OMCompiler/Compiler/FrontEnd/ConnectUtil.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 ConnectUtil | ||
| 37 | " file: ConnectUtil.mo | ||
| 38 | package: ConnectUtil | ||
| 39 | description: Connection set management | ||
| 40 | |||
| 41 | |||
| 42 | Connections generate connection sets (datatype SET is described in Connect) | ||
| 43 | which are constructed during instantiation. When a connection | ||
| 44 | set is generated, it is used to create a number of equations. | ||
| 45 | The kind of equations created depends on the type of the set. | ||
| 46 | |||
| 47 | ConnectUtil.mo is called from Inst.mo and is responsible for | ||
| 48 | creation of all connect-equations later passed to the DAE module | ||
| 49 | in DAEUtil.mo." | ||
| 50 | |||
| 51 | // public imports | ||
| 52 | public | ||
| 53 | import Absyn; | ||
| 54 | import AbsynUtil; | ||
| 55 | import SCode; | ||
| 56 | import ClassInf; | ||
| 57 | import Config; | ||
| 58 | import DAE.Connect; | ||
| 59 | import DAE; | ||
| 60 | import FCore; | ||
| 61 | import InnerOuter; | ||
| 62 | import ConnectionGraph; | ||
| 63 | |||
| 64 | // protected imports | ||
| 65 | protected | ||
| 66 | import ComponentReference; | ||
| 67 | protected import ComponentReferenceBasics; | ||
| 68 | import DAEUtil; | ||
| 69 | import Debug; | ||
| 70 | import ElementSource; | ||
| 71 | import Error; | ||
| 72 | import Expression; | ||
| 73 | protected import ExpressionBasics; | ||
| 74 | import ExpressionDump; | ||
| 75 | import ExpressionSimplify; | ||
| 76 | import Flags; | ||
| 77 | import List; | ||
| 78 | import Lookup; | ||
| 79 | import PrefixUtil; | ||
| 80 | import SCodeUtil; | ||
| 81 | import System; | ||
| 82 | import Types; | ||
| 83 | import Util; | ||
| 84 | import Values; | ||
| 85 | import Global; | ||
| 86 | |||
| 87 | // Import some types from Connect. | ||
| 88 | import DAE.Connect.{Face,ConnectorType,ConnectorElement,SetTrieNode,SetTrie,SetConnection,OuterConnect,Sets,Set}; | ||
| 89 | |||
| 90 | // Set graph represented as an adjacency list. | ||
| 91 | protected type SetGraph = array<list<Integer>>; | ||
| 92 | |||
| 93 | public function newSet | ||
| 94 | "This function creates a 'new' set for the given prefix. This means that it | ||
| 95 | makes a set with a new empty trie, but copies the set count and connection | ||
| 96 | crefs from the old set. This is done because we don't need to propagate | ||
| 97 | connections down in the instance hierarchy, but the list of connection crefs | ||
| 98 | needs to be propagated to be able to evaluate the cardinality operator. See | ||
| 99 | comments in addSet below for how the sets are merged later." | ||
| 100 | input DAE.Prefix prefix; | ||
| 101 | input output Sets sets; | ||
| 102 | protected | ||
| 103 | String pstr; | ||
| 104 | Integer sc; | ||
| 105 | DAE.ComponentRef cr; | ||
| 106 | algorithm | ||
| 107 | 923777 | Sets.SETS(setCount = sc) := sets; | |
| 108 | |||
| 109 | try | ||
| 110 | 923777 | cr := PrefixUtil.prefixFirstCref(prefix); | |
| 111 | 544025 | pstr := ComponentReferenceBasics.printComponentRefStr(cr); | |
| 112 | else | ||
| 113 | cr := DAE.WILD(); | ||
| 114 | pstr := ""; | ||
| 115 | end try; | ||
| 116 | |||
| 117 | 923777 | sets := Sets.SETS(SetTrieNode.SET_TRIE_NODE(pstr, cr, {}, 0), sc, {}, {}); | |
| 118 | end newSet; | ||
| 119 | |||
| 120 | public function addSet | ||
| 121 | "This function adds a child set to a parent set." | ||
| 122 | input Sets parentSets; | ||
| 123 | input Sets childSets; | ||
| 124 | output Sets sets; | ||
| 125 | algorithm | ||
| 126 | sets := matchcontinue(parentSets, childSets) | ||
| 127 | local | ||
| 128 | list<SetConnection> c1, c2; | ||
| 129 | list<OuterConnect> o1, o2; | ||
| 130 | Integer sc; | ||
| 131 | SetTrieNode node; | ||
| 132 | |||
| 133 | // If the child set is empty we don't need to add it. | ||
| 134 | case (_, _) guard isEmptySet(childSets) | ||
| 135 | then parentSets; | ||
| 136 | |||
| 137 | // If both sets are nameless, i.e. a top scope set, just return the child | ||
| 138 | // set as it is. This is to avoid getting nestled top scope sets in some | ||
| 139 | // cases, and the child should be a superset of the parent. | ||
| 140 | case (Sets.SETS(sets = SetTrieNode.SET_TRIE_NODE(cref = DAE.WILD())), | ||
| 141 | Sets.SETS(sets = SetTrieNode.SET_TRIE_NODE(cref = DAE.WILD()))) | ||
| 142 | then childSets; | ||
| 143 | |||
| 144 | // Check if the node already exists. In that case it's probably due to | ||
| 145 | // multiple inheritance and we should ignore it. | ||
| 146 | case (Sets.SETS(sets = node as SetTrieNode.SET_TRIE_NODE()), | ||
| 147 | Sets.SETS()) | ||
| 148 | algorithm | ||
| 149 | 6023 | setTrieGetNode(setTrieNodeName(childSets.sets), node.nodes); | |
| 150 | then | ||
| 151 | parentSets; | ||
| 152 | |||
| 153 | // In the normal case we add the trie on the child sets to the parent, and | ||
| 154 | // also merge their lists of outer connects. | ||
| 155 | case (Sets.SETS(node as SetTrieNode.SET_TRIE_NODE(), _, c1, o1), | ||
| 156 | Sets.SETS(_, sc, c2, o2)) | ||
| 157 | algorithm | ||
| 158 | 6010 | c1 := listAppend(c2, c1); | |
| 159 | 6010 | o1 := listAppend(o2, o1); | |
| 160 | 12020 | node.nodes := childSets.sets :: node.nodes; | |
| 161 | 6010 | then | |
| 162 | Sets.SETS(node, sc, c1, o1); | ||
| 163 | |||
| 164 | end matchcontinue; | ||
| 165 | end addSet; | ||
| 166 | |||
| 167 | protected function isEmptySet | ||
| 168 | "Check if a given set is empty." | ||
| 169 | input Sets sets; | ||
| 170 | output Boolean isEmpty; | ||
| 171 | algorithm | ||
| 172 | isEmpty := match sets | ||
| 173 | case Sets.SETS(sets = SetTrieNode.SET_TRIE_NODE(nodes = {}), | ||
| 174 | connections = {}, outerConnects = {}) then true; | ||
| 175 | else false; | ||
| 176 | end match; | ||
| 177 | end isEmptySet; | ||
| 178 | |||
| 179 | public function addConnection | ||
| 180 | "Adds a new connection by looking up both the given connector elements in the | ||
| 181 | set trie and merging the sets together." | ||
| 182 | input output Sets sets; | ||
| 183 | input DAE.ComponentRef cref1; | ||
| 184 | input Face face1; | ||
| 185 | input DAE.ComponentRef cref2; | ||
| 186 | input Face face2; | ||
| 187 | input DAE.ConnectorType connectorType; | ||
| 188 | input DAE.ElementSource source; | ||
| 189 | protected | ||
| 190 | ConnectorElement e1, e2; | ||
| 191 | ConnectorType ty; | ||
| 192 | algorithm | ||
| 193 | 28041 | ty := makeConnectorType(connectorType); | |
| 194 | 28041 | e1 := findElement(cref1, face1, ty, source, sets); | |
| 195 | 28041 | e2 := findElement(cref2, face2, ty, source, sets); | |
| 196 | 28041 | sets := mergeSets(e1, e2, sets); | |
| 197 | end addConnection; | ||
| 198 | |||
| 199 | protected function getConnectCount | ||
| 200 | input DAE.ComponentRef cref; | ||
| 201 | input SetTrie trie; | ||
| 202 | output Integer count; | ||
| 203 | protected | ||
| 204 | SetTrieNode node; | ||
| 205 | algorithm | ||
| 206 | try | ||
| 207 | 760 | node := setTrieGet(cref, trie, false); | |
| 208 | |||
| 209 | count := match node | ||
| 210 | 683 | case SetTrieNode.SET_TRIE_NODE() then node.connectCount; | |
| 211 | ✗ | case SetTrieNode.SET_TRIE_LEAF() then node.connectCount; | |
| 212 | end match; | ||
| 213 | else | ||
| 214 | count := 0; | ||
| 215 | end try; | ||
| 216 | end getConnectCount; | ||
| 217 | |||
| 218 | public function addArrayConnection | ||
| 219 | "Connects two arrays of connectors." | ||
| 220 | input output Sets sets; | ||
| 221 | input DAE.ComponentRef cref1; | ||
| 222 | input Face face1; | ||
| 223 | input DAE.ComponentRef cref2; | ||
| 224 | input Face face2; | ||
| 225 | input DAE.ElementSource source; | ||
| 226 | input DAE.ConnectorType connectorType; | ||
| 227 | protected | ||
| 228 | list<DAE.ComponentRef> crefs1, crefs2; | ||
| 229 | DAE.ComponentRef cr2; | ||
| 230 | algorithm | ||
| 231 | 4359 | crefs1 := ComponentReference.expandCref(cref1, false); | |
| 232 | 4359 | crefs2 := ComponentReference.expandCref(cref2, false); | |
| 233 | |||
| 234 |
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21997 | for cr1 in crefs1 loop |
| 235 |
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17638 | cr2 :: crefs2 := crefs2; |
| 236 | 17638 | sets := addConnection(sets, cr1, face1, cr2, face2, connectorType, source); | |
| 237 | end for; | ||
| 238 | end addArrayConnection; | ||
| 239 | |||
| 240 | protected function makeConnectorType | ||
| 241 | "Creates a connector type from the flow or stream prefix given." | ||
| 242 | input DAE.ConnectorType connectorType; | ||
| 243 | output ConnectorType ty; | ||
| 244 | protected | ||
| 245 | Option<DAE.ComponentRef> flowName; | ||
| 246 | algorithm | ||
| 247 | ty := match connectorType | ||
| 248 | case DAE.POTENTIAL() then ConnectorType.EQU(); | ||
| 249 | case DAE.FLOW() then ConnectorType.FLOW(); | ||
| 250 | 81 | case DAE.STREAM(flowName) then ConnectorType.STREAM(flowName); | |
| 251 | case DAE.NON_CONNECTOR() then ConnectorType.NO_TYPE(); | ||
| 252 | else | ||
| 253 | algorithm | ||
| 254 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, | |
| 255 | {"ConnectUtil.makeConnectorType: invalid connector type."}); | ||
| 256 | ✗ | then | |
| 257 | fail(); | ||
| 258 | end match; | ||
| 259 | end makeConnectorType; | ||
| 260 | |||
| 261 | public function addConnectorVariablesFromDAE | ||
| 262 | "If the class state indicates a connector, this function adds all flow | ||
| 263 | variables in the dae as inside connectors to the connection sets." | ||
| 264 | input Boolean ignore; | ||
| 265 | input ClassInf.State classState; | ||
| 266 | input DAE.Prefix prefix; | ||
| 267 | input list<DAE.Var> vars; | ||
| 268 | input SourceInfo info; | ||
| 269 | input DAE.ElementSource elementSource; | ||
| 270 | input output Sets sets; | ||
| 271 | algorithm | ||
| 272 | sets := match classState | ||
| 273 | local | ||
| 274 | Absyn.Path class_path; | ||
| 275 | list<DAE.Var> streams, flows; | ||
| 276 | |||
| 277 | case ClassInf.CONNECTOR(path = class_path, isExpandable = false) guard not ignore | ||
| 278 | algorithm | ||
| 279 | // Check balance of non expandable connectors. | ||
| 280 | 4386 | checkConnectorBalance(vars, class_path, info); | |
| 281 | |||
| 282 | // Add flow variables as inside connectors, unless disabled by flag. | ||
| 283 |
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4386 | if not Flags.isSet(Flags.DISABLE_SINGLE_FLOW_EQ) then |
| 284 | 4386 | (flows, streams) := getStreamAndFlowVariables(vars); | |
| 285 | 4386 | sets := List.fold2(flows, addFlowVariableFromDAE, elementSource, prefix, sets); | |
| 286 | 4386 | sets := addStreamFlowAssociations(sets, prefix, streams, flows); | |
| 287 | end if; | ||
| 288 | then | ||
| 289 | sets; | ||
| 290 | |||
| 291 | else sets; | ||
| 292 | end match; | ||
| 293 | end addConnectorVariablesFromDAE; | ||
| 294 | |||
| 295 | protected function addFlowVariableFromDAE | ||
| 296 | "Adds a flow variable from the DAE to the sets as an inside flow variable." | ||
| 297 | input DAE.Var variable; | ||
| 298 | input DAE.ElementSource elementSource; | ||
| 299 | input DAE.Prefix prefix; | ||
| 300 | input output Sets sets; | ||
| 301 | protected | ||
| 302 | list<DAE.ComponentRef> crefs; | ||
| 303 | algorithm | ||
| 304 | 5005 | crefs := daeVarToCrefs(variable); | |
| 305 | |||
| 306 |
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14642 | for cr in crefs loop |
| 307 | 9637 | sets := addInsideFlowVariable(sets, cr, elementSource, prefix); | |
| 308 | end for; | ||
| 309 | end addFlowVariableFromDAE; | ||
| 310 | |||
| 311 | public function isExpandable | ||
| 312 | input DAE.ComponentRef name; | ||
| 313 | output Boolean expandableConnector; | ||
| 314 | algorithm | ||
| 315 | expandableConnector := match name | ||
| 316 | case DAE.CREF_IDENT() | ||
| 317 | 127264 | then Types.isExpandableConnector(name.identType); | |
| 318 | |||
| 319 | case DAE.CREF_QUAL() | ||
| 320 |
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346230 | then Types.isExpandableConnector(name.identType) or |
| 321 | isExpandable(name.componentRef); | ||
| 322 | |||
| 323 | else false; | ||
| 324 | |||
| 325 | end match; | ||
| 326 | end isExpandable; | ||
| 327 | |||
| 328 | protected function daeHasExpandableConnectors | ||
| 329 | "Checks if a DAE contains any expandable connectors." | ||
| 330 | input DAE.DAElist DAE; | ||
| 331 | output Boolean hasExpandable; | ||
| 332 | protected | ||
| 333 | list<DAE.Element> vars; | ||
| 334 | algorithm | ||
| 335 |
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1039 | if System.getHasExpandableConnectors() then |
| 336 | 125 | DAE.DAE(vars) := DAE; | |
| 337 | 125 | hasExpandable := List.any(vars, isVarExpandable); | |
| 338 | else | ||
| 339 | hasExpandable := false; | ||
| 340 | end if; | ||
| 341 | end daeHasExpandableConnectors; | ||
| 342 | |||
| 343 | protected function isVarExpandable | ||
| 344 | input DAE.Element var; | ||
| 345 | output Boolean isExpandable; | ||
| 346 | algorithm | ||
| 347 | isExpandable := match var | ||
| 348 | 98601 | case DAE.VAR() then isExpandable(var.componentRef); | |
| 349 | else false; | ||
| 350 | end match; | ||
| 351 | end isVarExpandable; | ||
| 352 | |||
| 353 | protected function getExpandableVariablesWithNoBinding | ||
| 354 | "@author: adrpo | ||
| 355 | Goes through a list of expandable variables | ||
| 356 | THAT HAVE NO BINDING and returns their crefs" | ||
| 357 | input list<DAE.Element> variables; | ||
| 358 | output list<DAE.ComponentRef> potential = {}; | ||
| 359 | protected | ||
| 360 | DAE.ComponentRef name; | ||
| 361 | algorithm | ||
| 362 |
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13327 | for var in variables loop |
| 363 | () := match var | ||
| 364 | // do not return the ones that have a binding as they are used | ||
| 365 | // TODO: actually only if their binding is not another expandable??!! | ||
| 366 | case DAE.VAR(componentRef = name, binding = NONE()) | ||
| 367 | algorithm | ||
| 368 |
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7403 | if isExpandable(name) then |
| 369 | potential := name :: potential; | ||
| 370 | end if; | ||
| 371 | then | ||
| 372 | (); | ||
| 373 | |||
| 374 | else (); | ||
| 375 | end match; | ||
| 376 | end for; | ||
| 377 | end getExpandableVariablesWithNoBinding; | ||
| 378 | |||
| 379 | protected function getStreamAndFlowVariables | ||
| 380 | "Goes through a list of variables and filters out all flow and stream | ||
| 381 | variables into separate lists." | ||
| 382 | input list<DAE.Var> variables; | ||
| 383 | output list<DAE.Var> flows = {}; | ||
| 384 | output list<DAE.Var> streams = {}; | ||
| 385 | algorithm | ||
| 386 |
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16307 | for var in variables loop |
| 387 | () := match var | ||
| 388 | case DAE.TYPES_VAR(attributes = DAE.ATTR(connectorType = DAE.FLOW())) | ||
| 389 | algorithm | ||
| 390 | flows := var :: flows; | ||
| 391 | then | ||
| 392 | (); | ||
| 393 | |||
| 394 | case DAE.TYPES_VAR(attributes = DAE.ATTR(connectorType = DAE.STREAM())) | ||
| 395 | algorithm | ||
| 396 | streams := var :: streams; | ||
| 397 | then | ||
| 398 | (); | ||
| 399 | |||
| 400 | else (); | ||
| 401 | end match; | ||
| 402 | end for; | ||
| 403 | end getStreamAndFlowVariables; | ||
| 404 | |||
| 405 | protected function addStreamFlowAssociations | ||
| 406 | "Adds information to the connection sets about which flow variables each | ||
| 407 | stream variable is associated to." | ||
| 408 | input output Sets sets; | ||
| 409 | input DAE.Prefix prefix; | ||
| 410 | input list<DAE.Var> streamVars; | ||
| 411 | input list<DAE.Var> flowVars; | ||
| 412 | protected | ||
| 413 | DAE.Var flow_var; | ||
| 414 | DAE.ComponentRef flow_cr; | ||
| 415 | list<DAE.ComponentRef> stream_crs; | ||
| 416 | algorithm | ||
| 417 | // No stream variables => not a stream connector. | ||
| 418 |
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4386 | if listEmpty(streamVars) then |
| 419 | 4265 | return; | |
| 420 | end if; | ||
| 421 | |||
| 422 | // Stream variables and exactly one flow => add associations. | ||
| 423 |
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121 | {flow_var} := flowVars; |
| 424 |
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121 | {flow_cr} := daeVarToCrefs(flow_var); |
| 425 | 121 | flow_cr := PrefixUtil.prefixCrefNoContext(prefix, flow_cr); | |
| 426 | |||
| 427 |
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442 | for stream_var in streamVars loop |
| 428 | 321 | stream_crs := daeVarToCrefs(stream_var); | |
| 429 | |||
| 430 |
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495 | for stream_cr in stream_crs loop |
| 431 | 174 | sets := addStreamFlowAssociation(stream_cr, flow_cr, sets); | |
| 432 | end for; | ||
| 433 | end for; | ||
| 434 | end addStreamFlowAssociations; | ||
| 435 | |||
| 436 | protected function daeVarToCrefs | ||
| 437 | "Converts a DAE.Var to a list of crefs." | ||
| 438 | input DAE.Var var; | ||
| 439 | output list<DAE.ComponentRef> crefs; | ||
| 440 | protected | ||
| 441 | String name; | ||
| 442 | DAE.Type ty; | ||
| 443 | list<DAE.ComponentRef> crs; | ||
| 444 | DAE.Dimensions dims; | ||
| 445 | DAE.ComponentRef cr; | ||
| 446 | algorithm | ||
| 447 | 5447 | DAE.TYPES_VAR(name = name, ty = ty) := var; | |
| 448 | 5447 | ty := Types.derivedBasicType(ty); | |
| 449 | |||
| 450 | crefs := match ty | ||
| 451 | // Scalar | ||
| 452 | 2924 | case DAE.T_REAL() then {DAE.CREF_IDENT(name, ty, {})}; | |
| 453 | |||
| 454 | // Complex type | ||
| 455 | case DAE.T_COMPLEX() | ||
| 456 | algorithm | ||
| 457 | ✗ | crs := listAppend(daeVarToCrefs(v) for v in listReverse(ty.varLst)); | |
| 458 | ✗ | cr := DAE.CREF_IDENT(name, DAE.T_REAL_DEFAULT, {}); | |
| 459 | ✗ | then | |
| 460 | list(ComponentReference.joinCrefs(cr, c) for c in crs); | ||
| 461 | |||
| 462 | // Array | ||
| 463 | case DAE.T_ARRAY() | ||
| 464 | algorithm | ||
| 465 | 2523 | dims := TypesDump.getDimensions(ty); | |
| 466 | 2523 | cr := DAE.CREF_IDENT(name, ty, {}); | |
| 467 | 2523 | then | |
| 468 | expandArrayCref(cr, dims); | ||
| 469 | |||
| 470 | else | ||
| 471 | algorithm | ||
| 472 | ✗ | Error.addInternalError("Unknown var " + name + | |
| 473 | " in ConnectUtil.daeVarToCrefs", sourceInfo()); | ||
| 474 | ✗ | then | |
| 475 | fail(); | ||
| 476 | |||
| 477 | end match; | ||
| 478 | end daeVarToCrefs; | ||
| 479 | |||
| 480 | protected function expandArrayCref | ||
