mirror of
https://git.lyx.org/repos/lyx.git
synced 2024-11-27 03:36:39 +00:00
lots of small stuff
git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@6826 a592a061-630c-0410-9148-cb99ea01b6c8
This commit is contained in:
parent
18b2115471
commit
4864347591
@ -158,7 +158,7 @@ char const * known_math_envs[] = { "equation", "equation*",
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"eqnarray", "eqnarray*", "align", "align*", 0};
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"eqnarray", "eqnarray*", "align", "align*", 0};
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char const * known_latex_commands[] = { "ref", "cite", "label", "index",
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char const * known_latex_commands[] = { "ref", "cite", "label", "index",
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"printindex", "pageref", 0 };
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"printindex", "pageref", "url", 0 };
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// LaTeX names for quotes
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// LaTeX names for quotes
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char const * known_quotes[] = { "glqq", "grqq", "quotedblbase",
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char const * known_quotes[] = { "glqq", "grqq", "quotedblbase",
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@ -229,7 +229,7 @@ string const trim(string const & a, char const * p = " \t\n\r")
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void split(string const & s, vector<string> & result, char delim = ',')
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void split(string const & s, vector<string> & result, char delim = ',')
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{
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{
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//cerr << "split 1\n";
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//cerr << "split 1: '" << s << "'\n";
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istringstream is(s);
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istringstream is(s);
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string t;
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string t;
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while (getline(is, t, delim))
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while (getline(is, t, delim))
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@ -257,7 +257,7 @@ map<string, string> split_map(string const & s)
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string join(vector<string> const & input, char const * delim)
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string join(vector<string> const & input, char const * delim)
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{
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{
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ostringstream os;
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ostringstream os;
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for (size_t i = 0; i != input.size(); ++i) {
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for (size_t i = 0; i < input.size(); ++i) {
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if (i)
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if (i)
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os << delim;
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os << delim;
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os << input[i];
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os << input[i];
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@ -472,6 +472,7 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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vector<RowInfo> rowinfo(lines.size());
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vector<RowInfo> rowinfo(lines.size());
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// split into rows
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// split into rows
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//cerr << "// split into rows\n";
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for (size_t row = 0; row < rowinfo.size(); ++row) {
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for (size_t row = 0; row < rowinfo.size(); ++row) {
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// init row
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// init row
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@ -485,11 +486,12 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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// handle horizontal line fragments
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// handle horizontal line fragments
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if (dummy.size() != 3) {
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if (dummy.size() != 3) {
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//cerr << "unexpected dummy size: " << dummy.size()
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if (dummy.size() != 1)
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// << " content: " << lines[row] << "\n";
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cerr << "unexpected dummy size: " << dummy.size()
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<< " content: " << lines[row] << "\n";
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dummy.resize(3);
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dummy.resize(3);
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}
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}
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lines[row] = dummy[1];
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lines.at(row) = dummy.at(1);
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//cerr << "line: " << row << " above 0: " << dummy[0] << "\n";
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//cerr << "line: " << row << " above 0: " << dummy[0] << "\n";
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//cerr << "line: " << row << " below 2: " << dummy[2] << "\n";
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//cerr << "line: " << row << " below 2: " << dummy[2] << "\n";
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@ -497,7 +499,7 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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for (int i = 0; i <= 2; i += 2) {
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for (int i = 0; i <= 2; i += 2) {
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//cerr << " reading from line string '" << dummy[i] << "'\n";
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//cerr << " reading from line string '" << dummy[i] << "'\n";
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Parser p1(dummy[i]);
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Parser p1(dummy.at(i));
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while (p1.good()) {
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while (p1.good()) {
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Token t = p1.getToken();
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Token t = p1.getToken();
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//cerr << "read token: " << t << "\n";
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//cerr << "read token: " << t << "\n";
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@ -505,24 +507,25 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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if (i == 0) {
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if (i == 0) {
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rowinfo[row].topline = true;
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rowinfo[row].topline = true;
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for (size_t c = 0; c < colinfo.size(); ++c)
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for (size_t c = 0; c < colinfo.size(); ++c)
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cellinfos[c].topline = true;
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cellinfos.at(c).topline = true;
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} else {
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} else {
