]> git.lyx.org Git - lyx.git/blobdiff - src/mathed/math_cursor.C
Fix broken left movement (and some other things using prevInset())
[lyx.git] / src / mathed / math_cursor.C
index 51eeedf525eac21c0568fe42ea8135355639bfc5..ace2f1228954417531070986fce3b4259629c3b5 100644 (file)
 #endif
 
 #include <config.h>
+#include <algorithm>
 #include <cctype>
 
-#include "math_inset.h"
-#include "math_arrayinset.h"
-#include "math_parser.h"
-#include "math_cursor.h"
-#include "math_macro.h"
-#include "math_macroarg.h"
-#include "math_macrotable.h"
-#include "math_root.h"
-#include "support/lstrings.h"
 #include "debug.h"
 #include "LColor.h"
 #include "Painter.h"
-#include "math_matrixinset.h"
-#include "math_grid.h"
-#include "math_spaceinset.h"
-#include "math_funcinset.h"
+#include "mathed/support.h"
+#include "formulabase.h"
+#include "math_cursor.h"
+#include "math_arrayinset.h"
 #include "math_bigopinset.h"
-#include "math_fracinset.h"
+#include "math_symbolinset.h"
 #include "math_decorationinset.h"
-#include "math_dotsinset.h"
 #include "math_deliminset.h"
+#include "math_dotsinset.h"
+#include "math_fracinset.h"
+#include "math_funcinset.h"
+#include "math_funcliminset.h"
+#include "math_gridinset.h"
+#include "math_macro.h"
+#include "math_macroarg.h"
+#include "math_macrotable.h"
 #include "math_macrotemplate.h"
+#include "math_matrixinset.h"
+#include "math_rootinset.h"
+#include "math_spaceinset.h"
 #include "math_sqrtinset.h"
+#include "support/lstrings.h"
 #include "math_scriptinset.h"
-#include "mathed/support.h"
-#include "formulabase.h"
-
+#include "math_parser.h"
 
 using std::endl;
 using std::min;
@@ -58,236 +59,283 @@ using std::isalnum;
 
 namespace {
 
-MathArray selarray;
+struct Selection
+{
+       void grab(MathCursor const & cursor)
+       {
+               data_.clear();
+               MathCursorPos i1;
+               MathCursorPos i2;
+               cursor.getSelection(i1, i2); 
+               if (i1.idx_ == i2.idx_)
+                       data_.push_back(MathArray(i1.cell(), i1.pos_, i2.pos_));
+               else {
+                       std::vector<int> indices = i1.par_->idxBetween(i1.idx_, i2.idx_);
+                       for (unsigned i = 0; i < indices.size(); ++i)
+                               data_.push_back(i1.cell(indices[i]));
+               }
+       }
+
+       void erase(MathCursor & cursor)
+       {
+               MathCursorPos i1;
+               MathCursorPos i2;
+               cursor.getSelection(i1, i2); 
+               if (i1.idx_ == i2.idx_) {
+                       i1.cell().erase(i1.pos_, i2.pos_);
+               } else {
+                       std::vector<int> indices = i1.par_->idxBetween(i1.idx_, i2.idx_);
+                       for (unsigned i = 0; i < indices.size(); ++i)
+                               i1.cell(indices[i]).erase();
+               }
+               cursor.cursor() = i1;
+       }
+
+       void paste(MathCursor & cursor) const
+       {
+               cursor.insert(glue());
+       }
 
-bool IsMacro(short tok, int id)
+       // glues selection to one cell
+       MathArray glue() const
+       {
+               MathArray ar;
+               for (unsigned i = 0; i < data_.size(); ++i)
+                       ar.push_back(data_[i]);
+               return ar;
+       }
+
+       void clear()
+       {
+               data_.clear();
+       }
+
+       std::vector<MathArray> data_;
+};
+
+
+Selection theSelection;
+
+
+std::ostream & operator<<(std::ostream & os, MathCursorPos const & p)
 {
-       return tok != LM_TK_STACK &&
-              tok != LM_TK_FRAC &&
-              tok != LM_TK_SQRT &&
-              tok != LM_TK_DECORATION &&
-              tok != LM_TK_SPACE &&
-              tok != LM_TK_DOTS &&
-              tok != LM_TK_FUNCLIM &&
-              tok != LM_TK_BIGSYM &&
-              !(tok == LM_TK_SYM && id < 255);
+       os << "(par: " << p.par_ << " idx: " << p.idx_
+          << " pos: " << p.pos_ << ")";
+       return os;
 }
 
 }
 
+
 MathCursor::MathCursor(InsetFormulaBase * formula)
-       : formula_(formula)
+       : formula_(formula), lastcode_(LM_TC_MIN), imacro_(0), selection_(false)
 {
-       lastcode   = LM_TC_MIN;
-       macro_mode = false;
        first();
 }
 
 
+MathCursor::~MathCursor()
+{
+       delete imacro_;
+}
+
 void MathCursor::push(MathInset * par, bool first)
 {
-       path_.push_back(MathIter());
-       path_.back().par_    = par_;
-       path_.back().idx_    = idx_;
-       path_.back().cursor_ = cursor_;
-       dump("Pushed:");
-       par_ = par;
-       first ? par_->idxFirst(idx_, cursor_) : par_->idxLast(idx_, cursor_);
+       MathCursorPos p;
+       p.par_ = par;
+       if (first)
+               par->idxFirst(p.idx_, p.pos_);
+       else
+               par->idxLast(p.idx_, p.pos_);
+       Cursor_.push_back(p);
 }
 
 
 bool MathCursor::pop()
 {
-       if (path_.empty())
+       if (Cursor_.size() <= 1)
                return false;
-       par_    = path_.back().par_;
-       idx_    = path_.back().idx_;
-       cursor_ = path_.back().cursor_;
-       dump("Popped:");
-       path_.pop_back();
+       Cursor_.pop_back();
        return true;
 }
 
 
 MathInset * MathCursor::parInset(int i) const
 {
-       return path_[i].par_;
+       return Cursor_[i].par_;
 }
 
+
 void MathCursor::dump(char const * what) const
 {
        return;
 
-       lyxerr << "MC: " << what
-               << " cursor: " << cursor_
-               << " anchor: " << anchor_
-               << " idx: " << idx_
-               << " par: " << par_
-               << " sel: " << selection
-               << " data: " << array()
-               << "\n";
+       lyxerr << "MC: " << what << "\n";
+       for (unsigned i = 0; i < Cursor_.size(); ++i)
+               lyxerr << "  i: " << i 
+                       << " pos: " << Cursor_[i].pos_
+                       << " idx: " << Cursor_[i].idx_
+                       << " par: " << Cursor_[i].par_ << "\n";
+
+       //lyxerr        << " sel: " << selection_ << " data: " << array() << "\n";
 }
 
