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      1 /*
      2  * Copyright  2007,2008,2009,2010  Red Hat, Inc.
      3  * Copyright  2010,2012  Google, Inc.
      4  *
      5  *  This is part of HarfBuzz, a text shaping library.
      6  *
      7  * Permission is hereby granted, without written agreement and without
      8  * license or royalty fees, to use, copy, modify, and distribute this
      9  * software and its documentation for any purpose, provided that the
     10  * above copyright notice and the following two paragraphs appear in
     11  * all copies of this software.
     12  *
     13  * IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE TO ANY PARTY FOR
     14  * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
     15  * ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN
     16  * IF THE COPYRIGHT HOLDER HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
     17  * DAMAGE.
     18  *
     19  * THE COPYRIGHT HOLDER SPECIFICALLY DISCLAIMS ANY WARRANTIES, INCLUDING,
     20  * BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
     21  * FITNESS FOR A PARTICULAR PURPOSE.  THE SOFTWARE PROVIDED HEREUNDER IS
     22  * ON AN "AS IS" BASIS, AND THE COPYRIGHT HOLDER HAS NO OBLIGATION TO
     23  * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
     24  *
     25  * Red Hat Author(s): Behdad Esfahbod
     26  * Google Author(s): Behdad Esfahbod
     27  */
     28 
     29 #ifndef HB_OT_LAYOUT_GPOS_TABLE_HH
     30 #define HB_OT_LAYOUT_GPOS_TABLE_HH
     31 
     32 #include "hb-ot-layout-gsubgpos-private.hh"
     33 
     34 
     35 namespace OT {
     36 
     37 
     38 /* buffer **position** var allocations */
     39 #define attach_lookback() var.u16[0] /* number of glyphs to go back to attach this glyph to its base */
     40 #define cursive_chain() var.i16[1] /* character to which this connects, may be positive or negative */
     41 
     42 
     43 /* Shared Tables: ValueRecord, Anchor Table, and MarkArray */
     44 
     45 typedef USHORT Value;
     46 
     47 typedef Value ValueRecord[VAR];
     48 
     49 struct ValueFormat : USHORT
     50 {
     51   enum Flags {
     52     xPlacement	= 0x0001,	/* Includes horizontal adjustment for placement */
     53     yPlacement	= 0x0002,	/* Includes vertical adjustment for placement */
     54     xAdvance	= 0x0004,	/* Includes horizontal adjustment for advance */
     55     yAdvance	= 0x0008,	/* Includes vertical adjustment for advance */
     56     xPlaDevice	= 0x0010,	/* Includes horizontal Device table for placement */
     57     yPlaDevice	= 0x0020,	/* Includes vertical Device table for placement */
     58     xAdvDevice	= 0x0040,	/* Includes horizontal Device table for advance */
     59     yAdvDevice	= 0x0080,	/* Includes vertical Device table for advance */
     60     ignored	= 0x0F00,	/* Was used in TrueType Open for MM fonts */
     61     reserved	= 0xF000,	/* For future use */
     62 
     63     devices	= 0x00F0	/* Mask for having any Device table */
     64   };
     65 
     66 /* All fields are options.  Only those available advance the value pointer. */
     67 #if 0
     68   SHORT		xPlacement;		/* Horizontal adjustment for
     69 					 * placement--in design units */
     70   SHORT		yPlacement;		/* Vertical adjustment for
     71 					 * placement--in design units */
     72   SHORT		xAdvance;		/* Horizontal adjustment for
     73 					 * advance--in design units (only used
     74 					 * for horizontal writing) */
     75   SHORT		yAdvance;		/* Vertical adjustment for advance--in
     76 					 * design units (only used for vertical
     77 					 * writing) */
     78   Offset	xPlaDevice;		/* Offset to Device table for
     79 					 * horizontal placement--measured from
     80 					 * beginning of PosTable (may be NULL) */
     81   Offset	yPlaDevice;		/* Offset to Device table for vertical
     82 					 * placement--measured from beginning
     83 					 * of PosTable (may be NULL) */
     84   Offset	xAdvDevice;		/* Offset to Device table for
     85 					 * horizontal advance--measured from
     86 					 * beginning of PosTable (may be NULL) */
     87   Offset	yAdvDevice;		/* Offset to Device table for vertical
     88 					 * advance--measured from beginning of
     89 					 * PosTable (may be NULL) */
     90 #endif
     91 
     92   inline unsigned int get_len (void) const
     93   { return _hb_popcount32 ((unsigned int) *this); }
     94   inline unsigned int get_size (void) const
     95   { return get_len () * Value::static_size; }
     96 
     97   void apply_value (hb_font_t            *font,
     98 		    hb_direction_t        direction,
     99 		    const void           *base,
    100 		    const Value          *values,
    101 		    hb_glyph_position_t  &glyph_pos) const
    102   {
    103     unsigned int x_ppem, y_ppem;
    104     unsigned int format = *this;
    105     hb_bool_t horizontal = HB_DIRECTION_IS_HORIZONTAL (direction);
    106 
    107     if (!format) return;
    108 
    109     if (format & xPlacement) glyph_pos.x_offset  += font->em_scale_x (get_short (values++));
    110     if (format & yPlacement) glyph_pos.y_offset  += font->em_scale_y (get_short (values++));
    111     if (format & xAdvance) {
    112       if (likely (horizontal)) glyph_pos.x_advance += font->em_scale_x (get_short (values++)); else values++;
    113     }
    114     /* y_advance values grow downward but font-space grows upward, hence negation */
    115     if (format & yAdvance) {
    116       if (unlikely (!horizontal)) glyph_pos.y_advance -= font->em_scale_y (get_short (values++)); else values++;
    117     }
    118 
    119     if (!has_device ()) return;
    120 
    121     x_ppem = font->x_ppem;
    122     y_ppem = font->y_ppem;
    123 
    124     if (!x_ppem && !y_ppem) return;
    125 
    126     /* pixel -> fractional pixel */
    127     if (format & xPlaDevice) {
    128       if (x_ppem) glyph_pos.x_offset  += (base + get_device (values++)).get_x_delta (font); else values++;
    129     }
    130     if (format & yPlaDevice) {
    131       if (y_ppem) glyph_pos.y_offset  += (base + get_device (values++)).get_y_delta (font); else values++;
    132     }
    133     if (format & xAdvDevice) {
    134       if (horizontal && x_ppem) glyph_pos.x_advance += (base + get_device (values++)).get_x_delta (font); else values++;
    135     }
    136     if (format & yAdvDevice) {
    137       /* y_advance values grow downward but font-space grows upward, hence negation */
    138       if (!horizontal && y_ppem) glyph_pos.y_advance -= (base + get_device (values++)).get_y_delta (font); else values++;
    139     }
    140   }
    141 
    142   private:
    143   inline bool sanitize_value_devices (hb_sanitize_context_t *c, void *base, Value *values) {
    144     unsigned int format = *this;
    145 
    146     if (format & xPlacement) values++;
    147     if (format & yPlacement) values++;
    148     if (format & xAdvance)   values++;
    149     if (format & yAdvance)   values++;
    150 
    151     if ((format & xPlaDevice) && !get_device (values++).sanitize (c, base)) return false;
    152     if ((format & yPlaDevice) && !get_device (values++).sanitize (c, base)) return false;
    153     if ((format & xAdvDevice) && !get_device (values++).sanitize (c, base)) return false;
    154     if ((format & yAdvDevice) && !get_device (values++).sanitize (c, base)) return false;
    155 
    156     return true;
    157   }
    158 
    159   static inline OffsetTo<Device>& get_device (Value* value)
    160   { return *CastP<OffsetTo<Device> > (value); }
    161   static inline const OffsetTo<Device>& get_device (const Value* value)
    162   { return *CastP<OffsetTo<Device> > (value); }
    163 
    164   static inline const SHORT& get_short (const Value* value)
    165   { return *CastP<SHORT> (value); }
    166 
    167   public:
    168 
    169   inline bool has_device (void) const {
    170     unsigned int format = *this;
    171     return (format & devices) != 0;
    172   }
    173 
    174   inline bool sanitize_value (hb_sanitize_context_t *c, void *base, Value *values) {
