/*---------------------------------------------------------------------------*\ ========= | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox \\ / O peration | Website: https://openfoam.org \\ / A nd | Copyright (C) 2011-2026 OpenFOAM Foundation \\/ M anipulation | ------------------------------------------------------------------------------- License This file is part of OpenFOAM. OpenFOAM is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. OpenFOAM is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with OpenFOAM. If not, see . \*---------------------------------------------------------------------------*/ #include "dictionary.H" #include "dictionaryEntry.H" #include "regExp.H" #include "OSHA1stream.H" #include "printDictionary.H" // * * * * * * * * * * * * * Private Member Functions * * * * * * * * * * * // Foam::fileName Foam::dictionary::pathName ( const dictionary& parentDict, const fileName& name ) { return parentDict.currentName().size() ? parentDict.parent().isNull() ? fileName(parentDict.currentName() + '!' + name) : parentDict.currentName()/name : name; } const Foam::entry* Foam::dictionary::lookupScopedSubEntryPtr ( const word& keyword, bool recursive, bool patternMatch ) const { // Check for the dictionary boundary marker const string::size_type emarkPos = keyword.find('!'); if (emarkPos == string::npos || emarkPos == 0) { // Lookup in this dictionary string::size_type slashPos = keyword.find('/'); if (slashPos == string::npos) { // Non-scoped lookup return lookupEntryPtr(keyword, recursive, patternMatch); } else { // Extract the first word word firstWord = keyword.substr(0, slashPos); slashPos++; if (firstWord == ".") { return lookupScopedSubEntryPtr ( keyword.substr(slashPos), false, patternMatch ); } else if (firstWord == "..") { // Go to parent if (&parent_ == &dictionary::null) { FatalIOErrorInFunction(*this) << "No parent of current dictionary" << " when searching for " << keyword.substr(slashPos, keyword.size() - slashPos) << exit(FatalIOError); } return parent_.lookupScopedSubEntryPtr ( keyword.substr(slashPos), false, patternMatch ); } else { const entry* entPtr = lookupScopedSubEntryPtr ( firstWord, recursive, patternMatch ); if (entPtr && entPtr->isDict()) { return entPtr->dict().lookupScopedSubEntryPtr ( keyword.substr(slashPos, keyword.size() - slashPos), false, patternMatch ); } else { return nullptr; } } } } else { // Lookup in the dictionary specified by file name // created from the part of the keyword before the '!' fileName fName = keyword.substr(0, emarkPos); if (!fName.isAbsolute()) { fName = topDict().name().path()/fName; } if (fName == topDict().name()) { FatalIOErrorInFunction(*this) << "Attempt to re-read current dictionary " << fName << " for keyword " << keyword << exit(FatalIOError); } const word localKeyword = keyword.substr ( emarkPos + 1, keyword.size() - emarkPos - 1 ); includedDictionary dict(fName, *this); const Foam::entry* entryPtr = dict.lookupScopedEntryPtr ( localKeyword, recursive, patternMatch ); if (!entryPtr) { FatalIOErrorInFunction(dict) << "keyword " << localKeyword << " is undefined in dictionary " << dict.name() << exit(FatalIOError); } return entryPtr->clone(*this).ptr(); } } bool Foam::dictionary::findInPatterns ( const bool patternMatch, const word& Keyword, DLList::const_iterator& wcLink, DLList>::const_iterator& reLink ) const { if (patternEntries_.size()) { while (wcLink != patternEntries_.end()) { if ( patternMatch ? reLink()->match(Keyword) : wcLink()->keyword() == Keyword ) { return true; } ++reLink; ++wcLink; } } return false; } bool Foam::dictionary::haveDefaults(const dictionary& dict) { return Foam::printDictionary::haveDefaults(dict); } Foam::dictionary& Foam::dictionary::defaults(const dictionary& dict) { return Foam::printDictionary::defaults(dict); } bool