefFilename(cl.body, old_filename, fileName); | |
| 2803 | then cl; | ||
| 2804 | else inClass; | ||
| 2805 | end match; | ||
| 2806 | end setClassFilename; | ||
| 2807 | |||
| 2808 | protected function setClassDefFilename | ||
| 2809 | "Helper to setClassFilename, updates the filename of the elements that were | ||
| 2810 | stored in the given file." | ||
| 2811 | input output Absyn.ClassDef body; | ||
| 2812 | input String oldFilename; | ||
| 2813 | input String newFilename; | ||
| 2814 | algorithm | ||
| 2815 | () := match body | ||
| 2816 | case Absyn.PARTS() | ||
| 2817 | algorithm | ||
| 2818 |
4/4✓ Branch 0 taken 1 time.
✓ Branch 1 taken 1 time.
✓ Branch 2 taken 1 time.
✓ Branch 3 taken 1 time.
|
3 | body.classParts := list(setClassPartFilename(part, oldFilename, newFilename) |
| 2819 | for part in body.classParts); | ||
| 2820 | then (); | ||
| 2821 | |||
| 2822 | case Absyn.CLASS_EXTENDS() | ||
| 2823 | algorithm | ||
| 2824 | ✗ | body.parts := list(setClassPartFilename(part, oldFilename, newFilename) | |
| 2825 | for part in body.parts); | ||
| 2826 | then (); | ||
| 2827 | |||
| 2828 | else (); | ||
| 2829 | end match; | ||
| 2830 | end setClassDefFilename; | ||
| 2831 | |||
| 2832 | protected function setClassPartFilename | ||
| 2833 | "Helper to setClassDefFilename." | ||
| 2834 | input output Absyn.ClassPart part; | ||
| 2835 | input String oldFilename; | ||
| 2836 | input String newFilename; | ||
| 2837 | algorithm | ||
| 2838 | () := match part | ||
| 2839 | case Absyn.PUBLIC() | ||
| 2840 | algorithm | ||
| 2841 |
4/4✓ Branch 0 taken 1 time.
✓ Branch 1 taken 1 time.
✓ Branch 2 taken 1 time.
✓ Branch 3 taken 1 time.
|
3 | part.contents := list(setElementItemFilename(e, oldFilename, newFilename) |
| 2842 | for e in part.contents); | ||
| 2843 | then (); | ||
| 2844 | |||
| 2845 | case Absyn.PROTECTED() | ||
| 2846 | algorithm | ||
| 2847 | ✗ | part.contents := list(setElementItemFilename(e, oldFilename, newFilename) | |
| 2848 | for e in part.contents); | ||
| 2849 | then (); | ||
| 2850 | |||
| 2851 | else (); | ||
| 2852 | end match; | ||
| 2853 | end setClassPartFilename; | ||
| 2854 | |||
| 2855 | protected function setElementItemFilename | ||
| 2856 | "Helper to setClassPartFilename." | ||
| 2857 | input output Absyn.ElementItem item; | ||
| 2858 | input String oldFilename; | ||
| 2859 | input String newFilename; | ||
| 2860 | algorithm | ||
| 2861 | () := match item | ||
| 2862 | case Absyn.ELEMENTITEM() | ||
| 2863 | algorithm | ||
| 2864 | 1 | item.element := setElementFilename(item.element, oldFilename, newFilename); | |
| 2865 | then (); | ||
| 2866 | |||
| 2867 | else (); | ||
| 2868 | end match; | ||
| 2869 | end setElementItemFilename; | ||
| 2870 | |||
| 2871 | protected function setElementFilename | ||
| 2872 | "Helper to setElementItemFilename, only updates elements that were stored in | ||
| 2873 | the old file." | ||
| 2874 | input output Absyn.Element element; | ||
| 2875 | input String oldFilename; | ||
| 2876 | input String newFilename; | ||
| 2877 | algorithm | ||
| 2878 | () := match element | ||
| 2879 | local | ||
| 2880 | SourceInfo info; | ||
| 2881 | |||
| 2882 | case Absyn.ELEMENT(info = info as SOURCEINFO()) | ||
| 2883 | guard stringEq(info.fileName, oldFilename) | ||
| 2884 | algorithm | ||
| 2885 | 1 | info.fileName := newFilename; | |
| 2886 | 1 | element.info := info; | |
| 2887 | 1 | element.specification := setElementSpecFilename(element.specification, newFilename); | |
| 2888 | then (); | ||
| 2889 | |||
| 2890 | case Absyn.DEFINEUNIT(info = info as SOURCEINFO()) | ||
| 2891 | guard stringEq(info.fileName, oldFilename) | ||
| 2892 | algorithm | ||
| 2893 | ✗ | info.fileName := newFilename; | |
| 2894 | ✗ | element.info := info; | |
| 2895 | then (); | ||
| 2896 | |||
| 2897 | case Absyn.TEXT(info = info as SOURCEINFO()) | ||
| 2898 | guard stringEq(info.fileName, oldFilename) | ||
| 2899 | algorithm | ||
| 2900 | ✗ | info.fileName := newFilename; | |
| 2901 | ✗ | element.info := info; | |
| 2902 | then (); | ||
| 2903 | |||
| 2904 | else (); | ||
| 2905 | end match; | ||
| 2906 | end setElementFilename; | ||
| 2907 | |||
| 2908 | protected function setElementSpecFilename | ||
| 2909 | "Helper to setElementFilename." | ||
| 2910 | input output Absyn.ElementSpec spec; | ||
| 2911 | input String newFilename; | ||
| 2912 | algorithm | ||
| 2913 | () := match spec | ||
| 2914 | local | ||
| 2915 | SourceInfo info; | ||
| 2916 | |||
| 2917 | case Absyn.CLASSDEF() | ||
| 2918 | algorithm | ||
| 2919 | ✗ | spec.class_ := setClassFilename(spec.class_, newFilename); | |
| 2920 | then (); | ||
| 2921 | |||
| 2922 | case Absyn.IMPORT(info = info as SOURCEINFO()) | ||
| 2923 | algorithm | ||
| 2924 | ✗ | info.fileName := newFilename; | |
| 2925 | ✗ | spec.info := info; | |
| 2926 | then (); | ||
| 2927 | |||
| 2928 | else (); | ||
| 2929 | end match; | ||
| 2930 | end setElementSpecFilename; | ||
| 2931 | |||
| 2932 | public function setClassName "author: BZ | ||
| 2933 | Sets the name of the class" | ||
| 2934 | input Absyn.Class inClass; | ||
| 2935 | input String newName; | ||
| 2936 | output Absyn.Class outClass = inClass; | ||
| 2937 | algorithm | ||
| 2938 | outClass := match outClass | ||
| 2939 | case Absyn.CLASS() | ||
| 2940 | algorithm | ||
| 2941 | 6 | outClass.name := newName; | |
| 2942 | then | ||
| 2943 | outClass; | ||
| 2944 | end match; | ||
| 2945 | end setClassName; | ||
| 2946 | |||
| 2947 | public function setClassBody | ||
| 2948 | input Absyn.Class inClass; | ||
| 2949 | input Absyn.ClassDef inBody; | ||
| 2950 | output Absyn.Class outClass = inClass; | ||
| 2951 | algorithm | ||
| 2952 | outClass := match outClass | ||
| 2953 | case Absyn.CLASS() | ||
| 2954 | algorithm | ||
| 2955 | 9 | outClass.body := inBody; | |
| 2956 | then | ||
| 2957 | outClass; | ||
| 2958 | end match; | ||
| 2959 | end setClassBody; | ||
| 2960 | |||
| 2961 | public function crefEqual " Checks if the name of a Absyn.ComponentRef is | ||
| 2962 | equal to the name of another Absyn.ComponentRef, including subscripts. | ||
| 2963 | See also crefEqualNoSubs." | ||
| 2964 | input Absyn.ComponentRef cref1; | ||
| 2965 | input Absyn.ComponentRef cref2; | ||
| 2966 | output Boolean equal; | ||
| 2967 | algorithm | ||
| 2968 | equal := match (cref1, cref2) | ||
| 2969 | case (Absyn.CREF_IDENT(), Absyn.CREF_IDENT()) | ||
| 2970 |
6/6✓ Branch 0 taken 499210 times.
✓ Branch 1 taken 1997 times.
✓ Branch 3 taken 498690 times.
✓ Branch 4 taken 520 times.
✓ Branch 6 taken 24 times.
✓ Branch 7 taken 498666 times.
|
501207 | then stringEq(cref1.name, cref2.name) and |
| 2971 | subscriptsEqual(cref1.subscripts, cref2.subscripts); | ||
| 2972 | |||
| 2973 | case (Absyn.CREF_QUAL(), Absyn.CREF_QUAL()) | ||
| 2974 |
8/8✓ Branch 0 taken 141335 times.
✓ Branch 1 taken 20222 times.
✓ Branch 3 taken 140851 times.
✓ Branch 4 taken 484 times.
✓ Branch 6 taken 140850 times.
✓ Branch 7 taken 1 time.
✓ Branch 9 taken 3290 times.
✓ Branch 10 taken 137560 times.
|
161557 | then stringEq(cref1.name, cref2.name) and |
| 2975 | subscriptsEqual(cref1.subscripts, cref2.subscripts) and | ||
| 2976 | crefEqual(cref1.componentRef, cref2.componentRef); | ||
| 2977 | |||
| 2978 | case (Absyn.CREF_FULLYQUALIFIED(), Absyn.CREF_FULLYQUALIFIED()) | ||
| 2979 | ✗ | then crefEqual(cref1.componentRef, cref2.componentRef); | |
| 2980 | |||
| 2981 | else false; | ||
| 2982 | end match; | ||
| 2983 | end crefEqual; | ||
| 2984 | |||
| 2985 | public function crefFirstEqual | ||
| 2986 | "@author: adrpo | ||
| 2987 | a.b, a -> true | ||
| 2988 | b.c, a -> false" | ||
| 2989 | input Absyn.ComponentRef iCr1; | ||
| 2990 | input Absyn.ComponentRef iCr2; | ||
| 2991 | output Boolean outBoolean; | ||
| 2992 | algorithm | ||
| 2993 | ✗ | outBoolean := stringEq(crefFirstIdent(iCr1),crefFirstIdent(iCr2)); | |
| 2994 | end crefFirstEqual; | ||
| 2995 | |||
| 2996 | public function subscriptEqual | ||
| 2997 | input Absyn.Subscript inSubscript1; | ||
| 2998 | input Absyn.Subscript inSubscript2; | ||
| 2999 | output Boolean outIsEqual; | ||
| 3000 | algorithm | ||
| 3001 | outIsEqual := match(inSubscript1, inSubscript2) | ||
| 3002 | local | ||
| 3003 | Absyn.Exp e1, e2; | ||
| 3004 | |||
| 3005 | case (Absyn.NOSUB(), Absyn.NOSUB()) then true; | ||
| 3006 | 27250 | case (Absyn.SUBSCRIPT(e1), Absyn.SUBSCRIPT(e2)) then expEqual(e1, e2); | |
| 3007 | else false; | ||
| 3008 | end match; | ||
| 3009 | end subscriptEqual; | ||
| 3010 | |||
| 3011 | public function subscriptsEqual | ||
| 3012 | "Checks if two subscript lists are equal." | ||
| 3013 | input list<Absyn.Subscript> inSubList1; | ||
| 3014 | input list<Absyn.Subscript> inSubList2; | ||
| 3015 | output Boolean outIsEqual; | ||
| 3016 | algorithm | ||
| 3017 | 639541 | outIsEqual := List.isEqualOnTrue(inSubList1, inSubList2, subscriptEqual); | |
| 3018 | end subscriptsEqual; | ||
| 3019 | |||
| 3020 | public function crefEqualNoSubs | ||
| 3021 | "Checks if the name of a Absyn.ComponentRef is equal to the name | ||
| 3022 | of another Absyn.ComponentRef without checking subscripts. | ||
| 3023 | See also crefEqual." | ||
| 3024 | input Absyn.ComponentRef cr1; | ||
| 3025 | input Absyn.ComponentRef cr2; | ||
| 3026 | output Boolean equal; | ||
| 3027 | algorithm | ||
| 3028 | equal := match (cr1,cr2) | ||
| 3029 | case (Absyn.CREF_IDENT(), Absyn.CREF_IDENT()) | ||
| 3030 | ✗ | then stringEq(cr1.name, cr2.name); | |
| 3031 | case (Absyn.CREF_QUAL(), Absyn.CREF_QUAL()) | ||
| 3032 | ✗ | then stringEq(cr1.name, cr2.name) and crefEqualNoSubs(cr1.componentRef, cr2.componentRef); | |
| 3033 | case (Absyn.CREF_FULLYQUALIFIED(), Absyn.CREF_FULLYQUALIFIED()) | ||
| 3034 | ✗ | then crefEqualNoSubs(cr1.componentRef, cr2.componentRef); | |
| 3035 | else false; | ||
| 3036 | end match; | ||
| 3037 | end crefEqualNoSubs; | ||
| 3038 | |||
| 3039 | public function crefCompare | ||
| 3040 | input Absyn.ComponentRef cr1; | ||
| 3041 | input Absyn.ComponentRef cr2; | ||
| 3042 | output Integer comp; | ||
| 3043 | protected | ||
| 3044 | String name; | ||
| 3045 | Absyn.ComponentRef cr; | ||
| 3046 | list<Absyn.Subscript> subs; | ||
| 3047 | algorithm | ||
| 3048 |
2/2✓ Branch 0 taken 13395 times.
✓ Branch 1 taken 23 times.
|
13418 | if referenceEq(cr1, cr2) then |
| 3049 | comp := 0; | ||
| 3050 | 13395 | return; | |
| 3051 | end if; | ||
| 3052 | |||
| 3053 | 23 | comp := Util.intCompare(valueConstructor(cr1), valueConstructor(cr2)); | |
| 3054 | |||
| 3055 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 23 times.
|
23 | if comp <> 0 then |
| 3056 | ✗ | return; | |
| 3057 | end if; | ||
| 3058 | |||
| 3059 | comp := match cr1 | ||
| 3060 | case Absyn.ComponentRef.CREF_FULLYQUALIFIED() | ||
| 3061 | algorithm | ||
| 3062 | ✗ | Absyn.ComponentRef.CREF_FULLYQUALIFIED(cr) := cr2; | |
| 3063 | ✗ | then | |
| 3064 | crefCompare(cr1.componentRef, cr); | ||
| 3065 | |||
| 3066 | case Absyn.ComponentRef.CREF_QUAL() | ||
| 3067 | algorithm | ||
| 3068 | ✗ | Absyn.ComponentRef.CREF_QUAL(name, subs, cr) := cr2; | |
| 3069 | ✗ | comp := stringCompare(cr1.name, name); | |
| 3070 | |||
| 3071 | ✗ | if comp == 0 then | |
| 3072 | ✗ | comp := List.compare(cr1.subscripts, subs, subscriptCompare); | |
| 3073 | end if; | ||
| 3074 | ✗ | then | |
| 3075 | if comp == 0 then crefCompare(cr1.componentRef, cr) else comp; | ||
| 3076 | |||
| 3077 | case Absyn.ComponentRef.CREF_IDENT() | ||
| 3078 | algorithm | ||
| 3079 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 23 times.
|
23 | Absyn.ComponentRef.CREF_IDENT(name, subs) := cr2; |
| 3080 | 23 | comp := stringCompare(cr1.name, name); | |
| 3081 |
2/2✓ Branch 0 taken 7 times.
✓ Branch 1 taken 16 times.
|
23 | then |
| 3082 | if comp == 0 then List.compare(cr1.subscripts, subs, subscriptCompare) else comp; | ||
| 3083 | |||
| 3084 | else 0; | ||
| 3085 | end match; | ||
| 3086 | end crefCompare; | ||
| 3087 | |||
| 3088 | public function subscriptCompare | ||
| 3089 | input Absyn.Subscript sub1; | ||
| 3090 | input Absyn.Subscript sub2; | ||
| 3091 | output Integer comp; | ||
| 3092 | protected | ||
| 3093 | Absyn.Exp exp; | ||
| 3094 | algorithm | ||
| 3095 | if referenceEq(sub1, sub2) then | ||
| 3096 | comp := 0; | ||
| 3097 | end if; | ||
| 3098 | |||
| 3099 | ✗ | comp := Util.intCompare(valueConstructor(sub1), valueConstructor(sub2)); | |
| 3100 | |||
| 3101 | ✗ | if comp <> 0 then | |
| 3102 | ✗ | return; | |
| 3103 | end if; | ||
| 3104 | |||
| 3105 | comp := match sub1 | ||
| 3106 | case Absyn.Subscript.NOSUB() then 0; | ||
| 3107 | case Absyn.Subscript.SUBSCRIPT() | ||
| 3108 | algorithm | ||
| 3109 | ✗ | Absyn.Subscript.SUBSCRIPT(exp) := sub2; | |
| 3110 | ✗ | then | |
| 3111 | // TODO: Implement compare for Absyn.Exp instead of converting to strings. | ||
| 3112 | stringCompare(Dump.printExpStr(sub1.subscript), Dump.printExpStr(exp)); | ||
| 3113 | end match; | ||
| 3114 | end subscriptCompare; | ||
| 3115 | |||
| 3116 | public function isPackageRestriction "checks if the provided parameter is a package or not" | ||
| 3117 | input Absyn.Restriction inRestriction; | ||
| 3118 | output Boolean outIsPackage; | ||
| 3119 | algorithm | ||
| 3120 | outIsPackage := match inRestriction | ||
| 3121 | case Absyn.R_PACKAGE() then true; | ||
| 3122 | else false; | ||
| 3123 | end match; | ||
| 3124 | end isPackageRestriction; | ||
| 3125 | |||
| 3126 | public function isFunctionRestriction "checks if restriction is a function or not" | ||
| 3127 | input Absyn.Restriction inRestriction; | ||
| 3128 | output Boolean outIsFunction; | ||
| 3129 | algorithm | ||
| 3130 | outIsFunction := match inRestriction | ||
| 3131 | case Absyn.R_FUNCTION() then true; | ||
| 3132 | else false; | ||
| 3133 | end match; | ||
| 3134 | end isFunctionRestriction; | ||
| 3135 | |||
| 3136 | public function expEqual "Returns true if two expressions are equal" | ||
| 3137 | input Absyn.Exp exp1; | ||
| 3138 | input Absyn.Exp exp2; | ||
| 3139 | output Boolean equal; | ||
| 3140 | algorithm | ||
| 3141 | equal := match (exp1, exp2) | ||
| 3142 | // real vs. integer | ||
| 3143 | case (Absyn.INTEGER(), Absyn.REAL()) | ||
| 3144 | ✗ | then realEq(intReal(exp1.value), stringReal(exp2.value)); | |
| 3145 | |||
| 3146 | case (Absyn.REAL(), Absyn.INTEGER()) | ||
| 3147 | ✗ | then realEq(intReal(exp2.value), stringReal(exp1.value)); | |
| 3148 | |||
| 3149 | // anything else, exact match! | ||
| 3150 | 318737 | else valueEq(exp1, exp2); | |
| 3151 | end match; | ||
| 3152 | end expEqual; | ||
| 3153 | |||
| 3154 | public function getClassName "author: adrpo | ||
| 3155 | gets the name of the class." | ||
| 3156 | input Absyn.Class inClass; | ||
| 3157 | output String outName; | ||
| 3158 | algorithm | ||
| 3159 | 1253345 | Absyn.CLASS(name=outName) := inClass; | |
| 3160 | end getClassName; | ||
| 3161 | |||
| 3162 | public type IteratorIndexedCref = tuple<Absyn.ComponentRef, Integer>; | ||
| 3163 | |||
| 3164 | public function findIteratorIndexedCrefs | ||
| 3165 | "Find all crefs in an expression which are subscripted with the given | ||
| 3166 | iterator, and return a list of cref-Integer tuples, where the cref is the | ||
| 3167 | index of the subscript." | ||
| 3168 | input Absyn.Exp inExp; | ||
| 3169 | input String inIterator; | ||
| 3170 | input list<IteratorIndexedCref> inCrefs = {}; | ||
| 3171 | output list<IteratorIndexedCref> outCrefs; | ||
| 3172 | algorithm | ||
| 3173 | 21 | (_, outCrefs) := traverseExp(inExp, | |
| 3174 | function findIteratorIndexedCrefs_traverser(inIterator = inIterator), {}); | ||
| 3175 | 21 | outCrefs := List.fold(outCrefs, | |
| 3176 | function List.unionEltOnTrue(inCompFunc = iteratorIndexedCrefsEqual), inCrefs); | ||
| 3177 | end findIteratorIndexedCrefs; | ||
| 3178 | |||
| 3179 | protected function findIteratorIndexedCrefs_traverser | ||
| 3180 | "Traversal function used by deduceReductionIterationRange. Used to find crefs | ||
| 3181 | which are subscripted by a given iterator." | ||
| 3182 | input Absyn.Exp inExp; | ||
| 3183 | input list<IteratorIndexedCref> inCrefs; | ||
| 3184 | input String inIterator; | ||
| 3185 | output Absyn.Exp outExp = inExp; | ||
| 3186 | output list<IteratorIndexedCref> outCrefs; | ||
| 3187 | algorithm | ||
| 3188 | outCrefs := match inExp | ||
| 3189 | case Absyn.CREF() | ||
| 3190 | 45 | then getIteratorIndexedCrefs(inExp.componentRef, inIterator, inCrefs); | |
| 3191 | |||
| 3192 | else inCrefs; | ||
| 3193 | end match; | ||
| 3194 | end findIteratorIndexedCrefs_traverser; | ||
| 3195 | |||
| 3196 | protected function iteratorIndexedCrefsEqual | ||
| 3197 | "Checks whether two cref-index pairs are equal." | ||
| 3198 | input IteratorIndexedCref inCref1; | ||
| 3199 | input IteratorIndexedCref inCref2; | ||
| 3200 | output Boolean outEqual; | ||
| 3201 | protected | ||
| 3202 | Absyn.ComponentRef cr1, cr2; | ||
| 3203 | Integer idx1, idx2; | ||
| 3204 | algorithm | ||
| 3205 | 2 | (cr1, idx1) := inCref1; | |
| 3206 | 2 | (cr2, idx2) := inCref2; | |
| 3207 |
3/4✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
✓ Branch 3 taken 1 time.
✓ Branch 4 taken 1 time.
|
2 | outEqual := idx1 == idx2 and crefEqual(cr1, cr2); |
| 3208 | end iteratorIndexedCrefsEqual; | ||
| 3209 | |||
| 3210 | protected function getIteratorIndexedCrefs | ||
| 3211 | "Checks if the given component reference is subscripted by the given iterator. | ||
| 3212 | Only cases where a subscript consists of only the iterator is considered. | ||
| 3213 | If so it adds a cref-index pair to the list, where the cref is the subscripted | ||
| 3214 | cref without subscripts, and the index is the subscripted dimension. E.g. for | ||
| 3215 | iterator i: | ||
| 3216 | a[i] => (a, 1), b[1, i] => (b, 2), c[i+1] => (), d[2].e[i] => (d[2].e, 1)" | ||
| 3217 | input Absyn.ComponentRef inCref; | ||
| 3218 | input String inIterator; | ||
| 3219 | input list<IteratorIndexedCref> inCrefs; | ||
| 3220 | output list<IteratorIndexedCref> outCrefs = inCrefs; | ||
| 3221 | protected | ||
| 3222 | list<tuple<Absyn.ComponentRef, Integer>> crefs; | ||
| 3223 | algorithm | ||
| 3224 | outCrefs := match inCref | ||
| 3225 | local | ||
| 3226 | list<Absyn.Subscript> subs; | ||
| 3227 | Integer idx; | ||
| 3228 | String name, id; | ||
| 3229 | Absyn.ComponentRef cref; | ||
| 3230 | |||
| 3231 | case Absyn.CREF_IDENT(name = id, subscripts = subs) | ||
| 3232 | algorithm | ||
| 3233 | // For each subscript, check if the subscript consists of only the | ||
| 3234 | // iterator we're looking for. | ||
| 3235 | idx := 1; | ||
| 3236 |
2/2✓ Branch 0 taken 22 times.
✓ Branch 1 taken 49 times.
|
71 | for sub in subs loop |
| 3237 | () := match sub | ||
| 3238 | case Absyn.SUBSCRIPT(subscript = Absyn.CREF(componentRef = | ||
| 3239 | Absyn.CREF_IDENT(name = name, subscripts = {}))) | ||
| 3240 | algorithm | ||
| 3241 |
3/4✓ Branch 0 taken 22 times.
✗ Branch 1 not taken.
✓ Branch 3 taken 18 times.
✓ Branch 4 taken 4 times.
|
22 | if name == inIterator then |
| 3242 | 18 | outCrefs := (Absyn.CREF_IDENT(id, {}), idx) :: outCrefs; | |
| 3243 | end if; | ||
| 3244 | then | ||
| 3245 | (); | ||
| 3246 | |||
| 3247 | else (); | ||
| 3248 | end match; | ||
| 3249 | |||
| 3250 | 22 | idx := idx + 1; | |
| 3251 | end for; | ||
| 3252 | then | ||
| 3253 | outCrefs; | ||
| 3254 | |||
| 3255 | case Absyn.CREF_QUAL(name = id, subscripts = subs, componentRef = cref) | ||
| 3256 | algorithm | ||
| 3257 | 4 | crefs := getIteratorIndexedCrefs(cref, inIterator, {}); | |
| 3258 | |||
| 3259 | // Append the prefix from the qualified cref to any matches, and add | ||
| 3260 | // them to the result list. | ||
| 3261 |
2/2✓ Branch 0 taken 3 times.
✓ Branch 1 taken 4 times.
|
7 | for cr in crefs loop |
| 3262 | 3 | (cref, idx) := cr; | |
| 3263 | 3 | outCrefs := (Absyn.CREF_QUAL(id, subs, cref), idx) :: outCrefs; | |
| 3264 | end for; | ||
| 3265 | 4 | then | |
| 3266 | getIteratorIndexedCrefs(Absyn.CREF_IDENT(id, subs), inIterator, outCrefs); | ||
| 3267 | |||
| 3268 | case Absyn.CREF_FULLYQUALIFIED(componentRef = cref) | ||
| 3269 | algorithm | ||
| 3270 | 1 | crefs := getIteratorIndexedCrefs(cref, inIterator, {}); | |
| 3271 | |||
| 3272 | // Make any matches fully qualified, and add them to the result list. | ||
| 3273 |
2/2✓ Branch 0 taken 1 time.
✓ Branch 1 taken 1 time.
|
2 | for cr in crefs loop |
| 3274 | 1 | (cref, idx) := cr; | |
| 3275 | 1 | outCrefs := (Absyn.CREF_FULLYQUALIFIED(cref), idx) :: outCrefs; | |
| 3276 | end for; | ||
| 3277 | then | ||
| 3278 | outCrefs; | ||
| 3279 | |||
| 3280 | else inCrefs; | ||
| 3281 | end match; | ||
| 3282 | end getIteratorIndexedCrefs; | ||
| 3283 | |||
| 3284 | public function getFileNameFromInfo | ||
| 3285 | input SourceInfo inInfo; | ||
| 3286 | output String inFileName; | ||
| 3287 | algorithm | ||
| 3288 | ✗ | SOURCEINFO(fileName = inFileName) := inInfo; | |
| 3289 | end getFileNameFromInfo; | ||
| 3290 | |||
| 3291 | public function isOuter | ||
| 3292 | "@author: adrpo | ||
| 3293 | this function returns true if the given Absyn.InnerOuter | ||
| 3294 | is one of Absyn.INNER_OUTER() or Absyn.OUTER()" | ||
| 3295 | input Absyn.InnerOuter io; | ||
| 3296 | output Boolean isItAnOuter; | ||
| 3297 | algorithm | ||
| 3298 | isItAnOuter := match io | ||
| 3299 | case Absyn.INNER_OUTER() then true; | ||
| 3300 | case Absyn.OUTER() then true; | ||
| 3301 | else false; | ||
| 3302 | end match; | ||
| 3303 | end isOuter; | ||
| 3304 | |||
| 3305 | public function isInner | ||
| 3306 | "@author: adrpo | ||
| 3307 | this function returns true if the given Absyn.InnerOuter | ||
| 3308 | is one of Absyn.INNER_OUTER() or Absyn.INNER()" | ||
| 3309 | input Absyn.InnerOuter io; | ||
| 3310 | output Boolean isItAnInner; | ||
| 3311 | algorithm | ||
| 3312 | isItAnInner := match io | ||
| 3313 | case Absyn.INNER_OUTER() then true; | ||
| 3314 | case Absyn.INNER() then true; | ||
| 3315 | else false; | ||
| 3316 | end match; | ||
| 3317 | end isInner; | ||
| 3318 | |||
| 3319 | public function isOnlyInner | ||
| 3320 | "Returns true if the Absyn.InnerOuter is Absyn.INNER, false otherwise." | ||
| 3321 | input Absyn.InnerOuter inIO; | ||
| 3322 | output Boolean outOnlyInner; | ||
| 3323 | algorithm | ||
| 3324 | outOnlyInner := match inIO | ||
| 3325 | case Absyn.INNER() then true; | ||
| 3326 | else false; | ||
| 3327 | end match; | ||
| 3328 | end isOnlyInner; | ||
| 3329 | |||
| 3330 | public function isOnlyOuter | ||
| 3331 | "Returns true if the Absyn.InnerOuter is Absyn.OUTER, false otherwise." | ||
| 3332 | input Absyn.InnerOuter inIO; | ||
| 3333 | output Boolean outOnlyOuter; | ||
| 3334 | algorithm | ||
| 3335 | outOnlyOuter := match inIO | ||
| 3336 | case Absyn.OUTER() then true; | ||
| 3337 | else false; | ||
| 3338 | end match; | ||
| 3339 | end isOnlyOuter; | ||
| 3340 | |||
| 3341 | public function isInnerOuter | ||
| 3342 | input Absyn.InnerOuter inIO; | ||
| 3343 | output Boolean outIsInnerOuter; | ||
| 3344 | algorithm | ||
| 3345 | outIsInnerOuter := match inIO | ||
| 3346 | case Absyn.INNER_OUTER() then true; | ||
| 3347 | else false; | ||
| 3348 | end match; | ||
| 3349 | end isInnerOuter; | ||
| 3350 | |||
| 3351 | public function isNotInnerOuter | ||
| 3352 | input Absyn.InnerOuter inIO; | ||
| 3353 | output Boolean outIsNotInnerOuter; | ||
| 3354 | algorithm | ||
| 3355 | outIsNotInnerOuter := match inIO | ||
| 3356 | case Absyn.NOT_INNER_OUTER() then true; | ||
| 3357 | else false; | ||
| 3358 | end match; | ||
| 3359 | end isNotInnerOuter; | ||
| 3360 | |||
| 3361 | public function innerOuterEqual "Returns true if two Absyn.InnerOuter's are equal" | ||
| 3362 | input Absyn.InnerOuter io1; | ||
| 3363 | input Absyn.InnerOuter io2; | ||
| 3364 | output Boolean res; | ||
| 3365 | algorithm | ||
| 3366 | res := match(io1,io2) | ||
| 3367 | case(Absyn.INNER(),Absyn.INNER()) then true; | ||
| 3368 | case(Absyn.OUTER(),Absyn.OUTER()) then true; | ||
| 3369 | case(Absyn.INNER_OUTER(),Absyn.INNER_OUTER()) then true; | ||
| 3370 | case(Absyn.NOT_INNER_OUTER(),Absyn.NOT_INNER_OUTER()) then true; | ||
| 3371 | else false; | ||
| 3372 | end match; | ||
| 3373 | end innerOuterEqual; | ||
| 3374 | |||
| 3375 | public function makeFullyQualified | ||
| 3376 | "Makes a path fully qualified unless it already is." | ||
| 3377 | input Absyn.Path inPath; | ||
| 3378 | output Absyn.Path outPath; | ||
| 3379 | algorithm | ||
| 3380 | outPath := match inPath | ||
| 3381 | case Absyn.FULLYQUALIFIED() then inPath; | ||
| 3382 | 24057984 | else Absyn.FULLYQUALIFIED(inPath); | |
| 3383 | end match; | ||
| 3384 | end makeFullyQualified; | ||
| 3385 | |||
| 3386 | public function makeNotFullyQualified | ||
| 3387 | "Makes a path not fully qualified unless it already is." | ||
| 3388 | input Absyn.Path inPath; | ||
| 3389 | output Absyn.Path outPath; | ||
| 3390 | algorithm | ||
| 3391 | outPath := match inPath | ||
| 3392 | local Absyn.Path path; | ||
| 3393 | case Absyn.FULLYQUALIFIED(path) then path; | ||
| 3394 | else inPath; | ||
| 3395 | end match; | ||
| 3396 | end makeNotFullyQualified; | ||
| 3397 | |||
| 3398 | public function importEqual "Compares two import elements. " | ||
| 3399 | input Absyn.Import im1; | ||
| 3400 | input Absyn.Import im2; | ||
| 3401 | output Boolean outBoolean; | ||
| 3402 | algorithm | ||
| 3403 | outBoolean := match (im1,im2) | ||
| 3404 | case (Absyn.NAMED_IMPORT(), Absyn.NAMED_IMPORT()) | ||
| 3405 | ✗ | then stringEq(im1.name, im2.name) and pathEqual(im1.path, im2.path); | |
| 3406 | |||
| 3407 | case (Absyn.QUAL_IMPORT(), Absyn.QUAL_IMPORT()) | ||
| 3408 | 154429 | then pathEqual(im1.path, im2.path); | |
| 3409 | |||
| 3410 | case (Absyn.UNQUAL_IMPORT(), Absyn.UNQUAL_IMPORT()) | ||
| 3411 | ✗ | then pathEqual(im1.path, im2.path); | |
| 3412 | |||
| 3413 | else false; | ||
| 3414 | end match; | ||
| 3415 | end importEqual; | ||
| 3416 | |||
| 3417 | public function canonIfExp "Transforms an if-expression to canonical form (without else-if branches)" | ||
| 3418 | input Absyn.Exp inExp; | ||
| 3419 | output Absyn.Exp outExp; | ||
| 3420 | algorithm | ||
| 3421 | outExp := match inExp | ||
| 3422 | local | ||
| 3423 | Absyn.Exp cond,tb,eb,ei_cond,ei_tb,e; | ||
| 3424 | list<tuple<Absyn.Exp,Absyn.Exp>> eib; | ||
| 3425 | |||
| 3426 | case Absyn.IFEXP(elseIfBranch={}) then inExp; | ||
| 3427 | case Absyn.IFEXP(ifExp=cond,trueBranch=tb,elseBranch=eb,elseIfBranch=(ei_cond,ei_tb)::eib) | ||
| 3428 | algorithm | ||
| 3429 | 100 | e := canonIfExp(Absyn.IFEXP(ei_cond,ei_tb,eb,eib)); | |
| 3430 | 100 | then Absyn.IFEXP(cond,tb,e,{}); | |
| 3431 | end match; | ||
| 3432 | end canonIfExp; | ||
| 3433 | |||
| 3434 | public function onlyLiteralsInAnnotationMod | ||
| 3435 | "@author: adrpo | ||
| 3436 | This function checks if a modification only contains literal expressions" | ||
| 3437 | input list<Absyn.ElementArg> inMod; | ||
| 3438 | output Boolean onlyLiterals; | ||
| 3439 | algorithm | ||
| 3440 | onlyLiterals := matchcontinue inMod | ||
| 3441 | local | ||
| 3442 | list<Absyn.ElementArg> dive, rest; | ||
| 3443 | Absyn.EqMod eqMod; | ||
| 3444 | |||
| 3445 | case {} then true; | ||
| 3446 | |||
| 3447 | // skip "interaction" annotation! | ||
| 3448 | case Absyn.MODIFICATION(path = Absyn.IDENT(name = "interaction")) :: rest | ||
| 3449 | ✗ | then onlyLiteralsInAnnotationMod(rest); | |
| 3450 | |||
| 3451 | |||
| 3452 | // search inside, some(exp) | ||
| 3453 | case Absyn.MODIFICATION(modification = SOME(Absyn.CLASSMOD(dive, eqMod))) :: rest | ||
| 3454 |
5/6✓ Branch 1 taken 238 times.
