hb-ot-shape-complex-indic.cc 44.3 KB
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/*
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 * Copyright © 2011,2012  Google, Inc.
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 *
 *  This is part of HarfBuzz, a text shaping library.
 *
 * Permission is hereby granted, without written agreement and without
 * license or royalty fees, to use, copy, modify, and distribute this
 * software and its documentation for any purpose, provided that the
 * above copyright notice and the following two paragraphs appear in
 * all copies of this software.
 *
 * IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE TO ANY PARTY FOR
 * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
 * ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN
 * IF THE COPYRIGHT HOLDER HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
 * DAMAGE.
 *
 * THE COPYRIGHT HOLDER SPECIFICALLY DISCLAIMS ANY WARRANTIES, INCLUDING,
 * BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
 * FITNESS FOR A PARTICULAR PURPOSE.  THE SOFTWARE PROVIDED HEREUNDER IS
 * ON AN "AS IS" BASIS, AND THE COPYRIGHT HOLDER HAS NO OBLIGATION TO
 * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
 *
 * Google Author(s): Behdad Esfahbod
 */

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#include "hb-ot-shape-complex-indic-private.hh"
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#include "hb-ot-layout-private.hh"
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/*
 * Global Indic shaper options.
 */
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struct indic_options_t
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{
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  int initialized : 1;
  int uniscribe_bug_compatible : 1;
};

union indic_options_union_t {
  int i;
  indic_options_t opts;
};
ASSERT_STATIC (sizeof (int) == sizeof (indic_options_union_t));

static indic_options_union_t
indic_options_init (void)
{
  indic_options_union_t u;
  u.i = 0;
  u.opts.initialized = 1;

  char *c = getenv ("HB_OT_INDIC_OPTIONS");
  u.opts.uniscribe_bug_compatible = c && strstr (c, "uniscribe-bug-compatible");

  return u;
}

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static inline indic_options_t
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indic_options (void)
{
  static indic_options_union_t options;

  if (unlikely (!options.i)) {
    /* This is idempotent and threadsafe. */
    options = indic_options_init ();
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  }

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  return options.opts;
}

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/*
 * Indic configurations.  Note that we do not want to keep every single script-specific
 * behavior in these tables necessarily.  This should mainly be used for per-script
 * properties that are cheaper keeping here, than in the code.  Ie. if, say, one and
 * only one script has an exception, that one script can be if'ed directly in the code,
 * instead of adding a new flag in these structs.
 */

enum base_position_t {
  BASE_POS_FIRST,
  BASE_POS_LAST
};
enum reph_position_t {
  REPH_POS_DEFAULT     = POS_BEFORE_POST,

  REPH_POS_AFTER_MAIN  = POS_AFTER_MAIN,
  REPH_POS_BEFORE_SUB  = POS_BEFORE_SUB,
  REPH_POS_AFTER_SUB   = POS_AFTER_SUB,
  REPH_POS_BEFORE_POST = POS_BEFORE_POST,
  REPH_POS_AFTER_POST  = POS_AFTER_POST
};
enum reph_mode_t {
  REPH_MODE_IMPLICIT,  /* Reph formed out of initial Ra,H sequence. */
  REPH_MODE_EXPLICIT,  /* Reph formed out of initial Ra,H,ZWJ sequence. */
  REPH_MODE_VIS_REPHA, /* Encoded Repha character, no reordering needed. */
  REPH_MODE_LOG_REPHA  /* Encoded Repha character, needs reordering. */
};
struct indic_config_t
{
  hb_script_t     script;
  bool            has_old_spec;
  hb_codepoint_t  virama;
  base_position_t base_pos;
  reph_position_t reph_pos;
  reph_mode_t     reph_mode;
};

