[old] Speed up Unicode properties access in hb-old shaper
Just to be sure it's not punishing the old shaper performance numbers. Doesn't seem to have a measurable effect.
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36a661c0a0
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08677c2507
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@ -237,13 +237,13 @@ static const unsigned char arabic_group[0x150] = {
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ArabicNone, Zain, Kaph, Fe,
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};
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static ArabicGroup arabicGroup(unsigned short uc)
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static ArabicGroup arabicGroup(hb_unicode_funcs_t *ufuncs, unsigned short uc)
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{
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if (uc >= 0x0600 && uc < 0x750)
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return (ArabicGroup) arabic_group[uc-0x600];
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else if (uc == 0x200d)
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return Center;
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else if (HB_GetUnicodeCharCategory(uc) == HB_Separator_Space)
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else if (HB_GetUnicodeCharCategory(ufuncs, uc) == HB_Separator_Space)
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return ArabicSpace;
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else
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return ArabicNone;
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@ -375,14 +375,14 @@ This seems to imply that we have at most one kashida point per arabic word.
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*/
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static void getArabicProperties(const unsigned short *chars, int len, HB_ArabicProperties *properties)
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static void getArabicProperties(hb_unicode_funcs_t *ufuncs, const unsigned short *chars, int len, HB_ArabicProperties *properties)
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{
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/* qDebug("arabicSyriacOpenTypeShape: properties:"); */
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int lastPos = 0;
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int lastGroup = ArabicNone;
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int i = 0;
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ArabicGroup group = arabicGroup(chars[0]);
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ArabicGroup group = arabicGroup(ufuncs, chars[0]);
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Joining j = joining_for_group[group];
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ArabicShape shape = joining_table[XIsolated][j].form2;
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properties[0].justification = HB_NoJustification;
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@ -391,7 +391,7 @@ static void getArabicProperties(const unsigned short *chars, int len, HB_ArabicP
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/* #### fix handling for spaces and punktuation */
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properties[i].justification = HB_NoJustification;
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group = arabicGroup(chars[i]);
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group = arabicGroup(ufuncs, chars[i]);
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j = joining_for_group[group];
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if (j == JTransparent) {
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@ -460,7 +460,7 @@ static void getArabicProperties(const unsigned short *chars, int len, HB_ArabicP
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case Yeh:
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case Reh:
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if (properties[lastPos].shape == XMedial && arabicGroup(chars[lastPos]) == Beh)
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if (properties[lastPos].shape == XMedial && arabicGroup(ufuncs, chars[lastPos]) == Beh)
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properties[lastPos-1].justification = HB_Arabic_BaRa;
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break;
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@ -504,7 +504,7 @@ static Joining getNkoJoining(unsigned short uc)
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return JNone;
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}
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static void getNkoProperties(const unsigned short *chars, int len, HB_ArabicProperties *properties)
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static void getNkoProperties(hb_unicode_funcs_t *ufuncs, const unsigned short *chars, int len, HB_ArabicProperties *properties)
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{
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int lastPos = 0;
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int i = 0;
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@ -514,7 +514,7 @@ static void getNkoProperties(const unsigned short *chars, int len, HB_ArabicProp
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properties[0].justification = HB_NoJustification;
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for (i = 1; i < len; ++i) {
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properties[i].justification = (HB_GetUnicodeCharCategory(chars[i]) == HB_Separator_Space) ?
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properties[i].justification = (HB_GetUnicodeCharCategory(ufuncs, chars[i]) == HB_Separator_Space) ?
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ArabicSpace : ArabicNone;
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j = getNkoJoining(chars[i]);
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@ -854,13 +854,13 @@ static int getShape(hb_uint8 cell, int shape)
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/*
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Two small helper functions for arabic shaping.
