]> git.lyx.org Git - lyx.git/blob - src/mathed/InsetMathNest.cpp
fix broken comment
[lyx.git] / src / mathed / InsetMathNest.cpp
1 /**
2  * \file InsetMathNest.cpp
3  * This file is part of LyX, the document processor.
4  * Licence details can be found in the file COPYING.
5  *
6  * \author André Pönitz
7  *
8  * Full author contact details are available in file CREDITS.
9  */
10
11 #include <config.h>
12
13 #include "InsetMathNest.h"
14
15 #include "InsetMathArray.h"
16 #include "InsetMathAMSArray.h"
17 #include "InsetMathBig.h"
18 #include "InsetMathBox.h"
19 #include "InsetMathBrace.h"
20 #include "InsetMathChar.h"
21 #include "InsetMathColor.h"
22 #include "InsetMathComment.h"
23 #include "InsetMathDelim.h"
24 #include "InsetMathEnsureMath.h"
25 #include "InsetMathHull.h"
26 #include "InsetMathRef.h"
27 #include "InsetMathScript.h"
28 #include "InsetMathSpace.h"
29 #include "InsetMathSymbol.h"
30 #include "InsetMathUnknown.h"
31 #include "MathAutoCorrect.h"
32 #include "MathCompletionList.h"
33 #include "MathData.h"
34 #include "MathFactory.h"
35 #include "InsetMathMacro.h"
36 #include "InsetMathMacroArgument.h"
37 #include "MathParser.h"
38 #include "MathStream.h"
39 #include "MathSupport.h"
40
41 #include "Buffer.h"
42 #include "BufferParams.h"
43 #include "BufferView.h"
44 #include "CoordCache.h"
45 #include "Cursor.h"
46 #include "CutAndPaste.h"
47 #include "DispatchResult.h"
48 #include "Encoding.h"
49 #include "FuncRequest.h"
50 #include "FuncStatus.h"
51 #include "LaTeXFeatures.h"
52 #include "LyX.h"
53 #include "LyXRC.h"
54 #include "MetricsInfo.h"
55 #include "OutputParams.h"
56 #include "TexRow.h"
57 #include "Text.h"
58
59 #include "frontends/Application.h"
60 #include "frontends/Clipboard.h"
61 #include "frontends/Painter.h"
62 #include "frontends/Selection.h"
63
64 #include "support/debug.h"
65 #include "support/docstream.h"
66 #include "support/gettext.h"
67 #include "support/lassert.h"
68 #include "support/lstrings.h"
69 #include "support/textutils.h"
70
71 #include <algorithm>
72 #include <sstream>
73
74 using namespace std;
75 using namespace lyx::support;
76
77 namespace lyx {
78
79 using cap::copySelection;
80 using cap::grabAndEraseSelection;
81 using cap::cutSelection;
82 using cap::replaceSelection;
83 using cap::selClearOrDel;
84
85
86 InsetMathNest::InsetMathNest(Buffer * buf, idx_type nargs)
87         : InsetMath(buf), cells_(nargs), lock_(false)
88 {
89         setBuffer(*buf);
90 }
91
92
93 InsetMathNest::InsetMathNest(InsetMathNest const & inset)
94         : InsetMath(inset), cells_(inset.cells_), lock_(inset.lock_)
95 {}
96
97
98 InsetMathNest::~InsetMathNest()
99 {
100         map<BufferView const *, bool>::iterator it = mouse_hover_.begin();
101         map<BufferView const *, bool>::iterator end = mouse_hover_.end();
102         for (; it != end; ++it)
103                 if (it->second)
104                         it->first->clearLastInset(this);
105 }
106
107
108 InsetMathNest & InsetMathNest::operator=(InsetMathNest const & inset)
109 {
110         cells_ = inset.cells_;
111         lock_ = inset.lock_;
112         mouse_hover_.clear();
113         InsetMath::operator=(inset);
114         return *this;
115 }
116
117
118 void InsetMathNest::setBuffer(Buffer & buffer)
119 {
120         InsetMath::setBuffer(buffer);
121         for (idx_type i = 0, n = nargs(); i != n; ++i) {
122                 MathData & data = cell(i);
123                 for (size_t j = 0; j != data.size(); ++j)
124                         data[j].nucleus()->setBuffer(buffer);
125         }
126 }
127
128
129 InsetMath::idx_type InsetMathNest::nargs() const
130 {
131         return cells_.size();
132 }
133
134
135 void InsetMathNest::cursorPos(BufferView const & bv,
136                 CursorSlice const & sl, bool /*boundary*/,
137                 int & x, int & y) const
138 {
139 // FIXME: This is a hack. Ideally, the coord cache should not store
140 // absolute positions, but relative ones. This would mean to call
141 // setXY() not in MathData::draw(), but in the parent insets' draw()
142 // with the correctly adjusted x,y values. But this means that we'd have
143 // to touch all (math)inset's draw() methods. Right now, we'll store
144 // absolute value, and make them here relative, only to make them
145 // absolute again when actually drawing the cursor. What a mess.
146         LASSERT(&sl.inset() == this, return);
147         MathData const & ar = sl.cell();
148         CoordCache const & coord_cache = bv.coordCache();
149         if (!coord_cache.getArrays().has(&ar)) {
150                 // this can (semi-)legally happen if we just created this cell
151                 // and it never has been drawn before. So don't ASSERT.
152                 //lyxerr << "no cached data for array " << &ar << endl;
153                 x = 0;
154                 y = 0;
155                 return;
156         }
157         Point const pt = coord_cache.getArrays().xy(&ar);
158         if (!coord_cache.getInsets().has(this)) {
159                 // same as above
160                 //lyxerr << "no cached data for inset " << this << endl;
161                 x = 0;
162                 y = 0;
163                 return;
164         }
165         Point const pt2 = coord_cache.getInsets().xy(this);
166         //lyxerr << "retrieving position cache for MathData "
167         //      << pt.x_ << ' ' << pt.y_ << endl;
168         x = pt.x_ - pt2.x_ + ar.pos2x(&bv, sl.pos());
169         y = pt.y_ - pt2.y_;
170 //      lyxerr << "pt.y_ : " << pt.y_ << " pt2_.y_ : " << pt2.y_
171 //              << " asc: " << ascent() << "  des: " << descent()
172 //              << " ar.asc: " << ar.ascent() << " ar.des: " << ar.descent() << endl;
173         // move cursor visually into empty cells ("blue rectangles");
174         if (ar.empty()) {
175                 Dimension const dim = coord_cache.getArrays().dim(&ar);
176                 x += dim.wid / 3;
177         }
178 }
179
180
181 void InsetMathNest::cellsMetrics(MetricsInfo const & mi) const
182 {
183         MetricsInfo m = mi;
184         for (auto const & cell : cells_) {
185                 Dimension dim;
186                 cell.metrics(m, dim);
187         }
188 }
189
190
191 void InsetMathNest::updateBuffer(ParIterator const & it, UpdateType utype)
192 {
193         for (idx_type i = 0, n = nargs(); i != n; ++i)
194                 cell(i).updateBuffer(it, utype);
195 }
196
197
198
199 bool InsetMathNest::idxNext(Cursor & cur) const
200 {
201         LASSERT(&cur.inset() == this, return false);
202         if (cur.idx() == cur.lastidx())
203                 return false;
204         ++cur.idx();
205         cur.pos() = 0;
206         return true;
207 }
208
209
210 bool InsetMathNest::idxForward(Cursor & cur) const
211 {
212         return idxNext(cur);
213 }
214
215
216 bool InsetMathNest::idxPrev(Cursor & cur) const
217 {
218         LASSERT(&cur.inset() == this, return false);
219         if (cur.idx() == 0)
220                 return false;
221         --cur.idx();
222         cur.pos() = cur.lastpos();
223         return true;
224 }
225
226
227 bool InsetMathNest::idxBackward(Cursor & cur) const
228 {
229         return idxPrev(cur);
230 }
231
232
233 bool InsetMathNest::idxFirst(Cursor & cur) const
234 {
235         LASSERT(&cur.inset() == this, return false);
236         if (nargs() == 0)
237                 return false;
238         cur.idx() = 0;
239         cur.pos() = 0;
240         return true;
241 }
242
243
244 bool InsetMathNest::idxLast(Cursor & cur) const
245 {
246         LASSERT(&cur.inset() == this, return false);
247         if (nargs() == 0)
248                 return false;
249         cur.idx() = cur.lastidx();
250         cur.pos() = cur.lastpos();
251         return true;
252 }
253
254
255 void InsetMathNest::dump() const
256 {
257         odocstringstream oss;
258         otexrowstream ots(oss);
259         WriteStream os(ots);
260         os << "---------------------------------------------\n";
261         write(os);
262         os << "\n";
263         for (idx_type i = 0, n = nargs(); i != n; ++i)
264                 os << cell(i) << "\n";
265         os << "---------------------------------------------\n";
266         lyxerr << to_utf8(oss.str());
267 }
268
269
270 void InsetMathNest::draw(PainterInfo &, int, int) const
271 {
272 #if 0
273         if (lock_)
274                 pi.pain.fillRectangle(x, y - ascent(), width(), height(),
275                                         Color_mathlockbg);
276 #endif
277 }
278
279
280 void InsetMathNest::validate(LaTeXFeatures & features) const
281 {
282         for (idx_type i = 0; i < nargs(); ++i)
283                 cell(i).validate(features);
284 }
285
286
287 void InsetMathNest::replace(ReplaceData & rep)
288 {
289         for (idx_type i = 0; i < nargs(); ++i)
290                 cell(i).replace(rep);
291 }
292
293
294 bool InsetMathNest::contains(MathData const & ar) const
295 {
296         for (idx_type i = 0; i < nargs(); ++i)
297                 if (cell(i).contains(ar))
298                         return true;
299         return false;
300 }
301
302
303 bool InsetMathNest::lock() const
304 {
305         return lock_;
306 }
307
308
309 void InsetMathNest::lock(bool l)
310 {
311         lock_ = l;
312 }
313
314
315 bool InsetMathNest::isActive() const
316 {
317         return nargs() > 0;
318 }
319
320
321 MathData InsetMathNest::glue() const
322 {
323         MathData ar;
324         for (size_t i = 0; i < nargs(); ++i)
325                 ar.append(cell(i));
326         return ar;
327 }
328
329
330 void InsetMathNest::write(WriteStream & os) const
331 {
332         MathEnsurer ensurer(os, currentMode() == MATH_MODE);
333         ModeSpecifier specifier(os, currentMode(), lockedMode());
334         docstring const latex_name = name();
335         os << '\\' << latex_name;
336         for (size_t i = 0; i < nargs(); ++i) {
337                 Changer dummy = os.changeRowEntry(TexRow::mathEntry(id(),i));
338                 os << '{' << cell(i) << '}';
339         }
340         if (nargs() == 0)
341                 os.pendingSpace(true);
342         if (lock_ && !os.latex()) {
343                 os << "\\lyxlock";
344                 os.pendingSpace(true);
345         }
346 }
347
348
349 void InsetMathNest::normalize(NormalStream & os) const
350 {
351         os << '[' << name();
352         for (size_t i = 0; i < nargs(); ++i)
353                 os << ' ' << cell(i);
354         os << ']';
355 }
356
357
358 void InsetMathNest::latex(otexstream & os, OutputParams const & runparams) const
359 {
360         WriteStream wi(os, runparams.moving_arg, true,
361                         runparams.dryrun ? WriteStream::wsDryrun : WriteStream::wsDefault,
362                         runparams.encoding);
363         wi.strikeoutMath(runparams.inDeletedInset
364                          && (!LaTeXFeatures::isAvailable("dvipost")
365                                 || (runparams.flavor != OutputParams::LATEX
366                                     && runparams.flavor != OutputParams::DVILUATEX)));
367         if (runparams.inulemcmd) {
368                 wi.ulemCmd(WriteStream::UNDERLINE);
369                 if (runparams.local_font) {
370                         FontInfo f = runparams.local_font->fontInfo();
371                         if (f.strikeout() == FONT_ON)
372                                 wi.ulemCmd(WriteStream::STRIKEOUT);
373                 }
374         }
375         wi.canBreakLine(os.canBreakLine());
376         Changer dummy = wi.changeRowEntry(TexRow::textEntry(runparams.lastid,
377                                                             runparams.lastpos));
378         write(wi);
379         // Reset parbreak status after a math inset.
