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Fix parsing of functions and arguments for MathML.
The enum is overkill for now, but will be useful if anyone decides really to return to this stuff. It's apparent that there are some powerful tools here---like the ability to pipe expressions through Mathematica. git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@31989 a592a061-630c-0410-9148-cb99ea01b6c8
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@ -19,6 +19,7 @@
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#include "support/debug.h"
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#include "support/gettext.h"
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#include "support/lassert.h"
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#include "support/lstrings.h"
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#include "support/textutils.h"
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@ -90,16 +91,8 @@ void InsetMathString::octave(OctaveStream & os) const
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void InsetMathString::mathmlize(MathStream & os) const
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{
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/*
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if (code_ == LM_TC_VAR)
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os << "<mi> " << str_ << " </mi>";
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else if (code_ == LM_TC_CONST)
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os << "<mn> " << str_ << " </mn>";
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else if (code_ == LM_TC_RM || code_ == LM_TC_TEXTRM)
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os << "<mtext> " << str_ << " </mtext>";
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else
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*/
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os << str_;
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// useless, no doubt, but we should not be here
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LASSERT(false, /* */);
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}
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@ -50,6 +50,17 @@ using namespace lyx::support;
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namespace lyx {
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namespace {
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enum ExternalMath {
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MAPLE,
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MAXIMA,
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MATHEMATICA,
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MATHML,
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OCTAVE
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};
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static char const * function_names[] = {
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"arccos", "arcsin", "arctan", "arg", "bmod",
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"cos", "cosh", "cot", "coth", "csc", "deg",
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@ -96,7 +107,8 @@ bool extractScript(MathData & ar,
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// try to extract an "argument" to some function.
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// returns position behind the argument
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MathData::iterator extractArgument(MathData & ar,
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MathData::iterator pos, MathData::iterator last, bool function = false)
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MathData::iterator pos, MathData::iterator last,
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ExternalMath kind, bool function = false)
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{
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// nothing to get here
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if (pos == last)
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@ -105,7 +117,7 @@ MathData::iterator extractArgument(MathData & ar,
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// something delimited _is_ an argument
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if ((*pos)->asDelimInset()) {
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// leave out delimiters if this is a function argument
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if (function) {
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if (function && kind != MATHML) {
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MathData const & arg = (*pos)->asDelimInset()->cell(0);
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MathData::const_iterator cur = arg.begin();
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MathData::const_iterator end = arg.end();
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@ -247,23 +259,6 @@ bool extractFunctionName(MathAtom const & at, docstring & str)
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}
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// convert this inset somehow to a number
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bool extractNumber(MathData const & ar, int & i)
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{
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idocstringstream is(charSequence(ar.begin(), ar.end()));
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is >> i;
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return is;
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}
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bool extractNumber(MathData const & ar, double & d)
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{
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idocstringstream is(charSequence(ar.begin(), ar.end()));
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is >> d;
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return is;
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}
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bool testString(MathAtom const & at, docstring const & str)
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{
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docstring s;
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@ -525,7 +520,7 @@ void extractDelims(MathData & ar)
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// replace 'f' '(...)' and 'f' '^n' '(...)' sequences by a real InsetMathExFunc
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// assume 'extractDelims' ran before
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void extractFunctions(MathData & ar)
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void extractFunctions(MathData & ar, ExternalMath kind)
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{
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// we need at least two items...
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if (ar.size() < 2)
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@ -566,7 +561,8 @@ void extractFunctions(MathData & ar)
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auto_ptr<InsetMathExFunc> p(new InsetMathExFunc(buf, name));
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// jt points to the "argument". Get hold of this.
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MathData::iterator st = extractArgument(p->cell(0), jt, ar.end(), true);
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MathData::iterator st =
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extractArgument(p->cell(0), jt, ar.end(), kind, true);
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// replace the function name by a real function inset
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*it = MathAtom(p.release());
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@ -622,7 +618,7 @@ bool testIntDiff(MathAtom const & at)
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// replace '\int' ['_^'] x 'd''x'(...)' sequences by a real InsetMathExInt
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// assume 'extractDelims' ran before
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void extractIntegrals(MathData & ar)
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void extractIntegrals(MathData & ar, ExternalMath kind)
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{
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// we need at least three items...