| 481 | "This function takes an array cref and a list of dimensions, and generates all | ||
| 482 | scalar crefs by expanding the dimensions into subscripts." | ||
| 483 | input DAE.ComponentRef cref; | ||
| 484 | input DAE.Dimensions dims; | ||
| 485 | input list<DAE.ComponentRef> accumCrefs = {}; | ||
| 486 | output list<DAE.ComponentRef> crefs; | ||
| 487 | algorithm | ||
| 488 | crefs := matchcontinue dims | ||
| 489 | local | ||
| 490 | DAE.Dimension dim; | ||
| 491 | DAE.Dimensions rest_dims; | ||
| 492 | DAE.Exp idx; | ||
| 493 | DAE.ComponentRef cr; | ||
| 494 | list<DAE.ComponentRef> crs; | ||
| 495 | |||
| 496 | case {} then cref :: accumCrefs; | ||
| 497 | |||
| 498 | case dim :: rest_dims | ||
| 499 | algorithm | ||
| 500 | 9531 | (idx, dim) := getNextIndex(dim); | |
| 501 | 14016 | cr := ComponentReference.subscriptCref(cref, {DAE.INDEX(idx)}); | |
| 502 | 7008 | crs := expandArrayCref(cr, rest_dims, accumCrefs); | |
| 503 | 7008 | crs := expandArrayCref(cref, dim :: rest_dims, crs); | |
| 504 | then | ||
| 505 | crs; | ||
| 506 | |||
| 507 | else accumCrefs; | ||
| 508 | |||
| 509 | end matchcontinue; | ||
| 510 | end expandArrayCref; | ||
| 511 | |||
| 512 | protected function reverseEnumType | ||
| 513 | "Reverses the order of the literals in an enumeration dimension, or just | ||
| 514 | returns the given dimension if it's not an enumeration. This is used by | ||
| 515 | getNextIndex that starts from the end, so that it can take the first literal | ||
| 516 | in the list instead of the last (more efficient)." | ||
| 517 | input output DAE.Dimension dim; | ||
| 518 | algorithm | ||
| 519 | () := match dim | ||
| 520 | case DAE.DIM_ENUM() | ||
| 521 | algorithm | ||
| 522 | ✗ | dim.literals := listReverse(dim.literals); | |
| 523 | then | ||
| 524 | (); | ||
| 525 | |||
| 526 | else (); | ||
| 527 | end match; | ||
| 528 | end reverseEnumType; | ||
| 529 | |||
| 530 | protected function getNextIndex | ||
| 531 | "Returns the next index given a dimension, and updates the dimension. Fails | ||
| 532 | when there are no indices left." | ||
| 533 | input DAE.Dimension dim; | ||
| 534 | output DAE.Exp nextIndex; | ||
| 535 | output DAE.Dimension restDim; | ||
| 536 | algorithm | ||
| 537 | (nextIndex, restDim) := match dim | ||
| 538 | local | ||
| 539 | Integer new_idx, dim_size; | ||
| 540 | Absyn.Path p, ep; | ||
| 541 | String l; | ||
| 542 | list<String> l_rest; | ||
| 543 | |||
| 544 | 2523 | case DAE.DIM_INTEGER(integer = 0) then fail(); | |
| 545 | ✗ | case DAE.DIM_ENUM(size = 0) then fail(); | |
| 546 | |||
| 547 | case DAE.DIM_INTEGER(integer = new_idx) | ||
| 548 | algorithm | ||
| 549 | 7008 | dim_size := new_idx - 1; | |
| 550 | 7008 | then | |
| 551 | (DAE.ICONST(new_idx), DAE.DIM_INTEGER(dim_size)); | ||
| 552 | |||
| 553 | // Assumes that the enum has been reversed with reverseEnumType. | ||
| 554 | case DAE.DIM_ENUM(p, l :: l_rest, new_idx) | ||
| 555 | algorithm | ||
| 556 | ✗ | ep := AbsynUtil.joinPaths(p, Absyn.IDENT(l)); | |
| 557 | ✗ | dim_size := new_idx - 1; | |
| 558 | ✗ | then | |
| 559 | (DAE.ENUM_LITERAL(ep, new_idx), DAE.DIM_ENUM(p, l_rest, dim_size)); | ||
| 560 | end match; | ||
| 561 | end getNextIndex; | ||
| 562 | |||
| 563 | protected function addInsideFlowVariable | ||
| 564 | "Adds a single inside flow variable to the connection sets." | ||
| 565 | input output Sets sets; | ||
| 566 | input DAE.ComponentRef cref; | ||
| 567 | input DAE.ElementSource source; | ||
| 568 | input DAE.Prefix prefix; | ||
| 569 | protected | ||
| 570 | ConnectorElement e; | ||
| 571 | algorithm | ||
| 572 | try | ||
| 573 | // Check if it exists in the sets already. | ||
| 574 | 9637 | setTrieGetElement(cref, Face.INSIDE(), sets.sets); | |
| 575 | else | ||
| 576 | // Otherwise, add a new set for it. | ||
| 577 | 9637 | sets.setCount := sets.setCount + 1; | |
| 578 | 9637 | e := newElement(cref, Face.INSIDE(), ConnectorType.FLOW(), source, sets.setCount); | |
| 579 | 9637 | sets.sets := setTrieAdd(e, sets.sets); | |
| 580 | end try; | ||
| 581 | end addInsideFlowVariable; | ||
| 582 | |||
| 583 | protected function addStreamFlowAssociation | ||
| 584 | "Adds an association between a stream variable and a flow." | ||
| 585 | input DAE.ComponentRef streamCref; | ||
| 586 | input DAE.ComponentRef flowCref; | ||
| 587 | input output Sets sets; | ||
| 588 | algorithm | ||
| 589 | 174 | sets := updateSetLeaf(sets, streamCref, flowCref, addStreamFlowAssociation2); | |
| 590 | end addStreamFlowAssociation; | ||
| 591 | |||
| 592 | protected function addStreamFlowAssociation2 | ||
| 593 | "Helper function to addSTreamFlowAssocication, sets the flow association in a | ||
| 594 | leaf node." | ||
| 595 | input DAE.ComponentRef flowCref; | ||
| 596 | input output SetTrieNode node; | ||
| 597 | algorithm | ||
| 598 | () := match node | ||
| 599 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 600 | algorithm | ||
| 601 | 174 | node.flowAssociation := SOME(flowCref); | |
| 602 | then | ||
| 603 | (); | ||
| 604 | end match; | ||
| 605 | end addStreamFlowAssociation2; | ||
| 606 | |||
| 607 | protected function getStreamFlowAssociation | ||
| 608 | "Returns the associated flow variable for a stream variable." | ||
| 609 | input DAE.ComponentRef streamCref; | ||
| 610 | input Sets sets; | ||
| 611 | output DAE.ComponentRef flowCref; | ||
| 612 | algorithm | ||
| 613 |
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18 | SetTrieNode.SET_TRIE_LEAF(flowAssociation = SOME(flowCref)) := |
| 614 | setTrieGet(streamCref, sets.sets, false); | ||
| 615 | end getStreamFlowAssociation; | ||
| 616 | |||
| 617 | public function addOuterConnection | ||
| 618 | "Adds a connection with a reference to an outer connector These are added to a | ||
| 619 | special list, such that they can be moved up in the instance hierarchy to a | ||
| 620 | place where both instances are defined." | ||
| 621 | input DAE.Prefix scope; | ||
| 622 | input output Sets sets; | ||
| 623 | input DAE.ComponentRef cr1; | ||
| 624 | input DAE.ComponentRef cr2; | ||
| 625 | input Absyn.InnerOuter io1; | ||
| 626 | input Absyn.InnerOuter io2; | ||
| 627 | input Face f1; | ||
| 628 | input Face f2; | ||
| 629 | input DAE.ElementSource source; | ||
| 630 | protected | ||
| 631 | OuterConnect new_oc; | ||
| 632 | algorithm | ||
| 633 | // Only add a new outer connection if it doesn't already exist in the list. | ||
| 634 |
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10 | if not List.any(sets.outerConnects, function outerConnectionMatches(cr1 = cr1, cr2 = cr2)) then |
| 635 | 10 | new_oc := OuterConnect.OUTERCONNECT(scope, cr1, io1, f1, cr2, io2, f2, source); | |
| 636 | 20 | sets.outerConnects := new_oc :: sets.outerConnects; | |
| 637 | end if; | ||
| 638 | end addOuterConnection; | ||
| 639 | |||
| 640 | protected function outerConnectionMatches | ||
| 641 | "Returns true if Connect.OuterConnect matches the two component references | ||
| 642 | passed as argument." | ||
| 643 | input OuterConnect oc; | ||
| 644 | input DAE.ComponentRef cr1; | ||
| 645 | input DAE.ComponentRef cr2; | ||
| 646 | output Boolean matches; | ||
| 647 | algorithm | ||
| 648 | matches := match oc | ||
| 649 | case OuterConnect.OUTERCONNECT() | ||
| 650 |
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1 | then ComponentReferenceBasics.crefEqual(oc.cr1,cr1) and ComponentReferenceBasics.crefEqual(oc.cr2,cr2) or |
| 651 | ComponentReferenceBasics.crefEqual(oc.cr1,cr2) and ComponentReferenceBasics.crefEqual(oc.cr2,cr1); | ||
| 652 | end match; | ||
| 653 | end outerConnectionMatches; | ||
| 654 | |||
| 655 | public function addOuterConnectToSets | ||
| 656 | "Adds an outer connection to all sets where a corresponding inner definition | ||
| 657 | is present. For instance, if a connection set contains {world.v, topPin.v} and | ||
| 658 | we have an outer connection connect(world, a2.aPin), the connection is added | ||
| 659 | to the sets, resulting in {world.v, topPin.v, a2.aPin.v}. Returns the updated | ||
| 660 | sets and a boolean that indicates if anything was added or not." | ||
| 661 | input DAE.ComponentRef cref1; | ||
| 662 | input DAE.ComponentRef cref2; | ||
| 663 | input Absyn.InnerOuter io1; | ||
| 664 | input Absyn.InnerOuter io2; | ||
| 665 | input Face face1; | ||
| 666 | input Face face2; | ||
| 667 | input output Sets sets; | ||
| 668 | input SourceInfo inInfo; | ||
| 669 | output Boolean added; | ||
| 670 | protected | ||
| 671 | Boolean is_outer1, is_outer2; | ||
| 672 | algorithm | ||
| 673 | 10 | is_outer1 := AbsynUtil.isOuter(io1); | |
| 674 | 10 | is_outer2 := AbsynUtil.isOuter(io2); | |
| 675 | |||
| 676 | added := match(is_outer1, is_outer2) | ||
| 677 | // Both are outer => error. | ||
| 678 | case (true, true) | ||
| 679 | algorithm | ||
| 680 | ✗ | Error.addSourceMessage(Error.UNSUPPORTED_LANGUAGE_FEATURE, | |
| 681 | {"Connections where both connectors are outer references", "No suggestion"}, inInfo); | ||
| 682 | then | ||
| 683 | false; | ||
| 684 | |||
| 685 | // Both are inner => do nothing. | ||
| 686 | case (false, false) then false; | ||
| 687 | |||
| 688 | // The first is outer and the second inner, call addOuterConnectToSets2. | ||
| 689 | case (true, false) | ||
| 690 | algorithm | ||
| 691 | 4 | (sets, added) := addOuterConnectToSets2(cref1, cref2, face1, face2, sets); | |
| 692 | 4 | then | |
| 693 | added; | ||
| 694 | |||
| 695 | // The first is inner and the second outer, call addOuterConnectToSets2 with | ||
| 696 | // reversed order on the components compared to above. | ||
| 697 | case (false, true) | ||
| 698 | algorithm | ||
| 699 | 2 | (sets, added) := addOuterConnectToSets2(cref2, cref1, face2, face1, sets); | |
| 700 | 2 | then | |
| 701 | added; | ||
| 702 | end match; | ||
| 703 | end addOuterConnectToSets; | ||
| 704 | |||
| 705 | protected function addOuterConnectToSets2 | ||
| 706 | "Helper function to addOuterConnectToSets. Tries to add connections between | ||
| 707 | the inner and outer components." | ||
| 708 | input DAE.ComponentRef outerCref; | ||
| 709 | input DAE.ComponentRef innerCref; | ||
| 710 | input Face outerFace; | ||
| 711 | input Face innerFace; | ||
| 712 | input output Sets sets; | ||
| 713 | output Boolean added; | ||
| 714 | protected | ||
| 715 | SetTrieNode node; | ||
| 716 | list<ConnectorElement> outer_els, inner_els; | ||
| 717 | Integer sc; | ||
| 718 | algorithm | ||
| 719 | try | ||
| 720 | // Find the trie node for the outer component. | ||
| 721 | 6 | node := setTrieGet(outerCref, sets.sets, true); | |
| 722 | // Collect all connector elements in the node. | ||
| 723 | 4 | outer_els := collectOuterElements(node, outerFace); | |
| 724 | // Find or create inner elements corresponding to the outer elements. | ||
| 725 |
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10 | inner_els := list(findInnerElement(oe, innerCref, innerFace, sets) for oe in outer_els); |
| 726 | // Merge the inner and outer sets pairwise from the two lists. | ||
| 727 | 2 | sc := sets.setCount; | |
| 728 | 2 | sets := List.threadFold(outer_els, inner_els, mergeSets, sets); | |
| 729 | // Check if the number of sets changed. | ||
| 730 | 2 | added := sc <> sets.setCount; | |
| 731 | else | ||
| 732 | added := false; | ||
| 733 | end try; | ||
| 734 | end addOuterConnectToSets2; | ||
| 735 | |||
| 736 | protected function collectOuterElements | ||
| 737 | "Collects all connector elements with a certain face from a trie node." | ||
| 738 | input SetTrieNode node; | ||
| 739 | input Face face; | ||
| 740 | output list<ConnectorElement> outerElements; | ||
| 741 | algorithm | ||
| 742 | outerElements := match node | ||
| 743 | case SetTrieNode.SET_TRIE_NODE() | ||
| 744 | 4 | then List.mapFlat(node.nodes, function collectOuterElements2(face = face, prefix = NONE())); | |
| 745 | |||
| 746 | ✗ | else collectOuterElements2(node, face, NONE()); | |
| 747 | end match; | ||
| 748 | end collectOuterElements; | ||
| 749 | |||
| 750 | protected function collectOuterElements2 | ||
| 751 | "Helper function to collectOuterElements." | ||
| 752 | input SetTrieNode node; | ||
| 753 | input Face face; | ||
| 754 | input Option<DAE.ComponentRef> prefix; | ||
| 755 | output list<ConnectorElement> outerElements; | ||
| 756 | algorithm | ||
| 757 | outerElements := match node | ||
| 758 | local | ||
| 759 | DAE.ComponentRef cr; | ||
| 760 | list<SetTrieNode> nodes; | ||
| 761 | ConnectorElement e; | ||
| 762 | |||
| 763 | case SetTrieNode.SET_TRIE_NODE(cref = cr) | ||
| 764 | algorithm | ||
| 765 | ✗ | cr := optPrefixCref(prefix, cr); | |
| 766 | ✗ | then | |
| 767 | List.mapFlat(node.nodes, function collectOuterElements2(face = face, prefix = SOME(cr))); | ||
| 768 | |||
| 769 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 770 | algorithm | ||
| 771 | 10 | e := setTrieGetLeafElement(node, face); | |
| 772 | cr := getElementName(e); | ||
| 773 | 8 | e := setElementName(e, optPrefixCref(prefix, cr)); | |
| 774 | then | ||
| 775 | {e}; | ||
| 776 | |||
| 777 | end match; | ||
| 778 | end collectOuterElements2; | ||
| 779 | |||
| 780 | protected function findInnerElement | ||
| 781 | "Finds or creates an inner element based on a given outer element." | ||
| 782 | input ConnectorElement outerElement; | ||
| 783 | input DAE.ComponentRef innerCref; | ||
| 784 | input Face innerFace; | ||
| 785 | input Sets sets; | ||
| 786 | output ConnectorElement innerElement; | ||
| 787 | protected | ||
| 788 | DAE.ComponentRef name; | ||
| 789 | ConnectorType ty; | ||
| 790 | DAE.ElementSource src; | ||
| 791 | algorithm | ||
| 792 | 8 | ConnectorElement.CONNECTOR_ELEMENT(name = name, ty = ty, source = src) := outerElement; | |
| 793 | 8 | name := ComponentReference.joinCrefs(innerCref, name); | |
| 794 | 8 | innerElement := findElement(name, innerFace, ty, src, sets); | |
| 795 | end findInnerElement; | ||
| 796 | |||
| 797 | protected function optPrefixCref | ||
| 798 | "Appends an optional prefix to a cref." | ||
| 799 | input Option<DAE.ComponentRef> prefix; | ||
| 800 | input output DAE.ComponentRef cref; | ||
| 801 | algorithm | ||
| 802 | cref := match prefix | ||
| 803 | local | ||
| 804 | DAE.ComponentRef cr; | ||
| 805 | |||
| 806 | case NONE() then cref; | ||
| 807 | ✗ | case SOME(cr) then ComponentReference.joinCrefs(cr, cref); | |
| 808 | |||
| 809 | end match; | ||
| 810 | end optPrefixCref; | ||
| 811 | |||
| 812 | protected function findElement | ||
| 813 | "Tries to find a connector element in the sets given a cref and a face. If no | ||
| 814 | element can be found it creates a new one." | ||
| 815 | input DAE.ComponentRef cref; | ||
| 816 | input Face face; | ||
| 817 | input ConnectorType ty; | ||
| 818 | input DAE.ElementSource source; | ||
| 819 | input Sets sets; | ||
| 820 | output ConnectorElement element; | ||
| 821 | algorithm | ||
| 822 | try | ||
| 823 | 56263 | element := setTrieGetElement(cref, face, sets.sets); | |
| 824 | else | ||
| 825 | 34425 | element := newElement(cref, face, ty, source, Connect.NEW_SET); | |
| 826 | end try; | ||
| 827 | end findElement; | ||
| 828 | |||
| 829 | protected function newElement | ||
| 830 | "Creates a new connector element." | ||
| 831 | input DAE.ComponentRef cref; | ||
| 832 | input Face face; | ||
| 833 | input ConnectorType ty; | ||
| 834 | input DAE.ElementSource source; | ||
| 835 | input Integer set; | ||
| 836 | output ConnectorElement element; | ||
| 837 | algorithm | ||
| 838 | 44062 | element := ConnectorElement.CONNECTOR_ELEMENT(cref, face, ty, source, set); | |
| 839 | end newElement; | ||
| 840 | |||
| 841 | protected function isNewElement | ||
| 842 | "Checks if the element is new, i.e. hasn't been assigned to a set yet." | ||
| 843 | input ConnectorElement element; | ||
| 844 | output Boolean isNew; | ||
| 845 | protected | ||
| 846 | Integer set; | ||
| 847 | algorithm | ||
| 848 | 56271 | ConnectorElement.CONNECTOR_ELEMENT(set = set) := element; | |
| 849 | 28049 | isNew := set == Connect.NEW_SET; | |
| 850 | end isNewElement; | ||
| 851 | |||
| 852 | protected function getElementSetIndex | ||
| 853 | "Returns the set index of a connector element." | ||
| 854 | input ConnectorElement inElement; | ||
| 855 | output Integer outIndex; | ||
| 856 | algorithm | ||
| 857 | 7309 | ConnectorElement.CONNECTOR_ELEMENT(set = outIndex) := inElement; | |
| 858 | end getElementSetIndex; | ||
| 859 | |||
| 860 | protected function setElementSetIndex | ||
| 861 | "Sets the set index of a connector element." | ||
| 862 | input output ConnectorElement element; | ||
| 863 | input Integer index; | ||
| 864 | algorithm | ||
| 865 | 34407 | element.set := index; | |
| 866 | end setElementSetIndex; | ||
| 867 | |||
| 868 | protected function getElementName | ||
| 869 | "Returns the name of a connector element." | ||
| 870 | input ConnectorElement element; | ||
| 871 | output DAE.ComponentRef name; | ||
| 872 | algorithm | ||
| 873 | 8 | ConnectorElement.CONNECTOR_ELEMENT(name = name) := element; | |
| 874 | end getElementName; | ||
| 875 | |||
| 876 | protected function setElementName | ||
| 877 | "Sets the name of a connector element." | ||
| 878 | input output ConnectorElement element; | ||
| 879 | input DAE.ComponentRef name; | ||
| 880 | algorithm | ||
| 881 | 44052 | element.name := name; | |
| 882 | end setElementName; | ||
| 883 | |||
| 884 | protected function getElementSource | ||
| 885 | "Returns the element source of a connector element." | ||
| 886 | input ConnectorElement element; | ||
| 887 | output DAE.ElementSource source; | ||
| 888 | algorithm | ||
| 889 | 5528 | ConnectorElement.CONNECTOR_ELEMENT(source = source) := element; | |
| 890 | end getElementSource; | ||
| 891 | |||
| 892 | protected function setTrieNewLeaf | ||
| 893 | "Creates a new trie leaf." | ||
| 894 | input String id; | ||
| 895 | input ConnectorElement element; | ||
| 896 | output SetTrieNode leaf; | ||
| 897 | algorithm | ||
| 898 | leaf := match element | ||
| 899 | case ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE()) | ||
| 900 | ✗ | then SetTrieNode.SET_TRIE_LEAF(id, SOME(element), NONE(), NONE(), 0); | |
| 901 | |||
| 902 | case ConnectorElement.CONNECTOR_ELEMENT(face = Face.OUTSIDE()) | ||
| 903 | ✗ | then SetTrieNode.SET_TRIE_LEAF(id, NONE(), SOME(element), NONE(), 0); | |
| 904 | |||
| 905 | end match; | ||
| 906 | end setTrieNewLeaf; | ||
| 907 | |||
| 908 | protected function setTrieNewNode | ||
| 909 | "Creates a new trie node." | ||
| 910 | input DAE.ComponentRef cref; | ||