380         os.lastChar(0);
381         os.canBreakLine(wi.canBreakLine());
382 }
383
384
385 bool InsetMathNest::setMouseHover(BufferView const * bv, bool mouse_hover)
386         const
387 {
388         mouse_hover_[bv] = mouse_hover;
389         return true;
390 }
391
392
393 bool InsetMathNest::notifyCursorLeaves(Cursor const & /*old*/, Cursor & /*cur*/)
394 {
395         // FIXME: look here
396 #if 0
397         MathData & ar = cur.cell();
398         // remove base-only "scripts"
399         for (pos_type i = 0; i + 1 < ar.size(); ++i) {
400                 InsetMathScript * p = operator[](i).nucleus()->asScriptInset();
401                 if (p && p->nargs() == 1) {
402                         MathData ar = p->nuc();
403                         erase(i);
404                         insert(i, ar);
405                         cur.adjust(i, ar.size() - 1);
406                 }
407         }
408
409         // glue adjacent font insets of the same kind
410         for (pos_type i = 0; i + 1 < size(); ++i) {
411                 InsetMathFont * p = operator[](i).nucleus()->asFontInset();
412                 InsetMathFont const * q = operator[](i + 1)->asFontInset();
413                 if (p && q && p->name() == q->name()) {
414                         p->cell(0).append(q->cell(0));
415                         erase(i + 1);
416                         cur.adjust(i, -1);
417                 }
418         }
419 #endif
420         return false;
421 }
422
423
424 void InsetMathNest::handleFont
425         (Cursor & cur, docstring const & arg, char const * const font)
426 {
427         handleFont(cur, arg, from_ascii(font));
428 }
429
430
431 void InsetMathNest::handleFont(Cursor & cur, docstring const & arg,
432         docstring const & font)
433 {
434         cur.recordUndoSelection();
435
436         // this whole function is a hack and won't work for incremental font
437         // changes...
438         if (cur.inset().asInsetMath()->name() == font)
439                 cur.handleFont(to_utf8(font));
440         else
441                 handleNest(cur, createInsetMath(font, cur.buffer()), arg);
442 }
443
444
445 void InsetMathNest::handleNest(Cursor & cur, MathAtom const & nest)
446 {
447         handleNest(cur, nest, docstring());
448 }
449
450
451 void InsetMathNest::handleNest(Cursor & cur, MathAtom const & nest,
452         docstring const & arg)
453 {
454         CursorSlice i1 = cur.selBegin();
455         CursorSlice i2 = cur.selEnd();
456         if (!i1.inset().asInsetMath())
457                 return;
458         if (i1.idx() == i2.idx()) {
459                 // the easy case where only one cell is selected
460                 cur.handleNest(nest);
461                 cur.insert(arg);
462                 return;
463         }
464
465         // multiple selected cells in a simple non-grid inset
466         if (i1.asInsetMath()->nrows() == 0 || i1.asInsetMath()->ncols() == 0) {
467                 for (idx_type i = i1.idx(); i <= i2.idx(); ++i) {
468                         // select cell
469                         cur.idx() = i;
470                         cur.pos() = 0;
471                         cur.resetAnchor();
472                         cur.pos() = cur.lastpos();
473                         cur.setSelection();
474
475                         // change font of cell
476                         cur.handleNest(nest);
477                         cur.insert(arg);
478
479                         // cur is in the font inset now. If the loop continues,
480                         // we need to get outside again for the next cell
481                         if (i + 1 <= i2.idx())
482                                 cur.pop_back();
483                 }
484                 return;
485         }
486
487         // the complicated case with multiple selected cells in a grid
488         row_type r1, r2;
489         col_type c1, c2;
490         cap::region(i1, i2, r1, r2, c1, c2);
491         for (row_type row = r1; row <= r2; ++row) {
492                 for (col_type col = c1; col <= c2; ++col) {
493                         // select cell
494                         cur.idx() = i1.asInsetMath()->index(row, col);
495                         cur.pos() = 0;
496                         cur.resetAnchor();
497                         cur.pos() = cur.lastpos();
498                         cur.setSelection();
499
500                         //
501                         cur.handleNest(nest);
502                         cur.insert(arg);
503
504                         // cur is in the font inset now. If the loop continues,
505                         // we need to get outside again for the next cell
506                         if (col + 1 <= c2 || row + 1 <= r2)
507                                 cur.pop_back();
508                 }
509         }
510 }
511
512
513 void InsetMathNest::handleFont2(Cursor & cur, docstring const & arg)
514 {
515         cur.recordUndoSelection();
516         Font font;
517         bool b;
518         font.fromString(to_utf8(arg), b);
519         if (font.fontInfo().color() != Color_inherit &&
520             font.fontInfo().color() != Color_ignore)
521                 handleNest(cur, MathAtom(new InsetMathColor(buffer_, true, font.fontInfo().color())));
522
523         // FIXME: support other font changes here as well?
524 }
525
526
527 void InsetMathNest::doDispatch(Cursor & cur, FuncRequest & cmd)
528 {
529         //LYXERR0("InsetMathNest: request: " << cmd);
530
531         Parse::flags parseflg = Parse::QUIET | Parse::USETEXT;
532
533         FuncCode const act = cmd.action();
534         switch (act) {
535
536         case LFUN_CLIPBOARD_PASTE:
537                 parseflg |= Parse::VERBATIM;
538                 // fall through
539         case LFUN_PASTE: {
540                 if (cur.currentMode() != MATH_MODE)
541                         parseflg |= Parse::TEXTMODE;
542                 cur.recordUndoSelection();
543                 cur.message(_("Paste"));
544                 replaceSelection(cur);
545                 docstring topaste;
546                 if (cmd.argument().empty() && !theClipboard().isInternal())
547                         topaste = theClipboard().getAsText(frontend::Clipboard::PlainTextType);
548                 else {
549                         size_t n = 0;
550                         idocstringstream is(cmd.argument());
551                         is >> n;
552                         topaste = cap::selection(n, buffer().params().documentClassPtr());
553                 }
554                 cur.niceInsert(topaste, parseflg, false);
555                 cur.clearSelection(); // bug 393
556                 cur.forceBufferUpdate();
557                 cur.finishUndo();
558                 break;
559         }
560
561         case LFUN_CUT:
562                 cur.recordUndo();
563                 cutSelection(cur, true, true);
564                 cur.message(_("Cut"));
565                 // Prevent stale position >= size crash
566                 // Probably not necessary anymore, see eraseSelection (gb 2005-10-09)
567                 cur.normalize();
568                 cur.forceBufferUpdate();
569                 break;
570
571         case LFUN_COPY:
572                 copySelection(cur);
573                 cur.message(_("Copy"));
574                 break;
575
576         case LFUN_MOUSE_PRESS:
577                 lfunMousePress(cur, cmd);
578                 break;
579
580         case LFUN_MOUSE_MOTION:
581                 lfunMouseMotion(cur, cmd);
582                 break;
583
584         case LFUN_MOUSE_RELEASE:
585                 lfunMouseRelease(cur, cmd);
586                 break;
587
588         case LFUN_FINISHED_LEFT: // in math, left is backwards
589         case LFUN_FINISHED_BACKWARD:
590                 cur.bv().cursor() = cur;
591                 break;
592
593         case LFUN_FINISHED_RIGHT: // in math, right is forward
594         case LFUN_FINISHED_FORWARD:
595                 ++cur.pos();
596                 cur.bv().cursor() = cur;
597                 break;
598
599         case LFUN_WORD_RIGHT:
600         case LFUN_WORD_LEFT:
601         case LFUN_WORD_BACKWARD:
602         case LFUN_WORD_FORWARD:
603         case LFUN_CHAR_RIGHT:
604         case LFUN_CHAR_LEFT:
605         case LFUN_CHAR_BACKWARD:
606         case LFUN_CHAR_FORWARD:
607                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
608                 // fall through
609         case LFUN_WORD_RIGHT_SELECT:
610         case LFUN_WORD_LEFT_SELECT:
611         case LFUN_WORD_BACKWARD_SELECT:
612         case LFUN_WORD_FORWARD_SELECT:
613         case LFUN_CHAR_RIGHT_SELECT:
614         case LFUN_CHAR_LEFT_SELECT:
615         case LFUN_CHAR_BACKWARD_SELECT:
616         case LFUN_CHAR_FORWARD_SELECT: {
617                 // are we in a selection?
