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1248ce1acb
(forwardInset): speed up (like forwardPar). git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@15848 a592a061-630c-0410-9148-cb99ea01b6c8
602 lines
12 KiB
C
602 lines
12 KiB
C
/**
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* \file dociterator.C
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* This file is part of LyX, the document processor.
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* Licence details can be found in the file COPYING.
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*
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* \author André Pönitz
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*
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* Full author contact details are available in file CREDITS.
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*/
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#include <config.h>
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#include "dociterator.h"
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#include "debug.h"
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#include "lyxtext.h"
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#include "lyxrow.h"
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#include "paragraph.h"
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#include "mathed/MathData.h"
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#include "mathed/InsetMath.h"
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#include "insets/insettabular.h"
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#include <boost/assert.hpp>
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#include <boost/current_function.hpp>
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namespace lyx {
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using std::endl;
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// We could be able to get rid of this if only every BufferView were
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// associated to a buffer on construction.
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DocIterator::DocIterator()
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: boundary_(false), inset_(0)
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{}
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DocIterator::DocIterator(InsetBase & inset)
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: boundary_(false), inset_(&inset)
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{}
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DocIterator doc_iterator_begin(InsetBase & inset)
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{
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DocIterator dit(inset);
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dit.forwardPos();
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return dit;
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}
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DocIterator doc_iterator_end(InsetBase & inset)
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{
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return DocIterator(inset);
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}
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InsetBase * DocIterator::nextInset()
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{
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BOOST_ASSERT(!empty());
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if (pos() == lastpos())
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return 0;
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if (pos() > lastpos()) {
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lyxerr << "Should not happen, but it does. " << endl;
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return 0;
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}
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if (inMathed())
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return nextAtom().nucleus();
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return paragraph().isInset(pos()) ? paragraph().getInset(pos()) : 0;
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}
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InsetBase * DocIterator::prevInset()
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{
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BOOST_ASSERT(!empty());
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if (pos() == 0)
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return 0;
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if (inMathed())
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return prevAtom().nucleus();
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return paragraph().isInset(pos() - 1) ? paragraph().getInset(pos() - 1) : 0;
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}
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InsetBase const * DocIterator::prevInset() const
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{
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BOOST_ASSERT(!empty());
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if (pos() == 0)
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return 0;
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if (inMathed())
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return prevAtom().nucleus();
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return paragraph().isInset(pos() - 1) ? paragraph().getInset(pos() - 1) : 0;
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}
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InsetBase * DocIterator::realInset() const
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{
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BOOST_ASSERT(inTexted());
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// if we are in a tabular, we need the cell
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if (inset().lyxCode() == InsetBase::TABULAR_CODE) {
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InsetTabular & tabular = static_cast<InsetTabular&>(inset());
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return tabular.cell(idx()).get();
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}
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return &inset();
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}
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MathAtom const & DocIterator::prevAtom() const
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{
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BOOST_ASSERT(!empty());
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BOOST_ASSERT(pos() > 0);
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return cell()[pos() - 1];
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}
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MathAtom & DocIterator::prevAtom()
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{
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BOOST_ASSERT(!empty());
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BOOST_ASSERT(pos() > 0);
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return cell()[pos() - 1];
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}
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MathAtom const & DocIterator::nextAtom() const
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{
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BOOST_ASSERT(!empty());
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//lyxerr << "lastpos: " << lastpos() << " next atom:\n" << *this << endl;
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BOOST_ASSERT(pos() < lastpos());
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return cell()[pos()];
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}
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MathAtom & DocIterator::nextAtom()
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{
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BOOST_ASSERT(!empty());
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//lyxerr << "lastpos: " << lastpos() << " next atom:\n" << *this << endl;
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BOOST_ASSERT(pos() < lastpos());
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return cell()[pos()];
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}
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LyXText * DocIterator::text()
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{
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BOOST_ASSERT(!empty());
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return top().text();
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}
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LyXText const * DocIterator::text() const
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{
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BOOST_ASSERT(!empty());
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return top().text();
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}
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Paragraph & DocIterator::paragraph()
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{
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if (!inTexted())
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lyxerr << *this << endl;
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BOOST_ASSERT(inTexted());
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return top().paragraph();
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}
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Paragraph const & DocIterator::paragraph() const
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{
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BOOST_ASSERT(inTexted());
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return top().paragraph();
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}
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Row & DocIterator::textRow()
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{
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BOOST_ASSERT(!paragraph().rows().empty());
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return paragraph().getRow(pos(), boundary_);
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}
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Row const & DocIterator::textRow() const
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{
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BOOST_ASSERT(!paragraph().rows().empty());
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return paragraph().getRow(pos(), boundary_);
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}
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pit_type DocIterator::lastpit() const
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{
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return inMathed() ? 0 : text()->paragraphs().size() - 1;
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}
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pos_type DocIterator::lastpos() const
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{
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return inMathed() ? cell().size() : paragraph().size();
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}
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DocIterator::idx_type DocIterator::lastidx() const
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{
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return top().lastidx();
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}
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size_t DocIterator::nargs() const
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{
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// assume 1x1 grid for main text
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return top().nargs();
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}
