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'width' cache from MathAtom) git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@8383 a592a061-630c-0410-9148-cb99ea01b6c8
536 lines
9.0 KiB
C
536 lines
9.0 KiB
C
/**
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* \file math_scriptinset.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 "math_scriptinset.h"
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#include "math_data.h"
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#include "math_mathmlstream.h"
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#include "math_support.h"
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#include "math_symbolinset.h"
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#include "dispatchresult.h"
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#include "cursor.h"
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#include "debug.h"
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#include "funcrequest.h"
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#include <boost/assert.hpp>
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using std::string;
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using std::max;
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using std::auto_ptr;
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using std::endl;
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MathScriptInset::MathScriptInset()
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: MathNestInset(3), limits_(0)
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{
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script_[0] = false;
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script_[1] = false;
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}
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MathScriptInset::MathScriptInset(bool up)
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: MathNestInset(3), limits_(0)
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{
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script_[0] = !up;
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script_[1] = up;
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}
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MathScriptInset::MathScriptInset(MathAtom const & at, bool up)
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: MathNestInset(3), limits_(0)
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{
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script_[0] = !up;
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script_[1] = up;
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cell(2).push_back(at);
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}
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auto_ptr<InsetBase> MathScriptInset::clone() const
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{
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return auto_ptr<InsetBase>(new MathScriptInset(*this));
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}
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MathScriptInset const * MathScriptInset::asScriptInset() const
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{
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return this;
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}
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MathScriptInset * MathScriptInset::asScriptInset()
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{
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return this;
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}
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bool MathScriptInset::idxFirst(LCursor & cur) const
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{
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cur.idx() = 2;
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cur.pos() = 0;
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return true;
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}
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bool MathScriptInset::idxLast(LCursor & cur) const
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{
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cur.idx() = 2;
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cur.pos() = nuc().size();
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return true;
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}
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MathArray const & MathScriptInset::down() const
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{
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return cell(0);
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}
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MathArray & MathScriptInset::down()
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{
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return cell(0);
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}
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MathArray const & MathScriptInset::up() const
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{
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return cell(1);
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}
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MathArray & MathScriptInset::up()
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{
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return cell(1);
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}
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void MathScriptInset::ensure(bool up)
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{
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script_[up] = true;
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}
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MathArray const & MathScriptInset::nuc() const
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{
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return cell(2);
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}
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MathArray & MathScriptInset::nuc()
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{
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return cell(2);
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}
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int MathScriptInset::dy0() const
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{
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int nd = ndes();
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if (!hasDown())
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return nd;
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int des = down().ascent();
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if (hasLimits())
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des += nd + 2;
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else
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des = max(des, nd);
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return des;
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}
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int MathScriptInset::dy1() const
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{
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int na = nasc();
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if (!hasUp())
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return na;
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int asc = up().descent();
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if (hasLimits())
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asc += na + 2;
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else
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asc = max(asc, na);
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asc = max(asc, 5);
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return asc;
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}
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int MathScriptInset::dx0() const
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{
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BOOST_ASSERT(hasDown());
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return hasLimits() ? (dim_.wid - down().width()) / 2 : nwid();
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}
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int MathScriptInset::dx1() const
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{
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BOOST_ASSERT(hasUp());
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return hasLimits() ? (dim_.wid - up().width()) / 2 : nwid();
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}
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int MathScriptInset::dxx() const
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{
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return hasLimits() ? (dim_.wid - nwid()) / 2 : 0;
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}
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int MathScriptInset::nwid() const
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{
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return nuc().size() ? nuc().width() : 2;
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}
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int MathScriptInset::nasc() const
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{