    175     TRACE_SANITIZE (this);
    176     return TRACE_RETURN (c->check_range (values, get_size ()) && (!has_device () || sanitize_value_devices (c, base, values)));
    177   }
    178 
    179   inline bool sanitize_values (hb_sanitize_context_t *c, void *base, Value *values, unsigned int count) {
    180     TRACE_SANITIZE (this);
    181     unsigned int len = get_len ();
    182 
    183     if (!c->check_array (values, get_size (), count)) return TRACE_RETURN (false);
    184 
    185     if (!has_device ()) return TRACE_RETURN (true);
    186 
    187     for (unsigned int i = 0; i < count; i++) {
    188       if (!sanitize_value_devices (c, base, values))
    189         return TRACE_RETURN (false);
    190       values += len;
    191     }
    192 
    193     return TRACE_RETURN (true);
    194   }
    195 
    196   /* Just sanitize referenced Device tables.  Doesn't check the values themselves. */
    197   inline bool sanitize_values_stride_unsafe (hb_sanitize_context_t *c, void *base, Value *values, unsigned int count, unsigned int stride) {
    198     TRACE_SANITIZE (this);
    199 
    200     if (!has_device ()) return TRACE_RETURN (true);
    201 
    202     for (unsigned int i = 0; i < count; i++) {
    203       if (!sanitize_value_devices (c, base, values))
    204         return TRACE_RETURN (false);
    205       values += stride;
    206     }
    207 
    208     return TRACE_RETURN (true);
    209   }
    210 };
    211 
    212 
    213 struct AnchorFormat1
    214 {
    215   inline void get_anchor (hb_font_t *font, hb_codepoint_t glyph_id HB_UNUSED,
    216 			  hb_position_t *x, hb_position_t *y) const
    217   {
    218       *x = font->em_scale_x (xCoordinate);
    219       *y = font->em_scale_y (yCoordinate);
    220   }
    221 
    222   inline bool sanitize (hb_sanitize_context_t *c) {
    223     TRACE_SANITIZE (this);
    224     return TRACE_RETURN (c->check_struct (this));
    225   }
    226 
    227   protected:
    228   USHORT	format;			/* Format identifier--format = 1 */
    229   SHORT		xCoordinate;		/* Horizontal value--in design units */
    230   SHORT		yCoordinate;		/* Vertical value--in design units */
    231   public:
    232   DEFINE_SIZE_STATIC (6);
    233 };
    234 
    235 struct AnchorFormat2
    236 {
    237   inline void get_anchor (hb_font_t *font, hb_codepoint_t glyph_id,
    238 			  hb_position_t *x, hb_position_t *y) const
    239   {
    240       unsigned int x_ppem = font->x_ppem;
    241       unsigned int y_ppem = font->y_ppem;
    242       hb_position_t cx, cy;
    243       hb_bool_t ret = false;
    244 
    245       if (x_ppem || y_ppem)
    246 	ret = font->get_glyph_contour_point_for_origin (glyph_id, anchorPoint, HB_DIRECTION_LTR, &cx, &cy);
    247       *x = x_ppem && ret ? cx : font->em_scale_x (xCoordinate);
    248       *y = y_ppem && ret ? cy : font->em_scale_y (yCoordinate);
    249   }
    250 
    251   inline bool sanitize (hb_sanitize_context_t *c) {
    252     TRACE_SANITIZE (this);
    253     return TRACE_RETURN (c->check_struct (this));
    254   }
    255 
    256   protected:
    257   USHORT	format;			/* Format identifier--format = 2 */
    258   SHORT		xCoordinate;		/* Horizontal value--in design units */
    259   SHORT		yCoordinate;		/* Vertical value--in design units */
    260   USHORT	anchorPoint;		/* Index to glyph contour point */
    261   public:
    262   DEFINE_SIZE_STATIC (8);
    263 };
    264 
    265 struct AnchorFormat3
    266 {
    267   inline void get_anchor (hb_font_t *font, hb_codepoint_t glyph_id HB_UNUSED,
    268 			  hb_position_t *x, hb_position_t *y) const
    269   {
    270       *x = font->em_scale_x (xCoordinate);
    271       *y = font->em_scale_y (yCoordinate);
    272 
    273       if (font->x_ppem)
    274 	*x += (this+xDeviceTable).get_x_delta (font);
    275       if (font->y_ppem)
    276 	*y += (this+yDeviceTable).get_x_delta (font);
    277   }
    278 
    279   inline bool sanitize (hb_sanitize_context_t *c) {
    280     TRACE_SANITIZE (this);
    281     return TRACE_RETURN (c->check_struct (this) && xDeviceTable.sanitize (c, this) && yDeviceTable.sanitize (c, this));
    282   }
    283 
    284   protected:
    285   USHORT	format;			/* Format identifier--format = 3 */
    286   SHORT		xCoordinate;		/* Horizontal value--in design units */
    287   SHORT		yCoordinate;		/* Vertical value--in design units */
    288   OffsetTo<Device>
    289 		xDeviceTable;		/* Offset to Device table for X
    290 					 * coordinate-- from beginning of
    291 					 * Anchor table (may be NULL) */
    292   OffsetTo<Device>
    293 		yDeviceTable;		/* Offset to Device table for Y
    294 					 * coordinate-- from beginning of
    295 					 * Anchor table (may be NULL) */
    296   public:
    297   DEFINE_SIZE_STATIC (10);
    298 };
    299 
    300 struct Anchor
    301 {
    302   inline void get_anchor (hb_font_t *font, hb_codepoint_t glyph_id,
    303 			  hb_position_t *x, hb_position_t *y) const
    304   {
    305     *x = *y = 0;
    306     switch (u.format) {
    307     case 1: u.format1.get_anchor (font, glyph_id, x, y); return;
    308     case 2: u.format2.get_anchor (font, glyph_id, x, y); return;
    309     case 3: u.format3.get_anchor (font, glyph_id, x, y); return;
    310     default:						 return;
    311     }
    312   }
    313 
    314   inline bool sanitize (hb_sanitize_context_t *c) {
    315     TRACE_SANITIZE (this);
    316     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
    317     switch (u.format) {
    318     case 1: return TRACE_RETURN (u.format1.sanitize (c));
    319     case 2: return TRACE_RETURN (u.format2.sanitize (c));
    320     case 3: return TRACE_RETURN (u.format3.sanitize (c));
    321     default:return TRACE_RETURN (true);
    322     }
    323   }
    324 
    325   protected:
    326   union {
    327   USHORT		format;		/* Format identifier */
    328   AnchorFormat1		format1;
    329   AnchorFormat2		format2;
    330   AnchorFormat3		format3;
    331   } u;
    332   public:
    333   DEFINE_SIZE_UNION (2, format);
    334 };
    335 
    336 
    337 struct AnchorMatrix
    338 {
    339   inline const Anchor& get_anchor (unsigned int row, unsigned int col, unsigned int cols, bool *found) const {
    340     *found = false;
    341     if (unlikely (row >= rows || col >= cols)) return Null(Anchor);
    342     *found = !matrix[row * cols + col].is_null ();
    343     return this+matrix[row * cols + col];
    344   }
    345 
    346   inline bool sanitize (hb_sanitize_context_t *c, unsigned int cols) {
    347     TRACE_SANITIZE (this);
    348     if (!c->check_struct (this)) return TRACE_RETURN (false);
    349     if (unlikely (rows > 0 && cols >= ((unsigned int) -1) / rows)) return TRACE_RETURN (false);
    350     unsigned int count = rows * cols;
    351     if (!c->check_array (matrix, matrix[0].static_size, count)) return TRACE_RETURN (false);
    352     for (unsigned int i = 0; i < count; i++)
    353       if (!matrix[i].sanitize (c, this)) return TRACE_RETURN (false);
    354     return TRACE_RETURN (true);
    355   }
    356 
    357   USHORT	rows;			/* Number of rows */
    358   protected:
    359   OffsetTo<Anchor>
    360 		matrix[VAR];		/* Matrix of offsets to Anchor tables--
    361 					 * from beginning of AnchorMatrix table */
    362   public:
    363   DEFINE_SIZE_ARRAY (2, matrix);
    364 };
    365 
    366 
    367 struct MarkRecord
    368 {
    369   friend struct MarkArray;
    370 
    371   inline bool sanitize (hb_sanitize_context_t *c, void *base) {
    372     TRACE_SANITIZE (this);
    373     return TRACE_RETURN (c->check_struct (this) && markAnchor.sanitize (c, base));
    374   }
    375 
    376   protected:
    377   USHORT	klass;			/* Class defined for this mark */
    378   OffsetTo<Anchor>
    379 		markAnchor;		/* Offset to Anchor table--from
    380 					 * beginning of MarkArray table */
    381   public:
    382   DEFINE_SIZE_STATIC (4);
    383 };
    384 
    385 struct MarkArray : ArrayOf<MarkRecord>	/* Array of MarkRecords--in Coverage order */
    386 {
    387   inline bool apply (hb_apply_context_t *c,