Foam::dictionary::findInPatterns ( const bool patternMatch, const word& Keyword, DLList::iterator& wcLink, DLList>::iterator& reLink ) { if (patternEntries_.size()) { while (wcLink != patternEntries_.end()) { if ( patternMatch ? reLink()->match(Keyword) : wcLink()->keyword() == Keyword ) { return true; } ++reLink; ++wcLink; } } return false; } // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * // Foam::dictionary::dictionary() : parent_(dictionary::null), filePtr_(nullptr) {} Foam::dictionary::dictionary(const fileName& name) : dictionaryName(name), parent_(dictionary::null), filePtr_(nullptr) {} Foam::dictionary::dictionary ( const fileName& name, const dictionary& parentDict ) : dictionaryName(pathName(parentDict, name)), parent_(parentDict), filePtr_(nullptr) {} Foam::dictionary::dictionary ( const dictionary& parentDict, const dictionary& dict ) : dictionaryName(dict.name()), IDLList(dict, *this), parent_(parentDict), filePtr_(nullptr) { forAllIter(IDLList, *this, iter) { hashedEntries_.insert(iter().keyword(), &iter()); if (iter().keyword().isPattern()) { patternEntries_.insert(&iter()); patternRegexps_.insert ( autoPtr(new regExp(iter().keyword())) ); } } } Foam::dictionary::dictionary(const dictionary& dict) : dictionary(dictionary::null, dict) {} Foam::dictionary::dictionary(const dictionary* dictPtr) : parent_(dictionary::null), filePtr_(nullptr) { if (dictPtr) { operator=(*dictPtr); } } Foam::autoPtr Foam::dictionary::clone() const { return autoPtr(new dictionary(*this)); } // * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * * // Foam::dictionary::~dictionary() {} // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * // const Foam::dictionary& Foam::dictionary::topDict() const { const dictionary& p = parent(); if (&p != this && !p.name().empty()) { return p.topDict(); } else { return *this; } } Foam::word Foam::dictionary::topDictKeyword() const { const dictionary& p = parent(); if (&p != this && !p.name().empty()) { const word pKeyword = p.topDictKeyword(); const char pSeparator = '/'; return pKeyword == word::null ? dictName() : word(pKeyword + pSeparator + dictName()); } else { return word::null; } } const Foam::fileName& Foam::dictionary::currentName() const { if (filePtr_) { const fileName& fName = filePtr_->name(); // If this is a sub-dictionary of the current file then we want to // retain the sub-dictionary part of the name, so return the name // rather than the file name if (name().find(fName.c_str(), 0, fName.size()) != string::npos) { return name(); } // Otherwise this is the top-level or the top-level of an included // file, in which case we just want the name of the file return fName; } else { return name(); } } Foam::label Foam::dictionary::startLineNumber() const { if (size()) { return first()->startLineNumber(); } else { return -1; } } Foam::label Foam::dictionary::endLineNumber() const { if (filePtr_) { return filePtr_->lineNumber(); } else { if (size()) { return last()->endLineNumber(); } else { return -1; } } } Foam::SHA1Digest Foam::dictionary::digest() const { OSHA1stream os; // Process entries forAllConstIter(IDLList, *this, iter) { os << *iter; } return os.digest(); } Foam::tokenList Foam::dictionary::tokens() const { // Serialise dictionary into a string OStringStream os; write(os, false); IStringStream is(os.str()); // Parse string as tokens DynamicList tokens; token t; while (!is.eof() && !is.read(t).bad() && t.good()) { tokens.append(t); } return tokenList(move(tokens)); } bool Foam::dictionary::found ( const word& keyword, bool recursive, bool patternMatch ) const { if (hashedEntries_.found(keyword)) { return true; } else { if (patternMatch && patternEntries_.size()) { DLList::const_iterator wcLink = patternEntries_.begin(); DLList>::const_iterator reLink = patternRegexps_.begin(); // Find in patterns using regular expressions only if (findInPatterns(patternMatch, keyword, wcLink, reLink)) { return true; } } if (recursive && &parent_ != &dictionary::null) { return parent_.found(keyword, recursive, patternMatch); } else { return false; } } } const Foam::entry* Foam::dictionary::lookupEntryPtr ( const word& keyword, bool recursive, bool patternMatch ) const { HashTable::const_iterator iter = hashedEntries_.find(keyword); if (iter == hashedEntries_.end()) { if (patternMatch && patternEntries_.size()) { DLList::const_iterator wcLink = patternEntries_.begin(); DLList>::const_iterator reLink = patternRegexps_.begin(); // Find in patterns using regular expressions only if (findInPatterns(patternMatch, keyword, wcLink, reLink)) { return wcLink(); } } if (recursive && &parent_ != &dictionary::null) { return parent_.lookupEntryPtr(keyword, recursive, patternMatch); } else { return nullptr; } } return iter(); } Foam::entry* Foam::dictionary::lookupEntryPtr ( const word& keyword, bool recursive, bool patternMatch ) { HashTable::iterator iter = hashedEntries_.find(keyword); if (iter == hashedEntries_.end()) { if (patternMatch && patternEntries_.size()) { DLList::iterator wcLink = patternEntries_.begin(); DLList>::iterator reLink = patternRegexps_.begin(); // Find in patterns using regular expressions only if (findInPatterns(patternMatch, keyword, wcLink, reLink)) { return wcLink(); } } if (recursive && &parent_ != &dictionary::null) { return const_cast(parent_).lookupEntryPtr ( keyword, recursive, patternMatch ); } else { return nullptr; } } return iter(); } const Foam::entry* Foam::dictionary::lookupEntryPtrBackwardsCompatible ( const wordList& keywords, bool recursive, bool patternMatch ) const { const entry* result = nullptr; forAll(keywords, keywordi) { const entry* entryPtr = lookupEntryPtr(keywords[keywordi], recursive, patternMatch); if (entryPtr) { if (result) { IOWarningInFunction((*this)) << "Duplicate backwards compatible keywords \"" << result->keyword() << "\" and \"" << entryPtr->keyword() << "\" are defined in dictionary " << name() << endl << "The preferred keyword for this entry is \"" << keywords[0] << "\"" << endl; } else { result = entryPtr; } } } return result; } const Foam::entry& Foam::dictionary::lookupEntry ( const word& keyword, bool recursive, bool patternMatch ) const { const entry* entryPtr = lookupEntryPtr(keyword, recursive, patternMatch); if (entryPtr == nullptr) { FatalIOErrorInFunction(*this) << "keyword " << keyword << " is undefined in dictionary " << name() << exit(FatalIOError); } return *entryPtr; } const Foam::entry& Foam::dictionary::lookupEntryBackwardsCompatible ( const wordList& keywords, bool recursive, bool patternMatch ) const { const entry* entryPtr = lookupEntryPtrBackwardsCompatible(keywords, recursive, patternMatch); if (entryPtr == nullptr) { // Generate error message using the first keyword return lookupEntry(keywords[0], recursive, patternMatch); } else { return *entryPtr; } } Foam::ITstream& Foam::dictionary::lookup ( const word& keyword, bool recursive, bool patternMatch ) const { return lookupEntry(keyword, recursive, patternMatch).stream(); } Foam::ITstream& Foam::dictionary::lookupBackwardsCompatible ( const wordList& keywords, bool recursive, bool patternMatch ) const { return lookupEntryBackwardsCompatible ( keywords, recursive, patternMatch ).stream(); } const Foam::entry* Foam::dictionary::lookupScopedEntryPtr ( const word& keyword, bool recursive, bool patternMatch ) const { // '!' indicates the top-level directory if (keyword[0] == '!') { // Go up to top level const dictionary* dictPtr = this; while (&dictPtr->parent_ != &dictionary::null) { dictPtr = &dictPtr->parent_; } // At top. Recurse to find entries return dictPtr->lookupScopedSubEntryPtr ( keyword.substr(1, keyword.size() - 1), false, patternMatch ); } else { return lookupScopedSubEntryPtr ( keyword, recursive, patternMatch ); } } bool Foam::dictionary::isDict(const word& keyword) const { // Find non-recursive with patterns const entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr) { return entryPtr->isDict(); } else { return false; } } const Foam::dictionary* Foam::dictionary::subDictPtr(const word& keyword) const { const entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr) { return &entryPtr->dict(); } else { return nullptr; } } Foam::dictionary* Foam::dictionary::subDictPtr(const word& keyword) { entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr) { return &entryPtr->dict(); } else { return nullptr; } } const Foam::dictionary& Foam::dictionary::subDict(const word& keyword) const { const entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr == nullptr) { FatalIOErrorInFunction(*this) << "keyword " << keyword << " is undefined in dictionary " << name() << exit(FatalIOError); } return entryPtr->dict(); } Foam::dictionary& Foam::dictionary::subDict(const word& keyword) { entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr == nullptr) { FatalIOErrorInFunction(*this) << "keyword " << keyword << " is undefined in dictionary " << name() << exit(FatalIOError); } return entryPtr->dict(); } const Foam::dictionary& Foam::dictionary::subDictBackwardsCompatible ( const wordList& keywords ) const { const entry* entryPtr = lookupEntryPtrBackwardsCompatible(keywords, false, true); if (entryPtr == nullptr) { // Generate error message using the first keyword return subDict(keywords[0]); } else { return entryPtr->dict(); } } const Foam::dictionary& Foam::dictionary::subOrEmptyDict ( const word& keyword, const bool mustRead ) const { const entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr == nullptr) { if (mustRead) { FatalIOErrorInFunction(*this) << "keyword " << keyword << " is undefined in dictionary " << name() << exit(FatalIOError); } return null; } else { return entryPtr->dict(); } } const Foam::dictionary& Foam::dictionary::optionalSubDict ( const word& keyword ) const { const entry* entryPtr = lookupEntryPtr(keyword, false, true); if (entryPtr) { return entryPtr->dict(); } else { return *this; } } const Foam::dictionary& Foam::dictionary::typeDict ( const word& typeName ) const { const entry* entryPtr = lookupEntryPtr(typeName, false, true); if (!entryPtr) { entryPtr = lookupEntryPtr(typeName + "Coeffs", false, true); } if (entryPtr && entryPtr->isDict()) { return entryPtr->dict(); } else { // Generate error message using the typeName keyword return subDict(typeName); } } const Foam::dictionary& Foam::dictionary::typeOrEmptyDict ( const word& typeName ) const { const entry* entryPtr = lookupEntryPtr(typeName, false, true); if (!entryPtr) { entryPtr = lookupEntryPtr(typeName + "Coeffs", false, true); } if (entryPtr && entryPtr->isDict()) { return entryPtr->dict(); } else { return null; } } const Foam::dictionary& Foam::dictionary::optionalTypeDict ( const word& typeName ) const { const entry* entryPtr = lookupEntryPtr(typeName, false, true); if (!entryPtr) { entryPtr = lookupEntryPtr(typeName + "Coeffs", false, true); } if (entryPtr && entryPtr->isDict()) { return entryPtr->dict(); } else { return *this; } } const Foam::dictionary& Foam::dictionary::scopedDict(const word& keyword) const { if (keyword == "") { return *this; } else { const entry* entPtr = lookupScopedEntryPtr ( keyword, false, false ); if (!entPtr || !entPtr->isDict()) { FatalIOErrorInFunction(*this) << "keyword " << keyword << " is undefined in dictionary " << name() << " or is not a dictionary" << endl << "Valid keywords are " << keys() << abort(FatalIOError); } return entPtr->dict(); } } Foam::dictionary& Foam::dictionary::scopedDict(const