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/Segment.h" #include"inc/Slot.h" #include"inc/Silf.h" #include"inc/CharInfo.h" #include"inc/Rule.h" #include"inc/Collider.h"
int Slot::getAttr(const Segment *seg, attrCode ind, uint8 subindex) const
{ if (ind >= gr_slatJStretch && ind < gr_slatJStretch + 20 && ind != gr_slatJWidth)
{ int indx = ind - gr_slatJStretch; return getJustify(seg, indx / 5, indx % 5);
}
switch (ind)
{ case gr_slatAdvX : returnint(m_advance.x); case gr_slatAdvY : returnint(m_advance.y); case gr_slatAttTo : return m_parent ? 1 : 0; case gr_slatAttX : returnint(m_attach.x); case gr_slatAttY : returnint(m_attach.y); case gr_slatAttXOff : case gr_slatAttYOff : return 0; case gr_slatAttWithX : returnint(m_with.x); case gr_slatAttWithY : returnint(m_with.y); case gr_slatAttWithXOff: case gr_slatAttWithYOff:return 0; case gr_slatAttLevel : return m_attLevel; case gr_slatBreak : return seg->charinfo(m_original)->breakWeight(); case gr_slatCompRef : return 0; case gr_slatDir : return seg->dir() & 1; case gr_slatInsert : return isInsertBefore(); case gr_slatPosX : returnint(m_position.x); // but need to calculate it case gr_slatPosY : returnint(m_position.y); case gr_slatShiftX : returnint(m_shift.x); case gr_slatShiftY : returnint(m_shift.y); case gr_slatMeasureSol: return -1; // err what's this? case gr_slatMeasureEol: return -1; case gr_slatJWidth: returnint(m_just); case gr_slatUserDefnV1: subindex = 0; GR_FALLTHROUGH; // no break case gr_slatUserDefn : return subindex < seg->numAttrs() ? m_userAttr[subindex] : 0; case gr_slatSegSplit : return seg->charinfo(m_original)->flags() & 3; case gr_slatBidiLevel: return m_bidiLevel; case gr_slatColFlags : { SlotCollision *c = seg->collisionInfo(this); return c ? c->flags() : 0; } case gr_slatColLimitblx:SLOTGETCOLATTR(limit().bl.x) case gr_slatColLimitbly:SLOTGETCOLATTR(limit().bl.y) case gr_slatColLimittrx:SLOTGETCOLATTR(limit().tr.x) case gr_slatColLimittry:SLOTGETCOLATTR(limit().tr.y) case gr_slatColShiftx : SLOTGETCOLATTR(offset().x) case gr_slatColShifty : SLOTGETCOLATTR(offset().y) case gr_slatColMargin : SLOTGETCOLATTR(margin()) case gr_slatColMarginWt:SLOTGETCOLATTR(marginWt()) case gr_slatColExclGlyph:SLOTGETCOLATTR(exclGlyph()) case gr_slatColExclOffx:SLOTGETCOLATTR(exclOffset().x) case gr_slatColExclOffy:SLOTGETCOLATTR(exclOffset().y) case gr_slatSeqClass : SLOTGETCOLATTR(seqClass()) case gr_slatSeqProxClass:SLOTGETCOLATTR(seqProxClass()) case gr_slatSeqOrder : SLOTGETCOLATTR(seqOrder()) case gr_slatSeqAboveXoff:SLOTGETCOLATTR(seqAboveXoff()) case gr_slatSeqAboveWt: SLOTGETCOLATTR(seqAboveWt()) case gr_slatSeqBelowXlim:SLOTGETCOLATTR(seqBelowXlim()) case gr_slatSeqBelowWt: SLOTGETCOLATTR(seqBelowWt()) case gr_slatSeqValignHt:SLOTGETCOLATTR(seqValignHt()) case gr_slatSeqValignWt:SLOTGETCOLATTR(seqValignWt()) default : return 0;
}
}
#define SLOTCOLSETATTR(x) { \
SlotCollision *c = seg->collisionInfo(this); \ if (c) { c-> x ; c->setFlags(c->flags() & ~SlotCollision::COLL_KNOWN); } \ break; } #define SLOTCOLSETCOMPLEXATTR(t, y, x) { \
SlotCollision *c = seg->collisionInfo(this); \ if (c) { \ const t &s = c-> y; \
c-> x ; c->setFlags(c->flags() & ~SlotCollision::COLL_KNOWN); } \ break; }
void Slot::setAttr(Segment *seg, attrCode ind, uint8 subindex, int16 value, const SlotMap & map)
{ if (ind == gr_slatUserDefnV1)
{
ind = gr_slatUserDefn;
subindex = 0; if (seg->numAttrs() == 0) return;
} elseif (ind >= gr_slatJStretch && ind < gr_slatJStretch + 20 && ind != gr_slatJWidth)
{ int indx = ind - gr_slatJStretch; return setJustify(seg, indx / 5, indx % 5, value);
}
switch (ind)
{ case gr_slatAdvX : m_advance.x = value; break; case gr_slatAdvY : m_advance.y = value; break; case gr_slatAttTo :
{ const uint16 idx = uint16(value); if (idx < map.size() && map[idx])
{