✓ Branch 2 taken 50 times.
✓ Branch 4 taken 238 times.
✗ Branch 5 not taken.
✓ Branch 7 taken 77 times.
✓ Branch 8 taken 161 times.
|
288 | then onlyLiteralsInEqMod(eqMod) and |
| 3455 | onlyLiteralsInAnnotationMod(dive) and | ||
| 3456 | onlyLiteralsInAnnotationMod(rest); | ||
| 3457 | |||
| 3458 | ✗ | case _ :: rest then onlyLiteralsInAnnotationMod(rest); | |
| 3459 | |||
| 3460 | // failed above, return false | ||
| 3461 | else false; | ||
| 3462 | end matchcontinue; | ||
| 3463 | end onlyLiteralsInAnnotationMod; | ||
| 3464 | |||
| 3465 | public function onlyLiteralsInEqMod | ||
| 3466 | "@author: adrpo | ||
| 3467 | This function checks if an optional expression only contains literal expressions" | ||
| 3468 | input Absyn.EqMod eqMod; | ||
| 3469 | output Boolean onlyLiterals; | ||
| 3470 | algorithm | ||
| 3471 | onlyLiterals := match eqMod | ||
| 3472 | local | ||
| 3473 | |||
| 3474 | case Absyn.NOMOD() then true; | ||
| 3475 | |||
| 3476 | // search inside, some(exp) | ||
| 3477 | 300 | case Absyn.EQMOD() then onlyLiteralsInExp(eqMod.exp); | |
| 3478 | |||
| 3479 | end match; | ||
| 3480 | end onlyLiteralsInEqMod; | ||
| 3481 | |||
| 3482 | public function onlyLiteralsInExp | ||
| 3483 | "Checks if an expression only contains literal expressions." | ||
| 3484 | input Absyn.Exp exp; | ||
| 3485 | output Boolean onlyLiterals; | ||
| 3486 | protected | ||
| 3487 | list<Absyn.Exp> lst; | ||
| 3488 | algorithm | ||
| 3489 |
2/4✗ Branch 1 not taken.
✓ Branch 2 taken 380 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 380 times.
|
380 | (_, lst::{}) := traverseExpBidir(exp, onlyLiteralsInExpEnter, onlyLiteralsInExpExit, {}::{}); |
| 3490 | 380 | onlyLiterals := listEmpty(lst); | |
| 3491 | end onlyLiteralsInExp; | ||
| 3492 | |||
| 3493 | protected function onlyLiteralsInExpEnter | ||
| 3494 | "@author: adrpo | ||
| 3495 | Visitor function for checking if Absyn.Exp contains only literals, NO CREFS! | ||
| 3496 | It returns an empty list if it doesn't contain any crefs!" | ||
| 3497 | input Absyn.Exp inExp; | ||
| 3498 | input list<list<Absyn.Exp>> inLst; | ||
| 3499 | output Absyn.Exp outExp; | ||
| 3500 | output list<list<Absyn.Exp>> outLst; | ||
| 3501 | algorithm | ||
| 3502 | (outExp,outLst) := match (inExp,inLst) | ||
| 3503 | local | ||
| 3504 | Boolean b; | ||
| 3505 | Absyn.Exp e; | ||
| 3506 | list<Absyn.Exp> lst; | ||
| 3507 | list<list<Absyn.Exp>> rest; | ||
| 3508 | String name; | ||
| 3509 | |||
| 3510 | // first handle all graphic enumerations! | ||
| 3511 | // FillPattern.*, Smooth.*, TextAlignment.*, etc! | ||
| 3512 | case (e as Absyn.CREF(Absyn.CREF_QUAL(name=name)), lst::rest) | ||
| 3513 | algorithm | ||
| 3514 | 110 | b := listMember(name,{ | |
| 3515 | "LinePattern", | ||
| 3516 | "Arrow", | ||
| 3517 | "FillPattern", | ||
| 3518 | "BorderPattern", | ||
| 3519 | "TextStyle", | ||
| 3520 | "Smooth", | ||
| 3521 | "TextAlignment"}); | ||
| 3522 | 110 | lst := List.consOnTrue(not b,e,lst); | |
| 3523 | then (inExp, lst::rest); | ||
| 3524 | |||
| 3525 | // crefs, add to list | ||
| 3526 | case (Absyn.CREF(), lst::rest) then (inExp,(inExp::lst)::rest); | ||
| 3527 | |||
| 3528 | // anything else, return the same! | ||
| 3529 | else (inExp,inLst); | ||
| 3530 | |||
| 3531 | end match; | ||
| 3532 | end onlyLiteralsInExpEnter; | ||
| 3533 | |||
| 3534 | protected function onlyLiteralsInExpExit | ||
| 3535 | "@author: adrpo | ||
| 3536 | Visitor function for checking if Absyn.Exp contains only literals, NO CREFS! | ||
| 3537 | It returns an empty list if it doesn't contain any crefs!" | ||
| 3538 | input Absyn.Exp inExp; | ||
| 3539 | input list<list<Absyn.Exp>> inLst; | ||
| 3540 | output Absyn.Exp outExp; | ||
| 3541 | output list<list<Absyn.Exp>> outLst; | ||
| 3542 | algorithm | ||
| 3543 | (outExp,outLst) := match (inExp,inLst) | ||
| 3544 | local | ||
| 3545 | list<list<Absyn.Exp>> lst; | ||
| 3546 | |||
| 3547 | // first handle DynamicSelect; pop the stack (ignore any crefs inside DynamicSelect) | ||
| 3548 | case (Absyn.CALL(function_ = Absyn.CREF_IDENT(name = "DynamicSelect")), lst) | ||
| 3549 | then (inExp, lst); | ||
| 3550 | |||
| 3551 | // anything else, return the same! | ||
| 3552 | else (inExp,inLst); | ||
| 3553 | |||
| 3554 | end match; | ||
| 3555 | end onlyLiteralsInExpExit; | ||
| 3556 | |||
| 3557 | public function makeCons | ||
| 3558 | input Absyn.Exp e1; | ||
| 3559 | input Absyn.Exp e2; | ||
| 3560 | output Absyn.Exp e; | ||
| 3561 | algorithm | ||
| 3562 | 397 | e := Absyn.CONS(e1,e2); | |
| 3563 | annotation(__OpenModelica_EarlyInline = true); | ||
| 3564 | end makeCons; | ||
| 3565 | |||
| 3566 | public function crefIdent | ||
| 3567 | input Absyn.ComponentRef cr; | ||
| 3568 | output String str; | ||
| 3569 | algorithm | ||
| 3570 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 55 times.
✗ Branch 3 not taken.
✓ Branch 4 taken 55 times.
|
55 | Absyn.CREF_IDENT(str,{}) := cr; |
| 3571 | end crefIdent; | ||
| 3572 | |||
| 3573 | public function unqotePathIdents | ||
| 3574 | input Absyn.Path inPath; | ||
| 3575 | output Absyn.Path path; | ||
| 3576 | algorithm | ||
| 3577 | 1295 | path := stringListPath(List.map(pathToStringList(inPath), System.unquoteIdentifier)); | |
| 3578 | end unqotePathIdents; | ||
| 3579 | |||
| 3580 | public function unqualifyCref | ||
| 3581 | "If the given component reference is fully qualified this function removes the | ||
| 3582 | fully qualified qualifier, otherwise does nothing." | ||
| 3583 | input Absyn.ComponentRef inCref; | ||
| 3584 | output Absyn.ComponentRef outCref; | ||
| 3585 | algorithm | ||
| 3586 | outCref := match inCref | ||
| 3587 | 3180 | case Absyn.CREF_FULLYQUALIFIED() then inCref.componentRef; | |
| 3588 | else inCref; | ||
| 3589 | end match; | ||
| 3590 | end unqualifyCref; | ||
| 3591 | |||
| 3592 | public function pathIsFullyQualified | ||
| 3593 | input Absyn.Path inPath; | ||
| 3594 | output Boolean outIsQualified; | ||
| 3595 | algorithm | ||
| 3596 | outIsQualified := match inPath | ||
| 3597 | case Absyn.FULLYQUALIFIED() then true; | ||
| 3598 | else false; | ||
| 3599 | end match; | ||
| 3600 | end pathIsFullyQualified; | ||
| 3601 | |||
| 3602 | public function pathIsIdent | ||
| 3603 | input Absyn.Path inPath; | ||
| 3604 | output Boolean outIsIdent; | ||
| 3605 | algorithm | ||
| 3606 | outIsIdent := match inPath | ||
| 3607 | case Absyn.IDENT() then true; | ||
| 3608 | else false; | ||
| 3609 | end match; | ||
| 3610 | end pathIsIdent; | ||
| 3611 | |||
| 3612 | public function pathIsQual | ||
| 3613 | input Absyn.Path inPath; | ||
| 3614 | output Boolean outIsQual; | ||
| 3615 | algorithm | ||
| 3616 | outIsQual := match inPath | ||
| 3617 | case Absyn.QUALIFIED() then true; | ||
| 3618 | else false; | ||
| 3619 | end match; | ||
| 3620 | end pathIsQual; | ||
| 3621 | |||
| 3622 | public function withinEqual | ||
| 3623 | input Absyn.Within within1; | ||
| 3624 | input Absyn.Within within2; | ||
| 3625 | output Boolean b; | ||
| 3626 | algorithm | ||
| 3627 | b := match (within1,within2) | ||
| 3628 | case (Absyn.TOP(),Absyn.TOP()) then true; | ||
| 3629 | 1251774 | case (Absyn.WITHIN(),Absyn.WITHIN()) then pathEqual(within1.path, within2.path); | |
| 3630 | else false; | ||
| 3631 | end match; | ||
| 3632 | end withinEqual; | ||
| 3633 | |||
| 3634 | public function withinEqualCaseInsensitive | ||
| 3635 | input Absyn.Within within1; | ||
| 3636 | input Absyn.Within within2; | ||
| 3637 | output Boolean b; | ||
| 3638 | algorithm | ||
| 3639 | b := match (within1,within2) | ||
| 3640 | case (Absyn.TOP(),Absyn.TOP()) then true; | ||
| 3641 | ✗ | case (Absyn.WITHIN(),Absyn.WITHIN()) then pathEqualCaseInsensitive(within1.path,within2.path); | |
| 3642 | else false; | ||
| 3643 | end match; | ||
| 3644 | end withinEqualCaseInsensitive; | ||
| 3645 | |||
| 3646 | public function withinString | ||
| 3647 | input Absyn.Within w1; | ||
| 3648 | output String str; | ||
| 3649 | algorithm | ||
| 3650 | str := match w1 | ||
| 3651 | case Absyn.TOP() then "within ;"; | ||
| 3652 | ✗ | case Absyn.WITHIN() then "within " + pathString(w1.path) + ";"; | |
| 3653 | end match; | ||
| 3654 | end withinString; | ||
| 3655 | |||
| 3656 | public function joinWithinPath | ||
| 3657 | input Absyn.Within within_; | ||
| 3658 | input Absyn.Path path; | ||
| 3659 | output Absyn.Path outPath; | ||
| 3660 | algorithm | ||
| 3661 | outPath := match within_ | ||
| 3662 | case Absyn.TOP() then path; | ||
| 3663 | 188101 | case Absyn.WITHIN() then joinPaths(within_.path,path); | |
| 3664 | end match; | ||
| 3665 | end joinWithinPath; | ||
| 3666 | |||
| 3667 | public function innerOuterStr | ||
| 3668 | input Absyn.InnerOuter io; | ||
| 3669 | output String str; | ||
| 3670 | algorithm | ||
| 3671 | str := match io | ||
| 3672 | case Absyn.INNER_OUTER() then "inner outer"; | ||
| 3673 | case Absyn.INNER() then "inner"; | ||
| 3674 | case Absyn.OUTER() then "outer"; | ||
| 3675 | case Absyn.NOT_INNER_OUTER() then ""; | ||
| 3676 | end match; | ||
| 3677 | end innerOuterStr; | ||
| 3678 | |||
| 3679 | public function subscriptExpOpt | ||
| 3680 | input Absyn.Subscript inSub; | ||
| 3681 | output Option<Absyn.Exp> outExpOpt; | ||
| 3682 | algorithm | ||
| 3683 | outExpOpt := match inSub | ||
| 3684 | ✗ | case Absyn.SUBSCRIPT() then SOME(inSub.subscript); | |
| 3685 | case Absyn.NOSUB() then NONE(); | ||
| 3686 | end match; | ||
| 3687 | end subscriptExpOpt; | ||
| 3688 | |||
| 3689 | public function crefInsertSubscriptLstLst | ||
| 3690 | input Absyn.Exp inExp; | ||
| 3691 | input list<list<Absyn.Subscript>> inLst; | ||
| 3692 | output Absyn.Exp outExp; | ||
| 3693 | output list<list<Absyn.Subscript>> outLst; | ||
| 3694 | algorithm | ||
| 3695 | (outExp,outLst) := matchcontinue(inExp,inLst) | ||
| 3696 | local | ||
| 3697 | Absyn.ComponentRef cref,cref2; | ||
| 3698 | list<list<Absyn.Subscript>> subs; | ||
| 3699 | case (Absyn.CREF(componentRef=cref),subs) | ||
| 3700 | algorithm | ||
| 3701 | ✗ | cref2 := crefInsertSubscriptLstLst2(cref,subs); | |
| 3702 | ✗ | then | |
| 3703 | (Absyn.CREF(cref2),subs); | ||
| 3704 | else (inExp,inLst); | ||
| 3705 | end matchcontinue; | ||
| 3706 | end crefInsertSubscriptLstLst; | ||
| 3707 | |||
| 3708 | public function crefInsertSubscriptLstLst2 | ||
| 3709 | "Helper function to crefInsertSubscriptLstLst" | ||
| 3710 | input Absyn.ComponentRef inCref; | ||
| 3711 | input list<list<Absyn.Subscript>> inSubs; | ||
| 3712 | output Absyn.ComponentRef outCref; | ||
| 3713 | algorithm | ||
| 3714 | outCref := matchcontinue(inCref,inSubs) | ||
| 3715 | local | ||
| 3716 | Absyn.ComponentRef cref, cref2; | ||
| 3717 | Absyn.Ident n; | ||
| 3718 | list<list<Absyn.Subscript>> subs; | ||
| 3719 | list<Absyn.Subscript> s; | ||
| 3720 | case (cref,{}) | ||
| 3721 | then cref; | ||
| 3722 | case (Absyn.CREF_IDENT(name = n), {s}) | ||
| 3723 | ✗ | then Absyn.CREF_IDENT(n,s); | |
| 3724 | case (Absyn.CREF_QUAL(name = n, componentRef = cref), s::subs) | ||
| 3725 | algorithm | ||
| 3726 | ✗ | cref2 := crefInsertSubscriptLstLst2(cref, subs); | |
| 3727 | ✗ | then | |
| 3728 | Absyn.CREF_QUAL(n,s,cref2); | ||
| 3729 | case (Absyn.CREF_FULLYQUALIFIED(componentRef = cref), subs) | ||
| 3730 | algorithm | ||
| 3731 | ✗ | cref2 := crefInsertSubscriptLstLst2(cref, subs); | |
| 3732 | ✗ | then | |
| 3733 | crefMakeFullyQualified(cref2); | ||
| 3734 | end matchcontinue; | ||
| 3735 | end crefInsertSubscriptLstLst2; | ||
| 3736 | |||
| 3737 | public function isCref | ||
| 3738 | input Absyn.Exp exp; | ||
| 3739 | output Boolean b; | ||
| 3740 | algorithm | ||
| 3741 | b := match exp | ||
| 3742 | case Absyn.CREF() then true; | ||
| 3743 | else false; | ||
| 3744 | end match; | ||
| 3745 | end isCref; | ||
| 3746 | |||
| 3747 | public function isTuple | ||
| 3748 | input Absyn.Exp exp; | ||
| 3749 | output Boolean b; | ||
| 3750 | algorithm | ||
| 3751 | b := match exp | ||
| 3752 | case Absyn.TUPLE(__) then true; | ||
| 3753 | else false; | ||
| 3754 | end match; | ||
| 3755 | end isTuple; | ||
| 3756 | |||
| 3757 | public function allFieldsAreCrefs | ||
| 3758 | "@author: johti | ||
| 3759 | Returns true if all fields are crefs" | ||
| 3760 | input list<Absyn.Exp> expLst; | ||
| 3761 | output Boolean b; | ||
| 3762 | algorithm | ||
| 3763 | ✗ | b := List.all(expLst, complexIsCref); | |
| 3764 | end allFieldsAreCrefs; | ||
| 3765 | |||
| 3766 | public function complexIsCref | ||
| 3767 | " @author: johti | ||
| 3768 | Returns true if everything contained | ||
| 3769 | in the tuple or a cons cell is a constant reference." | ||
| 3770 | input Absyn.Exp inExp; | ||
| 3771 | output Boolean b; | ||
| 3772 | algorithm | ||
| 3773 | b := match inExp | ||
| 3774 | ✗ | case Absyn.TUPLE(__) then allFieldsAreCrefs(inExp.expressions); | |
| 3775 | ✗ | case Absyn.CONS(__) then complexIsCref(inExp.head) and complexIsCref(inExp.rest); | |
| 3776 | ✗ | case _ then isCref(inExp); | |
| 3777 | end match; | ||
| 3778 | end complexIsCref; | ||
| 3779 | |||
| 3780 | public function isDerCref | ||
| 3781 | input Absyn.Exp exp; | ||
| 3782 | output Boolean b; | ||
| 3783 | algorithm | ||
| 3784 | b := match exp | ||
| 3785 | case Absyn.CALL(function_ = Absyn.CREF_IDENT("der",{}), | ||
| 3786 | functionArgs = Absyn.FUNCTIONARGS({Absyn.CREF()},{})) then true; | ||
| 3787 | else false; | ||
| 3788 | end match; | ||
| 3789 | end isDerCref; | ||
| 3790 | |||
| 3791 | public function isDerCrefFail | ||
| 3792 | input Absyn.Exp exp; | ||
| 3793 | algorithm | ||
| 3794 | ✗ | Absyn.CALL(function_ = Absyn.CREF_IDENT("der",{}), | |
| 3795 | functionArgs = Absyn.FUNCTIONARGS({Absyn.CREF()},{})) := exp; | ||
| 3796 | end isDerCrefFail; | ||
| 3797 | |||
| 3798 | public function getExpsFromArrayDim | ||
| 3799 | "author: adrpo | ||
| 3800 | returns all the expressions from array dimension as a list | ||
| 3801 | also returns if we have unknown dimensions in the array dimension" | ||
| 3802 | input Absyn.ArrayDim inAd; | ||
| 3803 | output Boolean hasUnknownDimensions; | ||
| 3804 | output list<Absyn.Exp> outExps; | ||
| 3805 | algorithm | ||
| 3806 | 323508 | (hasUnknownDimensions, outExps) := getExpsFromArrayDim_tail(inAd, {}); | |
| 3807 | end getExpsFromArrayDim; | ||
| 3808 | |||
| 3809 | public function getExpsFromArrayDimOpt | ||
| 3810 | "author: adrpo | ||
| 3811 | returns all the expressions from array dimension as a list | ||
| 3812 | also returns if we have unknown dimensions in the array dimension" | ||
| 3813 | input Option<Absyn.ArrayDim> inAdO; | ||
| 3814 | output Boolean hasUnknownDimensions; | ||
| 3815 | output list<Absyn.Exp> outExps; | ||
| 3816 | algorithm | ||
| 3817 | (hasUnknownDimensions, outExps) := match inAdO | ||
| 3818 | local Absyn.ArrayDim ad; | ||
| 3819 | |||
| 3820 | 372 | case NONE() then (false, {}); | |
| 3821 | ✗ | case SOME(ad) then getExpsFromArrayDim_tail(ad, {}); | |
| 3822 | end match; | ||
| 3823 | end getExpsFromArrayDimOpt; | ||
| 3824 | |||
| 3825 | public function getExpsFromArrayDim_tail | ||
| 3826 | "author: adrpo | ||
| 3827 | returns all the expressions from array dimension as a list | ||
| 3828 | also returns if we have unknown dimensions in the array dimension" | ||
| 3829 | input Absyn.ArrayDim inAd; | ||
| 3830 | input list<Absyn.Exp> inAccumulator; | ||
| 3831 | output Boolean hasUnknownDimensions; | ||
| 3832 | output list<Absyn.Exp> outExps; | ||
| 3833 | algorithm | ||
| 3834 | (hasUnknownDimensions, outExps) := match(inAd, inAccumulator) | ||
| 3835 | local | ||
| 3836 | list<Absyn.Subscript> rest; | ||
| 3837 | Absyn.Exp e; | ||
| 3838 | list<Absyn.Exp> exps, acc; | ||
| 3839 | Boolean b; | ||
| 3840 | |||
| 3841 | // handle empty list | ||
| 3842 | 323508 | case ({}, acc) then (false, listReverse(acc)); | |
| 3843 | |||
| 3844 | // handle Absyn.SUBSCRIPT | ||
| 3845 | case (Absyn.SUBSCRIPT(e)::rest, acc) | ||
| 3846 | algorithm | ||
| 3847 | 48414 | (b, exps) := getExpsFromArrayDim_tail(rest, e::acc); | |
| 3848 | then | ||
| 3849 | (b, exps); | ||
| 3850 | |||
| 3851 | // handle Absyn.NOSUB | ||
| 3852 | case (Absyn.NOSUB()::rest, acc) | ||
| 3853 | algorithm | ||
| 3854 | 1701 | (_, exps) := getExpsFromArrayDim_tail(rest, acc); | |
| 3855 | 1701 | then | |
| 3856 | (true, exps); | ||
| 3857 | end match; | ||
| 3858 | end getExpsFromArrayDim_tail; | ||
| 3859 | |||
| 3860 | public function isInputOrOutput | ||
| 3861 | "@author: adrpo | ||
| 3862 | returns true if the given direction is input or output" | ||
| 3863 | input Absyn.Direction direction; | ||
| 3864 | output Boolean isIorO "input or output only"; | ||
| 3865 | algorithm | ||
| 3866 | isIorO := match direction | ||
| 3867 | case Absyn.INPUT() then true; | ||
| 3868 | case Absyn.OUTPUT() then true; | ||
| 3869 | case Absyn.INPUT_OUTPUT() then true; | ||
| 3870 | case Absyn.BIDIR() then false; | ||
| 3871 | end match; | ||
| 3872 | end isInputOrOutput; | ||
| 3873 | |||
| 3874 | public function isInput | ||
| 3875 | input Absyn.Direction inDirection; | ||
| 3876 | output Boolean outIsInput; | ||
| 3877 | algorithm | ||
| 3878 | outIsInput := match inDirection | ||
| 3879 | case Absyn.INPUT() then true; | ||
| 3880 | case Absyn.INPUT_OUTPUT() then true; | ||
| 3881 | else false; | ||
| 3882 | end match; | ||
| 3883 | end isInput; | ||
| 3884 | |||
| 3885 | public function isOutput | ||
| 3886 | input Absyn.Direction inDirection; | ||
| 3887 | output Boolean outIsOutput; | ||
| 3888 | algorithm | ||
| 3889 | outIsOutput := match inDirection | ||
| 3890 | case Absyn.OUTPUT() then true; | ||
| 3891 | case Absyn.INPUT_OUTPUT() then true; | ||
| 3892 | else false; | ||
| 3893 | end match; | ||
| 3894 | end isOutput; | ||
| 3895 | |||
| 3896 | public function directionEqual | ||
| 3897 | input Absyn.Direction inDirection1; | ||
| 3898 | input Absyn.Direction inDirection2; | ||
| 3899 | output Boolean outEqual; | ||
| 3900 | algorithm | ||
| 3901 | outEqual := match(inDirection1, inDirection2) | ||
| 3902 | case (Absyn.BIDIR(), Absyn.BIDIR()) then true; | ||
| 3903 | case (Absyn.INPUT(), Absyn.INPUT()) then true; | ||
| 3904 | case (Absyn.OUTPUT(), Absyn.OUTPUT()) then true; | ||
| 3905 | case (Absyn.INPUT_OUTPUT(), Absyn.INPUT_OUTPUT()) then true; | ||
| 3906 | else false; | ||
| 3907 | end match; | ||
| 3908 | end directionEqual; | ||
| 3909 | |||
| 3910 | public function isFieldEqual | ||
| 3911 | input Absyn.IsField isField1; | ||
| 3912 | input Absyn.IsField isField2; | ||
| 3913 | output Boolean outEqual; | ||
| 3914 | algorithm | ||
| 3915 | outEqual := match(isField1, isField2) | ||
| 3916 | case (Absyn.NONFIELD(), Absyn.NONFIELD()) then true; | ||
| 3917 | case (Absyn.FIELD(), Absyn.FIELD()) then true; | ||
| 3918 | else false; | ||
| 3919 | end match; | ||
| 3920 | end isFieldEqual; | ||
| 3921 | |||
| 3922 | public function pathLt | ||
| 3923 | input Absyn.Path path1; | ||
| 3924 | input Absyn.Path path2; | ||
| 3925 | output Boolean lt; | ||
| 3926 | algorithm | ||
| 3927 | 130363 | lt := stringCompare(pathString(path1),pathString(path2)) < 0; | |
| 3928 | end pathLt; | ||
| 3929 | |||
| 3930 | public function pathGe | ||
| 3931 | input Absyn.Path path1; | ||
| 3932 | input Absyn.Path path2; | ||
| 3933 | output Boolean ge; | ||
| 3934 | algorithm | ||
| 3935 | 130363 | ge := not pathLt(path1,path2); | |
| 3936 | end pathGe; | ||
| 3937 | |||
| 3938 | public function getShortClass "Strips out long class definitions" | ||
| 3939 | input output Absyn.Class cl; | ||
| 3940 | algorithm | ||
| 3941 | () := match cl | ||
| 3942 | ✗ | case Absyn.CLASS(body=Absyn.PARTS()) then fail(); | |
| 3943 | ✗ | case Absyn.CLASS(body=Absyn.CLASS_EXTENDS()) then fail(); | |
| 3944 | case Absyn.CLASS() | ||
| 3945 | algorithm | ||
| 3946 | ✗ | cl.body := stripClassDefComment(cl.body); | |
| 3947 | then | ||
| 3948 | (); | ||
| 3949 | end match; | ||
| 3950 | end getShortClass; | ||
| 3951 | |||
| 3952 | protected function stripClassDefComment | ||
| 3953 | "Strips out class definition comments." | ||
| 3954 | input output Absyn.ClassDef cl; | ||
| 3955 | algorithm | ||
| 3956 | () := match cl | ||
| 3957 | ✗ | case Absyn.PARTS() algorithm cl.comment := NONE(); then (); | |
| 3958 | ✗ | case Absyn.DERIVED() algorithm cl.comment := NONE(); then (); | |
| 3959 | ✗ | case Absyn.ENUMERATION() algorithm cl.comment := NONE(); then (); | |
| 3960 | ✗ | case Absyn.OVERLOAD() algorithm cl.comment := NONE(); then (); | |
| 3961 | ✗ | case Absyn.CLASS_EXTENDS() algorithm cl.comment := NONE(); then (); | |
| 3962 | ✗ | case Absyn.PDER() algorithm cl.comment := NONE(); then (); | |
| 3963 | else (); | ||
| 3964 | end match; | ||
| 3965 | end stripClassDefComment; | ||
| 3966 | |||
| 3967 | public function getFunctionInterface "Strips out the parts of a function definition that are not needed for the interface" | ||
| 3968 | input output Absyn.Class cl; | ||
| 3969 | protected | ||
| 3970 | Absyn.ClassDef def; | ||
| 3971 | list<Absyn.ElementItem> elts; | ||
| 3972 | algorithm | ||
| 3973 | () := match cl | ||
| 3974 | case Absyn.CLASS(restriction = Absyn.R_FUNCTION(), body = def as Absyn.PARTS()) | ||
| 3975 | algorithm | ||
| 3976 | ✗ | elts as _ :: _ := List.fold(listReverse(def.classParts), getFunctionInterfaceParts, {}); | |
| 3977 | ✗ | cl.body := Absyn.PARTS(def.typeVars, def.classAttrs, {Absyn.PUBLIC(elts)}, {}, NONE()); | |
| 3978 | ✗ | cl.commentsBeforeEnd := {}; | |
| 3979 | ✗ | cl.commentsAfterEnd := {}; | |
| 3980 | then | ||
| 3981 | (); | ||
| 3982 | end match; | ||
| 3983 | end getFunctionInterface; | ||
| 3984 | |||
| 3985 | protected function getFunctionInterfaceParts | ||
| 3986 | input Absyn.ClassPart part; | ||
| 3987 | input list<Absyn.ElementItem> elts; | ||
| 3988 | output list<Absyn.ElementItem> oelts; | ||
| 3989 | algorithm | ||
| 3990 | oelts := match (part,elts) | ||
| 3991 | local | ||
| 3992 | list<Absyn.ElementItem> elts1,elts2; | ||
| 3993 | case (Absyn.PUBLIC(elts1),elts2) | ||
| 3994 | algorithm | ||
| 3995 | ✗ | elts1 := List.filterOnTrue(elts1,filterAnnotationItem); | |
| 3996 | ✗ | then listAppend(elts1,elts2); | |
| 3997 | else elts; | ||
| 3998 | end match; | ||
| 3999 | end getFunctionInterfaceParts; | ||
| 4000 | |||
| 4001 | protected function filterAnnotationItem | ||
| 4002 | input Absyn.ElementItem elt; | ||
| 4003 | output Boolean outB; | ||
| 4004 | algorithm | ||
| 4005 | outB := match elt | ||
| 4006 | case Absyn.ELEMENTITEM() then true; | ||
| 4007 | else false; | ||
| 4008 | end match; | ||
| 4009 | end filterAnnotationItem; | ||
| 4010 | |||
| 4011 | public function filterNestedClasses | ||
| 4012 | "Filter outs the nested classes from the class if any." | ||
| 4013 | input output Absyn.Class cl; | ||
| 4014 | protected | ||
| 4015 | Absyn.ClassDef def; | ||
| 4016 | algorithm | ||
| 4017 | () := match cl | ||
| 4018 | case Absyn.CLASS(body = def as Absyn.PARTS()) | ||
| 4019 | algorithm | ||
| 4020 | ✗ | def.classParts := List.fold(listReverse(def.classParts), filterNestedClassesParts, {}); | |
| 4021 | ✗ | cl.body := def; | |
| 4022 | then | ||
| 4023 | (); | ||
| 4024 | |||
| 4025 | else (); | ||
| 4026 | end match; | ||
| 4027 | end filterNestedClasses; | ||
| 4028 | |||
| 4029 | protected function filterNestedClassesParts | ||
| 4030 | "Helper funciton for filterNestedClassesParts." | ||
| 4031 | input Absyn.ClassPart classPart; | ||
| 4032 | input list<Absyn.ClassPart> inClassParts; | ||
| 4033 | output list<Absyn.ClassPart> outClassPart; | ||
| 4034 | algorithm | ||
| 4035 | outClassPart := match (classPart, inClassParts) | ||
| 4036 | local | ||
| 4037 | list<Absyn.ClassPart> classParts; | ||
| 4038 | list<Absyn.ElementItem> elts; | ||
| 4039 | case (Absyn.PUBLIC(elts), classParts) | ||
| 4040 | algorithm | ||
| 4041 | ✗ | classPart.contents := List.filterOnFalse(elts, isElementItemClass); | |
| 4042 | then classPart::classParts; | ||
| 4043 | case (Absyn.PROTECTED(elts), classParts) | ||
| 4044 | algorithm | ||
| 4045 | ✗ | classPart.contents := List.filterOnFalse(elts, isElementItemClass); | |
| 4046 | then classPart::classParts; | ||
| 4047 | else classPart::inClassParts; | ||
| 4048 | end match; | ||
| 4049 | end filterNestedClassesParts; | ||
| 4050 | |||
| 4051 | public function getExternalDecl | ||
| 4052 | "@author: adrpo | ||
| 4053 | returns the Absyn.EXTERNAL form parts if there is any. | ||
| 4054 | if there is none, it fails!" | ||
| 4055 | input Absyn.Class inCls; | ||
| 4056 | output Absyn.ClassPart outExternal; | ||
| 4057 | protected | ||
| 4058 | list<Absyn.ClassPart> class_parts; | ||
| 4059 | algorithm | ||
| 4060 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 4 times.