618                 bool select = (act == LFUN_WORD_RIGHT_SELECT
619                                            || act == LFUN_WORD_LEFT_SELECT
620                                            || act == LFUN_WORD_BACKWARD_SELECT
621                                            || act == LFUN_WORD_FORWARD_SELECT
622                                || act == LFUN_CHAR_RIGHT_SELECT
623                                            || act == LFUN_CHAR_LEFT_SELECT
624                                            || act == LFUN_CHAR_BACKWARD_SELECT
625                                            || act == LFUN_CHAR_FORWARD_SELECT);
626                 // select words
627                 bool word = (act == LFUN_WORD_RIGHT_SELECT
628                              || act == LFUN_WORD_LEFT_SELECT
629                              || act == LFUN_WORD_BACKWARD_SELECT
630                              || act == LFUN_WORD_FORWARD_SELECT
631                              || act == LFUN_WORD_RIGHT
632                              || act == LFUN_WORD_LEFT
633                              || act == LFUN_WORD_BACKWARD
634                              || act == LFUN_WORD_FORWARD);
635                 // are we moving forward or backwards?
636                 // If the command was RIGHT or LEFT, then whether we're moving forward
637                 // or backwards depends on the cursor movement mode (logical or visual):
638                 //  * in visual mode, since math is always LTR, right -> forward,
639                 //    left -> backwards
640                 //  * in logical mode, the mapping is determined by the
641                 //    reverseDirectionNeeded() function
642
643                 bool forward;
644                 FuncCode finish_lfun;
645
646                 if (act == LFUN_CHAR_FORWARD
647                     || act == LFUN_CHAR_FORWARD_SELECT
648                     || act == LFUN_WORD_FORWARD
649                     || act == LFUN_WORD_FORWARD_SELECT) {
650                         forward = true;
651                         finish_lfun = LFUN_FINISHED_FORWARD;
652                 }
653                 else if (act == LFUN_CHAR_BACKWARD
654                          || act == LFUN_CHAR_BACKWARD_SELECT
655                          || act == LFUN_WORD_BACKWARD
656                          || act == LFUN_WORD_BACKWARD_SELECT) {
657                         forward = false;
658                         finish_lfun = LFUN_FINISHED_BACKWARD;
659                 }
660                 else {
661                         bool right = (act == LFUN_CHAR_RIGHT_SELECT
662                                                   || act == LFUN_CHAR_RIGHT
663                                       || act == LFUN_WORD_RIGHT_SELECT
664                                       || act == LFUN_WORD_RIGHT);
665                         if (lyxrc.visual_cursor || !cur.reverseDirectionNeeded())
666                                 forward = right;
667                         else
668                                 forward = !right;
669
670                         if (right)
671                                 finish_lfun = LFUN_FINISHED_RIGHT;
672                         else
673                                 finish_lfun = LFUN_FINISHED_LEFT;
674                 }
675                 // Now that we know exactly what we want to do, let's do it!
676                 cur.selHandle(select);
677                 cur.clearTargetX();
678                 cur.macroModeClose();
679                 // try moving forward or backwards as necessary...
680                 if (!(forward ? cur.mathForward(word) : cur.mathBackward(word))) {
681                         // ... and if movement failed, then finish forward or backwards
682                         // as necessary
683                         cmd = FuncRequest(finish_lfun);
684                         cur.undispatched();
685                 }
686                 break;
687         }
688
689         case LFUN_DOWN:
690         case LFUN_UP:
691         case LFUN_PARAGRAPH_UP:
692         case LFUN_PARAGRAPH_DOWN:
693                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
694                 // fall through
695         case LFUN_DOWN_SELECT:
696         case LFUN_UP_SELECT:
697         case LFUN_PARAGRAPH_UP_SELECT:
698         case LFUN_PARAGRAPH_DOWN_SELECT: {
699                 // close active macro
700                 if (cur.inMacroMode()) {
701                         cur.macroModeClose();
702                         break;
703                 }
704
705                 // stop/start the selection
706                 bool select = act == LFUN_DOWN_SELECT
707                         || act == LFUN_UP_SELECT
708                         || act == LFUN_PARAGRAPH_DOWN_SELECT
709                         || act == LFUN_PARAGRAPH_UP_SELECT;
710                 cur.selHandle(select);
711
712                 // handle autocorrect:
713                 if (lyxrc.autocorrection_math && cur.autocorrect()) {
714                         cur.autocorrect() = false;
715                         cur.message(_("Autocorrect Off ('!' to enter)"));
716                 }
717
718                 // go up/down
719                 bool up = act == LFUN_UP || act == LFUN_UP_SELECT
720                         || act == LFUN_PARAGRAPH_UP || act == LFUN_PARAGRAPH_UP_SELECT;
721                 bool successful = cur.upDownInMath(up);
722                 if (successful)
723                         break;
724
725                 if (cur.fixIfBroken())
726                         // FIXME: Something bad happened. We pass the corrected Cursor
727                         // instead of letting things go worse.
728                         break;
729
730                 // We did not manage to move the cursor.
731                 cur.undispatched();
732                 break;
733         }
734
735         case LFUN_MOUSE_DOUBLE:
736         case LFUN_WORD_SELECT:
737                 cur.pos() = 0;
738                 cur.bv().mouseSetCursor(cur);
739                 cur.pos() = cur.lastpos();
740                 cur.bv().mouseSetCursor(cur, true);
741                 break;
742
743         case LFUN_MOUSE_TRIPLE:
744                 cur.idx() = 0;
745                 cur.pos() = 0;
746                 cur.bv().mouseSetCursor(cur);
747                 cur.idx() = cur.lastidx();
748                 cur.pos() = cur.lastpos();
749                 cur.bv().mouseSetCursor(cur, true);
750                 break;
751
752         case LFUN_LINE_BEGIN:
753                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
754                 // fall through
755         case LFUN_LINE_BEGIN_SELECT:
756                 cur.selHandle(act == LFUN_WORD_BACKWARD_SELECT ||
757                                 act == LFUN_WORD_LEFT_SELECT ||
758                                 act == LFUN_LINE_BEGIN_SELECT);
759                 cur.macroModeClose();
760                 if (cur.pos() != 0) {
761                         cur.pos() = 0;
762                 } else if (cur.col() != 0) {
763                         cur.idx() -= cur.col();
764                         cur.pos() = 0;
765                 } else if (cur.idx() != 0) {
766                         cur.idx() = 0;
767                         cur.pos() = 0;
768                 } else {
769                         cmd = FuncRequest(LFUN_FINISHED_BACKWARD);
770                         cur.undispatched();
771                 }
772                 break;
773
774         case LFUN_LINE_END:
775                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
776                 // fall through
777         case LFUN_LINE_END_SELECT:
778                 cur.selHandle(act == LFUN_WORD_FORWARD_SELECT ||
779                                 act == LFUN_WORD_RIGHT_SELECT ||
780                                 act == LFUN_LINE_END_SELECT);
781                 cur.macroModeClose();
782                 cur.clearTargetX();
783                 if (cur.pos() != cur.lastpos()) {
784                         cur.pos() = cur.lastpos();
785                 } else if (ncols() && (cur.col() != cur.lastcol())) {
786                         cur.idx() = cur.idx() - cur.col() + cur.lastcol();
787                         cur.pos() = cur.lastpos();
788                 } else if (cur.idx() != cur.lastidx()) {
789                         cur.idx() = cur.lastidx();
790                         cur.pos() = cur.lastpos();
791                 } else {
792                         cmd = FuncRequest(LFUN_FINISHED_FORWARD);
793                         cur.undispatched();
794                 }
795                 break;
796
797         case LFUN_CELL_FORWARD:
798                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
799                 cur.inset().idxNext(cur);
800                 break;
801
802         case LFUN_CELL_BACKWARD:
803                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor);
804                 cur.inset().idxPrev(cur);
805                 break;
806
807         case LFUN_WORD_DELETE_BACKWARD:
808         case LFUN_CHAR_DELETE_BACKWARD:
809                 if (cur.pos() == 0)
810                         // May affect external cell:
811                         cur.recordUndoInset();
812                 else if (!cur.inMacroMode())
813                         cur.recordUndoSelection();
814                 // if the inset can not be removed from within, delete it
815                 if (!cur.backspace(cmd.getArg(0) == "force")) {
816                         FuncRequest cmd = FuncRequest(LFUN_CHAR_DELETE_FORWARD, "force");
817                         cur.innerText()->dispatch(cur, cmd);
818                 }
819                 break;
820
821         case LFUN_WORD_DELETE_FORWARD:
822         case LFUN_CHAR_DELETE_FORWARD:
823                 if (cur.pos() == cur.lastpos())
824                         // May affect external cell:
825                         cur.recordUndoInset();
826                 else
827                         cur.recordUndoSelection();
828                 // if the inset can not be removed from within, delete it
829                 if (!cur.erase(cmd.getArg(0) == "force")) {
830                         FuncRequest cmd = FuncRequest(LFUN_CHAR_DELETE_FORWARD, "force");
831                         cur.innerText()->dispatch(cur, cmd);
832                 }
833                 break;
834
835         case LFUN_ESCAPE:
836                 if (cur.selection())
837                         cur.clearSelection();
838                 else  {
839                         cmd = FuncRequest(LFUN_FINISHED_FORWARD);
840                         cur.undispatched();
841                 }
842                 break;
843
844         // 'Locks' the math inset. A 'locked' math inset behaves as a unit
845         // that is traversed by a single <CursorLeft>/<CursorRight>.
846         case LFUN_INSET_TOGGLE:
847                 cur.recordUndo();
848                 lock(!lock());
849                 cur.popForward();
850                 break;
851
852         case LFUN_SELF_INSERT:
853                 if (cmd.argument().size() != 1) {
854                         cur.recordUndoSelection();
855                         docstring const arg = cmd.argument();
856                         if (!interpretString(cur, arg))
857                                 cur.insert(arg);
858                         break;
859                 }
860                 // Don't record undo steps if we are in macro mode and thus
861                 // cmd.argument is the next character of the macro name.
862                 // Otherwise we'll get an invalid cursor if we undo after
863                 // the macro was finished and the macro is a known command,
864                 // e.g. sqrt. Cursor::macroModeClose replaces in this case
865                 // the InsetMathUnknown with name "frac" by an empty
866                 // InsetMathFrac -> a pos value > 0 is invalid.
867                 // A side effect is that an undo before the macro is finished
868                 // undoes the complete macro, not only the last character.
869                 // At the time we hit '\' we are not in macro mode, still.
870                 if (!cur.inMacroMode())
871                         cur.recordUndoSelection();
872
873                 // spacial handling of space. If we insert an inset
874                 // via macro mode, we want to put the cursor inside it
875                 // if relevant. Think typing "\frac<space>".
