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https://git.lyx.org/repos/lyx.git
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6deb2b7680
- support for \textdoublevertline, \textvertline, \textglobfall - support \!o and \!b and \!d and \!g and \!G and \!j - support and \*k and \*r and \*t and \*w - register the package "tipa" if \textipa is detected in an equation - add a \textipa equation to the testfile (I failed to implement support for the TIPA character "\t*{ }" and the command "\=*".)
262 lines
5.5 KiB
C++
262 lines
5.5 KiB
C++
/**
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* \file math.cpp
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* This file is part of LyX, the document processor.
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* Licence details can be found in the file COPYING.
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*
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* \author André Pönitz
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*
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* Full author contact details are available in file CREDITS.
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*/
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// {[(
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#include <config.h>
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#include "Preamble.h"
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#include "tex2lyx.h"
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#include <iostream>
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using namespace std;
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namespace lyx {
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bool is_math_env(string const & name)
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{
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return known_math_environments.find(name) != known_math_environments.end();
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}
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bool is_display_math_env(string const & name)
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{
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CommandMap::const_iterator it = known_math_environments.find(name);
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if (it != known_math_environments.end())
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if (!it->second.empty())
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return it->second.back() == displaymath;
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return false;
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}
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void parse_math(Parser & p, ostream & os, unsigned flags, const mode_type mode)
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{
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while (p.good()) {
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Token const & t = p.get_token();
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#ifdef FILEDEBUG
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cerr << "t: " << t << " flags: " << flags << "\n";
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#endif
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if (flags & FLAG_ITEM) {
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if (t.cat() == catSpace)
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continue;
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flags &= ~FLAG_ITEM;
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if (t.cat() == catBegin) {
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// skip the brace and collect everything to the next matching
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// closing brace
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flags |= FLAG_BRACE_LAST;
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continue;
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}
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// handle only this single token, leave the loop if done
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flags |= FLAG_LEAVE;
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}
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//
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// cat codes
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//
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if (t.cat() == catMath) {
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if (mode == MATHTEXT_MODE) {
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// we are inside some text mode thing, so opening new math is allowed
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Token const & n = p.get_token();
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if (n.cat() == catMath) {
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// TeX's $$...$$ syntax for displayed math
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os << "\\[";
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parse_math(p, os, FLAG_SIMPLE, MATH_MODE);
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os << "\\]";
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p.get_token(); // skip the second '$' token
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} else {
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// simple $...$ stuff
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p.putback();
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os << '$';
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parse_math(p, os, FLAG_SIMPLE, MATH_MODE);
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os << '$';
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}
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}
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else if (flags & FLAG_SIMPLE) {
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// this is the end of the formula
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return;
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}
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else {
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cerr << "\nmode: " << mode << endl;
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p.error("something strange in the parser\n");
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break;
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}
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}
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else if (t.cat() == catLetter ||
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t.cat() == catSuper ||
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t.cat() == catSub ||
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t.cat() == catOther ||
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t.cat() == catAlign ||
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t.cat() == catActive ||
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t.cat() == catParameter)
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os << t.cs();
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else if (t.cat() == catBegin) {
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os << '{';
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parse_math(p, os, FLAG_BRACE_LAST, mode);
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os << '}';
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}
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else if (t.cat() == catEnd) {
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if (flags & FLAG_BRACE_LAST)
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return;
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os << "unexpected '}' in math\n";
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}
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else if (t.cat() == catComment) {
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if (!t.cs().empty())
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os << t.asInput();
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else
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// "%\n" combination
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p.skip_spaces();
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}
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//
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// control sequences
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//
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else if (t.cs() == "(") {
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os << "\\(";
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parse_math(p, os, FLAG_SIMPLE2, MATH_MODE);
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os << "\\)";
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}
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else if (t.cs() == "[") {
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// special handling of a few common SW user quirks
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p.skip_spaces();
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//if (p.next_token().cs() ==
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os << "\\[";
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parse_math(p, os, FLAG_EQUATION, MATH_MODE);
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os << "\\]";
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}
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else if (t.cs() == "protect")
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// ignore \\protect, will hopefully be re-added during output
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;
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else if (t.cs() == "begin") {
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string const name = p.getArg('{', '}');
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active_environments.push_back(name);
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os << "\\begin{" << name << "}";
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if (name == "tabular")
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parse_math(p, os, FLAG_END, MATHTEXT_MODE);
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else
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parse_math(p, os, FLAG_END, mode);
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os << "\\end{" << name << "}";
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active_environments.pop_back();
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}
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else if (t.cs() == "end") {
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if (flags & FLAG_END) {
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// eat environment name
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string const name = p.getArg('{', '}');
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if (name != active_environment())
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p.error("\\end{" + name + "} does not match \\begin{"
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+ active_environment() + "}");
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return;
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}
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p.error("found 'end' unexpectedly");
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}
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else if (t.cs() == ")") {
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if (flags & FLAG_SIMPLE2)
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return;
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p.error("found '\\)' unexpectedly");
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}
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else if (t.cs() == "]") {
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if (flags & FLAG_EQUATION)
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return;
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p.error("found '\\]' unexpectedly");
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}
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else if (t.cs() == "textrm" || t.cs() == "textsf" || t.cs() == "textbf"
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|| t.cs() == "texttt" || t.cs() == "textsc"
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|| t.cs() == "text" || t.cs() == "intertext") {
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os << '\\' << t.cs() << '{';
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parse_math(p, os, FLAG_ITEM, MATHTEXT_MODE);
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os << '}';
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}
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else if (t.cs() == "tag") {
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os << '\\' << t.cs();
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if (p.next_token().asInput() == "*") {
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p.get_token();
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os << '*';
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}
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os << '{';
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parse_math(p, os, FLAG_ITEM, MATHTEXT_MODE);
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os << '}';
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}
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else if (t.cs() == "mbox" || t.cs() == "fbox") {
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os << "\\" << t.cs() << '{';
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parse_math(p, os, FLAG_ITEM, MATHTEXT_MODE);
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os << '}';
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}
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else if (t.cs() == "\"") {
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string const name = p.verbatim_item();
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if (name == "a") os << '\xe4';
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else if (name == "o") os << '\xf6';
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else if (name == "u") os << '\xfc';
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else if (name == "A") os << '\xc4';
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else if (name == "O") os << '\xd6';
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else if (name == "U") os << '\xdc';
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else os << "\"{" << name << "}";
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}
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else if (t.cs() == "ss")
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os << "\xdf";
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else if (t.cs() == "cr") {
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// lyx can't handle \\cr
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cerr << "Warning: Converting TeX '\\cr' to LaTeX '\\\\'."
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<< endl;
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os << "\\\\";
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}
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else if (t.cs() == "vref" || t.cs() == "vpageref") {
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os << t.asInput();
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preamble.registerAutomaticallyLoadedPackage("varioref");
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}
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else if (t.cs() == "textipa") {
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os << t.asInput();
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preamble.registerAutomaticallyLoadedPackage("tipa");
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}
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else
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os << t.asInput();
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if (flags & FLAG_LEAVE) {
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flags &= ~FLAG_LEAVE;
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break;
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}
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}
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}
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// }])
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} // namespace lyx
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