|
4 | Absyn.CLASS(body = Absyn.PARTS(classParts = class_parts)) := inCls; |
| 4061 | 4 | outExternal := List.find(class_parts, isExternalPart); | |
| 4062 | end getExternalDecl; | ||
| 4063 | |||
| 4064 | public function isExternalPart | ||
| 4065 | input Absyn.ClassPart inClassPart; | ||
| 4066 | output Boolean outFound; | ||
| 4067 | algorithm | ||
| 4068 | outFound := match inClassPart | ||
| 4069 | case Absyn.EXTERNAL() then true; | ||
| 4070 | else false; | ||
| 4071 | end match; | ||
| 4072 | end isExternalPart; | ||
| 4073 | |||
| 4074 | public function isParts | ||
| 4075 | input Absyn.ClassDef cl; | ||
| 4076 | output Boolean b; | ||
| 4077 | algorithm | ||
| 4078 | b := match cl | ||
| 4079 | case Absyn.PARTS() then true; | ||
| 4080 | else false; | ||
| 4081 | end match; | ||
| 4082 | end isParts; | ||
| 4083 | |||
| 4084 | public function makeClassElement "Makes a class into an Absyn.ElementItem" | ||
| 4085 | input Absyn.Class cl; | ||
| 4086 | output Absyn.ElementItem el; | ||
| 4087 | protected | ||
| 4088 | Absyn.Info info; | ||
| 4089 | Boolean fp; | ||
| 4090 | algorithm | ||
| 4091 | 1251774 | Absyn.CLASS(finalPrefix = fp, info = info) := cl; | |
| 4092 |
1/2✓ Branch 1 taken 1251774 times.
✗ Branch 2 not taken.
|
2503548 | el := Absyn.ELEMENTITEM(Absyn.ELEMENT(fp,NONE(),Absyn.NOT_INNER_OUTER(),Absyn.CLASSDEF(false,cl),info,NONE())); |
| 4093 | end makeClassElement; | ||
| 4094 | |||
| 4095 | public function componentName | ||
| 4096 | input Absyn.ComponentItem c; | ||
| 4097 | output String name; | ||
| 4098 | algorithm | ||
| 4099 | 14433 | Absyn.COMPONENTITEM(component=Absyn.COMPONENT(name=name)) := c; | |
| 4100 | end componentName; | ||
| 4101 | |||
| 4102 | public function expContainsInitial | ||
| 4103 | "@author: | ||
| 4104 | returns true if expression contains initial()" | ||
| 4105 | input Absyn.Exp inExp; | ||
| 4106 | output Boolean hasInitial; | ||
| 4107 | algorithm | ||
| 4108 | hasInitial := matchcontinue inExp | ||
| 4109 | local Boolean b; | ||
| 4110 | case _ | ||
| 4111 | algorithm | ||
| 4112 | 115 | (_, b) := traverseExp(inExp, isInitialTraverseHelper, false); | |
| 4113 | then | ||
| 4114 | b; | ||
| 4115 | else false; | ||
| 4116 | end matchcontinue; | ||
| 4117 | end expContainsInitial; | ||
| 4118 | |||
| 4119 | protected function isInitialTraverseHelper | ||
| 4120 | "@author: | ||
| 4121 | returns true if expression is initial()" | ||
| 4122 | input Absyn.Exp inExp; | ||
| 4123 | input Boolean inBool; | ||
| 4124 | output Absyn.Exp outExp; | ||
| 4125 | output Boolean outBool; | ||
| 4126 | algorithm | ||
| 4127 | (outExp,outBool) := match inExp | ||
| 4128 | local Absyn.Exp e; Boolean b; | ||
| 4129 | |||
| 4130 | // make sure we don't have not initial() | ||
| 4131 | case Absyn.UNARY(Absyn.NOT(), _) then (inExp,inBool); | ||
| 4132 | // we have initial | ||
| 4133 | case e | ||
| 4134 | algorithm | ||
| 4135 | 665 | b := isInitial(e); | |
| 4136 | then (e, b); | ||
| 4137 | else (inExp,inBool); | ||
| 4138 | end match; | ||
| 4139 | end isInitialTraverseHelper; | ||
| 4140 | |||
| 4141 | public function isInitial | ||
| 4142 | "@author: | ||
| 4143 | returns true if expression is initial()" | ||
| 4144 | input Absyn.Exp inExp; | ||
| 4145 | output Boolean hasReinit; | ||
| 4146 | algorithm | ||
| 4147 | hasReinit := match inExp | ||
| 4148 | case Absyn.CALL(function_ = Absyn.CREF_IDENT("initial", _)) then true; | ||
| 4149 | case Absyn.CALL(function_ = Absyn.CREF_FULLYQUALIFIED(Absyn.CREF_IDENT("initial", _))) then true; | ||
| 4150 | else false; | ||
| 4151 | end match; | ||
| 4152 | end isInitial; | ||
| 4153 | |||
| 4154 | public function importPath | ||
| 4155 | "Return the path of the given import." | ||
| 4156 | input Absyn.Import inImport; | ||
| 4157 | output Absyn.Path outPath; | ||
| 4158 | algorithm | ||
| 4159 | outPath := match inImport | ||
| 4160 | local | ||
| 4161 | Absyn.Path path; | ||
| 4162 | |||
| 4163 | case Absyn.NAMED_IMPORT(path = path) then path; | ||
| 4164 | case Absyn.QUAL_IMPORT(path = path) then path; | ||
| 4165 | case Absyn.UNQUAL_IMPORT(path = path) then path; | ||
| 4166 | case Absyn.GROUP_IMPORT(prefix = path) then path; | ||
| 4167 | |||
| 4168 | end match; | ||
| 4169 | end importPath; | ||
| 4170 | |||
| 4171 | public function setImportPath | ||
| 4172 | input output Absyn.Import imp; | ||
| 4173 | input Absyn.Path path; | ||
| 4174 | algorithm | ||
| 4175 | () := match imp | ||
| 4176 | ✗ | case Absyn.NAMED_IMPORT() algorithm imp.path := path; then (); | |
| 4177 | ✗ | case Absyn.QUAL_IMPORT() algorithm imp.path := path; then (); | |
| 4178 | ✗ | case Absyn.UNQUAL_IMPORT() algorithm imp.path := path; then (); | |
| 4179 | ✗ | case Absyn.GROUP_IMPORT() algorithm imp.prefix := path; then (); | |
| 4180 | end match; | ||
| 4181 | end setImportPath; | ||
| 4182 | |||
| 4183 | public function importName | ||
| 4184 | "Returns the import name of a named or qualified import." | ||
| 4185 | input Absyn.Import inImport; | ||
| 4186 | output Absyn.Ident outName; | ||
| 4187 | algorithm | ||
| 4188 | outName := match inImport | ||
| 4189 | // Named import has a given name, 'import D = A.B.C' => D. | ||
| 4190 | 942 | case Absyn.NAMED_IMPORT() then inImport.name; | |
| 4191 | // Qualified import uses the last identifier, 'import A.B.C' => C. | ||
| 4192 | 11597 | case Absyn.QUAL_IMPORT() then pathLastIdent(inImport.path); | |
| 4193 | end match; | ||
| 4194 | end importName; | ||
| 4195 | |||
| 4196 | public function mergeAnnotationsList | ||
| 4197 | input Absyn.Annotation oldAnnotation; | ||
| 4198 | input list<Absyn.Annotation> newAnnotations; | ||
| 4199 | output Absyn.Annotation outAnnotation = oldAnnotation; | ||
| 4200 | algorithm | ||
| 4201 |
2/2✓ Branch 0 taken 52 times.
✓ Branch 1 taken 54 times.
|
106 | for ann in newAnnotations loop |
| 4202 | 52 | outAnnotation := mergeAnnotations(ann, outAnnotation); | |
| 4203 | end for; | ||
| 4204 | end mergeAnnotationsList; | ||
| 4205 | |||
| 4206 | public function mergeAnnotations | ||
| 4207 | "Merges an old annotation with a new. If mergeSubMods is true it merges the | ||
| 4208 | annotations recursively, otherwise it only merges the first level of the | ||
| 4209 | annotation. Example: | ||
| 4210 | mergeAnnotations(a(x = 1, y = 2), a(x = 3)) => | ||
| 4211 | mergeSubMods = false: a(x = 3) | ||
| 4212 | mergeSubMods = true: a(x = 3, y = 2) | ||
| 4213 | |||
| 4214 | If mergeEqMods is true it tries to concatenate binding equation expression | ||
| 4215 | such as Icon/Diagram graphics arrays, otherwise the new binding overwrites | ||
| 4216 | the old one. | ||
| 4217 | " | ||
| 4218 | input Absyn.Annotation oldAnnotation; | ||
| 4219 | input Absyn.Annotation newAnnotation; | ||
| 4220 | input Boolean mergeSubMods = false; | ||
| 4221 | input Boolean mergeEqMods = false; | ||
| 4222 | output Absyn.Annotation outAnnotation; | ||
| 4223 | algorithm | ||
| 4224 | outAnnotation := match (oldAnnotation, newAnnotation) | ||
| 4225 | case (Absyn.ANNOTATION(elementArgs = {}), _) then newAnnotation; | ||
| 4226 | case (_, Absyn.ANNOTATION(elementArgs = {})) then oldAnnotation; | ||
| 4227 | 52 | else Absyn.ANNOTATION(mergeAnnotations2(oldAnnotation.elementArgs, newAnnotation.elementArgs, | |
| 4228 | mergeSubMods, mergeEqMods)); | ||
| 4229 | end match; | ||
| 4230 | end mergeAnnotations; | ||
| 4231 | |||
| 4232 | protected function mergeAnnotations2 | ||
| 4233 | input list<Absyn.ElementArg> oldArgs; | ||
| 4234 | input list<Absyn.ElementArg> newArgs; | ||
| 4235 | input Boolean mergeSubMods = false; | ||
| 4236 | input Boolean mergeEqMods = false; | ||
| 4237 | output list<Absyn.ElementArg> outArgs = oldArgs; | ||
| 4238 | protected | ||
| 4239 | Boolean found; | ||
| 4240 | list<Absyn.ElementArg> new_args = {}; | ||
| 4241 | algorithm | ||
| 4242 |
2/2✓ Branch 0 taken 216 times.
✓ Branch 1 taken 207 times.
|
423 | for arg in newArgs loop |
| 4243 | // Try to merge the annotation with an existing one. | ||
| 4244 |
1/4✗ Branch 2 not taken.
✓ Branch 3 taken 216 times.
✗ Branch 4 not taken.
✗ Branch 5 not taken.
|
216 | (outArgs, found) := List.findAndMap(outArgs, |
| 4245 | function isModificationOfPath(path = elementArgName(arg)), | ||
| 4246 | if mergeSubMods then | ||
| 4247 | function mergeAnnotations3(newArg = arg, mergeEqMods = mergeEqMods) else | ||
| 4248 | function subModsInSameOrder(newmod = arg)); | ||
| 4249 | |||
| 4250 |
2/2✓ Branch 0 taken 71 times.
✓ Branch 1 taken 145 times.
|
216 | if not found then |
| 4251 | new_args := arg :: new_args; | ||
| 4252 | end if; | ||
| 4253 | end for; | ||
| 4254 | |||
| 4255 | // Add any completely new annotations to the end of the list. | ||
| 4256 | 207 | outArgs := listAppend(outArgs, listReverseInPlace(new_args)) annotation(__OpenModelica_DisableListAppendWarning = true); | |
| 4257 | end mergeAnnotations2; | ||
| 4258 | |||
| 4259 | protected function mergeAnnotations3 | ||
| 4260 | input Absyn.ElementArg oldArg; | ||
| 4261 | input Absyn.ElementArg newArg; | ||
| 4262 | input Boolean mergeEqMods; | ||
| 4263 | output Absyn.ElementArg outArg; | ||
| 4264 | protected | ||
| 4265 | list<Absyn.ElementArg> old_args, new_args; | ||
| 4266 | Absyn.EqMod old_eq, new_eq; | ||
| 4267 | Option<String> cmt; | ||
| 4268 | algorithm | ||
| 4269 | outArg := match (oldArg, newArg) | ||
| 4270 | case (Absyn.ElementArg.MODIFICATION(modification = NONE()), _) then newArg; | ||
| 4271 | case (_, Absyn.ElementArg.MODIFICATION(modification = NONE())) then oldArg; | ||
| 4272 | case (Absyn.ElementArg.MODIFICATION(modification = SOME(Absyn.Modification.CLASSMOD(old_args, old_eq))), | ||
| 4273 | Absyn.ElementArg.MODIFICATION(modification = SOME(Absyn.Modification.CLASSMOD(new_args, new_eq)))) | ||
| 4274 | algorithm | ||
| 4275 | ✗ | new_eq := mergeAnnotationEqMods(old_eq, new_eq, mergeEqMods); | |
| 4276 | ✗ | new_args := mergeAnnotations2(old_args, new_args, true, mergeEqMods); | |
| 4277 | ✗ | cmt := if isSome(newArg.comment) then newArg.comment else oldArg.comment; | |
| 4278 | ✗ | then | |
| 4279 | Absyn.ElementArg.MODIFICATION(false, Absyn.NON_EACH(), oldArg.path, | ||
| 4280 | SOME(Absyn.Modification.CLASSMOD(new_args, new_eq)), cmt, oldArg.info); | ||
| 4281 | else newArg; | ||
| 4282 | end match; | ||
| 4283 | end mergeAnnotations3; | ||
| 4284 | |||
| 4285 | protected function mergeAnnotationEqMods | ||
| 4286 | input Absyn.EqMod oldEq; | ||
| 4287 | input Absyn.EqMod newEq; | ||
| 4288 | input Boolean mergeExpressions = false; | ||
| 4289 | output Absyn.EqMod outEq; | ||
| 4290 | protected | ||
| 4291 | Absyn.Exp new_exp, old_exp; | ||
| 4292 | algorithm | ||
| 4293 | outEq := match (oldEq, newEq) | ||
| 4294 | case (Absyn.EqMod.NOMOD(), _) then newEq; | ||
| 4295 | case (_, Absyn.EqMod.NOMOD()) then oldEq; | ||
| 4296 | case (Absyn.EqMod.EQMOD(exp = old_exp), Absyn.EqMod.EQMOD(exp = new_exp)) | ||
| 4297 | guard mergeExpressions | ||
| 4298 | algorithm | ||
| 4299 | new_exp := match (old_exp, new_exp) | ||
| 4300 | case (Absyn.Exp.ARRAY(arrayExp = Absyn.Exp.CALL() :: _), | ||
| 4301 | Absyn.Exp.ARRAY(arrayExp = Absyn.Exp.CALL() :: _)) | ||
| 4302 | ✗ | then Absyn.Exp.ARRAY(listAppend(old_exp.arrayExp, new_exp.arrayExp)); | |
| 4303 | else new_exp; | ||
| 4304 | end match; | ||
| 4305 | ✗ | then | |
| 4306 | Absyn.EqMod.EQMOD(new_exp, newEq.info); | ||
| 4307 | else newEq; | ||
| 4308 | end match; | ||
| 4309 | end mergeAnnotationEqMods; | ||
| 4310 | |||
| 4311 | public function mergeCommentAnnotation | ||
| 4312 | "Merges an annotation into a Absyn.Comment option." | ||
| 4313 | input Absyn.Annotation inAnnotation; | ||
| 4314 | input Option<Absyn.Comment> inComment; | ||
| 4315 | output Option<Absyn.Comment> outComment; | ||
| 4316 | algorithm | ||
| 4317 | outComment := match inComment | ||
| 4318 | local | ||
| 4319 | Absyn.Annotation ann; | ||
| 4320 | Option<String> cmt; | ||
| 4321 | |||
| 4322 | // No comment, create a new one. | ||
| 4323 | case NONE() | ||
| 4324 | ✗ | then SOME(Absyn.COMMENT(SOME(inAnnotation), NONE())); | |
| 4325 | |||
| 4326 | // A comment without annotation, insert the annotation. | ||
| 4327 | case SOME(Absyn.COMMENT(annotation_ = NONE(), comment = cmt)) | ||
| 4328 | ✗ | then SOME(Absyn.COMMENT(SOME(inAnnotation), cmt)); | |
| 4329 | |||
| 4330 | // A comment with annotation, merge the annotations. | ||
| 4331 | case SOME(Absyn.COMMENT(annotation_ = SOME(ann), comment = cmt)) | ||
| 4332 | ✗ | then SOME(Absyn.COMMENT(SOME(mergeAnnotations(ann, inAnnotation)), cmt)); | |
| 4333 | |||
| 4334 | end match; | ||
| 4335 | end mergeCommentAnnotation; | ||
| 4336 | |||
| 4337 | public function mergeModifiers | ||
| 4338 | "Merges two modifiers, with the outer modifiers overwriting the inner one." | ||
| 4339 | input Absyn.Modification outerMod; | ||
| 4340 | input Absyn.Modification innerMod; | ||
| 4341 | output Absyn.Modification outMod; | ||
| 4342 | algorithm | ||
| 4343 | 19 | outMod := Absyn.Modification.CLASSMOD( | |
| 4344 | mergeAnnotations2(innerMod.elementArgLst, outerMod.elementArgLst), | ||
| 4345 | mergeEqMods(outerMod.eqMod, innerMod.eqMod) | ||
| 4346 | ); | ||
| 4347 | end mergeModifiers; | ||
| 4348 | |||
| 4349 | public function mergeEqMods | ||
| 4350 | input Absyn.EqMod outerEqMod; | ||
| 4351 | input Absyn.EqMod innerEqMod; | ||
| 4352 | output Absyn.EqMod outEqMod; | ||
| 4353 | algorithm | ||
| 4354 | outEqMod := match outerEqMod | ||
| 4355 | case Absyn.EqMod.EQMOD() then outerEqMod; | ||
| 4356 | else innerEqMod; | ||
| 4357 | end match; | ||
| 4358 | end mergeEqMods; | ||
| 4359 | |||
| 4360 | function isModificationOfPath | ||
| 4361 | "returns true or false if the given path is in the list of modifications" | ||
| 4362 | input Absyn.ElementArg mod; | ||
| 4363 | input Absyn.Path path; | ||
| 4364 | output Boolean yes; | ||
| 4365 | algorithm | ||
| 4366 | yes := match (mod,path) | ||
| 4367 | local | ||
| 4368 | String id1,id2; | ||
| 4369 |
4/4✓ Branch 0 taken 237 times.
✓ Branch 1 taken 222 times.
✓ Branch 3 taken 9 times.
✓ Branch 4 taken 228 times.
|
459 | case (Absyn.MODIFICATION(path = Absyn.IDENT(name = id1)),Absyn.IDENT(name = id2)) then id1==id2; |
| 4370 | else false; | ||
| 4371 | end match; | ||
| 4372 | end isModificationOfPath; | ||
| 4373 | |||
| 4374 | function subModsInSameOrder | ||
| 4375 | input Absyn.ElementArg oldmod; | ||
| 4376 | input Absyn.ElementArg newmod; | ||
| 4377 | output Absyn.ElementArg mod; | ||
| 4378 | algorithm | ||
| 4379 | mod := match (oldmod,newmod) | ||
| 4380 | local | ||
| 4381 | list<Absyn.ElementArg> args1,args2,res; | ||
| 4382 | Absyn.ElementArg arg2; | ||
| 4383 | Absyn.EqMod eq2; | ||
| 4384 | Absyn.Path p; | ||
| 4385 | |||
| 4386 | // mod1 or mod2 has no submods | ||
| 4387 | case (_, Absyn.MODIFICATION(modification=NONE())) then newmod; | ||
| 4388 | case (Absyn.MODIFICATION(modification=NONE()), _) then newmod; | ||
| 4389 | // mod1 | ||
| 4390 | case (Absyn.MODIFICATION(modification=SOME(Absyn.CLASSMOD(args1,_))), arg2 as Absyn.MODIFICATION(modification=SOME(Absyn.CLASSMOD(args2,eq2)))) | ||
| 4391 | algorithm | ||
| 4392 | // Delete all items from args2 that are not in args1 | ||
| 4393 | res := {}; | ||
| 4394 |
2/2✓ Branch 0 taken 107 times.
✓ Branch 1 taken 136 times.
|
243 | for arg1 in args1 loop |
| 4395 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 107 times.
|
107 | Absyn.MODIFICATION(path=p) := arg1; |
| 4396 |
2/2✓ Branch 3 taken 83 times.
✓ Branch 4 taken 24 times.
|
107 | if List.any(args2, function isModificationOfPath(path=p)) then |
| 4397 | res := arg1::res; | ||
| 4398 | end if; | ||
| 4399 | end for; | ||
| 4400 | 136 | res := listReverse(res); | |
| 4401 | // Merge the annotations | ||
| 4402 | 136 | res := mergeAnnotations2(res, args2); | |
| 4403 | 272 | arg2.modification := SOME(Absyn.CLASSMOD(res,eq2)); | |
| 4404 | then arg2; | ||
| 4405 | end match; | ||
| 4406 | end subModsInSameOrder; | ||
| 4407 | |||
| 4408 | public function annotationToElementArgs | ||
| 4409 | input Absyn.Annotation ann; | ||
| 4410 | output list<Absyn.ElementArg> args; | ||
| 4411 | algorithm | ||
| 4412 | 9050 | Absyn.ANNOTATION(args) := ann; | |
| 4413 | end annotationToElementArgs; | ||
| 4414 | |||
| 4415 | public function pathToTypeSpec | ||
| 4416 | input Absyn.Path inPath; | ||
| 4417 | output Absyn.TypeSpec outTypeSpec; | ||
| 4418 | algorithm | ||
| 4419 | ✗ | outTypeSpec := Absyn.TPATH(inPath, NONE()); | |
| 4420 | end pathToTypeSpec; | ||
| 4421 | |||
| 4422 | public function typeSpecString | ||
| 4423 | input Absyn.TypeSpec inTs; | ||
| 4424 | output String outStr; | ||
| 4425 | algorithm | ||
| 4426 | ✗ | outStr := Dump.unparseTypeSpec(inTs); | |
| 4427 | end typeSpecString; | ||
| 4428 | |||
| 4429 | public function crefString | ||
| 4430 | input Absyn.ComponentRef inCr; | ||
| 4431 | output String outStr; | ||
| 4432 | algorithm | ||
| 4433 | 928 | outStr := Dump.printComponentRefStr(inCr); | |
| 4434 | end crefString; | ||
| 4435 | |||
| 4436 | public function typeSpecStringNoQualNoDims | ||
| 4437 | input Absyn.TypeSpec inTs; | ||
| 4438 | output String outStr; | ||
| 4439 | algorithm | ||
| 4440 | outStr := match inTs | ||
| 4441 | local | ||
| 4442 | Absyn.Ident str1,str2; | ||
| 4443 | Absyn.Path path; | ||
| 4444 | list<Absyn.TypeSpec> typeSpecLst; | ||
| 4445 | |||
| 4446 | case Absyn.TPATH(path = path) | ||
| 4447 | ✗ | then pathString(makeNotFullyQualified(path)); | |
| 4448 | |||
| 4449 | case Absyn.TCOMPLEX(path = path,typeSpecs = typeSpecLst) | ||
| 4450 | algorithm | ||
| 4451 | ✗ | str1 := pathString(makeNotFullyQualified(path)); | |
| 4452 | ✗ | str2 := typeSpecStringNoQualNoDimsLst(typeSpecLst); | |
| 4453 | ✗ | then | |
| 4454 | stringAppendList({str1,"<",str2,">"}); | ||
| 4455 | |||
| 4456 | end match; | ||
| 4457 | end typeSpecStringNoQualNoDims; | ||
| 4458 | |||
| 4459 | public function typeSpecStringNoQualNoDimsLst | ||
| 4460 | input list<Absyn.TypeSpec> inTypeSpecLst; | ||
| 4461 | output String outString; | ||
| 4462 | algorithm | ||
| 4463 | ✗ | outString := List.toStringCustom(inTypeSpecLst, typeSpecStringNoQualNoDims, | |
| 4464 | "", "", ", ", "", false); | ||
| 4465 | end typeSpecStringNoQualNoDimsLst; | ||
| 4466 | |||
| 4467 | public function crefStringIgnoreSubs | ||
| 4468 | input Absyn.ComponentRef inCr; | ||
| 4469 | output String outStr; | ||
| 4470 | protected | ||
| 4471 | Absyn.Path p; | ||
| 4472 | algorithm | ||
| 4473 | ✗ | p := crefToPathIgnoreSubs(inCr); | |
| 4474 | ✗ | outStr := pathString(makeNotFullyQualified(p)); | |
| 4475 | end crefStringIgnoreSubs; | ||
| 4476 | |||
| 4477 | public function importString | ||
| 4478 | input Absyn.Import inImp; | ||
| 4479 | output String outStr; | ||
| 4480 | algorithm | ||
| 4481 | ✗ | outStr := Dump.unparseImportStr(inImp); | |
| 4482 | end importString; | ||
| 4483 | |||
| 4484 | public function refString | ||
| 4485 | "@author: adrpo | ||
| 4486 | full Absyn.Ref -> string | ||
| 4487 | cref/path full qualified, type dims, subscripts in crefs" | ||
| 4488 | input Absyn.Ref inRef; | ||
| 4489 | output String outStr; | ||
| 4490 | algorithm | ||
| 4491 | outStr := match inRef | ||
| 4492 | ✗ | case Absyn.RCR() then crefString(inRef.cr); | |
| 4493 | ✗ | case Absyn.RTS() then typeSpecString(inRef.ts); | |
| 4494 | ✗ | case Absyn.RIM() then importString(inRef.im); | |
| 4495 | end match; | ||
| 4496 | end refString; | ||
| 4497 | |||
| 4498 | public function refStringBrief | ||
| 4499 | "@author: adrpo | ||
| 4500 | brief Absyn.Ref -> string | ||
| 4501 | no cref/path full qualified, no type dims, no subscripts in crefs" | ||
| 4502 | input Absyn.Ref inRef; | ||
| 4503 | output String outStr; | ||
| 4504 | algorithm | ||
| 4505 | outStr := match inRef | ||
| 4506 | ✗ | case Absyn.RCR() then crefStringIgnoreSubs(inRef.cr); | |
| 4507 | ✗ | case Absyn.RTS() then typeSpecStringNoQualNoDims(inRef.ts); | |
| 4508 | ✗ | case Absyn.RIM() then importString(inRef.im); | |
| 4509 | end match; | ||
| 4510 | end refStringBrief; | ||
| 4511 | |||
| 4512 | public function getArrayDimOptAsList | ||
| 4513 | input Option<Absyn.ArrayDim> inArrayDim; | ||
| 4514 | output Absyn.ArrayDim outArrayDim; | ||
| 4515 | algorithm | ||
| 4516 | outArrayDim := match inArrayDim | ||
| 4517 | local Absyn.ArrayDim ad; | ||
| 4518 | case SOME(ad) then ad; | ||
| 4519 | else {}; | ||
| 4520 | end match; | ||
| 4521 | end getArrayDimOptAsList; | ||
| 4522 | |||
| 4523 | public function removeCrefFromCrefs | ||
| 4524 | "Removes a variable from a variable list" | ||
| 4525 | input list<Absyn.ComponentRef> inAbsynComponentRefLst; | ||
| 4526 | input Absyn.ComponentRef inComponentRef; | ||
| 4527 | output list<Absyn.ComponentRef> outAbsynComponentRefLst; | ||
| 4528 | algorithm | ||
| 4529 | outAbsynComponentRefLst := matchcontinue (inAbsynComponentRefLst,inComponentRef) | ||
| 4530 | local | ||
| 4531 | String n1,n2; | ||
| 4532 | list<Absyn.ComponentRef> rest; | ||
| 4533 | Absyn.ComponentRef cr1,cr2; | ||
| 4534 | case ({},_) then {}; | ||
| 4535 | case ((cr1 :: rest),cr2) | ||
| 4536 | algorithm | ||
| 4537 |
3/4✓ Branch 0 taken 2504 times.
✓ Branch 1 taken 2543 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 2543 times.
|
5047 | Absyn.CREF_IDENT(name = n1,subscripts = {}) := cr1; |
| 4538 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 2543 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 2543 times.
|
2543 | Absyn.CREF_IDENT(name = n2,subscripts = {}) := cr2; |
| 4539 |
4/4✓ Branch 0 taken 42 times.