Slot *other = map[idx]; if (other == this || other == m_parent || other->isCopied()) break; if (m_parent) { m_parent->removeChild(this); attachTo(NULL); }
Slot *pOther = other; int count = 0; bool foundOther = false; while (pOther)
{
++count; if (pOther == this) foundOther = true;
pOther = pOther->attachedTo();
} for (pOther = m_child; pOther; pOther = pOther->m_child)
++count; for (pOther = m_sibling; pOther; pOther = pOther->m_sibling)
++count; if (count < 100 && !foundOther && other->child(this))
{
attachTo(other); if ((map.dir() != 0) ^ (idx > subindex))
m_with = Position(advance(), 0); else// normal match to previous root
m_attach = Position(other->advance(), 0);
}
} break;
} case gr_slatAttX : m_attach.x = value; break; case gr_slatAttY : m_attach.y = value; break; case gr_slatAttXOff : case gr_slatAttYOff : break; case gr_slatAttWithX : m_with.x = value; break; case gr_slatAttWithY : m_with.y = value; break; case gr_slatAttWithXOff : case gr_slatAttWithYOff : break; case gr_slatAttLevel :
m_attLevel = byte(value); break; case gr_slatBreak :
seg->charinfo(m_original)->breakWeight(value); break; case gr_slatCompRef : break; // not sure what to do here case gr_slatDir : break; case gr_slatInsert :
markInsertBefore(value? true : false); break; case gr_slatPosX : break; // can't set these here case gr_slatPosY : break; case gr_slatShiftX : m_shift.x = value; break; case gr_slatShiftY : m_shift.y = value; break; case gr_slatMeasureSol : break; case gr_slatMeasureEol : break; case gr_slatJWidth : just(value); break; case gr_slatSegSplit : seg->charinfo(m_original)->addflags(value & 3); break; case gr_slatUserDefn : m_userAttr[subindex] = value; break; case gr_slatColFlags : {
SlotCollision *c = seg->collisionInfo(this); if (c)
c->setFlags(value); break; } case gr_slatColLimitblx : SLOTCOLSETCOMPLEXATTR(Rect, limit(), setLimit(Rect(Position(value, s.bl.y), s.tr))) case gr_slatColLimitbly : SLOTCOLSETCOMPLEXATTR(Rect, limit(), setLimit(Rect(Position(s.bl.x, value), s.tr))) case gr_slatColLimittrx : SLOTCOLSETCOMPLEXATTR(Rect, limit(), setLimit(Rect(s.bl, Position(value, s.tr.y)))) case gr_slatColLimittry : SLOTCOLSETCOMPLEXATTR(Rect, limit(), setLimit(Rect(s.bl, Position(s.tr.x, value)))) case gr_slatColMargin : SLOTCOLSETATTR(setMargin(value)) case gr_slatColMarginWt : SLOTCOLSETATTR(setMarginWt(value)) case gr_slatColExclGlyph : SLOTCOLSETATTR(setExclGlyph(value)) case gr_slatColExclOffx : SLOTCOLSETCOMPLEXATTR(Position, exclOffset(), setExclOffset(Position(value, s.y))) case gr_slatColExclOffy : SLOTCOLSETCOMPLEXATTR(Position, exclOffset(), setExclOffset(Position(s.x, value))) case gr_slatSeqClass : SLOTCOLSETATTR(setSeqClass(value)) case gr_slatSeqProxClass : SLOTCOLSETATTR(setSeqProxClass(value)) case gr_slatSeqOrder : SLOTCOLSETATTR(setSeqOrder(value)) case gr_slatSeqAboveXoff : SLOTCOLSETATTR(setSeqAboveXoff(value)) case gr_slatSeqAboveWt : SLOTCOLSETATTR(setSeqAboveWt(value)) case gr_slatSeqBelowXlim : SLOTCOLSETATTR(setSeqBelowXlim(value)) case gr_slatSeqBelowWt : SLOTCOLSETATTR(setSeqBelowWt(value)) case gr_slatSeqValignHt : SLOTCOLSETATTR(setSeqValignHt(value)) case gr_slatSeqValignWt : SLOTCOLSETATTR(setSeqValignWt(value)) default : break;
}
}
int Slot::getJustify(const Segment *seg, uint8 level, uint8 subindex) const
{ if (level && level >= seg->silf()->numJustLevels()) return 0;
if (m_justs) return m_justs->values[level * SlotJustify::NUMJUSTPARAMS + subindex];
switch (subindex) { case 0 : return seg->glyphAttr(gid(), jAttrs->attrStretch()); case 1 : return seg->glyphAttr(gid(), jAttrs->attrShrink()); case 2 : return seg->glyphAttr(gid(), jAttrs->attrStep()); case 3 : return seg->glyphAttr(gid(), jAttrs->attrWeight()); case 4 : return 0; // not been set yet, so clearly 0 default: return 0;
}
}
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