static const indic_config_t indic_configs[] =
{
  /* Default.  Should be first. */
  {HB_SCRIPT_INVALID,	false,     0,BASE_POS_LAST, REPH_POS_DEFAULT,    REPH_MODE_IMPLICIT},
  {HB_SCRIPT_DEVANAGARI,true, 0x094D,BASE_POS_LAST, REPH_POS_BEFORE_POST,REPH_MODE_IMPLICIT},
  {HB_SCRIPT_BENGALI,	true, 0x09CD,BASE_POS_LAST, REPH_POS_AFTER_SUB,  REPH_MODE_IMPLICIT},
  {HB_SCRIPT_GURMUKHI,	true, 0x0A4D,BASE_POS_LAST, REPH_POS_BEFORE_SUB, REPH_MODE_IMPLICIT},
  {HB_SCRIPT_GUJARATI,	true, 0x0ACD,BASE_POS_LAST, REPH_POS_BEFORE_POST,REPH_MODE_IMPLICIT},
  {HB_SCRIPT_ORIYA,	true, 0x0B4D,BASE_POS_LAST, REPH_POS_AFTER_MAIN, REPH_MODE_IMPLICIT},
  {HB_SCRIPT_TAMIL,	true, 0x0BCD,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_IMPLICIT},
  {HB_SCRIPT_TELUGU,	true, 0x0C4D,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_EXPLICIT},
  {HB_SCRIPT_KANNADA,	true, 0x0CCD,BASE_POS_LAST, REPH_POS_AFTER_POST, REPH_MODE_IMPLICIT},
  {HB_SCRIPT_MALAYALAM,	true, 0x0D4D,BASE_POS_LAST, REPH_POS_AFTER_MAIN, REPH_MODE_LOG_REPHA},
  {HB_SCRIPT_SINHALA,	false,0x0DCA,BASE_POS_FIRST,REPH_POS_AFTER_MAIN, REPH_MODE_EXPLICIT},
  {HB_SCRIPT_KHMER,	false,0x17D2,BASE_POS_FIRST,REPH_POS_DEFAULT,    REPH_MODE_VIS_REPHA},
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  /* Myanmar does not have the "old_indic" behavior, even though it has a "new" tag. */
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  {HB_SCRIPT_MYANMAR,	false,0x1039,BASE_POS_LAST, REPH_POS_DEFAULT,    REPH_MODE_EXPLICIT},
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};



/*
 * Indic shaper.
 */
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struct feature_list_t {
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  hb_tag_t tag;
  hb_bool_t is_global;
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};

static const feature_list_t
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indic_features[] =
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{
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  /*
   * Basic features.
   * These features are applied in order, one at a time, after initial_reordering.
   */
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  {HB_TAG('n','u','k','t'), true},
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  {HB_TAG('a','k','h','n'), true},
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  {HB_TAG('r','p','h','f'), false},
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  {HB_TAG('r','k','r','f'), true},
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  {HB_TAG('p','r','e','f'), false},
  {HB_TAG('h','a','l','f'), false},
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  {HB_TAG('b','l','w','f'), false},
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  {HB_TAG('a','b','v','f'), false},
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  {HB_TAG('p','s','t','f'), false},
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  {HB_TAG('c','f','a','r'), false},
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  {HB_TAG('c','j','c','t'), true},
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  {HB_TAG('v','a','t','u'), true},
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  /*
   * Other features.
   * These features are applied all at once, after final_reordering.
   */
  {HB_TAG('i','n','i','t'), false},
  {HB_TAG('p','r','e','s'), true},
  {HB_TAG('a','b','v','s'), true},
  {HB_TAG('b','l','w','s'), true},
  {HB_TAG('p','s','t','s'), true},
  {HB_TAG('h','a','l','n'), true},
  /* Positioning features, though we don't care about the types. */
  {HB_TAG('d','i','s','t'), true},
  {HB_TAG('a','b','v','m'), true},
  {HB_TAG('b','l','w','m'), true},
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};