    388 		     unsigned int mark_index, unsigned int glyph_index,
    389 		     const AnchorMatrix &anchors, unsigned int class_count,
    390 		     unsigned int glyph_pos) const
    391   {
    392     TRACE_APPLY (this);
    393     const MarkRecord &record = ArrayOf<MarkRecord>::operator[](mark_index);
    394     unsigned int mark_class = record.klass;
    395 
    396     const Anchor& mark_anchor = this + record.markAnchor;
    397     bool found;
    398     const Anchor& glyph_anchor = anchors.get_anchor (glyph_index, mark_class, class_count, &found);
    399     /* If this subtable doesn't have an anchor for this base and this class,
    400      * return false such that the subsequent subtables have a chance at it. */
    401     if (unlikely (!found)) return TRACE_RETURN (false);
    402 
    403     hb_position_t mark_x, mark_y, base_x, base_y;
    404 
    405     mark_anchor.get_anchor (c->font, c->buffer->cur().codepoint, &mark_x, &mark_y);
    406     glyph_anchor.get_anchor (c->font, c->buffer->info[glyph_pos].codepoint, &base_x, &base_y);
    407 
    408     hb_glyph_position_t &o = c->buffer->cur_pos();
    409     o.x_offset = base_x - mark_x;
    410     o.y_offset = base_y - mark_y;
    411     o.attach_lookback() = c->buffer->idx - glyph_pos;
    412 
    413     c->buffer->idx++;
    414     return TRACE_RETURN (true);
    415   }
    416 
    417   inline bool sanitize (hb_sanitize_context_t *c) {
    418     TRACE_SANITIZE (this);
    419     return TRACE_RETURN (ArrayOf<MarkRecord>::sanitize (c, this));
    420   }
    421 };
    422 
    423 
    424 /* Lookups */
    425 
    426 struct SinglePosFormat1
    427 {
    428   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
    429   {
    430     TRACE_COLLECT_GLYPHS (this);
    431     (this+coverage).add_coverage (c->input);
    432   }
    433 
    434   inline const Coverage &get_coverage (void) const
    435   {
    436     return this+coverage;
    437   }
    438 
    439   inline bool apply (hb_apply_context_t *c) const
    440   {
    441     TRACE_APPLY (this);
    442     unsigned int index = (this+coverage).get_coverage  (c->buffer->cur().codepoint);
    443     if (likely (index == NOT_COVERED)) return TRACE_RETURN (false);
    444 
    445     valueFormat.apply_value (c->font, c->direction, this,
    446 			     values, c->buffer->cur_pos());
    447 
    448     c->buffer->idx++;
    449     return TRACE_RETURN (true);
    450   }
    451 
    452   inline bool sanitize (hb_sanitize_context_t *c) {
    453     TRACE_SANITIZE (this);
    454     return TRACE_RETURN (c->check_struct (this) && coverage.sanitize (c, this) && valueFormat.sanitize_value (c, this, values));
    455   }
    456 
    457   protected:
    458   USHORT	format;			/* Format identifier--format = 1 */
    459   OffsetTo<Coverage>
    460 		coverage;		/* Offset to Coverage table--from
    461 					 * beginning of subtable */
    462   ValueFormat	valueFormat;		/* Defines the types of data in the
    463 					 * ValueRecord */
    464   ValueRecord	values;			/* Defines positioning
    465 					 * value(s)--applied to all glyphs in
    466 					 * the Coverage table */
    467   public:
    468   DEFINE_SIZE_ARRAY (6, values);
    469 };
    470 
    471 struct SinglePosFormat2
    472 {
    473   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
    474   {
    475     TRACE_COLLECT_GLYPHS (this);
    476     (this+coverage).add_coverage (c->input);
    477   }
    478 
    479   inline const Coverage &get_coverage (void) const
    480   {
    481     return this+coverage;
    482   }
    483 
    484   inline bool apply (hb_apply_context_t *c) const
    485   {
    486     TRACE_APPLY (this);
    487     unsigned int index = (this+coverage).get_coverage  (c->buffer->cur().codepoint);
    488     if (likely (index == NOT_COVERED)) return TRACE_RETURN (false);
    489 
    490     if (likely (index >= valueCount)) return TRACE_RETURN (false);
    491 
    492     valueFormat.apply_value (c->font, c->direction, this,
    493 			     &values[index * valueFormat.get_len ()],
    494 			     c->buffer->cur_pos());
    495 
    496     c->buffer->idx++;
    497     return TRACE_RETURN (true);
    498   }
    499 
    500   inline bool sanitize (hb_sanitize_context_t *c) {
    501     TRACE_SANITIZE (this);
    502     return TRACE_RETURN (c->check_struct (this) && coverage.sanitize (c, this) && valueFormat.sanitize_values (c, this, values, valueCount));
    503   }
    504 
    505   protected:
    506   USHORT	format;			/* Format identifier--format = 2 */
    507   OffsetTo<Coverage>
    508 		coverage;		/* Offset to Coverage table--from
    509 					 * beginning of subtable */
    510   ValueFormat	valueFormat;		/* Defines the types of data in the
    511 					 * ValueRecord */
    512   USHORT	valueCount;		/* Number of ValueRecords */
    513   ValueRecord	values;			/* Array of ValueRecords--positioning
    514 					 * values applied to glyphs */
    515   public:
    516   DEFINE_SIZE_ARRAY (8, values);
    517 };
    518 
    519 struct SinglePos
    520 {
    521   template <typename context_t>
    522   inline typename context_t::return_t dispatch (context_t *c) const
    523   {
    524     TRACE_DISPATCH (this);
    525     switch (u.format) {
    526     case 1: return TRACE_RETURN (c->dispatch (u.format1));
    527     case 2: return TRACE_RETURN (c->dispatch (u.format2));
    528     default:return TRACE_RETURN (c->default_return_value ());
    529     }
    530   }
    531 
    532   inline bool sanitize (hb_sanitize_context_t *c) {
    533     TRACE_SANITIZE (this);
    534     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
    535     switch (u.format) {
    536     case 1: return TRACE_RETURN (u.format1.sanitize (c));
    537     case 2: return TRACE_RETURN (u.format2.sanitize (c));
    538     default:return TRACE_RETURN (true);
    539     }
    540   }
    541 
    542   protected:
    543   union {
    544   USHORT		format;		/* Format identifier */
    545   SinglePosFormat1	format1;
    546   SinglePosFormat2	format2;
    547   } u;
    548 };
    549 
    550 
    551 struct PairValueRecord
    552 {
    553   friend struct PairSet;
    554 
    555   protected:
    556   GlyphID	secondGlyph;		/* GlyphID of second glyph in the
    557 					 * pair--first glyph is listed in the
    558 					 * Coverage table */
    559   ValueRecord	values;			/* Positioning data for the first glyph
    560 					 * followed by for second glyph */
    561   public:
    562   DEFINE_SIZE_ARRAY (2, values);
    563 };
    564 
    565 struct PairSet
    566 {
    567   friend struct PairPosFormat1;
    568 
    569   inline void collect_glyphs (hb_collect_glyphs_context_t *c,
    570 			      const ValueFormat *valueFormats) const
    571   {
    572     TRACE_COLLECT_GLYPHS (this);
    573     unsigned int len1 = valueFormats[0].get_len ();
    574     unsigned int len2 = valueFormats[1].get_len ();
    575     unsigned int record_size = USHORT::static_size * (1 + len1 + len2);
    576 
    577     const PairValueRecord *record = CastP<PairValueRecord> (array);
    578     unsigned int count = len;
    579     for (unsigned int i = 0; i < count; i++)
    580     {
    581       c->input->add (record->secondGlyph);
    582       record = &StructAtOffset<PairValueRecord> (record, record_size);
    583     }
    584   }
    585 
    586   inline bool apply (hb_apply_context_t *c,
    587 		     const ValueFormat *valueFormats,
    588 		     unsigned int pos) const
    589   {
    590     TRACE_APPLY (this);
    591     unsigned int len1 = valueFormats[0].get_len ();
    592     unsigned int len2 = valueFormats[1].get_len ();
    593     unsigned int record_size = USHORT::static_size * (1 + len1 + len2);
    594 
    595     const PairValueRecord *record = CastP<PairValueRecord> (array);
    596     unsigned int count = len;
    597     for (unsigned int i = 0; i < count; i++)
    598     {
    599       /* TODO bsearch */
    600       if (c->buffer->info[pos].codepoint == record->secondGlyph)
    601       {
    602 	valueFormats[0].apply_value (c->font, c->direction, this,