| 911 | input ConnectorElement element; | ||
| 912 | output SetTrieNode node; | ||
| 913 | algorithm | ||
| 914 | node := match cref | ||
| 915 | local | ||
| 916 | String id; | ||
| 917 | DAE.ComponentRef cr; | ||
| 918 | |||
| 919 | // A simple identifier, just create a new leaf. | ||
| 920 | case DAE.CREF_IDENT() | ||
| 921 | algorithm | ||
| 922 | ✗ | id := ComponentReferenceBasics.printComponentRefStr(cref); | |
| 923 | ✗ | then | |
| 924 | setTrieNewLeaf(id, setElementName(element, cref)); | ||
| 925 | |||
| 926 | // A qualified identifier, call this function recursively. | ||
| 927 | // I.e. a.b.c becomes NODE(a, {NODE(b, {NODE(c)})}); | ||
| 928 | case DAE.CREF_QUAL() | ||
| 929 | algorithm | ||
| 930 | ✗ | cr := ComponentReferenceBasics.crefFirstCref(cref); | |
| 931 | ✗ | id := ComponentReferenceBasics.printComponentRefStr(cr); | |
| 932 | ✗ | node := setTrieNewNode(cref.componentRef, element); | |
| 933 | ✗ | then | |
| 934 | SetTrieNode.SET_TRIE_NODE(id, cr, {node}, 0); | ||
| 935 | |||
| 936 | end match; | ||
| 937 | end setTrieNewNode; | ||
| 938 | |||
| 939 | protected function setTrieNodeName | ||
| 940 | input SetTrieNode node; | ||
| 941 | output String name; | ||
| 942 | algorithm | ||
| 943 | name := match node | ||
| 944 | 619381 | case SetTrieNode.SET_TRIE_NODE() then node.name; | |
| 945 | 401776 | case SetTrieNode.SET_TRIE_LEAF() then node.name; | |
| 946 | end match; | ||
| 947 | end setTrieNodeName; | ||
| 948 | |||
| 949 | protected function mergeSets | ||
| 950 | "Merges two sets." | ||
| 951 | input ConnectorElement element1; | ||
| 952 | input ConnectorElement element2; | ||
| 953 | input output Sets sets; | ||
| 954 | protected | ||
| 955 | Boolean new1, new2; | ||
| 956 | algorithm | ||
| 957 | new1 := isNewElement(element1); | ||
| 958 | new2 := isNewElement(element2); | ||
| 959 | 28049 | sets := mergeSets2(element1, element2, new1, new2, sets); | |
| 960 | end mergeSets; | ||
| 961 | |||
| 962 | protected function mergeSets2 | ||
| 963 | "Helper function to mergeSets, dispatches to the correct function based on if | ||
| 964 | the elements are new or not." | ||
| 965 | input ConnectorElement element1; | ||
| 966 | input ConnectorElement element2; | ||
| 967 | input Boolean isNew1; | ||
| 968 | input Boolean isNew2; | ||
| 969 | input output Sets sets; | ||
| 970 | algorithm | ||
| 971 | sets := match(isNew1, isNew2) | ||
| 972 | // Both elements are new, add them to a new set. | ||
| 973 | 13667 | case (true, true) then addNewSet(element1, element2, sets); | |
| 974 | |||
| 975 | // The first is new and the second old, add the first to the same set as the | ||
| 976 | // second. | ||
| 977 | 1839 | case (true, false) then addToSet(element1, element2, sets); | |
| 978 | |||
| 979 | // The second is new and the first old, add the second to the same set as | ||
| 980 | // the first. | ||
| 981 | 5234 | case (false, true) then addToSet(element2, element1, sets); | |
| 982 | |||
| 983 | // Both sets are old, add a connection between their sets. | ||
| 984 | 7309 | case (false, false) then connectSets(element1, element2, sets); | |
| 985 | end match; | ||
| 986 | end mergeSets2; | ||
| 987 | |||
| 988 | protected function addNewSet | ||
| 989 | "Adds a new set containing the given two elements to the sets." | ||
| 990 | input ConnectorElement element1; | ||
| 991 | input ConnectorElement element2; | ||
| 992 | input output Sets sets; | ||
| 993 | protected | ||
| 994 | SetTrie node; | ||
| 995 | Integer sc; | ||
| 996 | ConnectorElement e1, e2; | ||
| 997 | algorithm | ||
| 998 | 13667 | sc := sets.setCount + 1; | |
| 999 | 13667 | e1 := setElementSetIndex(element1, sc); | |
| 1000 | 13667 | e2 := setElementSetIndex(element2, sc); | |
| 1001 | 13667 | node := sets.sets; | |
| 1002 | 13667 | node := setTrieAdd(e1, node); | |
| 1003 | 13667 | sets.sets := setTrieAdd(e2, node); | |
| 1004 | sets.setCount := sc; | ||
| 1005 | end addNewSet; | ||
| 1006 | |||
| 1007 | protected function addToSet | ||
| 1008 | "Adds the first connector element to the same set as the second." | ||
| 1009 | input ConnectorElement element; | ||
| 1010 | input ConnectorElement set; | ||
| 1011 | input output Sets sets; | ||
| 1012 | protected | ||
| 1013 | Integer index; | ||
| 1014 | ConnectorElement e; | ||
| 1015 | algorithm | ||
| 1016 | index := getElementSetIndex(set); | ||
| 1017 | 7073 | e := setElementSetIndex(element, index); | |
| 1018 | 7073 | sets.sets := setTrieAdd(e, sets.sets); | |
| 1019 | end addToSet; | ||
| 1020 | |||
| 1021 | protected function connectSets | ||
| 1022 | "Connects two sets." | ||
| 1023 | input ConnectorElement element1; | ||
| 1024 | input ConnectorElement element2; | ||
| 1025 | input output Sets sets; | ||
| 1026 | protected | ||
| 1027 | Integer set1, set2; | ||
| 1028 | algorithm | ||
| 1029 | set1 := getElementSetIndex(element1); | ||
| 1030 | set2 := getElementSetIndex(element2); | ||
| 1031 | |||
| 1032 | // Add a new connection if the elements don't belong to the same set already. | ||
| 1033 |
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7309 | if set1 <> set2 then |
| 1034 | 8226 | sets.connections := (set1, set2) :: sets.connections; | |
| 1035 | end if; | ||
| 1036 | end connectSets; | ||
| 1037 | |||
| 1038 | protected function setTrieGetElement | ||
| 1039 | "Fetches a connector element from the trie given a cref and a face." | ||
| 1040 | input DAE.ComponentRef cref; | ||
| 1041 | input Face face; | ||
| 1042 | input SetTrie trie; | ||
| 1043 | output ConnectorElement element; | ||
| 1044 | protected | ||
| 1045 | SetTrieNode node; | ||
| 1046 | algorithm | ||
| 1047 | 65900 | node := setTrieGet(cref, trie, false); | |
| 1048 | 30789 | element := setTrieGetLeafElement(node, face); | |
| 1049 | end setTrieGetElement; | ||
| 1050 | |||
| 1051 | protected function setTrieAddLeafElement | ||
| 1052 | "Adds a connector element to a trie leaf." | ||
| 1053 | input ConnectorElement element; | ||
| 1054 | input output SetTrieNode node; | ||
| 1055 | algorithm | ||
| 1056 | () := match node | ||
| 1057 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 1058 | algorithm | ||
| 1059 | () := match element.face | ||
| 1060 | case Face.INSIDE() | ||
| 1061 | algorithm | ||
| 1062 | 34575 | node.insideElement := SOME(element); | |
| 1063 | then | ||
| 1064 | (); | ||
| 1065 | |||
| 1066 | case Face.OUTSIDE() | ||
| 1067 | algorithm | ||
| 1068 | 9469 | node.outsideElement := SOME(element); | |
| 1069 | then | ||
| 1070 | (); | ||
| 1071 | end match; | ||
| 1072 | then | ||
| 1073 | (); | ||
| 1074 | end match; | ||
| 1075 | end setTrieAddLeafElement; | ||
| 1076 | |||
| 1077 | protected function setTrieGetLeafElement | ||
| 1078 | "Returns the connector element of a trie leaf, given a face." | ||
| 1079 | input SetTrieNode node; | ||
| 1080 | input Face face; | ||
| 1081 | output ConnectorElement element; | ||
| 1082 | algorithm | ||
| 1083 | element := match(face, node) | ||
| 1084 | local | ||
| 1085 | ConnectorElement e; | ||
| 1086 | |||
| 1087 | case (Face.INSIDE(), SetTrieNode.SET_TRIE_LEAF(insideElement = SOME(e))) then e; | ||
| 1088 | case (Face.OUTSIDE(), SetTrieNode.SET_TRIE_LEAF(outsideElement = SOME(e))) then e; | ||
| 1089 | end match; | ||
| 1090 | end setTrieGetLeafElement; | ||
| 1091 | |||
| 1092 | protected function setTrieAdd | ||
| 1093 | "Adds a connector element to the trie." | ||
| 1094 | input ConnectorElement element; | ||
| 1095 | input output SetTrie trie; | ||
| 1096 | protected | ||
| 1097 | DAE.ComponentRef cref, el_cr; | ||
| 1098 | ConnectorElement el; | ||
| 1099 | algorithm | ||
| 1100 | cref := getElementName(element); | ||
| 1101 | 44044 | el_cr := ComponentReferenceBasics.crefLastCref(cref); | |
| 1102 | 44044 | el := setElementName(element, el_cr); | |
| 1103 | 44044 | trie := setTrieUpdate(cref, el, trie, setTrieAddLeafElement); | |
| 1104 | end setTrieAdd; | ||
| 1105 | |||
| 1106 | protected function updateSetLeaf<Arg> | ||
| 1107 | "Updates a trie leaf in the sets with the given update function." | ||
| 1108 | input output Sets sets; | ||
| 1109 | input DAE.ComponentRef cref; | ||
| 1110 | input Arg arg; | ||
| 1111 | input UpdateFunc updateFunc; | ||
| 1112 | |||
| 1113 | partial function UpdateFunc | ||
| 1114 | input Arg arg; | ||
| 1115 | input output SetTrieNode node; | ||
| 1116 | end UpdateFunc; | ||
| 1117 | algorithm | ||
| 1118 | 174 | sets.sets := setTrieUpdate(cref, arg, sets.sets, updateFunc); | |
| 1119 | end updateSetLeaf; | ||
| 1120 | |||
| 1121 | protected function setTrieUpdate<Arg> | ||
| 1122 | "Updates a trie leaf in the trie with the given update function." | ||
| 1123 | input DAE.ComponentRef cref; | ||
| 1124 | input Arg arg; | ||
| 1125 | input output SetTrie trie; | ||
| 1126 | input UpdateFunc updateFunc; | ||
| 1127 | |||
| 1128 | partial function UpdateFunc | ||
| 1129 | input Arg arg; | ||
| 1130 | input output SetTrieNode node; | ||
| 1131 | end UpdateFunc; | ||
| 1132 | algorithm | ||
| 1133 | () := match(cref, trie) | ||
| 1134 | local | ||
| 1135 | String id; | ||
| 1136 | |||
| 1137 | case (DAE.CREF_QUAL(), SetTrieNode.SET_TRIE_NODE()) | ||
| 1138 | algorithm | ||
| 1139 | 81826 | id := ComponentReferenceBasics.printComponentRef2Str(cref.ident, cref.subscriptLst); | |
| 1140 | 81826 | trie.nodes := setTrieUpdateNode(id, cref, cref.componentRef, arg, updateFunc, trie.nodes); | |
| 1141 | then | ||
| 1142 | (); | ||
| 1143 | |||
| 1144 | case (DAE.CREF_IDENT(), SetTrieNode.SET_TRIE_NODE()) | ||
| 1145 | algorithm | ||
| 1146 | 48269 | id := ComponentReferenceBasics.printComponentRef2Str(cref.ident, cref.subscriptLst); | |
| 1147 | 48269 | trie.nodes := setTrieUpdateLeaf(id, arg, trie.nodes, updateFunc); | |
| 1148 | then | ||
| 1149 | (); | ||
| 1150 | |||
| 1151 | end match; | ||
| 1152 | end setTrieUpdate; | ||
| 1153 | |||
| 1154 | protected function setTrieUpdateNode<Arg> | ||
| 1155 | "Helper function to setTrieUpdate, updates a node in the trie." | ||
| 1156 | input String id; | ||
| 1157 | input DAE.ComponentRef wholeCref; | ||
| 1158 | input DAE.ComponentRef cref; | ||
| 1159 | input Arg arg; | ||
| 1160 | input UpdateFunc updateFunc; | ||
| 1161 | input output list<SetTrieNode> nodes; | ||
| 1162 | |||
| 1163 | partial function UpdateFunc | ||
| 1164 | input Arg arg; | ||
| 1165 | input output SetTrieNode node; | ||
| 1166 | end UpdateFunc; | ||
| 1167 | protected | ||
| 1168 | SetTrieNode node2; | ||
| 1169 | Integer n=1; | ||
| 1170 | algorithm | ||
| 1171 |
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446270 | for node in nodes loop |
| 1172 |
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|
444071 | if setTrieIsNode(node) and setTrieNodeName(node) == id then |
| 1173 | 79627 | node2 := setTrieUpdate(cref, arg, node, updateFunc); | |
| 1174 | 79627 | nodes := List.replaceAt(node2, n, nodes); // Can be slow in memory and time | |
| 1175 | 79627 | return; | |
| 1176 | else | ||
| 1177 | 364444 | n := n+1; | |
| 1178 | end if; | ||
| 1179 | end for; | ||
| 1180 | |||
| 1181 | 2199 | nodes := setTrieUpdateNode2(wholeCref, arg, updateFunc, nodes); | |
| 1182 | end setTrieUpdateNode; | ||
| 1183 | |||
| 1184 | protected function setTrieUpdateNode2<Arg> | ||
| 1185 | "Helper function to setTrieUpdateNode." | ||
| 1186 | input DAE.ComponentRef cref; | ||
| 1187 | input Arg arg; | ||
| 1188 | input UpdateFunc updateFunc; | ||
| 1189 | input output list<SetTrieNode> nodes; | ||
| 1190 | |||
| 1191 | partial function UpdateFunc | ||
| 1192 | input Arg arg; | ||
| 1193 | input output SetTrieNode node; | ||
| 1194 | end UpdateFunc; | ||
| 1195 | algorithm | ||
| 1196 | nodes := match cref | ||
| 1197 | local | ||
| 1198 | String id; | ||
| 1199 | DAE.ComponentRef cr; | ||
| 1200 | SetTrieNode node; | ||
| 1201 | list<SetTrieNode> child_nodes; | ||
| 1202 | |||
| 1203 | case DAE.CREF_IDENT() | ||
| 1204 | algorithm | ||
| 1205 | 2199 | id := ComponentReferenceBasics.printComponentRefStr(cref); | |
| 1206 | 2199 | node := SetTrieNode.SET_TRIE_LEAF(id, NONE(), NONE(), NONE(), 0); | |
| 1207 |
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2199 | node := updateFunc(arg, node); |
| 1208 | then | ||
| 1209 | node :: nodes; | ||
| 1210 | |||
| 1211 | case DAE.CREF_QUAL() | ||
| 1212 | algorithm | ||
| 1213 | 2389 | cr := ComponentReferenceBasics.crefFirstCref(cref); | |
| 1214 | 2389 | id := ComponentReferenceBasics.printComponentRefStr(cr); | |
| 1215 | 2389 | child_nodes := setTrieUpdateNode2(cref.componentRef, arg, updateFunc, {}); | |
| 1216 | 2389 | then | |
| 1217 | SetTrieNode.SET_TRIE_NODE(id, cr, child_nodes, 0) :: nodes; | ||
| 1218 | |||
| 1219 | end match; | ||
| 1220 | end setTrieUpdateNode2; | ||
| 1221 | |||
| 1222 | protected function setTrieUpdateLeaf<Arg> | ||
| 1223 | "Helper funtion to setTrieUpdate, updates a trie leaf." | ||
| 1224 | input String id; | ||
| 1225 | input Arg arg; | ||
| 1226 | input output list<SetTrieNode> nodes; | ||
| 1227 | input UpdateFunc updateFunc; | ||
| 1228 | |||
| 1229 | partial function UpdateFunc | ||
| 1230 | input Arg arg; | ||
| 1231 | input output SetTrieNode node; | ||
| 1232 | end UpdateFunc; | ||
| 1233 | protected | ||
| 1234 | Integer n = 1; | ||
| 1235 | algorithm | ||
| 1236 |
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339999 | for node in nodes loop |
| 1237 |
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306913 | if setTrieNodeName(node) == id then |
| 1238 | // Found matching leaf, update it. | ||
| 1239 |
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15183 | nodes := List.replaceAt(updateFunc(arg, node), n, nodes); // Can be slow in time and memory... |
| 1240 | 15183 | return; | |
| 1241 | end if; | ||
| 1242 | |||
| 1243 | 291730 | n := n+1; | |
| 1244 | end for; | ||
| 1245 | |||
| 1246 | // Is slow in time; need to do a linear search. Cheap in memory (single cons) | ||
| 1247 |
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33086 | nodes := updateFunc(arg, Connect.SET_TRIE_LEAF(id, NONE(), NONE(), NONE(), 0)) :: nodes; |
| 1248 | end setTrieUpdateLeaf; | ||
| 1249 | |||
| 1250 | public function traverseSets<Arg> | ||
| 1251 | "Traverses the trie leaves in a sets." | ||
| 1252 | input output Sets sets; | ||
| 1253 | input output Arg arg; | ||
| 1254 | input UpdateFunc updateFunc; | ||
| 1255 | |||
| 1256 | partial function UpdateFunc | ||
| 1257 | input output SetTrieNode node; | ||
| 1258 | input output Arg arg; | ||
| 1259 | end UpdateFunc; | ||
| 1260 | protected | ||
| 1261 | SetTrieNode node; | ||
| 1262 | algorithm | ||
| 1263 | ✗ | (node, arg) := setTrieTraverseLeaves(sets.sets, updateFunc, arg); | |
| 1264 | ✗ | sets.sets := node; | |
| 1265 | end traverseSets; | ||
| 1266 | |||
| 1267 | protected function setTrieTraverseLeaves<Arg> | ||
| 1268 | "Traverses the leaves of a trie." | ||
| 1269 | input output SetTrieNode node; | ||
| 1270 | input UpdateFunc updateFunc; | ||
| 1271 | input output Arg arg; | ||
| 1272 | |||
| 1273 | partial function UpdateFunc | ||
| 1274 | input output SetTrieNode node; | ||
| 1275 | input output Arg arg; | ||
| 1276 | end UpdateFunc; | ||
| 1277 | algorithm | ||
| 1278 | () := match node | ||
| 1279 | local | ||
| 1280 | list<SetTrieNode> nodes; | ||
| 1281 | |||
| 1282 | case SetTrieNode.SET_TRIE_NODE() | ||
| 1283 | algorithm | ||
| 1284 | ✗ | (nodes, arg) := List.map1Fold(node.nodes, setTrieTraverseLeaves, updateFunc, arg); | |
| 1285 | ✗ | node.nodes := nodes; | |
| 1286 | then | ||
| 1287 | (); | ||
| 1288 | |||
| 1289 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 1290 | algorithm | ||
| 1291 | ✗ | (node, arg) := updateFunc(node, arg); | |
| 1292 | then | ||
| 1293 | (); | ||
| 1294 | |||
| 1295 | end match; | ||
| 1296 | end setTrieTraverseLeaves; | ||
| 1297 | |||
| 1298 | protected function setTrieGet | ||
| 1299 | "Fetches a node from the trie given a cref to search for. If inMatchPrefix is | ||
| 1300 | true it also matches a prefix of the cref if the full cref couldn't be found." | ||
| 1301 | input DAE.ComponentRef cref; | ||
| 1302 | input SetTrie trie; | ||
| 1303 | input Boolean matchPrefix; | ||
| 1304 | output SetTrieNode leaf; | ||
| 1305 | protected | ||
| 1306 | list<SetTrieNode> nodes; | ||
| 1307 | String subs_str, id_subs, id_nosubs; | ||
| 1308 | algorithm | ||
| 1309 |
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179018 | SetTrieNode.SET_TRIE_NODE(nodes = nodes) := trie; |
| 1310 | |||
| 1311 | 179018 | id_nosubs := ComponentReferenceBasics.crefFirstIdent(cref); | |
| 1312 | 179018 | subs_str := List.toStringCustom(ComponentReference.crefFirstSubs(cref), | |
| 1313 | ExpressionBasics.printSubscriptStr, "", "[", ",", "]", false); | ||
| 1314 | 179018 | id_subs := id_nosubs + subs_str; | |
| 1315 | |||
| 1316 | try | ||
| 1317 | // Try to look up the identifier with subscripts, in case single array | ||
| 1318 | // elements have been added to the trie. | ||
| 1319 | 179018 | leaf := setTrieGetNode(id_subs, nodes); | |
| 1320 | else | ||
| 1321 | // If the above fails, try again without the subscripts in case a whole | ||
| 1322 | // array has been added to the trie. | ||
| 1323 | 35190 | leaf := setTrieGetNode(id_nosubs, nodes); | |
| 1324 | end try; | ||
| 1325 | |||
| 1326 | // If the cref is qualified, continue to look up the rest of the cref in node | ||
| 1327 | // we just found. | ||
| 1328 |
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143828 | if not ComponentReference.crefIsIdent(cref) then |
| 1329 | try | ||
| 1330 | 112334 | leaf := setTrieGet(ComponentReference.crefRest(cref), leaf, matchPrefix); | |
| 1331 | else | ||
| 1332 | // Look up failed, return the previously found node if prefix matching is | ||
| 1333 | // turned on and the node we found is a leaf. | ||
| 1334 |
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53446 | true := matchPrefix and not setTrieIsNode(leaf); |
| 1335 | end try; | ||
| 1336 | end if; | ||
| 1337 | end setTrieGet; | ||
| 1338 | |||
| 1339 | protected function setTrieGetNode | ||
| 1340 | "Returns a node with a given name from a list of nodes, or fails if no such | ||
| 1341 | node exists in the list." | ||
| 1342 | input String id; | ||
| 1343 | input list<SetTrieNode> nodes; | ||
| 1344 | output SetTrieNode node; | ||
| 1345 | algorithm | ||
| 1346 | 220231 | node := List.getMemberOnTrue(id, nodes, setTrieNodeNamed); | |
| 1347 | end setTrieGetNode; | ||
| 1348 | |||
| 1349 | protected function setTrieNodeNamed | ||