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/*
 * Must be in the same order as the indic_features array.
 */
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enum {
  _NUKT,
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  _AKHN,
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  RPHF,
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  _RKRF,
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  PREF,
  HALF,
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  BLWF,
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  ABVF,
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  PSTF,
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  CFAR,
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  _CJCT,
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  _VATU,

  INIT,
  _PRES,
  _ABVS,
  _BLWS,
  _PSTS,
  _HALN,
  _DIST,
  _ABVM,
  _BLWM,

  INDIC_NUM_FEATURES,
  INDIC_BASIC_FEATURES = INIT /* Don't forget to update this! */
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};

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static void
setup_syllables (const hb_ot_shape_plan_t *plan,
		 hb_font_t *font,
		 hb_buffer_t *buffer);
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static void
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initial_reordering (const hb_ot_shape_plan_t *plan,
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		    hb_font_t *font,
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		    hb_buffer_t *buffer);
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static void
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final_reordering (const hb_ot_shape_plan_t *plan,
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		  hb_font_t *font,
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		  hb_buffer_t *buffer);
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static void
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collect_features_indic (hb_ot_shape_planner_t *plan)
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{
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  hb_ot_map_builder_t *map = &plan->map;

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  /* Do this before any lookups have been applied. */
  map->add_gsub_pause (setup_syllables);

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  map->add_bool_feature (HB_TAG('l','o','c','l'));
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  /* The Indic specs do not require ccmp, but we apply it here since if
   * there is a use of it, it's typically at the beginning. */
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  map->add_bool_feature (HB_TAG('c','c','m','p'));


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  unsigned int i = 0;
  map->add_gsub_pause (initial_reordering);
  for (; i < INDIC_BASIC_FEATURES; i++) {
    map->add_bool_feature (indic_features[i].tag, indic_features[i].is_global);
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    map->add_gsub_pause (NULL);
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  }
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  map->add_gsub_pause (final_reordering);
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  for (; i < INDIC_NUM_FEATURES; i++) {
    map->add_bool_feature (indic_features[i].tag, indic_features[i].is_global);
  }
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}

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static void
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override_features_indic (hb_ot_shape_planner_t *plan)
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{
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  /* Uniscribe does not apply 'kern'. */
  if (indic_options ().uniscribe_bug_compatible)
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    plan->map.add_feature (HB_TAG('k','e','r','n'), 0, true);
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  plan->map.add_feature (HB_TAG('l','i','g','a'), 0, true);
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}

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struct would_substitute_feature_t
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{
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  inline void init (const hb_ot_map_t *map, hb_tag_t feature_tag)
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  {
    map->get_stage_lookups (0/*GSUB*/,
			    map->get_feature_stage (0/*GSUB*/, feature_tag),
			    &lookups, &count);
  }

  inline bool would_substitute (hb_codepoint_t    *glyphs,
				unsigned int       glyphs_count,
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				bool               zero_context,
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				hb_face_t         *face) const
  {
    for (unsigned int i = 0; i < count; i++)
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      if (hb_ot_layout_lookup_would_substitute_fast (face, lookups[i].index, glyphs, glyphs_count, zero_context))
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	return true;
    return false;
  }

  private:
  const hb_ot_map_t::lookup_map_t *lookups;
  unsigned int count;
};

struct indic_shape_plan_t
{
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  ASSERT_POD ();
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  inline bool get_virama_glyph (hb_font_t *font, hb_codepoint_t *pglyph) const
  {
    hb_codepoint_t glyph = virama_glyph;
    if (unlikely (virama_glyph == (hb_codepoint_t) -1))
    {
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      if (!config->virama || !font->get_glyph (config->virama, 0, &glyph))
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	glyph = 0;
      /* Technically speaking, the spec says we should apply 'locl' to virama too.
       * Maybe one day... */

      /* Our get_glyph() function needs a font, so we can't get the virama glyph
       * during shape planning...  Instead, overwrite it here.  It's safe.  Don't worry! */
      (const_cast<indic_shape_plan_t *> (this))->virama_glyph = glyph;
    }