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size_t DocIterator::ncols() const
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{
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// assume 1x1 grid for main text
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return top().ncols();
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}
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size_t DocIterator::nrows() const
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{
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// assume 1x1 grid for main text
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return top().nrows();
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}
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DocIterator::row_type DocIterator::row() const
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{
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return top().row();
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}
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DocIterator::col_type DocIterator::col() const
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{
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return top().col();
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}
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MathArray const & DocIterator::cell() const
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{
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BOOST_ASSERT(inMathed());
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return top().cell();
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}
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MathArray & DocIterator::cell()
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{
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BOOST_ASSERT(inMathed());
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return top().cell();
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}
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bool DocIterator::inMathed() const
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{
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return !empty() && inset().inMathed();
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}
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bool DocIterator::inTexted() const
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{
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return !empty() && !inset().inMathed();
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}
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LyXText * DocIterator::innerText()
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{
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BOOST_ASSERT(!empty());
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// Go up until first non-0 text is hit
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// (innermost text is 0 in mathed)
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for (int i = depth() - 1; i >= 0; --i)
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if (slices_[i].text())
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return slices_[i].text();
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return 0;
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}
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LyXText const * DocIterator::innerText() const
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{
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BOOST_ASSERT(!empty());
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// go up until first non-0 text is hit
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// (innermost text is 0 in mathed)
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for (int i = depth() - 1; i >= 0; --i)
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if (slices_[i].text())
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return slices_[i].text();
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return 0;
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}
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InsetBase * DocIterator::innerInsetOfType(int code) const
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{
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for (int i = depth() - 1; i >= 0; --i)
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if (slices_[i].inset_->lyxCode() == code)
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return slices_[i].inset_;
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return 0;
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}
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void DocIterator::forwardPos(bool ignorecollapsed)
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{
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//this dog bites his tail
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if (empty()) {
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push_back(CursorSlice(*inset_));
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return;
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}
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// jump over collapsables if they are collapsed
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// FIXME: the check for asInsetMath() shouldn't be necessary
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// but math insets do not return a sensible editable() state yet.
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if (ignorecollapsed && nextInset() && (!nextInset()->asInsetMath()
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&& nextInset()->editable() != InsetBase::HIGHLY_EDITABLE)) {
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++top().pos();
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return;
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}
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CursorSlice & tip = top();
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//lyxerr << "XXX\n" << *this << endl;
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// this is used twice and shows up in the profiler!
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pos_type const lastp = lastpos();
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// move into an inset to the right if possible
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InsetBase * n = 0;
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if (tip.pos() != lastp) {
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// this is impossible for pos() == size()
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if (inMathed()) {
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n = (tip.cell().begin() + tip.pos())->nucleus();
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} else {
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if (paragraph().isInset(tip.pos()))
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n = paragraph().getInset(tip.pos());
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}
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}
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if (n && n->isActive()) {
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//lyxerr << "... descend" << endl;
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push_back(CursorSlice(*n));
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return;
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}
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// otherwise move on one position if possible
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if (tip.pos() < lastp) {
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//lyxerr << "... next pos" << endl;
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++tip.pos();
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return;
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}
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//lyxerr << "... no next pos" << endl;
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// otherwise move on one paragraph if possible
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if (tip.pit() < lastpit()) {
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//lyxerr << "... next par" << endl;
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++tip.pit();
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tip.pos() = 0;
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return;
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}
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//lyxerr << "... no next pit" << endl;
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// otherwise try to move on one cell if possible
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if (tip.idx() < lastidx()) {
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//lyxerr << "... next idx" << endl;
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++tip.idx();
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tip.pit() = 0;
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tip.pos() = 0;
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return;
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}
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//lyxerr << "... no next idx" << endl;
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// otherwise leave inset and jump over inset as a whole
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pop_back();
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// 'top' is invalid now...
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if (!empty())
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++top().pos();
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}
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void DocIterator::forwardPosNoDescend()
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{
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CursorSlice & tip = top();
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pos_type const lastp = lastpos();
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// move on one position if possible
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if (tip.pos() < lastp) {
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//lyxerr << "... next pos" << endl;
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++tip.pos();
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return;
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}
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//lyxerr << "... no next pos" << endl;
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// otherwise move on one paragraph if possible
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if (tip.pit() < lastpit()) {
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//lyxerr << "... next par" << endl;
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++tip.pit();
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tip.pos() = 0;
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return;
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}
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//lyxerr << "... no next pit" << endl;
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// otherwise try to move on one cell if possible
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if (tip.idx() < lastidx()) {
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//lyxerr << "... next idx" << endl;
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++tip.idx();
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tip.pit() = 0;
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tip.pos() = 0;
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return;
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}
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//lyxerr << "... no next idx" << endl;
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// otherwise leave inset and jump over inset as a whole
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pop_back();
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// 'top' is invalid now...