✓ Branch 1 taken 2501 times.
✓ Branch 3 taken 13 times.
✓ Branch 4 taken 29 times.
|
2543 | true := stringEq(n1, n2); |
| 4540 | 13 | then | |
| 4541 | |||
| 4542 | removeCrefFromCrefs(rest, cr2); | ||
| 4543 | case ((cr1 :: rest),cr2) // If modifier like on comp like: T t(x=t.y) => t.y must be removed | ||
| 4544 | algorithm | ||
| 4545 |
2/2✓ Branch 0 taken 2530 times.
✓ Branch 1 taken 2504 times.
|
5034 | Absyn.CREF_QUAL(name = n1) := cr1; |
| 4546 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 2504 times.
|
2504 | Absyn.CREF_IDENT(name = n2) := cr2; |
| 4547 |
3/4✓ Branch 0 taken 2487 times.
✓ Branch 1 taken 17 times.
✗ Branch 3 not taken.
✓ Branch 4 taken 2487 times.
|
2504 | true := stringEq(n1, n2); |
| 4548 | 2487 | then | |
| 4549 | removeCrefFromCrefs(rest, cr2); | ||
| 4550 | |||
| 4551 | case ((cr1 :: rest),cr2) | ||
| 4552 | algorithm | ||
| 4553 | 2547 | rest := removeCrefFromCrefs(rest, cr2); | |
| 4554 | then | ||
| 4555 | (cr1 :: rest); | ||
| 4556 | end matchcontinue; | ||
| 4557 | end removeCrefFromCrefs; | ||
| 4558 | |||
| 4559 | public function lookupClassAnnotation | ||
| 4560 | "Looks up the modifier for a specific annotation in the given class." | ||
| 4561 | input Absyn.Class cls; | ||
| 4562 | input String name; | ||
| 4563 | output Option<Absyn.Modification> outMod; | ||
| 4564 | algorithm | ||
| 4565 | 3079 | outMod := lookupClassDefAnnotation(cls.body, name); | |
| 4566 | end lookupClassAnnotation; | ||
| 4567 | |||
| 4568 | public function lookupClassDefAnnotation | ||
| 4569 | "Looks up the modifier for a specific annotation in the given class definition." | ||
| 4570 | input Absyn.ClassDef cdef; | ||
| 4571 | input String name; | ||
| 4572 | output Option<Absyn.Modification> outMod = NONE(); | ||
| 4573 | protected | ||
| 4574 | Absyn.Annotation ann; | ||
| 4575 | algorithm | ||
| 4576 | outMod := match cdef | ||
| 4577 | 3065 | case Absyn.PARTS() then List.findSome(cdef.ann, function lookupAnnotation(name = name)); | |
| 4578 | ✗ | case Absyn.CLASS_EXTENDS() then List.findSome(cdef.ann, function lookupAnnotation(name = name)); | |
| 4579 | 14 | case Absyn.DERIVED() then lookupCommentOptAnnotation(cdef.comment, name); | |
| 4580 | ✗ | case Absyn.ENUMERATION() then lookupCommentOptAnnotation(cdef.comment, name); | |
| 4581 | ✗ | case Absyn.OVERLOAD() then lookupCommentOptAnnotation(cdef.comment, name); | |
| 4582 | ✗ | case Absyn.PDER() then lookupCommentOptAnnotation(cdef.comment, name); | |
| 4583 | else NONE(); | ||
| 4584 | end match; | ||
| 4585 | end lookupClassDefAnnotation; | ||
| 4586 | |||
| 4587 | function lookupCommentOptAnnotation | ||
| 4588 | "Looks up the modifier for a specific annotation in the given optional comment." | ||
| 4589 | input Option<Absyn.Comment> cmt; | ||
| 4590 | input String name; | ||
| 4591 | output Option<Absyn.Modification> outMod; | ||
| 4592 | protected | ||
| 4593 | Absyn.Annotation ann; | ||
| 4594 | algorithm | ||
| 4595 | outMod := match cmt | ||
| 4596 | 5 | case SOME(Absyn.COMMENT(annotation_ = SOME(ann))) then lookupAnnotation(ann, name); | |
| 4597 | else NONE(); | ||
| 4598 | end match; | ||
| 4599 | end lookupCommentOptAnnotation; | ||
| 4600 | |||
| 4601 | function lookupAnnotation | ||
| 4602 | "Looks up the modifier for a specific annotation." | ||
| 4603 | input Absyn.Annotation ann; | ||
| 4604 | input String name; | ||
| 4605 | output Option<Absyn.Modification> outMod = NONE(); | ||
| 4606 | algorithm | ||
| 4607 |
2/2✓ Branch 0 taken 1777 times.
✓ Branch 1 taken 893 times.
|
2670 | for m in ann.elementArgs loop |
| 4608 | outMod := match m | ||
| 4609 | case Absyn.MODIFICATION() | ||
| 4610 | guard pathFirstIdent(m.path) == name | ||
| 4611 | 488 | then m.modification; | |
| 4612 | |||
| 4613 | else outMod; | ||
| 4614 | end match; | ||
| 4615 | |||
| 4616 |
3/4✗ Branch 0 not taken.
✓ Branch 1 taken 1777 times.
✓ Branch 2 taken 1289 times.
✓ Branch 3 taken 488 times.
|
1777 | if isSome(outMod) then |
| 4617 | break; | ||
| 4618 | end if; | ||
| 4619 | end for; | ||
| 4620 | end lookupAnnotation; | ||
| 4621 | |||
| 4622 | public function getNamedAnnotationInClass<T> | ||
| 4623 | "Retrieve e.g. the documentation annotation as a string from the class passed as argument." | ||
| 4624 | input Absyn.Class inClass; | ||
| 4625 | input Absyn.Path id; | ||
| 4626 | input ModFunc f; | ||
| 4627 | output Option<T> outString; | ||
| 4628 | partial function ModFunc | ||
| 4629 | input Option<Absyn.Modification> mod; | ||
| 4630 | output T docStr; | ||
| 4631 | end ModFunc; | ||
| 4632 | algorithm | ||
| 4633 | outString := matchcontinue inClass | ||
| 4634 | local | ||
| 4635 | list<Absyn.ElementArg> annlst; | ||
| 4636 | list<Absyn.Annotation> ann; | ||
| 4637 | |||
| 4638 | case Absyn.CLASS(body = Absyn.PARTS(ann = ann)) | ||
| 4639 | algorithm | ||
| 4640 | 19459 | annlst := List.flatten(List.map(ann,annotationToElementArgs)); | |
| 4641 | 19459 | then | |
| 4642 | getNamedAnnotationStr(annlst,id,f); | ||
| 4643 | |||
| 4644 | case Absyn.CLASS(body = Absyn.CLASS_EXTENDS(ann = ann)) | ||
| 4645 | algorithm | ||
| 4646 | ✗ | annlst := List.flatten(List.map(ann,annotationToElementArgs)); | |
| 4647 | ✗ | then | |
| 4648 | getNamedAnnotationStr(annlst,id,f); | ||
| 4649 | |||
| 4650 | case Absyn.CLASS(body = Absyn.DERIVED(comment = SOME(Absyn.COMMENT(SOME(Absyn.ANNOTATION(annlst)),_)))) | ||
| 4651 | 17 | then getNamedAnnotationStr(annlst,id,f); | |
| 4652 | |||
| 4653 | case Absyn.CLASS(body = Absyn.ENUMERATION(comment = SOME(Absyn.COMMENT(SOME(Absyn.ANNOTATION(annlst)),_)))) | ||
| 4654 | ✗ | then getNamedAnnotationStr(annlst,id,f); | |
| 4655 | |||
| 4656 | case Absyn.CLASS(body = Absyn.OVERLOAD(comment = SOME(Absyn.COMMENT(SOME(Absyn.ANNOTATION(annlst)),_)))) | ||
| 4657 | ✗ | then getNamedAnnotationStr(annlst,id,f); | |
| 4658 | |||
| 4659 | else NONE(); | ||
| 4660 | |||
| 4661 | end matchcontinue; | ||
| 4662 | end getNamedAnnotationInClass; | ||
| 4663 | |||
| 4664 | protected function getNamedAnnotationStr<T> | ||
| 4665 | "Helper function to getNamedAnnotationInElementitemlist." | ||
| 4666 | input list<Absyn.ElementArg> inAbsynElementArgLst; | ||
| 4667 | input Absyn.Path id; | ||
| 4668 | input ModFunc f; | ||
| 4669 | output Option<T> outString; | ||
| 4670 | partial function ModFunc | ||
| 4671 | input Option<Absyn.Modification> mod; | ||
| 4672 | output T docStr; | ||
| 4673 | end ModFunc; | ||
| 4674 | algorithm | ||
| 4675 | outString := matchcontinue (inAbsynElementArgLst, id) | ||
| 4676 | local | ||
| 4677 | T str; | ||
| 4678 | Option<Absyn.Modification> mod; | ||
| 4679 | list<Absyn.ElementArg> xs; | ||
| 4680 | Absyn.Ident id1,id2; | ||
| 4681 | Absyn.Path rest; | ||
| 4682 | |||
| 4683 | case (((Absyn.MODIFICATION(path = Absyn.IDENT(name = id1),modification = mod)) :: _), Absyn.IDENT(id2)) | ||
| 4684 | algorithm | ||
| 4685 |
4/4✓ Branch 0 taken 2300 times.
✓ Branch 1 taken 27790 times.
✓ Branch 3 taken 1569 times.
✓ Branch 4 taken 731 times.
|
30090 | true := stringEq(id1, id2); |
| 4686 |
2/2✓ Branch 0 taken 601 times.
✓ Branch 1 taken 968 times.
|
1569 | str := f(mod); |
| 4687 | then | ||
| 4688 | SOME(str); | ||
| 4689 | |||
| 4690 | case (((Absyn.MODIFICATION(path = Absyn.IDENT(name = id1),modification = SOME(Absyn.CLASSMOD(elementArgLst=xs)))) :: _), Absyn.QUALIFIED(name=id2,path=rest)) | ||
| 4691 | algorithm | ||
| 4692 |
3/4✓ Branch 0 taken 7 times.
✓ Branch 1 taken 8 times.
✗ Branch 3 not taken.
✓ Branch 4 taken 7 times.
|
15 | true := stringEq(id1, id2); |
| 4693 | 7 | then getNamedAnnotationStr(xs,rest,f); | |
| 4694 | |||
| 4695 | 28533 | case ((_ :: xs), _) then getNamedAnnotationStr(xs,id,f); | |
| 4696 | end matchcontinue; | ||
| 4697 | end getNamedAnnotationStr; | ||
| 4698 | |||
| 4699 | public function transformAnnotationArg | ||
| 4700 | "Looks up an ElementArg in an annotation and applies a function to it. | ||
| 4701 | If the ElementArg doesn't exist it will be created if insert = true, | ||
| 4702 | otherwise the function will fail." | ||
| 4703 | input output Absyn.Annotation ann; | ||
| 4704 | input Absyn.Path path; | ||
| 4705 | input Func func; | ||
| 4706 | input Boolean insert = true; | ||
| 4707 | |||
| 4708 | partial function Func | ||
| 4709 | input output Absyn.ElementArg arg; | ||
| 4710 | end Func; | ||
| 4711 | algorithm | ||
| 4712 | ✗ | ann.elementArgs := transformAnnotationInArgs(ann.elementArgs, path, func, insert); | |
| 4713 | end transformAnnotationArg; | ||
| 4714 | |||
| 4715 | function transformAnnotationInArgs | ||
| 4716 | input output list<Absyn.ElementArg> args; | ||
| 4717 | input Absyn.Path path; | ||
| 4718 | input Fn fn; | ||
| 4719 | input Boolean insert = true; | ||
| 4720 | |||
| 4721 | partial function Fn | ||
| 4722 | input output Absyn.ElementArg arg; | ||
| 4723 | end Fn; | ||
| 4724 | protected | ||
| 4725 | String name; | ||
| 4726 | Boolean found; | ||
| 4727 | Absyn.ElementArg arg; | ||
| 4728 | |||
| 4729 | function is_named | ||
| 4730 | input Absyn.ElementArg arg; | ||
| 4731 | input String name; | ||
| 4732 | output Boolean result; | ||
| 4733 | protected | ||
| 4734 | String arg_name; | ||
| 4735 | algorithm | ||
| 4736 | result := match arg | ||
| 4737 | ✗ | case Absyn.ElementArg.MODIFICATION(path = Absyn.Path.IDENT(name = arg_name)) then name == arg_name; | |
| 4738 | else false; | ||
| 4739 | end match; | ||
| 4740 | end is_named; | ||
| 4741 | |||
| 4742 | function apply_fn | ||
| 4743 | input output Absyn.ElementArg arg; | ||
| 4744 | input Absyn.Path path; | ||
| 4745 | input Fn fn; | ||
| 4746 | input Boolean insert; | ||
| 4747 | protected | ||
| 4748 | Absyn.Modification mod; | ||
| 4749 | algorithm | ||
| 4750 | ✗ | if pathIsIdent(path) then | |
| 4751 | ✗ | arg := fn(arg); | |
| 4752 | else | ||
| 4753 | () := match arg | ||
| 4754 | case Absyn.ElementArg.MODIFICATION() | ||
| 4755 | algorithm | ||
| 4756 | ✗ | if isSome(arg.modification) then | |
| 4757 | ✗ | SOME(mod) := arg.modification; | |
| 4758 | elseif insert then | ||
| 4759 | mod := Absyn.Modification.CLASSMOD({}, Absyn.EqMod.NOMOD()); | ||
| 4760 | else | ||
| 4761 | ✗ | fail(); | |
| 4762 | end if; | ||
| 4763 | |||
| 4764 | ✗ | mod.elementArgLst := transformAnnotationInArgs(mod.elementArgLst, pathRest(path), fn, insert); | |
| 4765 | ✗ | arg.modification := SOME(mod); | |
| 4766 | then | ||
| 4767 | (); | ||
| 4768 | end match; | ||
| 4769 | end if; | ||
| 4770 | end apply_fn; | ||
| 4771 | algorithm | ||
| 4772 | ✗ | name := pathFirstIdent(path); | |
| 4773 | ✗ | (args, found) := List.findAndMap(args, function is_named(name = name), | |
| 4774 | function apply_fn(path = path, fn = fn, insert = insert)); | ||
| 4775 | |||
| 4776 | ✗ | if not found then | |
| 4777 | ✗ | if insert then | |
| 4778 | ✗ | arg := Absyn.ElementArg.MODIFICATION(false, Absyn.Each.NON_EACH(), Absyn.IDENT(name), NONE(), NONE(), Absyn.dummyInfo); | |
| 4779 | ✗ | arg := apply_fn(arg, path, fn, insert); | |
| 4780 | args := arg :: args; | ||
| 4781 | else | ||
| 4782 | ✗ | fail(); | |
| 4783 | end if; | ||
| 4784 | end if; | ||
| 4785 | end transformAnnotationInArgs; | ||
| 4786 | |||
| 4787 | public function mapCrefParts | ||
| 4788 | "This function splits each part of a cref into CREF_IDENTs and applies the | ||
| 4789 | given function to each part. If the given cref is a qualified cref then the | ||
| 4790 | map function is expected to also return Absyn.CREF_IDENT, so that the split cref | ||
| 4791 | can be reconstructed. Otherwise the map function is free to return whatever | ||
| 4792 | it wants." | ||
| 4793 | input Absyn.ComponentRef inCref; | ||
| 4794 | input MapFunc inMapFunc; | ||
| 4795 | output Absyn.ComponentRef outCref; | ||
| 4796 | |||
| 4797 | partial function MapFunc | ||
| 4798 | input Absyn.ComponentRef inCref; | ||
| 4799 | output Absyn.ComponentRef outCref; | ||
| 4800 | end MapFunc; | ||
| 4801 | algorithm | ||
| 4802 | outCref := match inCref | ||
| 4803 | local | ||
| 4804 | Absyn.Ident name; | ||
| 4805 | list<Absyn.Subscript> subs; | ||
| 4806 | Absyn.ComponentRef rest_cref; | ||
| 4807 | Absyn.ComponentRef cref; | ||
| 4808 | |||
| 4809 | case Absyn.CREF_QUAL(name, subs, rest_cref) | ||
| 4810 | algorithm | ||
| 4811 | ✗ | cref := Absyn.CREF_IDENT(name, subs); | |
| 4812 | ✗ | Absyn.CREF_IDENT(name, subs) := inMapFunc(cref); | |
| 4813 | ✗ | rest_cref := mapCrefParts(rest_cref, inMapFunc); | |
| 4814 | ✗ | then | |
| 4815 | Absyn.CREF_QUAL(name, subs, rest_cref); | ||
| 4816 | |||
| 4817 | case Absyn.CREF_FULLYQUALIFIED(cref) | ||
| 4818 | algorithm | ||
| 4819 | ✗ | cref := mapCrefParts(cref, inMapFunc); | |
| 4820 | ✗ | then | |
| 4821 | Absyn.CREF_FULLYQUALIFIED(cref); | ||
| 4822 | |||
| 4823 | ✗ | else inMapFunc(inCref); | |
| 4824 | end match; | ||
| 4825 | end mapCrefParts; | ||
| 4826 | |||
| 4827 | public function opEqual | ||
| 4828 | input Absyn.Operator op1; | ||
| 4829 | input Absyn.Operator op2; | ||
| 4830 | output Boolean isEqual; | ||
| 4831 | algorithm | ||
| 4832 | ✗ | isEqual := valueEq(op1, op2); | |
| 4833 | end opEqual; | ||
| 4834 | |||
| 4835 | public function opIsElementWise | ||
| 4836 | input Absyn.Operator op; | ||
| 4837 | output Boolean isElementWise; | ||
| 4838 | algorithm | ||
| 4839 | isElementWise := match op | ||
| 4840 | case Absyn.ADD_EW() then true; | ||
| 4841 | case Absyn.SUB_EW() then true; | ||
| 4842 | case Absyn.MUL_EW() then true; | ||
| 4843 | case Absyn.DIV_EW() then true; | ||
| 4844 | case Absyn.POW_EW() then true; | ||
| 4845 | case Absyn.UPLUS_EW() then true; | ||
| 4846 | case Absyn.UMINUS_EW() then true; | ||
| 4847 | else false; | ||
| 4848 | end match; | ||
| 4849 | end opIsElementWise; | ||
| 4850 | |||
| 4851 | public function dummyTraverseExp<Arg> | ||
| 4852 | input Absyn.Exp inExp; | ||
| 4853 | input Arg inArg; | ||
| 4854 | output Absyn.Exp outExp; | ||
| 4855 | output Arg outArg; | ||
| 4856 | algorithm | ||
| 4857 | outExp := inExp; | ||
| 4858 | outArg := inArg; | ||
| 4859 | end dummyTraverseExp; | ||
| 4860 | |||
| 4861 | public function getDefineUnitsInElements "retrives defineunit definitions in elements" | ||
| 4862 | input list<Absyn.ElementItem> elts; | ||
| 4863 | output list<Absyn.Element> outElts = {}; | ||
| 4864 | algorithm | ||
| 4865 | ✗ | for i in elts loop | |
| 4866 | outElts := match i | ||
| 4867 | case Absyn.ELEMENTITEM(element = Absyn.DEFINEUNIT()) then i.element :: outElts; | ||
| 4868 | else outElts; | ||
| 4869 | end match; | ||
| 4870 | end for; | ||
| 4871 | |||
| 4872 | ✗ | outElts := listReverseInPlace(outElts); | |
| 4873 | end getDefineUnitsInElements; | ||
| 4874 | |||
| 4875 | public function getClassPartsInClass | ||
| 4876 | input Absyn.Class cls; | ||
| 4877 | output list<Absyn.ClassPart> parts; | ||
| 4878 | protected | ||
| 4879 | Absyn.ClassDef cdef = cls.body; | ||
| 4880 | algorithm | ||
| 4881 | parts := match cdef | ||
| 4882 | 80390 | case Absyn.ClassDef.PARTS() then cdef.classParts; | |
| 4883 | ✗ | case Absyn.ClassDef.CLASS_EXTENDS() then cdef.parts; | |
| 4884 | else {}; | ||
| 4885 | end match; | ||
| 4886 | end getClassPartsInClass; | ||
| 4887 | |||
| 4888 | public function setClassPartsInClass | ||
| 4889 | input list<Absyn.ClassPart> parts; | ||
| 4890 | input output Absyn.Class cls; | ||
| 4891 | protected | ||
| 4892 | Absyn.ClassDef cdef = cls.body; | ||
| 4893 | algorithm | ||
| 4894 | () := match cdef | ||
| 4895 | 12 | case Absyn.ClassDef.PARTS() algorithm cdef.classParts := parts; then (); | |
| 4896 | ✗ | case Absyn.ClassDef.CLASS_EXTENDS() algorithm cdef.parts := parts; then (); | |
| 4897 | end match; | ||
| 4898 | |||
| 4899 | 12 | cls.body := cdef; | |
| 4900 | end setClassPartsInClass; | ||
| 4901 | |||
| 4902 | public function getElementItemsInElement | ||
| 4903 | "Returns the public and protected elements in a class." | ||
| 4904 | input Absyn.Element element; | ||
| 4905 | output list<Absyn.ElementItem> outElements; | ||
| 4906 | protected | ||
| 4907 | Absyn.Class cls; | ||
| 4908 | algorithm | ||
| 4909 | outElements := match element | ||
| 4910 | case Absyn.Element.ELEMENT(specification = Absyn.ElementSpec.CLASSDEF(class_ = cls)) | ||
| 4911 | 1 | then getElementItemsInClass(cls); | |
| 4912 | else {}; | ||
| 4913 | end match; | ||
| 4914 | end getElementItemsInElement; | ||
| 4915 | |||
| 4916 | public function getElementItemsInClass | ||
| 4917 | "Returns the public and protected elements in a class." | ||
| 4918 | input Absyn.Class inClass; | ||
| 4919 | output list<Absyn.ElementItem> outElements = getElementItemsInClassDef(inClass.body); | ||
| 4920 | end getElementItemsInClass; | ||
| 4921 | |||
| 4922 | public function getElementItemsInClassDef | ||
| 4923 | "Returns the public and protected elements in a class definition." | ||
| 4924 | input Absyn.ClassDef classDef; | ||
| 4925 | output list<Absyn.ElementItem> outElements; | ||
| 4926 | algorithm | ||
| 4927 | outElements := match classDef | ||
| 4928 | case Absyn.ClassDef.PARTS() | ||
| 4929 | 130 | then List.mapFlat(classDef.classParts, getElementItemsInClassPart); | |
| 4930 | |||
| 4931 | case Absyn.ClassDef.CLASS_EXTENDS() | ||
| 4932 | ✗ | then List.mapFlat(classDef.parts, getElementItemsInClassPart); | |
| 4933 | |||
| 4934 | else {}; | ||
| 4935 | end match; | ||
| 4936 | end getElementItemsInClassDef; | ||
| 4937 | |||
| 4938 | public function getElementItemsInClassPart | ||
| 4939 | "Returns the public and protected elements in a class part." | ||
| 4940 | input Absyn.ClassPart inClassPart; | ||
| 4941 | output list<Absyn.ElementItem> outElements; | ||
| 4942 | algorithm | ||
| 4943 | outElements := match inClassPart | ||
| 4944 | 80861 | case Absyn.PUBLIC() then inClassPart.contents; | |
| 4945 | 225 | case Absyn.PROTECTED() then inClassPart.contents; | |
| 4946 | else {}; | ||
| 4947 | end match; | ||
| 4948 | end getElementItemsInClassPart; | ||
| 4949 | |||
| 4950 | public function traverseClassComponents<ArgT> | ||
| 4951 | input Absyn.Class inClass; | ||
| 4952 | input FuncType inFunc; | ||
| 4953 | input ArgT inArg; | ||
| 4954 | output Absyn.Class outClass = inClass; | ||
| 4955 | output ArgT outArg; | ||
| 4956 | |||
| 4957 | partial function FuncType | ||
| 4958 | input output list<Absyn.ComponentItem> components; | ||
| 4959 | input output ArgT arg; | ||
| 4960 | output Boolean outContinue; | ||
| 4961 | end FuncType; | ||
| 4962 | algorithm | ||
| 4963 | outClass := match outClass | ||
| 4964 | local | ||
| 4965 | Absyn.ClassDef body; | ||
| 4966 | |||
| 4967 | case Absyn.CLASS() | ||
| 4968 | algorithm | ||
| 4969 | 2 | (body, outArg) := traverseClassDef(outClass.body, | |
| 4970 | function traverseClassPartComponents(inFunc = inFunc), inArg); | ||
| 4971 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
4 | if not referenceEq(body, outClass.body) then outClass.body := body; end if; |
| 4972 | then | ||
| 4973 | outClass; | ||
| 4974 | |||
| 4975 | end match; | ||
| 4976 | end traverseClassComponents; | ||
| 4977 | |||
| 4978 | protected function traverseListGeneric<T, ArgT> | ||
| 4979 | input list<T> inList; | ||
| 4980 | input FuncType inFunc; | ||
| 4981 | input ArgT inArg; | ||
| 4982 | output list<T> outList = {}; | ||
| 4983 | output ArgT outArg = inArg; | ||
| 4984 | output Boolean outContinue = true; | ||
| 4985 | |||
| 4986 | partial function FuncType | ||
| 4987 | input T inElement; | ||
| 4988 | input ArgT inArg; | ||
| 4989 | output T outElement; | ||
| 4990 | output ArgT outArg; | ||
| 4991 | output Boolean outContinue; | ||
| 4992 | end FuncType; | ||
| 4993 | protected | ||
| 4994 | Boolean eq, changed = false; | ||
| 4995 | T e, new_e; | ||
| 4996 | list<T> rest_e = inList; | ||
| 4997 | algorithm | ||
| 4998 |
2/2✓ Branch 0 taken 156 times.
✓ Branch 1 taken 4 times.
|
160 | while not listEmpty(rest_e) loop |
| 4999 | 156 | e :: rest_e := rest_e; | |
| 5000 |
1/2✓ Branch 0 taken 156 times.
✗ Branch 1 not taken.
|
156 | (new_e, outArg, outContinue) := inFunc(e, outArg); |
| 5001 | eq := referenceEq(new_e, e); | ||
| 5002 |
2/2✓ Branch 0 taken 116 times.
✓ Branch 1 taken 40 times.
|
156 | outList := (if eq then e else new_e) :: outList; |
| 5003 | 156 | changed := changed or not eq; | |
| 5004 |
2/2✓ Branch 0 taken 42 times.
✓ Branch 1 taken 114 times.
|
156 | if not outContinue then break; end if; |
| 5005 | end while; | ||
| 5006 | |||
| 5007 |
2/2✓ Branch 0 taken 116 times.
✓ Branch 1 taken 2 times.
|
118 | if changed then |
| 5008 | 116 | outList := List.append_reverse(outList, rest_e); | |
| 5009 | else | ||
| 5010 | outList := inList; | ||
| 5011 | end if; | ||
| 5012 | end traverseListGeneric; | ||
| 5013 | |||
| 5014 | protected function traverseClassPartComponents<ArgT> | ||
| 5015 | input Absyn.ClassPart inClassPart; | ||
| 5016 | input FuncType inFunc; | ||
| 5017 | input ArgT inArg; | ||
| 5018 | output Absyn.ClassPart outClassPart = inClassPart; | ||
| 5019 | output ArgT outArg = inArg; | ||
| 5020 | output Boolean outContinue = true; | ||
| 5021 | |||
| 5022 | partial function FuncType | ||
| 5023 | input list<Absyn.ComponentItem> inComponents; | ||
| 5024 | input ArgT inArg; | ||
| 5025 | output list<Absyn.ComponentItem> outComponents; | ||
| 5026 | output ArgT outArg; | ||
| 5027 | output Boolean outContinue; | ||
| 5028 | end FuncType; | ||
| 5029 | algorithm | ||
| 5030 | () := match outClassPart | ||
| 5031 | local | ||
| 5032 | list<Absyn.ElementItem> items; | ||
| 5033 | |||
| 5034 | case Absyn.PUBLIC() | ||
| 5035 | algorithm | ||
| 5036 | 2 | (items, outArg, outContinue) := | |
| 5037 | traverseListGeneric(outClassPart.contents, | ||
| 5038 | function traverseElementItemComponents(inFunc = inFunc), inArg); | ||
| 5039 | 2 | outClassPart.contents := items; | |
| 5040 | then | ||
| 5041 | (); | ||
| 5042 | |||
| 5043 | case Absyn.PROTECTED() | ||
| 5044 | algorithm | ||
| 5045 | ✗ | (items, outArg, outContinue) := | |
| 5046 | traverseListGeneric(outClassPart.contents, | ||
| 5047 | function traverseElementItemComponents(inFunc = inFunc), inArg); | ||
| 5048 | ✗ | outClassPart.contents := items; | |
| 5049 | then | ||
| 5050 | (); | ||
| 5051 | |||
| 5052 | else (); | ||
| 5053 | end match; | ||
| 5054 | end traverseClassPartComponents; | ||
| 5055 | |||
| 5056 | protected function traverseElementItemComponents<ArgT> | ||
| 5057 | input Absyn.ElementItem inItem; | ||
| 5058 | input FuncType inFunc; | ||
| 5059 | input ArgT inArg; | ||
| 5060 | output Absyn.ElementItem outItem; | ||
| 5061 | output ArgT outArg; | ||
| 5062 | output Boolean outContinue; | ||
| 5063 | |||
| 5064 | partial function FuncType | ||
| 5065 | input list<Absyn.ComponentItem> inComponents; | ||
| 5066 | input ArgT inArg; | ||
| 5067 | output list<Absyn.ComponentItem> outComponents; | ||
| 5068 | output ArgT outArg; | ||
| 5069 | output Boolean outContinue; | ||
| 5070 | end FuncType; | ||
| 5071 | algorithm | ||
| 5072 | (outItem, outArg, outContinue) := match inItem | ||
| 5073 | local | ||
| 5074 | Absyn.Element elem; | ||
| 5075 | |||
| 5076 | case Absyn.ELEMENTITEM() | ||
| 5077 | algorithm | ||
| 5078 | 3 | (elem, outArg, outContinue) := traverseElementComponents(inItem.element, | |
| 5079 | inFunc, inArg); | ||
| 5080 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 1 time.
|
3 | outItem := if referenceEq(elem, inItem.element) then inItem else Absyn.ELEMENTITEM(elem); |
| 5081 | 3 | then | |
| 5082 | (outItem, outArg, outContinue); | ||
| 5083 | |||
| 5084 | else (inItem, inArg, true); | ||
| 5085 | end match; | ||
| 5086 | end traverseElementItemComponents; | ||
| 5087 | |||
| 5088 | protected function traverseElementComponents<ArgT> | ||
| 5089 | input Absyn.Element inElement; | ||
| 5090 | input FuncType inFunc; | ||
| 5091 | input ArgT inArg; | ||
| 5092 | output Absyn.Element outElement = inElement; | ||
| 5093 | output ArgT outArg; | ||
| 5094 | output Boolean outContinue; | ||
| 5095 | |||
| 5096 | partial function FuncType | ||
| 5097 | input list<Absyn.ComponentItem> inComponents; | ||
| 5098 | input ArgT inArg; | ||
| 5099 | output list<Absyn.ComponentItem> outComponents; | ||
| 5100 | output ArgT outArg; | ||
| 5101 | output Boolean outContinue; | ||
| 5102 | end FuncType; | ||
| 5103 | algorithm | ||
| 5104 | (outElement, outArg, outContinue) := match outElement | ||
| 5105 | local | ||
| 5106 | Absyn.ElementSpec spec; | ||
| 5107 | |||
| 5108 | case Absyn.ELEMENT() | ||
| 5109 | algorithm | ||
| 5110 | 3 | (spec, outArg, outContinue) := traverseElementSpecComponents( | |
| 5111 | outElement.specification, inFunc, inArg); | ||
| 5112 | |||
| 5113 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 1 time.
|
3 | if not referenceEq(spec, outElement.specification) then |
| 5114 | 2 | outElement.specification := spec; | |
| 5115 | end if; | ||
| 5116 | 3 | then | |
| 5117 | (outElement, outArg, outContinue); | ||
| 5118 | |||
| 5119 | else (inElement, inArg, true); | ||
| 5120 | end match; | ||
| 5121 | end traverseElementComponents; | ||
| 5122 | |||
| 5123 | protected function traverseElementSpecComponents<ArgT> | ||
| 5124 | input Absyn.ElementSpec inSpec; | ||
| 5125 | input FuncType inFunc; | ||
| 5126 | input ArgT inArg; | ||
| 5127 | output Absyn.ElementSpec outSpec = inSpec; | ||
| 5128 | output ArgT outArg; | ||
| 5129 | output Boolean outContinue; | ||
| 5130 | |||
| 5131 | partial function FuncType | ||
| 5132 | input list<Absyn.ComponentItem> inComponents; | ||
| 5133 | input ArgT inArg; | ||
| 5134 | output list<Absyn.ComponentItem> outComponents; | ||
| 5135 | output ArgT outArg; | ||
| 5136 | output Boolean outContinue; | ||
| 5137 | end FuncType; | ||
| 5138 | algorithm | ||
| 5139 | (outSpec, outArg, outContinue) := match outSpec | ||
| 5140 | local | ||
| 5141 | list<Absyn.ComponentItem> comps; | ||
| 5142 | |||
| 5143 | case Absyn.COMPONENTS() | ||
| 5144 | algorithm | ||
| 5145 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
2 | (comps, outArg, outContinue) := inFunc(outSpec.components, inArg); |
| 5146 |
1/2✓ Branch 0 taken 2 times.