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return nuc().size() ? nuc().ascent() : 5;
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}
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int MathScriptInset::ndes() const
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{
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return nuc().size() ? nuc().descent() : 0;
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}
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void MathScriptInset::metrics(MetricsInfo & mi, Dimension & dim) const
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{
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cell(2).metrics(mi);
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ScriptChanger dummy(mi.base);
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cell(0).metrics(mi);
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cell(1).metrics(mi);
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dim.wid = 0;
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if (hasLimits()) {
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dim.wid = nwid();
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if (hasUp())
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dim.wid = max(dim.wid, up().width());
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if (hasDown())
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dim.wid = max(dim.wid, down().width());
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} else {
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if (hasUp())
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dim.wid = max(dim.wid, up().width());
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if (hasDown())
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dim.wid = max(dim.wid, down().width());
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dim.wid += nwid();
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}
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dim.asc = dy1() + (hasUp() ? up().ascent() : 0);
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dim.des = dy0() + (hasDown() ? down().descent() : 0);
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metricsMarkers(dim);
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dim_ = dim;
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}
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void MathScriptInset::draw(PainterInfo & pi, int x, int y) const
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{
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if (nuc().size())
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nuc().draw(pi, x + dxx(), y);
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else {
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nuc().setXY(x + dxx(), y);
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if (editing(pi.base.bv))
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drawStr(pi, pi.base.font, x + dxx(), y, ".");
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}
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ScriptChanger dummy(pi.base);
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if (hasUp())
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up().draw(pi, x + dx1(), y - dy1());
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if (hasDown())
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down().draw(pi, x + dx0(), y + dy0());
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drawMarkers(pi, x, y);
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}
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void MathScriptInset::metricsT(TextMetricsInfo const & mi, Dimension & dim) const
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{
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if (hasUp())
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up().metricsT(mi, dim);
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if (hasDown())
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down().metricsT(mi, dim);
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nuc().metricsT(mi, dim);
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}
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void MathScriptInset::drawT(TextPainter & pain, int x, int y) const
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{
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if (nuc().size())
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nuc().drawT(pain, x + dxx(), y);
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if (hasUp())
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up().drawT(pain, x + dx1(), y - dy1());
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if (hasDown())
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down().drawT(pain, x + dx0(), y + dy0());
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}
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bool MathScriptInset::hasLimits() const
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{
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// obvious cases
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if (limits_ == 1)
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return true;
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if (limits_ == -1)
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return false;
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// we can only display limits if the nucleus wants some
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if (!nuc().size())
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return false;
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if (!nuc().back()->isScriptable())
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return false;
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// per default \int has limits beside the \int even in displayed formulas
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if (nuc().back()->asSymbolInset())
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if (nuc().back()->asSymbolInset()->name().find("int") != string::npos)
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return false;
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// assume "real" limits for everything else
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return true;
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}
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void MathScriptInset::removeScript(bool up)
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{
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cell(up).clear();
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script_[up] = false;
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}
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bool MathScriptInset::has(bool up) const
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{
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return script_[up];
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}
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bool MathScriptInset::hasUp() const
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{
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return script_[1];
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}
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bool MathScriptInset::hasDown() const
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{
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return script_[0];
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}
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bool MathScriptInset::idxRight(LCursor &) const
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{
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return false;
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}
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bool MathScriptInset::idxLeft(LCursor &) const
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{
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return false;
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}
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bool MathScriptInset::idxUpDown(LCursor & cur, bool up) const
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{
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if (cur.idx() == 1) {
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// if we are 'up' we can't go further up
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if (up)
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return false;
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// otherwise go to last base position
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cur.idx() = 2;
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cur.pos() = cur.lastpos();
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}
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else if (cur.idx() == 0) {
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// if we are 'down' we can't go further down
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if (!up)
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return false;
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cur.idx() = 2;
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cur.pos() = cur.lastpos();
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}
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else {
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// in nucleus
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// don't go up/down if there is no cell.