word& keyword) { return const_cast ( const_cast(this)->scopedDict(keyword) ); } Foam::wordList Foam::dictionary::toc() const { wordList keys(size()); label nKeys = 0; forAllConstIter(IDLList, *this, iter) { keys[nKeys++] = iter().keyword(); } return keys; } Foam::wordList Foam::dictionary::sortedToc() const { return hashedEntries_.sortedToc(); } Foam::List Foam::dictionary::keys(bool patterns) const { List keys(size()); label nKeys = 0; forAllConstIter(IDLList, *this, iter) { if (iter().keyword().isPattern() ? patterns : !patterns) { keys[nKeys++] = iter().keyword(); } } keys.setSize(nKeys); return keys; } bool Foam::dictionary::add(entry* entryPtr, bool mergeEntry) { HashTable::iterator iter = hashedEntries_.find ( entryPtr->keyword() ); if (mergeEntry && iter != hashedEntries_.end()) { // Merge dictionary with dictionary if (iter()->isDict() && entryPtr->isDict()) { iter()->dict().merge(entryPtr->dict()); delete entryPtr; return true; } else { // Replace existing dictionary with entry or vice versa IDLList::replace(iter(), entryPtr); delete iter(); hashedEntries_.erase(iter); if (hashedEntries_.insert(entryPtr->keyword(), entryPtr)) { entryPtr->name() = pathName(*this, entryPtr->keyword()); if (entryPtr->keyword().isPattern()) { patternEntries_.insert(entryPtr); patternRegexps_.insert ( autoPtr(new regExp(entryPtr->keyword())) ); } return true; } else { IOWarningInFunction((*this)) << "problem replacing entry "<< entryPtr->keyword() << " in dictionary " << name() << endl; IDLList::remove(entryPtr); delete entryPtr; return false; } } } if (hashedEntries_.insert(entryPtr->keyword(), entryPtr)) { entryPtr->name() = pathName(*this, entryPtr->keyword()); IDLList::append(entryPtr); if (entryPtr->keyword().isPattern()) { patternEntries_.insert(entryPtr); patternRegexps_.insert ( autoPtr(new regExp(entryPtr->keyword())) ); } return true; } else { // If function entries are disabled allow duplicate entries if (entry::disableFunctionEntries) { entryPtr->name() = pathName(*this, entryPtr->keyword()); IDLList::append(entryPtr); return true; } else { IOWarningInFunction((*this)) << "attempt to add entry "<< entryPtr->keyword() << " which already exists in dictionary " << name() << endl; delete entryPtr; return false; } } } void Foam::dictionary::add(const entry& e, bool mergeEntry) { add(e.clone(*this).ptr(), mergeEntry); } void Foam::dictionary::add(const keyType& k, const word& w, bool overwrite) { add(new primitiveEntry(k, token(w)), overwrite); } void Foam::dictionary::add ( const keyType& k, const Foam::string& s, bool overwrite ) { add(new primitiveEntry(k, token(s)), overwrite); } void Foam::dictionary::add(const keyType& k, const label l, bool overwrite) { add(new primitiveEntry(k, token(l)), overwrite); } void Foam::dictionary::add(const keyType& k, const scalar s, bool overwrite) { add(new primitiveEntry(k, token(s)), overwrite); } void Foam::dictionary::add ( const keyType& k, const dictionary& d, bool mergeEntry ) { add(new dictionaryEntry(k, *this, d), mergeEntry); } void Foam::dictionary::set(entry* entryPtr) { entry* existingPtr = lookupEntryPtr(entryPtr->keyword(), false, true); // Clear dictionary so merge acts like overwrite if (existingPtr && existingPtr->isDict()) { existingPtr->dict().clear(); } add(entryPtr, true); } void Foam::dictionary::set(const entry& e) { set(e.clone(*this).ptr()); } void Foam::dictionary::set(const keyType& k, const dictionary& d) { set(new dictionaryEntry(k, *this, d)); } bool Foam::dictionary::remove(const word& Keyword) { HashTable::iterator iter = hashedEntries_.find(Keyword); if (iter != hashedEntries_.end()) { // Delete from patterns first DLList::iterator wcLink = patternEntries_.begin(); DLList>::iterator reLink = patternRegexps_.begin(); // Find in pattern using exact match only