✗ Branch 1 not taken.
|
2 | if not referenceEq(comps, outSpec.components) then |
| 5147 | 2 | outSpec.components := comps; | |
| 5148 | end if; | ||
| 5149 | then | ||
| 5150 | (outSpec, outArg, outContinue); | ||
| 5151 | |||
| 5152 | else (inSpec, inArg, true); | ||
| 5153 | end match; | ||
| 5154 | end traverseElementSpecComponents; | ||
| 5155 | |||
| 5156 | protected function traverseClassDef<ArgT> | ||
| 5157 | input Absyn.ClassDef inClassDef; | ||
| 5158 | input FuncType inFunc; | ||
| 5159 | input ArgT inArg; | ||
| 5160 | output Absyn.ClassDef outClassDef = inClassDef; | ||
| 5161 | output ArgT outArg = inArg; | ||
| 5162 | output Boolean outContinue = true; | ||
| 5163 | |||
| 5164 | partial function FuncType | ||
| 5165 | input Absyn.ClassPart inPart; | ||
| 5166 | input ArgT inArg; | ||
| 5167 | output Absyn.ClassPart outPart; | ||
| 5168 | output ArgT outArg; | ||
| 5169 | output Boolean outContinue; | ||
| 5170 | end FuncType; | ||
| 5171 | algorithm | ||
| 5172 | () := match outClassDef | ||
| 5173 | local | ||
| 5174 | list<Absyn.ClassPart> parts; | ||
| 5175 | |||
| 5176 | case Absyn.PARTS() | ||
| 5177 | algorithm | ||
| 5178 | 59 | (parts, outArg, outContinue) := | |
| 5179 | traverseListGeneric(outClassDef.classParts, inFunc, inArg); | ||
| 5180 | 59 | outClassDef.classParts := parts; | |
| 5181 | then | ||
| 5182 | (); | ||
| 5183 | |||
| 5184 | case Absyn.CLASS_EXTENDS() | ||
| 5185 | algorithm | ||
| 5186 | ✗ | (parts, outArg, outContinue) := | |
| 5187 | traverseListGeneric(outClassDef.parts, inFunc, inArg); | ||
| 5188 | ✗ | outClassDef.parts := parts; | |
| 5189 | then | ||
| 5190 | (); | ||
| 5191 | |||
| 5192 | else (); | ||
| 5193 | end match; | ||
| 5194 | end traverseClassDef; | ||
| 5195 | |||
| 5196 | public function isEmptyMod | ||
| 5197 | input Absyn.Modification inMod; | ||
| 5198 | output Boolean outIsEmpty; | ||
| 5199 | algorithm | ||
| 5200 | outIsEmpty := match inMod | ||
| 5201 | case Absyn.CLASSMOD({}, Absyn.NOMOD()) then true; | ||
| 5202 | case Absyn.CLASSMOD({}, Absyn.EQMOD(exp = Absyn.TUPLE(expressions = {}))) then true; | ||
| 5203 | else false; | ||
| 5204 | end match; | ||
| 5205 | end isEmptyMod; | ||
| 5206 | |||
| 5207 | public function isEmptySubMod | ||
| 5208 | input Absyn.ElementArg inSubMod; | ||
| 5209 | output Boolean outIsEmpty; | ||
| 5210 | algorithm | ||
| 5211 | outIsEmpty := match inSubMod | ||
| 5212 | local | ||
| 5213 | Absyn.Modification mod; | ||
| 5214 | |||
| 5215 | case Absyn.MODIFICATION(finalPrefix = true) then false; | ||
| 5216 | case Absyn.MODIFICATION(modification = NONE()) then true; | ||
| 5217 | 20 | case Absyn.MODIFICATION(modification = SOME(mod)) then isEmptyMod(mod); | |
| 5218 | else false; | ||
| 5219 | end match; | ||
| 5220 | end isEmptySubMod; | ||
| 5221 | |||
| 5222 | function isEmptyEqMod | ||
| 5223 | input Absyn.EqMod eqMod; | ||
| 5224 | output Boolean isEmpty; | ||
| 5225 | algorithm | ||
| 5226 | isEmpty := match eqMod | ||
| 5227 | case Absyn.EqMod.NOMOD() then true; | ||
| 5228 | else false; | ||
| 5229 | end match; | ||
| 5230 | end isEmptyEqMod; | ||
| 5231 | |||
| 5232 | public function elementArgName | ||
| 5233 | input Absyn.ElementArg inArg; | ||
| 5234 | output Absyn.Path outName; | ||
| 5235 | algorithm | ||
| 5236 | outName := match inArg | ||
| 5237 | local | ||
| 5238 | Absyn.ElementSpec e; | ||
| 5239 | case Absyn.MODIFICATION(path = outName) then outName; | ||
| 5240 | 6 | case Absyn.REDECLARATION(elementSpec = e) then makeIdentPathFromString(elementSpecName(e)); | |
| 5241 | end match; | ||
| 5242 | end elementArgName; | ||
| 5243 | |||
| 5244 | public function elementArgEqualName | ||
| 5245 | input Absyn.ElementArg inArg1; | ||
| 5246 | input Absyn.ElementArg inArg2; | ||
| 5247 | output Boolean outEqual = pathEqual(elementArgName(inArg1), elementArgName(inArg2)); | ||
| 5248 | end elementArgEqualName; | ||
| 5249 | |||
| 5250 | public function optMsg | ||
| 5251 | "Creates a Absyn.Msg based on a boolean value." | ||
| 5252 | input Boolean inShowMessage; | ||
| 5253 | input SourceInfo inInfo; | ||
| 5254 | output Absyn.Msg outMsg; | ||
| 5255 | algorithm | ||
| 5256 |
2/2✓ Branch 0 taken 580901 times.
✓ Branch 1 taken 493306 times.
|
1074207 | outMsg := if inShowMessage then Absyn.MSG(inInfo) else Absyn.NO_MSG(); |
| 5257 | annotation(__OpenModelica_EarlyInline = true); | ||
| 5258 | end optMsg; | ||
| 5259 | |||
| 5260 | public function makeSubscript | ||
| 5261 | input Absyn.Exp inExp; | ||
| 5262 | output Absyn.Subscript outSubscript; | ||
| 5263 | algorithm | ||
| 5264 | ✗ | outSubscript := Absyn.SUBSCRIPT(inExp); | |
| 5265 | end makeSubscript; | ||
| 5266 | |||
| 5267 | public function makeIntegerSubscript | ||
| 5268 | input Integer n; | ||
| 5269 | output Absyn.Subscript sub; | ||
| 5270 | algorithm | ||
| 5271 | 20 | sub := Absyn.SUBSCRIPT(Absyn.INTEGER(n)); | |
| 5272 | end makeIntegerSubscript; | ||
| 5273 | |||
| 5274 | public function crefExplode | ||
| 5275 | "Splits a cref into parts." | ||
| 5276 | input Absyn.ComponentRef inCref; | ||
| 5277 | input list<Absyn.ComponentRef> inAccum = {}; | ||
| 5278 | output list<Absyn.ComponentRef> outCrefParts; | ||
| 5279 | algorithm | ||
| 5280 | outCrefParts := match inCref | ||
| 5281 | 362618 | case Absyn.CREF_QUAL() then crefExplode(inCref.componentRef, crefFirstCref(inCref) :: inAccum); | |
| 5282 | 2881 | case Absyn.CREF_FULLYQUALIFIED() then crefExplode(inCref.componentRef, inAccum); | |
| 5283 | 578833 | else listReverse(inCref :: inAccum); | |
| 5284 | end match; | ||
| 5285 | end crefExplode; | ||
| 5286 | |||
| 5287 | public function traverseExpShallow<ArgT> | ||
| 5288 | "Calls the given function on each subexpression (non-recursively) of the given | ||
| 5289 | expression, sending in the extra argument to each call." | ||
| 5290 | input Absyn.Exp inExp; | ||
| 5291 | input ArgT inArg; | ||
| 5292 | input FuncT inFunc; | ||
| 5293 | output Absyn.Exp outExp = inExp; | ||
| 5294 | |||
| 5295 | partial function FuncT | ||
| 5296 | input Absyn.Exp inExp; | ||
| 5297 | input ArgT inArg; | ||
| 5298 | output Absyn.Exp outExp; | ||
| 5299 | end FuncT; | ||
| 5300 | algorithm | ||
| 5301 | () := match outExp | ||
| 5302 | local | ||
| 5303 | |||
| 5304 | case Absyn.BINARY() | ||
| 5305 | algorithm | ||
| 5306 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 12234 times.
|
12234 | outExp.exp1 := inFunc(outExp.exp1, inArg); |
| 5307 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 12234 times.
|
12234 | outExp.exp2 := inFunc(outExp.exp2, inArg); |
| 5308 | then | ||
| 5309 | (); | ||
| 5310 | |||
| 5311 | case Absyn.UNARY() | ||
| 5312 | algorithm | ||
| 5313 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 2 times.
|
2 | outExp.exp := inFunc(outExp.exp, inArg); |
| 5314 | then | ||
| 5315 | (); | ||
| 5316 | |||
| 5317 | case Absyn.LBINARY() | ||
| 5318 | algorithm | ||
| 5319 | ✗ | outExp.exp1 := inFunc(outExp.exp1, inArg); | |
| 5320 | ✗ | outExp.exp2 := inFunc(outExp.exp2, inArg); | |
| 5321 | then | ||
| 5322 | (); | ||
| 5323 | |||
| 5324 | case Absyn.LUNARY() | ||
| 5325 | algorithm | ||
| 5326 | ✗ | outExp.exp := inFunc(outExp.exp, inArg); | |
| 5327 | then | ||
| 5328 | (); | ||
| 5329 | |||
| 5330 | case Absyn.RELATION() | ||
| 5331 | algorithm | ||
| 5332 | ✗ | outExp.exp1 := inFunc(outExp.exp1, inArg); | |
| 5333 | ✗ | outExp.exp2 := inFunc(outExp.exp2, inArg); | |
| 5334 | then | ||
| 5335 | (); | ||
| 5336 | |||
| 5337 | case Absyn.IFEXP() | ||
| 5338 | algorithm | ||
| 5339 | ✗ | outExp.ifExp := inFunc(outExp.ifExp, inArg); | |
| 5340 | ✗ | outExp.trueBranch := inFunc(outExp.trueBranch, inArg); | |
| 5341 | ✗ | outExp.elseBranch := inFunc(outExp.elseBranch, inArg); | |
| 5342 | ✗ | outExp.elseIfBranch := list((inFunc(Util.tuple21(e), inArg), | |
| 5343 | inFunc(Util.tuple22(e), inArg)) for e in outExp.elseIfBranch); | ||
| 5344 | then | ||
| 5345 | (); | ||
| 5346 | |||
| 5347 | case Absyn.CALL() | ||
| 5348 | algorithm | ||
| 5349 | 46 | outExp.functionArgs := traverseExpShallowFuncArgs(outExp.functionArgs, | |
| 5350 | inArg, inFunc); | ||
| 5351 | then | ||
| 5352 | (); | ||
| 5353 | |||
| 5354 | case Absyn.PARTEVALFUNCTION() | ||
| 5355 | algorithm | ||
| 5356 | ✗ | outExp.functionArgs := traverseExpShallowFuncArgs(outExp.functionArgs, | |
| 5357 | inArg, inFunc); | ||
| 5358 | then | ||
| 5359 | (); | ||
| 5360 | |||
| 5361 | case Absyn.ARRAY() | ||
| 5362 | algorithm | ||
| 5363 |
5/6✓ Branch 0 taken 6 times.
✓ Branch 1 taken 3 times.
✓ Branch 2 taken 6 times.
✓ Branch 3 taken 3 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 6 times.
|
12 | outExp.arrayExp := list(inFunc(e, inArg) for e in outExp.arrayExp); |
| 5364 | then | ||
| 5365 | (); | ||
| 5366 | |||
| 5367 | case Absyn.MATRIX() | ||
| 5368 | algorithm | ||
| 5369 | ✗ | outExp.matrix := list(list(inFunc(e, inArg) for e in lst) for lst in | |
| 5370 | outExp.matrix); | ||
| 5371 | then | ||
| 5372 | (); | ||
| 5373 | |||
| 5374 | case Absyn.RANGE() | ||
| 5375 | algorithm | ||
| 5376 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1013 times.
|
1013 | outExp.start := inFunc(outExp.start, inArg); |
| 5377 | 1013 | outExp.step := Util.applyOption1(outExp.step, inFunc, inArg); | |
| 5378 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 1013 times.
|
1013 | outExp.stop := inFunc(outExp.stop, inArg); |
| 5379 | then | ||
| 5380 | (); | ||
| 5381 | |||
| 5382 | case Absyn.TUPLE() | ||
| 5383 | algorithm | ||
| 5384 | ✗ | outExp.expressions := list(inFunc(e, inArg) for e in outExp.expressions); | |
| 5385 | then | ||
| 5386 | (); | ||
| 5387 | |||
| 5388 | case Absyn.AS() | ||
| 5389 | algorithm | ||
| 5390 | ✗ | outExp.exp := inFunc(outExp.exp, inArg); | |
| 5391 | then | ||
| 5392 | (); | ||
| 5393 | |||
| 5394 | case Absyn.CONS() | ||
| 5395 | algorithm | ||
| 5396 | ✗ | outExp.head := inFunc(outExp.head, inArg); | |
| 5397 | ✗ | outExp.rest := inFunc(outExp.rest, inArg); | |
| 5398 | then | ||
| 5399 | (); | ||
| 5400 | |||
| 5401 | case Absyn.LIST() | ||
| 5402 | algorithm | ||
| 5403 | ✗ | outExp.exps := list(inFunc(e, inArg) for e in outExp.exps); | |
| 5404 | then | ||
| 5405 | (); | ||
| 5406 | |||
| 5407 | case Absyn.DOT() | ||
| 5408 | algorithm | ||
| 5409 | ✗ | outExp.exp := inFunc(outExp.exp, inArg); | |
| 5410 | ✗ | outExp.index := inFunc(outExp.index, inArg); | |
| 5411 | then | ||
| 5412 | (); | ||
| 5413 | |||
| 5414 | case Absyn.EXPRESSIONCOMMENT() | ||
| 5415 | algorithm | ||
| 5416 | ✗ | outExp.exp := inFunc(outExp.exp, inArg); | |
| 5417 | then | ||
| 5418 | (); | ||
| 5419 | |||
| 5420 | case Absyn.SUBSCRIPTED_EXP() | ||
| 5421 | algorithm | ||
| 5422 | ✗ | outExp.exp := inFunc(outExp.exp, inArg); | |
| 5423 | ✗ | outExp.subscripts := list(traverseExpShallowSub(s, inArg, inFunc) for s in outExp.subscripts); | |
| 5424 | then | ||
| 5425 | (); | ||
| 5426 | |||
| 5427 | else (); | ||
| 5428 | end match; | ||
| 5429 | end traverseExpShallow; | ||
| 5430 | |||
| 5431 | protected function traverseExpShallowFuncArgs<ArgT> | ||
| 5432 | input Absyn.FunctionArgs inArgs; | ||
| 5433 | input ArgT inArg; | ||
| 5434 | input FuncT inFunc; | ||
| 5435 | output Absyn.FunctionArgs outArgs = inArgs; | ||
| 5436 | |||
| 5437 | partial function FuncT | ||
| 5438 | input Absyn.Exp inExp; | ||
| 5439 | input ArgT inArg; | ||
| 5440 | output Absyn.Exp outExp; | ||
| 5441 | end FuncT; | ||
| 5442 | algorithm | ||
| 5443 | outArgs := match outArgs | ||
| 5444 | case Absyn.FUNCTIONARGS() | ||
| 5445 | algorithm | ||
| 5446 |
5/6✓ Branch 0 taken 64 times.
✓ Branch 1 taken 46 times.
✓ Branch 2 taken 64 times.
✓ Branch 3 taken 46 times.
✗ Branch 4 not taken.
✓ Branch 5 taken 64 times.
|
156 | outArgs.args := list(inFunc(arg, inArg) for arg in outArgs.args); |
| 5447 | then | ||
| 5448 | outArgs; | ||
| 5449 | |||
| 5450 | case Absyn.FOR_ITER_FARG() | ||
| 5451 | algorithm | ||
| 5452 | ✗ | outArgs.exp := inFunc(outArgs.exp, inArg); | |
| 5453 | ✗ | outArgs.iterators := list(traverseExpShallowIterator(it, inArg, inFunc) | |
| 5454 | for it in outArgs.iterators); | ||
| 5455 | then | ||
| 5456 | outArgs; | ||
| 5457 | |||
| 5458 | end match; | ||
| 5459 | end traverseExpShallowFuncArgs; | ||
| 5460 | |||
| 5461 | protected function traverseExpShallowIterator<ArgT> | ||
| 5462 | input Absyn.ForIterator inIterator; | ||
| 5463 | input ArgT inArg; | ||
| 5464 | input FuncT inFunc; | ||
| 5465 | output Absyn.ForIterator outIterator; | ||
| 5466 | |||
| 5467 | partial function FuncT | ||
| 5468 | input Absyn.Exp inExp; | ||
| 5469 | input ArgT inArg; | ||
| 5470 | output Absyn.Exp outExp; | ||
| 5471 | end FuncT; | ||
| 5472 | protected | ||
| 5473 | String name; | ||
| 5474 | Option<Absyn.Exp> guard_exp, range_exp; | ||
| 5475 | algorithm | ||
| 5476 | ✗ | Absyn.ITERATOR(name, guard_exp, range_exp) := inIterator; | |
| 5477 | ✗ | guard_exp := Util.applyOption1(guard_exp, inFunc, inArg); | |
| 5478 | ✗ | range_exp := Util.applyOption1(range_exp, inFunc, inArg); | |
| 5479 | ✗ | outIterator := Absyn.ITERATOR(name, guard_exp, range_exp); | |
| 5480 | end traverseExpShallowIterator; | ||
| 5481 | |||
| 5482 | public function traverseExpShallowSub<ArgT> | ||
| 5483 | input output Absyn.Subscript sub; | ||
| 5484 | input ArgT inArg; | ||
| 5485 | input FuncT inFunc; | ||
| 5486 | |||
| 5487 | partial function FuncT | ||
| 5488 | input Absyn.Exp inExp; | ||
| 5489 | input ArgT inArg; | ||
| 5490 | output Absyn.Exp outExp; | ||
| 5491 | end FuncT; | ||
| 5492 | algorithm | ||
| 5493 | () := match sub | ||
| 5494 | case Absyn.Subscript.SUBSCRIPT() | ||
| 5495 | algorithm | ||
| 5496 | ✗ | sub.subscript := inFunc(sub.subscript, inArg); | |
| 5497 | then | ||
| 5498 | (); | ||
| 5499 | |||
| 5500 | else (); | ||
| 5501 | end match; | ||
| 5502 | end traverseExpShallowSub; | ||
| 5503 | |||
| 5504 | public function isElementItemClass | ||
| 5505 | input Absyn.ElementItem inElement; | ||
| 5506 | output Boolean outIsClass; | ||
| 5507 | algorithm | ||
| 5508 | outIsClass := match inElement | ||
| 5509 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT(specification = Absyn.CLASSDEF())) then true; | ||
| 5510 | else false; | ||
| 5511 | end match; | ||
| 5512 | end isElementItemClass; | ||
| 5513 | |||
| 5514 | public function isElementItemExtends | ||
| 5515 | input Absyn.ElementItem item; | ||
| 5516 | output Boolean isExtends; | ||
| 5517 | algorithm | ||
| 5518 | isExtends := match item | ||
| 5519 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT(specification = Absyn.EXTENDS())) then true; | ||
| 5520 | else false; | ||
| 5521 | end match; | ||
| 5522 | end isElementItemExtends; | ||
| 5523 | |||
| 5524 | public function isElementItem | ||
| 5525 | input Absyn.ElementItem inElement; | ||
| 5526 | output Boolean outIsClass; | ||
| 5527 | algorithm | ||
| 5528 | outIsClass := match inElement | ||
| 5529 | case Absyn.ELEMENTITEM() then true; | ||
| 5530 | else false; | ||
| 5531 | end match; | ||
| 5532 | end isElementItem; | ||
| 5533 | |||
| 5534 | public function isAlgorithmItem | ||
| 5535 | input Absyn.AlgorithmItem inAlg; | ||
| 5536 | output Boolean outIsClass; | ||
| 5537 | algorithm | ||
| 5538 | outIsClass := match inAlg | ||
| 5539 | case Absyn.ALGORITHMITEM() then true; | ||
| 5540 | else false; | ||
| 5541 | end match; | ||
| 5542 | end isAlgorithmItem; | ||
| 5543 | |||
| 5544 | public function isElementItemClassNamed | ||
| 5545 | input String inName; | ||
| 5546 | input Absyn.ElementItem inElement; | ||
| 5547 | output Boolean outIsNamed; | ||
| 5548 | algorithm | ||
| 5549 | outIsNamed := match inElement | ||
| 5550 | local | ||
| 5551 | String name; | ||
| 5552 | |||
| 5553 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT(specification = Absyn.CLASSDEF( | ||
| 5554 |
4/4✓ Branch 0 taken 149933 times.
✓ Branch 1 taken 767750 times.
✓ Branch 3 taken 70061 times.
✓ Branch 4 taken 79872 times.
|
917683 | class_ = Absyn.CLASS(name = name)))) then name == inName; |
| 5555 | else false; | ||
| 5556 | end match; | ||
| 5557 | end isElementItemClassNamed; | ||
| 5558 | |||
| 5559 | public function isElementItemNamed | ||
| 5560 | input String name; | ||
| 5561 | input Absyn.ElementItem element; | ||
| 5562 | output Boolean res; | ||
| 5563 | algorithm | ||
| 5564 | res := match element | ||
| 5565 | 30 | case Absyn.ELEMENTITEM() then isElementNamed(name, element.element); | |
| 5566 | else false; | ||
| 5567 | end match; | ||
| 5568 | end isElementItemNamed; | ||
| 5569 | |||
| 5570 | public function isElementNamed | ||
| 5571 | input String name; | ||
| 5572 | input Absyn.Element element; | ||
| 5573 | output Boolean res; | ||
| 5574 | algorithm | ||
| 5575 | res := match element | ||
| 5576 | 113 | case Absyn.Element.ELEMENT() then isElementSpecNamed(name, element.specification); | |
| 5577 | else false; | ||
| 5578 | end match; | ||
| 5579 | end isElementNamed; | ||
| 5580 | |||
| 5581 | public function isElementSpecNamed | ||
| 5582 | input String name; | ||
| 5583 | input Absyn.ElementSpec elementSpec; | ||
| 5584 | output Boolean res; | ||
| 5585 | algorithm | ||
| 5586 | res := match elementSpec | ||
| 5587 | 21 | case Absyn.ElementSpec.CLASSDEF() then isClassNamed(name, elementSpec.class_); | |
| 5588 | case Absyn.ElementSpec.COMPONENTS() | ||
| 5589 | 92 | then List.any(elementSpec.components, function isComponentItemNamed(name = name)); | |
| 5590 | else false; | ||
| 5591 | end match; | ||
| 5592 | end isElementSpecNamed; | ||
| 5593 | |||
| 5594 | public function isEmptyClassPart | ||
| 5595 | input Absyn.ClassPart inClassPart; | ||
| 5596 | output Boolean outIsEmpty; | ||
| 5597 | algorithm | ||
| 5598 | outIsEmpty := match inClassPart | ||
| 5599 | case Absyn.PUBLIC(contents = {}) then true; | ||
| 5600 | case Absyn.PROTECTED(contents = {}) then true; | ||
| 5601 | case Absyn.CONSTRAINTS(contents = {}) then true; | ||
| 5602 | case Absyn.EQUATIONS(contents = {}) then true; | ||
| 5603 | case Absyn.INITIALEQUATIONS(contents = {}) then true; | ||
| 5604 | case Absyn.ALGORITHMS(contents = {}) then true; | ||
| 5605 | case Absyn.INITIALALGORITHMS(contents = {}) then true; | ||
| 5606 | else false; | ||
| 5607 | end match; | ||
| 5608 | end isEmptyClassPart; | ||
| 5609 | |||
| 5610 | public function isInvariantExpNoTraverse "For use with traverseExp" | ||
| 5611 | input output Absyn.Exp e; | ||
| 5612 | input output Boolean b; | ||
| 5613 | algorithm | ||
| 5614 | ✗ | if not b then | |
| 5615 | ✗ | return; | |
| 5616 | end if; | ||
| 5617 | b := match e | ||
| 5618 | case Absyn.INTEGER() then true; | ||
| 5619 | case Absyn.REAL() then true; | ||
| 5620 | case Absyn.UNITFUL_LITERAL() then true; | ||
| 5621 | case Absyn.STRING() then true; | ||
| 5622 | case Absyn.BOOL() then true; | ||
| 5623 | case Absyn.BINARY() then true; | ||
| 5624 | case Absyn.UNARY() then true; | ||
| 5625 | case Absyn.LBINARY() then true; | ||
| 5626 | case Absyn.LUNARY() then true; | ||
| 5627 | case Absyn.RELATION() then true; | ||
| 5628 | case Absyn.IFEXP() then true; | ||
| 5629 | // case Absyn.CREF(Absyn.CREF_FULLYQUALIFIED()) then true; | ||
| 5630 | case Absyn.CALL(function_=Absyn.CREF_FULLYQUALIFIED()) then true; | ||
| 5631 | case Absyn.PARTEVALFUNCTION(function_=Absyn.CREF_FULLYQUALIFIED()) then true; | ||
| 5632 | case Absyn.ARRAY() then true; | ||
| 5633 | case Absyn.MATRIX() then true; | ||
| 5634 | case Absyn.RANGE() then true; | ||
| 5635 | case Absyn.CONS() then true; | ||
| 5636 | case Absyn.LIST() then true; | ||
| 5637 | case Absyn.BREAK() then true; | ||
| 5638 | else false; | ||
| 5639 | end match; | ||
| 5640 | end isInvariantExpNoTraverse; | ||
| 5641 | |||
| 5642 | function pathPartCount | ||
| 5643 | "Returns the number of parts a path consists of, e.g. A.B.C gives 3." | ||
| 5644 | input Absyn.Path path; | ||
| 5645 | input Integer partsAccum = 0; | ||
| 5646 | output Integer parts; | ||
| 5647 | algorithm | ||
| 5648 | parts := match path | ||
| 5649 | 24 | case Absyn.IDENT() then partsAccum + 1; | |
| 5650 | 34 | case Absyn.QUALIFIED() then pathPartCount(path.path, partsAccum + 1); | |
| 5651 | ✗ | case Absyn.FULLYQUALIFIED() then pathPartCount(path.path, partsAccum); | |
| 5652 | end match; | ||
| 5653 | end pathPartCount; | ||
| 5654 | |||
| 5655 | public function getAnnotationsFromConstraintClass | ||
| 5656 | input Option<Absyn.ConstrainClass> inCC; | ||
| 5657 | output list<Absyn.ElementArg> elementArgs; | ||
| 5658 | algorithm | ||
| 5659 | elementArgs := match inCC | ||
| 5660 | case SOME(Absyn.CONSTRAINCLASS(comment = SOME(Absyn.COMMENT(annotation_ = SOME(Absyn.ANNOTATION(elementArgs)))))) | ||
| 5661 | then elementArgs; | ||
| 5662 | else {}; | ||
| 5663 | end match; | ||
| 5664 | end getAnnotationsFromConstraintClass; | ||
| 5665 | |||
| 5666 | public function getAnnotationsFromItems | ||
| 5667 | input list<Absyn.ComponentItem> inComponentItems; | ||
| 5668 | input list<Absyn.ElementArg> ccAnnotations; | ||
| 5669 | output list<list<Absyn.ElementArg>> outLst = {}; | ||
| 5670 | protected | ||
| 5671 | list<Absyn.ElementArg> annotations; | ||
| 5672 | algorithm | ||
| 5673 |
2/2✓ Branch 1 taken 164 times.