    603 				     &record->values[0], c->buffer->cur_pos());
    604 	valueFormats[1].apply_value (c->font, c->direction, this,
    605 				     &record->values[len1], c->buffer->pos[pos]);
    606 	if (len2)
    607 	  pos++;
    608 	c->buffer->idx = pos;
    609 	return TRACE_RETURN (true);
    610       }
    611       record = &StructAtOffset<PairValueRecord> (record, record_size);
    612     }
    613 
    614     return TRACE_RETURN (false);
    615   }
    616 
    617   struct sanitize_closure_t {
    618     void *base;
    619     ValueFormat *valueFormats;
    620     unsigned int len1; /* valueFormats[0].get_len() */
    621     unsigned int stride; /* 1 + len1 + len2 */
    622   };
    623 
    624   inline bool sanitize (hb_sanitize_context_t *c, const sanitize_closure_t *closure) {
    625     TRACE_SANITIZE (this);
    626     if (!(c->check_struct (this)
    627        && c->check_array (array, USHORT::static_size * closure->stride, len))) return TRACE_RETURN (false);
    628 
    629     unsigned int count = len;
    630     PairValueRecord *record = CastP<PairValueRecord> (array);
    631     return TRACE_RETURN (closure->valueFormats[0].sanitize_values_stride_unsafe (c, closure->base, &record->values[0], count, closure->stride)
    632 		      && closure->valueFormats[1].sanitize_values_stride_unsafe (c, closure->base, &record->values[closure->len1], count, closure->stride));
    633   }
    634 
    635   protected:
    636   USHORT	len;			/* Number of PairValueRecords */
    637   USHORT	array[VAR];		/* Array of PairValueRecords--ordered
    638 					 * by GlyphID of the second glyph */
    639   public:
    640   DEFINE_SIZE_ARRAY (2, array);
    641 };
    642 
    643 struct PairPosFormat1
    644 {
    645   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
    646   {
    647     TRACE_COLLECT_GLYPHS (this);
    648     (this+coverage).add_coverage (c->input);
    649     unsigned int count = pairSet.len;
    650     for (unsigned int i = 0; i < count; i++)
    651       (this+pairSet[i]).collect_glyphs (c, &valueFormat1);
    652   }
    653 
    654   inline const Coverage &get_coverage (void) const
    655   {
    656     return this+coverage;
    657   }
    658 
    659   inline bool apply (hb_apply_context_t *c) const
    660   {
    661     TRACE_APPLY (this);
    662     hb_apply_context_t::skipping_forward_iterator_t skippy_iter (c, c->buffer->idx, 1);
    663     if (skippy_iter.has_no_chance ()) return TRACE_RETURN (false);
    664 
    665     unsigned int index = (this+coverage).get_coverage  (c->buffer->cur().codepoint);
    666     if (likely (index == NOT_COVERED)) return TRACE_RETURN (false);
    667 
    668     if (!skippy_iter.next ()) return TRACE_RETURN (false);
    669 
    670     return TRACE_RETURN ((this+pairSet[index]).apply (c, &valueFormat1, skippy_iter.idx));
    671   }
    672 
    673   inline bool sanitize (hb_sanitize_context_t *c) {
    674     TRACE_SANITIZE (this);
    675 
    676     unsigned int len1 = valueFormat1.get_len ();
    677     unsigned int len2 = valueFormat2.get_len ();
    678     PairSet::sanitize_closure_t closure = {
    679       this,
    680       &valueFormat1,
    681       len1,
    682       1 + len1 + len2
    683     };
    684 
    685     return TRACE_RETURN (c->check_struct (this) && coverage.sanitize (c, this) && pairSet.sanitize (c, this, &closure));
    686   }
    687 
    688   protected:
    689   USHORT	format;			/* Format identifier--format = 1 */
    690   OffsetTo<Coverage>
    691 		coverage;		/* Offset to Coverage table--from
    692 					 * beginning of subtable */
    693   ValueFormat	valueFormat1;		/* Defines the types of data in
    694 					 * ValueRecord1--for the first glyph
    695 					 * in the pair--may be zero (0) */
    696   ValueFormat	valueFormat2;		/* Defines the types of data in
    697 					 * ValueRecord2--for the second glyph
    698 					 * in the pair--may be zero (0) */
    699   OffsetArrayOf<PairSet>
    700 		pairSet;		/* Array of PairSet tables
    701 					 * ordered by Coverage Index */
    702   public:
    703   DEFINE_SIZE_ARRAY (10, pairSet);
    704 };
    705 
    706 struct PairPosFormat2
    707 {
    708   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
    709   {
    710     TRACE_COLLECT_GLYPHS (this);
    711     /* (this+coverage).add_coverage (c->input); // Don't need this. */
    712 
    713     unsigned int count1 = class1Count;
    714     const ClassDef &klass1 = this+classDef1;
    715     for (unsigned int i = 0; i < count1; i++)
    716       klass1.add_class (c->input, i);
    717 
    718     unsigned int count2 = class2Count;
    719     const ClassDef &klass2 = this+classDef2;
    720     for (unsigned int i = 0; i < count2; i++)
    721       klass2.add_class (c->input, i);
    722   }
    723 
    724   inline const Coverage &get_coverage (void) const
    725   {
    726     return this+coverage;
    727   }
    728 
    729   inline bool apply (hb_apply_context_t *c) const
    730   {
    731     TRACE_APPLY (this);
    732     hb_apply_context_t::skipping_forward_iterator_t skippy_iter (c, c->buffer->idx, 1);
    733     if (skippy_iter.has_no_chance ()) return TRACE_RETURN (false);
    734 
    735     unsigned int index = (this+coverage).get_coverage  (c->buffer->cur().codepoint);
    736     if (likely (index == NOT_COVERED)) return TRACE_RETURN (false);
    737 
    738     if (!skippy_iter.next ()) return TRACE_RETURN (false);
    739 
    740     unsigned int len1 = valueFormat1.get_len ();
    741     unsigned int len2 = valueFormat2.get_len ();
    742     unsigned int record_len = len1 + len2;
    743 
    744     unsigned int klass1 = (this+classDef1).get_class (c->buffer->cur().codepoint);
    745     unsigned int klass2 = (this+classDef2).get_class (c->buffer->info[skippy_iter.idx].codepoint);
    746     if (unlikely (klass1 >= class1Count || klass2 >= class2Count)) return TRACE_RETURN (false);
    747 
    748     const Value *v = &values[record_len * (klass1 * class2Count + klass2)];
    749     valueFormat1.apply_value (c->font, c->direction, this,
    750 			      v, c->buffer->cur_pos());
    751     valueFormat2.apply_value (c->font, c->direction, this,
    752 			      v + len1, c->buffer->pos[skippy_iter.idx]);
    753 
    754     c->buffer->idx = skippy_iter.idx;
    755     if (len2)
    756       c->buffer->idx++;
    757 
    758     return TRACE_RETURN (true);
    759   }
    760 
    761   inline bool sanitize (hb_sanitize_context_t *c) {
    762     TRACE_SANITIZE (this);
    763     if (!(c->check_struct (this)
    764        && coverage.sanitize (c, this)
    765        && classDef1.sanitize (c, this)
    766        && classDef2.sanitize (c, this))) return TRACE_RETURN (false);
    767 
    768     unsigned int len1 = valueFormat1.get_len ();
    769     unsigned int len2 = valueFormat2.get_len ();
    770     unsigned int stride = len1 + len2;
    771     unsigned int record_size = valueFormat1.get_size () + valueFormat2.get_size ();
    772     unsigned int count = (unsigned int) class1Count * (unsigned int) class2Count;
    773     return TRACE_RETURN (c->check_array (values, record_size, count) &&
    774 			 valueFormat1.sanitize_values_stride_unsafe (c, this, &values[0], count, stride) &&
    775 			 valueFormat2.sanitize_values_stride_unsafe (c, this, &values[len1], count, stride));
    776   }
    777 
    778   protected:
    779   USHORT	format;			/* Format identifier--format = 2 */
    780   OffsetTo<Coverage>
    781 		coverage;		/* Offset to Coverage table--from
    782 					 * beginning of subtable */
    783   ValueFormat	valueFormat1;		/* ValueRecord definition--for the
    784 					 * first glyph of the pair--may be zero
    785 					 * (0) */
    786   ValueFormat	valueFormat2;		/* ValueRecord definition--for the
    787 					 * second glyph of the pair--may be
    788 					 * zero (0) */
    789   OffsetTo<ClassDef>
    790 		classDef1;		/* Offset to ClassDef table--from
    791 					 * beginning of PairPos subtable--for
    792 					 * the first glyph of the pair */
    793   OffsetTo<ClassDef>
