/*---------------------------------------------------------------------------*\ ========= | \\ / F ield | OpenFOAM: The Open Source CFD Toolbox \\ / O peration | Website: https://openfoam.org \\ / A nd | Copyright (C) 2011-2025 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 "ISstream.H" #include "int.H" #include "token.H" #include "DynamicList.H" #include // * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * * // char Foam::ISstream::nextValid() { char c = 0; while (true) { // Get next non-whitespace character while (get(c) && isspace(c)) {} // Return if stream is bad - ie, previous get() failed if (bad() || isspace(c)) { break; } // Is this the start of a C/C++ comment? if (c == '/') { if (!get(c)) { // Cannot get another character - return this one return '/'; } if (c == '/') { // C++ style single-line comment - skip through past end-of-line while (get(c) && c != '\n') {} } else if (c == '*') { // Within a C-style comment while (true) { // Search for end of C-style comment - '*/' if (get(c) && c == '*') { if (get(c)) { if (c == '/') { // Matched '*/' break; } else if (c == '*') { // Check again putback(c); } } } if (!good()) { return 0; } } } else { // The '/' did not start a C/C++ comment - return it putback(c); return '/'; } } else { // A valid character - return it return c; } } return 0; } void Foam::ISstream::readWordToken(token& t) { word* wPtr = new word; if (read(*wPtr).bad()) { delete wPtr; t.setBad(); } else if (token::compound::isCompound(*wPtr)) { t = token::compound::New(*wPtr, *this).ptr(); delete wPtr; } else { t = wPtr; } } Foam::Istream& Foam::ISstream::read(token& t) { // Return the put back token if it exists if (Istream::getBack(t)) { return *this; } // Assume that the streams supplied are in working order. // Lines are counted by '\n' // Get next 'valid character': i.e. proceed through any whitespace // and/or comments until a semantically valid character is found char c = nextValid(); // Set the line number of this token to the current stream line number t.lineNumber() = lineNumber(); // Return on error if (!c) { t.setBad(); return *this; } // Analyse input starting with this character. switch (c) { // Check for punctuation first case token::END_STATEMENT : case token::BEGIN_LIST : case token::END_LIST : case token::BEGIN_SQR : case token::END_SQR : case token::BEGIN_BLOCK : case token::END_BLOCK : case token::COLON : case token::COMMA : case token::ASSIGN : case token::ADD : // NB: token::SUBTRACT handled later as the possible start of a Number case token::MULTIPLY : case token::DIVIDE : { t = token::punctuationToken(c); return *this; } // String: enclosed by double quotes. case token::BEGIN_STRING : { putback(c); string* sPtr = new string; if (read(*sPtr).bad()) { delete sPtr; t.setBad(); } else { t = sPtr; } return *this; } // Possible verbatim string or dictionary functionEntry case token::HASH : { char nextC; if (read(nextC).bad()) { // Return hash as word t = token(word(c)); return *this; } else if (nextC == token::BEGIN_BLOCK) { // Verbatim string verbatimString* vsPtr = new verbatimString; if (readVerbatim(*vsPtr).bad()) { delete vsPtr; t.setBad(); } else { t = vsPtr; } return *this; } else { // Function name beginning with a # putback(nextC); putback(c); functionName* fnPtr = new functionName; if (read(*fnPtr).bad()) { delete fnPtr; t.setBad(); } else { t = fnPtr; } return *this; } } case '$' : { // Look ahead char nextC; if (read(nextC).bad()) { // Return $ as a word t = token(word(c)); return *this; } else { putback(nextC); putback(c); variable* vPtr = new variable; if (readVariable(*vPtr).bad()) { delete vPtr; t.setBad(); } else { t = vPtr; } return *this; } } // Number: integer or floating point // // ideally match the equivalent of this regular expression // // /[-+]?([0-9]+\.?[0-9]*|\.[0-9]+)([Ee][-+]?[0-9]+)?