+
 void MathCursor::seldump(char const * str) const
 {
-       lyxerr << "SEL: " << str << ": '" << selarray << "'\n";
-       dump("   Pos");
+       //lyxerr << "SEL: " << str << ": '" << theSelection << "'\n";
+       //dump("   Pos");
        return;
 
-       lyxerr << "\n\n\\n=================vvvvvvvvvvvvv=======================   "
-               <<  str << "\nselarray: " << selarray;
-       for (unsigned int i = 0; i < path_.size(); ++i) 
-               lyxerr << path_[i].par_ << "\n'" << path_[i].par_->cell(0) << "'\n";
-       lyxerr << "\ncursor: " << cursor_;
-       lyxerr << "\nanchor: " << anchor_;
+       lyxerr << "\n\n\n=================vvvvvvvvvvvvv=======================   "
+               <<  str << "\ntheSelection: " << selection_
+               << " '" << theSelection.glue() << "'\n";
+       for (unsigned int i = 0; i < Cursor_.size(); ++i) 
+               lyxerr << Cursor_[i].par_ << "\n'" << Cursor_[i].cell() << "'\n";
+       lyxerr << "\n";
+       for (unsigned int i = 0; i < Anchor_.size(); ++i) 
+               lyxerr << Anchor_[i].par_ << "\n'" << Anchor_[i].cell() << "'\n";
+       //lyxerr << "\ncursor.pos_: " << cursor().pos_;
+       //lyxerr << "\nanchor.pos_: " << anchor().pos_;
        lyxerr << "\n===================^^^^^^^^^^^^=====================\n\n\n";
 }
 
 
-bool MathCursor::isInside(MathInset * p) const
+bool MathCursor::isInside(MathInset const * p) const
 {
-       for (unsigned i = 0; i < path_.size(); ++i) 
+       for (unsigned i = 0; i < Cursor_.size(); ++i) 
                if (parInset(i) == p) 
                        return true;
-       return par_ == p;
+       return false;
+}
+
+
+bool MathCursor::openable(MathInset * p, bool sel, bool useupdown) const
+{
+       if (!p)
+               return false;
+
+       if (!(p->isActive() || (useupdown && p->isScriptInset())))
+               return false;
+
+       if (sel) {
+               // we can't move into anything new during selection
+               if (Cursor_.size() == Anchor_.size())
+                       return false;
+               if (p != Anchor_[Cursor_.size()].par_)
+                       return false;
+       }
+       return true;
+}
+
+
+void MathCursor::plainLeft()
+{
+       --cursor().pos_;
 }
 
 
-bool MathCursor::Left(bool sel)
+void MathCursor::plainRight()
+{
+       ++cursor().pos_;
+}
+
+
+bool MathCursor::left(bool sel)
 {
        dump("Left 1");
-       if (macro_mode) {
+       if (imacro_) {
                // was MacroModeBack()
-               if (!imacro->name().empty()) {
-                       imacro->SetName(imacro->name().substr(0, imacro->name().length()-1));
-                       imacro->Metrics(imacro->size());
+               if (!imacro_->name().empty()) {
+                       imacro_->setName(imacro_->name().substr(0, imacro_->name().length()-1));
+                       imacro_->metrics(imacro_->size());
                } else
-                       MacroModeClose();
+                       macroModeClose();
                return true;
        }
+       selHandle(sel);
        clearLastCode();
-       SelHandle(sel);
-
-       bool result = false;
 
-       if (selection) {
-               result = array().prev(cursor_);
-               if (!result && pop()) {
-                       anchor_ = cursor_;
-                       result = array().next(anchor_);
-               }
-       } else {
-               MathInset * p = prevInset();
-               if (p && p->isActive()) {
-                       // We have to move deeper into the previous inset
-                       array().prev(cursor_);
-                       push(p, false);
-                       result = true;
-               } else {
-                       // The common case, where we are not 
-                       // entering a deeper inset
-                       result = array().prev(cursor_);
-                       if (!result) {
-                               if (par_->idxLeft(idx_, cursor_)) {
-                                       result = true;
-                               } else if (pop()) {
-                                       result = true;
-                               }
-                       }
-               }
+       MathInset * p = prevInset();
+       if (openable(p, sel, false)) {
+               plainLeft();
+               push(p, false);
+               return true;
+       } 
+       if (cursor().pos_) {
+               plainLeft();
+               return true;
        }
-       dump("Left 2");
-       return result;
-}
-
-
-bool MathCursor::plainRight()
-{
-       return array().next(cursor_);
+       if (cursor().par_->idxLeft(cursor().idx_, cursor().pos_))
+               return true;
+       if (pop())
+               return true;
+       return false;
 }
 
 
-bool MathCursor::Right(bool sel)
+bool MathCursor::right(bool sel)
 {
        dump("Right 1");
-       if (macro_mode) {
-               MacroModeClose();
+       if (imacro_) {
+               macroModeClose();
                return true;
        }
-
+       selHandle(sel);
        clearLastCode();
-       SelHandle(sel);
-
-       bool result = false;
 
-       if (selection) {
-               result = array().next(cursor_);
-               if (!result && pop()) {
-                       anchor_ = cursor_;
-                       result = array().next(cursor_);
-               }
-       } else {
-               MathInset * p = nextInset();
-               if (p && p->isActive()) {
-                       push(p, true);
-                       result = true;
-               } else {
-                       result = array().next(cursor_);
-                       if (!result) {
-                               if (par_->idxRight(idx_, cursor_)) {
-                                       result = true;
-                               } else if (pop()) {
-                                       result = true;
-                                       array().next(cursor_);
-                               }
-                       }
-               }
+       MathInset * p = nextInset();
+       if (openable(p, sel, false)) {
+               push(p, true);
+               return true;
+       }
+       if (cursor().pos_ != array().size()) {
+               plainRight();
+               return true;
+       }
+       if (cursor().par_->idxRight(cursor().idx_, cursor().pos_)) {
+               return true;
+       }
+       if (pop()) {
+               plainRight();
+               return true;
        }
-       dump("Right 2");
-       return result;
+       return false;
 }
 
 
 void MathCursor::first()
 {
-       selection  = false;
-       par_       = formula_->par();
-       idx_       = 0;
-       cursor_    = 0;
-       anchor_    = 0;
-       par_->idxFirst(idx_, cursor_);
+       Cursor_.clear();
+       push(outerPar(), true);
 }
 
 
 void MathCursor::last()
 {
-       selection  = false;
-       par_       = formula_->par();
-       idx_       = 0;
-       cursor_    = 0;
-       anchor_    = 0;
-       par_->idxLast(idx_, cursor_);
+       Cursor_.clear();
+       push(outerPar(), false);
 }
 