    *pglyph = glyph;
    return glyph != 0;
  }
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  const indic_config_t *config;
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  bool is_old_spec;
  hb_codepoint_t virama_glyph;

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  would_substitute_feature_t rphf;
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  would_substitute_feature_t pref;
  would_substitute_feature_t blwf;
  would_substitute_feature_t pstf;

  hb_mask_t mask_array[INDIC_NUM_FEATURES];
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};

static void *
data_create_indic (const hb_ot_shape_plan_t *plan)
{
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  indic_shape_plan_t *indic_plan = (indic_shape_plan_t *) calloc (1, sizeof (indic_shape_plan_t));
  if (unlikely (!indic_plan))
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    return NULL;

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  indic_plan->config = &indic_configs[0];
  for (unsigned int i = 1; i < ARRAY_LENGTH (indic_configs); i++)
    if (plan->props.script == indic_configs[i].script) {
      indic_plan->config = &indic_configs[i];
      break;
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    }
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  indic_plan->is_old_spec = indic_plan->config->has_old_spec && ((plan->map.chosen_script[0] & 0x000000FF) != '2');
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  indic_plan->virama_glyph = (hb_codepoint_t) -1;
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  indic_plan->rphf.init (&plan->map, HB_TAG('r','p','h','f'));
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  indic_plan->pref.init (&plan->map, HB_TAG('p','r','e','f'));
  indic_plan->blwf.init (&plan->map, HB_TAG('b','l','w','f'));
  indic_plan->pstf.init (&plan->map, HB_TAG('p','s','t','f'));

  for (unsigned int i = 0; i < ARRAY_LENGTH (indic_plan->mask_array); i++)
    indic_plan->mask_array[i] = indic_features[i].is_global ? 0 : plan->map.get_1_mask (indic_features[i].tag);
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  return indic_plan;
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}

static void
data_destroy_indic (void *data)
{
  free (data);
}

static indic_position_t
consonant_position_from_face (const indic_shape_plan_t *indic_plan,
			      hb_codepoint_t *glyphs, unsigned int glyphs_len,
			      hb_face_t      *face)
{
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  bool zero_context = indic_plan->is_old_spec ? false : true;
  if (indic_plan->pref.would_substitute (glyphs, glyphs_len, zero_context, face)) return POS_BELOW_C;
  if (indic_plan->blwf.would_substitute (glyphs, glyphs_len, zero_context, face)) return POS_BELOW_C;
  if (indic_plan->pstf.would_substitute (glyphs, glyphs_len, zero_context, face)) return POS_POST_C;
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  return POS_BASE_C;
}


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enum syllable_type_t {
  consonant_syllable,
  vowel_syllable,
  standalone_cluster,
  broken_cluster,
  non_indic_cluster,
};

#include "hb-ot-shape-complex-indic-machine.hh"


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static void
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setup_masks_indic (const hb_ot_shape_plan_t *plan HB_UNUSED,
		   hb_buffer_t              *buffer,
		   hb_font_t                *font HB_UNUSED)
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{
  HB_BUFFER_ALLOCATE_VAR (buffer, indic_category);
  HB_BUFFER_ALLOCATE_VAR (buffer, indic_position);

  /* We cannot setup masks here.  We save information about characters
   * and setup masks later on in a pause-callback. */

  unsigned int count = buffer->len;
  for (unsigned int i = 0; i < count; i++)
    set_indic_properties (buffer->info[i]);
}

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static void
setup_syllables (const hb_ot_shape_plan_t *plan HB_UNUSED,
		 hb_font_t *font HB_UNUSED,
		 hb_buffer_t *buffer)
{
  find_syllables (buffer);
}