    794 		classDef2;		/* Offset to ClassDef table--from
    795 					 * beginning of PairPos subtable--for
    796 					 * the second glyph of the pair */
    797   USHORT	class1Count;		/* Number of classes in ClassDef1
    798 					 * table--includes Class0 */
    799   USHORT	class2Count;		/* Number of classes in ClassDef2
    800 					 * table--includes Class0 */
    801   ValueRecord	values;			/* Matrix of value pairs:
    802 					 * class1-major, class2-minor,
    803 					 * Each entry has value1 and value2 */
    804   public:
    805   DEFINE_SIZE_ARRAY (16, values);
    806 };
    807 
    808 struct PairPos
    809 {
    810   template <typename context_t>
    811   inline typename context_t::return_t dispatch (context_t *c) const
    812   {
    813     TRACE_DISPATCH (this);
    814     switch (u.format) {
    815     case 1: return TRACE_RETURN (c->dispatch (u.format1));
    816     case 2: return TRACE_RETURN (c->dispatch (u.format2));
    817     default:return TRACE_RETURN (c->default_return_value ());
    818     }
    819   }
    820 
    821   inline bool sanitize (hb_sanitize_context_t *c) {
    822     TRACE_SANITIZE (this);
    823     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
    824     switch (u.format) {
    825     case 1: return TRACE_RETURN (u.format1.sanitize (c));
    826     case 2: return TRACE_RETURN (u.format2.sanitize (c));
    827     default:return TRACE_RETURN (true);
    828     }
    829   }
    830 
    831   protected:
    832   union {
    833   USHORT		format;		/* Format identifier */
    834   PairPosFormat1	format1;
    835   PairPosFormat2	format2;
    836   } u;
    837 };
    838 
    839 
    840 struct EntryExitRecord
    841 {
    842   friend struct CursivePosFormat1;
    843 
    844   inline bool sanitize (hb_sanitize_context_t *c, void *base) {
    845     TRACE_SANITIZE (this);
    846     return TRACE_RETURN (entryAnchor.sanitize (c, base) && exitAnchor.sanitize (c, base));
    847   }
    848 
    849   protected:
    850   OffsetTo<Anchor>
    851 		entryAnchor;		/* Offset to EntryAnchor table--from
    852 					 * beginning of CursivePos
    853 					 * subtable--may be NULL */
    854   OffsetTo<Anchor>
    855 		exitAnchor;		/* Offset to ExitAnchor table--from
    856 					 * beginning of CursivePos
    857 					 * subtable--may be NULL */
    858   public:
    859   DEFINE_SIZE_STATIC (4);
    860 };
    861 
    862 struct CursivePosFormat1
    863 {
    864   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
    865   {
    866     TRACE_COLLECT_GLYPHS (this);
    867     (this+coverage).add_coverage (c->input);
    868   }
    869 
    870   inline const Coverage &get_coverage (void) const
    871   {
    872     return this+coverage;
    873   }
    874 
    875   inline bool apply (hb_apply_context_t *c) const
    876   {
    877     TRACE_APPLY (this);
    878 
    879     /* We don't handle mark glyphs here. */
    880     if (c->buffer->cur().glyph_props() & HB_OT_LAYOUT_GLYPH_PROPS_MARK) return TRACE_RETURN (false);
    881 
    882     hb_apply_context_t::skipping_forward_iterator_t skippy_iter (c, c->buffer->idx, 1);
    883     if (skippy_iter.has_no_chance ()) return TRACE_RETURN (false);
    884 
    885     const EntryExitRecord &this_record = entryExitRecord[(this+coverage).get_coverage  (c->buffer->cur().codepoint)];
    886     if (!this_record.exitAnchor) return TRACE_RETURN (false);
    887 
    888     if (!skippy_iter.next ()) return TRACE_RETURN (false);
    889 
    890     const EntryExitRecord &next_record = entryExitRecord[(this+coverage).get_coverage  (c->buffer->info[skippy_iter.idx].codepoint)];
    891     if (!next_record.entryAnchor) return TRACE_RETURN (false);
    892 
    893     unsigned int i = c->buffer->idx;
    894     unsigned int j = skippy_iter.idx;
    895 
    896     hb_position_t entry_x, entry_y, exit_x, exit_y;
    897     (this+this_record.exitAnchor).get_anchor (c->font, c->buffer->info[i].codepoint, &exit_x, &exit_y);
    898     (this+next_record.entryAnchor).get_anchor (c->font, c->buffer->info[j].codepoint, &entry_x, &entry_y);
    899 
    900     hb_glyph_position_t *pos = c->buffer->pos;
    901 
    902     hb_position_t d;
    903     /* Main-direction adjustment */
    904     switch (c->direction) {
    905       case HB_DIRECTION_LTR:
    906 	pos[i].x_advance  =  exit_x + pos[i].x_offset;
    907 
    908 	d = entry_x + pos[j].x_offset;
    909 	pos[j].x_advance -= d;
    910 	pos[j].x_offset  -= d;
    911 	break;
    912       case HB_DIRECTION_RTL:
    913 	d = exit_x + pos[i].x_offset;
    914 	pos[i].x_advance -= d;
    915 	pos[i].x_offset  -= d;
    916 
    917 	pos[j].x_advance  =  entry_x + pos[j].x_offset;
    918 	break;
    919       case HB_DIRECTION_TTB:
    920 	pos[i].y_advance  =  exit_y + pos[i].y_offset;
    921 
    922 	d = entry_y + pos[j].y_offset;
    923 	pos[j].y_advance -= d;
    924 	pos[j].y_offset  -= d;
    925 	break;
    926       case HB_DIRECTION_BTT:
    927 	d = exit_y + pos[i].y_offset;
    928 	pos[i].y_advance -= d;
    929 	pos[i].y_offset  -= d;
    930 
    931 	pos[j].y_advance  =  entry_y;
    932 	break;
    933       case HB_DIRECTION_INVALID:
    934       default:
    935 	break;
    936     }
    937 
    938     /* Cross-direction adjustment */
    939     if  (c->lookup_props & LookupFlag::RightToLeft) {
    940       pos[i].cursive_chain() = j - i;
    941       if (likely (HB_DIRECTION_IS_HORIZONTAL (c->direction)))
    942 	pos[i].y_offset = entry_y - exit_y;
    943       else
    944 	pos[i].x_offset = entry_x - exit_x;
    945     } else {
    946       pos[j].cursive_chain() = i - j;
    947       if (likely (HB_DIRECTION_IS_HORIZONTAL (c->direction)))
    948 	pos[j].y_offset = exit_y - entry_y;
    949       else
    950 	pos[j].x_offset = exit_x - entry_x;
    951     }
    952 
    953     c->buffer->idx = j;
    954     return TRACE_RETURN (true);
    955   }
    956 
    957   inline bool sanitize (hb_sanitize_context_t *c) {
    958     TRACE_SANITIZE (this);
    959     return TRACE_RETURN (coverage.sanitize (c, this) && entryExitRecord.sanitize (c, this));
    960   }
    961 
    962   protected:
    963   USHORT	format;			/* Format identifier--format = 1 */
    964   OffsetTo<Coverage>
    965 		coverage;		/* Offset to Coverage table--from
    966 					 * beginning of subtable */
    967   ArrayOf<EntryExitRecord>
    968 		entryExitRecord;	/* Array of EntryExit records--in
    969 					 * Coverage Index order */
    970   public:
    971   DEFINE_SIZE_ARRAY (6, entryExitRecord);
    972 };
    973 
    974 struct CursivePos
    975 {
    976   template <typename context_t>
    977   inline typename context_t::return_t dispatch (context_t *c) const
    978   {
    979     TRACE_DISPATCH (this);
    980     switch (u.format) {
    981     case 1: return TRACE_RETURN (c->dispatch (u.format1));
    982     default:return TRACE_RETURN (c->default_return_value ());
    983     }
    984   }
    985 
    986   inline bool sanitize (hb_sanitize_context_t *c) {
    987     TRACE_SANITIZE (this);
    988     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
    989     switch (u.format) {
    990     case 1: return TRACE_RETURN (u.format1.sanitize (c));
    991     default:return TRACE_RETURN (true);
    992     }
    993   }
    994 
    995   protected:
    996   union {
    997   USHORT		format;		/* Format identifier */
    998   CursivePosFormat1	format1;
    999   } u;
   1000 };
   1001 
   1002 
   1003 typedef AnchorMatrix BaseArray;		/* base-major--
   1004 					 * in order of BaseCoverage Index--,
   1005 					 * mark-minor--
   1006 					 * ordered by class--zero-based. */
   1007 
   1008 struct MarkBasePosFormat1
   1009 {
   1010   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
   1011   {
   1012     TRACE_COLLECT_GLYPHS (this);
   1013     (this+markCoverage).add_coverage (c->input);
   1014     (this+baseCoverage).add_coverage (c->input);
   1015   }
   1016 
   1017   inline const Coverage &get_coverage (void) const
   1018   {
   1019     return this+markCoverage;
   1020   }
   1021 
   1022   inline bool apply (hb_apply_context_t *c) const