 
-void MathCursor::SetPos(int x, int y)
+void MathCursor::setPos(int x, int y)
 {
-       dump("SetPos 1");
-       //lyxerr << "MathCursor::SetPos x: " << x << " y: " << y << "\n";
+       dump("setPos 1");
+       //lyxerr << "MathCursor::setPos x: " << x << " y: " << y << "\n";
 
-       MacroModeClose();
-       lastcode = LM_TC_MIN;
-       path_.clear();
+       macroModeClose();
+       lastcode_ = LM_TC_MIN;
+       first();
 
-       par_    = formula()->par();
+       cursor().par_  = outerPar();
 
        while (1) {
-               idx_    = -1;
-               cursor_ = -1;
-               //lyxerr << "found idx: " << idx_ << " cursor: " << cursor_  << "\n";
+               cursor().idx_ = -1;
+               cursor().pos_ = -1;
+               //lyxerr << "found idx: " << idx_ << " cursor: " << cursor().pos_  << "\n";
                int distmin = 1 << 30; // large enough
-               for (int i = 0; i < par_->nargs(); ++i) {
-                       MathXArray const & ar = par_->xcell(i);
+               for (int i = 0; i < cursor().par_->nargs(); ++i) {
+                       MathXArray const & ar = cursor().par_->xcell(i);
                        int x1 = x - ar.xo();
                        int y1 = y - ar.yo();
                        int c  = ar.x2pos(x1);
@@ -296,208 +344,230 @@ void MathCursor::SetPos(int x, int y)
                        //lyxerr << "idx: " << i << " xx: " << xx << " yy: " << yy
                        //      << " c: " << c  << " xo: " << ar.xo() << "\n";
                        if (yy + xx <= distmin) {
-                               distmin = yy + xx;
-                               idx_     = i;
-                               cursor_  = c;
+                               distmin        = yy + xx;
+                               cursor().idx_  = i;
+                               cursor().pos_  = c;
                        }
                }
-               lyxerr << "found idx: " << idx_ << " cursor: " << cursor_  << "\n";
+               //lyxerr << "found idx: " << cursor().idx_ << " cursor: "
+               //      << cursor().pos_  << "\n";
                MathInset * n = nextInset();
                MathInset * p = prevInset();
-               if (n && (n->isActive() || n->isUpDownInset()) && n->covers(x, y))
+               if (openable(n, selection_, true) && n->covers(x, y))
                        push(n, true);
-               else if (p && (p->isActive() || p->isUpDownInset()) && p->covers(x, y)) {
-                       array().prev(cursor_);
+               else if (openable(p, selection_, true) && p->covers(x, y)) {
+                       plainLeft();
                        push(p, false);
                } else 
                        break;
        }
-       dump("SetPos 2");
+       dump("setPos 2");
 }
 
 
-void MathCursor::Home()
+void MathCursor::home()
 {
-       dump("Home 1");
-       if (macro_mode)
-               MacroModeClose();
+       dump("home 1");
+       macroModeClose();
        clearLastCode();
-       if (!par_->idxHome(idx_, cursor_)) {
+       if (!cursor().par_->idxHome(cursor().idx_, cursor().pos_)) 
                pop();
-       }
-       dump("Home 2");
+       dump("home 2");
 }
 
 
-void MathCursor::End()
+void MathCursor::end()
 {
-       dump("End 1");
-       if (macro_mode)
-               MacroModeClose();
+       dump("end 1");
+       macroModeClose();
        clearLastCode();
-       if (!par_->idxEnd(idx_, cursor_)) {
+       if (!cursor().par_->idxEnd(cursor().idx_, cursor().pos_)) {
                pop();
-               array().next(cursor_);
+               ++cursor().pos_;
        }
-       dump("End 2");
+       dump("end 2");
+}
+
+
+void MathCursor::plainErase()
+{
+       array().erase(cursor().pos_);
 }
 
 
 void MathCursor::insert(char c, MathTextCodes t)
 {
        //lyxerr << "inserting '" << c << "'\n";
-       if (selection)
-               SelDel();
+       if (selection_)
+               selDel();
 
-       if (t == LM_TC_MIN)
-               t = lastcode;
+       if (t != LM_TC_MIN)
+               lastcode_ = t;
 
-       if (macro_mode && !(MathIsAlphaFont(t) || t == LM_TC_MIN))
-               MacroModeClose();
+       if (imacro_ && !(MathIsAlphaFont(t) || t == LM_TC_MIN))
+               macroModeClose();
 
-       if (macro_mode) {
+       if (imacro_) {
                if (MathIsAlphaFont(t) || t == LM_TC_MIN) {
                        // was MacroModeinsert(c);
-                       imacro->SetName(imacro->name() + static_cast<char>(c));
+                       imacro_->setName(imacro_->name() + c);
                        return;
                }
        }
 
-       array().insert(cursor_, c, t);
-       array().next(cursor_);
-
-       lastcode = t;
+       array().insert(cursor().pos_, c, t);
+       plainRight();
 }
 
 
 void MathCursor::insert(MathInset * p)
 {
-       MacroModeClose();
+       macroModeClose();
 
-       if (selection) {
+       if (selection_) {
                if (p->nargs())
-                       SelCut();
+                       selCut();
                else
-                       SelDel();
+                       selDel();
        }
 
-       array().insert(cursor_, p);
-       array().next(cursor_);
+       array().insert(cursor().pos_, p);
+       plainRight();
 }
 
 
-void MathCursor::Delete()
+void MathCursor::insert(MathArray const & ar)
 {
-       dump("Delete 1");
-       if (macro_mode)
+       macroModeClose();
+       if (selection_)
+               selCut();
+
+       array().insert(cursor().pos_, ar);
+       cursor().pos_ += ar.size();
+}
+
+
+void MathCursor::erase()
+{
+       dump("erase 1");
+       if (imacro_)
                return;
 
-       if (selection) {
-               SelDel();
+       if (selection_) {
+               selDel();
                return;
        }
 
-       if (cursor_ < array().size())
-               array().erase(cursor_);
-
        // delete empty cells if necessary
-       if (cursor_ == 0 && array().size() == 0) {
+       if (cursor().pos_ == 0 && array().empty()) {
                bool popit;
                bool removeit;
-               par_->idxDelete(idx_, popit, removeit);
+               cursor().par_->idxDelete(cursor().idx_, popit, removeit);
                if (popit && pop() && removeit)
-                       Delete();
+                       plainErase();
+               return;
        }
 