/ // case '-' : case '.' : case '0' : case '1' : case '2' : case '3' : case '4' : case '5' : case '6' : case '7' : case '8' : case '9' : { bool asLabel = (c != '.'); buf_.clear(); buf_.append(c); // Get everything that could resemble a number and let // readScalar determine the validity while ( is_.get(c) && ( isdigit(c) || c == '+' || c == '-' || c == '.' || c == 'E' || c == 'e' ) ) { if (asLabel) { asLabel = isdigit(c); } buf_.append(c); } buf_.append('\0'); setState(is_.rdstate()); if (is_.bad()) { t.setBad(); } else { is_.putback(c); if (buf_.size() == 2 && buf_[0] == '-') { // A single '-' is punctuation t = token::punctuationToken(token::SUBTRACT); } else if (asLabel) { label labelVal = 0; uLabel uLabelVal = 0; #if WM_LABEL_SIZE == 32 int64_t int64Val = 0; uint64_t uint64Val = 0; #endif scalar scalarVal; if (Foam::read(buf_.cdata(), labelVal)) { t = labelVal; } else if (Foam::read(buf_.cdata(), uLabelVal)) { t = uLabelVal; } #if WM_LABEL_SIZE == 32 else if (Foam::read(buf_.cdata(), int64Val)) { t = int64Val; } else if (Foam::read(buf_.cdata(), uint64Val)) { t = uint64Val; } #endif else if (readScalar(buf_.cdata(), scalarVal)) { t = scalarVal; } else { t.setBad(); } } else { scalar scalarVal; if (readScalar(buf_.cdata(), scalarVal)) { t = scalarVal; } else { t.setBad(); } } } return *this; } // Should be a word (which can also be a single character) default: { putback(c); readWordToken(t); return *this; } } } Foam::Istream& Foam::ISstream::read(char& c) { c = nextValid(); return *this; } Foam::Istream& Foam::ISstream::read(word& str) { buf_.clear(); int listDepth = 0; char c; while (get(c) && word::valid(c)) { if (c == token::BEGIN_LIST) { listDepth++; } else if (c == token::END_LIST) { if (listDepth) { listDepth--; } else { break; } } buf_.append(c); } if (bad()) { // Truncate the string to the maximum error length buf_.data()[bufErrorLength] = buf_.last() = '\0'; FatalIOErrorInFunction(*this) << "problem while reading word '" << buf_.cdata() << "...' after " << buf_.size() << " characters\n" << exit(FatalIOError); return *this; } if (buf_.empty()) { FatalIOErrorInFunction(*this) << "invalid first character found : " << c << exit(FatalIOError); } // Append end string character buf_.append('\0'); str = buf_.cdata(); putback(c); return *this; } Foam::Istream& Foam::ISstream::read(string& str) { buf_.clear(); char c; if (!get(c)) { FatalIOErrorInFunction(*this) << "cannot read start of string" << exit(FatalIOError); return *this; } // Note, we could also handle single-quoted strings here (if desired) if (c != token::BEGIN_STRING) { FatalIOErrorInFunction(*this) << "Incorrect start of string character found : " << c << exit(FatalIOError); return *this; } bool escaped = false; while (get(c)) { if (c == token::END_STRING) { if (escaped) { escaped = false; buf_.remove(); // Overwrite backslash } else { // Append end string character buf_.append('\0'); str = buf_.cdata(); return *this; } } else if (c == token::NL) { if (escaped) { escaped = false; buf_.remove(); // Overwrite backslash } else { // Truncate the string to the maximum error length buf_.data()[bufErrorLength] = buf_.last() = '\0'; FatalIOErrorInFunction(*this) << "found '\\n' while reading string \"" << buf_.cdata() << "...\"" << exit(FatalIOError); return *this; } } else if (c == '\\') { escaped = !escaped; // Toggle state (retains backslashes) } else { escaped = false; } buf_.append(c); } // Truncate the string to the maximum error length buf_.data()[bufErrorLength] = buf_.last() = '\0'; FatalIOErrorInFunction(*this) << "problem while reading string \"" << buf_.cdata() << "...