   1023   {
   1024     TRACE_APPLY (this);
   1025     unsigned int mark_index = (this+markCoverage).get_coverage  (c->buffer->cur().codepoint);
   1026     if (likely (mark_index == NOT_COVERED)) return TRACE_RETURN (false);
   1027 
   1028     /* now we search backwards for a non-mark glyph */
   1029     hb_apply_context_t::skipping_backward_iterator_t skippy_iter (c, c->buffer->idx, 1);
   1030     skippy_iter.set_lookup_props (LookupFlag::IgnoreMarks);
   1031     do {
   1032       if (!skippy_iter.prev ()) return TRACE_RETURN (false);
   1033       /* We only want to attach to the first of a MultipleSubst sequence.  Reject others. */
   1034       if (0 == get_lig_comp (c->buffer->info[skippy_iter.idx])) break;
   1035       skippy_iter.reject ();
   1036     } while (1);
   1037 
   1038     /* The following assertion is too strong, so we've disabled it. */
   1039     if (!(c->buffer->info[skippy_iter.idx].glyph_props() & HB_OT_LAYOUT_GLYPH_PROPS_BASE_GLYPH)) {/*return TRACE_RETURN (false);*/}
   1040 
   1041     unsigned int base_index = (this+baseCoverage).get_coverage  (c->buffer->info[skippy_iter.idx].codepoint);
   1042     if (base_index == NOT_COVERED) return TRACE_RETURN (false);
   1043 
   1044     return TRACE_RETURN ((this+markArray).apply (c, mark_index, base_index, this+baseArray, classCount, skippy_iter.idx));
   1045   }
   1046 
   1047   inline bool sanitize (hb_sanitize_context_t *c) {
   1048     TRACE_SANITIZE (this);
   1049     return TRACE_RETURN (c->check_struct (this) && markCoverage.sanitize (c, this) && baseCoverage.sanitize (c, this) &&
   1050 			 markArray.sanitize (c, this) && baseArray.sanitize (c, this, (unsigned int) classCount));
   1051   }
   1052 
   1053   protected:
   1054   USHORT	format;			/* Format identifier--format = 1 */
   1055   OffsetTo<Coverage>
   1056 		markCoverage;		/* Offset to MarkCoverage table--from
   1057 					 * beginning of MarkBasePos subtable */
   1058   OffsetTo<Coverage>
   1059 		baseCoverage;		/* Offset to BaseCoverage table--from
   1060 					 * beginning of MarkBasePos subtable */
   1061   USHORT	classCount;		/* Number of classes defined for marks */
   1062   OffsetTo<MarkArray>
   1063 		markArray;		/* Offset to MarkArray table--from
   1064 					 * beginning of MarkBasePos subtable */
   1065   OffsetTo<BaseArray>
   1066 		baseArray;		/* Offset to BaseArray table--from
   1067 					 * beginning of MarkBasePos subtable */
   1068   public:
   1069   DEFINE_SIZE_STATIC (12);
   1070 };
   1071 
   1072 struct MarkBasePos
   1073 {
   1074   template <typename context_t>
   1075   inline typename context_t::return_t dispatch (context_t *c) const
   1076   {
   1077     TRACE_DISPATCH (this);
   1078     switch (u.format) {
   1079     case 1: return TRACE_RETURN (c->dispatch (u.format1));
   1080     default:return TRACE_RETURN (c->default_return_value ());
   1081     }
   1082   }
   1083 
   1084   inline bool sanitize (hb_sanitize_context_t *c) {
   1085     TRACE_SANITIZE (this);
   1086     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
   1087     switch (u.format) {
   1088     case 1: return TRACE_RETURN (u.format1.sanitize (c));
   1089     default:return TRACE_RETURN (true);
   1090     }
   1091   }
   1092 
   1093   protected:
   1094   union {
   1095   USHORT		format;		/* Format identifier */
   1096   MarkBasePosFormat1	format1;
   1097   } u;
   1098 };
   1099 
   1100 
   1101 typedef AnchorMatrix LigatureAttach;	/* component-major--
   1102 					 * in order of writing direction--,
   1103 					 * mark-minor--
   1104 					 * ordered by class--zero-based. */
   1105 
   1106 typedef OffsetListOf<LigatureAttach> LigatureArray;
   1107 					/* Array of LigatureAttach
   1108 					 * tables ordered by
   1109 					 * LigatureCoverage Index */
   1110 
   1111 struct MarkLigPosFormat1
   1112 {
   1113   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
   1114   {
   1115     TRACE_COLLECT_GLYPHS (this);
   1116     (this+markCoverage).add_coverage (c->input);
   1117     (this+ligatureCoverage).add_coverage (c->input);
   1118   }
   1119 
   1120   inline const Coverage &get_coverage (void) const
   1121   {
   1122     return this+markCoverage;
   1123   }
   1124 
   1125   inline bool apply (hb_apply_context_t *c) const
   1126   {
   1127     TRACE_APPLY (this);
   1128     unsigned int mark_index = (this+markCoverage).get_coverage  (c->buffer->cur().codepoint);
   1129     if (likely (mark_index == NOT_COVERED)) return TRACE_RETURN (false);
   1130 
   1131     /* now we search backwards for a non-mark glyph */
   1132     hb_apply_context_t::skipping_backward_iterator_t skippy_iter (c, c->buffer->idx, 1);
   1133     skippy_iter.set_lookup_props (LookupFlag::IgnoreMarks);
   1134     if (!skippy_iter.prev ()) return TRACE_RETURN (false);
   1135 
   1136     /* The following assertion is too strong, so we've disabled it. */
   1137     if (!(c->buffer->info[skippy_iter.idx].glyph_props() & HB_OT_LAYOUT_GLYPH_PROPS_LIGATURE)) {/*return TRACE_RETURN (false);*/}
   1138 
   1139     unsigned int j = skippy_iter.idx;
   1140     unsigned int lig_index = (this+ligatureCoverage).get_coverage  (c->buffer->info[j].codepoint);
   1141     if (lig_index == NOT_COVERED) return TRACE_RETURN (false);
   1142 
   1143     const LigatureArray& lig_array = this+ligatureArray;
   1144     const LigatureAttach& lig_attach = lig_array[lig_index];
   1145 
   1146     /* Find component to attach to */
   1147     unsigned int comp_count = lig_attach.rows;
   1148     if (unlikely (!comp_count)) return TRACE_RETURN (false);
   1149 
   1150     /* We must now check whether the ligature ID of the current mark glyph
   1151      * is identical to the ligature ID of the found ligature.  If yes, we
   1152      * can directly use the component index.  If not, we attach the mark
   1153      * glyph to the last component of the ligature. */
   1154     unsigned int comp_index;
   1155     unsigned int lig_id = get_lig_id (c->buffer->info[j]);
   1156     unsigned int mark_id = get_lig_id (c->buffer->cur());
   1157     unsigned int mark_comp = get_lig_comp (c->buffer->cur());
   1158     if (lig_id && lig_id == mark_id && mark_comp > 0)
   1159       comp_index = MIN (comp_count, get_lig_comp (c->buffer->cur())) - 1;
   1160     else
   1161       comp_index = comp_count - 1;
   1162 
   1163     return TRACE_RETURN ((this+markArray).apply (c, mark_index, comp_index, lig_attach, classCount, j));
   1164   }
   1165 
   1166   inline bool sanitize (hb_sanitize_context_t *c) {
   1167     TRACE_SANITIZE (this);
   1168     return TRACE_RETURN (c->check_struct (this) && markCoverage.sanitize (c, this) && ligatureCoverage.sanitize (c, this) &&
   1169 			 markArray.sanitize (c, this) && ligatureArray.sanitize (c, this, (unsigned int) classCount));
   1170   }
   1171 
   1172   protected:
   1173   USHORT	format;			/* Format identifier--format = 1 */
   1174   OffsetTo<Coverage>
   1175 		markCoverage;		/* Offset to Mark Coverage table--from
   1176 					 * beginning of MarkLigPos subtable */
   1177   OffsetTo<Coverage>
   1178 		ligatureCoverage;	/* Offset to Ligature Coverage
   1179 					 * table--from beginning of MarkLigPos
   1180 					 * subtable */
   1181   USHORT	classCount;		/* Number of defined mark classes */
   1182   OffsetTo<MarkArray>
   1183 		markArray;		/* Offset to MarkArray table--from
   1184 					 * beginning of MarkLigPos subtable */
   1185   OffsetTo<LigatureArray>
   1186 		ligatureArray;		/* Offset to LigatureArray table--from
   1187 					 * beginning of MarkLigPos subtable */
   1188   public:
   1189   DEFINE_SIZE_STATIC (12);
   1190 };
   1191 
   1192 struct MarkLigPos
   1193 {
   1194   template <typename context_t>
   1195   inline typename context_t::return_t dispatch (context_t *c) const
   1196   {
   1197     TRACE_DISPATCH (this);
   1198     switch (u.format) {
   1199     case 1: return TRACE_RETURN (c->dispatch (u.format1));
   1200     default:return TRACE_RETURN (c->default_return_value ());
   1201     }
   1202   }
   1203 
   1204   inline bool sanitize (hb_sanitize_context_t *c) {