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if (!has(up))
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return false;
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// go up/down only if in the last position
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// or in the first position of something with displayed limits
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if (cur.pos() == cur.lastpos() || (cur.pos() == 0 && hasLimits())) {
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cur.idx() = up;
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cur.pos() = 0;
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return true;
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}
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return false;
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}
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return true;
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}
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void MathScriptInset::write(WriteStream & os) const
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{
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if (nuc().size()) {
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os << nuc();
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//if (nuc().back()->takesLimits()) {
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if (limits_ == -1)
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os << "\\nolimits ";
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if (limits_ == 1)
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os << "\\limits ";
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//}
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} else {
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if (os.firstitem())
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lyxerr[Debug::MATHED] << "suppressing {} when writing"
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<< endl;
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else
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os << "{}";
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}
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if (hasDown() && down().size())
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os << "_{" << down() << '}';
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if (hasUp() && up().size())
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os << "^{" << up() << '}';
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if (lock_ && !os.latex())
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os << "\\lyxlock ";
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}
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void MathScriptInset::normalize(NormalStream & os) const
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{
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bool d = hasDown() && down().size();
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bool u = hasUp() && up().size();
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if (u && d)
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os << "[subsup ";
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else if (u)
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os << "[sup ";
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else if (d)
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os << "[sub ";
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if (nuc().size())
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os << nuc() << ' ';
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else
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os << "[par]";
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if (u && d)
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os << down() << ' ' << up() << ']';
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else if (d)
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os << down() << ']';
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else if (u)
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os << up() << ']';
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}
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void MathScriptInset::maple(MapleStream & os) const
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{
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if (nuc().size())
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os << nuc();
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if (hasDown() && down().size())
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os << '[' << down() << ']';
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if (hasUp() && up().size())
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os << "^(" << up() << ')';
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}
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void MathScriptInset::mathematica(MathematicaStream & os) const
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{
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bool d = hasDown() && down().size();
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bool u = hasUp() && up().size();
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if (nuc().size()) {
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if (d)
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os << "Subscript[" << nuc();
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else
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os << nuc();
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}
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if (u)
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os << "^(" << up() << ')';
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if (nuc().size()) {
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if (d)
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os << ',' << down() << ']';
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}
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}
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void MathScriptInset::mathmlize(MathMLStream & os) const
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{
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bool d = hasDown() && down().size();
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bool u = hasUp() && up().size();
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if (u && d)
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os << MTag("msubsup");
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else if (u)
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os << MTag("msup");
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else if (d)
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os << MTag("msub");
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if (nuc().size())
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os << nuc();
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else
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os << "<mrow/>";
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if (u && d)
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os << down() << up() << ETag("msubsup");
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else if (u)
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os << up() << ETag("msup");
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else if (d)
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os << down() << ETag("msub");
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}
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void MathScriptInset::octave(OctaveStream & os) const
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{
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if (nuc().size())
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os << nuc();
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if (hasDown() && down().size())
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os << '[' << down() << ']';
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if (hasUp() && up().size())
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os << "^(" << up() << ')';
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}
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void MathScriptInset::infoize(std::ostream & os) const
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{
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os << "Scripts";
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}
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void MathScriptInset::infoize2(std::ostream & os) const
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{
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if (limits_)
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os << (limits_ == 1 ? ", Displayed limits" : ", Inlined limits");
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}
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void MathScriptInset::notifyCursorLeaves(idx_type idx)
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{
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MathNestInset::notifyCursorLeaves(idx);
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// remove empty scripts if possible
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if (idx != 2 && script_[idx] && cell(idx).empty()) {
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cell(idx).clear();
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script_[idx] = false;
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}
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}
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DispatchResult
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MathScriptInset::priv_dispatch(LCursor & bv, FuncRequest const & cmd)
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{
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if (cmd.action == LFUN_MATH_LIMITS) {
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if (!cmd.argument.empty()) {
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if (cmd.argument == "limits")
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limits_ = 1;
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else if (cmd.argument == "nolimits")
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limits_ = -1;
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else
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limits_ = 0;
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} else if (limits_ == 0)
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limits_ = hasLimits() ? -1 : 1;
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else
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limits_ = 0;
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return DispatchResult(true, true);
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}
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return MathNestInset::priv_dispatch(bv, cmd);
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}
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