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if (ar.size() < 3)
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@ -657,7 +653,7 @@ void extractIntegrals(MathData & ar)
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p->cell(0) = MathData(buf, it + 1, jt);
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// use the "thing" behind the 'd' as differential
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MathData::iterator tt = extractArgument(p->cell(1), jt + 1, ar.end());
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MathData::iterator tt = extractArgument(p->cell(1), jt + 1, ar.end(), kind);
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// remove used parts
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ar.erase(it + 1, tt);
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@ -935,99 +931,26 @@ void extractLims(MathData & ar)
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// combine searches
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//
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void extractStructure(MathData & ar)
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void extractStructure(MathData & ar, ExternalMath kind)
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{
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//lyxerr << "\nStructure from: " << ar << endl;
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splitScripts(ar);
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extractDelims(ar);
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extractIntegrals(ar);
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extractIntegrals(ar, kind);
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extractSums(ar);
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extractNumbers(ar);
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extractMatrices(ar);
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extractFunctions(ar);
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extractFunctions(ar, kind);
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extractDets(ar);
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extractDiff(ar);
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extractExps(ar);
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extractLims(ar);
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extractStrings(ar);
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if (kind != MATHML)
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extractStrings(ar);
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//lyxerr << "\nStructure to: " << ar << endl;
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}
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void write(MathData const & dat, WriteStream & wi)
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{
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MathData ar = dat;
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extractStrings(ar);
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wi.firstitem() = true;
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it) {
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(*it)->write(wi);
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wi.firstitem() = false;
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}
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}
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void normalize(MathData const & ar, NormalStream & os)
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{
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->normalize(os);
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}
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void octave(MathData const & dat, OctaveStream & os)
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{
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MathData ar = dat;
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extractStructure(ar);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->octave(os);
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}
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void maple(MathData const & dat, MapleStream & os)
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{
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MathData ar = dat;
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extractStructure(ar);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->maple(os);
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}
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void maxima(MathData const & dat, MaximaStream & os)
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{
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MathData ar = dat;
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extractStructure(ar);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->maxima(os);
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}
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void mathematica(MathData const & dat, MathematicaStream & os)
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{
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MathData ar = dat;
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extractStructure(ar);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->mathematica(os);
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}
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void mathmlize(MathData const & dat, MathStream & os)
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{
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MathData ar = dat;
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extractStructure(ar);
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if (ar.size() == 0)
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os << "<mrow/>";
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else if (ar.size() == 1)
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os << ar.front();
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else {
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os << MTag("mrow");
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->mathmlize(os);
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os << ETag("mrow");
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}
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}
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namespace {
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string captureOutput(string const & cmd, string const & data)
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@ -1417,6 +1340,95 @@ namespace {
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}
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} // anon namespace
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void write(MathData const & dat, WriteStream & wi)
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{
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MathData ar = dat;
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extractStrings(ar);
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wi.firstitem() = true;
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it) {
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(*it)->write(wi);
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wi.firstitem() = false;
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}
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}
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void normalize(MathData const & ar, NormalStream & os)
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{
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->normalize(os);
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}
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void octave(MathData const & dat, OctaveStream & os)
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{
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MathData ar = dat;
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extractStructure(ar, OCTAVE);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->octave(os);
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}
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void maple(MathData const & dat, MapleStream & os)
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{
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MathData ar = dat;
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extractStructure(ar, MAPLE);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->maple(os);
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}
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void maxima(MathData const & dat, MaximaStream & os)
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{
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MathData ar = dat;
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extractStructure(ar, MAXIMA);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->maxima(os);
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}
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void mathematica(MathData const & dat, MathematicaStream & os)
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{
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MathData ar = dat;
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extractStructure(ar, MATHEMATICA);
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->mathematica(os);
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}
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void mathmlize(MathData const & dat, MathStream & os)
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{
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MathData ar = dat;
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extractStructure(ar, MATHML);
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if (ar.size() == 0)
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os << "<mrow/>";
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else if (ar.size() == 1)
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os << ar.front();
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else {
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os << MTag("mrow");
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for (MathData::const_iterator it = ar.begin(); it != ar.end(); ++it)
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(*it)->mathmlize(os);
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os << ETag("mrow");
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}
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}
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// convert this inset somehow to a number
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bool extractNumber(MathData const & ar, int & i)
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{
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idocstringstream is(charSequence(ar.begin(), ar.end()));
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is >> i;
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return is;
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}
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bool extractNumber(MathData const & ar, double & d)
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{
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idocstringstream is(charSequence(ar.begin(), ar.end()));
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is >> d;
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return is;
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}
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MathData pipeThroughExtern(string const & lang, docstring const & extra,
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MathData const & ar)
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