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static int
compare_indic_order (const hb_glyph_info_t *pa, const hb_glyph_info_t *pb)
{
  int a = pa->indic_position();
  int b = pb->indic_position();

  return a < b ? -1 : a == b ? 0 : +1;
}



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static void
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update_consonant_positions (const hb_ot_shape_plan_t *plan,
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			    hb_font_t         *font,
			    hb_buffer_t       *buffer)
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{
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  const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
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  unsigned int consonant_pos = indic_plan->is_old_spec ? 0 : 1;
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  hb_codepoint_t glyphs[2];
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  if (indic_plan->get_virama_glyph (font, &glyphs[1 - consonant_pos]))
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  {
    hb_face_t *face = font->face;
    unsigned int count = buffer->len;
    for (unsigned int i = 0; i < count; i++)
      if (buffer->info[i].indic_position() == POS_BASE_C) {
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	glyphs[consonant_pos] = buffer->info[i].codepoint;
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	buffer->info[i].indic_position() = consonant_position_from_face (indic_plan, glyphs, 2, face);
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      }
  }
}

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/* Rules from:
 * https://www.microsoft.com/typography/otfntdev/devanot/shaping.aspx */

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static void
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initial_reordering_consonant_syllable (const hb_ot_shape_plan_t *plan,
				       hb_face_t *face,
				       hb_buffer_t *buffer,
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				       unsigned int start, unsigned int end)
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{
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  const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
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  hb_glyph_info_t *info = buffer->info;
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  /* 1. Find base consonant:
   *
   * The shaping engine finds the base consonant of the syllable, using the
   * following algorithm: starting from the end of the syllable, move backwards
   * until a consonant is found that does not have a below-base or post-base
   * form (post-base forms have to follow below-base forms), or that is not a
   * pre-base reordering Ra, or arrive at the first consonant. The consonant
   * stopped at will be the base.
   *
   *   o If the syllable starts with Ra + Halant (in a script that has Reph)
   *     and has more than one consonant, Ra is excluded from candidates for
   *     base consonants.
   */

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  unsigned int base = end;
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  bool has_reph = false;
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  {
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    /* -> If the syllable starts with Ra + Halant (in a script that has Reph)
     *    and has more than one consonant, Ra is excluded from candidates for
     *    base consonants. */
    unsigned int limit = start;
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    if (indic_plan->mask_array[RPHF] &&
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	start + 3 <= end &&
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	(
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	 (indic_plan->config->reph_mode == REPH_MODE_IMPLICIT && !is_joiner (info[start + 2])) ||
	 (indic_plan->config->reph_mode == REPH_MODE_EXPLICIT && info[start + 2].indic_category() == OT_ZWJ)
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	))
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    {
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      /* See if it matches the 'rphf' feature. */
      hb_codepoint_t glyphs[2] = {info[start].codepoint, info[start + 1].codepoint};
      if (indic_plan->rphf.would_substitute (glyphs, ARRAY_LENGTH (glyphs), true, face))
      {
	limit += 2;
	while (limit < end && is_joiner (info[limit]))
	  limit++;
	base = start;
	has_reph = true;
      }
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    } else if (indic_plan->config->reph_mode == REPH_MODE_LOG_REPHA && info[start].indic_category() == OT_Repha)
    {
	limit += 1;
	while (limit < end && is_joiner (info[limit]))
	  limit++;
	base = start;
	has_reph = true;
    }
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    switch (indic_plan->config->base_pos)
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    {
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      default:
        assert (false);
	/* fallthrough */

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      case BASE_POS_LAST:
      {
	/* -> starting from the end of the syllable, move backwards */
	unsigned int i = end;
	bool seen_below = false;
	do {
	  i--;
	  /* -> until a consonant is found */
	  if (is_consonant (info[i]))
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	  {
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	    /* -> that does not have a below-base or post-base form
	     * (post-base forms have to follow below-base forms), */
	    if (info[i].indic_position() != POS_BELOW_C &&
		(info[i].indic_position() != POS_POST_C || seen_below))
	    {
	      base = i;
	      break;
	    }
	    if (info[i].indic_position() == POS_BELOW_C)
	      seen_below = true;