✓ Branch 2 taken 163 times.
|
327 | for comp in listReverse(inComponentItems) loop |
| 5674 | annotations := match comp | ||
| 5675 | case Absyn.COMPONENTITEM(comment = SOME(Absyn.COMMENT(annotation_ = | ||
| 5676 | SOME(Absyn.ANNOTATION(annotations))))) | ||
| 5677 | 111 | then listAppend(annotations, ccAnnotations); | |
| 5678 | else ccAnnotations; | ||
| 5679 | end match; | ||
| 5680 | |||
| 5681 | outLst := annotations :: outLst; | ||
| 5682 | end for; | ||
| 5683 | end getAnnotationsFromItems; | ||
| 5684 | |||
| 5685 | public function stripGraphicsAndInteractionModification | ||
| 5686 | " This function strips out the `graphics\' modification from an Absyn.ElementArg | ||
| 5687 | list and return two lists, one with the other modifications and the | ||
| 5688 | second with the `graphics\' modification" | ||
| 5689 | input list<Absyn.ElementArg> inAbsynElementArgLst; | ||
| 5690 | output list<Absyn.ElementArg> outAbsynElementArgLst1; | ||
| 5691 | output list<Absyn.ElementArg> outAbsynElementArgLst2; | ||
| 5692 | algorithm | ||
| 5693 | (outAbsynElementArgLst1,outAbsynElementArgLst2) := matchcontinue inAbsynElementArgLst | ||
| 5694 | local | ||
| 5695 | Absyn.ElementArg mod; | ||
| 5696 | list<Absyn.ElementArg> rest,l1,l2; | ||
| 5697 | |||
| 5698 | // handle empty | ||
| 5699 | 141 | case {} then ({},{}); | |
| 5700 | |||
| 5701 | // adrpo: remove interaction annotations as we don't handle them currently | ||
| 5702 | case Absyn.MODIFICATION(path = Absyn.IDENT(name = "interaction")) :: rest | ||
| 5703 | algorithm | ||
| 5704 | ✗ | (l1,l2) := stripGraphicsAndInteractionModification(rest); | |
| 5705 | then | ||
| 5706 | (l1,l2); | ||
| 5707 | |||
| 5708 | // adrpo: remove empty annotations, to handle bad Dymola annotations, for example: Diagram(graphics) | ||
| 5709 | case Absyn.MODIFICATION(modification = NONE(), path = Absyn.IDENT(name = "graphics")) :: rest | ||
| 5710 | algorithm | ||
| 5711 | ✗ | (l1,l2) := stripGraphicsAndInteractionModification(rest); | |
| 5712 | then | ||
| 5713 | (l1,l2); | ||
| 5714 | |||
| 5715 | // add graphics to the second tuple | ||
| 5716 | case (mod as Absyn.MODIFICATION(modification = SOME(_), path = Absyn.IDENT(name = "graphics"))) :: rest | ||
| 5717 | algorithm | ||
| 5718 | 18 | (l1,l2) := stripGraphicsAndInteractionModification(rest); | |
| 5719 | 18 | then | |
| 5720 | (l1,mod::l2); | ||
| 5721 | |||
| 5722 | // add choice to the second tuple | ||
| 5723 | case (mod as Absyn.MODIFICATION(modification = SOME(_), path = Absyn.IDENT(name = "choice"))) :: rest | ||
| 5724 | algorithm | ||
| 5725 | ✗ | (l1,l2) := stripGraphicsAndInteractionModification(rest); | |
| 5726 | ✗ | then | |
| 5727 | (l1,mod::l2); | ||
| 5728 | |||
| 5729 | // collect in the first tuple | ||
| 5730 | case (mod as Absyn.MODIFICATION()) :: rest | ||
| 5731 | algorithm | ||
| 5732 | 233 | (l1,l2) := stripGraphicsAndInteractionModification(rest); | |
| 5733 | 233 | then | |
| 5734 | ((mod :: l1),l2); | ||
| 5735 | |||
| 5736 | end matchcontinue; | ||
| 5737 | end stripGraphicsAndInteractionModification; | ||
| 5738 | |||
| 5739 | public function traverseClasses<Arg> | ||
| 5740 | " This function traverses all classes of a program and applies a function | ||
| 5741 | to each class. The function takes the Absyn.Class, Absyn.Path option | ||
| 5742 | and an additional argument and returns an updated class and the | ||
| 5743 | additional values. The Absyn.Path option contains the path to the class | ||
| 5744 | that is traversed. | ||
| 5745 | inputs: (Absyn.Program, | ||
| 5746 | Absyn.Path option, | ||
| 5747 | ((Absyn.Class Absyn.Path option \'a) => (Absyn.Class Absyn.Path option \'a)), /* rel-ation to apply */ | ||
| 5748 | \'a, /* extra value passed to re-lation */ | ||
| 5749 | bool) /* true = traverse protected elements */ | ||
| 5750 | outputs: (Absyn.Program Absyn.Path option \'a)" | ||
| 5751 | input Absyn.Program inProgram; | ||
| 5752 | input Option<Absyn.Path> inPath; | ||
| 5753 | input FuncType inFunc; | ||
| 5754 | input Arg inArg; | ||
| 5755 | input Boolean inVisitProtected; | ||
| 5756 | output tuple<Absyn.Program, Option<Absyn.Path>, Arg> outTpl; | ||
| 5757 | |||
| 5758 | partial function FuncType | ||
| 5759 | input output tuple<Absyn.Class, Option<Absyn.Path>, Arg> tpl; | ||
| 5760 | end FuncType; | ||
| 5761 | algorithm | ||
| 5762 | outTpl := match inProgram | ||
| 5763 | local | ||
| 5764 | list<Absyn.Class> classes; | ||
| 5765 | Option<Absyn.Path> pa; | ||
| 5766 | Arg arg; | ||
| 5767 | Absyn.Program p; | ||
| 5768 | |||
| 5769 | case p as Absyn.PROGRAM() | ||
| 5770 | algorithm | ||
| 5771 | ✗ | (classes,pa,arg) := traverseClasses2(p.classes, inPath, inFunc, inArg, inVisitProtected); | |
| 5772 | ✗ | p.classes := classes; | |
| 5773 | ✗ | then | |
| 5774 | (p,pa,arg); | ||
| 5775 | end match; | ||
| 5776 | end traverseClasses; | ||
| 5777 | |||
| 5778 | protected function traverseClasses2<Arg> | ||
| 5779 | " Helperfunction to traverseClasses." | ||
| 5780 | input list<Absyn.Class> inClasses; | ||
| 5781 | input Option<Absyn.Path> inPath; | ||
| 5782 | input FuncType inFunc; | ||
| 5783 | input Arg inArg "extra argument"; | ||
| 5784 | input Boolean inVisitProtected "visit protected elements"; | ||
| 5785 | output tuple<list<Absyn.Class>, Option<Absyn.Path>, Arg> outTpl; | ||
| 5786 | |||
| 5787 | partial function FuncType | ||
| 5788 | input output tuple<Absyn.Class, Option<Absyn.Path>, Arg> tpl; | ||
| 5789 | end FuncType; | ||
| 5790 | algorithm | ||
| 5791 | outTpl := matchcontinue (inClasses, inPath, inFunc, inArg, inVisitProtected) | ||
| 5792 | local | ||
| 5793 | Option<Absyn.Path> pa,pa_3; | ||
| 5794 | FuncType visitor; | ||
| 5795 | Arg args,args_1,args_2,args_3; | ||
| 5796 | Absyn.Class class_1,class_2,class_; | ||
| 5797 | list<Absyn.Class> classes_1,classes; | ||
| 5798 | Boolean traverse_prot; | ||
| 5799 | |||
| 5800 | ✗ | case ({},pa,_,args,_) then (({},pa,args)); | |
| 5801 | |||
| 5802 | case ((class_ :: classes),pa,visitor,args,traverse_prot) | ||
| 5803 | algorithm | ||
| 5804 | ✗ | (class_1,_,args_1) := visitor((class_,pa,args)); | |
| 5805 | ✗ | (class_2,_,args_2) := traverseInnerClass(class_1, pa, visitor, args_1, traverse_prot); | |
| 5806 | ✗ | (classes_1,pa_3,args_3) := traverseClasses2(classes, pa, visitor, args_2, traverse_prot); | |
| 5807 | ✗ | then | |
| 5808 | (((class_2 :: classes_1),pa_3,args_3)); | ||
| 5809 | |||
| 5810 | /* Visitor failed, but class contains inner classes after traversal, i.e. those inner classes didn't fail, and thus | ||
| 5811 | the class must be included also */ | ||
| 5812 | case ((class_ :: classes),pa,visitor,args,traverse_prot) | ||
| 5813 | algorithm | ||
| 5814 | ✗ | (class_2,_,args_2) := traverseInnerClass(class_, pa, visitor, args, traverse_prot); | |
| 5815 | ✗ | true := classHasLocalClasses(class_2); | |
| 5816 | ✗ | (classes_1,pa_3,args_3) := traverseClasses2(classes, pa, visitor, args_2, traverse_prot); | |
| 5817 | ✗ | then | |
| 5818 | (((class_2 :: classes_1),pa_3,args_3)); | ||
| 5819 | |||
| 5820 | /* Visitor failed, remove class */ | ||
| 5821 | case ((_ :: classes),pa,visitor,args,traverse_prot) | ||
| 5822 | algorithm | ||
| 5823 | ✗ | (classes_1,pa_3,args_3) := traverseClasses2(classes, pa, visitor, args, traverse_prot); | |
| 5824 | ✗ | then | |
| 5825 | ((classes_1,pa_3,args_3)); | ||
| 5826 | |||
| 5827 | case ((class_ :: _),_,_,_,_) | ||
| 5828 | algorithm | ||
| 5829 | ✗ | print("-traverse_classes2 failed on class:"); | |
| 5830 | ✗ | print(AbsynUtil.className(class_)); | |
| 5831 | ✗ | print("\n"); | |
| 5832 | ✗ | then | |
| 5833 | fail(); | ||
| 5834 | |||
| 5835 | end matchcontinue; | ||
| 5836 | end traverseClasses2; | ||
| 5837 | |||
| 5838 | protected function classHasLocalClasses | ||
| 5839 | "Returns true if class contains a local class" | ||
| 5840 | input Absyn.Class cl; | ||
| 5841 | output Boolean res; | ||
| 5842 | algorithm | ||
| 5843 | res := match cl | ||
| 5844 | local | ||
| 5845 | list<Absyn.ClassPart> parts; | ||
| 5846 | |||
| 5847 | // A class with parts. | ||
| 5848 | case Absyn.CLASS(body= Absyn.PARTS(classParts = parts)) | ||
| 5849 | ✗ | then partsHasLocalClass(parts); | |
| 5850 | |||
| 5851 | // An extended class with parts: model extends M end M; | ||
| 5852 | case Absyn.CLASS(body= Absyn.CLASS_EXTENDS(parts = parts)) | ||
| 5853 | ✗ | then partsHasLocalClass(parts); | |
| 5854 | |||
| 5855 | end match; | ||
| 5856 | end classHasLocalClasses; | ||
| 5857 | |||
| 5858 | protected function partsHasLocalClass | ||
| 5859 | "Help function to classHasLocalClass" | ||
| 5860 | input list<Absyn.ClassPart> inParts; | ||
| 5861 | output Boolean res; | ||
| 5862 | algorithm | ||
| 5863 | res := match inParts | ||
| 5864 | local | ||
| 5865 | list<Absyn.ElementItem> elts; | ||
| 5866 | list<Absyn.ClassPart> parts; | ||
| 5867 | |||
| 5868 | case Absyn.PUBLIC(elts) :: _ guard eltsHasLocalClass(elts) | ||
| 5869 | then | ||
| 5870 | true; | ||
| 5871 | |||
| 5872 | case Absyn.PROTECTED(elts) :: _ guard eltsHasLocalClass(elts) | ||
| 5873 | then | ||
| 5874 | true; | ||
| 5875 | |||
| 5876 | ✗ | case _ :: parts then partsHasLocalClass(parts); | |
| 5877 | else false; | ||
| 5878 | end match; | ||
| 5879 | end partsHasLocalClass; | ||
| 5880 | |||
| 5881 | protected function eltsHasLocalClass | ||
| 5882 | "help function to partsHasLocalClass" | ||
| 5883 | input list<Absyn.ElementItem> inElts; | ||
| 5884 | output Boolean res; | ||
| 5885 | algorithm | ||
| 5886 | res := match inElts | ||
| 5887 | local | ||
| 5888 | list<Absyn.ElementItem> elts; | ||
| 5889 | |||
| 5890 | case Absyn.ELEMENTITEM(Absyn.ELEMENT(specification=Absyn.CLASSDEF())) :: _ then true; | ||
| 5891 | ✗ | case _ :: elts then eltsHasLocalClass(elts); | |
| 5892 | else false; | ||
| 5893 | end match; | ||
| 5894 | end eltsHasLocalClass; | ||
| 5895 | |||
| 5896 | protected function traverseInnerClass<Arg> | ||
| 5897 | " Helperfunction to traverseClasses2. This function traverses all inner classes of a class." | ||
| 5898 | input Absyn.Class inClass; | ||
| 5899 | input Option<Absyn.Path> path; | ||
| 5900 | input FuncType visitor; | ||
| 5901 | input Arg arg "extra value"; | ||
| 5902 | input Boolean visitProtected "if true, traverse protected elts"; | ||
| 5903 | output tuple<Absyn.Class, Option<Absyn.Path>, Arg> outTpl; | ||
| 5904 | |||
| 5905 | partial function FuncType | ||
| 5906 | input tuple<Absyn.Class, Option<Absyn.Path>, Arg> inTpl; | ||
| 5907 | output tuple<Absyn.Class, Option<Absyn.Path>, Arg> outTpl; | ||
| 5908 | end FuncType; | ||
| 5909 | protected | ||
| 5910 | Absyn.Class cls = inClass; | ||
| 5911 | Absyn.ClassDef cdef = inClass.body; | ||
| 5912 | Absyn.Path pa; | ||
| 5913 | Option<Absyn.Path> opt_pa; | ||
| 5914 | list<Absyn.ClassPart> parts; | ||
| 5915 | Arg args; | ||
| 5916 | algorithm | ||
| 5917 | (cdef, opt_pa, args) := matchcontinue(cdef, path) | ||
| 5918 | /* a class with parts */ | ||
| 5919 | case (Absyn.PARTS(), SOME(pa)) | ||
| 5920 | algorithm | ||
| 5921 | ✗ | pa := AbsynUtil.joinPaths(pa, Absyn.IDENT(cls.name)); | |
| 5922 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.classParts, SOME(pa), visitor, arg, visitProtected); | |
| 5923 | ✗ | cdef.classParts := parts; | |
| 5924 | then | ||
| 5925 | (cdef, opt_pa, args); | ||
| 5926 | |||
| 5927 | case (Absyn.PARTS(), NONE()) | ||
| 5928 | algorithm | ||
| 5929 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.classParts, SOME(Absyn.IDENT(cls.name)), visitor, arg, visitProtected); | |
| 5930 | ✗ | cdef.classParts := parts; | |
| 5931 | then | ||
| 5932 | (cdef, opt_pa, args); | ||
| 5933 | |||
| 5934 | case (Absyn.PARTS(), opt_pa) | ||
| 5935 | algorithm | ||
| 5936 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.classParts, opt_pa, visitor, arg, visitProtected); | |
| 5937 | ✗ | cdef.classParts := parts; | |
| 5938 | then | ||
| 5939 | (cdef, opt_pa, args); | ||
| 5940 | |||
| 5941 | /* adrpo: handle also an extended class with parts: model extends M end M; */ | ||
| 5942 | case (Absyn.CLASS_EXTENDS(), SOME(pa)) | ||
| 5943 | algorithm | ||
| 5944 | ✗ | pa := AbsynUtil.joinPaths(pa, Absyn.IDENT(cls.name)); | |
| 5945 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.parts, SOME(pa), visitor, arg, visitProtected); | |
| 5946 | ✗ | cdef.parts := parts; | |
| 5947 | then | ||
| 5948 | (cdef, opt_pa, args); | ||
| 5949 | |||
| 5950 | case (Absyn.CLASS_EXTENDS(), NONE()) | ||
| 5951 | algorithm | ||
| 5952 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.parts, SOME(Absyn.IDENT(cls.name)), visitor, arg, visitProtected); | |
| 5953 | ✗ | cdef.parts := parts; | |
| 5954 | then | ||
| 5955 | (cdef, opt_pa, args); | ||
| 5956 | |||
| 5957 | case (Absyn.CLASS_EXTENDS(), opt_pa) | ||
| 5958 | algorithm | ||
| 5959 | ✗ | (parts, opt_pa, args) := traverseInnerClassParts(cdef.parts, opt_pa, visitor, arg, visitProtected); | |
| 5960 | ✗ | cdef.parts := parts; | |
| 5961 | then | ||
| 5962 | (cdef, opt_pa, args); | ||
| 5963 | |||
| 5964 | /* otherwise */ | ||
| 5965 | ✗ | else (cdef, path, arg); | |
| 5966 | end matchcontinue; | ||
| 5967 | |||
| 5968 | ✗ | cls.body := cdef; | |
| 5969 | ✗ | outTpl := (cls, opt_pa, args); | |
| 5970 | end traverseInnerClass; | ||
| 5971 | |||
| 5972 | protected function traverseInnerClassParts<Arg> | ||
| 5973 | "Helper function to traverseInnerClass" | ||
| 5974 | input list<Absyn.ClassPart> inClassParts; | ||
| 5975 | input Option<Absyn.Path> inPath; | ||
| 5976 | input FuncType visitor; | ||
| 5977 | input Arg inArg "extra argument"; | ||
| 5978 | input Boolean visitProtected "visist protected elts"; | ||
| 5979 | output tuple<list<Absyn.ClassPart>, Option<Absyn.Path>, Arg> outTpl; | ||
| 5980 | |||
| 5981 | partial function FuncType | ||
| 5982 | input output tuple<Absyn.Class, Option<Absyn.Path>, Arg> tpl; | ||
| 5983 | end FuncType; | ||
| 5984 | protected | ||
| 5985 | list<Absyn.ClassPart> parts = {}; | ||
| 5986 | list<Absyn.ElementItem> elts; | ||
| 5987 | Arg arg = inArg; | ||
| 5988 | algorithm | ||
| 5989 | ✗ | parts := list( | |
| 5990 | match p | ||
| 5991 | case Absyn.PUBLIC() | ||
| 5992 | algorithm | ||
| 5993 | ✗ | (elts, _, arg) := traverseInnerClassElements(p.contents, inPath, visitor, arg, visitProtected); | |
| 5994 | ✗ | then | |
| 5995 | Absyn.PUBLIC(elts); | ||
| 5996 | |||
| 5997 | case Absyn.PROTECTED() | ||
| 5998 | guard visitProtected | ||
| 5999 | algorithm | ||
| 6000 | ✗ | (elts, _, arg) := traverseInnerClassElements(p.contents, inPath, visitor, arg, true); | |
| 6001 | ✗ | then | |
| 6002 | Absyn.PROTECTED(elts); | ||
| 6003 | |||
| 6004 | else p; | ||
| 6005 | end match | ||
| 6006 | for p in inClassParts); | ||
| 6007 | |||
| 6008 | ✗ | outTpl := (parts, inPath, arg); | |
| 6009 | end traverseInnerClassParts; | ||
| 6010 | |||
| 6011 | protected function traverseInnerClassElements<Arg> | ||
| 6012 | "Helper function to traverseInnerClassParts" | ||
| 6013 | input list<Absyn.ElementItem> inElements; | ||
| 6014 | input Option<Absyn.Path> inPath; | ||
| 6015 | input FuncType visitor; | ||
| 6016 | input Arg inArg; | ||
| 6017 | input Boolean visitProtected "visit protected elts"; | ||
| 6018 | output tuple<list<Absyn.ElementItem>, Option<Absyn.Path>, Arg> outTpl; | ||
| 6019 | |||
| 6020 | partial function FuncType | ||
| 6021 | input output tuple<Absyn.Class, Option<Absyn.Path>, Arg> tpl; | ||
| 6022 | end FuncType; | ||
| 6023 | protected | ||
| 6024 | list<Absyn.ElementItem> elts = {}; | ||
| 6025 | Absyn.Element el; | ||
| 6026 | Arg arg = inArg; | ||
| 6027 | Absyn.ElementSpec spec; | ||
| 6028 | Absyn.Class cl; | ||
| 6029 | algorithm | ||
| 6030 | ✗ | for e in inElements loop | |
| 6031 | elts := match e | ||
| 6032 | case Absyn.ELEMENTITEM(element = el as Absyn.ELEMENT(specification = spec)) | ||
| 6033 | algorithm | ||
| 6034 | ✗ | (spec, _, arg) := traverseInnerClassElementspec(spec, inPath, visitor, arg, visitProtected); | |
| 6035 | ✗ | el.specification := spec; | |
| 6036 | ✗ | e.element := el; | |
| 6037 | then | ||
| 6038 | e :: elts; | ||
| 6039 | |||
| 6040 | /* Visitor failed in elementspec, but inner classes succeeded, include class */ | ||
| 6041 | case Absyn.ELEMENTITEM(element = el as Absyn.ELEMENT(specification = spec as Absyn.CLASSDEF())) | ||
| 6042 | algorithm | ||
| 6043 | ✗ | (cl, _, arg) := traverseInnerClass(spec.class_, inPath, visitor, arg, visitProtected); | |
| 6044 | ✗ | spec.class_ := cl; | |
| 6045 | ✗ | el.specification := spec; | |
| 6046 | ✗ | e.element := el; | |
| 6047 | then | ||
| 6048 | e :: elts; | ||
| 6049 | |||
| 6050 | /* Visitor failed in elementspec, remove class */ | ||
| 6051 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT()) | ||
| 6052 | then elts; | ||
| 6053 | |||
| 6054 | else e :: elts; | ||
| 6055 | end match; | ||
| 6056 | end for; | ||
| 6057 | |||
| 6058 | ✗ | elts := listReverseInPlace(elts); | |
| 6059 | ✗ | outTpl := (elts, inPath, arg); | |
| 6060 | end traverseInnerClassElements; | ||
| 6061 | |||
| 6062 | |||
| 6063 | protected function traverseInnerClassElementspec<Arg> | ||
| 6064 | " Helperfunction to traverseInnerClassElements" | ||
| 6065 | input Absyn.ElementSpec inElementSpec; | ||
| 6066 | input Option<Absyn.Path> inPath; | ||
| 6067 | input FuncType visitor; | ||
| 6068 | input Arg inArg; | ||
| 6069 | input Boolean visitProtected "visit protected elts"; | ||
| 6070 | output tuple<Absyn.ElementSpec, Option<Absyn.Path>, Arg> outTpl; | ||
| 6071 | partial function FuncType | ||
| 6072 | input output tuple<Absyn.Class, Option<Absyn.Path>, Arg> tpl; | ||
| 6073 | end FuncType; | ||
| 6074 | algorithm | ||
| 6075 | outTpl := match(inElementSpec, inPath, inArg) | ||
| 6076 | local | ||
| 6077 | Absyn.Class cl; | ||
| 6078 | Option<Absyn.Path> pa; | ||
| 6079 | Arg args; | ||
| 6080 | Boolean repl; | ||
| 6081 | |||
| 6082 | case (Absyn.CLASSDEF(repl, cl),pa,args) | ||
| 6083 | algorithm | ||
| 6084 | ✗ | (cl,_,args) := visitor((cl,pa,args)); | |
| 6085 | ✗ | (cl,pa,args) := traverseInnerClass(cl, pa, visitor, args, visitProtected); | |
| 6086 | ✗ | then | |
| 6087 | ((Absyn.CLASSDEF(repl, cl),pa,args)); | ||
| 6088 | |||
| 6089 | ✗ | case (Absyn.EXTENDS(),pa,args) then ((inElementSpec,pa,args)); | |
| 6090 | ✗ | case (Absyn.IMPORT(),pa,args) then ((inElementSpec,pa,args)); | |
| 6091 | ✗ | case (Absyn.COMPONENTS(),pa,args) then ((inElementSpec,pa,args)); | |
| 6092 | end match; | ||
| 6093 | end traverseInnerClassElementspec; | ||
| 6094 | |||
| 6095 | public function getTypeSpecFromElementItemOpt | ||
| 6096 | "@auhtor: johti | ||
| 6097 | Get the typespec path in an Absyn.ElementItem if it has one" | ||
| 6098 | input Absyn.ElementItem inElementItem; | ||
| 6099 | output Option<Absyn.TypeSpec> outTypeSpec; | ||
| 6100 | algorithm | ||
| 6101 | outTypeSpec := match inElementItem | ||
| 6102 | local | ||
| 6103 | Absyn.TypeSpec ty_spec; | ||
| 6104 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT(specification = Absyn.COMPONENTS(typeSpec = ty_spec))) | ||
| 6105 | then SOME(ty_spec); | ||
| 6106 | else NONE(); | ||
| 6107 | end match; | ||
| 6108 | end getTypeSpecFromElementItemOpt; | ||
| 6109 | |||
| 6110 | public function getElementSpecificationFromElementItemOpt | ||
| 6111 | "@auhtor: johti | ||
| 6112 | Get a Absyn.ComponentItem from an Absyn.ElementItem if it has one" | ||
| 6113 | input Absyn.ElementItem inElementItem; | ||
| 6114 | output Option<Absyn.ElementSpec> outSpec; | ||
| 6115 | algorithm | ||
| 6116 | outSpec := match inElementItem | ||
| 6117 | local | ||
| 6118 | Absyn.ElementSpec spec; | ||
| 6119 | case Absyn.ELEMENTITEM(element = Absyn.ELEMENT(specification = spec)) then SOME(spec); | ||
| 6120 | else NONE(); | ||
| 6121 | end match; | ||
| 6122 | end getElementSpecificationFromElementItemOpt; | ||
| 6123 | |||
| 6124 | public function getComponentItemsFromElement | ||
| 6125 | input Absyn.Element element; | ||
| 6126 | output list<Absyn.ComponentItem> items; | ||
| 6127 | algorithm | ||
| 6128 | items := match element | ||
| 6129 | case Absyn.Element.ELEMENT(specification = Absyn.ElementSpec.COMPONENTS(components = items)) then items; | ||
| 6130 | else {}; | ||
| 6131 | end match; | ||
| 6132 | end getComponentItemsFromElement; | ||
| 6133 | |||
| 6134 | public function getComponentItemsFromElementSpec | ||
| 6135 | "@auhtor: johti | ||
| 6136 | Get the componentItems from a given elemSpec otherwise returns an empty list" | ||
| 6137 | input Absyn.ElementSpec elemSpec; | ||
| 6138 | output list<Absyn.ComponentItem> componentItems; | ||
| 6139 | algorithm | ||
| 6140 | componentItems := match elemSpec | ||
| 6141 | ✗ | case Absyn.COMPONENTS() then elemSpec.components; | |
| 6142 | else {}; | ||
| 6143 | end match; | ||
| 6144 | end getComponentItemsFromElementSpec; | ||
| 6145 | |||
| 6146 | public function getComponentItemsFromElementItem | ||
| 6147 | "@author: johti | ||
| 6148 | Get the componentItems from a given elementItem" | ||
| 6149 | input Absyn.ElementItem inElementItem; | ||
| 6150 | output list<Absyn.ComponentItem> componentItems; | ||
| 6151 | algorithm | ||
| 6152 | componentItems := match getElementSpecificationFromElementItemOpt(inElementItem) | ||
| 6153 | local Absyn.ElementSpec elementSpec; | ||
| 6154 | ✗ | case SOME(elementSpec) then getComponentItemsFromElementSpec(elementSpec); | |
| 6155 | else {}; | ||
| 6156 | end match; | ||
| 6157 | end getComponentItemsFromElementItem; | ||
| 6158 | |||
| 6159 | public function getDirection | ||
| 6160 | "@author johti | ||
| 6161 | Get the direction if one exists otherwise returns Absyn.BIDIR()" | ||
| 6162 | input Absyn.ElementItem elementItem; | ||
| 6163 | output Absyn.Direction oDirection; | ||
| 6164 | algorithm | ||
| 6165 | oDirection := match elementItem | ||
| 6166 | case Absyn.ELEMENTITEM(element = | ||
| 6167 | Absyn.ELEMENT(specification = | ||
| 6168 | Absyn.COMPONENTS(attributes = | ||
| 6169 | Absyn.ATTR(direction = oDirection)))) | ||
| 6170 | then oDirection; | ||
| 6171 | |||
| 6172 | else Absyn.BIDIR(); | ||
| 6173 | end match; | ||
| 6174 | end getDirection; | ||
| 6175 | |||
| 6176 | function isNamedPathIdent | ||
| 6177 | input Absyn.Path path; | ||
| 6178 | input String name; | ||
| 6179 | output Boolean res; | ||
| 6180 | algorithm | ||
| 6181 | res := match path | ||
| 6182 |
3/4✓ Branch 0 taken 38 times.
✓ Branch 1 taken 1066 times.
✗ Branch 3 not taken.
✓ Branch 4 taken 38 times.
|
1104 | case Absyn.IDENT() then path.name == name; |
| 6183 | else false; | ||
| 6184 | end match; | ||
| 6185 | end isNamedPathIdent; | ||
| 6186 | |||
| 6187 | function isUniontype | ||
| 6188 | " @author johti17: Returns true if the class is of type uniontype | ||
| 6189 | " | ||
| 6190 | input Absyn.Class cls; | ||
| 6191 | output Boolean b; | ||
| 6192 | algorithm | ||
| 6193 | b := match cls.restriction | ||
| 6194 | case Absyn.R_UNIONTYPE(__) then true; | ||
| 6195 | else false; | ||
| 6196 | end match; | ||
| 6197 | end isUniontype; | ||
| 6198 | |||
| 6199 | public function traverseClassElements<ArgT> | ||
| 6200 | input output Absyn.Class cls; | ||
| 6201 | input FuncType func; | ||
| 6202 | input output ArgT arg; | ||
| 6203 | |||
| 6204 | partial function FuncType | ||
| 6205 | input output Absyn.Element element; | ||
| 6206 | input output ArgT arg; | ||
| 6207 | output Boolean outContinue; | ||
| 6208 | end FuncType; | ||
| 6209 | protected | ||
| 6210 | Absyn.ClassDef body; | ||
| 6211 | algorithm | ||
| 6212 | 57 | (body, arg) := traverseClassDefElements(cls.body, func, arg); | |
| 6213 | |||
| 6214 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 57 times.
|
57 | if not referenceEq(body, cls.body) then |
| 6215 | 57 | cls.body := body; | |
| 6216 | end if; | ||
| 6217 | end traverseClassElements; | ||
| 6218 | |||
| 6219 | public function traverseClassDefElements<ArgT> | ||
| 6220 | input output Absyn.ClassDef classDef; | ||
| 6221 | input FuncType func; | ||
| 6222 | input output ArgT arg; | ||
| 6223 | |||
| 6224 | partial function FuncType | ||
| 6225 | input output Absyn.Element element; | ||
| 6226 | input output ArgT arg; | ||
| 6227 | output Boolean outContinue; | ||
| 6228 | end FuncType; | ||
| 6229 | algorithm | ||
| 6230 | 57 | (classDef, arg) := traverseClassDef(classDef, | |
| 6231 | function traverseClassPartElements(inFunc = func), arg); | ||
| 6232 | end traverseClassDefElements; | ||
| 6233 | |||
| 6234 | protected function traverseClassPartElements<ArgT> | ||
| 6235 | input Absyn.ClassPart inClassPart; | ||
| 6236 | input FuncType inFunc; | ||
| 6237 | input ArgT inArg; | ||
| 6238 | output Absyn.ClassPart outClassPart = inClassPart; | ||
| 6239 | output ArgT outArg = inArg; | ||
| 6240 | output Boolean outContinue = true; | ||
| 6241 | |||
| 6242 | partial function FuncType | ||
| 6243 | input Absyn.Element inElement; | ||
| 6244 | input ArgT inArg; | ||
| 6245 | output Absyn.Element outElement; | ||
| 6246 | output ArgT outArg; | ||
| 6247 | output Boolean outContinue; | ||
| 6248 | end FuncType; | ||
| 6249 | algorithm | ||
| 6250 | () := match outClassPart | ||
| 6251 | local | ||
| 6252 | list<Absyn.ElementItem> items; | ||
| 6253 | |||
| 6254 | case Absyn.PUBLIC() | ||
| 6255 | algorithm | ||
| 6256 | 57 | (items, outArg, outContinue) := | |
| 6257 | traverseListGeneric(outClassPart.contents, | ||
| 6258 | function traverseElementItem(inFunc = inFunc), inArg); | ||
| 6259 | 57 | outClassPart.contents := items; | |
| 6260 | then | ||
| 6261 | (); | ||
| 6262 | |||
| 6263 | case Absyn.PROTECTED() | ||
| 6264 | algorithm | ||
| 6265 | ✗ | (items, outArg, outContinue) := | |
| 6266 | traverseListGeneric(outClassPart.contents, | ||
| 6267 | function traverseElementItem(inFunc = inFunc), inArg); | ||
| 6268 | ✗ | outClassPart.contents := items; | |
| 6269 | then | ||
| 6270 | (); | ||
| 6271 | |||
| 6272 | else (); | ||
| 6273 | end match; | ||
| 6274 | end traverseClassPartElements; | ||
| 6275 | |||
| 6276 | protected function traverseElementItem<ArgT> | ||
| 6277 | input Absyn.ElementItem inItem; | ||
| 6278 | input FuncType inFunc; | ||
| 6279 | input ArgT inArg; | ||
| 6280 | output Absyn.ElementItem outItem; | ||
| 6281 | output ArgT outArg; | ||
| 6282 | output Boolean outContinue; | ||
| 6283 | |||
| 6284 | partial function FuncType | ||
| 6285 | input Absyn.Element inElement; | ||
| 6286 | input ArgT inArg; | ||
| 6287 | output Absyn.Element outElement; | ||
| 6288 | output ArgT outArg; | ||
| 6289 | output Boolean outContinue; | ||
| 6290 | end FuncType; | ||
| 6291 | algorithm | ||
| 6292 | (outItem, outArg, outContinue) := match inItem | ||
| 6293 | local | ||
| 6294 | Absyn.Element elem; | ||
| 6295 | |||
| 6296 | case Absyn.ELEMENTITEM() | ||
| 6297 | algorithm | ||
| 6298 |
1/2✓ Branch 0 taken 94 times.
✗ Branch 1 not taken.
|
94 | (elem, outArg, outContinue) := inFunc(inItem.element, inArg); |
| 6299 |
2/2✓ Branch 0 taken 55 times.