| 1350 | "Returns true if the given node has the same name as the given string, | ||
| 1351 | otherwise false." | ||
| 1352 | input String id; | ||
| 1353 | input SetTrieNode node; | ||
| 1354 | output Boolean isNamed; | ||
| 1355 | algorithm | ||
| 1356 | isNamed := match node | ||
| 1357 |
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666134 | case SetTrieNode.SET_TRIE_NODE() then id == node.name; |
| 1358 |
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880232 | case SetTrieNode.SET_TRIE_LEAF() then id == node.name; |
| 1359 | else false; | ||
| 1360 | end match; | ||
| 1361 | end setTrieNodeNamed; | ||
| 1362 | |||
| 1363 | protected function setTrieGetLeaf | ||
| 1364 | "Returns a leaf node with a given name from a list of nodes, or fails if no | ||
| 1365 | such node exists in the list." | ||
| 1366 | input String id; | ||
| 1367 | input list<SetTrieNode> nodes; | ||
| 1368 | output SetTrieNode node; | ||
| 1369 | algorithm | ||
| 1370 | ✗ | node := List.getMemberOnTrue(id, nodes, setTrieLeafNamed); | |
| 1371 | end setTrieGetLeaf; | ||
| 1372 | |||
| 1373 | protected function setTrieLeafNamed | ||
| 1374 | "Returns true if the given leaf node has the same name as the given string, | ||
| 1375 | otherwise false." | ||
| 1376 | input String id; | ||
| 1377 | input SetTrieNode node; | ||
| 1378 | output Boolean isNamed; | ||
| 1379 | algorithm | ||
| 1380 | isNamed := match node | ||
| 1381 | ✗ | case SetTrieNode.SET_TRIE_LEAF() then id == node.name; | |
| 1382 | else false; | ||
| 1383 | end match; | ||
| 1384 | end setTrieLeafNamed; | ||
| 1385 | |||
| 1386 | protected function setTrieIsNode | ||
| 1387 | input SetTrieNode node; | ||
| 1388 | output Boolean isNode; | ||
| 1389 | algorithm | ||
| 1390 | isNode := match node | ||
| 1391 | case SetTrieNode.SET_TRIE_NODE() then true; | ||
| 1392 | else false; | ||
| 1393 | end match; | ||
| 1394 | end setTrieIsNode; | ||
| 1395 | |||
| 1396 | public function equations | ||
| 1397 | "Generates equations from a connection set and evaluates stream operators if | ||
| 1398 | called from the top scope, otherwise does nothing." | ||
| 1399 | input Boolean topScope; | ||
| 1400 | input Sets sets; | ||
| 1401 | input output DAE.DAElist DAE; | ||
| 1402 | input ConnectionGraph.ConnectionGraph connectionGraph; | ||
| 1403 | input String modelNameQualified; | ||
| 1404 | protected | ||
| 1405 | list<Set> set_list; | ||
| 1406 | array<Set> set_array; | ||
| 1407 | DAE.DAElist dae, dae2; | ||
| 1408 | ConnectionGraph.DaeEdges broken, connected; | ||
| 1409 | algorithm | ||
| 1410 | 898893 | setGlobalRoot(Global.isInStream, NONE()); | |
| 1411 |
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898893 | if not topScope then |
| 1412 | 897854 | return; | |
| 1413 | end if; | ||
| 1414 | |||
| 1415 | //print(printSetsStr(inSets) + "\n"); | ||
| 1416 | 1039 | set_array := generateSetArray(sets); | |
| 1417 | 1039 | set_list := arrayList(set_array); | |
| 1418 | //print("Sets:\n"); | ||
| 1419 | //print(stringDelimitList(List.map(sets, printSetStr), "\n") + "\n"); | ||
| 1420 | |||
| 1421 |
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1039 | if daeHasExpandableConnectors(DAE) then |
| 1422 | 7 | (set_list, dae) := removeUnusedExpandableVariablesAndConnections(set_list, DAE); | |
| 1423 | else | ||
| 1424 | 1032 | dae := DAE; | |
| 1425 | end if; | ||
| 1426 | |||
| 1427 | // send in the connection graph and build the connected/broken connects | ||
| 1428 | // we do this here so we do it once and not for every EQU set. | ||
| 1429 | 1039 | (dae, connected, broken) := ConnectionGraph.handleOverconstrainedConnections( | |
| 1430 | connectionGraph, modelNameQualified, dae); | ||
| 1431 | |||
| 1432 | // adrpo: FIXME: maybe we should just remove them from the sets then send the | ||
| 1433 | // updates sets further | ||
| 1434 | 1039 | dae2 := equationsDispatch(listReverse(set_list), connected, broken); | |
| 1435 | 1039 | DAE := DAEUtil.joinDaes(dae, dae2); | |
| 1436 | 1039 | DAE := evaluateConnectionOperators(sets, set_array, DAE); | |
| 1437 | // add the equality constraint equations to the dae. | ||
| 1438 | 1039 | DAE := ConnectionGraph.addBrokenEqualityConstraintEquations(DAE, broken); | |
| 1439 | end equations; | ||
| 1440 | |||
| 1441 | protected function getExpandableEquSetsAsCrefs | ||
| 1442 | "@author: adrpo | ||
| 1443 | returns only the sets containing expandable connectors" | ||
| 1444 | input list<Set> sets; | ||
| 1445 | output list<list<DAE.ComponentRef>> crefSets = {}; | ||
| 1446 | protected | ||
| 1447 | list<DAE.ComponentRef> cref_set; | ||
| 1448 | algorithm | ||
| 1449 |
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3198 | for set in sets loop |
| 1450 | () := match set | ||
| 1451 | case Set.SET(ty = ConnectorType.EQU()) | ||
| 1452 | algorithm | ||
| 1453 | 2195 | cref_set := getAllEquCrefs({set}); | |
| 1454 | |||
| 1455 |
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2195 | if List.applyAndFold(cref_set, boolOr, isExpandable, false) then |
| 1456 | crefSets := cref_set :: crefSets; | ||
| 1457 | end if; | ||
| 1458 | then | ||
| 1459 | (); | ||
| 1460 | |||
| 1461 | else (); | ||
| 1462 | end match; | ||
| 1463 | end for; | ||
| 1464 | end getExpandableEquSetsAsCrefs; | ||
| 1465 | |||
| 1466 | protected function removeCrefsFromSets | ||
| 1467 | input output list<Set> sets; | ||
| 1468 | input list<DAE.ComponentRef> nonUsefulExpandable; | ||
| 1469 | algorithm | ||
| 1470 | 7 | sets := List.select1(sets, removeCrefsFromSets2, nonUsefulExpandable); | |
| 1471 | end removeCrefsFromSets; | ||
| 1472 | |||
| 1473 | protected function removeCrefsFromSets2 | ||
| 1474 | input Set set; | ||
| 1475 | input list<DAE.ComponentRef> nonUsefulExpandable; | ||
| 1476 | output Boolean isInSet; | ||
| 1477 | protected | ||
| 1478 | list<DAE.ComponentRef> setCrefs, lst; | ||
| 1479 | algorithm | ||
| 1480 | 3191 | setCrefs := getAllEquCrefs({set}); | |
| 1481 | 3191 | lst := List.intersectionOnTrue(setCrefs, nonUsefulExpandable, ComponentReferenceBasics.crefEqualNoStringCompare); | |
| 1482 | 3191 | isInSet := listEmpty(lst); | |
| 1483 | end removeCrefsFromSets2; | ||
| 1484 | |||
| 1485 | function mergeEquSetsAsCrefs | ||
| 1486 | input output list<list<DAE.ComponentRef>> setsAsCrefs; | ||
| 1487 | algorithm | ||
| 1488 | setsAsCrefs := match setsAsCrefs | ||
| 1489 | local | ||
| 1490 | list<DAE.ComponentRef> set; | ||
| 1491 | list<list<DAE.ComponentRef>> rest, sets; | ||
| 1492 | |||
| 1493 | case {} then {}; | ||
| 1494 | case {set} then {set}; | ||
| 1495 | case set::rest | ||
| 1496 | algorithm | ||
| 1497 | 509 | (set, rest) := mergeWithRest(set, rest); | |
| 1498 | 509 | sets := mergeEquSetsAsCrefs(rest); | |
| 1499 | then | ||
| 1500 | set::sets; | ||
| 1501 | end match; | ||
| 1502 | end mergeEquSetsAsCrefs; | ||
| 1503 | |||
| 1504 | protected function mergeWithRest | ||
| 1505 | input output list<DAE.ComponentRef> set; | ||
| 1506 | input output list<list<DAE.ComponentRef>> sets; | ||
| 1507 | input list<list<DAE.ComponentRef>> acc = {}; | ||
| 1508 | algorithm | ||
| 1509 | (set, sets) := match (set, sets) | ||
| 1510 | local | ||
| 1511 | list<DAE.ComponentRef> set1, set2; | ||
| 1512 | list<list<DAE.ComponentRef>> rest; | ||
| 1513 | Boolean b; | ||
| 1514 | 509 | case (_, {}) then (set, listReverse(acc)); | |
| 1515 | case (set1, set2::rest) | ||
| 1516 | algorithm | ||
| 1517 | // Could be faster if we had a function for intersectionExist in a set | ||
| 1518 | 57129 | b := listEmpty(List.intersectionOnTrue(set1, set2, ComponentReferenceBasics.crefEqualNoStringCompare)); | |
| 1519 |
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57129 | set := if not b then List.unionOnTrue(set1, set2, ComponentReferenceBasics.crefEqualNoStringCompare) else set1; |
| 1520 | 57129 | (set, rest) := mergeWithRest(set, rest, List.consOnTrue(b, set2, acc)); | |
| 1521 | then (set, rest); | ||
| 1522 | end match; | ||
| 1523 | end mergeWithRest; | ||
| 1524 | |||
| 1525 | protected function getOnlyExpandableConnectedCrefs | ||
| 1526 | input list<list<DAE.ComponentRef>> sets; | ||
| 1527 | output list<DAE.ComponentRef> usefulConnectedExpandable = {}; | ||
| 1528 | algorithm | ||
| 1529 |
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|
263 | for set in sets loop |
| 1530 |
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|
256 | if allCrefsAreExpandable(set) then |
| 1531 | ✗ | usefulConnectedExpandable := listAppend(set, usefulConnectedExpandable); | |
| 1532 | end if; | ||
| 1533 | end for; | ||
| 1534 | end getOnlyExpandableConnectedCrefs; | ||
| 1535 | |||
| 1536 | public function allCrefsAreExpandable | ||
| 1537 | input list<DAE.ComponentRef> connects; | ||
| 1538 | output Boolean allAreExpandable; | ||
| 1539 | algorithm | ||
| 1540 |
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|
1496 | for cr in connects loop |
| 1541 |
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|
1496 | if not isExpandable(cr) then |
| 1542 | allAreExpandable := false; | ||
| 1543 | 256 | return; | |
| 1544 | end if; | ||
| 1545 | end for; | ||
| 1546 | |||
| 1547 | allAreExpandable := true; | ||
| 1548 | end allCrefsAreExpandable; | ||
| 1549 | |||
| 1550 | protected function generateSetArray | ||
| 1551 | "Generates an array of sets from a connection set." | ||
| 1552 | input Sets sets; | ||
| 1553 | output array<Set> setArray; | ||
| 1554 | algorithm | ||
| 1555 | // Create a new array. | ||
| 1556 | 1039 | setArray := arrayCreate(sets.setCount, Set.SET(ConnectorType.NO_TYPE(), {})); | |
| 1557 | // Add connection pointers to the array. | ||
| 1558 | 1039 | setArray := setArrayAddConnections(sets.connections, sets.setCount, setArray); | |
| 1559 | // Fill the array with sets. | ||
| 1560 | 1039 | setArray := generateSetArray2(sets.sets, {}, setArray); | |
| 1561 | end generateSetArray; | ||
| 1562 | |||
| 1563 | protected function setArrayAddConnections | ||
| 1564 | "The connection set maintains a list of connections, but when we generate the | ||
| 1565 | set array which is used to generate the equations we want to merge these sets. | ||
| 1566 | This function adds pointers to the array, so that when we fill it with | ||
| 1567 | generateSetArray2 we can follow the pointers to the correct sets. I.e. if sets | ||
| 1568 | 1 and 2 are connected we might add a pointer from 2 to 1, so that all elements | ||
| 1569 | that belongs to set 2 are instead added to set 1. To make sure that we get | ||
| 1570 | correct pointers we build a graph and use an algorithm to find the strongly | ||
| 1571 | connected components in it." | ||
| 1572 | input list<SetConnection> connections; | ||
| 1573 | input Integer setCount; | ||
| 1574 | input output array<Set> sets; | ||
| 1575 | protected | ||
| 1576 | SetGraph graph; | ||
| 1577 | algorithm | ||
| 1578 | // Create a new graph, represented as an adjacency list. | ||
| 1579 | 1039 | graph := arrayCreate(setCount, {}); | |
| 1580 | // Add the connections to the graph. | ||
| 1581 |
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|
1039 | graph := List.fold(connections, addConnectionToGraph, graph); |
| 1582 | |||
| 1583 | // Add the connections to the array with help from the graph. | ||
| 1584 |
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|
24220 | for i in 1:arrayLength(graph) loop |
| 1585 | 23181 | (sets, graph) := setArrayAddConnection(i, graph[i], sets, graph); | |
| 1586 | end for; | ||
| 1587 | end setArrayAddConnections; | ||
| 1588 | |||
| 1589 | protected function addConnectionToGraph | ||
| 1590 | "Adds a connection to the set graph." | ||
| 1591 | input SetConnection connection; | ||
| 1592 | input output SetGraph graph; | ||
| 1593 | protected | ||
| 1594 | Integer set1, set2; | ||
| 1595 | list<Integer> node1, node2; | ||
| 1596 | algorithm | ||
| 1597 | 4110 | (set1, set2) := connection; | |
| 1598 | 4110 | node1 := arrayGet(graph, set1); | |
| 1599 | 4110 | graph := arrayUpdate(graph, set1, set2 :: node1); | |
| 1600 | 4110 | node2 := arrayGet(graph, set2); | |
| 1601 | 4110 | graph := arrayUpdate(graph, set2, set1 :: node2); | |
| 1602 | end addConnectionToGraph; | ||
| 1603 | |||
| 1604 | protected function setArrayAddConnection | ||
| 1605 | "Helper function to setArrayAddConnections, adds a connection pointer to the | ||
| 1606 | set array." | ||
| 1607 | input Integer set; | ||
| 1608 | input list<Integer> edges; | ||
| 1609 | input output array<Set> sets; | ||
| 1610 | input output SetGraph graph; | ||
| 1611 | protected | ||
| 1612 | list<Integer> edge_lst; | ||
| 1613 | algorithm | ||
| 1614 |
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|
35735 | for e in edges loop |
| 1615 |
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|
8220 | if e <> set then |
| 1616 | // Create a pointer to the given set. | ||
| 1617 | 4334 | sets := setArrayAddConnection2(e, set, sets); | |
| 1618 | 4334 | edge_lst := graph[e]; | |
| 1619 | 4334 | graph[e] := {}; | |
| 1620 | 4334 | (sets, graph) := setArrayAddConnection(set, edge_lst, sets, graph); | |
| 1621 | end if; | ||
| 1622 | end for; | ||
| 1623 | end setArrayAddConnection; | ||
| 1624 | |||
| 1625 | protected function setArrayAddConnection2 | ||
| 1626 | "Helper function to setArrayAddConnection, adds a pointer from the given | ||
| 1627 | pointer to the pointee." | ||
| 1628 | input Integer setPointer; | ||
| 1629 | input Integer setPointee; | ||
| 1630 | input output array<Set> sets; | ||
| 1631 | protected | ||
| 1632 | Set set; | ||
| 1633 | algorithm | ||
| 1634 | 4334 | set := sets[setPointee]; | |
| 1635 | |||
| 1636 | sets := match set | ||
| 1637 | // If the set pointed at is a real set, add a pointer to it. | ||
| 1638 | case Set.SET() | ||
| 1639 | 4334 | then arrayUpdate(sets, setPointer, Set.SET_POINTER(setPointee)); | |
| 1640 | |||
| 1641 | // If the set pointed at is itself a pointer, follow the pointer until a | ||
| 1642 | // real set is found (path compression). | ||
| 1643 | case Set.SET_POINTER() | ||
| 1644 | ✗ | then setArrayAddConnection2(setPointer, set.index, sets); | |
| 1645 | end match; | ||
| 1646 | end setArrayAddConnection2; | ||
| 1647 | |||
| 1648 | protected function generateSetArray2 | ||
| 1649 | "This function fills the set array with the sets from the set trie." | ||
| 1650 | input SetTrie sets; | ||
| 1651 | input list<DAE.ComponentRef> prefix; | ||
| 1652 | input output array<Set> setArray; | ||
| 1653 | algorithm | ||
| 1654 | setArray := match sets | ||
| 1655 | local | ||
| 1656 | Option<ConnectorElement> ie, oe; | ||
| 1657 | Option<DAE.ComponentRef> prefix_cr, flow_cr; | ||
| 1658 | |||
| 1659 | case SetTrieNode.SET_TRIE_NODE(cref = DAE.WILD()) | ||
| 1660 | 1039 | then List.fold1(sets.nodes, generateSetArray2, prefix, setArray); | |
| 1661 | |||
| 1662 | case SetTrieNode.SET_TRIE_NODE() | ||
| 1663 | 8313 | then List.fold1(sets.nodes, generateSetArray2, sets.cref :: prefix, setArray); | |
| 1664 | |||
| 1665 | case SetTrieNode.SET_TRIE_LEAF(insideElement = ie, outsideElement = oe, | ||
| 1666 | flowAssociation = flow_cr) | ||
| 1667 | algorithm | ||
| 1668 | 35089 | ie := insertFlowAssociationInStreamElement(ie, flow_cr); | |
| 1669 | 35089 | oe := insertFlowAssociationInStreamElement(oe, flow_cr); | |
| 1670 | 35089 | prefix_cr := buildElementPrefix(prefix); | |
| 1671 | 35089 | setArray := setArrayAddElement(ie, prefix_cr, setArray); | |
| 1672 | 35089 | setArray := setArrayAddElement(oe, prefix_cr, setArray); | |
| 1673 | then | ||
| 1674 | setArray; | ||
| 1675 | |||
| 1676 | else setArray; | ||
| 1677 | end match; | ||
| 1678 | end generateSetArray2; | ||
| 1679 | |||
| 1680 | protected function insertFlowAssociationInStreamElement | ||
| 1681 | "If the given element is a stream element, sets the associated flow. Otherwise | ||
| 1682 | does nothing." | ||
| 1683 | input output Option<ConnectorElement> element; | ||
| 1684 | input Option<DAE.ComponentRef> flowCref; | ||
| 1685 | protected | ||
| 1686 | ConnectorElement el; | ||
| 1687 | algorithm | ||
| 1688 |
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|
70178 | if isSome(element) then |
| 1689 | 43876 | SOME(el) := element; | |
| 1690 | |||
| 1691 | element := match el | ||
| 1692 | case ConnectorElement.CONNECTOR_ELEMENT(ty = ConnectorType.STREAM(NONE())) | ||
| 1693 | algorithm | ||
| 1694 | 288 | el.ty := ConnectorType.STREAM(flowCref); | |
| 1695 | then | ||
| 1696 | SOME(el); | ||
| 1697 | |||
| 1698 | else element; | ||
| 1699 | end match; | ||
| 1700 | end if; | ||
| 1701 | end insertFlowAssociationInStreamElement; | ||
| 1702 | |||
| 1703 | protected function setArrayAddElement | ||
| 1704 | "Adds a connector element to the set array." | ||
| 1705 | input Option<ConnectorElement> element; | ||
| 1706 | input Option<DAE.ComponentRef> prefix; | ||
| 1707 | input output array<Set> sets; | ||
| 1708 | algorithm | ||
| 1709 | sets := match (element, prefix) | ||
| 1710 | local | ||
| 1711 | ConnectorElement el; | ||
| 1712 | DAE.ComponentRef prefix_cr; | ||
| 1713 | |||
| 1714 | // No element, do nothing. | ||
| 1715 | case (NONE(), _) then sets; | ||
| 1716 | |||
| 1717 | // An element but no prefix, add the element as it is. | ||
| 1718 | case (SOME(el as ConnectorElement.CONNECTOR_ELEMENT()), NONE()) | ||
| 1719 | 21 | then setArrayUpdate(sets, el.set, el); | |
| 1720 | |||
| 1721 | // Both an element and a prefix, add the prefix to the element before adding | ||
| 1722 | // it to the array. | ||
| 1723 | case (SOME(el as ConnectorElement.CONNECTOR_ELEMENT()), SOME(prefix_cr)) | ||
| 1724 | algorithm | ||
| 1725 | 43855 | el.name := ComponentReference.joinCrefs(prefix_cr, el.name); | |
| 1726 | 43855 | then | |
| 1727 | setArrayUpdate(sets, el.set, el); | ||
| 1728 | |||
| 1729 | end match; | ||
| 1730 | end setArrayAddElement; | ||
| 1731 | |||
| 1732 | protected function buildElementPrefix | ||
| 1733 | "Helper function to generateSetArray2, build a prefix from a list of crefs." | ||
| 1734 | input list<DAE.ComponentRef> prefix; | ||
| 1735 | output Option<DAE.ComponentRef> cref; | ||
| 1736 | protected | ||
| 1737 | DAE.ComponentRef cr; | ||
| 1738 | String id; | ||
| 1739 | list<DAE.Subscript> subs; | ||
| 1740 | algorithm | ||
| 1741 | // If a connector that extends a basic type is used on the top level we | ||
| 1742 | // don't have a prefix. | ||
| 1743 |
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35089 | if listEmpty(prefix) then |
| 1744 | cref := NONE(); | ||
| 1745 | else | ||
| 1746 | 35068 | cr := listHead(prefix); | |