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*/
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static HB_UChar16 prevChar(const HB_UChar16 *str, int pos)
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static HB_UChar16 prevChar(hb_unicode_funcs_t *ufuncs, const HB_UChar16 *str, int pos)
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{
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/*qDebug("leftChar: pos=%d", pos); */
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const HB_UChar16 *ch = str + pos - 1;
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pos--;
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while(pos > -1) {
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if(HB_GetUnicodeCharCategory(*ch) != HB_Mark_NonSpacing)
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if(HB_GetUnicodeCharCategory(ufuncs, *ch) != HB_Mark_NonSpacing)
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return *ch;
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pos--;
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ch--;
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@ -868,13 +868,13 @@ static HB_UChar16 prevChar(const HB_UChar16 *str, int pos)
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return ReplacementCharacter;
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}
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static HB_UChar16 nextChar(const HB_UChar16 *str, hb_uint32 len, hb_uint32 pos)
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static HB_UChar16 nextChar(hb_unicode_funcs_t *ufuncs, const HB_UChar16 *str, hb_uint32 len, hb_uint32 pos)
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{
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const HB_UChar16 *ch = str + pos + 1;
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pos++;
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while(pos < len) {
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/*qDebug("rightChar: %d isLetter=%d, joining=%d", pos, ch.isLetter(), ch.joining()); */
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if(HB_GetUnicodeCharCategory(*ch) != HB_Mark_NonSpacing)
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if(HB_GetUnicodeCharCategory(ufuncs, *ch) != HB_Mark_NonSpacing)
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return *ch;
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/* assume it's a transparent char, this might not be 100% correct */
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pos++;
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@ -883,7 +883,7 @@ static HB_UChar16 nextChar(const HB_UChar16 *str, hb_uint32 len, hb_uint32 pos)
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return ReplacementCharacter;
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}
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static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32 from, hb_uint32 len, HB_UChar16 *shapeBuffer, int *shapedLength,
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static void shapedString(hb_unicode_funcs_t *ufuncs, const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32 from, hb_uint32 len, HB_UChar16 *shapeBuffer, int *shapedLength,
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HB_Bool reverse, HB_GlyphAttributes *attributes, unsigned short *logClusters)
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{
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HB_ArabicProperties *properties;
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@ -910,7 +910,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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}
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if (f + l < stringLength)
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++l;
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getArabicProperties(uc+f, l, props);
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getArabicProperties(ufuncs, uc+f, l, props);
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ch = uc + from;
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data = shapeBuffer;
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@ -927,7 +927,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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goto skip;
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}
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if (reverse)
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*data = HB_GetMirroredChar(*ch);
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*data = HB_GetMirroredChar(ufuncs, *ch);
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else
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*data = *ch;
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} else {
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@ -939,7 +939,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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hb_uint16 map;
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switch (c) {
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case 0x44: { /* lam */
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const HB_UChar16 pch = nextChar(uc, stringLength, pos);
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const HB_UChar16 pch = nextChar(ufuncs, uc, stringLength, pos);
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if ((pch >> 8) == 0x06) {
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switch (pch & 0xff) {
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case 0x22:
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@ -959,7 +959,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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case 0x23: /* alef with hamza above */
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case 0x25: /* alef with hamza below */
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case 0x27: /* alef */
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if (prevChar(uc, pos) == 0x0644) {
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if (prevChar(ufuncs, uc, pos) == 0x0644) {
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/* have a lam alef ligature */
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/*qDebug(" alef of lam-alef ligature"); */
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goto skip;
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@ -973,7 +973,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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}
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/* ##### Fixme */
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/*glyphs[gpos].attributes.zeroWidth = zeroWidth; */
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if (HB_GetUnicodeCharCategory(*ch) == HB_Mark_NonSpacing) {
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if (HB_GetUnicodeCharCategory(ufuncs, *ch) == HB_Mark_NonSpacing) {