876                 if (cmd.argument()[0] == ' '
877                     && cur.inMacroMode() && cur.macroName() != "\\"
878                     && cur.macroModeClose() && cur.pos() > 0) {
879                         MathAtom const atom = cur.prevAtom();
880                         if (atom->asNestInset() && atom->isActive()) {
881                                 cur.posBackward();
882                                 cur.pushBackward(*cur.nextInset());
883                         }
884                 } else if (!interpretChar(cur, cmd.argument()[0])) {
885                         cmd = FuncRequest(LFUN_FINISHED_FORWARD);
886                         cur.undispatched();
887                 }
888                 break;
889
890         //case LFUN_SERVER_GET_XY:
891         //      break;
892
893         case LFUN_SERVER_SET_XY: {
894                 lyxerr << "LFUN_SERVER_SET_XY broken!" << endl;
895                 int x = 0;
896                 int y = 0;
897                 istringstream is(to_utf8(cmd.argument()));
898                 is >> x >> y;
899                 cur.setScreenPos(x, y);
900                 break;
901         }
902
903         // Special casing for superscript in case of LyX handling
904         // dead-keys:
905         case LFUN_ACCENT_CIRCUMFLEX:
906                 if (cmd.argument().empty()) {
907                         // do superscript if LyX handles
908                         // deadkeys
909                         cur.recordUndoSelection();
910                         script(cur, true, grabAndEraseSelection(cur));
911                 }
912                 break;
913
914         case LFUN_ACCENT_UMLAUT:
915         case LFUN_ACCENT_ACUTE:
916         case LFUN_ACCENT_GRAVE:
917         case LFUN_ACCENT_BREVE:
918         case LFUN_ACCENT_DOT:
919         case LFUN_ACCENT_MACRON:
920         case LFUN_ACCENT_CARON:
921         case LFUN_ACCENT_TILDE:
922         case LFUN_ACCENT_CEDILLA:
923         case LFUN_ACCENT_CIRCLE:
924         case LFUN_ACCENT_UNDERDOT:
925         case LFUN_ACCENT_TIE:
926         case LFUN_ACCENT_OGONEK:
927         case LFUN_ACCENT_HUNGARIAN_UMLAUT:
928                 break;
929
930         //  Math fonts
931         case LFUN_TEXTSTYLE_APPLY:
932         case LFUN_TEXTSTYLE_UPDATE:
933                 handleFont2(cur, cmd.argument());
934                 break;
935
936         case LFUN_FONT_BOLD:
937                 if (currentMode() != MATH_MODE)
938                         handleFont(cur, cmd.argument(), "textbf");
939                 else
940                         handleFont(cur, cmd.argument(), "mathbf");
941                 break;
942         case LFUN_FONT_BOLDSYMBOL:
943                 if (currentMode() != MATH_MODE)
944                         handleFont(cur, cmd.argument(), "textbf");
945                 else
946                         handleFont(cur, cmd.argument(), "boldsymbol");
947                 break;
948         case LFUN_FONT_SANS:
949                 if (currentMode() != MATH_MODE)
950                         handleFont(cur, cmd.argument(), "textsf");
951                 else
952                         handleFont(cur, cmd.argument(), "mathsf");
953                 break;
954         case LFUN_FONT_EMPH:
955                 if (currentMode() != MATH_MODE)
956                         handleFont(cur, cmd.argument(), "emph");
957                 else
958                         handleFont(cur, cmd.argument(), "mathcal");
959                 break;
960         case LFUN_FONT_ROMAN:
961                 if (currentMode() != MATH_MODE)
962                         handleFont(cur, cmd.argument(), "textrm");
963                 else
964                         handleFont(cur, cmd.argument(), "mathrm");
965                 break;
966         case LFUN_FONT_TYPEWRITER:
967                 if (currentMode() != MATH_MODE)
968                         handleFont(cur, cmd.argument(), "texttt");
969                 else
970                         handleFont(cur, cmd.argument(), "mathtt");
971                 break;
972         case LFUN_FONT_FRAK:
973                 handleFont(cur, cmd.argument(), "mathfrak");
974                 break;
975         case LFUN_FONT_ITAL:
976                 if (currentMode() != MATH_MODE)
977                         handleFont(cur, cmd.argument(), "textit");
978                 else
979                         handleFont(cur, cmd.argument(), "mathit");
980                 break;
981         case LFUN_FONT_NOUN:
982                 if (currentMode() != MATH_MODE)
983                         // FIXME: should be "noun"
984                         handleFont(cur, cmd.argument(), "textsc");
985                 else
986                         handleFont(cur, cmd.argument(), "mathbb");
987                 break;
988         case LFUN_FONT_DEFAULT:
989                 handleFont(cur, cmd.argument(), "textnormal");
990                 break;
991         case LFUN_FONT_UNDERLINE:
992                 cur.recordUndo();
993                 cur.handleNest(createInsetMath("underline", cur.buffer()));
994                 break;
995
996         case LFUN_MATH_MODE: {
997 #if 1
998                 // ignore math-mode on when already in math mode
999                 if (currentMode() == Inset::MATH_MODE && cmd.argument() == "on")
1000                         break;
1001                 cur.recordUndoSelection();
1002                 cur.macroModeClose();
1003                 docstring const save_selection = grabAndEraseSelection(cur);
1004                 selClearOrDel(cur);
1005                 if (currentMode() != Inset::MATH_MODE)
1006                         cur.plainInsert(MathAtom(new InsetMathEnsureMath(buffer_)));
1007                 else
1008                         cur.plainInsert(createInsetMath("text", buffer_));
1009                 cur.posBackward();
1010                 cur.pushBackward(*cur.nextInset());
1011                 cur.niceInsert(save_selection);
1012                 cur.forceBufferUpdate();
1013 #else
1014                 if (currentMode() == Inset::TEXT_MODE) {
1015                         cur.recordUndoSelection();
1016                         cur.niceInsert(MathAtom(new InsetMathHull("simple", cur.buffer())));
1017                         cur.message(_("create new math text environment ($...$)"));
1018                 } else {
1019                         handleFont(cur, cmd.argument(), "textrm");
1020                         cur.message(_("entered math text mode (textrm)"));
1021                 }
1022 #endif
1023                 break;
1024         }
1025
1026         case LFUN_REGEXP_MODE: {
1027                 InsetMath * im = cur.inset().asInsetMath();
1028                 if (im) {
1029                         InsetMathHull * i = im->asHullInset();
1030                         if (i && i->getType() == hullRegexp) {
1031                                 cur.message(_("Already in regular expression mode"));
1032                                 break;
1033                         }
1034                 }
1035                 cur.macroModeClose();
1036                 docstring const save_selection = grabAndEraseSelection(cur);
1037                 selClearOrDel(cur);
1038                 cur.plainInsert(MathAtom(new InsetMathHull(buffer_, hullRegexp)));
1039                 cur.posBackward();
1040                 cur.pushBackward(*cur.nextInset());
1041                 cur.niceInsert(save_selection);
1042                 cur.message(_("Regular expression editor mode"));
1043                 break;
1044         }
1045
1046         case LFUN_MATH_FONT_STYLE: {
1047                 FuncRequest fr = FuncRequest(LFUN_MATH_INSERT, '\\' + cmd.argument());
1048                 doDispatch(cur, fr);
1049                 break;
1050         }
1051
1052         case LFUN_MATH_SIZE: {
1053                 FuncRequest fr = FuncRequest(LFUN_MATH_INSERT, cmd.argument());
1054                 doDispatch(cur, fr);
1055                 break;
1056         }
1057
1058         case LFUN_MATH_MATRIX: {
1059                 cur.recordUndo();
1060                 unsigned int m = 1;
1061                 unsigned int n = 1;
1062                 docstring v_align;
1063                 docstring h_align;
1064                 idocstringstream is(cmd.argument());
1065                 is >> m >> n >> v_align >> h_align;
1066                 if (m < 1)
1067                         m = 1;
1068                 if (n < 1)
1069                         n = 1;
1070                 v_align += 'c';
1071                 cur.niceInsert(MathAtom(new InsetMathArray(buffer_,
1072                         from_ascii("array"), m, n, (char)v_align[0], h_align)));
1073                 break;
1074         }
1075
1076         case LFUN_MATH_AMS_MATRIX: {
1077                 cur.recordUndo();
1078                 unsigned int m = 1;
1079                 unsigned int n = 1;
1080                 docstring name = from_ascii("matrix");
1081                 idocstringstream is(cmd.argument());
1082                 is >> m >> n >> name;
1083                 if (m < 1)
1084                         m = 1;
1085                 if (n < 1)
1086                         n = 1;
1087                 // check if we have a valid decoration
1088                 if (name != "pmatrix" && name != "bmatrix"
1089                         && name != "Bmatrix" && name != "vmatrix"
1090                         && name != "Vmatrix" && name != "matrix")
1091                         name = from_ascii("matrix");
1092
1093                 cur.niceInsert(
1094                         MathAtom(new InsetMathAMSArray(buffer_, name, m, n)));
1095                 break;
1096         }
1097
1098         case LFUN_MATH_DELIM: {
1099                 docstring ls;
1100                 docstring rs = split(cmd.argument(), ls, ' ');
1101                 // Reasonable default values
1102                 if (ls.empty())
1103                         ls = '(';
1104                 if (rs.empty())
1105                         rs = ')';
1106                 cur.recordUndo();
1107                 cur.handleNest(MathAtom(new InsetMathDelim(buffer_, ls, rs)));
1108                 break;
1109         }
1110
1111         case LFUN_MATH_BIGDELIM: {
1112                 docstring const lname  = from_utf8(cmd.getArg(0));
1113                 docstring const ldelim = from_utf8(cmd.getArg(1));
1114                 docstring const rname  = from_utf8(cmd.getArg(2));
1115                 docstring const rdelim = from_utf8(cmd.getArg(3));
1116                 latexkeys const * l = in_word_set(lname);
1117                 bool const have_l = l && l->inset == "big" &&
1118                                     InsetMathBig::isBigInsetDelim(ldelim);
1119                 l = in_word_set(rname);
1120                 bool const have_r = l && l->inset == "big" &&
1121                                     InsetMathBig::isBigInsetDelim(rdelim);
1122                 // We mimic LFUN_MATH_DELIM in case we have an empty left
1123                 // or right delimiter.
1124                 if (have_l || have_r) {
1125                         cur.recordUndo();
1126                         docstring const selection = grabAndEraseSelection(cur);
1127                         selClearOrDel(cur);
1128                         if (have_l)
1129                                 cur.insert(MathAtom(new InsetMathBig(lname,
1130                                                                 ldelim)));
1131                         // first insert the right delimiter and then go back
1132                         // and re-insert the selection (bug 7088)
1133                         if (have_r) {
1134                                 cur.insert(MathAtom(new InsetMathBig(rname,
1135                                                                 rdelim)));
1136                                 cur.posBackward();
1137                         }
1138                         cur.niceInsert(selection);
1139                 }
1140                 // Don't call cur.undispatched() if we did nothing, this would
1141                 // lead to infinite recursion via Text::dispatch().