\"" << exit(FatalIOError); return *this; } Foam::Istream& Foam::ISstream::readVariable(string& str) { buf_.clear(); char c; if (!get(c) || c != '$') { FatalIOErrorInFunction(*this) << "invalid first character found : " << c << exit(FatalIOError); } buf_.append(c); // Read next character to see if '{' if (get(c) && c == token::BEGIN_BLOCK) { // Read, counting brackets buf_.append(c); while ( get(c) && ( c == token::BEGIN_BLOCK || c == token::END_BLOCK || variable::valid(c) ) ) { buf_.append(c); int blockCount = 1; if (c == token::BEGIN_BLOCK) { blockCount++; } else if (c == token::END_BLOCK) { if (blockCount) { blockCount--; } else { break; } } } } else { buf_.append(c); int listDepth = 0; while (get(c) && variable::valid(c)) { if (c == token::BEGIN_LIST) { listDepth++; } else if (c == token::END_LIST) { if (listDepth) { listDepth--; } else { break; } } buf_.append(c); } } if (bad()) { // Truncate the string to the maximum error length buf_.data()[bufErrorLength] = buf_.last() = '\0'; FatalIOErrorInFunction(*this) << "problem while reading string '" << buf_.cdata() << "...' after " << buf_.size() << " characters\n" << exit(FatalIOError); return *this; } if (buf_.empty()) { FatalIOErrorInFunction(*this) << "invalid first character found : " << c << exit(FatalIOError); } // Append end string character buf_.append('\0'); str = buf_.cdata(); // Note: check if we exited due to '}' or just !variable::valid. if (c != token::END_BLOCK) { putback(c); } return *this; } Foam::Istream& Foam::ISstream::readVerbatim(verbatimString& str) { buf_.clear(); char c; while (get(c)) { if (c == token::HASH) { char nextC; get(nextC); if (nextC == token::END_BLOCK) { buf_.append('\0'); str = buf_.cdata(); return *this; } else { putback(nextC); } } buf_.append(c); } // Truncate the string to the maximum error length buf_.data()[bufErrorLength] = buf_.last() = '\0'; FatalIOErrorInFunction(*this) << "problem while reading string \"" << buf_.cdata() << "...\"" << exit(FatalIOError); return *this; } Foam::ISstream& Foam::ISstream::getLine(string& s, const bool continuation) { getline(is_, s); setState(is_.rdstate()); lineNumber_++; if (continuation && s.size()) { while (s.back() == '\\') { string contLine; getline(is_, contLine); setState(is_.rdstate()); lineNumber_++; s.pop_back(); s += contLine; } } return *this; } Foam::Istream& Foam::ISstream::readDelimited ( string& str, const char begin, const char end ) { str.clear(); int listDepth = 0; char c; while (get(c)) { str += c; if (c == begin) { listDepth++; } else if (c == end) { listDepth--; if (listDepth <= 0) { break; } } } if (bad() || listDepth != 0) { FatalIOErrorInFunction(*this) << " problem while reading delimited string \n" << str.c_str() << endl << " list depth = " << listDepth << exit(FatalIOError); } return *this; } Foam::Istream& Foam::ISstream::readList(string& str) { return readDelimited(str, token::BEGIN_LIST, token::END_LIST); } Foam::Istream& Foam::ISstream::readBlock(string& str) { return readDelimited(str, token::BEGIN_BLOCK, token::END_BLOCK); } Foam::Istream& Foam::ISstream::read(int32_t& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(int64_t& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(uint32_t& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(uint64_t& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(floatScalar& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(doubleScalar& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(longDoubleScalar& val) { is_ >> val; setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::read(char* buf, std::streamsize count) { if (format() != BINARY) { FatalIOErrorInFunction(*this) << "stream format not binary" << exit(FatalIOError); } readBegin("binaryBlock"); is_.read(buf, count); readEnd("binaryBlock"); setState(is_.rdstate()); return *this; } Foam::Istream& Foam::ISstream::rewind() { stdStream().rdbuf()->pubseekpos(0); // Clear the put back token (if any) token t; Istream::getBack(t); return *this; } // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * // std::ios_base::fmtflags Foam::ISstream::flags() const { return is_.flags(); } std::ios_base::fmtflags Foam::ISstream::flags(const ios_base::fmtflags f) { return is_.flags(f); } // ************************************************************************* //