-#ifdef WITH_WARNINGS
-#warning pullArg disabled
-#endif
-       //if (cursor_ == 0 && !path_.empty()) {
-       //      lyxerr << "Delete: popping...\n";
-       //      pop();
-       //}
+       if (cursor().pos_ < array().size())
+               plainErase();
 
-       dump("Delete 2");
+       dump("erase 2");
 }
 
 
-void MathCursor::DelLine()
+void MathCursor::delLine()
 {
-       MacroModeClose();
+       macroModeClose();
 
-       if (selection) {
-               SelDel();
+       if (selection_) {
+               selDel();
                return;
        }
 
-       if (par_->nrows() > 1)
-               par_->delRow(row());
+       if (cursor().par_->nrows() > 1)
+               cursor().par_->delRow(row());
 }
 
 
-bool MathCursor::Up(bool sel)
+bool MathCursor::up(bool sel)
 {
-       dump("Up 1");
-       MacroModeClose();
-       SelHandle(sel);
-       SelClear();
+       dump("up 1");
+       macroModeClose();
+       selHandle(sel);
+
+       if (selection_) {
+               int x = xarray().pos2x(cursor().pos_);
+               if (cursor().idxDown()) {
+                       cursor().pos_ = xarray().x2pos(x);
+                       return true;
+               }
+               if (pop()) 
+                       return true;
+               return false;
+       }
 
        // check whether we could move into an inset on the right or on the left
        MathInset * p = nextInset();
        if (p) {
-               int idx, cursor;
-               if (p->idxFirstUp(idx, cursor)) {
+               int idx, pos;
+               if (p->idxFirstUp(idx, pos)) {
                        push(p, true);
-                       par_ = p;
-                       idx_    = idx;
-                       cursor_ = cursor;
-                       dump("Up 3");
+                       cursor().idx_ = idx;
+                       cursor().pos_ = pos;
+                       dump("up 3");
                        return true;
                }
        }
 
        p = prevInset();
        if (p) {
-               int idx, cursor;
-               if (p->idxLastUp(idx, cursor)) {
-                       array().prev(cursor_);
+               int idx, pos;
+               if (p->idxLastUp(idx, pos)) {
+                       plainLeft();
                        push(p, false);
-                       par_ = p;
-                       idx_    = idx;
-                       cursor_ = cursor;
-                       dump("Up 4");
+                       cursor().idx_ = idx;
+                       cursor().pos_ = pos;
+                       dump("up 4");
                        return true;
                }
        }
 
-
-       int x = xarray().pos2x(cursor_);
-       bool result = par_->idxUp(idx_, cursor_);
-       if (!result && pop()) {
-               result = par_->idxUp(idx_, cursor_);
+       int x = xarray().pos2x(cursor().pos_);
+       if (cursor().idxUp()) {
+               cursor().pos_ = xarray().x2pos(x);
+               return true;
        }
-       cursor_ = xarray().x2pos(x);
-
-       dump("Up 2");
-       return result;
+       if (pop())
+               return true;
+       return false;
 }
 
 
-bool MathCursor::Down(bool sel)
+bool MathCursor::down(bool sel)
 {
-       dump("Down 1");
-       MacroModeClose();
-       SelHandle(sel);
-       SelClear();
+       dump("down 1");
+       macroModeClose();
+       selHandle(sel);
+
+       if (selection_) {
+               int x = xarray().pos2x(cursor().pos_);
+               if (cursor().idxDown()) {
+                       cursor().pos_ = xarray().x2pos(x);
+                       return true;
+               }
+               if (pop()) 
+                       return true;
+               return false;
+       }
 
        // check whether we could move into an inset on the right or on the left
        MathInset * p = nextInset();
        if (p) {
-               int idx, cursor;
-               if (p->idxFirstDown(idx, cursor)) {
+               int idx, pos;
+               if (p->idxFirstDown(idx, pos)) {
                        push(p, true);
-                       idx_    = idx;
-                       cursor_ = cursor;
+                       cursor().idx_ = idx;
+                       cursor().pos_ = pos;
                        dump("Down 3");
                        return true;
                }
@@ -505,75 +575,78 @@ bool MathCursor::Down(bool sel)
 
        p = prevInset();
        if (p) {
-               int idx, cursor;
-               if (p->idxLastDown(idx, cursor)) {
-                       array().prev(cursor_);
+               int idx, pos;
+               if (p->idxLastDown(idx, pos)) {
+                       plainLeft();
                        push(p, false);
-                       idx_    = idx;
-                       cursor_ = cursor;
+                       cursor().idx_ = idx;
+                       cursor().pos_ = pos;
                        dump("Down 4");
                        return true;
                }
        }
 
-       int x = xarray().pos2x(cursor_);
-       bool result = par_->idxDown(idx_, cursor_);
-       if (!result && pop()) {
-               result = par_->idxDown(idx_, cursor_);
+       int x = xarray().pos2x(cursor().pos_);
+       if (cursor().idxDown()) {
+               cursor().pos_ = xarray().x2pos(x);
+               return true;
        }
-       cursor_ = xarray().x2pos(x);
-
-       dump("Down 2");
-       return result;
+       if (pop())
+               return true;
+       return false;
 }
 
 
 bool MathCursor::toggleLimits()
 {
-       if (!prevIsInset())
+       MathScriptInset * p = prevScriptInset();
+       if (!p)
                return false;
-       MathInset * p = prevInset();
        int old = p->limits();
        p->limits(old < 0 ? 1 : -1);
        return old != p->limits();
 }
 
 
-void MathCursor::SetSize(MathStyles size)
+void MathCursor::setSize(MathStyles size)
 {
-       par_->UserSetSize(size);
+       cursor().par_->userSetSize(size);
 }
 
 
 
-void MathCursor::Interpret(string const & s)
+void MathCursor::interpret(string const & s)
 {
-       lyxerr << "Interpret: '" << s << "'  ('" << s.substr(0, 7)  << "' " <<
-in_word_set(s) << " \n";
+       //lyxerr << "interpret: '" << s << "'\n";
+       //lyxerr << "in: " << in_word_set(s) << " \n";
 
-       if (s[0] == '^') {
-               MathUpDownInset * p = nearbyUpDownInset();
-               if (!p) {
-                       p = new MathScriptInset(true, false);
-                       insert(p);
-                       array().prev(cursor_);
-               }
-               push(p, true);
-               p->up(true);
-               idx_ = 0;
+       if (s.empty())
                return;
-       }
 