if (findInPatterns(false, Keyword, wcLink, reLink)) { patternEntries_.remove(wcLink); patternRegexps_.remove(reLink); } IDLList::remove(iter()); delete iter(); hashedEntries_.erase(iter); return true; } else { return false; } } void Foam::dictionary::remove(const wordList& Keywords) { forAll(Keywords, i) { remove(Keywords[i]); } } bool Foam::dictionary::changeKeyword ( const keyType& oldKeyword, const keyType& newKeyword, bool forceOverwrite ) { // No change if (oldKeyword == newKeyword) { return false; } HashTable::iterator iter = hashedEntries_.find(oldKeyword); // oldKeyword not found - do nothing if (iter == hashedEntries_.end()) { return false; } if (iter()->keyword().isPattern()) { FatalIOErrorInFunction(*this) << "Old keyword "<< oldKeyword << " is a pattern." << "Pattern replacement not yet implemented." << exit(FatalIOError); } HashTable::iterator iter2 = hashedEntries_.find(newKeyword); // newKeyword already exists if (iter2 != hashedEntries_.end()) { if (forceOverwrite) { if (iter2()->keyword().isPattern()) { // Delete from patterns first DLList::iterator wcLink = patternEntries_.begin(); DLList>::iterator reLink = patternRegexps_.begin(); // Find in patterns using exact match only if (findInPatterns(false, iter2()->keyword(), wcLink, reLink)) { patternEntries_.remove(wcLink); patternRegexps_.remove(reLink); } } IDLList::replace(iter2(), iter()); delete iter2(); hashedEntries_.erase(iter2); } else { IOWarningInFunction ( *this ) << "cannot rename keyword "<< oldKeyword << " to existing keyword " << newKeyword << " in dictionary " << name() << endl; return false; } } // Change name and HashTable, but leave DL-List untouched iter()->keyword() = newKeyword; iter()->name() = name() + '/' + string::validate(newKeyword); hashedEntries_.erase(oldKeyword); hashedEntries_.insert(newKeyword, iter()); if (newKeyword.isPattern()) { patternEntries_.insert(iter()); patternRegexps_.insert ( autoPtr(new regExp(newKeyword)) ); } return true; } bool Foam::dictionary::merge(const dictionary& dict) { // Check for assignment to self if (this == &dict) { FatalIOErrorInFunction(*this) << "attempted merge to self for dictionary " << name() << abort(FatalIOError); } bool changed = false; forAllConstIter(IDLList, dict, iter) { HashTable::iterator fnd = hashedEntries_.find(iter().keyword()); if (fnd != hashedEntries_.end()) { // Recursively merge sub-dictionaries // TODO: merge without copying if (fnd()->isDict() && iter().isDict()) { if (fnd()->dict().merge(iter().dict())) { changed = true; } } else { add(iter().clone(*this).ptr(), true); changed = true; } } else { // Not found - just add add(iter().clone(*this).ptr()); changed = true; } } return changed; } void Foam::dictionary::clear() { IDLList::clear(); hashedEntries_.clear(); patternEntries_.clear(); patternRegexps_.clear(); } void Foam::dictionary::transfer(dictionary& dict) { // Changing parents probably doesn't make much sense, // but what about the names? name() = dict.name(); IDLList::transfer(dict); hashedEntries_.transfer(dict.hashedEntries_); patternEntries_.transfer(dict.patternEntries_); patternRegexps_.transfer(dict.patternRegexps_); } // * * * * * * * * * * * * * * * Member Operators * * * * * * * * * * * * * // Foam::ITstream& Foam::dictionary::operator[](const word& keyword) const { return lookup(keyword); } void Foam::dictionary::operator=(const dictionary& rhs) { // Check for assignment to self if (this == &rhs) { FatalIOErrorInFunction(*this) << "attempted assignment to self for dictionary " << name() << abort(FatalIOError); } name() = rhs.name(); clear(); // Create clones of the entries in the given dictionary // resetting the parentDict to this dictionary forAllConstIter(IDLList, rhs, iter) { add(iter().clone(*this).ptr()); } } void Foam::dictionary::operator+=(const