lyx_mirror/src/mathed/math_scriptinset.C

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#ifdef __GNUG__
#pragma implementation
#endif
#include "math_scriptinset.h"
#include "math_support.h"
#include "math_symbolinset.h"
#include "math_mathmlstream.h"
#include "support/LAssert.h"
#include "debug.h"
MathScriptInset::MathScriptInset()
: MathNestInset(2), limits_(0)
{
script_[0] = false;
script_[1] = false;
}
MathScriptInset::MathScriptInset(bool up)
: MathNestInset(2), limits_(0)
{
script_[0] = !up;
script_[1] = up;
}
MathInset * MathScriptInset::clone() const
{
return new MathScriptInset(*this);
}
MathScriptInset const * MathScriptInset::asScriptInset() const
{
return this;
}
MathScriptInset * MathScriptInset::asScriptInset()
{
return this;
}
MathXArray const & MathScriptInset::up() const
{
return xcell(1);
}
MathXArray const & MathScriptInset::down() const
{
return xcell(0);
}
MathXArray & MathScriptInset::up()
{
return xcell(1);
}
MathXArray & MathScriptInset::down()
{
return xcell(0);
}
void MathScriptInset::ensure(bool up)
{
script_[up] = true;
}
int MathScriptInset::dy0(MathInset const * nuc) const
{
int nd = ndes(nuc);
if (!hasDown())
return nd;
int des = down().ascent();
if (hasLimits(nuc))
des += nd + 2;
else
des = std::max(des, nd);
return des;
}
int MathScriptInset::dy1(MathInset const * nuc) const
{
int na = nasc(nuc);
if (!hasUp())
return na;
int asc = up().descent();
if (hasLimits(nuc))
asc += na + 2;
else
asc = std::max(asc, na);
asc = std::max(asc, mathed_char_ascent(LM_TC_VAR, mi_, 'I'));
return asc;
}
int MathScriptInset::dx0(MathInset const * nuc) const
{
lyx::Assert(hasDown());
return hasLimits(nuc) ? (width2(nuc) - down().width()) / 2 : nwid(nuc);
}
int MathScriptInset::dx1(MathInset const * nuc) const
{
lyx::Assert(hasUp());
return hasLimits(nuc) ? (width2(nuc) - up().width()) / 2 : nwid(nuc);
}
int MathScriptInset::dxx(MathInset const * nuc) const
{
//lyx::Assert(nuc());
return hasLimits(nuc) ? (width2(nuc) - nwid(nuc)) / 2 : 0;
}
int MathScriptInset::ascent2(MathInset const * nuc) const
{
return dy1(nuc) + (hasUp() ? up().ascent() : 0);
}
int MathScriptInset::descent2(MathInset const * nuc) const
{
return dy0(nuc) + (hasDown() ? down().descent() : 0);
}
int MathScriptInset::width2(MathInset const * nuc) const
{
int wid = 0;
if (hasLimits(nuc)) {
wid = nwid(nuc);
if (hasUp())
wid = std::max(wid, up().width());
if (hasDown())
wid = std::max(wid, down().width());
} else {
if (hasUp())
wid = std::max(wid, up().width());
if (hasDown())
wid = std::max(wid, down().width());
wid += nwid(nuc);
}
return wid;
}
int MathScriptInset::nwid(MathInset const * nuc) const
{
return nuc ?