-       if (s[0] == '_') {
-               MathUpDownInset * p = nearbyUpDownInset();
+       if (s[0] == '^' || s[0] == '_') {
+               bool const up = (s[0] == '^');
+               selCut();       
+               MathScriptInset * p = prevScriptInset();
                if (!p) {
-                       p = new MathScriptInset(false, true);
+                       MathInset * b = prevInset();
+                       if (b && b->isScriptable()) {
+                               p = new MathScriptInset(up, !up, b->clone());
+                               plainLeft();
+                               erase();
+                       } else {
+                               p = new MathScriptInset(up, !up);
+                       }
                        insert(p);
-                       array().prev(cursor_);
+                       plainLeft();
                }
                push(p, true);
-               p->down(true);
-               idx_ = 1;
+               if (up)
+                       p->up(true);
+               else
+                       p->down(true);
+               cursor().idx_ = up ? 0 : 1;
+               cursor().pos_ = 0;
+               selPaste();
                return;
        }
 
@@ -596,32 +669,30 @@ in_word_set(s) << " \n";
                        int n = 1;
                        string v_align;
                        string h_align;
-                       std::istringstream is(s.substr(7).c_str());
+                       istringstream is(s.substr(7).c_str());
                        is >> m >> n >> v_align >> h_align;
                        m = std::max(1, m);
                        n = std::max(1, n);
+                       v_align += 'c';
                        MathArrayInset * pp = new MathArrayInset(m, n);
                        pp->valign(v_align[0]);
                        pp->halign(h_align);
                        p = pp;
                }
                else
-                       p = new MathFuncInset(s, LM_OT_UNDEF);
+                       p = new MathFuncInset(s);
        } else {
                switch (l->token) {
-                       case LM_TK_BIGSYM: 
-                                       p = new MathBigopInset(l->name, l->id);
-                                       break;
-                               
+                       case LM_TK_BIGSYM:
+                               p = new MathBigopInset(l);
+                               break;
+
+                       case LM_TK_FUNCLIM:
+                               p = new MathFuncLimInset(l);
+                               break;
+
                        case LM_TK_SYM: 
-                               if (l->id < 255) {
-                                       insert(static_cast<byte>(l->id), 
-                                              MathIsBOPS(l->id) ?
-                                               LM_TC_BOPS : LM_TC_SYMB);
-                                       
-                               } else {
-                                       p = new MathFuncInset(l->name);
-                               }
+                               p = new MathSymbolInset(l);
                                break;
 
                        case LM_TK_STACK:
@@ -637,11 +708,7 @@ in_word_set(s) << " \n";
                                break;
 
                        case LM_TK_DECORATION:
-                               p = new MathDecorationInset(l->name, l->id);
-                               break;
-
-                       case  LM_TK_FUNCLIM:
-                               p = new MathFuncInset(l->name, LM_OT_FUNCLIM);
+                               p = new MathDecorationInset(l);
                                break;
 
                        case LM_TK_SPACE:
@@ -649,7 +716,7 @@ in_word_set(s) << " \n";
                                break;
 
                        case LM_TK_DOTS:
-                               p = new MathDotsInset(l->name, l->id);
+                               p = new MathDotsInset(l);
                                break;
 
                        case LM_TK_MACRO:
@@ -663,266 +730,216 @@ in_word_set(s) << " \n";
        }
 
        if (p) {
-               bool oldsel = selection;
-               if (oldsel) 
-                       SelCut();
+               selCut();
                insert(p);
                if (p->nargs()) {
-                       array().prev(cursor_);
-                       push(p, true);
-                       if (oldsel) 
-                               SelPaste();
+                       plainLeft();
+                       right();  // do not push for e.g. MathSymbolInset
+                       selPaste();
                }
-               p->Metrics(p->size());
+               p->metrics(p->size());
        }
 }
 
 
-void MathCursor::MacroModeOpen()
+void MathCursor::macroModeOpen()
 {
-       if (!macro_mode) {
-               imacro = new MathFuncInset("");
-               insert(imacro);
-               macro_mode = true;
+       if (!imacro_) {
+               imacro_ = new MathFuncInset("");
+               array().insert(cursor().pos_, imacro_);
+               ++cursor().pos_;
+               //insert(imacro_);
        } else
                lyxerr << "Math Warning: Already in macro mode" << endl;
 }
 
 
-void MathCursor::MacroModeClose()
+void MathCursor::macroModeClose()
 {
-       if (macro_mode)  {
-               macro_mode = false;
-               latexkeys const * l = in_word_set(imacro->name());
-               if (!imacro->name().empty()
-                               && (!l || (l && IsMacro(l->token, l->id)))
-                               && !MathMacroTable::hasTemplate(imacro->name()))
-               {
-                       if (!l) {
-                               //imacro->SetName(macrobf);
-                               // This guarantees that the string will be removed by destructor
-                               imacro->SetType(LM_OT_UNDEF);
-                       } else
-                               imacro->SetName(l->name);
-               } else {
-                       Left();
-                       array().erase(cursor_);
-                       if (l || MathMacroTable::hasTemplate(imacro->name())) 
-                               Interpret(imacro->name());
-                       imacro->SetName(string());
-               }
-               imacro = 0;
+       if (imacro_) {
+               string name = imacro_->name();
+               plainLeft();
+               plainErase();
+               imacro_ = 0;
+               interpret(name);
        }
 }
 
 
-void MathCursor::SelCopy()
+void MathCursor::selCopy()
 {
-       seldump("SelCopy");
-       if (selection) {
-               int const p1 = min(cursor_, anchor_);
-               int const p2 = max(cursor_, anchor_);
-               selarray = array();
-               selarray.erase(p2, selarray.size());
-               selarray.erase(0, p1);
-               SelClear();
+       seldump("selCopy");
+       if (selection_) {
+               theSelection.grab(*this);
+               selClear();
        }
 }
 
-void MathCursor::SelCut()
+
+void MathCursor::selCut()
 {
-       seldump("SelCut");
-       if (selection) {
-               int const p1 = min(cursor_, anchor_);
-               int const p2 = max(cursor_, anchor_);
-               cursor_ = p1;  // move cursor to a same position
-               selarray = array();
-               selarray.erase(p2, selarray.size());
-               selarray.erase(0, p1);
-               array().erase(p1, p2);
-               SelClear();
+       seldump("selCut");
+       if (selection_) {
+               theSelection.grab(*this);
+               theSelection.erase(*this);
+               selClear();
+       } else {
+               theSelection.clear();
        }
 }
 
 
-void MathCursor::SelDel()
+void MathCursor::selDel()
 {
-       seldump("SelDel");
-       if (selection) {
-               int const p1 = min(cursor_, anchor_);
-               int const p2 = max(cursor_, anchor_);
-               array().erase(p1, p2);
-               SelClear();
+       seldump("selDel");
+       if (selection_) {
+               theSelection.erase(*this);
+               selClear();
        }
 }
 
 
-void MathCursor::SelPaste()
+void MathCursor::selPaste()
 {
-       seldump("SelPaste");
-       array().insert(cursor_, selarray);
-       cursor_ += selarray.size();
-       SelClear();
+       seldump("selPaste");
+       theSelection.paste(*this);
+       selClear();
 }
 