1142                 break;
1143         }
1144
1145         case LFUN_SPACE_INSERT: {
1146                 cur.recordUndoSelection();
1147                 string const name = cmd.getArg(0);
1148                 if (name == "normal")
1149                         cur.insert(MathAtom(new InsetMathSpace(" ", "")));
1150                 else if (name == "protected")
1151                         cur.insert(MathAtom(new InsetMathSpace("~", "")));
1152                 else if (name == "thin" || name == "med" || name == "thick")
1153                         cur.insert(MathAtom(new InsetMathSpace(name + "space", "")));
1154                 else if (name == "hfill*")
1155                         cur.insert(MathAtom(new InsetMathSpace("hspace*{\\fill}", "")));
1156                 else if (name == "quad" || name == "qquad" ||
1157                          name == "enspace" || name == "enskip" ||
1158                          name == "negthinspace" || name == "negmedspace" ||
1159                          name == "negthickspace" || name == "hfill")
1160                         cur.insert(MathAtom(new InsetMathSpace(name, "")));
1161                 else if (name == "hspace" || name == "hspace*") {
1162                         string const len = cmd.getArg(1);
1163                         if (len.empty() || !isValidLength(len)) {
1164                                 lyxerr << "LyX function 'space-insert " << name << "' "
1165                                           "needs a valid length argument." << endl;
1166                                 break;
1167                         }
1168                         cur.insert(MathAtom(new InsetMathSpace(name, len)));
1169                 } else
1170                         cur.insert(MathAtom(new InsetMathSpace));
1171                 break;
1172         }
1173
1174         case LFUN_MATH_SPACE:
1175                 cur.recordUndoSelection();
1176                 if (cmd.argument().empty())
1177                         cur.insert(MathAtom(new InsetMathSpace));
1178                 else {
1179                         string const name = cmd.getArg(0);
1180                         string const len = cmd.getArg(1);
1181                         cur.insert(MathAtom(new InsetMathSpace(name, len)));
1182                 }
1183                 break;
1184
1185         case LFUN_ERT_INSERT:
1186                 // interpret this as if a backslash was typed
1187                 cur.recordUndo();
1188                 interpretChar(cur, '\\');
1189                 break;
1190
1191         case LFUN_MATH_SUBSCRIPT:
1192                 // interpret this as if a _ was typed
1193                 cur.recordUndoSelection();
1194                 interpretChar(cur, '_');
1195                 break;
1196
1197         case LFUN_MATH_SUPERSCRIPT:
1198                 // interpret this as if a ^ was typed
1199                 cur.recordUndoSelection();
1200                 interpretChar(cur, '^');
1201                 break;
1202
1203         case LFUN_MATH_MACRO_FOLD:
1204         case LFUN_MATH_MACRO_UNFOLD: {
1205                 Cursor it = cur;
1206                 bool fold = act == LFUN_MATH_MACRO_FOLD;
1207                 bool found = findMacroToFoldUnfold(it, fold);
1208                 if (found) {
1209                         InsetMathMacro * macro = it.nextInset()->asInsetMath()->asMacro();
1210                         cur.recordUndoInset();
1211                         if (fold)
1212                                 macro->fold(cur);
1213                         else
1214                                 macro->unfold(cur);
1215                 }
1216                 break;
1217         }
1218
1219         case LFUN_QUOTE_INSERT:
1220                 // interpret this as if a straight " was typed
1221                 cur.recordUndoSelection();
1222                 interpretChar(cur, '\"');
1223                 break;
1224
1225 // FIXME: We probably should swap parts of "math-insert" and "self-insert"
1226 // handling such that "self-insert" works on "arbitrary stuff" too, and
1227 // math-insert only handles special math things like "matrix".
1228         case LFUN_MATH_INSERT: {
1229                 cur.recordUndoSelection();
1230                 if (cmd.argument() == "^" || cmd.argument() == "_")
1231                         interpretChar(cur, cmd.argument()[0]);
1232                 else {
1233                         MathData ar;
1234                         asArray(cmd.argument(), ar);
1235                         if (cur.selection() && ar.size() == 1
1236                             && ar[0]->asNestInset()
1237                             && ar[0]->asNestInset()->nargs() > 1)
1238                                 handleNest(cur, ar[0]);
1239                         else
1240                                 cur.niceInsert(cmd.argument());
1241                 }
1242                 break;
1243         }
1244
1245         case LFUN_UNICODE_INSERT: {
1246                 if (cmd.argument().empty())
1247                         break;
1248                 docstring hexstring = cmd.argument();
1249                 if (isHex(hexstring)) {
1250                         char_type c = hexToInt(hexstring);
1251                         if (c >= 32 && c < 0x10ffff) {
1252                                 docstring s = docstring(1, c);
1253                                 FuncCode code = currentMode() == MATH_MODE ?
1254                                         LFUN_MATH_INSERT : LFUN_SELF_INSERT;
1255                                 lyx::dispatch(FuncRequest(code, s));
1256                         }
1257                 }
1258                 break;
1259         }
1260
1261         case LFUN_DIALOG_SHOW_NEW_INSET: {
1262                 docstring const & name = cmd.argument();
1263                 string data;
1264                 if (name == "ref") {
1265                         InsetMathRef tmp(buffer_, name);
1266                         data = tmp.createDialogStr();
1267                         cur.bv().showDialog(to_utf8(name), data);
1268                 } else if (name == "mathspace") {
1269                         cur.bv().showDialog(to_utf8(name));
1270                 }
1271                 break;
1272         }
1273
1274         case LFUN_INSET_INSERT: {
1275                 MathData ar;
1276                 if (createInsetMath_fromDialogStr(cmd.argument(), ar)) {
1277                         cur.recordUndoSelection();
1278                         cur.insert(ar);
1279                         cur.forceBufferUpdate();
1280                 } else
1281                         cur.undispatched();
1282                 break;
1283         }
1284         case LFUN_INSET_DISSOLVE:
1285                 if (!asHullInset()) {
1286                         cur.recordUndoInset();
1287                         cur.pullArg();
1288                 }
1289                 break;
1290
1291         default:
1292                 InsetMath::doDispatch(cur, cmd);
1293                 break;
1294         }
1295 }
1296
1297
1298 bool InsetMathNest::findMacroToFoldUnfold(Cursor & it, bool fold) const {
1299         // look for macro to open/close, but stay in mathed
1300         for (; !it.empty(); it.pop_back()) {
1301
1302                 // go backward through the current cell
1303                 Inset * inset = it.nextInset();
1304                 while (inset && inset->asInsetMath()) {
1305                         InsetMathMacro * macro = inset->asInsetMath()->asMacro();
1306                         if (macro) {
1307                                 // found the an macro to open/close?
1308                                 if (macro->folded() != fold)
1309                                         return true;
1310
1311                                 // Wrong folding state.
1312                                 // If this was the first we see in this slice, look further left,
1313                                 // otherwise go up.
1314                                 if (inset != it.nextInset())
1315                                         break;
1316                         }
1317
1318                         // go up if this was the left most position
1319                         if (it.pos() == 0)
1320                                 break;
1321
1322                         // go left
1323                         it.pos()--;
1324                         inset = it.nextInset();
1325                 }
1326         }
1327
1328         return false;
1329 }
1330
1331
1332 bool InsetMathNest::getStatus(Cursor & cur, FuncRequest const & cmd,
1333                 FuncStatus & flag) const
1334 {
1335         // the font related toggles
1336         //string tc = "mathnormal";
1337         bool ret = true;
1338         string const arg = to_utf8(cmd.argument());
1339         switch (cmd.action()) {
1340         case LFUN_INSET_MODIFY:
1341                 flag.setEnabled(false);
1342                 break;
1343 #if 0
1344         case LFUN_INSET_MODIFY:
1345                 // FIXME: check temporarily disabled
1346                 // valign code
1347                 char align = mathcursor::valign();
1348                 if (align == '\0') {
1349                         enable = false;
1350                         break;
1351                 }
1352                 if (cmd.argument().empty()) {
1353                         flag.clear();
1354                         break;
1355                 }
1356                 if (!contains("tcb", cmd.argument()[0])) {
1357                         enable = false;
1358                         break;
1359                 }
1360                 flag.setOnOff(cmd.argument()[0] == align);
1361                 break;
1362 #endif
1363         /// We have to handle them since 1.4 blocks all unhandled actions
1364         case LFUN_FONT_ITAL:
1365         case LFUN_FONT_BOLD:
1366         case LFUN_FONT_BOLDSYMBOL:
1367         case LFUN_FONT_SANS:
1368         case LFUN_FONT_EMPH:
1369         case LFUN_FONT_TYPEWRITER:
1370         case LFUN_FONT_NOUN:
1371         case LFUN_FONT_ROMAN:
1372         case LFUN_FONT_DEFAULT:
1373                 flag.setEnabled(true);
1374                 break;
1375
1376         // we just need to be in math mode to enable that
1377         case LFUN_MATH_SIZE:
1378         case LFUN_MATH_SPACE:
1379         case LFUN_MATH_EXTERN:
1380                 flag.setEnabled(true);
1381                 break;
1382
1383         case LFUN_FONT_UNDERLINE:
1384         case LFUN_FONT_FRAK:
1385                 flag.setEnabled(currentMode() != TEXT_MODE);
1386                 break;
1387
1388         case LFUN_MATH_FONT_STYLE: {
1389                 bool const textarg =
1390                         arg == "textbf"   || arg == "textsf" ||
1391                         arg == "textrm"   || arg == "textmd" ||
1392                         arg == "textit"   || arg == "textsc" ||
1393                         arg == "textsl"   || arg == "textup" ||
1394                         arg == "texttt"   || arg == "textbb" ||
1395                         arg == "textnormal";
1396                 flag.setEnabled(currentMode() != TEXT_MODE || textarg);
1397                 break;
1398         }
1399
1400         case LFUN_MATH_MODE:
1401                 // forbid "math-mode on" in math mode to prevent irritating
1402                 // behaviour of menu entries (bug 6709)
1403                 flag.setEnabled(currentMode() == TEXT_MODE || arg != "on");
1404                 break;
1405
1406         case LFUN_MATH_INSERT:
1407                 flag.setEnabled(currentMode() != TEXT_MODE);
1408                 break;
1409
1410         case LFUN_MATH_AMS_MATRIX:
1411         case LFUN_MATH_MATRIX:
1412                 flag.setEnabled(currentMode() == MATH_MODE);
1413                 break;
1414
1415         case LFUN_INSET_INSERT: {
1416                 // Don't test createMathInset_fromDialogStr(), since
1417                 // getStatus is not called with a valid reference and the
1418                 // dialog would not be applyable.
