Copyright 2010, SIL International All rights reserved.
This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of License, or (at your option) any later version.
This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
You should also have received a copy of the GNU Lesser General Public License along with this library in the file named "LICENSE". If not, write to the Free Software Foundation, 51 Franklin Street, Suite 500, Boston, MA 02110-1335, USA or visit their web page on the internet at http://www.fsf.org/licenses/lgpl.html.
Alternatively, the contents of this file may be used under the terms of the Mozilla Public License (http://mozilla.org/MPL) or the GNU General Public License, as published by the Free Software Foundation, either version 2 of the License or (at your option) any later version.
*/ #include"inc/UtfCodec.h" #include <cstring> #include <cstdlib>
Segment::~Segment()
{ for (SlotRope::iterator i = m_slots.begin(); i != m_slots.end(); ++i)
free(*i); for (AttributeRope::iterator i = m_userAttrs.begin(); i != m_userAttrs.end(); ++i)
free(*i); for (JustifyRope::iterator i = m_justifies.begin(); i != m_justifies.end(); ++i)
free(*i); delete[] m_charinfo;
free(m_collisions);
}
void Segment::appendSlot(int id, int cid, int gid, int iFeats, size_t coffset)
{
Slot *aSlot = newSlot();
// reverse the slots but keep diacritics in their same position after their bases void Segment::reverseSlots()
{
m_dir = m_dir ^ 64; // invert the reverse flag if (m_first == m_last) return; // skip 0 or 1 glyph runs
while (curr && getSlotBidiClass(curr) == 16)
curr = curr->next(); if (!curr) return;
tfirst = curr->prev();
tlast = curr;
while (curr)
{ if (getSlotBidiClass(curr) == 16)
{
Slot *d = curr->next(); while (d && getSlotBidiClass(d) == 16)
d = d->next();
d = d ? d->prev() : m_last;
Slot *p = out->next(); // one after the diacritics. out can't be null if (p)
p->prev(d); else
tlast = d;
t = d->next();
d->next(p);
curr->prev(out);
out->next(curr);
} else// will always fire first time round the loop
{ if (out)
out->prev(curr);
t = curr->next();
curr->next(out);
out = curr;
}
curr = t;
}
out->prev(tfirst); if (tfirst)
tfirst->next(out); else
m_first = out;
m_last = tlast;
}
void Segment::linkClusters(Slot *s, Slot * end)
{
end = end->next();
for (; s != end && !s->isBase(); s = s->next());
Slot * ls = s;
if (m_dir & 1)
{ for (; s != end; s = s->next())
{ if (!s->isBase()) continue;
s->sibling(ls);
ls = s;
}
} else
{ for (; s != end; s = s->next())
{ if (!s->isBase()) continue;
ls->sibling(s);
ls = s;
}
}
}
Position Segment::positionSlots(const Font *font, Slot * iStart, Slot * iEnd, bool isRtl, bool isFinal)
{
Position currpos(0., 0.); float clusterMin = 0.;
Rect bbox; bool reorder = (currdir() != isRtl);
if (reorder)
{
Slot *temp;
reverseSlots();
temp = iStart;
iStart = iEnd;
iEnd = temp;
} if (!iStart) iStart = m_first; if (!iEnd) iEnd = m_last;
if (!iStart || !iEnd) // only true for empty segments return currpos;
if (isRtl)
{ for (Slot * s = iEnd, * const end = iStart->prev(); s && s != end; s = s->prev())
{ if (s->isBase())
currpos = s->finalise(this, font, currpos, bbox, 0, clusterMin = currpos.x, isRtl, isFinal);
}
} else
{ for (Slot * s = iStart, * const end = iEnd->next(); s && s != end; s = s->next())
{ if (s->isBase())
currpos = s->finalise(this, font, currpos, bbox, 0, clusterMin = currpos.x, isRtl, isFinal);
}
} if (reorder)
reverseSlots(); return currpos;
}
void Segment::associateChars(int offset, size_t numChars)
{ int i = 0, j = 0;
CharInfo *c, *cend; for (c = m_charinfo + offset, cend = m_charinfo + offset + numChars; c != cend; ++c)
{
c->before(-1);
c->after(-1);
} for (Slot * s = m_first; s; s->index(i++), s = s->next())
{
j = s->before(); if (j < 0) continue;
for (constint after = s->after(); j <= after; ++j)
{
c = charinfo(j); if (c->before() == -1 || i < c->before()) c->before(i); if (c->after() < i) c->after(i);
}
} for (Slot *s = m_first; s; s = s->next())
{ int a; for (a = s->after() + 1; a < offset + int(numChars) && charinfo(a)->after() < 0; ++a)
{ charinfo(a)->after(s->index()); }
--a;
s->after(a);
for (a = s->before() - 1; a >= offset && charinfo(a)->before() < 0; --a)
{ charinfo(a)->before(s->index()); }
++a;
s->before(a);
}
}
consttypename utf_iter::codeunit_type * const base = c; for (; n_chars; --n_chars, ++c, ++slotid)
{ const uint32 usv = *c;
uint16 gid = cmap[usv]; if (!gid) gid = face.findPseudo(usv);
seg.appendSlot(slotid, usv, gid, fid, c - base);
}
}
bool Segment::read_text(const Face *face, const Features* pFeats/*must not be NULL*/, gr_encform enc, const void* pStart, size_t nChars)
{
assert(face);
assert(pFeats); if (!m_charinfo) returnfalse;
// utf iterator is self recovering so we don't care about the error state of the iterator. switch (enc)
{ case gr_utf8: process_utf_data(*this, *face, addFeatures(*pFeats), utf8::const_iterator(pStart), nChars); break; case gr_utf16: process_utf_data(*this, *face, addFeatures(*pFeats), utf16::const_iterator(pStart), nChars); break; case gr_utf32: process_utf_data(*this, *face, addFeatures(*pFeats), utf32::const_iterator(pStart), nChars); break;
} returntrue;
}
void Segment::doMirror(uint16 aMirror)
{
Slot * s; for (s = m_first; s; s = s->next())
{ unsignedshort g = glyphAttr(s->gid(), aMirror); if (g && (!(dir() & 4) || !glyphAttr(s->gid(), aMirror + 1)))
s->setGlyph(this, g);
}
}
bool Segment::initCollisions()
{
m_collisions = grzeroalloc<SlotCollision>(slotCount()); if (!m_collisions) returnfalse;
for (Slot *p = m_first; p; p = p->next()) if (p->index() < slotCount())
::new (collisionInfo(p)) SlotCollision(this, p); else returnfalse; returntrue;
}
¤ Dauer der Verarbeitung: 0.17 Sekunden
(vorverarbeitet)
¤
Die Informationen auf dieser Webseite wurden
nach bestem Wissen sorgfältig zusammengestellt. Es wird jedoch weder Vollständigkeit, noch Richtigkeit,
noch Qualität der bereit gestellten Informationen zugesichert.
Bemerkung:
Die farbliche Syntaxdarstellung ist noch experimentell.