| 1747 |
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108630 | for c in listRest(prefix) loop |
| 1748 |
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73562 | DAE.CREF_IDENT(ident = id, subscriptLst = subs) := c; |
| 1749 | 73562 | cr := DAE.CREF_QUAL(id, DAE.T_UNKNOWN_DEFAULT, subs, cr); | |
| 1750 | end for; | ||
| 1751 | |||
| 1752 | cref := SOME(cr); | ||
| 1753 | end if; | ||
| 1754 | end buildElementPrefix; | ||
| 1755 | |||
| 1756 | protected function setArrayUpdate | ||
| 1757 | "Updates the element at a given index in the set array." | ||
| 1758 | input output array<Set> sets; | ||
| 1759 | input Integer index; | ||
| 1760 | input ConnectorElement element; | ||
| 1761 | protected | ||
| 1762 | Set set; | ||
| 1763 | list<ConnectorElement> el; | ||
| 1764 | algorithm | ||
| 1765 | 48129 | set := sets[index]; | |
| 1766 | |||
| 1767 | sets := match (set, element) | ||
| 1768 | case (Set.SET(), ConnectorElement.CONNECTOR_ELEMENT()) | ||
| 1769 | algorithm | ||
| 1770 |
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|
43876 | if Config.orderConnections() and isEquType(element.ty) then |
| 1771 | // Sort the elements if orderConnections is true and the set is an equality set. | ||
| 1772 | 31539 | el := List.mergeSorted({element}, set.elements, equSetElementLess); | |
| 1773 | else | ||
| 1774 | // Other sets, just add them. | ||
| 1775 | 12337 | el := element :: set.elements; | |
| 1776 | end if; | ||
| 1777 | 43876 | then | |
| 1778 | arrayUpdate(sets, index, Set.SET(element.ty, el)); | ||
| 1779 | |||
| 1780 | // A pointer, follow the pointer. | ||
| 1781 | case (Set.SET_POINTER(), _) | ||
| 1782 | 4253 | then setArrayUpdate(sets, set.index, element); | |
| 1783 | |||
| 1784 | end match; | ||
| 1785 | end setArrayUpdate; | ||
| 1786 | |||
| 1787 | protected function equSetElementLess | ||
| 1788 | "Comparison function used by setArrayUpdate2 to order equ sets." | ||
| 1789 | input ConnectorElement element1; | ||
| 1790 | input ConnectorElement element2; | ||
| 1791 | output Boolean isLess; | ||
| 1792 | algorithm | ||
| 1793 | 24755 | isLess := ComponentReferenceBasics.crefSortFunc(element2.name, element1.name); | |
| 1794 | end equSetElementLess; | ||
| 1795 | |||
| 1796 | protected function setArrayGet | ||
| 1797 | "Returns the set on a given index in the set array." | ||
| 1798 | input array<Set> setArray; | ||
| 1799 | input Integer index; | ||
| 1800 | output Set set; | ||
| 1801 | algorithm | ||
| 1802 | 155 | set := setArray[index]; | |
| 1803 | |||
| 1804 | set := match set | ||
| 1805 | case Set.SET() then set; | ||
| 1806 | ✗ | case Set.SET_POINTER() then setArrayGet(setArray, set.index); | |
| 1807 | end match; | ||
| 1808 | end setArrayGet; | ||
| 1809 | |||
| 1810 | protected function equationsDispatch | ||
| 1811 | "Dispatches to the correct equation generating function based on the type of | ||
| 1812 | the given set." | ||
| 1813 | input list<Set> sets; | ||
| 1814 | input ConnectionGraph.DaeEdges connected; | ||
| 1815 | input ConnectionGraph.DaeEdges broken; | ||
| 1816 | output DAE.DAElist DAE = DAE.emptyDae; | ||
| 1817 | protected | ||
| 1818 | list<ConnectorElement> eql; | ||
| 1819 | list<list<ConnectorElement>> eqll; | ||
| 1820 | Real flowThreshold = Flags.getConfigReal(Flags.FLOW_THRESHOLD); | ||
| 1821 | algorithm | ||
| 1822 |
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24220 | for set in sets loop |
| 1823 | DAE := match set | ||
| 1824 | // A set pointer left from generateSetList, ignore it. | ||
| 1825 | case Set.SET_POINTER() then DAE; | ||
| 1826 | |||
| 1827 | case Set.SET(ty = ConnectorType.EQU()) | ||
| 1828 | algorithm | ||
| 1829 | // Here we do some overconstrained connection breaking. | ||
| 1830 | 13478 | eqll := ConnectionGraph.removeBrokenConnects(set.elements, connected, broken); | |
| 1831 |
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26956 | for eql in eqll loop |
| 1832 | 13478 | DAE := DAEUtil.joinDaes(generateEquEquations(eql), DAE); | |
| 1833 | end for; | ||
| 1834 | then | ||
| 1835 | DAE; | ||
| 1836 | |||
| 1837 | case Set.SET(ty = ConnectorType.FLOW(), elements = eql) | ||
| 1838 | 5528 | then DAEUtil.joinDaes(generateFlowEquations(eql), DAE); | |
| 1839 | |||
| 1840 | case Set.SET(ty = ConnectorType.STREAM(), elements = eql) | ||
| 1841 | 67 | then DAEUtil.joinDaes(generateStreamEquations(eql, flowThreshold), DAE); | |
| 1842 | |||
| 1843 | // Should never happen. | ||
| 1844 | case Set.SET(ty = ConnectorType.NO_TYPE()) | ||
| 1845 | algorithm | ||
| 1846 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, | |
| 1847 | {"ConnectUtil.equationsDispatch failed on connection set with no type."}); | ||
| 1848 | ✗ | then | |
| 1849 | fail(); | ||
| 1850 | |||
| 1851 | else | ||
| 1852 | algorithm | ||
| 1853 | ✗ | Error.addMessage(Error.INTERNAL_ERROR, | |
| 1854 | {"ConnectUtil.equationsDispatch failed because of unknown reason."}); | ||
| 1855 | ✗ | then | |
| 1856 | fail(); | ||
| 1857 | |||
| 1858 | end match; | ||
| 1859 | end for; | ||
| 1860 | end equationsDispatch; | ||
| 1861 | |||
| 1862 | protected function generateEquEquations | ||
| 1863 | "A non-flow connection set contains a number of components. Generating the | ||
| 1864 | equations from this set means equating all the components. For n components, | ||
| 1865 | this will give n-1 equations. For example, if the set contains the components | ||
| 1866 | X, Y.A and Z.B, the equations generated will be X = Y.A and X = Z.B. The | ||
| 1867 | order of the equations depends on whether the compiler flag orderConnections | ||
| 1868 | is true or false." | ||
| 1869 | input list<ConnectorElement> elements; | ||
| 1870 | output DAE.DAElist DAE = DAE.emptyDae; | ||
| 1871 | protected | ||
| 1872 | list<DAE.Element> eql = {}; | ||
| 1873 | ConnectorElement e1; | ||
| 1874 | DAE.ElementSource src; | ||
| 1875 | DAE.ComponentRef x, y; | ||
| 1876 | algorithm | ||
| 1877 |
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|
13478 | if listEmpty(elements) then |
| 1878 | ✗ | return; | |
| 1879 | end if; | ||
| 1880 | |||
| 1881 | 13478 | e1 := listHead(elements); | |
| 1882 | |||
| 1883 |
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|
13478 | if Config.orderConnections() then |
| 1884 |
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31527 | for e2 in listRest(elements) loop |
| 1885 | 18054 | src := ElementSource.mergeSources(e1.source, e2.source); | |
| 1886 | 18054 | src := ElementSource.addElementSourceConnect(src, (e1.name, e2.name)); | |
| 1887 | 18054 | eql := DAE.EQUEQUATION(e1.name, e2.name, src) :: eql; | |
| 1888 | end for; | ||
| 1889 | else | ||
| 1890 |
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10 | for e2 in listRest(elements) loop |
| 1891 | 5 | (x, y) := Util.swap(shouldFlipEquEquation(e1.name, e1.source), e1.name, e2.name); | |
| 1892 | 5 | src := ElementSource.mergeSources(e1.source, e2.source); | |
| 1893 | 5 | src := ElementSource.addElementSourceConnect(src, (x, y)); | |
| 1894 | 5 | eql := DAE.EQUEQUATION(x, y, src) :: eql; | |
| 1895 | e1 := e2; | ||
| 1896 | end for; | ||
| 1897 | end if; | ||
| 1898 | |||
| 1899 | 13478 | DAE := DAE.DAE(listReverse(eql)); | |
| 1900 | end generateEquEquations; | ||
| 1901 | |||
| 1902 | protected function shouldFlipEquEquation | ||
| 1903 | "If the flag +orderConnections=false is used, then we should keep the order of | ||
| 1904 | the connector elements as they occur in the connection (if possible). In that | ||
| 1905 | case we check if the cref of the first argument to the first connection | ||
| 1906 | stored in the element source is a prefix of the connector element cref. If | ||
| 1907 | it isn't, indicate that we should flip the generated equation." | ||
| 1908 | input DAE.ComponentRef lhsCref; | ||
| 1909 | input DAE.ElementSource lhsSource; | ||
| 1910 | output Boolean shouldFlip; | ||
| 1911 | algorithm | ||
| 1912 | shouldFlip := match lhsSource | ||
| 1913 | local | ||
| 1914 | DAE.ComponentRef lhs; | ||
| 1915 | |||
| 1916 | case DAE.SOURCE(connectEquationOptLst = (lhs, _) :: _) | ||
| 1917 | 5 | then not ComponentReferenceBasics.crefPrefixOf(lhs, lhsCref); | |
| 1918 | |||
| 1919 | else false; | ||
| 1920 | end match; | ||
| 1921 | end shouldFlipEquEquation; | ||
| 1922 | |||
| 1923 | protected function generateFlowEquations | ||
| 1924 | "Generating equations from a flow connection set is a little trickier that | ||
| 1925 | from a non-flow set. Only one equation is generated, but it has to consider | ||
| 1926 | whether the components were inside or outside connectors. This function | ||
| 1927 | creates a sum expression of all components (some of which will be negated), | ||
| 1928 | and the returns the equation where this sum is equal to 0.0." | ||
| 1929 | input list<ConnectorElement> elements; | ||
| 1930 | output DAE.DAElist DAE; | ||
| 1931 | protected | ||
| 1932 | DAE.Exp sum; | ||
| 1933 | DAE.ElementSource src; | ||
| 1934 | algorithm | ||
| 1935 | 5528 | sum := makeFlowExp(listHead(elements)); | |
| 1936 | 5528 | src := getElementSource(listHead(elements)); | |
| 1937 | |||
| 1938 |
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12183 | for e in listRest(elements) loop |
| 1939 | 6655 | sum := Expression.makeRealAdd(sum, makeFlowExp(e)); | |
| 1940 | 6655 | src := ElementSource.mergeSources(src, e.source); | |
| 1941 | end for; | ||
| 1942 | |||
| 1943 | 11056 | DAE := DAE.DAE({DAE.EQUATION(sum, DAE.RCONST(0.0), src)}); | |
| 1944 | end generateFlowEquations; | ||
| 1945 | |||
| 1946 | protected function makeFlowExp | ||
| 1947 | "Creates an expression from a connector element, which is the element itself | ||
| 1948 | if it's an inside connector, or negated if it's outside." | ||
| 1949 | input ConnectorElement element; | ||
| 1950 | output DAE.Exp exp; | ||
| 1951 | algorithm | ||
| 1952 | 12183 | exp := Expression.crefExp(element.name); | |
| 1953 | |||
| 1954 |
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|
12183 | if isOutsideElement(element) then |
| 1955 | 2584 | exp := Expression.negateReal(exp); | |
| 1956 | end if; | ||
| 1957 | end makeFlowExp; | ||
| 1958 | |||
| 1959 | public function increaseConnectRefCount | ||
| 1960 | input DAE.ComponentRef lhsCref; | ||
| 1961 | input DAE.ComponentRef rhsCref; | ||
| 1962 | input output Sets sets; | ||
| 1963 | protected | ||
| 1964 | list<DAE.ComponentRef> crefs; | ||
| 1965 | algorithm | ||
| 1966 |
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|
8953 | if System.getUsesCardinality() then |
| 1967 | 2881 | crefs := ComponentReference.expandCref(lhsCref, false); | |
| 1968 | 2881 | sets.sets := increaseConnectRefCount2(crefs, sets.sets); | |
| 1969 | 2881 | crefs := ComponentReference.expandCref(rhsCref, false); | |
| 1970 | 2881 | sets.sets := increaseConnectRefCount2(crefs, sets.sets); | |
| 1971 | end if; | ||
| 1972 | end increaseConnectRefCount; | ||
| 1973 | |||
| 1974 | public function increaseConnectRefCount2 | ||
| 1975 | input list<DAE.ComponentRef> crefs; | ||
| 1976 | input output SetTrie sets; | ||
| 1977 | algorithm | ||
| 1978 |
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|
12012 | for cr in crefs loop |
| 1979 | 6250 | sets := setTrieUpdate(cr, 1, sets, increaseRefCount); | |
| 1980 | end for; | ||
| 1981 | end increaseConnectRefCount2; | ||
| 1982 | |||
| 1983 | protected function increaseRefCount | ||
| 1984 | input Integer amount; | ||
| 1985 | input output SetTrieNode node; | ||
| 1986 | algorithm | ||
| 1987 | () := match node | ||
| 1988 | case SetTrieNode.SET_TRIE_NODE() | ||
| 1989 | algorithm | ||
| 1990 | 3324 | node.connectCount := node.connectCount + amount; | |
| 1991 | then | ||
| 1992 | (); | ||
| 1993 | |||
| 1994 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 1995 | algorithm | ||
| 1996 | 2926 | node.connectCount := node.connectCount + amount; | |
| 1997 | then | ||
| 1998 | (); | ||
| 1999 | end match; | ||
| 2000 | end increaseRefCount; | ||
| 2001 | |||
| 2002 | protected function generateStreamEquations | ||
| 2003 | "Generates the equations for a stream connection set." | ||
| 2004 | input list<ConnectorElement> elements; | ||
| 2005 | input Real flowThreshold; | ||
| 2006 | output DAE.DAElist DAE; | ||
| 2007 | algorithm | ||
| 2008 | DAE := match elements | ||
| 2009 | local | ||
| 2010 | DAE.ComponentRef cr1, cr2; | ||
| 2011 | DAE.ElementSource src1, src2, src; | ||
| 2012 | DAE.DAElist dae; | ||
| 2013 | DAE.Exp cref1, cref2, e1, e2; | ||
| 2014 | list<ConnectorElement> inside, outside; | ||
| 2015 | |||
| 2016 | // Unconnected stream connector, do nothing! | ||
| 2017 | case {ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE())} | ||
| 2018 | then DAE.emptyDae; | ||
| 2019 | |||
| 2020 | // Both inside, do nothing! | ||
| 2021 | case {ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE()), | ||
| 2022 | ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE())} | ||
| 2023 | then DAE.emptyDae; | ||
| 2024 | |||
| 2025 | // Both outside: | ||
| 2026 | // cr1 = inStream(cr2); | ||
| 2027 | // cr2 = inStream(cr1); | ||
| 2028 | case {ConnectorElement.CONNECTOR_ELEMENT(name = cr1, face = Face.OUTSIDE(), source = src1), | ||
| 2029 | ConnectorElement.CONNECTOR_ELEMENT(name = cr2, face = Face.OUTSIDE(), source = src2)} | ||
| 2030 | algorithm | ||
| 2031 | 4 | cref1 := Expression.crefExp(cr1); | |
| 2032 | 4 | cref2 := Expression.crefExp(cr2); | |
| 2033 | 4 | e1 := makeInStreamCall(cref2); | |
| 2034 | 4 | e2 := makeInStreamCall(cref1); | |
| 2035 | 4 | src := ElementSource.mergeSources(src1, src2); | |
| 2036 | 8 | dae := DAE.DAE({ | |
| 2037 | DAE.EQUATION(cref1, e1, src), | ||
| 2038 | DAE.EQUATION(cref2, e2, src)}); | ||
| 2039 | then | ||
| 2040 | dae; | ||
| 2041 | |||
| 2042 | // One inside, one outside: | ||
| 2043 | // cr1 = cr2; | ||
| 2044 | case {ConnectorElement.CONNECTOR_ELEMENT(name = cr1, source = src1), | ||
| 2045 | ConnectorElement.CONNECTOR_ELEMENT(name = cr2, source = src2)} | ||
| 2046 | algorithm | ||
| 2047 | 12 | src := ElementSource.mergeSources(src1, src2); | |
| 2048 | 12 | e1 := Expression.crefExp(cr1); | |
| 2049 | 12 | e2 := Expression.crefExp(cr2); | |
| 2050 | 24 | dae := DAE.DAE({DAE.EQUATION(e1,e2,src)}); | |
| 2051 | then | ||
| 2052 | dae; | ||
| 2053 | |||
| 2054 | // The general case with N inside connectors and M outside: | ||
| 2055 | else | ||
| 2056 | algorithm | ||
| 2057 | 8 | (outside, inside) := List.splitOnTrue(elements, isOutsideElement); | |
| 2058 | 8 | dae := streamEquationGeneral(outside, inside, flowThreshold); | |
| 2059 | then | ||
| 2060 | dae; | ||
| 2061 | |||
| 2062 | end match; | ||
| 2063 | end generateStreamEquations; | ||
| 2064 | |||
| 2065 | protected function isOutsideElement | ||
| 2066 | "Returns true if the connector element belongs to an outside connector." | ||
| 2067 | input ConnectorElement element; | ||
| 2068 | output Boolean isOutside; | ||
| 2069 | algorithm | ||
| 2070 | isOutside := match element | ||
| 2071 | case ConnectorElement.CONNECTOR_ELEMENT(face = Face.OUTSIDE()) then true; | ||
| 2072 | else false; | ||
| 2073 | end match; | ||
| 2074 | end isOutsideElement; | ||
| 2075 | |||
| 2076 | protected function isZeroFlowMinMax | ||
| 2077 | "Returns true if the given flow attribute of a connector is zero." | ||
| 2078 | input DAE.ComponentRef streamCref; | ||
| 2079 | input ConnectorElement element; | ||
| 2080 | output Boolean isZero; | ||
| 2081 | algorithm | ||
| 2082 |
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371 | if compareCrefStreamSet(streamCref, element) then |
| 2083 | isZero := false; | ||
| 2084 | elseif isOutsideElement(element) then | ||
| 2085 | 16 | isZero := isZeroFlow(element, "max"); | |
| 2086 | else | ||
| 2087 | 182 | isZero := isZeroFlow(element, "min"); | |
| 2088 | end if; | ||
| 2089 | end isZeroFlowMinMax; | ||
| 2090 | |||
| 2091 | protected function isZeroFlow | ||
| 2092 | "Returns true if the given flow attribute of a connector is zero." | ||
| 2093 | input ConnectorElement element; | ||
| 2094 | input String attr; | ||
| 2095 | output Boolean isZero; | ||
| 2096 | protected | ||
| 2097 | DAE.Type ty; | ||
| 2098 | Option<DAE.Exp> attr_oexp; | ||
| 2099 | DAE.Exp flow_exp, attr_exp; | ||
| 2100 | algorithm | ||
| 2101 | 198 | flow_exp := flowExp(element); | |
| 2102 | 198 | ty := Expression.typeof(flow_exp); | |
| 2103 | 198 | attr_oexp := Types.lookupAttributeExp(Types.getAttributes(ty), attr); | |
| 2104 |
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198 | if isSome(attr_oexp) then |
| 2105 | 180 | SOME(attr_exp) := attr_oexp; | |
| 2106 | 180 | isZero := Expression.isZero(attr_exp); | |
| 2107 | else | ||
| 2108 | isZero := false; | ||
| 2109 | end if; | ||
| 2110 | end isZeroFlow; | ||
| 2111 | |||
| 2112 | protected function streamEquationGeneral | ||
| 2113 | "Generates an equation for an outside stream connector element." | ||
| 2114 | input list<ConnectorElement> outsideElements; | ||
| 2115 | input list<ConnectorElement> insideElements; | ||
| 2116 | input Real flowThreshold; | ||
| 2117 | output DAE.DAElist DAE; | ||
| 2118 | protected | ||
| 2119 | list<ConnectorElement> outside; | ||
| 2120 | DAE.Exp cref_exp, res; | ||
| 2121 | DAE.ElementSource src; | ||
| 2122 | DAE.ComponentRef name; | ||
| 2123 | list<DAE.Element> eql = {}; | ||
| 2124 | algorithm | ||
| 2125 |
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11 | for e in outsideElements loop |
| 2126 | 3 | cref_exp := Expression.crefExp(e.name); | |
| 2127 | 3 | outside := removeStreamSetElement(e.name, outsideElements); | |
| 2128 | 3 | res := streamSumEquationExp(outside, insideElements, flowThreshold); | |
| 2129 | 3 | src := ElementSource.addAdditionalComment(e.source, " equation generated by stream handling"); | |
| 2130 | 3 | eql := DAE.EQUATION(cref_exp, res, src) :: eql; | |
| 2131 | end for; | ||
| 2132 | |||
| 2133 | 8 | DAE := DAE.DAE(eql); | |
| 2134 | end streamEquationGeneral; | ||
| 2135 | |||
| 2136 | protected function streamSumEquationExp | ||
| 2137 | "Generates the sum expression used by stream connector equations, given M | ||
| 2138 | outside connectors and N inside connectors: | ||
| 2139 | |||
| 2140 | (sum(max(-flow_exp[i], eps) * stream_exp[i] for i in N) + | ||
| 2141 | sum(max( flow_exp[i], eps) * inStream(stream_exp[i]) for i in M)) / | ||
| 2142 | (sum(max(-flow_exp[i], eps) for i in N) + | ||
| 2143 | sum(max( flow_exp[i], eps) for i in M)) | ||
| 2144 | |||