-void MathCursor::SelHandle(bool sel)
+
+void MathCursor::selHandle(bool sel)
 {
-       if (sel && !selection)
-               SelStart();
-       if (!sel && selection)
-               SelClear();
+       if (sel == selection_)
+               return;
+
+       theSelection.clear();
+       Anchor_    = Cursor_;
+       selection_ = sel;
 }
 
 
-void MathCursor::SelStart()
+void MathCursor::selStart()
 {
-       seldump("SelStart");
-       if (selection)
+       seldump("selStart");
+       if (selection_)
                return;
 
-       anchor_   = cursor_;
-       selection = true;
+       theSelection.clear();
+       Anchor_ = Cursor_;
+       selection_ = true;
 }
 
 
-void MathCursor::SelClear()
+void MathCursor::selClear()
 {
-       selection = false;
+       seldump("selClear");
+       selection_ = false;
 }
 
 
-
-void MathCursor::SelGetArea(int * xpoint, int * ypoint, int & n)
+void MathCursor::drawSelection(Painter & pain) const
 {
-       if (!selection) {
-               n = 0;
-               xpoint[0] = 0;
-               ypoint[0] = 0;
+       if (!selection_)
                return;
-       }
 
-       // Balance anchor and cursor
-       int xo;
-       int yo;
-       par()->GetXY(xo, yo);
-       int w = par()->width();
-       // cursor
-       int x1 = xarray().xo() + xarray().pos2x(cursor_);
-       int y1 = xarray().yo();
-       //int a1 = xarray().ascent();
-       //int d1 = xarray().descent();
-
-       // anchor
-       int x  = xarray().xo() + xarray().pos2x(anchor_);
-       int y  = xarray().yo();
-       int a  = xarray().ascent();
-       int d  = xarray().descent();
-
-       // single row selection
-       n = 0;
-       xpoint[n]   = x;
-       ypoint[n++] = y + d;
-       xpoint[n]   = x;
-       ypoint[n++] = y - a;
-
-       if (y != y1) {
-               xpoint[n]   = xo + w;
-               ypoint[n++] = y - a;
-
-               if (x1 < xo + w) {
-                       xpoint[n]   = xo + w;
-                       ypoint[n++] = y1 - a;
-               }
-       }
+       MathCursorPos i1;
+       MathCursorPos i2;
+       getSelection(i1, i2);
 
-       xpoint[n]   = x1;
-       ypoint[n++] = y1 - a;
-       xpoint[n]   = x1;
-       ypoint[n++] = y1 + d;
-
-       if (y != y1) {
-               xpoint[n]   = xo;
-               ypoint[n++] = y1 + d;
-               if (x > xo) {
-                       xpoint[n]   = xo;
-                       ypoint[n++] = y + d;
+       //lyxerr << "selection from: " << i1 << " to " << i2 << "\n";
+
+       if (i1.idx_ == i2.idx_) {
+               MathXArray & c = i1.xcell();
+               int x1 = c.xo() + c.pos2x(i1.pos_);
+               int y1 = c.yo() - c.ascent();
+               int x2 = c.xo() + c.pos2x(i2.pos_);
+               int y2 = c.yo() + c.descent();
+               pain.fillRectangle(x1, y1, x2 - x1, y2 - y1, LColor::selection);
+       } else {
+
+               std::vector<int> indices = i1.par_->idxBetween(i1.idx_, i2.idx_);
+               for (unsigned i = 0; i < indices.size(); ++i) {
+                       MathXArray & c = i1.xcell(indices[i]);
+                       int x1 = c.xo();
+                       int y1 = c.yo() - c.ascent();
+                       int x2 = c.xo() + c.width();
+                       int y2 = c.yo() + c.descent();
+                       pain.fillRectangle(x1, y1, x2 - x1, y2 - y1, LColor::selection);
                }
        }
-       xpoint[n]   = xpoint[0];
-       ypoint[n++] = ypoint[0];
-
-       //lyxerr << "AN[" << x << " " << y << " " << x1 << " " << y1 << "]\n";
-       //lyxerr << "MT[" << a << " " << d << " " << a1 << " " << d1 << "]\n";
-       //for (i = 0; i < np; ++i)
-       //      lyxerr << "XY[" << xpoint[i] << " " << ypoint[i] << "]\n";
 }
 
 
 void MathCursor::handleFont(MathTextCodes t)
 {
-       if (selection)  {
-               int const p1 = std::min(cursor_, anchor_);
-               int const p2 = std::max(cursor_, anchor_);
-               MathArray & ar = array();
-               for (int pos = p1; pos != p2; ar.next(pos))
-                       if (!ar.isInset(pos) && isalnum(ar.GetChar(pos))) { 
-                               MathTextCodes c = ar.GetCode(pos) == t ? LM_TC_VAR : t;
-                               ar.setCode(pos, c);
-                       }
-       } else {
-               if (lastcode == t)
-                       lastcode = LM_TC_VAR;
-               else
-                       lastcode = t;
-       }
+       if (selection_) {
+               MathCursorPos i1;
+               MathCursorPos i2;
+               getSelection(i1, i2); 
+               if (i1.idx_ == i2.idx_) {
+                       MathArray & ar = i1.cell();
+                       for (int pos = i1.pos_; pos != i2.pos_; ++pos)
+                               if (isalnum(ar.getChar(pos))) { 
+                                       MathTextCodes c = ar.getCode(pos) == t ? LM_TC_VAR : t;
+                                       ar.setCode(pos, c);
+                               }
+               }
+       } else 
+               lastcode_ = (lastcode_ == t) ? LM_TC_VAR : t;
 }
 
 
-void MathCursor::handleAccent(string const & name, int code)
+void MathCursor::handleAccent(string const & name)
 {
-       MathDecorationInset * p = new MathDecorationInset(name, code);
-       if (selection) {
-               SelCut();
-               p->cell(0) = selarray;
+       latexkeys const * l = in_word_set(name);
+       if (!l)
+               return;
+
+       MathDecorationInset * p = new MathDecorationInset(l);
+       if (selection_) {
+               selCut();
+               p->cell(0) = theSelection.glue();
        }
        insert(p);
        push(p, true);
 }
 
+
 void MathCursor::handleDelim(int l, int r)
 {
        MathDelimInset * p = new MathDelimInset(l, r);
-       if (selection) {
-               SelCut();
-               p->cell(0) = selarray;
+       if (selection_) {
+               selCut();
+               p->cell(0) = theSelection.glue();
        }
        insert(p);
+       plainLeft();
        push(p, true);
 }
 