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attributes[gpos].mark = TRUE;
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/* qDebug("glyph %d (char %d) is mark!", gpos, i); */
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} else {
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@ -981,7 +981,7 @@ static void shapedString(const HB_UChar16 *uc, hb_uint32 stringLength, hb_uint32
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clusterStart = data - shapeBuffer;
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}
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attributes[gpos].clusterStart = !attributes[gpos].mark;
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attributes[gpos].combiningClass = HB_GetUnicodeCharCombiningClass(*ch);
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attributes[gpos].combiningClass = HB_GetUnicodeCharCombiningClass(ufuncs, *ch);
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attributes[gpos].justification = properties[i].justification;
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/* qDebug("data[%d] = %x (from %x)", gpos, (uint)data->unicode(), ch->unicode());*/
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data++;
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@ -1063,9 +1063,9 @@ static HB_Bool arabicSyriacOpenTypeShape(HB_ShaperItem *item, HB_Bool *ot_ok)
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++l;
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}
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if (item->item.script == HB_Script_Nko)
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getNkoProperties(uc+f, l, props);
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getNkoProperties(item->ufuncs, uc+f, l, props);
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else
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getArabicProperties(uc+f, l, props);
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getArabicProperties(item->ufuncs, uc+f, l, props);
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for (i = 0; i < (int)item->num_glyphs; i++) {
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apply[i] = 0;
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@ -1128,7 +1128,7 @@ HB_Bool HB_ArabicShape(HB_ShaperItem *item)
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return HB_BasicShape(item);
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}
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shapedString(item->string, item->stringLength, item->item.pos, item->item.length, shapedChars, &slen,
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shapedString(item->ufuncs, item->string, item->stringLength, item->item.pos, item->item.length, shapedChars, &slen,
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item->item.bidiLevel % 2,
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item->attributes, item->log_clusters);
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@ -78,27 +78,27 @@ typedef enum
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} HB_CharCategory;
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static inline HB_CharCategory HB_GetUnicodeCharCategory(HB_UChar32 ch)
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static inline HB_CharCategory HB_GetUnicodeCharCategory(hb_unicode_funcs_t *funcs, HB_UChar32 ch)
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{
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return (HB_CharCategory) hb_unicode_general_category (hb_unicode_funcs_get_default (), ch);
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return (HB_CharCategory) hb_unicode_general_category (funcs, ch);
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}
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static inline int HB_GetUnicodeCharCombiningClass(HB_UChar32 ch)
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static inline int HB_GetUnicodeCharCombiningClass(hb_unicode_funcs_t *funcs, HB_UChar32 ch)
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{
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return hb_unicode_combining_class (hb_unicode_funcs_get_default (), ch);
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return hb_unicode_combining_class (funcs, ch);
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}
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static inline HB_UChar16 HB_GetMirroredChar(HB_UChar16 ch)
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static inline HB_UChar16 HB_GetMirroredChar(hb_unicode_funcs_t *funcs, HB_UChar16 ch)
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{
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return hb_unicode_mirroring (hb_unicode_funcs_get_default (), ch);
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return hb_unicode_mirroring (funcs, ch);
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}
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static inline void HB_GetUnicodeCharProperties(HB_UChar32 ch, HB_CharCategory *category, int *combiningClass)
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static inline void HB_GetUnicodeCharProperties(hb_unicode_funcs_t *funcs, HB_UChar32 ch, HB_CharCategory *category, int *combiningClass)
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{
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if (category)
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*category = HB_GetUnicodeCharCategory (ch);
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*category = HB_GetUnicodeCharCategory (funcs, ch);
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if (combiningClass)
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*combiningClass = HB_GetUnicodeCharCombiningClass (ch);
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*combiningClass = HB_GetUnicodeCharCombiningClass (funcs, ch);
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}
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HB_END_HEADER
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@ -406,7 +406,7 @@ HB_Bool HB_GreekShape(HB_ShaperItem *shaper_item)
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HB_CharCategory category;
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int cmb;
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shapedChars[slen] = uc[i];
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HB_GetUnicodeCharProperties(uc[i], &category, &cmb);
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HB_GetUnicodeCharProperties(shaper_item->ufuncs, uc[i], &category, &cmb);
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if (category != HB_Mark_NonSpacing) {
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attributes[slen].clusterStart = TRUE;
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attributes[slen].mark = FALSE;