1419                 string const name = cmd.getArg(0);
1420                 flag.setEnabled(name == "ref" || name == "mathspace");
1421                 break;
1422         }
1423
1424         case LFUN_DIALOG_SHOW_NEW_INSET: {
1425                 docstring const & name = cmd.argument();
1426                 if (name == "space")
1427                         flag.setEnabled(false);
1428                 break;
1429         }
1430
1431
1432         case LFUN_MATH_DELIM:
1433         case LFUN_MATH_BIGDELIM:
1434                 // Don't do this with multi-cell selections
1435                 flag.setEnabled(cur.selBegin().idx() == cur.selEnd().idx());
1436                 break;
1437
1438         case LFUN_MATH_MACRO_FOLD:
1439         case LFUN_MATH_MACRO_UNFOLD: {
1440                 Cursor it = cur;
1441                 bool found = findMacroToFoldUnfold(it, cmd.action() == LFUN_MATH_MACRO_FOLD);
1442                 flag.setEnabled(found);
1443                 break;
1444         }
1445
1446         case LFUN_SPECIALCHAR_INSERT:
1447         case LFUN_SCRIPT_INSERT:
1448                 // FIXME: These would probably make sense in math-text mode
1449                 flag.setEnabled(false);
1450                 break;
1451
1452         case LFUN_CAPTION_INSERT:
1453                 flag.setEnabled(false);
1454                 break;
1455
1456         case LFUN_SPACE_INSERT: {
1457                 docstring const & name = cmd.argument();
1458                 if (name == "visible")
1459                         flag.setEnabled(false);
1460                 break;
1461         }
1462
1463         case LFUN_INSET_DISSOLVE:
1464                 flag.setEnabled(!asHullInset());
1465                 break;
1466
1467         case LFUN_PASTE: {
1468                 docstring const & name = cmd.argument();
1469                 if (name == "html" || name == "latex")
1470                         flag.setEnabled(false);
1471                 break;
1472         }
1473
1474         default:
1475                 ret = false;
1476                 break;
1477         }
1478         return ret;
1479 }
1480
1481
1482 void InsetMathNest::edit(Cursor & cur, bool front, EntryDirection entry_from)
1483 {
1484         cur.push(*this);
1485         bool enter_front = (entry_from == Inset::ENTRY_DIRECTION_RIGHT ||
1486                 (entry_from == Inset::ENTRY_DIRECTION_IGNORE && front));
1487         cur.idx() = enter_front ? 0 : cur.lastidx();
1488         cur.pos() = enter_front ? 0 : cur.lastpos();
1489         cur.resetAnchor();
1490         //lyxerr << "InsetMathNest::edit, cur:\n" << cur << endl;
1491 }
1492
1493
1494 Inset * InsetMathNest::editXY(Cursor & cur, int x, int y)
1495 {
1496         int idx_min = -1;
1497         int dist_min = 1000000;
1498         for (idx_type i = 0, n = nargs(); i != n; ++i) {
1499                 int const d = cell(i).dist(cur.bv(), x, y);
1500                 if (d < dist_min) {
1501                         dist_min = d;
1502                         idx_min = i;
1503                 }
1504         }
1505         if (idx_min == -1)
1506                 return this;
1507
1508         MathData & ar = cell(idx_min);
1509         cur.push(*this);
1510         cur.idx() = idx_min;
1511         cur.pos() = ar.x2pos(&cur.bv(), x - ar.xo(cur.bv()));
1512
1513         //lyxerr << "found cell : " << idx_min << " pos: " << cur.pos() << endl;
1514         if (dist_min == 0) {
1515                 // hit inside cell
1516                 for (pos_type i = 0, n = ar.size(); i < n; ++i)
1517                         if (ar[i]->covers(cur.bv(), x, y))
1518                                 return ar[i].nucleus()->editXY(cur, x, y);
1519         }
1520         return this;
1521 }
1522
1523
1524 void InsetMathNest::lfunMousePress(Cursor & cur, FuncRequest & cmd)
1525 {
1526         //lyxerr << "## lfunMousePress: buttons: " << cmd.button() << endl;
1527         BufferView & bv = cur.bv();
1528         if (cmd.button() == mouse_button::button3) {
1529                 // Don't do anything if we right-click a
1530                 // selection, a context menu will popup.
1531                 if (bv.cursor().selection() && cur >= bv.cursor().selectionBegin()
1532                       && cur < bv.cursor().selectionEnd()) {
1533                         cur.noScreenUpdate();
1534                         return;
1535                 }
1536         }
1537
1538         // set cursor after the inset if x is nearer to that position (bug 9748)
1539         cur.moveToClosestEdge(cmd.x(), true);
1540
1541         bool do_selection = cmd.button() == mouse_button::button1
1542                 && cmd.modifier() == ShiftModifier;
1543         bv.mouseSetCursor(cur, do_selection);
1544         if (cmd.button() == mouse_button::button1) {
1545                 //lyxerr << "## lfunMousePress: setting cursor to: " << cur << endl;
1546                 // Update the cursor update flags as needed:
1547                 //
1548                 // Update::Decoration: tells to update the decoration
1549                 //                     (visual box corners that define
1550                 //                     the inset)/
1551                 // Update::FitCursor: adjust the screen to the cursor
1552                 //                    position if needed
1553                 // cur.result().update(): don't overwrite previously set flags.
1554                 cur.screenUpdateFlags(Update::Decoration | Update::FitCursor
1555                                 | cur.result().screenUpdate());
1556         } else if (cmd.button() == mouse_button::button2 && lyxrc.mouse_middlebutton_paste) {
1557                 if (cap::selection()) {
1558                         // See comment in Text::dispatch why we do this
1559                         cap::copySelectionToStack();
1560                         cmd = FuncRequest(LFUN_PASTE, "0");
1561                         doDispatch(bv.cursor(), cmd);
1562                 } else {
1563                         MathData ar;
1564                         asArray(theSelection().get(), ar);
1565                         bv.cursor().insert(ar);
1566                 }
1567         }
1568 }
1569
1570
1571 void InsetMathNest::lfunMouseMotion(Cursor & cur, FuncRequest & cmd)
1572 {
1573         // only select with button 1
1574         if (cmd.button() != mouse_button::button1)
1575                 return;
1576
1577         Cursor & bvcur = cur.bv().cursor();
1578
1579         // ignore motions deeper nested than the real anchor
1580         if (!bvcur.realAnchor().hasPart(cur)) {
1581                 cur.undispatched();
1582                 return;
1583         }
1584
1585         // set cursor after the inset if x is nearer to that position (bug 9748)
1586         cur.moveToClosestEdge(cmd.x());
1587
1588         CursorSlice old = bvcur.top();
1589
1590         // We continue with our existing selection or start a new one, so don't
1591         // reset the anchor.
1592         bvcur.setCursor(cur);
1593         // Did we actually move?
1594         if (cur.top() == old)
1595                 // We didn't move one iota, so no need to change selection status
1596                 // or update the screen.
1597                 cur.screenUpdateFlags(Update::SinglePar | Update::FitCursor);
1598         else
1599                 bvcur.setSelection();
1600 }
1601
1602
1603 void InsetMathNest::lfunMouseRelease(Cursor & cur, FuncRequest & cmd)
1604 {
1605         //lyxerr << "## lfunMouseRelease: buttons: " << cmd.button() << endl;
1606
1607         if (cmd.button() == mouse_button::button1) {
1608                 if (!cur.selection())
1609                         cur.noScreenUpdate();
1610                 else {
1611                         Cursor & bvcur = cur.bv().cursor();
1612                         bvcur.selection(true);
1613                 }
1614                 return;
1615         }
1616
1617         cur.undispatched();
1618 }
1619
1620
1621 bool InsetMathNest::interpretChar(Cursor & cur, char_type const c)
1622 {
1623         //lyxerr << "interpret 2: '" << c << "'" << endl;
1624         docstring save_selection;
1625         if (c == '^' || c == '_')
1626                 save_selection = grabAndEraseSelection(cur);
1627
1628         cur.clearTargetX();
1629         Buffer * buf = cur.buffer();
1630
1631         // handle macroMode
1632         if (cur.inMacroMode()) {
1633                 docstring name = cur.macroName();
1634
1635                 /// are we currently typing '#1' or '#2' or...?
1636                 if (name == "\\#") {
1637                         cur.backspace();
1638                         int n = c - '0';
1639                         if (n >= 1 && n <= 9)
1640                                 cur.insert(new InsetMathMacroArgument(n));
1641                         return true;
1642                 }
1643
1644                 // do not finish macro for known * commands
1645                 bool star_macro = c == '*'
1646                         && (in_word_set(name.substr(1) + '*')
1647                             || cur.buffer()->getMacro(name.substr(1) + "*", cur, true));
1648                 if (isAlphaASCII(c) || star_macro) {
1649                         cur.activeMacro()->setName(name + docstring(1, c));
1650                         return true;
1651                 }
1652
1653                 // handle 'special char' macros
1654                 if (name == "\\") {
1655                         // remove the '\\'
1656                         if (c == '\\') {
1657                                 cur.backspace();
1658                                 if (currentMode() != InsetMath::MATH_MODE)
1659                                         cur.niceInsert(createInsetMath("textbackslash", buf));
1660                                 else
1661                                         cur.niceInsert(createInsetMath("backslash", buf));
1662                         } else if (c == '^' && currentMode() == InsetMath::MATH_MODE) {
1663                                 cur.backspace();
1664                                 cur.niceInsert(createInsetMath("mathcircumflex", buf));
1665                         } else if (c == '{' || c == '%') {
1666                                 //using the saved selection as argument
1667                                 InsetMathUnknown * p = cur.activeMacro();
1668                                 p->finalize();
1669                                 MathData sel(cur.buffer());
1670                                 asArray(p->selection(), sel);
1671                                 cur.backspace();
1672                                 if (c == '{')
1673                                         cur.niceInsert(MathAtom(new InsetMathBrace(sel)));
1674                                 else
1675                                         cur.niceInsert(MathAtom(new InsetMathComment(sel)));
1676                         } else if (c == '#') {
1677                                 LASSERT(cur.activeMacro(), return false);
1678                                 cur.activeMacro()->setName(name + docstring(1, c));
1679                         } else {
1680                                 cur.backspace();
1681                                 cur.niceInsert(createInsetMath(docstring(1, c), buf));
1682                         }
1683                         return true;
1684                 }
1685
1686                 // One character big delimiters. The others are handled in
1687                 // interpretString().