| 2145 | where eps = inFlowThreshold. | ||
| 2146 | " | ||
| 2147 | input list<ConnectorElement> outsideElements; | ||
| 2148 | input list<ConnectorElement> insideElements; | ||
| 2149 | input Real flowThreshold; | ||
| 2150 | output DAE.Exp sumExp; | ||
| 2151 | protected | ||
| 2152 | DAE.Exp outside_sum1, outside_sum2, inside_sum1, inside_sum2; | ||
| 2153 | algorithm | ||
| 2154 |
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32 | if listEmpty(outsideElements) then |
| 2155 | // No outside components. | ||
| 2156 | 29 | inside_sum1 := sumMap(insideElements, sumInside1, flowThreshold); | |
| 2157 | 29 | inside_sum2 := sumMap(insideElements, sumInside2, flowThreshold); | |
| 2158 | 29 | sumExp := Expression.expDiv(inside_sum1, inside_sum2); | |
| 2159 | elseif listEmpty(insideElements) then | ||
| 2160 | // No inside components. | ||
| 2161 | 3 | outside_sum1 := sumMap(outsideElements, sumOutside1, flowThreshold); | |
| 2162 | 3 | outside_sum2 := sumMap(outsideElements, sumOutside2, flowThreshold); | |
| 2163 | 3 | sumExp := Expression.expDiv(outside_sum1, outside_sum2); | |
| 2164 | else | ||
| 2165 | // Both outside and inside components. | ||
| 2166 | ✗ | outside_sum1 := sumMap(outsideElements, sumOutside1, flowThreshold); | |
| 2167 | ✗ | outside_sum2 := sumMap(outsideElements, sumOutside2, flowThreshold); | |
| 2168 | ✗ | inside_sum1 := sumMap(insideElements, sumInside1, flowThreshold); | |
| 2169 | ✗ | inside_sum2 := sumMap(insideElements, sumInside2, flowThreshold); | |
| 2170 | ✗ | sumExp := Expression.expDiv(Expression.expAdd(outside_sum1, inside_sum1), | |
| 2171 | Expression.expAdd(outside_sum2, inside_sum2)); | ||
| 2172 | end if; | ||
| 2173 | end streamSumEquationExp; | ||
| 2174 | |||
| 2175 | protected function sumMap | ||
| 2176 | "Creates a sum expression by applying the given function on the list of | ||
| 2177 | elements and summing up the resulting expressions." | ||
| 2178 | input list<ConnectorElement> elements; | ||
| 2179 | input FuncType func; | ||
| 2180 | input Real flowThreshold; | ||
| 2181 | output DAE.Exp exp; | ||
| 2182 | |||
| 2183 | partial function FuncType | ||
| 2184 | input ConnectorElement element; | ||
| 2185 | input Real flowThreshold; | ||
| 2186 | output DAE.Exp exp; | ||
| 2187 | end FuncType; | ||
| 2188 | algorithm | ||
| 2189 |
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|
192 | exp := Expression.expAdd(func(e, flowThreshold) for e in listReverse(elements)); |
| 2190 | end sumMap; | ||
| 2191 | |||
| 2192 | protected function streamFlowExp | ||
| 2193 | "Returns the stream and flow component in a stream set element as expressions." | ||
| 2194 | input ConnectorElement element; | ||
| 2195 | output DAE.Exp streamExp; | ||
| 2196 | output DAE.Exp flowExp; | ||
| 2197 | protected | ||
| 2198 | DAE.ComponentRef flow_cr; | ||
| 2199 | algorithm | ||
| 2200 |
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93 | ConnectorElement.CONNECTOR_ELEMENT(ty = ConnectorType.STREAM(SOME(flow_cr))) := element; |
| 2201 | 93 | streamExp := Expression.crefExp(element.name); | |
| 2202 | 93 | flowExp := Expression.crefExp(flow_cr); | |
| 2203 | end streamFlowExp; | ||
| 2204 | |||
| 2205 | protected function flowExp | ||
| 2206 | "Returns the flow component in a stream set element as an expression." | ||
| 2207 | input ConnectorElement element; | ||
| 2208 | output DAE.Exp flowExp; | ||
| 2209 | protected | ||
| 2210 | DAE.ComponentRef flow_cr; | ||
| 2211 | algorithm | ||
| 2212 |
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262 | ConnectorElement.CONNECTOR_ELEMENT(ty = ConnectorType.STREAM(SOME(flow_cr))) := element; |
| 2213 | 262 | flowExp := Expression.crefExp(flow_cr); | |
| 2214 | end flowExp; | ||
| 2215 | |||
| 2216 | protected function sumOutside1 | ||
| 2217 | "Helper function to streamSumEquationExp. Returns the expression | ||
| 2218 | max(flow_exp, eps) * inStream(stream_exp) | ||
| 2219 | given a stream set element." | ||
| 2220 | input ConnectorElement element; | ||
| 2221 | input Real flowThreshold; | ||
| 2222 | output DAE.Exp exp; | ||
| 2223 | protected | ||
| 2224 | DAE.Exp stream_exp, flow_exp, flow_threshold; | ||
| 2225 | algorithm | ||
| 2226 | 6 | (stream_exp, flow_exp) := streamFlowExp(element); | |
| 2227 | 6 | flow_threshold := DAE.RCONST(flowThreshold); | |
| 2228 | 6 | exp := Expression.expMul(makePositiveMaxCall(flow_exp, flow_threshold), | |
| 2229 | makeInStreamCall(stream_exp)); | ||
| 2230 | end sumOutside1; | ||
| 2231 | |||
| 2232 | protected function sumInside1 | ||
| 2233 | "Helper function to streamSumEquationExp. Returns the expression | ||
| 2234 | max(-flow_exp, eps) * stream_exp | ||
| 2235 | given a stream set element." | ||
| 2236 | input ConnectorElement element; | ||
| 2237 | input Real flowThreshold; | ||
| 2238 | output DAE.Exp exp; | ||
| 2239 | protected | ||
| 2240 | DAE.Exp stream_exp, flow_exp, flow_threshold; | ||
| 2241 | DAE.Type flowTy; | ||
| 2242 | algorithm | ||
| 2243 | 58 | (stream_exp, flow_exp) := streamFlowExp(element); | |
| 2244 | 58 | flowTy := Expression.typeof(flow_exp); | |
| 2245 | 58 | flow_exp := DAE.UNARY(DAE.UMINUS(flowTy), flow_exp); | |
| 2246 | 58 | flow_threshold := DAE.RCONST(flowThreshold); | |
| 2247 | 58 | exp := Expression.expMul(makePositiveMaxCall(flow_exp, flow_threshold), stream_exp); | |
| 2248 | end sumInside1; | ||
| 2249 | |||
| 2250 | protected function sumOutside2 | ||
| 2251 | "Helper function to streamSumEquationExp. Returns the expression | ||
| 2252 | max(flow_exp, eps) | ||
| 2253 | given a stream set element." | ||
| 2254 | input ConnectorElement element; | ||
| 2255 | input Real flowThreshold; | ||
| 2256 | output DAE.Exp exp; | ||
| 2257 | protected | ||
| 2258 | DAE.Exp flow_exp; | ||
| 2259 | algorithm | ||
| 2260 | 6 | flow_exp := flowExp(element); | |
| 2261 | 6 | exp := makePositiveMaxCall(flow_exp, DAE.RCONST(flowThreshold)); | |
| 2262 | end sumOutside2; | ||
| 2263 | |||
| 2264 | protected function sumInside2 | ||
| 2265 | "Helper function to streamSumEquationExp. Returns the expression | ||
| 2266 | max(-flow_exp, eps) | ||
| 2267 | given a stream set element." | ||
| 2268 | input ConnectorElement element; | ||
| 2269 | input Real flowThreshold; | ||
| 2270 | output DAE.Exp exp; | ||
| 2271 | protected | ||
| 2272 | DAE.Exp flow_exp; | ||
| 2273 | DAE.Type flowTy; | ||
| 2274 | algorithm | ||
| 2275 | 58 | flow_exp := flowExp(element); | |
| 2276 | 58 | flowTy := Expression.typeof(flow_exp); | |
| 2277 | 58 | flow_exp := DAE.UNARY(DAE.UMINUS(flowTy), flow_exp); | |
| 2278 | 58 | exp := makePositiveMaxCall(flow_exp, DAE.RCONST(flowThreshold)); | |
| 2279 | end sumInside2; | ||
| 2280 | |||
| 2281 | public function faceEqual "Test for face equality." | ||
| 2282 | input Face face1; | ||
| 2283 | input Face face2; | ||
| 2284 | output Boolean sameFaces = valueConstructor(face1) == valueConstructor(face2); | ||
| 2285 | end faceEqual; | ||
| 2286 | |||
| 2287 | protected function makeInStreamCall | ||
| 2288 | "Creates an inStream call expression." | ||
| 2289 | input DAE.Exp streamExp; | ||
| 2290 | output DAE.Exp inStreamCall; | ||
| 2291 | annotation(__OpenModelica_EarlyInline = true); | ||
| 2292 | protected | ||
| 2293 | DAE.Type ty; | ||
| 2294 | algorithm | ||
| 2295 | 14 | ty := Expression.typeof(streamExp); | |
| 2296 | 14 | inStreamCall := Expression.makeBuiltinCall("inStream", {streamExp}, ty, false); | |
| 2297 | end makeInStreamCall; | ||
| 2298 | |||
| 2299 | protected function makePositiveMaxCall | ||
| 2300 | "Generates a max(flow_exp, eps) call." | ||
| 2301 | input DAE.Exp flowExp; | ||
| 2302 | input DAE.Exp flowThreshold; | ||
| 2303 | output DAE.Exp positiveMaxCall; | ||
| 2304 | annotation(__OpenModelica_EarlyInline = true); | ||
| 2305 | protected | ||
| 2306 | DAE.Type ty; | ||
| 2307 | Option<DAE.Exp> nominal_oexp; | ||
| 2308 | DAE.Exp nominal_exp, flow_threshold; | ||
| 2309 | algorithm | ||
| 2310 | 128 | ty := Expression.typeof(flowExp); | |
| 2311 | 128 | nominal_oexp := Types.lookupAttributeExp(Types.getAttributes(ty), "nominal"); | |
| 2312 | |||
| 2313 |
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128 | if isSome(nominal_oexp) then |
| 2314 | ✗ | SOME(nominal_exp) := nominal_oexp; | |
| 2315 | ✗ | flow_threshold := Expression.expMul(flowThreshold, nominal_exp); | |
| 2316 | else | ||
| 2317 | flow_threshold := flowThreshold; | ||
| 2318 | end if; | ||
| 2319 | |||
| 2320 | 128 | positiveMaxCall := | |
| 2321 | DAE.CALL(Absyn.IDENT("$OMC$PositiveMax"), {flowExp, flow_threshold}, | ||
| 2322 | DAE.CALL_ATTR( | ||
| 2323 | ty, | ||
| 2324 | false, | ||
| 2325 | true, | ||
| 2326 | false, | ||
| 2327 | false, | ||
| 2328 | DAE.NO_INLINE(), | ||
| 2329 | DAE.NO_TAIL(), | ||
| 2330 | DAE.NoReturn.RETURNS)); | ||
| 2331 | |||
| 2332 | 128 | setGlobalRoot(Global.isInStream, SOME(true)); | |
| 2333 | end makePositiveMaxCall; | ||
| 2334 | |||
| 2335 | protected function evaluateConnectionOperators | ||
| 2336 | "Evaluates connection operators inStream, actualStream and cardinality in the | ||
| 2337 | given DAE." | ||
| 2338 | input Sets sets; | ||
| 2339 | input array<Set> setArray; | ||
| 2340 | input output DAE.DAElist DAE; | ||
| 2341 | protected | ||
| 2342 | Real flow_threshold; | ||
| 2343 | Boolean has_cardinality = System.getUsesCardinality(); | ||
| 2344 | algorithm | ||
| 2345 | // Only do this phase if we have any connection operators. | ||
| 2346 |
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|
1039 | if System.getHasStreamConnectors() or has_cardinality then |
| 2347 | 145 | flow_threshold := Flags.getConfigReal(Flags.FLOW_THRESHOLD); | |
| 2348 |
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|
240 | DAE := DAEUtil.traverseDAE(DAE, AvlTreePathFunction.Tree.EMPTY(), |
| 2349 | function evaluateConnectionOperators2( | ||
| 2350 | hasCardinality = has_cardinality, | ||
| 2351 | setArray = setArray, | ||
| 2352 | flowThreshold = flow_threshold), sets); | ||
| 2353 | 145 | DAE := simplifyDAEElements(has_cardinality, DAE); | |
| 2354 | end if; | ||
| 2355 | end evaluateConnectionOperators; | ||
| 2356 | |||
| 2357 | protected function evaluateConnectionOperators2 | ||
| 2358 | "Helper function to evaluateConnectionOperators." | ||
| 2359 | input output DAE.Exp exp; | ||
| 2360 | input output Sets sets; | ||
| 2361 | input array<Set> setArray; | ||
| 2362 | input Boolean hasCardinality; | ||
| 2363 | input Real flowThreshold; | ||
| 2364 | protected | ||
| 2365 | Boolean changed; | ||
| 2366 | algorithm | ||
| 2367 | 410654 | (exp, changed) := Expression.traverseExpBottomUp(exp, | |
| 2368 | function evaluateConnectionOperatorsExp( | ||
| 2369 | sets = sets, | ||
| 2370 | setArray = setArray, | ||
| 2371 | flowThreshold = flowThreshold), false); | ||
| 2372 | |||
| 2373 | // Only apply simplify if the expression changed *AND* we have cardinality. | ||
| 2374 |
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|
410654 | if changed and hasCardinality then |
| 2375 | 672 | exp := ExpressionSimplify.simplify(exp); | |
| 2376 | end if; | ||
| 2377 | end evaluateConnectionOperators2; | ||
| 2378 | |||
| 2379 | protected function evaluateConnectionOperatorsExp | ||
| 2380 | "Helper function to evaluateConnectionOperators2. Checks if the given | ||
| 2381 | expression is a call to inStream or actualStream, and if so calls the | ||
| 2382 | appropriate function in ConnectUtil to evaluate the call." | ||
| 2383 | input output DAE.Exp exp; | ||
| 2384 | input Sets sets; | ||
| 2385 | input array<Set> setArray; | ||
| 2386 | input Real flowThreshold; | ||
| 2387 | input output Boolean changed; | ||
| 2388 | algorithm | ||
| 2389 | (exp, changed) := match exp | ||
| 2390 | local | ||
| 2391 | DAE.ComponentRef cr; | ||
| 2392 | DAE.Exp e; | ||
| 2393 | |||
| 2394 | case DAE.CALL(path = Absyn.IDENT("inStream"), | ||
| 2395 | expLst = {DAE.CREF(componentRef = cr)}) | ||
| 2396 | algorithm | ||
| 2397 | 140 | e := evaluateInStream(cr, sets, setArray, flowThreshold); | |
| 2398 | //print("Evaluated inStream(" + ExpressionDump.dumpExpStr(DAE.CREF(cr, ty), 0) + ") ->\n" + ExpressionDump.dumpExpStr(e, 0) + "\n"); | ||
| 2399 | then | ||
| 2400 | (e, true); | ||
| 2401 | |||
| 2402 | case DAE.CALL(path = Absyn.IDENT("actualStream"), | ||
| 2403 | expLst = {DAE.CREF(componentRef = cr)}) | ||
| 2404 | algorithm | ||
| 2405 | 18 | e := evaluateActualStream(cr, sets, setArray, flowThreshold); | |
| 2406 | //print("Evaluated actualStream(" + ExpressionDump.dumpExpStr(DAE.CREF(cr, ty), 0) + ") ->\n" + ExpressionDump.dumpExpStr(e, 0) + "\n"); | ||
| 2407 | then | ||
| 2408 | (e, true); | ||
| 2409 | |||
| 2410 | case DAE.CALL(path = Absyn.IDENT("cardinality"), | ||
| 2411 | expLst = {DAE.CREF(componentRef = cr)}) | ||
| 2412 | algorithm | ||
| 2413 | 760 | e := evaluateCardinality(cr, sets); | |
| 2414 | then | ||
| 2415 | (e, true); | ||
| 2416 | |||
| 2417 | else (exp, changed); | ||
| 2418 | |||
| 2419 | end match; | ||
| 2420 | end evaluateConnectionOperatorsExp; | ||
| 2421 | |||
| 2422 | protected function mkArrayIfNeeded | ||
| 2423 | "@author: adrpo | ||
| 2424 | does an array out of exp if needed" | ||
| 2425 | input DAE.Type ty; | ||
| 2426 | input output DAE.Exp exp; | ||
| 2427 | algorithm | ||
| 2428 | ✗ | exp := Expression.arrayFill(TypesDump.getDimensions(ty), exp); | |
| 2429 | end mkArrayIfNeeded; | ||
| 2430 | |||
| 2431 | protected function evaluateInStream | ||
| 2432 | "This function evaluates the inStream operator for a component reference, | ||
| 2433 | given the connection sets." | ||
| 2434 | input DAE.ComponentRef streamCref; | ||
| 2435 | input Sets sets; | ||
| 2436 | input array<Set> setArray; | ||
| 2437 | input Real flowThreshold; | ||
| 2438 | output DAE.Exp exp; | ||
| 2439 | protected | ||
| 2440 | ConnectorElement e; | ||
| 2441 | list<ConnectorElement> sl; | ||
| 2442 | Integer set; | ||
| 2443 | algorithm | ||
| 2444 | try | ||
| 2445 | 173 | e := findElement(streamCref, Face.INSIDE(), ConnectorType.STREAM(NONE()), | |
| 2446 | DAE.emptyElementSource, sets); | ||
| 2447 | |||
| 2448 |
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|
173 | if isNewElement(e) then |
| 2449 | // A new element means that the stream element couldn't be found in the sets | ||
| 2450 | // => unconnected stream connector. | ||
| 2451 | sl := {e}; | ||
| 2452 | else | ||
| 2453 | // Otherwise, fetch the set that the element belongs to and evaluate the | ||
| 2454 | // inStream call. | ||
| 2455 | ConnectorElement.CONNECTOR_ELEMENT(set = set) := e; | ||
| 2456 |
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|
155 | Set.SET(ty = ConnectorType.STREAM(), elements = sl) := |
| 2457 | setArrayGet(setArray, set); | ||
| 2458 | end if; | ||
| 2459 | |||
| 2460 | 173 | exp := generateInStreamExp(streamCref, sl, sets, setArray, flowThreshold); | |
| 2461 | else | ||
| 2462 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 2463 | ✗ | Debug.traceln("- ConnectUtil.evaluateInStream failed for " + | |
| 2464 | ComponentReference.crefStr(streamCref) + "\n"); | ||
| 2465 | ✗ | fail(); | |
| 2466 | end try; | ||
| 2467 | end evaluateInStream; | ||
| 2468 | |||
| 2469 | protected function generateInStreamExp | ||
| 2470 | "Helper function to evaluateInStream. Generates an expression for inStream | ||
| 2471 | given a connection set." | ||
| 2472 | input DAE.ComponentRef streamCref; | ||
| 2473 | input list<ConnectorElement> streams; | ||
| 2474 | input Sets sets; | ||
| 2475 | input array<Set> setArray; | ||
| 2476 | input Real flowThreshold; | ||
| 2477 | output DAE.Exp exp; | ||
| 2478 | protected | ||
| 2479 | list<ConnectorElement> reducedStreams; | ||
| 2480 | algorithm | ||
| 2481 | 173 | reducedStreams := List.filterOnFalse(streams, function isZeroFlowMinMax(streamCref = streamCref)); | |
| 2482 | |||
| 2483 | exp := match reducedStreams | ||
| 2484 | local | ||
| 2485 | DAE.ComponentRef c; | ||
| 2486 | Face f1, f2; | ||
| 2487 | DAE.Exp e, expr; | ||
| 2488 | list<ConnectorElement> inside, outside; | ||
| 2489 | |||
| 2490 | // Unconnected stream connector: | ||
| 2491 | // inStream(c) = c; | ||
| 2492 | case {ConnectorElement.CONNECTOR_ELEMENT(name = c, face = Face.INSIDE())} | ||
| 2493 | 26 | then Expression.crefExp(c); | |
| 2494 | |||
| 2495 | // Two inside connected stream connectors: | ||
| 2496 | // inStream(c1) = c2; | ||
| 2497 | // inStream(c2) = c1; | ||
| 2498 | case {ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE()), | ||
| 2499 | ConnectorElement.CONNECTOR_ELEMENT(face = Face.INSIDE())} | ||
| 2500 | algorithm | ||
| 2501 |
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|
102 | {ConnectorElement.CONNECTOR_ELEMENT(name = c)} := |
| 2502 | removeStreamSetElement(streamCref, reducedStreams); | ||
| 2503 | 102 | e := Expression.crefExp(c); | |
| 2504 | then | ||
| 2505 | e; | ||
| 2506 | |||
| 2507 | // One inside, one outside connected stream connector: | ||
| 2508 | // inStream(c1) = inStream(c2); | ||
| 2509 | case {ConnectorElement.CONNECTOR_ELEMENT(face = f1), | ||
| 2510 | ConnectorElement.CONNECTOR_ELEMENT(face = f2)} guard not faceEqual(f1, f2) | ||
| 2511 | algorithm | ||
| 2512 |
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|
16 | {ConnectorElement.CONNECTOR_ELEMENT(name = c)} := |
| 2513 | removeStreamSetElement(streamCref, reducedStreams); | ||
| 2514 | 16 | e := evaluateInStream(c, sets, setArray, flowThreshold); | |
| 2515 | then | ||
| 2516 | e; | ||
| 2517 | |||
| 2518 | // The general case: | ||
| 2519 | else | ||
| 2520 | algorithm | ||
| 2521 | 29 | (outside, inside) := List.splitOnTrue(reducedStreams, isOutsideElement); | |
| 2522 | 29 | inside := removeStreamSetElement(streamCref, inside); | |
| 2523 | 29 | e := streamSumEquationExp(outside, inside, flowThreshold); | |
| 2524 |
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|
29 | if not listEmpty(inside) then |
| 2525 | 29 | expr := streamFlowExp(listHead(inside)); | |
| 2526 | 29 | e := Expression.makePureBuiltinCall("$OMC$inStreamDiv", {e, expr}, Expression.typeof(e)); | |
| 2527 | end if; | ||
| 2528 | // Evaluate any inStream calls that were generated. | ||
| 2529 | 29 | e := evaluateConnectionOperators2(e, sets, setArray, false, flowThreshold); | |
| 2530 | then | ||
| 2531 | e; | ||
| 2532 | end match; | ||
| 2533 | end generateInStreamExp; | ||
| 2534 | |||
| 2535 | protected function evaluateActualStream | ||
| 2536 | "This function evaluates the actualStream operator for a component reference, | ||