 
-void MathCursor::GetPos(int & x, int & y)
+void MathCursor::getPos(int & x, int & y)
 {
-       x = xarray().xo() + xarray().pos2x(cursor_);
+       x = xarray().xo() + xarray().pos2x(cursor().pos_);
        y = xarray().yo();
 }
 
 
 MathTextCodes MathCursor::nextCode() const
 {
-       return array().GetCode(cursor_); 
+       return array().getCode(cursor().pos_); 
 }
 
 
 MathTextCodes MathCursor::prevCode() const
 {
-       return array().GetCode(cursor_ - 1); 
+       return array().getCode(cursor().pos_ - 1); 
 }
 
 
 MathInset * MathCursor::par() const
 {
-       return par_;
+       return cursor().par_;
 }
 
 
@@ -934,66 +951,63 @@ InsetFormulaBase const * MathCursor::formula()
 
 int MathCursor::pos() const
 {
-       return cursor_;
+       return cursor().pos_;
 }
 
 
-bool MathCursor::InMacroMode() const
+bool MathCursor::inMacroMode() const
 {
-       return macro_mode;
+       return imacro_;
 }
 
 
-bool MathCursor::Selection() const
+bool MathCursor::selection() const
 {
-       return selection;
+       return selection_;
 }
 
 
 void MathCursor::clearLastCode()
 {
-       lastcode = LM_TC_MIN;
+       lastcode_ = LM_TC_MIN;
 }
 
 
 void MathCursor::setLastCode(MathTextCodes t)
 {
-       lastcode = t;
+       lastcode_ = t;
 }
 
 
 MathTextCodes MathCursor::getLastCode() const
 {
-       return lastcode;
+       return lastcode_;
 }
 
 
-MathInset * MathCursor::enclosing(MathInsetTypes t, int & idx) const
+MathArrayInset * MathCursor::enclosingArray(int & idx) const
 {
-       if (par_->GetType() == t) {
-               //lyxerr << "enclosing par is current\n";
-               idx = idx_;
-               return par_;
-       }
-       for (int i = path_.size() - 1; i >= 0; --i) {
-               lyxerr << "checking level " << i << "\n";
-               if (path_[i].par_->GetType() == t) {
-                       idx = path_[i].idx_;
-                       return path_[i].par_;
+       for (int i = Cursor_.size() - 1; i >= 0; --i) {
+               if (Cursor_[i].par_->isArray()) {
+                       idx = Cursor_[i].idx_;
+                       return static_cast<MathArrayInset *>(Cursor_[i].par_);
                }
        }
        return 0;
 }
 
-void MathCursor::pullArg()
+
+void MathCursor::pullArg(bool goright)
 {
        // pullArg
+       dump("pullarg");
        MathArray a = array();
-       if (!Left())
-               return;
-       normalize();
-       array().erase(cursor_);
-       array().insert(cursor_, a);
+       if (pop()) {
+               plainErase();
+               array().insert(cursor().pos_, a);
+               if (goright) 
+                       cursor().pos_ += a.size();
+       }
 }
 
 
@@ -1010,155 +1024,151 @@ void MathCursor::normalize() const
 #endif
        MathCursor * it = const_cast<MathCursor *>(this);
 
-       if (idx_ < 0 || idx_ > par_->nargs())
+       if (cursor().idx_ < 0 || cursor().idx_ > cursor().par_->nargs() - 1)
                lyxerr << "this should not really happen - 1\n";
-       it->idx_    = max(idx_, 0);
-       it->idx_    = min(idx_, par_->nargs());
+       it->cursor().idx_    = max(cursor().idx_, 0);
+       it->cursor().idx_    = min(cursor().idx_, cursor().par_->nargs() - 1);
 
-       if (cursor_ < 0 || cursor_ > array().size())
+       if (cursor().pos_ < 0 || cursor().pos_ > array().size())
                lyxerr << "this should not really happen - 2\n";
-       it->cursor_ = max(cursor_, 0);
-       it->cursor_ = min(cursor_, array().size());
+       it->cursor().pos_ = max(cursor().pos_, 0);
+       it->cursor().pos_ = min(cursor().pos_, array().size());
 }
 
 
 int MathCursor::col() const
 {
-       return par_->col(idx_);
+       return par()->col(cursor().idx_);
 }
 
 
 int MathCursor::row() const
 {
-       return par_->row(idx_);
+       return par()->row(cursor().idx_);
 }
 
 
 /*
-char MathIter::GetChar() const
+char MathCursorPos::getChar() const
 {
-       return array().GetChar(cursor_);
+       return array().getChar(cursor().pos_);
 }
 
 
-string MathIter::readString()
+string MathCursorPos::readString()
 {
        string s;
        int code = nextCode();
        for ( ; OK() && nextCode() == code; Next()) 
-               s += GetChar();
+               s += getChar();
 
        return s;
 }
 */
 
+
 MathInset * MathCursor::prevInset() const
 {
        normalize();
-       int c = cursor_;
-       if (!array().prev(c))
+       int pos = cursor().pos_;
+       if (!pos)
                return 0;
-       return array().nextInset(c);
+       return array().nextInset(pos - 1);
 }
 
 
 MathInset * MathCursor::nextInset() const
 {
        normalize();
-       return array().nextInset(cursor_);
+       return array().nextInset(cursor().pos_);
 }
 
 
-MathUpDownInset * MathCursor::nearbyUpDownInset() const
+MathScriptInset * MathCursor::prevScriptInset() const
 {
        normalize();
-       MathInset * p = array().prevInset(cursor_);
-       if (p && p->isUpDownInset())
-               return static_cast<MathUpDownInset *>(p);
-       p = array().nextInset(cursor_);
-       if (p && p->isUpDownInset())
-               return static_cast<MathUpDownInset *>(p);
-       return 0;
+       MathInset * p = prevInset();
+       return (p && p->isScriptInset()) ? static_cast<MathScriptInset *>(p) : 0;
+}
+
+
+MathSpaceInset * MathCursor::prevSpaceInset() const
+{
+       normalize();
+       MathInset * p = prevInset();
+       return (p && p->isSpaceInset()) ? static_cast<MathSpaceInset *>(p) : 0;
 }
 
 
 MathArray & MathCursor::array() const
 {
        static MathArray dummy;
-       if (!par_) {
+       if (!cursor().par_) {
                lyxerr << "############  par_ not valid\n";
                return dummy;
        }
 
-       if (idx_ < 0 || idx_ >= par_->nargs()) {
-               lyxerr << "############  idx_ " << idx_ << " not valid\n";
+       if (cursor().idx_ < 0 || cursor().idx_ >= cursor().par_->nargs()) {
+               lyxerr << "############  idx_ " << cursor().idx_ << " not valid\n";
                return dummy;
        }
 