dictionary& rhs) { // Check for assignment to self if (this == &rhs) { FatalIOErrorInFunction(*this) << "attempted addition assignment to self for dictionary " << name() << abort(FatalIOError); } forAllConstIter(IDLList, rhs, iter) { add(iter().clone(*this).ptr()); } } void Foam::dictionary::operator|=(const dictionary& rhs) { // Check for assignment to self if (this == &rhs) { FatalIOErrorInFunction(*this) << "attempted assignment to self for dictionary " << name() << abort(FatalIOError); } forAllConstIter(IDLList, rhs, iter) { if (!found(iter().keyword())) { add(iter().clone(*this).ptr()); } } } void Foam::dictionary::operator<<=(const dictionary& rhs) { // Check for assignment to self if (this == &rhs) { FatalIOErrorInFunction(*this) << "attempted assignment to self for dictionary " << name() << abort(FatalIOError); } forAllConstIter(IDLList, rhs, iter) { set(iter().clone(*this).ptr()); } } /* * * * * * * * * * * * * * * * Global operators * * * * * * * * * * * * * */ Foam::dictionary Foam::operator+ ( const dictionary& dict1, const dictionary& dict2 ) { dictionary sum(dict1); sum += dict2; return sum; } Foam::dictionary Foam::operator| ( const dictionary& dict1, const dictionary& dict2 ) { dictionary sum(dict1); sum |= dict2; return sum; } // * * * * * * * * * * * * * * * Global Functions * * * * * * * * * * * * * // void Foam::dictArgList ( const Tuple2& argStringLine, word& funcName, List>& args, List>& namedArgs ) { const string& argString = argStringLine.first(); label lineNumber = argStringLine.second(); funcName = argString; int argLevel = 0; bool namedArg = false; word argName; word::size_type start = 0; word::size_type i = 0; for ( word::const_iterator iter = argString.begin(); iter != argString.end(); ++iter ) { char c = *iter; if (c == '\n') { lineNumber++; } else if (c == '(') { if (argLevel == 0) { funcName = argString(start, i - start); start = i + 1; } ++argLevel; } else if (c == ',' || c == ')') { if (argLevel == 1) { if (namedArg) { namedArgs.append ( Tuple3 ( argName, argString(start, i - start), lineNumber ) ); namedArg = false; } else { args.append ( Tuple2 ( wordRe(argString(start, i - start)), lineNumber ) ); } start = i + 1; } if (c == ')') { if (argLevel == 1) { break; } --argLevel; } } else if (c == '=') { argName = argString(start, i - start); string::stripInvalid(argName); start = i + 1; namedArg = true; } i++; } // Strip whitespace from the function name string::stripInvalid(funcName); } void Foam::dictArgList ( const Tuple2& argStringLine, List>& args, List>& namedArgs ) { const string& argString = argStringLine.first(); label lineNumber = argStringLine.second(); int argLevel = 0; bool namedArg = false; word argName; word::size_type start = 0; word::size_type i = 0; for ( word::const_iterator iter = argString.begin(); iter != argString.end(); ++iter ) { char c = *iter; if (c == '\n') { lineNumber++; } else if (c == '(') { ++argLevel; } else if (c == ',' || std::next(iter) == argString.end()) { if (std::next(iter) == argString.end()) { if (c == ')') { --argLevel; } ++i; } if (argLevel == 0) { if (namedArg) { namedArgs.append ( Tuple3 ( argName, argString(start, i - start), lineNumber ) ); namedArg = false; } else { args.append ( Tuple2 ( wordRe(argString(start, i - start)), lineNumber ) ); } start = i+1; } } else if (c == '=') { argName = argString(start, i - start); string::stripInvalid(argName); start = i+1; namedArg = true; } else if (c == ')') { --argLevel; } ++i; } } Foam::Pair Foam::dictAndKeyword(const word& scopedName) { const string::size_type i = scopedName.find_last_of("/!"); if (i != string::npos) { return Pair ( scopedName.substr(0, i), scopedName.substr(i + 1, string::npos) ); } else { return Pair("", scopedName); } } // ************************************************************************* //