   1205     TRACE_SANITIZE (this);
   1206     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
   1207     switch (u.format) {
   1208     case 1: return TRACE_RETURN (u.format1.sanitize (c));
   1209     default:return TRACE_RETURN (true);
   1210     }
   1211   }
   1212 
   1213   protected:
   1214   union {
   1215   USHORT		format;		/* Format identifier */
   1216   MarkLigPosFormat1	format1;
   1217   } u;
   1218 };
   1219 
   1220 
   1221 typedef AnchorMatrix Mark2Array;	/* mark2-major--
   1222 					 * in order of Mark2Coverage Index--,
   1223 					 * mark1-minor--
   1224 					 * ordered by class--zero-based. */
   1225 
   1226 struct MarkMarkPosFormat1
   1227 {
   1228   inline void collect_glyphs (hb_collect_glyphs_context_t *c) const
   1229   {
   1230     TRACE_COLLECT_GLYPHS (this);
   1231     (this+mark1Coverage).add_coverage (c->input);
   1232     (this+mark2Coverage).add_coverage (c->input);
   1233   }
   1234 
   1235   inline const Coverage &get_coverage (void) const
   1236   {
   1237     return this+mark1Coverage;
   1238   }
   1239 
   1240   inline bool apply (hb_apply_context_t *c) const
   1241   {
   1242     TRACE_APPLY (this);
   1243     unsigned int mark1_index = (this+mark1Coverage).get_coverage  (c->buffer->cur().codepoint);
   1244     if (likely (mark1_index == NOT_COVERED)) return TRACE_RETURN (false);
   1245 
   1246     /* now we search backwards for a suitable mark glyph until a non-mark glyph */
   1247     hb_apply_context_t::skipping_backward_iterator_t skippy_iter (c, c->buffer->idx, 1);
   1248     skippy_iter.set_lookup_props (c->lookup_props & ~LookupFlag::IgnoreFlags);
   1249     if (!skippy_iter.prev ()) return TRACE_RETURN (false);
   1250 
   1251     if (!(c->buffer->info[skippy_iter.idx].glyph_props() & HB_OT_LAYOUT_GLYPH_PROPS_MARK)) { return TRACE_RETURN (false); }
   1252 
   1253     unsigned int j = skippy_iter.idx;
   1254 
   1255     unsigned int id1 = get_lig_id (c->buffer->cur());
   1256     unsigned int id2 = get_lig_id (c->buffer->info[j]);
   1257     unsigned int comp1 = get_lig_comp (c->buffer->cur());
   1258     unsigned int comp2 = get_lig_comp (c->buffer->info[j]);
   1259 
   1260     if (likely (id1 == id2)) {
   1261       if (id1 == 0) /* Marks belonging to the same base. */
   1262 	goto good;
   1263       else if (comp1 == comp2) /* Marks belonging to the same ligature component. */
   1264         goto good;
   1265     } else {
   1266       /* If ligature ids don't match, it may be the case that one of the marks
   1267        * itself is a ligature.  In which case match. */
   1268       if ((id1 > 0 && !comp1) || (id2 > 0 && !comp2))
   1269 	goto good;
   1270     }
   1271 
   1272     /* Didn't match. */
   1273     return TRACE_RETURN (false);
   1274 
   1275     good:
   1276     unsigned int mark2_index = (this+mark2Coverage).get_coverage  (c->buffer->info[j].codepoint);
   1277     if (mark2_index == NOT_COVERED) return TRACE_RETURN (false);
   1278 
   1279     return TRACE_RETURN ((this+mark1Array).apply (c, mark1_index, mark2_index, this+mark2Array, classCount, j));
   1280   }
   1281 
   1282   inline bool sanitize (hb_sanitize_context_t *c) {
   1283     TRACE_SANITIZE (this);
   1284     return TRACE_RETURN (c->check_struct (this) && mark1Coverage.sanitize (c, this) &&
   1285 			 mark2Coverage.sanitize (c, this) && mark1Array.sanitize (c, this)
   1286 			 && mark2Array.sanitize (c, this, (unsigned int) classCount));
   1287   }
   1288 
   1289   protected:
   1290   USHORT	format;			/* Format identifier--format = 1 */
   1291   OffsetTo<Coverage>
   1292 		mark1Coverage;		/* Offset to Combining Mark1 Coverage
   1293 					 * table--from beginning of MarkMarkPos
   1294 					 * subtable */
   1295   OffsetTo<Coverage>
   1296 		mark2Coverage;		/* Offset to Combining Mark2 Coverage
   1297 					 * table--from beginning of MarkMarkPos
   1298 					 * subtable */
   1299   USHORT	classCount;		/* Number of defined mark classes */
   1300   OffsetTo<MarkArray>
   1301 		mark1Array;		/* Offset to Mark1Array table--from
   1302 					 * beginning of MarkMarkPos subtable */
   1303   OffsetTo<Mark2Array>
   1304 		mark2Array;		/* Offset to Mark2Array table--from
   1305 					 * beginning of MarkMarkPos subtable */
   1306   public:
   1307   DEFINE_SIZE_STATIC (12);
   1308 };
   1309 
   1310 struct MarkMarkPos
   1311 {
   1312   template <typename context_t>
   1313   inline typename context_t::return_t dispatch (context_t *c) const
   1314   {
   1315     TRACE_DISPATCH (this);
   1316     switch (u.format) {
   1317     case 1: return TRACE_RETURN (c->dispatch (u.format1));
   1318     default:return TRACE_RETURN (c->default_return_value ());
   1319     }
   1320   }
   1321 
   1322   inline bool sanitize (hb_sanitize_context_t *c) {
   1323     TRACE_SANITIZE (this);
   1324     if (!u.format.sanitize (c)) return TRACE_RETURN (false);
   1325     switch (u.format) {
   1326     case 1: return TRACE_RETURN (u.format1.sanitize (c));
   1327     default:return TRACE_RETURN (true);
   1328     }
   1329   }
   1330 
   1331   protected:
   1332   union {
   1333   USHORT		format;		/* Format identifier */
   1334   MarkMarkPosFormat1	format1;
   1335   } u;
   1336 };
   1337 
   1338 
   1339 struct ContextPos : Context {};
   1340 
   1341 struct ChainContextPos : ChainContext {};
   1342 
   1343 struct ExtensionPos : Extension<ExtensionPos>
   1344 {
   1345   typedef struct PosLookupSubTable LookupSubTable;
   1346 };
   1347 
   1348 
   1349 
   1350 /*
   1351  * PosLookup
   1352  */
   1353 
   1354 
   1355 struct PosLookupSubTable
   1356 {
   1357   friend struct PosLookup;
   1358 
   1359   enum Type {
   1360     Single		= 1,
   1361     Pair		= 2,
   1362     Cursive		= 3,
   1363     MarkBase		= 4,
   1364     MarkLig		= 5,
   1365     MarkMark		= 6,
   1366     Context		= 7,
   1367     ChainContext	= 8,
   1368     Extension		= 9
   1369   };
   1370 
   1371   template <typename context_t>
   1372   inline typename context_t::return_t dispatch (context_t *c, unsigned int lookup_type) const
   1373   {
   1374     TRACE_DISPATCH (this);
   1375     switch (lookup_type) {
   1376     case Single:		return TRACE_RETURN (u.single.dispatch (c));
   1377     case Pair:			return TRACE_RETURN (u.pair.dispatch (c));
   1378     case Cursive:		return TRACE_RETURN (u.cursive.dispatch (c));
   1379     case MarkBase:		return TRACE_RETURN (u.markBase.dispatch (c));
   1380     case MarkLig:		return TRACE_RETURN (u.markLig.dispatch (c));
   1381     case MarkMark:		return TRACE_RETURN (u.markMark.dispatch (c));
   1382     case Context:		return TRACE_RETURN (u.context.dispatch (c));
   1383     case ChainContext:		return TRACE_RETURN (u.chainContext.dispatch (c));
   1384     case Extension:		return TRACE_RETURN (u.extension.dispatch (c));
   1385     default:			return TRACE_RETURN (c->default_return_value ());
   1386     }
   1387   }
   1388 
   1389   inline bool sanitize (hb_sanitize_context_t *c, unsigned int lookup_type) {
   1390     TRACE_SANITIZE (this);
   1391     if (!u.header.sub_format.sanitize (c))
   1392       return TRACE_RETURN (false);
   1393     switch (lookup_type) {
   1394     case Single:		return TRACE_RETURN (u.single.sanitize (c));
   1395     case Pair:			return TRACE_RETURN (u.pair.sanitize (c));
   1396     case Cursive:		return TRACE_RETURN (u.cursive.sanitize (c));
   1397     case MarkBase:		return TRACE_RETURN (u.markBase.sanitize (c));
   1398     case MarkLig:		return TRACE_RETURN (u.markLig.sanitize (c));
   1399     case MarkMark:		return TRACE_RETURN (u.markMark.sanitize (c));
   1400     case Context:		return TRACE_RETURN (u.context.sanitize (c));
   1401     case ChainContext:		return TRACE_RETURN (u.chainContext.sanitize (c));
   1402     case Extension:		return TRACE_RETURN (u.extension.sanitize (c));
   1403     default:			return TRACE_RETURN (true);
   1404     }
   1405   }
   1406 
   1407   protected:
   1408   union {
   1409   struct {
   1410     USHORT		sub_format;
   1411   } header;
   1412   SinglePos		single;
   1413   PairPos		pair;
   1414   CursivePos		cursive;