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rowinfo[row].bottomline = true;
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rowinfo[row].bottomline = true;
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for (size_t c = 0; c < colinfo.size(); ++c)
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for (size_t c = 0; c < colinfo.size(); ++c)
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cellinfos[c].bottomline = true;
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cellinfos.at(c).bottomline = true;
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}
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}
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} else if (t.cs() == "cline") {
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} else if (t.cs() == "cline") {
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string arg = p1.verbatimItem();
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string arg = p1.verbatimItem();
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//cerr << "read cline arg: '" << arg << "'\n";
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//cerr << "read cline arg: '" << arg << "'\n";
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vector<string> t;
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vector<string> t;
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split(arg, t, '-');
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split(arg, t, '-');
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size_t from = string2int(t[0]);
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t.resize(2);
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size_t to = string2int(t[1]);
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size_t from = string2int(t.at(0));
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size_t to = string2int(t.at(1));
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for (size_t col = from; col < to; ++col) {
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for (size_t col = from; col < to; ++col) {
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if (i == 0)
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if (i == 0)
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cellinfos[col].topline = true;
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cellinfos.at(col).topline = true;
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else
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else
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cellinfos[col].bottomline = true;
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cellinfos.at(col).bottomline = true;
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}
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}
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} else {
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} else {
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cerr << "unexpected line token: " << t << endl;
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cerr << "unexpected line token: " << t << endl;
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@ -533,12 +536,12 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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// split into cells
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// split into cells
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vector<string> cells;
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vector<string> cells;
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split(lines[row], cells, TAB);
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split(lines[row], cells, TAB);
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for (size_t col = 0, cell = 0; cell < cells.size(); ++col, ++cell) {
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for (size_t col = 0, cell = 0; cell < cells.size() && col < colinfo.size(); ++col, ++cell) {
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//cerr << "cell content: " << cells[col] << "\n";
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//cerr << "cell content: " << cells.at(cell) << "\n";
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Parser p(cells[cell]);
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Parser p(cells.at(cell));
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p.skipSpaces();
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p.skipSpaces();
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//cerr << "handling cell: " << p.nextToken().cs() << " '" <<
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//cerr << "handling cell: " << p.nextToken().cs() << " '" <<
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//cells[cell] << "'\n";
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//cells.at(cell) << "'\n";
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if (p.nextToken().cs() == "multicolumn") {
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if (p.nextToken().cs() == "multicolumn") {
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// how many cells?
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// how many cells?
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p.getToken();
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p.getToken();
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@ -547,7 +550,7 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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// special cell properties alignment
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// special cell properties alignment
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vector<ColInfo> t;
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vector<ColInfo> t;
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bool leftline = handle_colalign(p, t);
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bool leftline = handle_colalign(p, t);
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CellInfo & ci = cellinfos[col];
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CellInfo & ci = cellinfos.at(col);
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ci.multi = 1;
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ci.multi = 1;
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ci.align = t.front().align;
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ci.align = t.front().align;
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ci.content = parse(p, FLAG_ITEM, mode, false);
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ci.content = parse(p, FLAG_ITEM, mode, false);
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@ -555,46 +558,50 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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ci.rightline = t.front().rightline;
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ci.rightline = t.front().rightline;
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// add dummy cells for multicol
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// add dummy cells for multicol
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for (size_t i = 0; i < ncells - 1; ++i) {
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for (size_t i = 0; i < ncells - 1 && col < colinfo.size(); ++i) {
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++col;
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++col;
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cellinfos[col].multi = 2;
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cellinfos.at(col).multi = 2;
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cellinfos[col].align = "center";
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cellinfos.at(col).align = "center";
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}
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}
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} else {
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} else {
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cellinfos[col].content = parse(p, FLAG_ITEM, mode, false);
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cellinfos.at(col).content = parse(p, FLAG_ITEM, mode, false);
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}
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}
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}
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}