-       return par_->cell(idx_);
+       return cursor().cell();
 }
 
 
 MathXArray & MathCursor::xarray() const
 {
-       return par_->xcell(idx_);
-}
-
-
-
-bool MathCursor::nextIsInset() const
-{
-       return cursor_ < array().size() && MathIsInset(nextCode());
-}
-
-
-bool MathCursor::prevIsInset() const
-{
-       return cursor_ > 0 && MathIsInset(prevCode());
+       return cursor().xcell();
 }
 
 
 int MathCursor::xpos() const 
 {
        normalize();
-       return xarray().pos2x(cursor_);
+       return xarray().pos2x(cursor().pos_);
 }
 
+
 void MathCursor::gotoX(int x)
 {
-       cursor_ = xarray().x2pos(x);    
+       cursor().pos_ = xarray().x2pos(x);      
 }
 
+
 void MathCursor::idxNext()
 {
-       par_->idxNext(idx_, cursor_);
+       cursor().par_->idxNext(cursor().idx_, cursor().pos_);
 }
 
+
 void MathCursor::idxPrev()
 {
-       par_->idxPrev(idx_, cursor_);
+       cursor().par_->idxPrev(cursor().idx_, cursor().pos_);
 }
 
+
 void MathCursor::splitCell()
 {
-       if (idx_ == par_->nargs() - 1) 
+       if (cursor().idx_ == cursor().par_->nargs() - 1) 
                return;
        MathArray ar = array();
-       ar.erase(0, cursor_);
-       array().erase(cursor_, array().size());
-       ++idx_;
-       cursor_ = 0;
+       ar.erase(0, cursor().pos_);
+       array().erase(cursor().pos_, array().size());
+       ++cursor().idx_;
+       cursor().pos_ = 0;
        array().insert(0, ar);
 }
 
+
 void MathCursor::breakLine()
 {
-       MathMatrixInset * p = static_cast<MathMatrixInset *>(formula()->par());
-       if (p->GetType() == LM_OT_SIMPLE || p->GetType() == LM_OT_EQUATION) {
+       MathMatrixInset * p = outerPar();
+       if (p->getType() == LM_OT_SIMPLE || p->getType() == LM_OT_EQUATION) {
                p->mutate(LM_OT_EQNARRAY);
-               p->addRow(row());
-               idx_ = p->nrows();
-               cursor_ = 0;
+               p->addRow(0);
+               cursor().idx_ = p->nrows();
+               cursor().pos_ = 0;
        } else {
                p->addRow(row());
 
@@ -1173,22 +1183,151 @@ void MathCursor::breakLine()
 
                // split cell
                splitCell();
-               p->cell(idx_).swap(p->cell(idx_ + p->ncols() - 1));
+               p->cell(cursor().idx_).swap(p->cell(cursor().idx_ + p->ncols() - 1));
        }
 }
 
+
 char MathCursor::valign() const
 {
        int idx;
-       MathGridInset * p =
-               static_cast<MathGridInset *>(enclosing(LM_OT_MATRIX, idx));
+       MathArrayInset * p = enclosingArray(idx);
        return p ? p->valign() : 0;
 }
 
+
 char MathCursor::halign() const
 {
        int idx;
-       MathGridInset * p =
-               static_cast<MathGridInset *>(enclosing(LM_OT_MATRIX, idx));
+       MathArrayInset * p = enclosingArray(idx);
        return p ? p->halign(idx % p->ncols()) : 0;
 }
+
+
+MathCursorPos MathCursor::firstSelectionPos() const
+{
+       MathCursorPos anc = normalAnchor();
+       return anc < cursor() ? anc : cursor(); 
+}
+
+
+MathCursorPos MathCursor::lastSelectionPos() const
+{
+       MathCursorPos anc = normalAnchor();
+       return anc < cursor() ? cursor() : anc; 
+}
+
+
+void MathCursor::getSelection(MathCursorPos & i1, MathCursorPos & i2) const
+{
+       MathCursorPos anc = normalAnchor();
+       if (anc < cursor()) {
+               i1 = anc;
+               i2 = cursor();
+       } else {
+               i1 = cursor();
+               i2 = anc;
+       }
+}
+
+
+MathCursorPos & MathCursor::cursor()
+{
+       return Cursor_.back();
+}
+
+
+MathCursorPos const & MathCursor::cursor() const
+{
+       return Cursor_.back();
+}
+
+
+
+////////////////////////////////////////////////////////////////////////
+
+
+bool operator==(MathCursorPos const & ti, MathCursorPos const & it)
+{
+       return ti.par_ == it.par_ && ti.idx_ == it.idx_ && ti.pos_ == it.pos_;
+}
+
+
+bool operator<(MathCursorPos const & ti, MathCursorPos const & it)
+{
+       if (ti.par_ != it.par_) {
+               lyxerr << "can't compare cursor and anchor in different insets\n";
+               return true;
+       }
+       if (ti.idx_ != it.idx_)
+               return ti.idx_ < it.idx_;
+       return ti.pos_ < it.pos_;
+}
+
+
+MathArray & MathCursorPos::cell(int idx) const
+{
+       return par_->cell(idx);
+}
+
+MathArray & MathCursorPos::cell() const
+{
+       return par_->cell(idx_);
+}
+
+
+MathXArray & MathCursorPos::xcell(int idx) const
+{
+       return par_->xcell(idx);
+}
+
+
+MathXArray & MathCursorPos::xcell() const
+{
+       return par_->xcell(idx_);
+}
+
+
+MathCursorPos MathCursor::normalAnchor() const
+{
+       // use Anchor on the same level as Cursor
+       MathCursorPos normal = Anchor_[Cursor_.size() - 1];
+       if (Cursor_.size() < Anchor_.size() && !(normal < cursor())) {
+               // anchor is behind cursor -> move anchor behind the inset
+               ++normal.pos_;
+       }
+       //lyxerr << "normalizing: from " << Anchor_[Anchor_.size() - 1] << " to "
+       //      << normal << "\n";
+       return normal;
+}
+
+
+bool MathCursorPos::idxUp()
+{
+       return par_->idxUp(idx_, pos_);
+}
+
+
+bool MathCursorPos::idxDown()
+{
+       return par_->idxDown(idx_, pos_);
+}
+
+
+bool MathCursorPos::idxLeft()
+{
+       return par_->idxLeft(idx_, pos_);
+}
+
+
+bool MathCursorPos::idxRight()
+{
+       return par_->idxRight(idx_, pos_);
+}
+
+
+MathMatrixInset * MathCursor::outerPar() const
+{
+       return
+               static_cast<MathMatrixInset *>(const_cast<MathInset *>(formula_->par()));
+}