| 2537 | given the connection sets." | ||
| 2538 | input DAE.ComponentRef streamCref; | ||
| 2539 | input Sets sets; | ||
| 2540 | input array<Set> setArray; | ||
| 2541 | input Real flowThreshold; | ||
| 2542 | output DAE.Exp exp; | ||
| 2543 | protected | ||
| 2544 | DAE.ComponentRef flow_cr; | ||
| 2545 | DAE.Exp flow_exp, stream_exp, instream_exp, rel_exp; | ||
| 2546 | DAE.Type ety; | ||
| 2547 | Integer flow_dir; | ||
| 2548 | algorithm | ||
| 2549 | 18 | flow_cr := getStreamFlowAssociation(streamCref, sets); | |
| 2550 | 18 | ety := ComponentReference.crefLastType(flow_cr); | |
| 2551 | 18 | flow_dir := evaluateFlowDirection(ety); | |
| 2552 | |||
| 2553 | // Select a branch if we know the flow direction, otherwise generate the whole | ||
| 2554 | // if-equation. | ||
| 2555 |
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|
18 | if flow_dir == 1 then |
| 2556 | 1 | rel_exp := evaluateInStream(streamCref, sets, setArray, flowThreshold); | |
| 2557 | elseif flow_dir == -1 then | ||
| 2558 | 1 | rel_exp := Expression.crefExp(streamCref); | |
| 2559 | else | ||
| 2560 | 16 | flow_exp := Expression.crefExp(flow_cr); | |
| 2561 | 16 | stream_exp := Expression.crefExp(streamCref); | |
| 2562 | 16 | instream_exp := evaluateInStream(streamCref, sets, setArray, flowThreshold); | |
| 2563 | 16 | rel_exp := DAE.IFEXP( | |
| 2564 | DAE.RELATION(flow_exp, DAE.GREATER(ety), DAE.RCONST(0.0), -1, NONE()), | ||
| 2565 | instream_exp, stream_exp); | ||
| 2566 | end if; | ||
| 2567 | |||
| 2568 | // actualStream(stream_var) = smooth(0, if flow_var > 0 then inStream(stream_var) | ||
| 2569 | // else stream_var); | ||
| 2570 | 18 | exp := DAE.CALL(Absyn.IDENT("smooth"), {DAE.ICONST(0), rel_exp}, | |
| 2571 | DAE.callAttrBuiltinReal); | ||
| 2572 | end evaluateActualStream; | ||
| 2573 | |||
| 2574 | protected function evaluateFlowDirection | ||
| 2575 | "Checks the min/max attributes of a flow variables type to try and determine | ||
| 2576 | the flow direction. If the flow is positive 1 is returned, if it is negative | ||
| 2577 | -1, otherwise 0 if the direction can't be decided." | ||
| 2578 | input DAE.Type ty; | ||
| 2579 | output Integer direction = 0; | ||
| 2580 | protected | ||
| 2581 | list<DAE.Var> attr; | ||
| 2582 | Option<Values.Value> min_oval, max_oval; | ||
| 2583 | Real min_val, max_val; | ||
| 2584 | algorithm | ||
| 2585 | 18 | attr := Types.getAttributes(ty); | |
| 2586 |
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|
18 | if listEmpty(attr) then return; end if; |
| 2587 | |||
| 2588 | 16 | min_oval := Types.lookupAttributeValue(attr, "min"); | |
| 2589 | 16 | max_oval := Types.lookupAttributeValue(attr, "max"); | |
| 2590 | |||
| 2591 | direction := match (min_oval, max_oval) | ||
| 2592 | // No attributes, flow direction can't be decided. | ||
| 2593 | case (NONE(), NONE()) then 0; | ||
| 2594 | // Flow is positive if min is positive. | ||
| 2595 | case (SOME(Values.REAL(min_val)), NONE()) | ||
| 2596 | ✗ | then if min_val >= 0 then 1 else 0; | |
| 2597 | // Flow is negative if max is negative. | ||
| 2598 | case (NONE(), SOME(Values.REAL(max_val))) | ||
| 2599 | ✗ | then if max_val <= 0 then -1 else 0; | |
| 2600 | // Flow is positive if both min and max are positive, negative if they are | ||
| 2601 | // both negative, otherwise undecideable. | ||
| 2602 | case (SOME(Values.REAL(min_val)), SOME(Values.REAL(max_val))) | ||
| 2603 |
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|
16 | then |
| 2604 | if min_val >= 0 and max_val >= min_val then 1 | ||
| 2605 | elseif max_val <= 0 and min_val <= max_val then -1 | ||
| 2606 | else 0; | ||
| 2607 | else 0; | ||
| 2608 | end match; | ||
| 2609 | end evaluateFlowDirection; | ||
| 2610 | |||
| 2611 | protected function evaluateCardinality | ||
| 2612 | input DAE.ComponentRef cref; | ||
| 2613 | input Sets sets; | ||
| 2614 | output DAE.Exp exp; | ||
| 2615 | algorithm | ||
| 2616 | 760 | exp := DAE.ICONST(getConnectCount(cref, sets.sets)); | |
| 2617 | end evaluateCardinality; | ||
| 2618 | |||
| 2619 | protected function simplifyDAEElements | ||
| 2620 | "run this only if we have cardinality" | ||
| 2621 | input Boolean hasCardinality; | ||
| 2622 | input output DAE.DAElist DAE; | ||
| 2623 | algorithm | ||
| 2624 |
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|
145 | if hasCardinality then |
| 2625 | 50 | DAE := DAE.DAE(List.mapFlat(DAE.elementLst, simplifyDAEElement)); | |
| 2626 | end if; | ||
| 2627 | end simplifyDAEElements; | ||
| 2628 | |||
| 2629 | protected function simplifyDAEElement | ||
| 2630 | input DAE.Element element; | ||
| 2631 | output list<DAE.Element> elements; | ||
| 2632 | algorithm | ||
| 2633 | elements := matchcontinue element | ||
| 2634 | local | ||
| 2635 | list<DAE.Exp> conds; | ||
| 2636 | list<list<DAE.Element>> branches; | ||
| 2637 | list<DAE.Element> else_branch; | ||
| 2638 | |||
| 2639 | case DAE.IF_EQUATION(conds, branches, else_branch) | ||
| 2640 | 371 | then simplifyDAEIfEquation(conds, branches, else_branch); | |
| 2641 | |||
| 2642 | case DAE.INITIAL_IF_EQUATION(conds, branches, else_branch) | ||
| 2643 | 3 | then simplifyDAEIfEquation(conds, branches, else_branch); | |
| 2644 | |||
| 2645 | case DAE.ASSERT(condition = DAE.BCONST(true)) then {}; | ||
| 2646 | |||
| 2647 | else {element}; | ||
| 2648 | |||
| 2649 | end matchcontinue; | ||
| 2650 | end simplifyDAEElement; | ||
| 2651 | |||
| 2652 | protected function simplifyDAEIfEquation | ||
| 2653 | input list<DAE.Exp> conditions; | ||
| 2654 | input list<list<DAE.Element>> branches; | ||
| 2655 | input list<DAE.Element> elseBranch; | ||
| 2656 | output list<DAE.Element> elements; | ||
| 2657 | protected | ||
| 2658 | Boolean cond_value; | ||
| 2659 | list<list<DAE.Element>> rest_branches = branches; | ||
| 2660 | algorithm | ||
| 2661 |
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|
395 | for cond in conditions loop |
| 2662 |
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|
376 | DAE.BCONST(cond_value) := cond; |
| 2663 | |||
| 2664 | // Condition is true, substitute if-equation with the branch contents. | ||
| 2665 |
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|
366 | if cond_value == true then |
| 2666 | 345 | elements := listReverse(listHead(rest_branches)); | |
| 2667 | 345 | return; | |
| 2668 | end if; | ||
| 2669 | |||
| 2670 | // Condition is false, discard the branch and continue with the other branches. | ||
| 2671 | 21 | rest_branches := listRest(rest_branches); | |
| 2672 | end for; | ||
| 2673 | |||
| 2674 | // All conditions were false, substitute if-equation with else-branch contents. | ||
| 2675 | 19 | elements := listReverse(elseBranch); | |
| 2676 | end simplifyDAEIfEquation; | ||
| 2677 | |||
| 2678 | protected function removeStreamSetElement | ||
| 2679 | "This function removes the given cref from a connection set." | ||
| 2680 | input DAE.ComponentRef cref; | ||
| 2681 | input output list<ConnectorElement> elements; | ||
| 2682 | algorithm | ||
| 2683 | 150 | elements := List.deleteMemberOnTrue(cref, elements, compareCrefStreamSet); | |
| 2684 | end removeStreamSetElement; | ||
| 2685 | |||
| 2686 | protected function compareCrefStreamSet | ||
| 2687 | "Helper function to removeStreamSetElement. Checks if the cref in a stream set | ||
| 2688 | element matches the given cref." | ||
| 2689 | input DAE.ComponentRef cref; | ||
| 2690 | input ConnectorElement element; | ||
| 2691 | output Boolean matches; | ||
| 2692 | algorithm | ||
| 2693 | 594 | matches := ComponentReferenceBasics.crefEqualNoStringCompare(cref, element.name); | |
| 2694 | end compareCrefStreamSet; | ||
| 2695 | |||
| 2696 | public function componentFace | ||
| 2697 | "This function determines whether a component | ||
| 2698 | reference refers to an inner or outer connector: | ||
| 2699 | Rules: | ||
| 2700 | qualified cref and connector => OUTSIDE | ||
| 2701 | non-qualifed cref => OUTSIDE | ||
| 2702 | qualified cref and non-connector => INSIDE | ||
| 2703 | |||
| 2704 | Modelica Specification 4.0 | ||
| 2705 | Section: 9.1.2 Inside and Outside Connectors | ||
| 2706 | In an element instance M, each connector element of M is called an outside connector with respect to M. | ||
| 2707 | All other connector elements that are hierarchically inside M, but not in one of the outside connectors | ||
| 2708 | of M, is called an inside connector with respect to M. This is done **BEFORE** resolving outer elements | ||
| 2709 | to corresponding inner ones." | ||
| 2710 | input FCore.Graph env; | ||
| 2711 | input DAE.ComponentRef componentRef; | ||
| 2712 | output Face face; | ||
| 2713 | algorithm | ||
| 2714 | face := matchcontinue componentRef | ||
| 2715 | local | ||
| 2716 | DAE.Ident id; | ||
| 2717 | |||
| 2718 | // is a non-qualified cref => OUTSIDE | ||
| 2719 | case DAE.CREF_IDENT() then Face.OUTSIDE(); | ||
| 2720 | |||
| 2721 | // is a qualified cref and is a connector => OUTSIDE | ||
| 2722 | case DAE.CREF_QUAL(ident = id) | ||
| 2723 | algorithm | ||
| 2724 |
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|
18596 | (_, _, DAE.T_COMPLEX(complexClassType=ClassInf.CONNECTOR(_,_)),_,_,_,_,_,_) |
| 2725 | := Lookup.lookupVar(FCore.emptyCache(), env, | ||
| 2726 | ComponentReferenceBasics.makeCrefIdent(id, DAE.T_UNKNOWN_DEFAULT,{})); | ||
| 2727 | then Face.OUTSIDE(); | ||
| 2728 | |||
| 2729 | // is a qualified cref and is NOT a connector => INSIDE | ||
| 2730 | case DAE.CREF_QUAL() then Face.INSIDE(); | ||
| 2731 | end matchcontinue; | ||
| 2732 | end componentFace; | ||
| 2733 | |||
| 2734 | public function componentFaceType | ||
| 2735 | "Author: BZ, 2008-12 | ||
| 2736 | Same functionalty as componentFace, with the difference that | ||
| 2737 | this function checks ident-type rather then env->lookup ==> type. | ||
| 2738 | Rules: | ||
| 2739 | qualified cref and connector => OUTSIDE | ||
| 2740 | non-qualifed cref => OUTSIDE | ||
| 2741 | qualified cref and non-connector => INSIDE | ||
| 2742 | |||
| 2743 | Modelica Specification 4.0 | ||
| 2744 | Section: 9.1.2 Inside and Outside Connectors | ||
| 2745 | In an element instance M, each connector element of M is called an outside connector with respect to M. | ||
| 2746 | All other connector elements that are hierarchically inside M, but not in one of the outside connectors | ||
| 2747 | of M, is called an inside connector with respect to M. This is done **BEFORE** resolving outer elements | ||
| 2748 | to corresponding inner ones." | ||
| 2749 | input DAE.ComponentRef inComponentRef; | ||
| 2750 | output Face outFace; | ||
| 2751 | algorithm | ||
| 2752 | outFace := match inComponentRef | ||
| 2753 | // is a non-qualified cref => OUTSIDE | ||
| 2754 | case DAE.CREF_IDENT() then Face.OUTSIDE(); | ||
| 2755 | // is a qualified cref and is a connector => OUTSIDE | ||
| 2756 | case DAE.CREF_QUAL(identType = DAE.T_COMPLEX(complexClassType=ClassInf.CONNECTOR(_,_))) then Face.OUTSIDE(); | ||
| 2757 | // is a qualified cref and is an array of connectors => OUTSIDE | ||
| 2758 | case DAE.CREF_QUAL(identType = DAE.T_ARRAY(ty = DAE.T_COMPLEX(complexClassType=ClassInf.CONNECTOR(_,_)))) then Face.OUTSIDE(); | ||
| 2759 | // is a qualified cref and is NOT a connector => INSIDE | ||
| 2760 | case DAE.CREF_QUAL() then Face.INSIDE(); | ||
| 2761 | end match; | ||
| 2762 | end componentFaceType; | ||
| 2763 | |||
| 2764 | public function checkConnectorBalance | ||
| 2765 | "Checks if a connector class is balanced or not, according to the rules in the | ||
| 2766 | Modelica 3.2 specification." | ||
| 2767 | input list<DAE.Var> vars; | ||
| 2768 | input Absyn.Path path; | ||
| 2769 | input SourceInfo info; | ||
| 2770 | protected | ||
| 2771 | Integer potentials, flows, streams; | ||
| 2772 | algorithm | ||
| 2773 | 4386 | (potentials, flows, streams) := countConnectorVars(vars); | |
| 2774 |
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|
4386 | true := checkConnectorBalance2(potentials, flows, streams, path, info); |
| 2775 | //print(AbsynUtil.pathString(path) + " has:\n\t" + | ||
| 2776 | // String(potentials) + " potential variables\n\t" + | ||
| 2777 | // String(flows) + " flow variables\n\t" + | ||
| 2778 | // String(streams) + " stream variables\n\n"); | ||
| 2779 | end checkConnectorBalance; | ||
| 2780 | |||
| 2781 | protected function checkConnectorBalance2 | ||
| 2782 | input Integer potentialVars; | ||
| 2783 | input Integer flowVars; | ||
| 2784 | input Integer streamVars; | ||
| 2785 | input Absyn.Path path; | ||
| 2786 | input SourceInfo info; | ||
| 2787 | output Boolean isBalanced = true; | ||
| 2788 | protected | ||
| 2789 | String flow_str, potential_str, class_str; | ||
| 2790 | algorithm | ||
| 2791 | // Don't check connector balance for language version 2.x and earlier. | ||
| 2792 |
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|
4400 | if Config.languageStandardAtMost(Config.LanguageStandard._2_x) then |
| 2793 | 399 | return; | |
| 2794 | end if; | ||
| 2795 | |||
| 2796 | // Modelica 3.2 section 9.3.1: | ||
| 2797 | // For each non-partial connector class the number of flow variables shall | ||
| 2798 | // be equal to the number of variables that are neither parameter, constant, | ||
| 2799 | // input, output, stream nor flow. | ||
| 2800 |
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|
4001 | if potentialVars <> flowVars then |
| 2801 | 148 | flow_str := String(flowVars); | |
| 2802 | 148 | potential_str := String(potentialVars); | |
| 2803 | 148 | class_str := AbsynUtil.pathString(path); | |
| 2804 | 148 | Error.addSourceMessage(Error.UNBALANCED_CONNECTOR, {class_str, potential_str, flow_str}, info); | |
| 2805 | |||
| 2806 | // This should be a hard error, but there are models that contain such | ||
| 2807 | // connectors. So we print an error but return that the connector is balanced. | ||
| 2808 | end if; | ||
| 2809 | |||
| 2810 | // Modelica 3.2 section 15.1: | ||
| 2811 | // A stream connector must have exactly one scalar variable with the flow prefix. | ||
| 2812 |
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4001 | if streamVars > 0 and flowVars <> 1 then |
| 2813 | ✗ | flow_str := String(flowVars); | |
| 2814 | ✗ | class_str := AbsynUtil.pathString(path); | |
| 2815 | ✗ | Error.addSourceMessage(Error.MISMATCHED_FLOW_IN_STREAM_CONNECTOR, {class_str, flow_str}, info); | |
| 2816 | isBalanced := false; | ||
| 2817 | end if; | ||
| 2818 | end checkConnectorBalance2; | ||
| 2819 | |||
| 2820 | protected function countConnectorVars | ||
| 2821 | "Given a list of connector variables, this function counts how many potential, | ||
| 2822 | flow and stream variables it contains." | ||
| 2823 | input list<DAE.Var> vars; | ||
| 2824 | output Integer potentialVars = 0; | ||
| 2825 | output Integer flowVars = 0; | ||
| 2826 | output Integer streamVars = 0; | ||
| 2827 | protected | ||
| 2828 | DAE.Type ty, ty2; | ||
| 2829 | DAE.Attributes attr; | ||
| 2830 | Integer n, p, f, s; | ||
| 2831 | algorithm | ||
| 2832 |
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|
16502 | for var in vars loop |
| 2833 | 12051 | DAE.TYPES_VAR(ty = ty, attributes = attr) := var; | |
| 2834 | 12051 | ty2 := Types.arrayElementType(ty); | |
| 2835 | |||
| 2836 | // Check if we have a connector inside a connector. | ||
| 2837 |
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|
12051 | if Types.isConnector(ty2) then |
| 2838 | // If we have an array of connectors, count the elements. | ||
| 2839 |
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|
120 | n := product(dim for dim in Types.getDimensionSizes(ty)); |
| 2840 | // Count the number of different variables inside the connector, and then | ||
| 2841 | // multiply those numbers with the dimensions of the array. | ||
| 2842 | 65 | (p, f, s) := countConnectorVars(Types.getConnectorVars(ty2)); | |
| 2843 | |||
| 2844 | // If the variable is input/output we don't count potential variables. | ||
| 2845 |
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|
65 | if AbsynUtil.isInputOrOutput(DAEUtil.getAttrDirection(attr)) then |
| 2846 | p := 0; | ||
| 2847 | end if; | ||
| 2848 | |||
| 2849 | 65 | potentialVars := potentialVars + p * n; | |
| 2850 | 65 | flowVars := flowVars + f * n; | |
| 2851 | 65 | streamVars := streamVars + s * n; | |
| 2852 | else | ||
| 2853 | () := match attr | ||
| 2854 | // A flow variable. | ||
| 2855 | case DAE.ATTR(connectorType = DAE.FLOW()) | ||
| 2856 | algorithm | ||
| 2857 | 5070 | flowVars := flowVars + sizeOfType(var.ty); | |
| 2858 | then | ||
| 2859 | (); | ||
| 2860 | |||
| 2861 | // A stream variable. | ||
| 2862 | case DAE.ATTR(connectorType = DAE.STREAM()) | ||
| 2863 | algorithm | ||
| 2864 | 321 | streamVars := streamVars + sizeOfType(var.ty); | |
| 2865 | then | ||
| 2866 | (); | ||
| 2867 | |||
| 2868 | // A potential variable. | ||
| 2869 | case DAE.ATTR(direction = Absyn.BIDIR(), variability = SCode.VAR()) | ||
| 2870 | algorithm | ||
| 2871 | 5782 | potentialVars := potentialVars + sizeOfType(var.ty); | |
| 2872 | then | ||
| 2873 | (); | ||
| 2874 | |||
| 2875 | else (); | ||
| 2876 | end match; | ||
| 2877 | end if; | ||
| 2878 | end for; | ||
| 2879 | end countConnectorVars; | ||
| 2880 | |||
| 2881 | protected function sizeOfVariableList | ||
| 2882 | "Calls sizeOfVariable on a list of variables, and adds up the results." | ||
| 2883 | input list<DAE.Var> vars; | ||
| 2884 | output Integer size = 0; | ||
| 2885 | algorithm | ||
| 2886 | ✗ | for var in vars loop | |
| 2887 | ✗ | size := size + sizeOfType(var.ty); | |
| 2888 | end for; | ||
| 2889 | end sizeOfVariableList; | ||
| 2890 | |||
| 2891 | protected function sizeOfType | ||
| 2892 | "Different types of variables have different size, for example arrays. This | ||
| 2893 | function checks the size of one variable." | ||
| 2894 | input DAE.Type ty; | ||
| 2895 | output Integer size; | ||
| 2896 | algorithm | ||
| 2897 | size := match ty | ||
| 2898 | local | ||
| 2899 | Integer n; | ||
| 2900 | DAE.Type t; | ||
| 2901 | list<DAE.Var> v; | ||
| 2902 | |||
| 2903 | // Scalar values consist of one element. | ||
| 2904 | case DAE.T_INTEGER() then 1; | ||
| 2905 | case DAE.T_REAL() then 1; | ||
| 2906 | case DAE.T_STRING() then 1; | ||
| 2907 | case DAE.T_BOOL() then 1; | ||
| 2908 | case DAE.T_ENUMERATION() then 1; | ||
| 2909 | // The size of an array is its dimension multiplied with the size of its type. | ||
| 2910 | case DAE.T_ARRAY() | ||
| 2911 |
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|
