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Diffstat (limited to 'ksvg/impl/libs/libtext2path/src/Converter.cpp')
-rw-r--r--ksvg/impl/libs/libtext2path/src/Converter.cpp36
1 files changed, 18 insertions, 18 deletions
diff --git a/ksvg/impl/libs/libtext2path/src/Converter.cpp b/ksvg/impl/libs/libtext2path/src/Converter.cpp
index 59ab8e5c..16aef608 100644
--- a/ksvg/impl/libs/libtext2path/src/Converter.cpp
+++ b/ksvg/impl/libs/libtext2path/src/Converter.cpp
@@ -90,7 +90,7 @@ void Converter::setKerning(bool mode)
SharedFont Converter::requestFont(const FontVisualParams *params)
{
std::string cacheKey = cacheFontKey(params);
- SharedFont cached = m_fontCache.find(cacheKey);
+ SharedFont cached = m_fontCache.tqfind(cacheKey);
// If not available in cache, create new one and cache it :)
if(cached)
@@ -122,10 +122,10 @@ GlyphAffinePair *Converter::requestGlyph(GlyphRenderParams *params, Rectangle &b
// needed to generate the cache lookup key
selectGlyph(params);
- SharedGlyph cached = m_glyphCache.find(cacheGlyphKey(params));
+ SharedGlyph cached = m_glyphCache.tqfind(cacheGlyphKey(params));
// If not available in cache, render new one and cache it :)
- // If we're mixing ie. japanese and latin characters (TTB layout),
+ // If we're mixing ie. japanese and latin characters (TTB tqlayout),
// then we also have to re-calculate the glyph again with the appropriate rotation matrix (Niko)
if(!cached || !onlyLatin)
cached = calcGlyph(params, affine, onlyLatin);
@@ -162,13 +162,13 @@ void Converter::selectGlyph(GlyphRenderParams *params)
// 2. Load glyph into font's glyphSlot, according to the GlyphLayoutParams
int flags = FT_LOAD_NO_SCALE | FT_LOAD_NO_HINTING | FT_LOAD_NO_BITMAP;
- // 3. Don't pass FT_LOAD_VERTICAL_LAYOUT on TTB layouts when rendering
+ // 3. Don't pass FT_LOAD_VERTICAL_LAYOUT on TTB tqlayouts when rendering
// a latin glyph because it needs to be rotated...
- if(params->layout()->tb())
+ if(params->tqlayout()->tb())
{
Script script;
SCRIPT_FOR_CHAR(script, params->character())
- if(script != Latin || params->layout()->glyphOrientationVertical() == 0)
+ if(script != Latin || params->tqlayout()->glyphOrientationVertical() == 0)
flags |= FT_LOAD_VERTICAL_LAYOUT;
}
@@ -193,7 +193,7 @@ SharedGlyph Converter::calcGlyph(const GlyphRenderParams *params, Affine &affine
affine.dx() += kx + affine.m21() * ky;
// Only apply y kerning in TB mode
- if(params->layout()->tb())
+ if(params->tqlayout()->tb())
affine.dy() += kx + affine.m22() * ky;
}
@@ -206,7 +206,7 @@ SharedGlyph Converter::calcGlyph(const GlyphRenderParams *params, Affine &affine
traceAffine.scale(1000.0 / params->font()->fontFace()->units_per_EM);
// 3b. Enable character rotation, if needed
- if(params->layout()->tb())
+ if(params->tqlayout()->tb())
{
Script script;
SCRIPT_FOR_CHAR(script, params->character())
@@ -214,7 +214,7 @@ SharedGlyph Converter::calcGlyph(const GlyphRenderParams *params, Affine &affine
{
FT_Matrix matrix;
- double angle = deg2rad * params->layout()->glyphOrientationVertical();
+ double angle = deg2rad * params->tqlayout()->glyphOrientationVertical();
matrix.xx = (FT_Fixed)( cos(angle) * 0x10000L);
matrix.xy = (FT_Fixed)(-sin(angle) * 0x10000L);
matrix.yx = (FT_Fixed)( sin(angle) * 0x10000L);
@@ -257,21 +257,21 @@ GlyphSet *Converter::calcString(Font *font, const unsigned short *text, unsigned
if(params->useBidi())
{
FriBidiCharType baseDir = FRIBIDI_TYPE_N;
- FriBidiChar *unicodeIn = new FriBidiChar[length + 1];
- FriBidiChar *unicodeOut = new FriBidiChar[length + 1];
+ FriBidiChar *tqunicodeIn = new FriBidiChar[length + 1];
+ FriBidiChar *tqunicodeOut = new FriBidiChar[length + 1];
bidi = new unsigned short[length + 1];
for(unsigned int i = 0; i < length; i++)
- unicodeIn[i] = text[i];
+ tqunicodeIn[i] = text[i];
- fribidi_log2vis(unicodeIn, length, &baseDir, unicodeOut, 0, 0, 0);
+ fribidi_log2vis(tqunicodeIn, length, &baseDir, tqunicodeOut, 0, 0, 0);
for(unsigned int i = 0; i < length; i++)
- bidi[i] = unicodeOut[i];
+ bidi[i] = tqunicodeOut[i];
bidi[length] = 0;
- delete []unicodeIn;
- delete []unicodeOut;
+ delete []tqunicodeIn;
+ delete []tqunicodeOut;
}
else
bidi = const_cast<unsigned short *>(text);
@@ -302,7 +302,7 @@ GlyphSet *Converter::calcString(Font *font, const unsigned short *text, unsigned
int pixelUnderlineThickness = T2PMAX(1, (int) ((font->fontFace()->underline_thickness * fontSize / font->fontFace()->units_per_EM) * affine.m22()));
// 3. Prepare needed variables for the rendering loop
- // - rendering params (layout, font...)
+ // - rendering params (tqlayout, font...)
// - bounding box (per glyph, overall)
// - glyph matrix (overall)
// - resulting glyph sets
@@ -456,7 +456,7 @@ GlyphSet *Converter::calcString(Font *font, const unsigned short *text, unsigned
result->m_height = T2PMAX(1, int(bbox.b().y() - bbox.a().y()));
// Correct bounding box information also on
- // vertical layouts! (Niko)
+ // vertical tqlayouts! (Niko)
if(!params->tb())
{
if(bpath)