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@ -151,7 +151,7 @@ HB_Bool HB_HebrewShape(HB_ShaperItem *shaper_item)
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HB_CharCategory category;
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int cmb;
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shapedChars[slen] = uc[i];
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HB_GetUnicodeCharProperties(uc[i], &category, &cmb);
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HB_GetUnicodeCharProperties(shaper_item->ufuncs, uc[i], &category, &cmb);
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if (category != HB_Mark_NonSpacing) {
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attributes[slen].clusterStart = TRUE;
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attributes[slen].mark = FALSE;
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@ -30,22 +30,22 @@
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#define FLAG(x) (1 << (x))
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static HB_Bool isLetter(HB_UChar16 ucs)
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static HB_Bool isLetter(hb_unicode_funcs_t *ufuncs, HB_UChar16 ucs)
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{
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const int test = FLAG(HB_Letter_Uppercase) |
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FLAG(HB_Letter_Lowercase) |
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FLAG(HB_Letter_Titlecase) |
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FLAG(HB_Letter_Modifier) |
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FLAG(HB_Letter_Other);
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return !!(FLAG(HB_GetUnicodeCharCategory(ucs)) & test);
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return !!(FLAG(HB_GetUnicodeCharCategory(ufuncs, ucs)) & test);
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}
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static HB_Bool isMark(HB_UChar16 ucs)
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static HB_Bool isMark(hb_unicode_funcs_t *ufuncs, HB_UChar16 ucs)
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{
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const int test = FLAG(HB_Mark_NonSpacing) |
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FLAG(HB_Mark_SpacingCombining) |
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FLAG(HB_Mark_Enclosing);
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return !!(FLAG(HB_GetUnicodeCharCategory(ucs)) & test);
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return !!(FLAG(HB_GetUnicodeCharCategory(ufuncs, ucs)) & test);
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}
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enum Form {
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@ -1576,7 +1576,7 @@ static bool indic_shape_syllable(HB_Bool openType, HB_ShaperItem *item, bool inv
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// Ccmp always applies
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// Init
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if (item->item.pos == 0
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|| !(isLetter(item->string[item->item.pos-1]) || isMark(item->string[item->item.pos-1])))
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|| !(isLetter(item->ufuncs, item->string[item->item.pos-1]) || isMark(item->ufuncs, item->string[item->item.pos-1])))
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properties[0] &= ~InitProperty;
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// Nukta always applies
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@ -262,7 +262,7 @@ void HB_HeuristicSetGlyphAttributes(HB_ShaperItem *item)
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int pos = 0;
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HB_CharCategory lastCat;
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int dummy;
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HB_GetUnicodeCharProperties(uc[0], &lastCat, &dummy);
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HB_GetUnicodeCharProperties(item->ufuncs, uc[0], &lastCat, &dummy);
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for (i = 1; i < length; ++i) {
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if (logClusters[i] == pos)
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// same glyph
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@ -277,7 +277,7 @@ void HB_HeuristicSetGlyphAttributes(HB_ShaperItem *item)
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attributes[pos].dontPrint = true;
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HB_CharCategory cat;
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int cmb;
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HB_GetUnicodeCharProperties(uc[i], &cat, &cmb);
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HB_GetUnicodeCharProperties(item->ufuncs, uc[i], &cat, &cmb);
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if (cat != HB_Mark_NonSpacing) {
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attributes[pos].mark = false;
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attributes[pos].clusterStart = true;
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@ -988,6 +988,8 @@ HB_Bool HB_ShapeItem(HB_ShaperItem *shaper_item)
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return false;
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}
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assert(shaper_item->item.script < HB_ScriptCount);
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if (!shaper_item->ufuncs)
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shaper_item->ufuncs = hb_unicode_funcs_get_default ();
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result = HB_ScriptEngines[shaper_item->item.script].shape(shaper_item);
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shaper_item->glyphIndicesPresent = false;
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return result;
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@ -234,6 +234,7 @@ typedef struct HB_Font_ {
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typedef struct HB_ShaperItem_ HB_ShaperItem;
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struct HB_ShaperItem_ {
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hb_unicode_funcs_t *ufuncs;
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const HB_UChar16 *string; /* input: the Unicode UTF16 text to be shaped */
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hb_uint32 stringLength; /* input: the length of the input in 16-bit words */
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HB_ScriptItem item; /* input: the current run to be shaped: a run of text all in the same script that is a substring of <string> */
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