1688                 latexkeys const * l = in_word_set(name.substr(1));
1689                 if (name[0] == '\\' && l && l->inset == "big") {
1690                         docstring delim;
1691                         switch (c) {
1692                         case '{':
1693                                 delim = from_ascii("\\{");
1694                                 break;
1695                         case '}':
1696                                 delim = from_ascii("\\}");
1697                                 break;
1698                         default:
1699                                 delim = docstring(1, c);
1700                                 break;
1701                         }
1702                         if (InsetMathBig::isBigInsetDelim(delim)) {
1703                                 // name + delim ared a valid InsetMathBig.
1704                                 // We can't use cur.macroModeClose() because
1705                                 // it does not handle delim.
1706                                 InsetMathUnknown * p = cur.activeMacro();
1707                                 p->finalize();
1708                                 --cur.pos();
1709                                 cur.cell().erase(cur.pos());
1710                                 cur.plainInsert(MathAtom(
1711                                         new InsetMathBig(name.substr(1), delim)));
1712                                 return true;
1713                         }
1714                 } else if (name == "\\smash" && c == '[') {
1715                         // We can't use cur.macroModeClose() because
1716                         // it would create an InsetMathPhantom
1717                         InsetMathUnknown * p = cur.activeMacro();
1718                         p->finalize();
1719                         interpretChar(cur, c);
1720                         return true;
1721                 }
1722
1723                 // leave macro mode and try again if necessary
1724                 if (cur.macroModeClose()) {
1725                         MathAtom const atom = cur.prevAtom();
1726                         if (atom->asNestInset() && atom->isActive()) {
1727                                 cur.posBackward();
1728                                 cur.pushBackward(*cur.nextInset());
1729                         }
1730                 }
1731                 if (c == '{')
1732                         cur.niceInsert(MathAtom(new InsetMathBrace(buf)));
1733                 else if (c != ' ')
1734                         interpretChar(cur, c);
1735                 return true;
1736         }
1737
1738
1739         // leave autocorrect mode if necessary
1740         if (lyxrc.autocorrection_math && c == ' ' && cur.autocorrect()) {
1741                 cur.autocorrect() = false;
1742                 cur.message(_("Autocorrect Off ('!' to enter)"));
1743                 return true;
1744         }
1745         if (lyxrc.autocorrection_math && c == '!' && !cur.autocorrect()) {
1746                 cur.autocorrect() = true;
1747                 cur.message(_("Autocorrect On (<space> to exit)"));
1748                 return true;
1749         }
1750
1751         // just clear selection on pressing the space bar
1752         if (cur.selection() && c == ' ') {
1753                 cur.selection(false);
1754                 return true;
1755         }
1756
1757         if (c == '\\') {
1758                 //lyxerr << "starting with macro" << endl;
1759                 bool reduced = cap::reduceSelectionToOneCell(cur);
1760                 if (reduced || !cur.selection()) {
1761                         cur.recordUndoInset();
1762                         docstring const safe = cap::grabAndEraseSelection(cur);
1763                         if (!cur.inRegexped())
1764                                 cur.insert(MathAtom(new InsetMathUnknown(from_ascii("\\"), safe, false)));
1765                         else
1766                                 cur.niceInsert(createInsetMath("backslash", buf));
1767                 }
1768                 return true;
1769         }
1770
1771         selClearOrDel(cur);
1772
1773         if (c == '\n') {
1774                 if (currentMode() != InsetMath::MATH_MODE)
1775                         cur.insert(c);
1776                 return true;
1777         }
1778
1779         if (c == ' ') {
1780                 if (currentMode() != InsetMath::MATH_MODE) {
1781                         // insert spaces in text or undecided mode,
1782                         // but suppress direct insertion of two spaces in a row
1783                         // the still allows typing  '<space>a<space>' and deleting the 'a', but
1784                         // it is better than nothing...
1785                         if (cur.pos() == 0 || cur.prevAtom()->getChar() != ' ') {
1786                                 cur.insert(c);
1787                                 // FIXME: we have to enable full redraw here because of the
1788                                 // visual box corners that define the inset. If we know for
1789                                 // sure that we stay within the same cell we can optimize for
1790                                 // that using:
1791                                 //cur.screenUpdateFlags(Update::SinglePar | Update::FitCursor);
1792                         }
1793                         return true;
1794                 }
1795                 if (cur.pos() != 0 && cur.prevAtom()->asSpaceInset()) {
1796                         cur.prevAtom().nucleus()->asSpaceInset()->incSpace();
1797                         // FIXME: we have to enable full redraw here because of the
1798                         // visual box corners that define the inset. If we know for
1799                         // sure that we stay within the same cell we can optimize for
1800                         // that using:
1801                         //cur.screenUpdateFlags(Update::SinglePar | Update::FitCursor);
1802                         return true;
1803                 }
1804
1805                 if (cur.popForward()) {
1806                         // FIXME: we have to enable full redraw here because of the
1807                         // visual box corners that define the inset. If we know for
1808                         // sure that we stay within the same cell we can optimize for
1809                         // that using:
1810                         //cur.screenUpdateFlags(Update::FitCursor);
1811                         return true;
1812                 }
1813
1814                 // if we are at the very end, leave the formula
1815                 return cur.pos() != cur.lastpos();
1816         }
1817
1818         // These should be treated differently when not in text mode:
1819         if (cur.inRegexped()) {
1820                 switch (c) {
1821                 case '^':
1822                         cur.niceInsert(createInsetMath("mathcircumflex", buf));
1823                         break;
1824                 case '{':
1825                 case '}':
1826                 case '#':
1827                 case '%':
1828                 case '_':
1829                         cur.niceInsert(createInsetMath(docstring(1, c), buf));
1830                         break;
1831                 case '~':
1832                         cur.niceInsert(createInsetMath("sim", buf));
1833                         break;
1834                 default:
1835                         cur.insert(c);
1836                 }
1837                 return true;
1838         } else if (currentMode() != InsetMath::TEXT_MODE) {
1839                 if (c == '_') {
1840                         script(cur, false, save_selection);
1841                         return true;
1842                 }
1843                 if (c == '^') {
1844                         script(cur, true, save_selection);
1845                         return true;
1846                 }
1847                 if (c == '~') {
1848                         cur.niceInsert(createInsetMath("sim", buf));
1849                         return true;
1850                 }
1851                 if (currentMode() == InsetMath::MATH_MODE && Encodings::isUnicodeTextOnly(c)) {
1852                         MathAtom at = createInsetMath("text", buf);
1853                         at.nucleus()->cell(0).push_back(MathAtom(new InsetMathChar(c)));
1854                         cur.niceInsert(at);
1855                         cur.posForward();
1856                         return true;
1857                 }
1858         } else {
1859                 if (c == '^') {
1860                         cur.niceInsert(createInsetMath("textasciicircum", buf));
1861                         return true;
1862                 }
1863                 if (c == '~') {
1864                         cur.niceInsert(createInsetMath("textasciitilde", buf));
1865                         return true;
1866                 }
1867         }
1868
1869         if (c == '{' || c == '}' || c == '&' || c == '$' || c == '#' ||
1870             c == '%' || c == '_') {
1871                 cur.niceInsert(createInsetMath(docstring(1, c), buf));
1872                 return true;
1873         }
1874
1875
1876         // try auto-correction
1877         if (lyxrc.autocorrection_math && cur.autocorrect() && cur.pos() != 0
1878                   && math_autocorrect(cur.prevAtom(), c))
1879                 return true;
1880
1881         // no special circumstances, so insert the character without any fuss
1882         cur.insert(c);
1883         if (lyxrc.autocorrection_math) {
1884                 if (!cur.autocorrect())
1885                         cur.message(_("Autocorrect Off ('!' to enter)"));
1886                 else
1887                         cur.message(_("Autocorrect On (<space> to exit)"));
1888         }
1889         return true;
1890 }
1891
1892
1893 bool InsetMathNest::interpretString(Cursor & cur, docstring const & str)
1894 {
1895         // Create a InsetMathBig from cur.cell()[cur.pos() - 1] and t if
1896         // possible
1897         if (!cur.empty() && cur.pos() > 0 &&
1898             cur.cell()[cur.pos() - 1]->asUnknownInset()) {
1899                 if (InsetMathBig::isBigInsetDelim(str)) {
1900                         docstring prev = asString(cur.cell()[cur.pos() - 1]);
1901                         if (prev[0] == '\\') {
1902                                 prev = prev.substr(1);
1903                                 latexkeys const * l = in_word_set(prev);
1904                                 if (l && l->inset == "big") {
1905                                         cur.cell()[cur.pos() - 1] =
1906                                                 MathAtom(new InsetMathBig(prev, str));
1907                                         return true;
1908                                 }
1909                         }
1910                 }
1911         }
1912         return false;
1913 }
1914
1915
1916 bool InsetMathNest::script(Cursor & cur, bool up)
1917 {
1918         return script(cur, up, docstring());
1919 }
1920
1921
1922 bool InsetMathNest::script(Cursor & cur, bool up,
1923                 docstring const & save_selection)
1924 {
1925         // Hack to get \^ and \_ working
1926         //lyxerr << "handling script: up: " << up << endl;
1927         if (cur.inMacroMode() && cur.macroName() == "\\") {
1928                 if (up)
1929                         cur.niceInsert(createInsetMath("mathcircumflex", cur.buffer()));
1930                 else
1931                         interpretChar(cur, '_');
1932                 return true;
1933         }
1934
1935         cur.macroModeClose();
1936         if (asScriptInset() && cur.idx() == 0) {
1937                 // we are in a nucleus of a script inset, move to _our_ script
1938                 InsetMathScript * inset = asScriptInset();
1939                 //lyxerr << " going to cell " << inset->idxOfScript(up) << endl;
1940                 inset->ensure(up);
1941                 cur.idx() = inset->idxOfScript(up);
1942                 cur.pos() = 0;
1943         } else if (cur.pos() != 0 && cur.prevAtom()->asScriptInset()) {
1944                 --cur.pos();
1945                 InsetMathScript * inset = cur.nextAtom().nucleus()->asScriptInset();
1946                 cur.push(*inset);
1947                 inset->ensure(up);
1948                 cur.idx() = inset->idxOfScript(up);
1949                 cur.pos() = cur.lastpos();
1950         } else {
1951                 // convert the thing to our left to a scriptinset or create a new
1952                 // one if in the very first position of the array
1953                 if (cur.pos() == 0) {
1954                         //lyxerr << "new scriptinset" << endl;
1955                         cur.insert(new InsetMathScript(buffer_, up));
1956                 } else {
1957                         //lyxerr << "converting prev atom " << endl;
1958                         cur.prevAtom() = MathAtom(new InsetMathScript(buffer_, cur.prevAtom(), up));
1959                 }
1960                 --cur.pos();
1961                 InsetMathScript * inset = cur.nextAtom().nucleus()->asScriptInset();
1962                 // See comment in MathParser.cpp for special handling of {}-bases
1963
1964                 cur.push(*inset);
1965                 cur.idx() = 1;
1966                 cur.pos() = 0;
1967         }
1968         //lyxerr << "inserting selection 1:\n" << save_selection << endl;
1969         cur.niceInsert(save_selection);
1970         cur.resetAnchor();
1971         //lyxerr << "inserting selection 2:\n" << save_selection << endl;
1972         return true;
1973 }
1974
1975
1976 bool InsetMathNest::completionSupported(Cursor const & cur) const
1977 {
1978         return cur.inMacroMode();
1979 }
1980
1981
1982 bool InsetMathNest::inlineCompletionSupported(Cursor const & cur) const
1983 {
1984         return cur.inMacroMode();
1985 }
1986
1987
1988 bool InsetMathNest::automaticInlineCompletion() const
1989 {
1990         return lyxrc.completion_inline_math;
1991 }
1992
1993
1994 bool InsetMathNest::automaticPopupCompletion() const
1995 {
1996         return lyxrc.completion_popup_math;
1997 }
1998
1999
2000 CompletionList const *
2001 InsetMathNest::createCompletionList(Cursor const & cur) const
2002 {
2003         if (!cur.inMacroMode())
2004                 return 0;
2005
2006         return new MathCompletionList(cur);
2007 }
2008
2009
2010 docstring InsetMathNest::completionPrefix(Cursor const & cur) const
2011 {
2012         if (!cur.inMacroMode())
2013                 return docstring();
2014
2015         return cur.activeMacro()->name();
2016 }
2017
2018
2019 bool InsetMathNest::insertCompletion(Cursor & cur, docstring const & s,
2020                                      bool finished)
2021 {
2022         if (!cur.inMacroMode())
2023                 return false;
2024
2025         // append completion to active macro
2026         InsetMathUnknown * inset = cur.activeMacro();
2027         inset->setName(inset->name() + s);
2028
2029         // finish macro
2030         if (finished) {
2031 #if 0
2032                 // FIXME: this creates duplicates in the completion popup
2033                 // which looks ugly. Moreover the changes the list lengths
2034                 // which seems to confuse the popup as well.