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cellinfo.push_back(cellinfos);
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cellinfo.push_back(cellinfos);
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//cerr << "// handle almost empty last row what we have\n";
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// handle almost empty last row
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// handle almost empty last row
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if (row && lines[row].empty() && row + 1 == rowinfo.size()) {
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if (row && lines.at(row).empty() && row + 1 == rowinfo.size()) {
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//cerr << "remove empty last line\n";
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//cerr << "remove empty last line\n";
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if (rowinfo[row].topline);
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if (rowinfo.at(row).topline);
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rowinfo[row - 1].bottomline = true;
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rowinfo.at(row - 1).bottomline = true;
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for (size_t c = 0; c < colinfo.size(); ++c)
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for (size_t c = 0; c < colinfo.size(); ++c)
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if (cellinfo[row][c].topline)
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if (cellinfo.at(row).at(c).topline)
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cellinfo[row - 1][c].bottomline = true;
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cellinfo.at(row - 1).at(c).bottomline = true;
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rowinfo.pop_back();
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rowinfo.pop_back();
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}
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}
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}
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}
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//cerr << "// output what we have\n";
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// output what we have
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// output what we have
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os << "<lyxtabular version=\"3\" rows=\"" << rowinfo.size()
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os << "<lyxtabular version=\"3\" rows=\"" << rowinfo.size()
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<< "\" columns=\"" << colinfo.size() << "\">\n"
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<< "\" columns=\"" << colinfo.size() << "\">\n"
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<< "<features>\n";
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<< "<features>\n";
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//cerr << "// after header\n";
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for (size_t col = 0; col < colinfo.size(); ++col) {
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for (size_t col = 0; col < colinfo.size(); ++col) {
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os << "<column alignment=\"" << colinfo[col].align << "\"";
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os << "<column alignment=\"" << colinfo.at(col).align << "\"";
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if (colinfo[col].rightline)
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if (colinfo.at(col).rightline)
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os << " rightline=\"true\"";
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os << " rightline=\"true\"";
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if (col == 0 && leftline)
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if (col == 0 && leftline)
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os << " leftline=\"true\"";
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os << " leftline=\"true\"";
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os << " valignment=\"top\"";
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os << " valignment=\"top\"";
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os << " width=\"" << colinfo[col].width << "\"";
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os << " width=\"" << colinfo.at(col).width << "\"";
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os << ">\n";
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os << ">\n";
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}
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}
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//cerr << "// after cols\n";
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for (size_t row = 0; row < rowinfo.size(); ++row) {
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for (size_t row = 0; row < rowinfo.size(); ++row) {
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os << "<row";
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os << "<row";
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@ -629,7 +636,6 @@ void handle_tabular(Parser & p, ostream & os, mode_type mode)
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os << "</row>\n";
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os << "</row>\n";
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}
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}
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os << "</lyxtabular>\n";
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os << "</lyxtabular>\n";
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end_inset(os);
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end_inset(os);
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}
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}
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@ -922,6 +928,10 @@ bool outer)
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end_inset(os);
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end_inset(os);
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}
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}
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else if (mode == TABLE_MODE) {
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os << '$';
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}
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else if (flags & FLAG_SIMPLE) {
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else if (flags & FLAG_SIMPLE) {
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// this is the end of the formula
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// this is the end of the formula
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return;
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return;
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@ -1088,7 +1098,7 @@ bool outer)
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end_inset(os);
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end_inset(os);
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}
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}
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else if (t.cs() == "[") {
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else if (t.cs() == "[" && mode == TEXT_MODE) {
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begin_inset(os, "Formula");
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begin_inset(os, "Formula");
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os << " \\[";
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os << " \\[";
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parse(p, os, FLAG_EQUATION, MATH_MODE, outer);
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parse(p, os, FLAG_EQUATION, MATH_MODE, outer);
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@ -1131,6 +1141,10 @@ bool outer)
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<< "\\layout Standard\n";
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<< "\\layout Standard\n";
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parse(p, os, FLAG_END, mode, outer);
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parse(p, os, FLAG_END, mode, outer);