	    /* -> or that is not a pre-base reordering Ra,
	     *
	     * IMPLEMENTATION NOTES:
	     *
	     * Our pre-base reordering Ra's are marked POS_BELOW, so will be skipped
	     * by the logic above already.
	     */

	    /* -> or arrive at the first consonant. The consonant stopped at will
	     * be the base. */
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	    base = i;
	  }
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	  else
	  {
	    /* A ZWJ after a Halant stops the base search, and requests an explicit
	     * half form.
	     * A ZWJ before a Halant, requests a subjoined form instead, and hence
	     * search continues.  This is particularly important for Bengali
B
Typo  
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539
	     * sequence Ra,H,Ya that should form Ya-Phalaa by subjoining Ya. */
540 541 542 543 544 545 546 547
	    if (start < i &&
		info[i].indic_category() == OT_ZWJ &&
		info[i - 1].indic_category() == OT_H)
	      break;
	  }
	} while (i > limit);
      }
      break;
548

549 550 551
      case BASE_POS_FIRST:
      {
	/* In scripts without half forms (eg. Khmer), the first consonant is always the base. */
552

553 554
	if (!has_reph)
	  base = limit;
555

556 557 558 559 560 561 562 563 564 565
	/* Find the last base consonant that is not blocked by ZWJ.  If there is
	 * a ZWJ right before a base consonant, that would request a subjoined form. */
	for (unsigned int i = limit; i < end; i++)
	  if (is_consonant (info[i]) && info[i].indic_position() == POS_BASE_C)
	  {
	    if (limit < i && info[i - 1].indic_category() == OT_ZWJ)
	      break;
	    else
	      base = i;
	  }
566

567 568 569 570 571 572
	/* Mark all subsequent consonants as below. */
	for (unsigned int i = base + 1; i < end; i++)
	  if (is_consonant (info[i]) && info[i].indic_position() == POS_BASE_C)
	    info[i].indic_position() = POS_BELOW_C;
      }
      break;
573
    }
B
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574

B
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575 576
    /* -> If the syllable starts with Ra + Halant (in a script that has Reph)
     *    and has more than one consonant, Ra is excluded from candidates for
577 578 579
     *    base consonants.
     *
     *  Only do this for unforced Reph. (ie. not for Ra,H,ZWJ. */
580
    if (has_reph && base == start && start - limit <= 2) {
B
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581 582 583
      /* Have no other consonant, so Reph is not formed and Ra becomes base. */
      has_reph = false;
    }
B
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584
  }
585

586 587
  if (base < end)
    info[base].indic_position() = POS_BASE_C;
588 589


B
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590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621
  /* 2. Decompose and reorder Matras:
   *
   * Each matra and any syllable modifier sign in the cluster are moved to the
   * appropriate position relative to the consonant(s) in the cluster. The
   * shaping engine decomposes two- or three-part matras into their constituent
   * parts before any repositioning. Matra characters are classified by which
   * consonant in a conjunct they have affinity for and are reordered to the
   * following positions:
   *
   *   o Before first half form in the syllable
   *   o After subjoined consonants
   *   o After post-form consonant
   *   o After main consonant (for above marks)
   *
   * IMPLEMENTATION NOTES:
   *
   * The normalize() routine has already decomposed matras for us, so we don't
   * need to worry about that.
   */


  /* 3.  Reorder marks to canonical order:
   *
   * Adjacent nukta and halant or nukta and vedic sign are always repositioned
   * if necessary, so that the nukta is first.
   *
   * IMPLEMENTATION NOTES:
   *
   * We don't need to do this: the normalize() routine already did this for us.
   */


B
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622 623
  /* Reorder characters */

B
Minor  
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624
  for (unsigned int i = start; i < base; i++)
B
Minor  
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625
    info[i].indic_position() = MIN (POS_PRE_C, (indic_position_t) info[i].indic_position());
626

627 628
  if (base < end)
    info[base].indic_position() = POS_BASE_C;
B
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629