nuc->width() :
mathed_char_width(LM_TC_TEX, mi_, '.');
}
int MathScriptInset::nasc(MathInset const * nuc) const
{
return nuc ? nuc->ascent()
: mathed_char_ascent(LM_TC_VAR, mi_, 'I');
}
int MathScriptInset::ndes(MathInset const * nuc) const
{
return nuc ? nuc->descent()
: mathed_char_descent(LM_TC_VAR, mi_, 'I');
}
void MathScriptInset::metrics(MathMetricsInfo const & mi) const
{
metrics(0, mi);
}
void MathScriptInset::metrics(MathInset const * nuc,
MathMetricsInfo const & mi) const
{
mi_ = mi;
smallerStyleScript(mi_);
MathNestInset::metrics(mi_);
if (nuc)
nuc->metrics(mi);
ascent_ = ascent2(nuc);
descent_ = descent2(nuc);
width_ = width2(nuc);
}
void MathScriptInset::draw(Painter & pain, int x, int y) const
{
//lyxerr << "unexpected call to MathScriptInset::draw()\n";
draw(0, pain, x, y);
}
void MathScriptInset::draw(MathInset const * nuc, Painter & pain,
int x, int y) const
{
if (nuc)
nuc->draw(pain, x + dxx(nuc), y);
else
drawStr(pain, LM_TC_TEX, mi_, x + dxx(nuc), y, ".");
if (hasUp())
up().draw(pain, x + dx1(nuc), y - dy1(nuc));
if (hasDown())
down().draw(pain, x + dx0(nuc), y + dy0(nuc));
}
bool MathScriptInset::hasLimits(MathInset const * nuc) const
{
// obviuos cases
if (limits_ == 1)
return true;
if (limits_ == -1)
return false;
// we can only display limits if the nucleus wants some
if (!nuc)
return false;
if (!nuc->isScriptable())
return false;
// per default \int has limits beside the \int even in displayed formulas
if (nuc->asSymbolInset())
if (nuc->asSymbolInset()->name().find("int") != string::npos)
return false;
// assume "real" limits for everything else
return true;
}
void MathScriptInset::removeEmptyScripts()
{
for (int i = 0; i <= 1; ++i)
if (script_[i] && !cell(i).size())
script_[i] = false;
}
void MathScriptInset::removeScript(bool up)
{
cell(up).clear();
script_[up] = false;
}
bool MathScriptInset::has(bool up) const
{
return script_[up];
}
bool MathScriptInset::empty() const
{
return !script_[0] && !script_[1];
}
bool MathScriptInset::hasUp() const
{
return script_[1];
}
bool MathScriptInset::hasDown() const
{
return script_[0];
}
bool MathScriptInset::idxRight(MathInset::idx_type &,
MathInset::pos_type &) const
{
return false;
}
bool MathScriptInset::idxLeft(MathInset::idx_type &,
MathInset::pos_type &) const
{
return false;
}
void MathScriptInset::write(WriteStream & os) const
{
//lyxerr << "unexpected call to MathScriptInset::write()\n";
write2(0, os);
}
void MathScriptInset::write2(MathInset const * nuc, WriteStream & os) const
{
if (nuc) {
os << nuc;
if (nuc->takesLimits()) {
if (limits_ == -1)
os << "\\nolimits ";
if (limits_ == 1)
os << "\\limits ";
}
} else
if (os.firstitem())
lyxerr << "suppressing {} \n";
else
os << "{}";
if (hasDown() && down().data_.size())
os << "_{" << down().data_ << '}';
if (hasUp() && up().data_.size())
os << "^{" << up().data_ << '}';
}
void MathScriptInset::normalize(NormalStream & os) const
{
//lyxerr << "unexpected call to MathScriptInset::normalize()\n";
normalize2(0, os);
}
void MathScriptInset::normalize2(MathInset const * nuc, NormalStream & os) const
{
bool d = hasDown() && down().data_.size();
bool u = hasUp() && up().data_.size();
if (u)
os << "[sup ";
if (d)
os << "[sub ";
if (nuc)
os << nuc << ' ';
else
os << "[par]";
if (d)
os << down().data_ << ']';
if (u)
os << up().data_ << ']';
}
void MathScriptInset::maplize2(MathInset const * nuc, MapleStream & os) const
{
if (nuc)
os << nuc;
if (hasDown() && down().data_.size())
os << '[' << down().data_ << ']';
if (hasUp() && up().data_.size())
os << "^(" << up().data_ << ')';
}
void MathScriptInset::mathmlize2(MathInset const * nuc, MathMLStream & os) const
{
bool d = hasDown() && down().data_.size();
bool u = hasUp() && up().data_.size();
if (u && d)
os << MTag("msubsup");
else if (u)
os << MTag("msup");
else if (d)
os << MTag("msub");
if (nuc)
os << nuc;
else
os << "<mrow/>";
if (u && d)
os << down().data_ << up().data_ << ETag("msubsup");
else if (u)
os << up().data_ << ETag("msup");
else if (d)
os << down().data_ << ETag("msub");
}
void MathScriptInset::octavize2(MathInset const * nuc, OctaveStream & os) const
{
if (nuc)
os << nuc;
if (hasDown() && down().data_.size())
os << '[' << down().data_ << ']';
if (hasUp() && up().data_.size())
os << "^(" << up().data_ << ')';
}