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if (!empty())
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++top().pos();
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}
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void DocIterator::forwardPar()
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{
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forwardPos();
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while (!empty() && (!inTexted() || pos() != 0)) {
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if (inTexted()) {
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pos_type const lastp = lastpos();
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Paragraph const & par = paragraph();
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pos_type & pos = top().pos();
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while (pos < lastp && !par.isInset(pos))
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++pos;
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}
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forwardPos();
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}
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}
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void DocIterator::forwardChar()
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{
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forwardPos();
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while (!empty() && pos() == lastpos())
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forwardPos();
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}
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void DocIterator::forwardInset()
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{
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forwardPos();
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while (!empty() && !nextInset()) {
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if (inTexted()) {
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pos_type const lastp = lastpos();
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Paragraph const & par = paragraph();
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pos_type & pos = top().pos();
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while (pos < lastp && !par.isInset(pos))
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++pos;
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if (pos < lastp)
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break;
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}
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forwardPos();
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}
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}
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void DocIterator::backwardChar()
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{
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backwardPos();
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while (!empty() && pos() == lastpos())
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backwardPos();
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}
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void DocIterator::backwardPos()
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{
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//this dog bites his tail
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if (empty()) {
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push_back(CursorSlice(*inset_));
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top().idx() = lastidx();
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top().pit() = lastpit();
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top().pos() = lastpos();
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return;
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}
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CursorSlice & tip = top();
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if (tip.pos() != 0) {
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--tip.pos();
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} else if (tip.pit() != 0) {
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--tip.pit();
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tip.pos() = lastpos();
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return;
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} else if (tip.idx() != 0) {
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--tip.idx();
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tip.pit() = lastpit();
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tip.pos() = lastpos();
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return;
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} else {
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pop_back();
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return;
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}
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// move into an inset to the left if possible
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InsetBase * n = 0;
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if (inMathed()) {
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n = (tip.cell().begin() + tip.pos())->nucleus();
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} else {
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if (paragraph().isInset(tip.pos()))
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n = paragraph().getInset(tip.pos());
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}
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if (n && n->isActive()) {
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push_back(CursorSlice(*n));
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top().idx() = lastidx();
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top().pit() = lastpit();
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top().pos() = lastpos();
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}
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}
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bool DocIterator::hasPart(DocIterator const & it) const
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{
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// it can't be a part if it is larger
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if (it.depth() > depth())
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return false;
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// as inset adresses are the 'last' level
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return &it.top().inset() == &slices_[it.depth() - 1].inset();
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}
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void DocIterator::updateInsets(InsetBase * inset)
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{
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// this function re-creates the cache of inset pointers.
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// code taken in part from StableDocIterator::asDocIterator.
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//lyxerr << "converting:\n" << *this << endl;
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DocIterator dit = DocIterator(*inset);
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size_t const n = slices_.size();
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for (size_t i = 0 ; i < n; ++i) {
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BOOST_ASSERT(inset);
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dit.push_back(slices_[i]);
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dit.top().inset_ = inset;
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if (i + 1 != n)
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inset = dit.nextInset();
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}
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//lyxerr << "converted:\n" << *this << endl;
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operator=(dit);
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}
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std::ostream & operator<<(std::ostream & os, DocIterator const & dit)
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{
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for (size_t i = 0, n = dit.depth(); i != n; ++i)
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os << " " << dit[i] << "\n";
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return os;
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}
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///////////////////////////////////////////////////////
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StableDocIterator::StableDocIterator(DocIterator const & dit)
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{
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data_ = dit.internalData();
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for (size_t i = 0, n = data_.size(); i != n; ++i)
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data_[i].inset_ = 0;
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}
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DocIterator StableDocIterator::asDocIterator(InsetBase * inset) const
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{
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// this function re-creates the cache of inset pointers
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//lyxerr << "converting:\n" << *this << endl;
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DocIterator dit = DocIterator(*inset);
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for (size_t i = 0, n = data_.size(); i != n; ++i) {
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if (inset == 0) {
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// FIXME
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lyxerr << BOOST_CURRENT_FUNCTION
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<< " Should not happen, but does e.g. after C-n C-l C-z S-C-z"
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<< '\n' << "dit: " << dit << '\n'
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<< " lastpos: " << dit.lastpos() << endl;
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//break;
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BOOST_ASSERT(false);
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}
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dit.push_back(data_[i]);
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dit.top().inset_ = inset;
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if (i + 1 != n)
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inset = dit.nextInset();
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}
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//lyxerr << "convert:\n" << *this << " to:\n" << dit << endl;
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return dit;
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}
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std::ostream & operator<<(std::ostream & os, StableDocIterator const & dit)
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{
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for (size_t i = 0, n = dit.data_.size(); i != n; ++i)
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os << " " << dit.data_[i] << "\n";
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return os;
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}
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bool operator==(StableDocIterator const & dit1, StableDocIterator const & dit2)
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{
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return dit1.data_ == dit2.data_;
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}
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} // namespace lyx
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