630 631 632 633 634 635 636 637 638 639 640 641
  /* Mark final consonants.  A final consonant is one appearing after a matra,
   * like in Khmer. */
  for (unsigned int i = base + 1; i < end; i++)
    if (info[i].indic_category() == OT_M) {
      for (unsigned int j = i + 1; j < end; j++)
        if (is_consonant (info[j])) {
	  info[j].indic_position() = POS_FINAL_C;
	  break;
	}
      break;
    }

642
  /* Handle beginning Ra */
B
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643
  if (has_reph)
644
    info[start].indic_position() = POS_RA_TO_BECOME_REPH;
645

646 647
  /* For old-style Indic script tags, move the first post-base Halant after
   * last consonant. */
648
  if (indic_plan->is_old_spec) {
B
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649
    for (unsigned int i = base + 1; i < end; i++)
650 651 652
      if (info[i].indic_category() == OT_H) {
        unsigned int j;
        for (j = end - 1; j > i; j--)
B
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653
	  if (is_consonant (info[j]))
654 655 656 657 658 659 660 661 662 663 664
	    break;
	if (j > i) {
	  /* Move Halant to after last consonant. */
	  hb_glyph_info_t t = info[i];
	  memmove (&info[i], &info[i + 1], (j - i) * sizeof (info[0]));
	  info[j] = t;
	}
        break;
      }
  }

665
  /* Attach misc marks to previous char to move with them. */
666
  {
667 668 669 670 671 672
    indic_position_t last_pos = POS_START;
    for (unsigned int i = start; i < end; i++)
    {
      if ((FLAG (info[i].indic_category()) & (JOINER_FLAGS | FLAG (OT_N) | FLAG (OT_RS) | HALANT_OR_COENG_FLAGS)))
      {
	info[i].indic_position() = last_pos;
673
	if (unlikely (info[i].indic_category() == OT_H &&
674 675 676 677 678
		      info[i].indic_position() == POS_PRE_M))
	{
	  /*
	   * Uniscribe doesn't move the Halant with Left Matra.
	   * TEST: U+092B,U+093F,U+094DE
679 680 681 682 683
	   * We follow.  This is important for the Sinhala
	   * U+0DDA split matra since it decomposes to U+0DD9,U+0DCA
	   * where U+0DD9 is a left matra and U+0DCA is the virama.
	   * We don't want to move the virama with the left matra.
	   * TEST: U+0D9A,U+0DDA
684
	   */
685
	  for (unsigned int j = i; j > start; j--)
686
	    if (info[j - 1].indic_position() != POS_PRE_M) {
687 688 689
	      info[i].indic_position() = info[j - 1].indic_position();
	      break;
	    }
690 691 692
	}
      } else if (info[i].indic_position() != POS_SMVD) {
        last_pos = (indic_position_t) info[i].indic_position();
693
      }
694
    }
695
  }
696 697 698 699
  /* Re-attach ZWJ, ZWNJ, and halant to next char, for after-base consonants. */
  {
    unsigned int last_halant = end;
    for (unsigned int i = base + 1; i < end; i++)
700
      if (is_halant_or_coeng (info[i]))
701 702 703
        last_halant = i;
      else if (is_consonant (info[i])) {
	for (unsigned int j = last_halant; j < i; j++)
704 705
	  if (info[j].indic_position() != POS_SMVD)
	    info[j].indic_position() = info[i].indic_position();
706 707
      }
  }
B
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708

709
  {
710 711 712 713
    /* Things are out-of-control for post base positions, they may shuffle
     * around like crazy, so merge clusters.  For pre-base stuff, we handle
     * cluster issues in final reordering. */
    buffer->merge_clusters (base, end);
714
    /* Sit tight, rock 'n roll! */
715
    hb_bubble_sort (info + start, end - start, compare_indic_order);
716 717
    /* Find base again */
    base = end;
B
Minor  
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718
    for (unsigned int i = start; i < end; i++)
719 720 721 722 723
      if (info[i].indic_position() == POS_BASE_C) {
        base = i;
	break;
      }
  }
B
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724