   1415   MarkBasePos		markBase;
   1416   MarkLigPos		markLig;
   1417   MarkMarkPos		markMark;
   1418   ContextPos		context;
   1419   ChainContextPos	chainContext;
   1420   ExtensionPos		extension;
   1421   } u;
   1422   public:
   1423   DEFINE_SIZE_UNION (2, header.sub_format);
   1424 };
   1425 
   1426 
   1427 struct PosLookup : Lookup
   1428 {
   1429   inline const PosLookupSubTable& get_subtable (unsigned int i) const
   1430   { return this+CastR<OffsetArrayOf<PosLookupSubTable> > (subTable)[i]; }
   1431 
   1432   inline hb_collect_glyphs_context_t::return_t collect_glyphs_lookup (hb_collect_glyphs_context_t *c) const
   1433   {
   1434     TRACE_COLLECT_GLYPHS (this);
   1435     c->set_recurse_func (NULL);
   1436     return TRACE_RETURN (dispatch (c));
   1437   }
   1438 
   1439   template <typename set_t>
   1440   inline void add_coverage (set_t *glyphs) const
   1441   {
   1442     hb_get_coverage_context_t c;
   1443     const Coverage *last = NULL;
   1444     unsigned int count = get_subtable_count ();
   1445     for (unsigned int i = 0; i < count; i++) {
   1446       const Coverage *coverage = &get_subtable (i).dispatch (&c, get_type ());
   1447       if (coverage != last) {
   1448         coverage->add_coverage (glyphs);
   1449         last = coverage;
   1450       }
   1451     }
   1452   }
   1453 
   1454   inline bool apply_once (hb_apply_context_t *c) const
   1455   {
   1456     TRACE_APPLY (this);
   1457     if (!c->check_glyph_property (&c->buffer->cur(), c->lookup_props))
   1458       return TRACE_RETURN (false);
   1459     return TRACE_RETURN (dispatch (c));
   1460   }
   1461 
   1462   static bool apply_recurse_func (hb_apply_context_t *c, unsigned int lookup_index);
   1463 
   1464   inline bool apply_string (hb_apply_context_t *c, const hb_set_digest_t *digest) const
   1465   {
   1466     bool ret = false;
   1467 
   1468     if (unlikely (!c->buffer->len || !c->lookup_mask))
   1469       return false;
   1470 
   1471     c->set_recurse_func (apply_recurse_func);
   1472     c->set_lookup (*this);
   1473 
   1474     c->buffer->idx = 0;
   1475 
   1476     while (c->buffer->idx < c->buffer->len)
   1477     {
   1478       if (digest->may_have (c->buffer->cur().codepoint) &&
   1479 	  (c->buffer->cur().mask & c->lookup_mask) &&
   1480 	  apply_once (c))
   1481 	ret = true;
   1482       else
   1483 	c->buffer->idx++;
   1484     }
   1485 
   1486     return ret;
   1487   }
   1488 
   1489   template <typename context_t>
   1490   static inline typename context_t::return_t dispatch_recurse_func (context_t *c, unsigned int lookup_index);
   1491 
   1492   template <typename context_t>
   1493   inline typename context_t::return_t dispatch (context_t *c) const
   1494   {
   1495     TRACE_DISPATCH (this);
   1496     unsigned int lookup_type = get_type ();
   1497     unsigned int count = get_subtable_count ();
   1498     for (unsigned int i = 0; i < count; i++) {
   1499       typename context_t::return_t r = get_subtable (i).dispatch (c, lookup_type);
   1500       if (c->stop_sublookup_iteration (r))
   1501         return TRACE_RETURN (r);
   1502     }
   1503     return TRACE_RETURN (c->default_return_value ());
   1504   }
   1505 
   1506   inline bool sanitize (hb_sanitize_context_t *c) {
   1507     TRACE_SANITIZE (this);
   1508     if (unlikely (!Lookup::sanitize (c))) return TRACE_RETURN (false);
   1509     OffsetArrayOf<PosLookupSubTable> &list = CastR<OffsetArrayOf<PosLookupSubTable> > (subTable);
   1510     return TRACE_RETURN (list.sanitize (c, this, get_type ()));
   1511   }
   1512 };
   1513 
   1514 typedef OffsetListOf<PosLookup> PosLookupList;
   1515 
   1516 /*
   1517  * GPOS -- The Glyph Positioning Table
   1518  */
   1519 
   1520 struct GPOS : GSUBGPOS
   1521 {
   1522   static const hb_tag_t Tag	= HB_OT_TAG_GPOS;
   1523 
   1524   inline const PosLookup& get_lookup (unsigned int i) const
   1525   { return CastR<PosLookup> (GSUBGPOS::get_lookup (i)); }
   1526 
   1527   static inline void position_start (hb_font_t *font, hb_buffer_t *buffer);
   1528   static inline void position_finish (hb_font_t *font, hb_buffer_t *buffer);
   1529 
   1530   inline bool sanitize (hb_sanitize_context_t *c) {
   1531     TRACE_SANITIZE (this);
   1532     if (unlikely (!GSUBGPOS::sanitize (c))) return TRACE_RETURN (false);
   1533     OffsetTo<PosLookupList> &list = CastR<OffsetTo<PosLookupList> > (lookupList);
   1534     return TRACE_RETURN (list.sanitize (c, this));
   1535   }
   1536   public:
   1537   DEFINE_SIZE_STATIC (10);
   1538 };
   1539 
   1540 
   1541 static void
   1542 fix_cursive_minor_offset (hb_glyph_position_t *pos, unsigned int i, hb_direction_t direction)
   1543 {
   1544   unsigned int j = pos[i].cursive_chain();
   1545   if (likely (!j))
   1546     return;
   1547 
   1548   j += i;
   1549 
   1550   pos[i].cursive_chain() = 0;
   1551 
   1552   fix_cursive_minor_offset (pos, j, direction);
   1553 
   1554   if (HB_DIRECTION_IS_HORIZONTAL (direction))
   1555     pos[i].y_offset += pos[j].y_offset;
   1556   else
   1557     pos[i].x_offset += pos[j].x_offset;
   1558 }
   1559 
   1560 static void
   1561 fix_mark_attachment (hb_glyph_position_t *pos, unsigned int i, hb_direction_t direction)
   1562 {
   1563   if (likely (!(pos[i].attach_lookback())))
   1564     return;
   1565 
   1566   unsigned int j = i - pos[i].attach_lookback();
   1567 
   1568   pos[i].x_offset += pos[j].x_offset;
   1569   pos[i].y_offset += pos[j].y_offset;
   1570 
   1571   if (HB_DIRECTION_IS_FORWARD (direction))
   1572     for (unsigned int k = j; k < i; k++) {
   1573       pos[i].x_offset -= pos[k].x_advance;
   1574       pos[i].y_offset -= pos[k].y_advance;
   1575     }
   1576   else
   1577     for (unsigned int k = j + 1; k < i + 1; k++) {
   1578       pos[i].x_offset += pos[k].x_advance;
   1579       pos[i].y_offset += pos[k].y_advance;
   1580     }
   1581 }
   1582 
   1583 void
   1584 GPOS::position_start (hb_font_t *font HB_UNUSED, hb_buffer_t *buffer)
   1585 {
   1586   buffer->clear_positions ();
   1587 
   1588   unsigned int count = buffer->len;
   1589   for (unsigned int i = 0; i < count; i++)
   1590     buffer->pos[i].attach_lookback() = buffer->pos[i].cursive_chain() = 0;
   1591 }
   1592 
   1593 void
   1594 GPOS::position_finish (hb_font_t *font HB_UNUSED, hb_buffer_t *buffer)
   1595 {
   1596   unsigned int len;
   1597   hb_glyph_position_t *pos = hb_buffer_get_glyph_positions (buffer, &len);
   1598   hb_direction_t direction = buffer->props.direction;
   1599 
   1600   /* Handle cursive connections */
   1601   for (unsigned int i = 0; i < len; i++)
   1602     fix_cursive_minor_offset (pos, i, direction);
   1603 
   1604   /* Handle attachments */
   1605   for (unsigned int i = 0; i < len; i++)
   1606     fix_mark_attachment (pos, i, direction);
   1607 
   1608   HB_BUFFER_DEALLOCATE_VAR (buffer, syllable);
   1609   HB_BUFFER_DEALLOCATE_VAR (buffer, lig_props);
   1610   HB_BUFFER_DEALLOCATE_VAR (buffer, glyph_props);
   1611 }
   1612 
   1613 
   1614 /* Out-of-class implementation for methods recursing */
   1615 
   1616 template <typename context_t>
   1617 inline typename context_t::return_t PosLookup::dispatch_recurse_func (context_t *c, unsigned int lookup_index)
   1618 {
   1619   const GPOS &gpos = *(hb_ot_layout_from_face (c->face)->gpos);
   1620   const PosLookup &l = gpos.get_lookup (lookup_index);
   1621   return l.dispatch (c);
   1622 }
   1623 
   1624 inline bool PosLookup::apply_recurse_func (hb_apply_context_t *c, unsigned int lookup_index)
   1625 {
   1626   const GPOS &gpos = *(hb_ot_layout_from_face (c->face)->gpos);
   1627   const PosLookup &l = gpos.get_lookup (lookup_index);
   1628   unsigned int saved_lookup_props = c->lookup_props;
   1629   c->set_lookup (l);
   1630   bool ret = l.apply_once (c);
   1631   c->lookup_props = saved_lookup_props;
   1632   return ret;
   1633 }
   1634 
   1635 
   1636 #undef attach_lookback
   1637 #undef cursive_chain
   1638 
   1639 
   1640 } /* namespace OT */
   1641 
   1642 
   1643 #endif /* HB_OT_LAYOUT_GPOS_TABLE_HH */
   1644