7558 | then intMul(Expression.dimensionSize(dim) for dim in ty.dims) * sizeOfType(ty.ty); |
| 2912 | // The size of a complex type without an equalityConstraint (such as a | ||
| 2913 | // record), is the sum of the sizes of its components. | ||
| 2914 | case DAE.T_COMPLEX(varLst = v, equalityConstraint = NONE()) | ||
| 2915 | ✗ | then sizeOfVariableList(v); | |
| 2916 | // The size of a complex type with an equalityConstraint function is | ||
| 2917 | // determined by the size of the return value of that function. | ||
| 2918 | case DAE.T_COMPLEX(equalityConstraint = SOME((_, n, _))) then n; | ||
| 2919 | // The size of a basic subtype with equality constraint is ZERO. | ||
| 2920 | case DAE.T_SUBTYPE_BASIC(equalityConstraint = SOME(_)) then 0; | ||
| 2921 | // The size of a basic subtype is the size of the extended type. | ||
| 2922 | 1 | case DAE.T_SUBTYPE_BASIC(complexType = t) then sizeOfType(t); | |
| 2923 | // Anything we forgot? | ||
| 2924 | else | ||
| 2925 | algorithm | ||
| 2926 | ✗ | true := Flags.isSet(Flags.FAILTRACE); | |
| 2927 | ✗ | Debug.traceln("- ConnectUtil.sizeOfType failed on " + TypesDump.printTypeStr(ty)); | |
| 2928 | ✗ | then | |
| 2929 | fail(); | ||
| 2930 | end match; | ||
| 2931 | end sizeOfType; | ||
| 2932 | |||
| 2933 | public function checkShortConnectorDef | ||
| 2934 | "Checks a short connector definition that has extended a basic type, i.e. | ||
| 2935 | connector C = Real;." | ||
| 2936 | input ClassInf.State state; | ||
| 2937 | input SCode.Attributes attributes; | ||
| 2938 | input SourceInfo info; | ||
| 2939 | output Boolean isValid; | ||
| 2940 | algorithm | ||
| 2941 | isValid := match(state, attributes) | ||
| 2942 | local | ||
| 2943 | Integer pv = 0, fv = 0, sv = 0; | ||
| 2944 | SCode.ConnectorType ct; | ||
| 2945 | |||
| 2946 | // Extended from bidirectional basic type, which means that it can't be | ||
| 2947 | // balanced. | ||
| 2948 | case (ClassInf.CONNECTOR(), | ||
| 2949 | SCode.ATTR(connectorType = ct, direction = Absyn.BIDIR())) | ||
| 2950 | algorithm | ||
| 2951 | // The connector might be either flow, stream or neither. | ||
| 2952 | // This will set either fv, sv, or pv to 1, and the rest to 0, and | ||
| 2953 | // checkConnectorBalance2 will then be called to provide the appropriate | ||
| 2954 | // error message (or might actually succeed if +std=2.x or 1.x). | ||
| 2955 |
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|
14 | if SCodeUtil.flowBool(ct) then |
| 2956 | fv := 1; | ||
| 2957 | elseif SCodeUtil.streamBool(ct) then | ||
| 2958 | sv := 1; | ||
| 2959 | else | ||
| 2960 | pv := 1; | ||
| 2961 | end if; | ||
| 2962 | 14 | then | |
| 2963 | checkConnectorBalance2(pv, fv, sv, state.path, info); | ||
| 2964 | |||
| 2965 | // All other cases are ok. | ||
| 2966 | else true; | ||
| 2967 | end match; | ||
| 2968 | end checkShortConnectorDef; | ||
| 2969 | |||
| 2970 | public function isReferenceInConnects | ||
| 2971 | input list<ConnectorElement> connects; | ||
| 2972 | input DAE.ComponentRef cref; | ||
| 2973 | output Boolean isThere = false; | ||
| 2974 | algorithm | ||
| 2975 |
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|
1434 | for ce in connects loop |
| 2976 |
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|
1068 | if ComponentReferenceBasics.crefPrefixOf(cref, ce.name) then |
| 2977 | isThere := true; | ||
| 2978 | 48 | return; | |
| 2979 | end if; | ||
| 2980 | end for; | ||
| 2981 | end isReferenceInConnects; | ||
| 2982 | |||
| 2983 | public function removeReferenceFromConnects | ||
| 2984 | input output list<ConnectorElement> connects; | ||
| 2985 | input DAE.ComponentRef cref; | ||
| 2986 | output Boolean wasRemoved; | ||
| 2987 | protected | ||
| 2988 | Option<ConnectorElement> oe; | ||
| 2989 | algorithm | ||
| 2990 | 12 | (connects, oe) := List.deleteMemberOnTrue(cref, connects, | |
| 2991 | removeReferenceFromConnects2); | ||
| 2992 |
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|
12 | wasRemoved := isSome(oe); |
| 2993 | end removeReferenceFromConnects; | ||
| 2994 | |||
| 2995 | protected function removeReferenceFromConnects2 | ||
| 2996 | input DAE.ComponentRef cref; | ||
| 2997 | input ConnectorElement element; | ||
| 2998 | output Boolean matches; | ||
| 2999 | algorithm | ||
| 3000 | 24 | matches := ComponentReferenceBasics.crefPrefixOf(cref, element.name); | |
| 3001 | end removeReferenceFromConnects2; | ||
| 3002 | |||
| 3003 | public function printSetsStr | ||
| 3004 | "Prints a Sets to a String." | ||
| 3005 | input Sets sets; | ||
| 3006 | output String string; | ||
| 3007 | algorithm | ||
| 3008 | ✗ | string := String(sets.setCount) + " sets:\n"; | |
| 3009 | ✗ | string := string + printSetTrieStr(sets.sets, "\t"); | |
| 3010 | ✗ | string := string + "Connected sets:\n"; | |
| 3011 | ✗ | string := string + printSetConnections(sets.connections) + "\n"; | |
| 3012 | end printSetsStr; | ||
| 3013 | |||
| 3014 | protected function printSetTrieStr | ||
| 3015 | "Prints a SetTrie to a String." | ||
| 3016 | input SetTrie trie; | ||
| 3017 | input String accumName; | ||
| 3018 | output String string; | ||
| 3019 | algorithm | ||
| 3020 | string := match trie | ||
| 3021 | local | ||
| 3022 | String name, res; | ||
| 3023 | |||
| 3024 | case SetTrieNode.SET_TRIE_LEAF() | ||
| 3025 | algorithm | ||
| 3026 | ✗ | res := accumName + "." + trie.name + ":"; | |
| 3027 | ✗ | res := res + printLeafElementStr(trie.insideElement); | |
| 3028 | ✗ | res := res + printLeafElementStr(trie.outsideElement); | |
| 3029 | ✗ | res := res + printOptFlowAssociation(trie.flowAssociation) + "\n"; | |
| 3030 | then | ||
| 3031 | res; | ||
| 3032 | |||
| 3033 | case SetTrieNode.SET_TRIE_NODE(name = "") | ||
| 3034 | ✗ | then stringAppendList(List.map1(trie.nodes, printSetTrieStr, accumName)); | |
| 3035 | |||
| 3036 | case SetTrieNode.SET_TRIE_NODE() | ||
| 3037 | algorithm | ||
| 3038 | ✗ | name := accumName + "." + trie.name; | |
| 3039 | ✗ | res := stringAppendList(List.map1(trie.nodes, printSetTrieStr, name)); | |
| 3040 | then | ||
| 3041 | res; | ||
| 3042 | |||
| 3043 | end match; | ||
| 3044 | end printSetTrieStr; | ||
| 3045 | |||
| 3046 | protected function printLeafElementStr | ||
| 3047 | "Prints an optional connector element to a String." | ||
| 3048 | input Option<ConnectorElement> element; | ||
| 3049 | output String string; | ||
| 3050 | algorithm | ||
| 3051 | string := match element | ||
| 3052 | local | ||
| 3053 | ConnectorElement e; | ||
| 3054 | String res; | ||
| 3055 | |||
| 3056 | case SOME(e as ConnectorElement.CONNECTOR_ELEMENT()) | ||
| 3057 | algorithm | ||
| 3058 | ✗ | res := " " + printFaceStr(e.face) + " "; | |
| 3059 | ✗ | res := res + printConnectorTypeStr(e.ty) + " [" + String(e.set) + "]"; | |
| 3060 | then | ||
| 3061 | res; | ||
| 3062 | |||
| 3063 | else ""; | ||
| 3064 | |||
| 3065 | end match; | ||
| 3066 | end printLeafElementStr; | ||
| 3067 | |||
| 3068 | public function printElementStr | ||
| 3069 | "Prints a connector element to a String." | ||
| 3070 | input ConnectorElement element; | ||
| 3071 | output String string; | ||
| 3072 | algorithm | ||
| 3073 | ✗ | string := ComponentReferenceBasics.printComponentRefStr(element.name) + " "; | |
| 3074 | ✗ | string := string + printFaceStr(element.face) + " "; | |
| 3075 | ✗ | string := string + printConnectorTypeStr(element.ty) + " [" + String(element.set) + "]"; | |
| 3076 | end printElementStr; | ||
| 3077 | |||
| 3078 | public function printFaceStr | ||
| 3079 | "Prints the Face to a String." | ||
| 3080 | input Face face; | ||
| 3081 | output String string; | ||
| 3082 | algorithm | ||
| 3083 | string := match face | ||
| 3084 | case Face.INSIDE() then "inside"; | ||
| 3085 | case Face.OUTSIDE() then "outside"; | ||
| 3086 | case Face.NO_FACE() then "unknown"; | ||
| 3087 | end match; | ||
| 3088 | end printFaceStr; | ||
| 3089 | |||
| 3090 | protected function printConnectorTypeStr | ||
| 3091 | "Prints the connector type to a String." | ||
| 3092 | input ConnectorType ty; | ||
| 3093 | output String string; | ||
| 3094 | algorithm | ||
| 3095 | string := match ty | ||
| 3096 | case ConnectorType.EQU() then "equ"; | ||
| 3097 | case ConnectorType.FLOW() then "flow"; | ||
| 3098 | case ConnectorType.STREAM() then "stream"; | ||
| 3099 | end match; | ||
| 3100 | end printConnectorTypeStr; | ||
| 3101 | |||
| 3102 | protected function printOptFlowAssociation | ||
| 3103 | "Print an optional flow association to a String." | ||
| 3104 | input Option<DAE.ComponentRef> cref; | ||
| 3105 | output String string; | ||
| 3106 | algorithm | ||
| 3107 | string := match cref | ||
| 3108 | local | ||
| 3109 | DAE.ComponentRef cr; | ||
| 3110 | |||
| 3111 | case NONE() | ||
| 3112 | then ""; | ||
| 3113 | |||
| 3114 | case SOME(cr) | ||
| 3115 | ✗ | then " associated flow: " + ComponentReferenceBasics.printComponentRefStr(cr); | |
| 3116 | |||
| 3117 | end match; | ||
| 3118 | end printOptFlowAssociation; | ||
| 3119 | |||
| 3120 | protected function printSetConnections | ||
| 3121 | "Prints a list of set connection to a String." | ||
| 3122 | input list<SetConnection> connections; | ||
| 3123 | output String string; | ||
| 3124 | algorithm | ||
| 3125 | ✗ | string := stringAppendList(List.map(connections, printSetConnection)); | |
| 3126 | end printSetConnections; | ||
| 3127 | |||
| 3128 | protected function printSetConnection | ||
| 3129 | "Prints a set connection to a String." | ||
| 3130 | input SetConnection connection; | ||
| 3131 | output String string; | ||
| 3132 | protected | ||
| 3133 | Integer set1, set2; | ||
| 3134 | algorithm | ||
| 3135 | ✗ | (set1, set2) := connection; | |
| 3136 | ✗ | string := "\t" + String(set1) + " connected to " + intString(set2) + "\n"; | |
| 3137 | end printSetConnection; | ||
| 3138 | |||
| 3139 | protected function printSetStr | ||
| 3140 | "Prints a Set to a String." | ||
| 3141 | input Set set; | ||
| 3142 | output String string; | ||
| 3143 | algorithm | ||
| 3144 | string := match set | ||
| 3145 | case Set.SET() | ||
| 3146 | ✗ | then stringDelimitList(List.map(set.elements, printElementStr), ", "); | |
| 3147 | |||
| 3148 | case Set.SET_POINTER() | ||
| 3149 | ✗ | then "pointer to set " + intString(set.index); | |
| 3150 | end match; | ||
| 3151 | end printSetStr; | ||
| 3152 | |||
| 3153 | protected function getAllEquCrefs | ||
| 3154 | "@author: adrpo | ||
| 3155 | return all crefs present in EQU sets" | ||
| 3156 | input list<Set> sets; | ||
| 3157 | output list<DAE.ComponentRef> crefs = {}; | ||
| 3158 | algorithm | ||
| 3159 |
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|
13970 | for set in sets loop |
| 3160 | () := match set | ||
| 3161 | case Set.SET(ty = ConnectorType.EQU()) | ||
| 3162 | algorithm | ||
| 3163 |
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|
25167 | for e in set.elements loop |
| 3164 | 18582 | crefs := e.name :: crefs; | |
| 3165 | end for; | ||
| 3166 | then | ||
| 3167 | (); | ||
| 3168 | |||
| 3169 | else (); | ||
| 3170 | end match; | ||
| 3171 | end for; | ||
| 3172 | end getAllEquCrefs; | ||
| 3173 | |||
| 3174 | protected function removeUnusedExpandableVariablesAndConnections | ||
| 3175 | "@author: adrpo | ||
| 3176 | this function will remove all unconnected/unused/unnecessary expandable variables and connections from the DAE. | ||
| 3177 | NOTE that this is not so obvious: | ||
| 3178 | 1. collect all expandable variables crefs | ||
| 3179 | 2. collect all expandable crefs used in the DAE (with the expandable variables THAT HAVE NO BINDING removed) | ||
| 3180 | 3. get all expandable crefs that are connected ONLY with expandable | ||
| 3181 | 4. substract: (3)-(2) | ||
| 3182 | 5. remove (4) from the DAE and connection sets | ||
| 3183 | 6. get all the connected potential variables | ||
| 3184 | 7. substract (2) from (1) | ||
| 3185 | 8. substract (6) from (7) | ||
| 3186 | 9. remove (8) from the DAE (5)" | ||
| 3187 | input output list<Set> sets; | ||
| 3188 | input output DAE.DAElist DAE; | ||
| 3189 | protected | ||
| 3190 | list<DAE.Element> elems; | ||
| 3191 | list<DAE.ComponentRef> expandableVars, unnecessary, usedInDAE, onlyExpandableConnected, equVars; | ||
| 3192 | DAE.DAElist dae; | ||
| 3193 | list<list<DAE.ComponentRef>> setsAsCrefs; | ||
| 3194 | algorithm | ||
| 3195 | 7 | DAE.DAE(elems) := DAE; | |
| 3196 | |||
| 3197 | // 1 - get all expandable crefs | ||
| 3198 | 7 | expandableVars := getExpandableVariablesWithNoBinding(elems); | |
| 3199 | // print("All expandable (1):\n " + stringDelimitList(List.map(expandableVars, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3200 | |||
| 3201 | // 2 - remove all expandable without binding from the dae | ||
| 3202 | 7 | dae := DAEUtil.removeVariables(DAE, expandableVars); | |
| 3203 | // 2 - get all expandable crefs used in the dae (without the expandable vars) | ||
| 3204 | 7 | usedInDAE := getAllExpandableCrefsFromDAE(dae); | |
| 3205 | // print("Used in the DAE (2):\n " + stringDelimitList(List.map(usedInDAE, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3206 | |||
| 3207 | // 3 - get all expandable crefs that are connected ONLY with expandable | ||
| 3208 | 7 | setsAsCrefs := getExpandableEquSetsAsCrefs(sets); | |
| 3209 | 7 | setsAsCrefs := mergeEquSetsAsCrefs(setsAsCrefs); | |
| 3210 | // TODO! FIXME! maybe we should do fixpoint here?? | ||
| 3211 | 7 | setsAsCrefs := mergeEquSetsAsCrefs(setsAsCrefs); | |
| 3212 | 7 | onlyExpandableConnected := getOnlyExpandableConnectedCrefs(setsAsCrefs); | |
| 3213 | // print("All expandable - expandable connected (3):\n " + stringDelimitList(List.map(onlyExpandableConnected, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3214 | |||
| 3215 | // 4 - subtract (2) from (3) | ||
| 3216 | 7 | unnecessary := List.setDifferenceOnTrue(onlyExpandableConnected, usedInDAE, ComponentReferenceBasics.crefEqualWithoutSubs); | |
| 3217 | // print("REMOVE: (3)-(2):\n " + stringDelimitList(List.map(unnecessary, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3218 | |||
| 3219 | // 5 - remove unnecessary variables form the DAE | ||
| 3220 | 7 | DAE := DAEUtil.removeVariables(DAE, unnecessary); | |
| 3221 | // 5 - remove unnecessary variables form the connection sets | ||
| 3222 | 7 | sets := removeCrefsFromSets(sets, unnecessary); | |
| 3223 | |||
| 3224 | 7 | equVars := getAllEquCrefs(sets); | |
| 3225 | // print("(6):\n " + stringDelimitList(List.map(equVars, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3226 | 7 | expandableVars := List.setDifferenceOnTrue(expandableVars, usedInDAE, ComponentReferenceBasics.crefEqualWithoutSubs); | |
| 3227 | // print("(1)-(2)=(7):\n " + stringDelimitList(List.map(equVars, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3228 | 7 | unnecessary := List.setDifferenceOnTrue(expandableVars, equVars, ComponentReferenceBasics.crefEqualWithoutSubs); | |
| 3229 | // print("REMOVE: (7)-(6):\n " + stringDelimitList(List.map(unnecessary, ComponentReferenceBasics.printComponentRefStr), "\n ") + "\n"); | ||
| 3230 | 7 | DAE := DAEUtil.removeVariables(DAE, unnecessary); | |
| 3231 | end removeUnusedExpandableVariablesAndConnections; | ||
| 3232 | |||
| 3233 | protected function isEquType | ||
| 3234 | input ConnectorType ty; | ||
| 3235 | output Boolean isEqu; | ||
| 3236 | algorithm | ||
| 3237 | isEqu := match ty | ||
| 3238 | case ConnectorType.EQU() then true; | ||
| 3239 | else false; | ||
| 3240 | end match; | ||
| 3241 | end isEquType; | ||
| 3242 | |||
| 3243 | public function topLevelInput "author: PA | ||
| 3244 | if variable is input declared at the top level of the model, | ||
| 3245 | or if it is an input in a connector instance at top level return true." | ||
| 3246 | input DAE.ComponentRef componentRef; | ||
| 3247 | input DAE.VarDirection varDirection; | ||
| 3248 | input DAE.ConnectorType connectorType; | ||
| 3249 | input DAE.VarVisibility visibility = DAE.PUBLIC(); | ||
| 3250 | output Boolean isTopLevel; | ||
| 3251 | protected | ||
| 3252 | // the new frontend only keeps top level inputs, obsoleting bogus check for DAE.CREF_IDENT | ||
| 3253 | Boolean newInst = Flags.isSet(Flags.SCODE_INST); | ||
| 3254 | algorithm | ||
| 3255 | isTopLevel := match (varDirection, componentRef, visibility, newInst) | ||
| 3256 | case ( _, _, DAE.PROTECTED(), _) then false; | ||
| 3257 | case (DAE.INPUT(), _, _, true) then true; | ||
| 3258 | case (DAE.INPUT(), DAE.CREF_IDENT(), _, _) then true; | ||
| 3259 | case (DAE.INPUT(), _, _, _) | ||
| 3260 | guard(faceEqual(componentFaceType(componentRef), Face.OUTSIDE())) | ||
| 3261 | ✗ | then topLevelConnectorType(connectorType); | |
| 3262 | else false; | ||
| 3263 | end match; | ||
| 3264 | end topLevelInput; | ||
| 3265 | |||
| 3266 | protected function topLevelConnectorType | ||
| 3267 | input DAE.ConnectorType inConnectorType; | ||
| 3268 | output Boolean isTopLevel; | ||
| 3269 | algorithm | ||
| 3270 | isTopLevel := match inConnectorType | ||
| 3271 | case DAE.FLOW() then true; | ||
| 3272 | case DAE.POTENTIAL() then true; | ||
| 3273 | else false; | ||
| 3274 | end match; | ||
| 3275 | end topLevelConnectorType; | ||
| 3276 | |||
| 3277 | public function getAllExpandableCrefsFromDAE | ||
| 3278 | "@author: adrpo | ||
| 3279 | collect all crefs from the DAE" | ||
| 3280 | input DAE.DAElist inDAE; | ||
| 3281 | output list<DAE.ComponentRef> outCrefs; | ||
| 3282 | protected | ||
| 3283 | list<DAE.Element> elts; | ||
| 3284 | algorithm | ||
| 3285 | 7 | DAE.DAE(elts) := inDAE; | |
| 3286 | 7 | (_, (_, outCrefs)) := DAEUtil.traverseDAEElementList(elts, Expression.traverseSubexpressionsHelper, (collectAllExpandableCrefsInExp, {})); | |
| 3287 | end getAllExpandableCrefsFromDAE; | ||
| 3288 | |||
| 3289 | protected function collectAllExpandableCrefsInExp "collect all crefs from expression" | ||
| 3290 | input DAE.Exp exp; | ||
| 3291 | input list<DAE.ComponentRef> acc; | ||
| 3292 | output DAE.Exp outExp; | ||
| 3293 | output list<DAE.ComponentRef> outCrefs; | ||
| 3294 | algorithm | ||
| 3295 | (outExp,outCrefs) := match exp | ||
| 3296 | local | ||
| 3297 | DAE.ComponentRef cr; | ||
| 3298 | |||
| 3299 | case DAE.CREF(componentRef = cr) | ||
| 3300 | 19781 | then (exp,List.consOnTrue(isExpandable(cr),cr,acc)); | |
| 3301 | |||
| 3302 | else (exp,acc); | ||
| 3303 | |||
| 3304 | end match; | ||
| 3305 | end collectAllExpandableCrefsInExp; | ||
| 3306 | |||
| 3307 | annotation(__OpenModelica_Interface="frontend"); | ||
| 3308 | end ConnectUtil; | ||
| 3309 |