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end_inset(os);
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end_inset(os);
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} else if (name == "lyxlist") {
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p.verbatimItem(); // swallow next arg
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parse(p, os, FLAG_END, mode, outer);
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os << "\n\\layout Bibliography\n\n";
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} else if (name == "thebibliography") {
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} else if (name == "thebibliography") {
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p.verbatimItem(); // swallow next arg
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p.verbatimItem(); // swallow next arg
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parse(p, os, FLAG_END, mode, outer);
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parse(p, os, FLAG_END, mode, outer);
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@ -1240,6 +1254,13 @@ bool outer)
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}
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}
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}
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}
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else if (t.cs() == "footnote") {
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begin_inset(os, "Foot\n");
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os << "collapsed true\n\n\\layout Standard\n\n";
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parse(p, os, FLAG_ITEM, mode, false);
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end_inset(os);
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}
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else if (t.cs() == "makeindex" || t.cs() == "maketitle")
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else if (t.cs() == "makeindex" || t.cs() == "maketitle")
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; // swallow this
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; // swallow this
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@ -1252,6 +1273,9 @@ bool outer)
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else if (t.cs() == "cline" && mode == TABLE_MODE)
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else if (t.cs() == "cline" && mode == TABLE_MODE)
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hlines += "\\cline{" + p.verbatimItem() + '}';
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hlines += "\\cline{" + p.verbatimItem() + '}';
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else if (t.cs() == "tiny" && mode == TEXT_MODE)
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os << "\n\\size tiny\n";
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else if (t.cs() == "scriptsize" && mode == TEXT_MODE)
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else if (t.cs() == "scriptsize" && mode == TEXT_MODE)
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os << "\n\\size scriptsize\n";
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os << "\n\\size scriptsize\n";
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@ -1364,27 +1388,40 @@ bool outer)
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end_inset(os);
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end_inset(os);
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}
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}
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else if (t.cs() == "LyX") {
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else if (t.cs() == "LyX" && mode == TEXT_MODE) {
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p.verbatimItem(); // eat {}
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p.verbatimItem(); // eat {}
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os << "LyX";
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os << "LyX";
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}
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}
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else if (t.cs() == "TeX") {
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else if (t.cs() == "TeX" && mode == TEXT_MODE) {
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p.verbatimItem(); // eat {}
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p.verbatimItem(); // eat {}
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os << "TeX";
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os << "TeX";
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}
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}
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else if (t.cs() == "LaTeX") {
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else if (t.cs() == "LaTeX" && mode == TEXT_MODE) {
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p.verbatimItem(); // eat {}
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p.verbatimItem(); // eat {}
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os << "LaTeX";
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os << "LaTeX";
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}
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}
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else if (t.cs() == "LaTeXe") {
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else if (t.cs() == "LaTeXe" && mode == TEXT_MODE) {
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p.verbatimItem(); // eat {}
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p.verbatimItem(); // eat {}
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os << "LaTeXe";
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os << "LaTeXe";
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}
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}
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else if (t.cs() == "textasciitilde")
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else if (t.cs() == "lyxarrow" && mode == TEXT_MODE) {
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p.verbatimItem();
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os << "\\SpecialChar \\menuseparator\n";
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}
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else if (t.cs() == "ldots" && mode == TEXT_MODE) {
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p.verbatimItem();
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os << "\\SpecialChar \\ldots{}\n";
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}
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else if (t.cs() == "@" && mode == TEXT_MODE)
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os << "\\SpecialChar \\@";
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else if (t.cs() == "textasciitilde" && mode == TEXT_MODE)
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os << '~';
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os << '~';
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else if (t.cs() == "_" && mode == TEXT_MODE)
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else if (t.cs() == "_" && mode == TEXT_MODE)
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@ -1393,6 +1430,9 @@ bool outer)
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else if (t.cs() == "&" && mode == TEXT_MODE)
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else if (t.cs() == "&" && mode == TEXT_MODE)
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os << '&';
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os << '&';
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else if (t.cs() == "#" && mode == TEXT_MODE)
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os << "#";
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else if (t.cs() == "\"") {
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else if (t.cs() == "\"") {
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string const name = p.verbatimItem();
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string const name = p.verbatimItem();
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if (name == "a") os << 'ä';
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if (name == "a") os << 'ä';
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