2035                 MathCompletionList::addToFavorites(inset->name());
2036 #endif
2037                 lyx::dispatch(FuncRequest(LFUN_SELF_INSERT, " "));
2038         }
2039
2040         return true;
2041 }
2042
2043
2044 void InsetMathNest::completionPosAndDim(Cursor const & cur, int & x, int & y,
2045                                         Dimension & dim) const
2046 {
2047         Inset const * inset = cur.activeMacro();
2048         if (!inset)
2049                 return;
2050
2051         // get inset dimensions
2052         dim = cur.bv().coordCache().insets().dim(inset);
2053         // FIXME: these 3 are no accurate, but should depend on the font.
2054         // Now the popup jumps down if you enter a char with descent > 0.
2055         dim.des += 3;
2056         dim.asc += 3;
2057
2058         // and position
2059         Point xy = cur.bv().coordCache().insets().xy(inset);
2060         x = xy.x_;
2061         y = xy.y_;
2062 }
2063
2064
2065 ////////////////////////////////////////////////////////////////////
2066
2067 MathCompletionList::MathCompletionList(Cursor const & cur)
2068 {
2069         // fill it with macros from the buffer
2070         MacroNameSet macros;
2071         cur.buffer()->listMacroNames(macros);
2072         MacroNameSet::const_iterator it;
2073         for (it = macros.begin(); it != macros.end(); ++it) {
2074                 if (cur.buffer()->getMacro(*it, cur, false))
2075                         locals.push_back("\\" + *it);
2076         }
2077         sort(locals.begin(), locals.end());
2078
2079         if (!globals.empty())
2080                 return;
2081
2082         // fill in global macros
2083         macros.clear();
2084         MacroTable::globalMacros().getMacroNames(macros, false);
2085         //lyxerr << "Globals completion macros: ";
2086         for (it = macros.begin(); it != macros.end(); ++it) {
2087                 //lyxerr << "\\" + *it << " ";
2088                 globals.push_back("\\" + *it);
2089         }
2090         //lyxerr << std::endl;
2091
2092         // fill in global commands
2093         globals.push_back(from_ascii("\\boxed"));
2094         globals.push_back(from_ascii("\\fbox"));
2095         globals.push_back(from_ascii("\\framebox"));
2096         globals.push_back(from_ascii("\\makebox"));
2097         globals.push_back(from_ascii("\\kern"));
2098         globals.push_back(from_ascii("\\xhookrightarrow"));
2099         globals.push_back(from_ascii("\\xhookleftarrow"));
2100         globals.push_back(from_ascii("\\xrightarrow"));
2101         globals.push_back(from_ascii("\\xRightarrow"));
2102         globals.push_back(from_ascii("\\xrightharpoondown"));
2103         globals.push_back(from_ascii("\\xrightharpoonup"));
2104         globals.push_back(from_ascii("\\xrightleftharpoons"));
2105         globals.push_back(from_ascii("\\xleftarrow"));
2106         globals.push_back(from_ascii("\\xLeftarrow"));
2107         globals.push_back(from_ascii("\\xleftharpoondown"));
2108         globals.push_back(from_ascii("\\xleftharpoonup"));
2109         globals.push_back(from_ascii("\\xleftrightarrow"));
2110         globals.push_back(from_ascii("\\xLeftrightarrow"));
2111         globals.push_back(from_ascii("\\xleftrightharpoons"));
2112         globals.push_back(from_ascii("\\xmapsto"));
2113         globals.push_back(from_ascii("\\split"));
2114         globals.push_back(from_ascii("\\gathered"));
2115         globals.push_back(from_ascii("\\aligned"));
2116         globals.push_back(from_ascii("\\alignedat"));
2117         globals.push_back(from_ascii("\\cases"));
2118         globals.push_back(from_ascii("\\substack"));
2119         globals.push_back(from_ascii("\\xymatrix"));
2120         globals.push_back(from_ascii("\\Diagram"));
2121         globals.push_back(from_ascii("\\subarray"));
2122         globals.push_back(from_ascii("\\array"));
2123         globals.push_back(from_ascii("\\sqrt"));
2124         globals.push_back(from_ascii("\\root"));
2125         globals.push_back(from_ascii("\\tabular"));
2126         globals.push_back(from_ascii("\\sideset"));
2127         globals.push_back(from_ascii("\\stackrel"));
2128         globals.push_back(from_ascii("\\stackrelthree"));
2129         globals.push_back(from_ascii("\\binom"));
2130         globals.push_back(from_ascii("\\choose"));
2131         globals.push_back(from_ascii("\\brace"));
2132         globals.push_back(from_ascii("\\brack"));
2133         globals.push_back(from_ascii("\\frac"));
2134         globals.push_back(from_ascii("\\over"));
2135         globals.push_back(from_ascii("\\nicefrac"));
2136         globals.push_back(from_ascii("\\unitfrac"));
2137         globals.push_back(from_ascii("\\unitfracthree"));
2138         globals.push_back(from_ascii("\\unitone"));
2139         globals.push_back(from_ascii("\\unittwo"));
2140         globals.push_back(from_ascii("\\infer"));
2141         globals.push_back(from_ascii("\\atop"));
2142         globals.push_back(from_ascii("\\lefteqn"));
2143         globals.push_back(from_ascii("\\boldsymbol"));
2144         globals.push_back(from_ascii("\\bm"));
2145         globals.push_back(from_ascii("\\color"));
2146         globals.push_back(from_ascii("\\normalcolor"));
2147         globals.push_back(from_ascii("\\textcolor"));
2148         globals.push_back(from_ascii("\\cfrac"));
2149         globals.push_back(from_ascii("\\cfracleft"));
2150         globals.push_back(from_ascii("\\cfracright"));
2151         globals.push_back(from_ascii("\\dfrac"));
2152         globals.push_back(from_ascii("\\tfrac"));
2153         globals.push_back(from_ascii("\\dbinom"));
2154         globals.push_back(from_ascii("\\tbinom"));
2155         globals.push_back(from_ascii("\\hphantom"));
2156         globals.push_back(from_ascii("\\phantom"));
2157         globals.push_back(from_ascii("\\vphantom"));
2158         globals.push_back(from_ascii("\\cancel"));
2159         globals.push_back(from_ascii("\\bcancel"));
2160         globals.push_back(from_ascii("\\xcancel"));
2161         globals.push_back(from_ascii("\\cancelto"));
2162         globals.push_back(from_ascii("\\smash"));
2163         globals.push_back(from_ascii("\\mathclap"));
2164         globals.push_back(from_ascii("\\mathllap"));
2165         globals.push_back(from_ascii("\\mathrlap"));
2166         globals.push_back(from_ascii("\\ensuremath"));
2167         MathWordList const & words = mathedWordList();
2168         MathWordList::const_iterator it2;
2169         //lyxerr << "Globals completion commands: ";
2170         for (it2 = words.begin(); it2 != words.end(); ++it2) {
2171                 if (it2->second.inset != "macro" && !it2->second.hidden) {
2172                         // macros are already read from MacroTable::globalMacros()
2173                         globals.push_back('\\' + it2->first);
2174                         //lyxerr << '\\' + it2->first << ' ';
2175                 }
2176         }
2177         //lyxerr << std::endl;
2178         sort(globals.begin(), globals.end());
2179 }
2180
2181
2182 MathCompletionList::~MathCompletionList()
2183 {
2184 }
2185
2186
2187 size_type MathCompletionList::size() const
2188 {
2189         return locals.size() + globals.size();
2190 }
2191
2192
2193 docstring const & MathCompletionList::data(size_t idx) const
2194 {
2195         size_t lsize = locals.size();
2196         if (idx >= lsize)
2197                 return globals[idx - lsize];
2198         else
2199                 return locals[idx];
2200 }
2201
2202
2203 std::string MathCompletionList::icon(size_t idx) const
2204 {
2205         // get the latex command
2206         docstring cmd;
2207         size_t lsize = locals.size();
2208         if (idx >= lsize)
2209                 cmd = globals[idx - lsize];
2210         else
2211                 cmd = locals[idx];
2212
2213         // get the icon resource name by stripping the backslash
2214         docstring icon_name = frontend::Application::mathIcon(cmd.substr(1));
2215         if (icon_name.empty())
2216                 return std::string();
2217         return "images/math/" + to_utf8(icon_name);
2218 }
2219
2220 std::vector<docstring> MathCompletionList::globals;
2221
2222 } // namespace lyx