✓ Branch 1 taken 39 times.
|
94 | outItem := if referenceEq(elem, inItem.element) then inItem else Absyn.ELEMENTITEM(elem); |
| 6300 | then | ||
| 6301 | (outItem, outArg, outContinue); | ||
| 6302 | |||
| 6303 | else (inItem, inArg, true); | ||
| 6304 | end match; | ||
| 6305 | end traverseElementItem; | ||
| 6306 | |||
| 6307 | public function elementSpec | ||
| 6308 | input Absyn.Element el; | ||
| 6309 | output Absyn.ElementSpec elSpec; | ||
| 6310 | algorithm | ||
| 6311 | ✗ | Absyn.ELEMENT(specification = elSpec) := el; | |
| 6312 | end elementSpec; | ||
| 6313 | |||
| 6314 | public function isClassOrComponentElementSpec | ||
| 6315 | "The Absyn.ElementSpec type contains the name of the element, and this function | ||
| 6316 | extracts this name." | ||
| 6317 | input Absyn.ElementSpec inElementSpec; | ||
| 6318 | output Boolean yes = false; | ||
| 6319 | algorithm | ||
| 6320 | yes := match inElementSpec | ||
| 6321 | case Absyn.CLASSDEF(class_ = Absyn.CLASS()) then true; | ||
| 6322 | case Absyn.COMPONENTS(components = {Absyn.COMPONENTITEM()}) then true; | ||
| 6323 | else false; | ||
| 6324 | end match; | ||
| 6325 | end isClassOrComponentElementSpec; | ||
| 6326 | |||
| 6327 | public function isPartial | ||
| 6328 | "Return true if Class is a partial." | ||
| 6329 | input Absyn.Class inClass; | ||
| 6330 | output Boolean outBoolean; | ||
| 6331 | algorithm | ||
| 6332 | 6289 | Absyn.CLASS(partialPrefix = outBoolean) := inClass; | |
| 6333 | end isPartial; | ||
| 6334 | |||
| 6335 | public function isNotPartial | ||
| 6336 | "Return true if Class is a partial." | ||
| 6337 | input Absyn.Class inClass; | ||
| 6338 | output Boolean outBoolean; | ||
| 6339 | algorithm | ||
| 6340 | 5510 | outBoolean := not isPartial(inClass); | |
| 6341 | end isNotPartial; | ||
| 6342 | |||
| 6343 | public function crefIsWild | ||
| 6344 | input Absyn.ComponentRef cref; | ||
| 6345 | output Boolean wild; | ||
| 6346 | algorithm | ||
| 6347 | wild := match cref | ||
| 6348 | case Absyn.WILD() then true; | ||
| 6349 | case Absyn.ALLWILD() then true; | ||
| 6350 | else false; | ||
| 6351 | end match; | ||
| 6352 | end crefIsWild; | ||
| 6353 | |||
| 6354 | public function makeCall | ||
| 6355 | input Absyn.ComponentRef name; | ||
| 6356 | input list<Absyn.Exp> posArgs; | ||
| 6357 | input list<Absyn.NamedArg> namedArgs = {}; | ||
| 6358 | output Absyn.Exp callExp; | ||
| 6359 | algorithm | ||
| 6360 | ✗ | callExp := Absyn.Exp.CALL(name, Absyn.FunctionArgs.FUNCTIONARGS(posArgs, namedArgs), {}); | |
| 6361 | end makeCall; | ||
| 6362 | |||
| 6363 | public function setClassCommentsAfterEnd | ||
| 6364 | input output Absyn.Class cl; | ||
| 6365 | input list<String> comments; | ||
| 6366 | algorithm | ||
| 6367 | 74719 | cl.commentsAfterEnd := comments; | |
| 6368 | end setClassCommentsAfterEnd; | ||
| 6369 | |||
| 6370 | public function pathReplaceFirst | ||
| 6371 | "Replaces the first identifier of a path with another path. Ex: | ||
| 6372 | pathReplaceFirst(A.B.C, X.Y.Z) => X.Y.Z.B.C" | ||
| 6373 | input Absyn.Path path; | ||
| 6374 | input Absyn.Path prefix; | ||
| 6375 | output Absyn.Path outPath; | ||
| 6376 | algorithm | ||
| 6377 | outPath := match path | ||
| 6378 | case Absyn.Path.IDENT() then prefix; | ||
| 6379 | 3 | case Absyn.Path.QUALIFIED() then joinPaths(prefix, path.path); | |
| 6380 | ✗ | case Absyn.Path.FULLYQUALIFIED() then Absyn.Path.FULLYQUALIFIED(pathReplaceFirst(path.path, prefix)); | |
| 6381 | end match; | ||
| 6382 | end pathReplaceFirst; | ||
| 6383 | |||
| 6384 | function pathContains | ||
| 6385 | input Absyn.Path path; | ||
| 6386 | input Absyn.Ident name; | ||
| 6387 | output Boolean res; | ||
| 6388 | algorithm | ||
| 6389 | res := match path | ||
| 6390 |
3/4✓ Branch 0 taken 3 times.
✓ Branch 1 taken 15 times.
✓ Branch 3 taken 3 times.
✗ Branch 4 not taken.
|
18 | case Absyn.Path.IDENT() then path.name == name; |
| 6391 | case Absyn.Path.QUALIFIED() | ||
| 6392 |
2/6✗ Branch 0 not taken.
✓ Branch 1 taken 4 times.
✗ Branch 3 not taken.
✗ Branch 4 not taken.
✗ Branch 6 not taken.
✓ Branch 7 taken 4 times.
|
4 | then path.name == name or pathContains(path.path, name); |
| 6393 | ✗ | case Absyn.Path.FULLYQUALIFIED() then pathContains(path.path, name); | |
| 6394 | end match; | ||
| 6395 | end pathContains; | ||
| 6396 | |||
| 6397 | function getClassAnnotation | ||
| 6398 | "Returns the optional annotation for a class. Some classes may have multiple | ||
| 6399 | annotations because Modelica 2 allowed it, in that case only the first | ||
| 6400 | annotation is returned." | ||
| 6401 | input Absyn.Class cls; | ||
| 6402 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6403 | algorithm | ||
| 6404 | 4 | outAnnotation := getClassDefAnnotation(cls.body); | |
| 6405 | end getClassAnnotation; | ||
| 6406 | |||
| 6407 | function getClassDefAnnotation | ||
| 6408 | "Returns the optional annotation for a class definition." | ||
| 6409 | input Absyn.ClassDef def; | ||
| 6410 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6411 | algorithm | ||
| 6412 | outAnnotation := match def | ||
| 6413 | 4 | case Absyn.ClassDef.PARTS() guard not listEmpty(def.ann) then SOME(listHead(def.ann)); | |
| 6414 | ✗ | case Absyn.ClassDef.DERIVED() then getCommentOptAnnotation(def.comment); | |
| 6415 | ✗ | case Absyn.ClassDef.ENUMERATION() then getCommentOptAnnotation(def.comment); | |
| 6416 | ✗ | case Absyn.ClassDef.OVERLOAD() then getCommentOptAnnotation(def.comment); | |
| 6417 | ✗ | case Absyn.ClassDef.CLASS_EXTENDS() guard not listEmpty(def.ann) then SOME(listHead(def.ann)); | |
| 6418 | ✗ | case Absyn.ClassDef.PDER() then getCommentOptAnnotation(def.comment); | |
| 6419 | else NONE(); | ||
| 6420 | end match; | ||
| 6421 | end getClassDefAnnotation; | ||
| 6422 | |||
| 6423 | function setClassAnnotation | ||
| 6424 | "Overwrites the annotation for a class with a given annotation. If the class | ||
| 6425 | has multiple annotations only the first is overwritten, similarly to how | ||
| 6426 | getClassAnnotation ignores other annotations than the first." | ||
| 6427 | input output Absyn.Class cls; | ||
| 6428 | input Option<Absyn.Annotation> ann; | ||
| 6429 | algorithm | ||
| 6430 | 1 | cls.body := setClassDefAnnotation(cls.body, ann); | |
| 6431 | end setClassAnnotation; | ||
| 6432 | |||
| 6433 | function setClassDefAnnotation | ||
| 6434 | "Overwrites the annotation for a class definition with a given annotation." | ||
| 6435 | input output Absyn.ClassDef cdef; | ||
| 6436 | input Option<Absyn.Annotation> ann; | ||
| 6437 | algorithm | ||
| 6438 | () := match cdef | ||
| 6439 | case Absyn.ClassDef.PARTS() | ||
| 6440 | algorithm | ||
| 6441 |
1/2✓ Branch 0 taken 1 time.
✗ Branch 1 not taken.
|
1 | if not listEmpty(cdef.ann) then |
| 6442 | 1 | cdef.ann := listRest(cdef.ann); | |
| 6443 | end if; | ||
| 6444 | |||
| 6445 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 1 time.
✓ Branch 2 taken 1 time.
✗ Branch 3 not taken.
|
1 | if isSome(ann) then |
| 6446 | 2 | cdef.ann := Util.getOption(ann) :: cdef.ann; | |
| 6447 | end if; | ||
| 6448 | then | ||
| 6449 | (); | ||
| 6450 | |||
| 6451 | case Absyn.ClassDef.DERIVED() | ||
| 6452 | algorithm | ||
| 6453 | ✗ | cdef.comment := setCommentAnnotation(cdef.comment, ann); | |
| 6454 | then | ||
| 6455 | (); | ||
| 6456 | |||
| 6457 | case Absyn.ClassDef.ENUMERATION() | ||
| 6458 | algorithm | ||
| 6459 | ✗ | cdef.comment := setCommentAnnotation(cdef.comment, ann); | |
| 6460 | then | ||
| 6461 | (); | ||
| 6462 | |||
| 6463 | case Absyn.ClassDef.OVERLOAD() | ||
| 6464 | algorithm | ||
| 6465 | ✗ | cdef.comment := setCommentAnnotation(cdef.comment, ann); | |
| 6466 | then | ||
| 6467 | (); | ||
| 6468 | |||
| 6469 | case Absyn.ClassDef.CLASS_EXTENDS() | ||
| 6470 | algorithm | ||
| 6471 | ✗ | if not listEmpty(cdef.ann) then | |
| 6472 | ✗ | cdef.ann := listRest(cdef.ann); | |
| 6473 | end if; | ||
| 6474 | |||
| 6475 | ✗ | if isSome(ann) then | |
| 6476 | ✗ | cdef.ann := Util.getOption(ann) :: cdef.ann; | |
| 6477 | end if; | ||
| 6478 | then | ||
| 6479 | (); | ||
| 6480 | |||
| 6481 | case Absyn.ClassDef.PDER() | ||
| 6482 | algorithm | ||
| 6483 | ✗ | cdef.comment := setCommentAnnotation(cdef.comment, ann); | |
| 6484 | then | ||
| 6485 | (); | ||
| 6486 | |||
| 6487 | else (); | ||
| 6488 | end match; | ||
| 6489 | end setClassDefAnnotation; | ||
| 6490 | |||
| 6491 | function setCommentString | ||
| 6492 | "Overwrites the comment string in an optional comment." | ||
| 6493 | input output Option<Absyn.Comment> comment; | ||
| 6494 | input Option<String> commentString; | ||
| 6495 | protected | ||
| 6496 | Option<Absyn.Annotation> ann; | ||
| 6497 | Option<String> str; | ||
| 6498 | algorithm | ||
| 6499 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 4 times.
✓ Branch 2 taken 4 times.
✗ Branch 3 not taken.
|
4 | if isSome(comment) then |
| 6500 | ✗ | SOME(Absyn.COMMENT(ann, str)) := comment; | |
| 6501 | ✗ | comment := if isSome(ann) or isSome(str) then SOME(Absyn.COMMENT(ann, commentString)) else NONE(); | |
| 6502 | elseif isSome(commentString) then | ||
| 6503 | 4 | comment := SOME(Absyn.COMMENT(NONE(), commentString)); | |
| 6504 | end if; | ||
| 6505 | end setCommentString; | ||
| 6506 | |||
| 6507 | function setCommentAnnotation | ||
| 6508 | "Overwrites the annotation in an optional comment." | ||
| 6509 | input output Option<Absyn.Comment> comment; | ||
| 6510 | input Option<Absyn.Annotation> ann; | ||
| 6511 | protected | ||
| 6512 | Option<Absyn.Annotation> old_ann; | ||
| 6513 | Option<String> str; | ||
| 6514 | algorithm | ||
| 6515 | ✗ | if isSome(comment) then | |
| 6516 | ✗ | SOME(Absyn.COMMENT(old_ann, str)) := comment; | |
| 6517 | ✗ | comment := if isSome(ann) or isSome(str) then SOME(Absyn.COMMENT(ann, str)) else NONE(); | |
| 6518 | elseif isSome(ann) then | ||
| 6519 | ✗ | comment := SOME(Absyn.COMMENT(ann, NONE())); | |
| 6520 | end if; | ||
| 6521 | end setCommentAnnotation; | ||
| 6522 | |||
| 6523 | function mapAnnotationBinding | ||
| 6524 | "Updates the binding expression for the element specificed by the given path | ||
| 6525 | in an annotation using the given function. found will be true if the element | ||
| 6526 | was found and updated, otherwise false." | ||
| 6527 | input output Absyn.Annotation ann; | ||
| 6528 | input Absyn.Path path; | ||
| 6529 | input MapFunc func; | ||
| 6530 | output Boolean found; | ||
| 6531 | |||
| 6532 | partial function MapFunc | ||
| 6533 | input output Absyn.Exp exp; | ||
| 6534 | end MapFunc; | ||
| 6535 | protected | ||
| 6536 | list<Absyn.ElementArg> args = ann.elementArgs; | ||
| 6537 | algorithm | ||
| 6538 | 1 | (args, found) := List.findMap(args, function mapAnnotationBindingInArg(path = path, func = func)); | |
| 6539 |
1/2✓ Branch 0 taken 1 time.
✗ Branch 1 not taken.
|
1 | ann.elementArgs := args; |
| 6540 | end mapAnnotationBinding; | ||
| 6541 | |||
| 6542 | function mapAnnotationBindingInArg | ||
| 6543 | "Helper function to mapAnnotationBinding." | ||
| 6544 | input output Absyn.ElementArg arg; | ||
| 6545 | input Absyn.Path path; | ||
| 6546 | input MapFunc func; | ||
| 6547 | output Boolean found = false; | ||
| 6548 | |||
| 6549 | partial function MapFunc | ||
| 6550 | input output Absyn.Exp exp; | ||
| 6551 | end MapFunc; | ||
| 6552 | protected | ||
| 6553 | Absyn.Modification mod; | ||
| 6554 | list<Absyn.ElementArg> mod_args; | ||
| 6555 | Absyn.EqMod mod_eq; | ||
| 6556 | Absyn.Path rest_path; | ||
| 6557 | Integer arg_path_len; | ||
| 6558 | algorithm | ||
| 6559 | () := match arg | ||
| 6560 | case Absyn.ElementArg.MODIFICATION(modification = SOME(mod)) | ||
| 6561 | algorithm | ||
| 6562 |
1/2✓ Branch 1 taken 3 times.
✗ Branch 2 not taken.
|
3 | if pathPrefixOf(arg.path, path) then |
| 6563 | 3 | arg_path_len := pathPartCount(arg.path); | |
| 6564 | |||
| 6565 |
2/2✓ Branch 1 taken 1 time.
✓ Branch 2 taken 2 times.
|
3 | if arg_path_len == pathPartCount(path) then |
| 6566 | 1 | mod_eq := mapAnnotationBindingInEqMod(mod.eqMod, func); | |
| 6567 | 1 | mod.eqMod := mod_eq; | |
| 6568 | 1 | found := true; | |
| 6569 | else | ||
| 6570 | 2 | rest_path := Util.foldcallN(arg_path_len, AbsynUtil.pathRest, path); | |
| 6571 | 2 | (mod_args, found) := List.findMap(mod.elementArgLst, | |
| 6572 | function mapAnnotationBindingInArg(path = rest_path, func = func)); | ||
| 6573 | 2 | mod.elementArgLst := mod_args; | |
| 6574 | end if; | ||
| 6575 | |||
| 6576 |
1/2✓ Branch 0 taken 3 times.
✗ Branch 1 not taken.
|
3 | if found then |
| 6577 | 3 | arg.modification := SOME(mod); | |
| 6578 | end if; | ||
| 6579 | end if; | ||
| 6580 | then | ||
| 6581 | (); | ||
| 6582 | |||
| 6583 | else (); | ||
| 6584 | end match; | ||
| 6585 | end mapAnnotationBindingInArg; | ||
| 6586 | |||
| 6587 | function mapAnnotationBindingInEqMod | ||
| 6588 | "Helper function to mapAnnotationBinding." | ||
| 6589 | input output Absyn.EqMod eqMod; | ||
| 6590 | input MapFunc func; | ||
| 6591 | |||
| 6592 | partial function MapFunc | ||
| 6593 | input output Absyn.Exp exp; | ||
| 6594 | end MapFunc; | ||
| 6595 | algorithm | ||
| 6596 | () := match eqMod | ||
| 6597 | case Absyn.EqMod.EQMOD() | ||
| 6598 | algorithm | ||
| 6599 |
1/2✓ Branch 0 taken 1 time.
✗ Branch 1 not taken.
|
1 | eqMod.exp := func(eqMod.exp); |
| 6600 | then | ||
| 6601 | (); | ||
| 6602 | |||
| 6603 | else (); | ||
| 6604 | end match; | ||
| 6605 | end mapAnnotationBindingInEqMod; | ||
| 6606 | |||
| 6607 | public function createChoiceArray | ||
| 6608 | "translates | ||
| 6609 | choices(choice(mod1),choice(mod2),choice(mod3)) -> choices(choice={\"mod1\", \"mod2\", \"mod3\"}) | ||
| 6610 | choices(choice = mod1, choice = mod2, choice = mod3) -> choices(choice={\"mod1\", \"mod2\", \"mod3\"})" | ||
| 6611 | input Absyn.ElementArg inChoices; | ||
| 6612 | output Absyn.ElementArg outChoices = inChoices; | ||
| 6613 | protected | ||
| 6614 | Absyn.ElementArg choices; | ||
| 6615 | list<Absyn.ElementArg> choice, acc = {}, args; | ||
| 6616 | Absyn.ElementArg c, el; | ||
| 6617 | // info2/cmt2/fp2/ep2 are assigned inside a match arm nested in a for loop; | ||
| 6618 | // the surrounding `if not listEmpty(choiceArray)` guarantees the loop took | ||
| 6619 | // a bound arm at runtime, but Rust's flow analysis can't see this. Default | ||
| 6620 | // the bindings so codegen produces compilable Rust. | ||
| 6621 | Absyn.Info info1, info2 = Absyn.dummyInfo; | ||
| 6622 | Option<String> cmt1, cmt2 = NONE(); | ||
| 6623 | Boolean fp1, fp2 = false; | ||
| 6624 | Absyn.Each ep1, ep2 = Absyn.NON_EACH(); | ||
| 6625 | list<String> choiceArray = {}; | ||
| 6626 | String s; | ||
| 6627 | Absyn.Exp e; | ||
| 6628 | algorithm | ||
| 6629 | outChoices := match inChoices | ||
| 6630 | case Absyn.MODIFICATION( | ||
| 6631 | finalPrefix = fp1, | ||
| 6632 | eachPrefix = ep1, | ||
| 6633 | path = Absyn.IDENT("choices"), | ||
| 6634 | modification = SOME(Absyn.CLASSMOD(choice, Absyn.NOMOD())), | ||
| 6635 | comment = cmt1, | ||
| 6636 | info = info1) | ||
| 6637 | algorithm | ||
| 6638 |
2/2✓ Branch 0 taken 3 times.
✓ Branch 1 taken 3 times.
|
6 | for m in choice loop |
| 6639 | (choiceArray, acc) := match m | ||
| 6640 | // if is a choice, remember it and put it in an array of strings | ||
| 6641 | case Absyn.MODIFICATION(fp2, ep2, Absyn.IDENT("choice"), SOME(Absyn.CLASSMOD({el}, Absyn.NOMOD())), cmt2, info2) | ||
| 6642 | algorithm | ||
| 6643 | ✗ | s := Dump.unparseElementArgStr(el); | |
| 6644 | then | ||
| 6645 | (s::choiceArray, acc); | ||
| 6646 | // if is a choice, remember it and put it in an array of strings | ||
| 6647 | case Absyn.MODIFICATION(fp2, ep2, Absyn.IDENT("choice"), SOME(Absyn.CLASSMOD({}, Absyn.EQMOD(exp = e))), cmt2, info2) | ||
| 6648 | algorithm | ||
| 6649 | ✗ | s := Dump.printExpStr(e); | |
| 6650 | then | ||
| 6651 | (s::choiceArray, acc); | ||
| 6652 | // otherwise put it in any other arguments except choice | ||
| 6653 | else | ||
| 6654 | (choiceArray, m::acc); | ||
| 6655 | end match; | ||
| 6656 | end for; | ||
| 6657 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 3 times.
|
3 | if not listEmpty(choiceArray) then |
| 6658 | ✗ | e := Absyn.ARRAY(list(Absyn.STRING(s) for s in listReverse(choiceArray))); | |
| 6659 | ✗ | c := Absyn.MODIFICATION(fp2, ep2, Absyn.IDENT("choice"), SOME(Absyn.CLASSMOD({}, Absyn.EQMOD(e, info2))), cmt2, info2); | |
| 6660 | ✗ | args := listReverse(c::acc); | |
| 6661 | else | ||
| 6662 | 3 | args := listReverse(acc); | |
| 6663 | end if; | ||
| 6664 |
1/2✓ Branch 1 taken 3 times.
✗ Branch 2 not taken.
|
9 | choices := Absyn.MODIFICATION(fp1, ep1, Absyn.IDENT("choices"), SOME(Absyn.CLASSMOD(args, Absyn.NOMOD())), cmt1, info1); |
| 6665 | then | ||
| 6666 | choices; | ||
| 6667 | else then inChoices; | ||
| 6668 | end match; | ||
| 6669 | end createChoiceArray; | ||
| 6670 | |||
| 6671 | function mapCrefExps | ||
| 6672 | "Applies a function to the expressions in an Absyn.ComponentRef, i.e. in its subscripts." | ||
| 6673 | input output Absyn.ComponentRef cref; | ||
| 6674 | input Func func; | ||
| 6675 | |||
| 6676 | partial function Func | ||
| 6677 | input output Absyn.Exp exp; | ||
| 6678 | end Func; | ||
| 6679 | algorithm | ||
| 6680 | () := match cref | ||
| 6681 | case Absyn.ComponentRef.CREF_IDENT() | ||
| 6682 | algorithm | ||
| 6683 | ✗ | cref.subscripts := list(mapSubscriptExp(s, func) for s in cref.subscripts); | |
| 6684 | then | ||
| 6685 | (); | ||
| 6686 | |||
| 6687 | case Absyn.ComponentRef.CREF_QUAL() | ||
| 6688 | algorithm | ||
| 6689 | ✗ | cref.subscripts := list(mapSubscriptExp(s, func) for s in cref.subscripts); | |
| 6690 | then | ||
| 6691 | (); | ||
| 6692 | |||
| 6693 | case Absyn.ComponentRef.CREF_FULLYQUALIFIED() | ||
| 6694 | algorithm | ||
| 6695 | ✗ | cref.componentRef := mapCrefExps(cref.componentRef, func); | |
| 6696 | then | ||
| 6697 | (); | ||
| 6698 | |||
| 6699 | else (); | ||
| 6700 | end match; | ||
| 6701 | end mapCrefExps; | ||
| 6702 | |||
| 6703 | function mapSubscriptExp | ||
| 6704 | input output Absyn.Subscript sub; | ||
| 6705 | input Func func; | ||
| 6706 | |||
| 6707 | partial function Func | ||
| 6708 | input output Absyn.Exp exp; | ||
| 6709 | end Func; | ||
| 6710 | algorithm | ||
| 6711 | () := match sub | ||
| 6712 | case Absyn.Subscript.SUBSCRIPT() | ||
| 6713 | algorithm | ||
| 6714 | ✗ | sub.subscript := func(sub.subscript); | |
| 6715 | then | ||
| 6716 | (); | ||
| 6717 | |||
| 6718 | else (); | ||
| 6719 | end match; | ||
| 6720 | end mapSubscriptExp; | ||
| 6721 | |||
| 6722 | function getElementConstrainingClass | ||
| 6723 | input Absyn.Element element; | ||
| 6724 | output Option<Absyn.ConstrainClass> cc; | ||
| 6725 | algorithm | ||
| 6726 | cc := match element | ||
| 6727 | 138 | case Absyn.Element.ELEMENT() then element.constrainClass; | |
| 6728 | else NONE(); | ||
| 6729 | end match; | ||
| 6730 | end getElementConstrainingClass; | ||
| 6731 | |||
| 6732 | function isElementReplaceable | ||
| 6733 | input Absyn.Element element; | ||
| 6734 | output Boolean res; | ||
| 6735 | protected | ||
| 6736 | Absyn.RedeclareKeywords redecl; | ||
| 6737 | algorithm | ||
| 6738 | res := match element | ||
| 6739 | case Absyn.Element.ELEMENT(redeclareKeywords = SOME(redecl)) | ||
| 6740 | then match redecl | ||
| 6741 | case Absyn.RedeclareKeywords.REPLACEABLE() then true; | ||
| 6742 | case Absyn.RedeclareKeywords.REDECLARE_REPLACEABLE() then true; | ||
| 6743 | else false; | ||
| 6744 | end match; | ||
| 6745 | |||
| 6746 | else false; | ||
| 6747 | end match; | ||
| 6748 | end isElementReplaceable; | ||
| 6749 | |||
| 6750 | function isElementRedeclare | ||
| 6751 | input Absyn.Element element; | ||
| 6752 | output Boolean res; | ||
| 6753 | protected | ||
| 6754 | Absyn.RedeclareKeywords redecl; | ||
| 6755 | algorithm | ||
| 6756 | res := match element | ||
| 6757 | case Absyn.Element.ELEMENT(redeclareKeywords = SOME(redecl)) | ||
| 6758 | then match redecl | ||
| 6759 | case Absyn.RedeclareKeywords.REDECLARE() then true; | ||
| 6760 | else false; | ||
| 6761 | end match; | ||
| 6762 | |||
| 6763 | else false; | ||
| 6764 | end match; | ||
| 6765 | end isElementRedeclare; | ||
| 6766 | |||
| 6767 | function isModel | ||
| 6768 | input Absyn.Class cls; | ||
| 6769 | output Boolean res; | ||
| 6770 | algorithm | ||
| 6771 | res := match cls | ||
| 6772 | case Absyn.Class.CLASS(restriction = Absyn.Restriction.R_MODEL()) then true; | ||
| 6773 | else false; | ||
| 6774 | end match; | ||
| 6775 | end isModel; | ||
| 6776 | |||
| 6777 | function isBlock | ||
| 6778 | input Absyn.Class cls; | ||
| 6779 | output Boolean res; | ||
| 6780 | algorithm | ||
| 6781 | res := match cls | ||
| 6782 | case Absyn.Class.CLASS(restriction = Absyn.Restriction.R_BLOCK()) then true; | ||
| 6783 | else false; | ||
| 6784 | end match; | ||
| 6785 | end isBlock; | ||
| 6786 | |||
| 6787 | function isConnector | ||
| 6788 | input Absyn.Class cls; | ||
| 6789 | output Boolean res; | ||
| 6790 | algorithm | ||
| 6791 | res := match cls | ||
| 6792 | case Absyn.Class.CLASS(restriction = Absyn.Restriction.R_CONNECTOR()) then true; | ||
| 6793 | else false; | ||
| 6794 | end match; | ||
| 6795 | end isConnector; | ||
| 6796 | |||
| 6797 | function isExpandableConnector | ||
| 6798 | input Absyn.Class cls; | ||
| 6799 | output Boolean res; | ||
| 6800 | algorithm | ||
| 6801 | res := match cls | ||
| 6802 | case Absyn.Class.CLASS(restriction = Absyn.Restriction.R_EXP_CONNECTOR()) then true; | ||
| 6803 | else false; | ||
| 6804 | end match; | ||
| 6805 | end isExpandableConnector; | ||
| 6806 | |||
| 6807 | function eachBool | ||
| 6808 | input Absyn.Each eachPrefix; | ||
| 6809 | output Boolean res; | ||
| 6810 | algorithm | ||
| 6811 | res := match eachPrefix | ||
| 6812 | case Absyn.Each.EACH() then true; | ||
| 6813 | else false; | ||
| 6814 | end match; | ||
| 6815 | end eachBool; | ||
| 6816 | |||
| 6817 | function getElementAnnotation | ||
| 6818 | "Returns the annotation of an element. The name argument is used to select a | ||
| 6819 | component when there are multiple components in one element, in other cases | ||
| 6820 | it's ignored." | ||
| 6821 | input Absyn.Element element; | ||
| 6822 | input String name; | ||
| 6823 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6824 | algorithm | ||
| 6825 | outAnnotation := match element | ||
| 6826 | 4 | case Absyn.Element.ELEMENT() then getElementSpecAnnotation(element.specification, name); | |
| 6827 | else NONE(); | ||
| 6828 | end match; | ||
| 6829 | end getElementAnnotation; | ||
| 6830 | |||
| 6831 | function getElementSpecAnnotation | ||
| 6832 | input Absyn.ElementSpec spec; | ||
| 6833 | input String name; | ||
| 6834 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6835 | algorithm | ||
| 6836 | outAnnotation := match spec | ||
| 6837 | 3 | case Absyn.ElementSpec.CLASSDEF() then getClassAnnotation(spec.class_); | |
| 6838 | ✗ | case Absyn.ElementSpec.EXTENDS() then spec.annotationOpt; | |
| 6839 | ✗ | case Absyn.ElementSpec.IMPORT() then getCommentOptAnnotation(spec.comment); | |
| 6840 | 1 | case Absyn.ElementSpec.COMPONENTS() then getComponentItemsAnnotation(spec.components, name); | |
| 6841 | else NONE(); | ||
| 6842 | end match; | ||
| 6843 | end getElementSpecAnnotation; | ||
| 6844 | |||
| 6845 | function getComponentItemsAnnotation | ||
| 6846 | input list<Absyn.ComponentItem> items; | ||
| 6847 | input String name; | ||
| 6848 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6849 | protected | ||
| 6850 | Option<Absyn.ComponentItem> oi; | ||
| 6851 | Absyn.ComponentItem i; | ||
| 6852 | algorithm | ||
| 6853 | 1 | oi := List.findOption(items, function isComponentItemNamed(name = name)); | |
| 6854 | |||
| 6855 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 1 time.
✓ Branch 2 taken 1 time.
✗ Branch 3 not taken.
|
1 | if isSome(oi) then |
| 6856 | 1 | SOME(i) := oi; | |
| 6857 | 1 | outAnnotation := getCommentOptAnnotation(i.comment); | |
| 6858 | else | ||
| 6859 | outAnnotation := NONE(); | ||
| 6860 | end if; | ||
| 6861 | end getComponentItemsAnnotation; | ||
| 6862 | |||
| 6863 | function getCommentOptAnnotation | ||
| 6864 | input Option<Absyn.Comment> commentOpt; | ||
| 6865 | output Option<Absyn.Annotation> outAnnotation; | ||
| 6866 | algorithm | ||
| 6867 |
3/4✗ Branch 0 not taken.
✓ Branch 1 taken 3 times.
✓ Branch 2 taken 1 time.
✓ Branch 3 taken 2 times.
|
3 | if isSome(commentOpt) then |
| 6868 | 1 | SOME(Absyn.Comment.COMMENT(annotation_ = outAnnotation)) := commentOpt; | |
| 6869 | else | ||
| 6870 | outAnnotation := NONE(); | ||
| 6871 | end if; | ||
| 6872 | end getCommentOptAnnotation; | ||
| 6873 | |||
| 6874 | function getCommentOptComment | ||
| 6875 | input Option<Absyn.Comment> commentOpt; | ||
| 6876 | output Option<String> outComment; | ||
| 6877 | algorithm | ||
| 6878 |
2/4✗ Branch 0 not taken.
✓ Branch 1 taken 4 times.
✗ Branch 2 not taken.
✓ Branch 3 taken 4 times.
|
4 | if isSome(commentOpt) then |
| 6879 | ✗ | SOME(Absyn.Comment.COMMENT(comment = outComment)) := commentOpt; | |
| 6880 | else | ||
| 6881 | outComment := NONE(); | ||
| 6882 | end if; | ||
| 6883 | end getCommentOptComment; | ||
| 6884 | |||
| 6885 | function setElementAnnotation | ||
| 6886 | "Sets the annotation on an element. The name argument is used to select a | ||
| 6887 | component when there are multiple components in one element, in other cases | ||
| 6888 | it's ignored." | ||
| 6889 | input output Absyn.Element element; | ||
| 6890 | input String name; | ||
| 6891 | input Option<Absyn.Annotation> inAnnotation; | ||
| 6892 | algorithm | ||
| 6893 | () := match element | ||
| 6894 | case Absyn.Element.ELEMENT() | ||
| 6895 | algorithm | ||
| 6896 | ✗ | element.specification := setElementSpecAnnotation(element.specification, name, inAnnotation); | |
| 6897 | then | ||
| 6898 | (); | ||
| 6899 | |||
| 6900 | else (); | ||
| 6901 | end match; | ||
| 6902 | end setElementAnnotation; | ||
| 6903 | |||
| 6904 | function setElementSpecAnnotation | ||
| 6905 | input output Absyn.ElementSpec spec; | ||
| 6906 | input String name; | ||
| 6907 | input Option<Absyn.Annotation> inAnnotation; | ||
| 6908 | algorithm | ||
| 6909 | () := match spec | ||
| 6910 | case Absyn.ElementSpec.CLASSDEF() | ||
| 6911 | algorithm | ||
| 6912 | ✗ | spec.class_ := setClassAnnotation(spec.class_, inAnnotation); | |
| 6913 | then | ||
| 6914 | (); | ||
| 6915 | |||
| 6916 | case Absyn.ElementSpec.EXTENDS() | ||
| 6917 | algorithm | ||
| 6918 | ✗ | spec.annotationOpt := inAnnotation; | |
| 6919 | then | ||
| 6920 | (); | ||
| 6921 | |||
| 6922 | case Absyn.ElementSpec.IMPORT() | ||
| 6923 | algorithm | ||
| 6924 | ✗ | spec.comment := setCommentAnnotation(spec.comment, inAnnotation); | |
| 6925 | then | ||
| 6926 | (); | ||
| 6927 | |||
| 6928 | case Absyn.ElementSpec.COMPONENTS() | ||
| 6929 | algorithm | ||
| 6930 | ✗ | spec.components := List.findAndMap(spec.components, | |
| 6931 | function isComponentItemNamed(name = name), | ||
| 6932 | function setComponentItemAnnotation(inAnnotation = inAnnotation)); | ||
| 6933 | then | ||
| 6934 | (); | ||
| 6935 | |||
| 6936 | else (); | ||
| 6937 | end match; | ||
| 6938 | end setElementSpecAnnotation; | ||
| 6939 | |||
| 6940 | function setComponentItemAnnotation | ||
| 6941 | input output Absyn.ComponentItem item; | ||
| 6942 | input Option<Absyn.Annotation> inAnnotation; | ||
| 6943 | algorithm | ||
| 6944 | ✗ | item.comment := setCommentAnnotation(item.comment, inAnnotation); | |
| 6945 | end setComponentItemAnnotation; | ||
| 6946 | |||
| 6947 | function isImpure | ||
| 6948 | input Absyn.FunctionPurity purity; | ||
| 6949 | input Boolean defaultImpure = false; // No prefix = impure if true, otherwise = pure. | ||
| 6950 | output Boolean isImpure; | ||
| 6951 | algorithm | ||
| 6952 | isImpure := match purity | ||
| 6953 | case Absyn.FunctionPurity.IMPURE() then true; | ||
| 6954 | case Absyn.FunctionPurity.NO_PURITY() then defaultImpure; | ||
| 6955 | else false; | ||
| 6956 | end match; | ||
| 6957 | end isImpure; | ||
| 6958 | |||
| 6959 | function purityEqual | ||
| 6960 | input Absyn.FunctionPurity purity1; | ||
| 6961 | input Absyn.FunctionPurity purity2; | ||
| 6962 | input Boolean defaultImpure = false; // No prefix = impure if true, otherwise = pure. | ||
| 6963 | output Boolean isEqual; | ||
| 6964 | algorithm | ||
| 6965 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 62 times.
|
62 | if valueConstructor(purity1) == valueConstructor(purity2) then |
| 6966 | isEqual := true; | ||
| 6967 | elseif defaultImpure then | ||
| 6968 | isEqual := match (purity1, purity2) | ||
| 6969 | case (Absyn.FunctionPurity.NO_PURITY(), Absyn.FunctionPurity.IMPURE()) then true; | ||
| 6970 | case (Absyn.FunctionPurity.IMPURE(), Absyn.FunctionPurity.NO_PURITY()) then true; | ||
| 6971 | else false; | ||
| 6972 | end match; | ||
| 6973 | else | ||
| 6974 | isEqual := match (purity1, purity2) | ||
| 6975 | case (Absyn.FunctionPurity.NO_PURITY(), Absyn.FunctionPurity.PURE()) then true; | ||
| 6976 | case (Absyn.FunctionPurity.PURE(), Absyn.FunctionPurity.NO_PURITY()) then true; | ||
| 6977 | else false; | ||
| 6978 | end match; | ||
| 6979 | end if; | ||
| 6980 | end purityEqual; | ||
| 6981 | |||
| 6982 | function isElementSection | ||
| 6983 | input Absyn.ClassPart part; | ||
| 6984 | output Boolean res; | ||
| 6985 | algorithm | ||
| 6986 | res := match part | ||
| 6987 | case Absyn.ClassPart.PUBLIC() then true; | ||
| 6988 | case Absyn.ClassPart.PROTECTED() then true; | ||
| 6989 | else false; | ||
| 6990 | end match; | ||
| 6991 | end isElementSection; | ||
| 6992 | |||
| 6993 | function isEquationSection | ||
| 6994 | input Absyn.ClassPart part; | ||
| 6995 | output Boolean res; | ||
| 6996 | algorithm | ||
| 6997 | res := match part | ||
| 6998 | case Absyn.ClassPart.EQUATIONS() then true; | ||
| 6999 | case Absyn.ClassPart.INITIALEQUATIONS() then true; | ||
| 7000 | else false; | ||
| 7001 | end match; | ||
| 7002 | end isEquationSection; | ||
| 7003 | |||
| 7004 | function isAlgorithmSection | ||
| 7005 | input Absyn.ClassPart part; | ||
| 7006 | output Boolean res; | ||
| 7007 | algorithm | ||
| 7008 | res := match part | ||
| 7009 | case Absyn.ClassPart.ALGORITHMS() then true; | ||
| 7010 | case Absyn.ClassPart.INITIALALGORITHMS() then true; | ||
| 7011 | else false; | ||
| 7012 | end match; | ||
| 7013 | end isAlgorithmSection; | ||
| 7014 | |||
| 7015 | function getEquationItemsInPart | ||
| 7016 | input Absyn.ClassPart part; | ||
| 7017 | output list<Absyn.EquationItem> eqs; | ||
| 7018 | algorithm | ||
| 7019 | eqs := match part | ||
| 7020 | 10 | case Absyn.ClassPart.EQUATIONS() then part.contents; | |
| 7021 | 7 | case Absyn.ClassPart.INITIALEQUATIONS() then part.contents; | |
| 7022 | else {}; | ||
| 7023 | end match; | ||
| 7024 | end getEquationItemsInPart; | ||
| 7025 | |||
| 7026 | function setEquationItemsInPart | ||
| 7027 | input list<Absyn.EquationItem> eqs; | ||
| 7028 | input output Absyn.ClassPart part; | ||
| 7029 | algorithm | ||
| 7030 | () := match part | ||
| 7031 | 8 | case Absyn.ClassPart.EQUATIONS() algorithm part.contents := eqs; then (); | |
| 7032 | ✗ | case Absyn.ClassPart.INITIALEQUATIONS() algorithm part.contents := eqs; then (); | |
| 7033 | end match; | ||
| 7034 | end setEquationItemsInPart; | ||
| 7035 | |||
| 7036 | function setElementType | ||
| 7037 | "Sets the type of a component or short class definition. If the element | ||
| 7038 | contains multiple components the type is only changed if | ||
| 7039 | allowMultipleComponents = true, otherwise the function will fail." | ||
| 7040 | input output Absyn.Element element; | ||
| 7041 | input Absyn.TypeSpec typeSpec; | ||
| 7042 | input Boolean allowMultipleComponents = false; | ||
| 7043 | algorithm | ||
| 7044 | () := match element | ||
| 7045 | case Absyn.Element.ELEMENT() | ||
| 7046 | algorithm | ||
| 7047 | ✗ | element.specification := setElementSpecType(element.specification, typeSpec, allowMultipleComponents); | |
| 7048 | then | ||
| 7049 | (); | ||
| 7050 | |||
| 7051 | else (); | ||
| 7052 | end match; | ||
| 7053 | end setElementType; | ||
| 7054 | |||
| 7055 | function setElementSpecType | ||
| 7056 | input output Absyn.ElementSpec spec; | ||
| 7057 | input Absyn.TypeSpec typeSpec; | ||
| 7058 | input Boolean allowMultipleComponents = false; | ||
| 7059 | algorithm | ||
| 7060 | () := match spec | ||
| 7061 | case Absyn.ElementSpec.CLASSDEF() | ||
| 7062 | algorithm | ||
| 7063 | ✗ | spec.class_ := setClassType(spec.class_, typeSpec); | |
| 7064 | then | ||
| 7065 | (); | ||
| 7066 | |||
| 7067 | case Absyn.ElementSpec.COMPONENTS() | ||
| 7068 | guard allowMultipleComponents or listLength(spec.components) == 1 | ||
| 7069 | algorithm | ||
| 7070 | ✗ | spec.typeSpec := typeSpec; | |
| 7071 | then | ||
| 7072 | (); | ||
| 7073 | end match; | ||
| 7074 | end setElementSpecType; | ||
| 7075 | |||
| 7076 | function setClassType | ||
| 7077 | input output Absyn.Class cls; | ||
| 7078 | input Absyn.TypeSpec typeSpec; | ||
| 7079 | algorithm | ||
| 7080 | ✗ | cls.body := setClassDefType(cls.body, typeSpec); | |
| 7081 | end setClassType; | ||
| 7082 | |||
| 7083 | function setClassDefType | ||
| 7084 | input output Absyn.ClassDef cdef; | ||
| 7085 | input Absyn.TypeSpec typeSpec; | ||
| 7086 | algorithm | ||
| 7087 | () := match cdef | ||
| 7088 | case Absyn.ClassDef.DERIVED() | ||
| 7089 | algorithm | ||
| 7090 | ✗ | cdef.typeSpec := typeSpec; | |
| 7091 | then | ||
| 7092 | (); | ||
| 7093 | end match; | ||
| 7094 | end setClassDefType; | ||
| 7095 | |||
| 7096 | function isLiteralExp | ||
| 7097 | input Absyn.Exp exp; | ||
| 7098 | output Boolean literal; | ||
| 7099 | algorithm | ||
| 7100 | literal := match exp | ||
| 7101 | case Absyn.Exp.INTEGER() then true; | ||
| 7102 | case Absyn.Exp.REAL() then true; | ||
| 7103 | case Absyn.Exp.STRING() then true; | ||
| 7104 | case Absyn.Exp.BOOL() then true; | ||
| 7105 | 227 | case Absyn.Exp.ARRAY() then List.all(exp.arrayExp, isLiteralExp); | |
| 7106 | |||
| 7107 | case Absyn.Exp.MATRIX() | ||
| 7108 | algorithm | ||
| 7109 | literal := true; | ||
| 7110 | ✗ | for row in exp.matrix loop | |
| 7111 | ✗ | literal := literal and List.all(row, isLiteralExp); | |
| 7112 | if not literal then | ||
| 7113 | break; | ||
| 7114 | end if; | ||
| 7115 | end for; | ||
| 7116 | then | ||
| 7117 | literal; | ||
| 7118 | |||
| 7119 | case Absyn.Exp.RANGE() | ||
| 7120 | ✗ | then isLiteralExp(exp.start) and | |
| 7121 | Util.applyOptionOrDefault(exp.step, isLiteralExp, true) and | ||
| 7122 | isLiteralExp(exp.stop); | ||
| 7123 | |||
| 7124 | else false; | ||
| 7125 | end match; | ||
| 7126 | end isLiteralExp; | ||
| 7127 | |||
| 7128 | function enumLiteralName | ||
| 7129 | input Absyn.EnumLiteral literal; | ||
| 7130 | output String name = literal.literal; | ||
| 7131 | end enumLiteralName; | ||
| 7132 | |||
| 7133 | public function elementItemClass | ||
| 7134 | input Absyn.ElementItem item; | ||
| 7135 | output Absyn.Class cls; | ||
| 7136 | algorithm | ||
| 7137 |
3/6✗ Branch 0 not taken.
✓ Branch 1 taken 79871 times.
✗ Branch 3 not taken.
✓ Branch 4 taken 79871 times.
✗ Branch 6 not taken.
✓ Branch 7 taken 79871 times.
|
79871 | Absyn.ElementItem.ELEMENTITEM(element = Absyn.Element.ELEMENT(specification = |
| 7138 | Absyn.ElementSpec.CLASSDEF(class_ = cls))) := item; | ||
| 7139 | end elementItemClass; | ||
| 7140 | |||
| 7141 | function classDefStringComment | ||
| 7142 | input Absyn.ClassDef def; | ||
| 7143 | output String comment; | ||
| 7144 | algorithm | ||
| 7145 | comment := match def | ||
| 7146 | case Absyn.ClassDef.PARTS(comment = SOME(comment)) then comment; | ||
| 7147 | case Absyn.ClassDef.DERIVED(comment = SOME(Absyn.Comment.COMMENT(comment = SOME(comment)))) then comment; | ||
| 7148 | case Absyn.ClassDef.ENUMERATION(comment = SOME(Absyn.Comment.COMMENT(comment = SOME(comment)))) then comment; | ||
| 7149 | case Absyn.ClassDef.OVERLOAD(comment = SOME(Absyn.Comment.COMMENT(comment = SOME(comment)))) then comment; | ||
| 7150 | case Absyn.ClassDef.CLASS_EXTENDS(comment = SOME(comment)) then comment; | ||
| 7151 | case Absyn.ClassDef.PDER(comment = SOME(Absyn.Comment.COMMENT(comment = SOME(comment)))) then comment; | ||
| 7152 | else ""; | ||
| 7153 | end match; | ||
| 7154 | end classDefStringComment; | ||
| 7155 | |||
| 7156 | function appendEquation | ||
| 7157 | input Absyn.EquationItem eq; | ||
| 7158 | input Boolean isInitial = false; | ||
| 7159 | input output Absyn.Class cls; | ||
| 7160 | protected | ||
| 7161 | list<Absyn.ClassPart> parts; | ||
| 7162 | Boolean found; | ||
| 7163 | |||
| 7164 | function append_eq | ||
| 7165 | input Absyn.EquationItem eq; | ||
| 7166 | input Boolean isInitial; | ||
| 7167 | input output Absyn.ClassPart part; | ||
| 7168 | output Boolean found; | ||
| 7169 | algorithm | ||
| 7170 | found := match part | ||
| 7171 | case Absyn.ClassPart.EQUATIONS() | ||
| 7172 | guard not isInitial | ||
| 7173 | algorithm | ||
| 7174 | 1 | part.contents := List.appendElt(eq, part.contents); | |
| 7175 | then | ||
| 7176 | true; | ||
| 7177 | |||
| 7178 | case Absyn.ClassPart.INITIALEQUATIONS() | ||
| 7179 | guard isInitial | ||
| 7180 | algorithm | ||
| 7181 | 1 | part.contents := List.appendElt(eq, part.contents); | |
| 7182 | then | ||
| 7183 | true; | ||
| 7184 | |||
| 7185 | else false; | ||
| 7186 | end match; | ||
| 7187 | end append_eq; | ||
| 7188 | algorithm | ||
| 7189 | 4 | parts := listReverse(getClassPartsInClass(cls)); | |
| 7190 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 2 times.
|
6 | (parts, found) := List.findMap(parts, function append_eq(eq = eq, isInitial = isInitial)); |
| 7191 | |||
| 7192 |
2/2✓ Branch 0 taken 2 times.
✓ Branch 1 taken 2 times.
|
4 | if not found then |
| 7193 |
2/2✓ Branch 0 taken 1 time.
✓ Branch 1 taken 1 time.
|
4 | parts := if isInitial then Absyn.ClassPart.INITIALEQUATIONS({eq}) :: parts else |
| 7194 | Absyn.ClassPart.EQUATIONS({eq}) :: parts; | ||
| 7195 | end if; | ||
| 7196 | |||
| 7197 | 4 | cls := setClassPartsInClass(listReverse(parts), cls); | |
| 7198 | end appendEquation; | ||
| 7199 | |||
| 7200 | public function forIteratorEqual | ||
| 7201 | input Absyn.ForIterator iter1; | ||
| 7202 | input Absyn.ForIterator iter2; | ||
| 7203 | output Boolean equal = iter1.name == iter2.name and | ||
| 7204 | Util.optionEqual(iter1.guardExp, iter2.guardExp, expEqual) and | ||
| 7205 | Util.optionEqual(iter1.range, iter2.range, expEqual); | ||
| 7206 | end forIteratorEqual; | ||
| 7207 | |||
| 7208 | public function functionArgsEqual | ||
| 7209 | input Absyn.FunctionArgs args1; | ||
| 7210 | input Absyn.FunctionArgs args2; | ||
| 7211 | output Boolean equal; | ||
| 7212 | protected | ||
| 7213 | function named_arg_equal | ||
| 7214 | input Absyn.NamedArg arg1; | ||
| 7215 | input Absyn.NamedArg arg2; | ||
| 7216 | output Boolean equal = arg1.argName == arg2.argName and expEqual(arg1.argValue, arg2.argValue); | ||
| 7217 | end named_arg_equal; | ||
| 7218 | algorithm | ||
| 7219 | equal := match (args1, args2) | ||
| 7220 | case (Absyn.FunctionArgs.FUNCTIONARGS(), Absyn.FunctionArgs.FUNCTIONARGS()) | ||
| 7221 | ✗ | then List.isEqualOnTrue(args1.args, args2.args, expEqual) and | |
| 7222 | List.isEqualOnTrue(args1.argNames, args2.argNames, named_arg_equal); | ||
| 7223 | |||
| 7224 | case (Absyn.FunctionArgs.FOR_ITER_FARG(), Absyn.FunctionArgs.FOR_ITER_FARG()) | ||
| 7225 | ✗ | then expEqual(args1.exp, args2.exp) and | |
| 7226 | valueEq(args1.iterType, args2.iterType) and | ||
| 7227 | List.isEqualOnTrue(args1.iterators, args2.iterators, forIteratorEqual); | ||
| 7228 | |||
| 7229 | else false; | ||
| 7230 | end match; | ||
| 7231 | end functionArgsEqual; | ||
| 7232 | |||
| 7233 | public function commentEqual | ||
| 7234 | input Absyn.Comment cmt1; | ||
| 7235 | input Absyn.Comment cmt2; | ||
| 7236 | output Boolean equal = Util.optionEqual(cmt1.comment, cmt2.comment, stringEq) and | ||
| 7237 | Util.optionEqual(cmt1.annotation_, cmt2.annotation_, annotationEqual); | ||
| 7238 | end commentEqual; | ||
| 7239 | |||
| 7240 | public function annotationEqual | ||
| 7241 | input Absyn.Annotation ann1; | ||
| 7242 | input Absyn.Annotation ann2; | ||
| 7243 | output Boolean equal = List.isEqualOnTrue(ann1.elementArgs, ann2.elementArgs, elementArgEqual); | ||
| 7244 | end annotationEqual; | ||
| 7245 | |||
| 7246 | public function elementArgEqual | ||
| 7247 | input Absyn.ElementArg arg1; | ||
| 7248 | input Absyn.ElementArg arg2; | ||
| 7249 | output Boolean equal; | ||
| 7250 | algorithm | ||
| 7251 | equal := match (arg1, arg2) | ||
| 7252 | case (Absyn.ElementArg.MODIFICATION(), Absyn.ElementArg.MODIFICATION()) | ||
| 7253 |
5/10✓ Branch 0 taken 1 time.
✗ Branch 1 not taken.
✓ Branch 3 taken 1 time.
✗ Branch 4 not taken.
✓ Branch 6 taken 1 time.
✗ Branch 7 not taken.
✓ Branch 9 taken 1 time.
✗ Branch 10 not taken.
✗ Branch 12 not taken.
✓ Branch 13 taken 1 time.
|
1 | then arg1.finalPrefix == arg2.finalPrefix and |
| 7254 | valueEq(arg1.eachPrefix, arg2.eachPrefix) and | ||
| 7255 | pathEqual(arg1.path, arg2.path) and | ||
| 7256 | Util.optionEqual(arg1.modification, arg2.modification, modEqual) and | ||
| 7257 | Util.optionEqual(arg1.comment, arg2.comment, stringEq); | ||
| 7258 | |||
| 7259 | case (Absyn.ElementArg.ELEMENTARGCOMMENT(), Absyn.ElementArg.ELEMENTARGCOMMENT()) | ||
| 7260 | ✗ | then arg1.comment == arg2.comment; | |
| 7261 | |||
| 7262 | case (Absyn.ElementArg.INHERITANCEBREAK(), Absyn.ElementArg.INHERITANCEBREAK()) | ||
| 7263 | ✗ | then equationEqual(arg1.cnct, arg2.cnct); | |
| 7264 | |||
| 7265 | // REDECLARATION not yet implemented, since this is only used for annotations so far. | ||
| 7266 | |||
| 7267 | else | ||
| 7268 | algorithm | ||
| 7269 | ✗ | Error.terminate(getInstanceName() + " got unknown element.", sourceInfo()); | |
| 7270 | ✗ | then | |
| 7271 | fail(); | ||
| 7272 | |||
| 7273 | end match; | ||
| 7274 | end elementArgEqual; | ||
| 7275 | |||
| 7276 | public function modEqual | ||
| 7277 | input Absyn.Modification mod1; | ||
| 7278 | input Absyn.Modification mod2; | ||
| 7279 | output Boolean equal = eqModEqual(mod1.eqMod, mod2.eqMod) and | ||
| 7280 | List.isEqualOnTrue(mod1.elementArgLst, mod2.elementArgLst, elementArgEqual); | ||
| 7281 | end modEqual; | ||
| 7282 | |||
| 7283 | public function eqModEqual | ||
| 7284 | input Absyn.EqMod eqMod1; | ||
| 7285 | input Absyn.EqMod eqMod2; | ||
| 7286 | output Boolean equal; | ||
| 7287 | algorithm | ||
| 7288 | equal := match (eqMod1, eqMod2) | ||
| 7289 | case (Absyn.EqMod.NOMOD(), Absyn.EqMod.NOMOD()) then true; | ||
| 7290 | 1 | case (Absyn.EqMod.EQMOD(), Absyn.EqMod.EQMOD()) then expEqual(eqMod1.exp, eqMod2.exp); | |
| 7291 | else false; | ||
| 7292 | end match; | ||
| 7293 | end eqModEqual; | ||
| 7294 | |||
| 7295 | public function equationItemEqual | ||
| 7296 | input Absyn.EquationItem eq1; | ||
| 7297 | input Absyn.EquationItem eq2; | ||
| 7298 | input Boolean shallow = false "Ignore the equations inside the equations being checked if true"; | ||
| 7299 | input Boolean ignoreComment = true "Include comments/annotations in the comparison if true"; | ||
| 7300 | output Boolean equal; | ||
| 7301 | algorithm | ||
| 7302 | equal := match (eq1, eq2) | ||
| 7303 | case (Absyn.EquationItem.EQUATIONITEM(), Absyn.EquationItem.EQUATIONITEM()) | ||
| 7304 |
6/6✓ Branch 1 taken 12 times.
✓ Branch 2 taken 15 times.
✓ Branch 3 taken 2 times.
✓ Branch 4 taken 10 times.
✓ Branch 6 taken 1 time.
✓ Branch 7 taken 1 time.
|
27 | then equationEqual(eq1.equation_, eq2.equation_, shallow) and |
| 7305 | (ignoreComment or Util.optionEqual(eq1.comment, eq2.comment, commentEqual)); | ||
| 7306 | |||
| 7307 | case (Absyn.EquationItem.EQUATIONITEMCOMMENT(), Absyn.EquationItem.EQUATIONITEMCOMMENT()) | ||
| 7308 | ✗ | then eq1.comment == eq2.comment; | |
| 7309 | |||
| 7310 | else false; | ||
| 7311 | end match; | ||
| 7312 | end equationItemEqual; | ||
| 7313 | |||
| 7314 | public function equationItemsEqual | ||
| 7315 | input list<Absyn.EquationItem> eql1; | ||
| 7316 | input list<Absyn.EquationItem> eql2; | ||
| 7317 | input Boolean shallow = false "Ignore the equations inside the equations being checked if true"; | ||
| 7318 | input Boolean ignoreComment = true "Include comments/annotations in the comparison if true"; | ||
| 7319 | output Boolean equal = List.isEqualOnTrue(eql1, eql2, | ||
| 7320 | function equationItemEqual(shallow = shallow, ignoreComment = ignoreComment)); | ||
| 7321 | end equationItemsEqual; | ||
| 7322 | |||
| 7323 | public function equationEqual | ||
| 7324 | input Absyn.Equation eq1; | ||
| 7325 | input Absyn.Equation eq2; | ||
| 7326 | input Boolean shallow = false "Ignore the equations inside the equations being checked if true"; | ||
| 7327 | input Boolean ignoreComment = true "Include comments/annotations in the comparison if true"; | ||
| 7328 | output Boolean equal; | ||
| 7329 | protected | ||
| 7330 | Absyn.Exp e1, e2; | ||
| 7331 | list<Absyn.EquationItem> eql1, eql2; | ||
| 7332 | list<tuple<Absyn.Exp, list<Absyn.EquationItem>>> branches; | ||
| 7333 | Absyn.ComponentRef cr1, cr2; | ||
| 7334 | Absyn.ForIterators iters; | ||
| 7335 | Absyn.FunctionArgs args; | ||
| 7336 | Absyn.EquationItem eq; | ||
| 7337 | |||
| 7338 | function branch_eq | ||
| 7339 | input tuple<Absyn.Exp, list<Absyn.EquationItem>> branch1; | ||
| 7340 | input tuple<Absyn.Exp, list<Absyn.EquationItem>> branch2; | ||
| 7341 | input Boolean shallow; | ||
| 7342 | input Boolean ignoreComment; | ||
| 7343 | output Boolean equal = expEqual(Util.tuple21(branch1), Util.tuple21(branch2)) and | ||
| 7344 | (shallow or equationItemsEqual(Util.tuple22(branch1), Util.tuple22(branch2), false, ignoreComment)); | ||
| 7345 | end branch_eq; | ||
| 7346 | algorithm | ||
| 7347 |
2/2✓ Branch 0 taken 7 times.
✓ Branch 1 taken 20 times.
|
27 | if valueConstructor(eq1) <> valueConstructor(eq2) then |
| 7348 | equal := false; | ||
| 7349 | 7 | return; | |
| 7350 | end if; | ||
| 7351 | |||
| 7352 | equal := match eq1 | ||
| 7353 | case Absyn.Equation.EQ_IF() | ||
| 7354 | algorithm | ||
| 7355 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 3 times.
|
3 | Absyn.Equation.EQ_IF(e1, eql1, branches, eql2) := eq2; |
| 7356 |
12/16✗ Branch 0 not taken.
✓ Branch 1 taken 3 times.
✓ Branch 2 taken 2 times.
✓ Branch 3 taken 1 time.
✓ Branch 6 taken 3 times.
✗ Branch 7 not taken.
✓ Branch 8 taken 2 times.
✓ Branch 9 taken 1 time.
✓ Branch 11 taken 1 time.
✓ Branch 12 taken 1 time.
✓ Branch 15 taken 2 times.
✗ Branch 16 not taken.
✓ Branch 17 taken 1 time.
✓ Branch 18 taken 1 time.
✓ Branch 20 taken 1 time.
✗ Branch 21 not taken.
|
5 | then |
| 7357 | expEqual(eq1.ifExp, e1) and | ||
| 7358 | (shallow or equationItemsEqual(eq1.equationTrueItems, eql1)) and | ||
| 7359 | List.isEqualOnTrue(eq1.elseIfBranches, branches, function branch_eq(shallow = shallow, ignoreComment = ignoreComment)) and | ||
| 7360 | (shallow or equationItemsEqual(eq1.equationElseItems, eql2, false, ignoreComment)); | ||
| 7361 | |||
| 7362 | case Absyn.Equation.EQ_EQUALS() | ||
| 7363 | algorithm | ||
| 7364 |
1/2✗ Branch 0 not taken.
✓ Branch 1 taken 17 times.
|
17 | Absyn.Equation.EQ_EQUALS(e1, e2) := eq2; |
| 7365 |
4/4✓ Branch 1 taken 11 times.
✓ Branch 2 taken 6 times.
✓ Branch 4 taken 1 time.
✓ Branch 5 taken 10 times.
|
17 | then |
| 7366 | expEqual(eq1.leftSide, e1) and expEqual(eq1.rightSide, e2); | ||
| 7367 | |||
| 7368 | case Absyn.Equation.EQ_PDE() | ||
| 7369 | algorithm | ||
| 7370 | ✗ | Absyn.Equation.EQ_PDE(e1, e2, cr1) := eq2; | |
| 7371 | ✗ | then | |
| 7372 | expEqual(eq1.leftSide, e1) and expEqual(eq1.rightSide, e2) and crefEqual(eq1.domain, cr1); | ||
| 7373 | |||
| 7374 | case Absyn.Equation.EQ_CONNECT() | ||
| 7375 | algorithm | ||
| 7376 | ✗ | Absyn.Equation.EQ_CONNECT(cr1, cr2) := eq2; | |
| 7377 | ✗ | then | |
| 7378 | crefEqual(eq1.connector1, cr1) and crefEqual(eq1.connector2, cr2); | ||
| 7379 | |||
| 7380 | case Absyn.Equation.EQ_FOR() | ||
| 7381 | algorithm | ||
| 7382 | ✗ | Absyn.Equation.EQ_FOR(iters, eql1) := eq2; | |
| 7383 | ✗ | then | |
| 7384 | List.isEqualOnTrue(eq1.iterators, iters, forIteratorEqual) and | ||
| 7385 | (shallow or equationItemsEqual(eq1.forEquations, eql1, false, ignoreComment)); | ||
| 7386 | |||
| 7387 | case Absyn.Equation.EQ_WHEN_E() | ||
| 7388 | algorithm | ||
| 7389 | ✗ | Absyn.Equation.EQ_WHEN_E(e1, eql1, branches) := eq2; | |
| 7390 | ✗ | then | |
| 7391 | expEqual(eq1.whenExp, e1) and | ||
| 7392 | equationItemsEqual(eq1.whenEquations, eql1) and | ||
| 7393 | List.isEqualOnTrue(eq1.elseWhenEquations, branches, function branch_eq(shallow = shallow, ignoreComment = ignoreComment)); | ||
| 7394 | |||
| 7395 | case Absyn.Equation.EQ_NORETCALL() | ||
| 7396 | algorithm | ||
| 7397 | ✗ | Absyn.Equation.EQ_NORETCALL(cr1, args) := eq2; | |
| 7398 | ✗ | then | |
| 7399 | crefEqual(eq1.functionName, cr1) and functionArgsEqual(eq1.functionArgs, args); | ||
| 7400 | |||
| 7401 | case Absyn.Equation.EQ_FAILURE() | ||
| 7402 | algorithm | ||
| 7403 | ✗ | Absyn.Equation.EQ_FAILURE(eq) := eq2; | |
| 7404 | ✗ | then | |
| 7405 | shallow or equationItemEqual(eq1.equ, eq, false, ignoreComment); | ||
| 7406 | |||
| 7407 | else | ||
| 7408 | algorithm | ||
| 7409 | ✗ | Error.terminate(getInstanceName() + " got unknown equation.", sourceInfo()); | |
| 7410 | ✗ | then | |
| 7411 | fail(); | ||
| 7412 | |||
| 7413 | end match; | ||
| 7414 | end equationEqual; | ||
| 7415 | |||
| 7416 | annotation(__OpenModelica_Interface="frontend_dump"); | ||
| 7417 | end AbsynUtil; | ||
| 7418 |