B
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725 726
  /* Setup masks now */

B
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727 728 729
  {
    hb_mask_t mask;

730
    /* Reph */
731
    for (unsigned int i = start; i < end && info[i].indic_position() == POS_RA_TO_BECOME_REPH; i++)
732
      info[i].mask |= indic_plan->mask_array[RPHF];
733

B
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734
    /* Pre-base */
735
    mask = indic_plan->mask_array[HALF];
B
Minor  
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736
    for (unsigned int i = start; i < base; i++)
B
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737 738
      info[i].mask  |= mask;
    /* Base */
B
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739
    mask = 0;
740 741
    if (base < end)
      info[base].mask |= mask;
B
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742
    /* Post-base */
743
    mask = indic_plan->mask_array[BLWF] | indic_plan->mask_array[ABVF] | indic_plan->mask_array[PSTF];
B
Minor  
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744
    for (unsigned int i = base + 1; i < end; i++)
B
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745 746
      info[i].mask  |= mask;
  }
B
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747

748
  if (indic_plan->mask_array[PREF] && base + 2 < end)
749
  {
750
    /* Find a Halant,Ra sequence and mark it for pre-base reordering processing. */
751 752 753
    for (unsigned int i = base + 1; i + 1 < end; i++) {
      hb_codepoint_t glyphs[2] = {info[i].codepoint, info[i + 1].codepoint};
      if (indic_plan->pref.would_substitute (glyphs, ARRAY_LENGTH (glyphs), true, face))
754
      {
755 756
	info[i++].mask |= indic_plan->mask_array[PREF];
	info[i++].mask |= indic_plan->mask_array[PREF];
B
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757 758 759 760 761 762 763 764

	/* Mark the subsequent stuff with 'cfar'.  Used in Khmer.
	 * Read the feature spec.
	 * This allows distinguishing the following cases with MS Khmer fonts:
	 * U+1784,U+17D2,U+179A,U+17D2,U+1782
	 * U+1784,U+17D2,U+1782,U+17D2,U+179A
	 */
	for (; i < end; i++)
765
	  info[i].mask |= indic_plan->mask_array[CFAR];
B
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766

767 768
	break;
      }
769
    }
770 771
  }

B
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772
  /* Apply ZWJ/ZWNJ effects */
B
Minor  
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773
  for (unsigned int i = start + 1; i < end; i++)
B
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774 775
    if (is_joiner (info[i])) {
      bool non_joiner = info[i].indic_category() == OT_ZWNJ;
776
      unsigned int j = i;
B
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777 778 779

      do {
	j--;
780

B
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781 782 783 784
	/* A ZWJ disables CJCT, however, it's mere presence is enough
	 * to disable ligation.  No explicit action needed. */

	/* A ZWNJ disables HALF. */
785
	if (non_joiner)
786
	  info[j].mask &= ~indic_plan->mask_array[HALF];
787

B
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788 789
      } while (j > start && !is_consonant (info[j]));
    }
B
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790 791 792 793
}


static void
794
initial_reordering_vowel_syllable (const hb_ot_shape_plan_t *plan,
795
				   hb_face_t *face,
B
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796
				   hb_buffer_t *buffer,
797
				   unsigned int start, unsigned int end)
B
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798
{
B
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799
  /* We made the vowels look like consonants.  So let's call the consonant logic! */
800
  initial_reordering_consonant_syllable (plan, face, buffer, start, end);
B
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801 802 803
}

static void
804
initial_reordering_standalone_cluster (const hb_ot_shape_plan_t *plan,
805
				       hb_face_t *face,
B
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806
				       hb_buffer_t *buffer,
807
				       unsigned int start, unsigned int end)
B
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808
{
809 810 811
  /* We treat NBSP/dotted-circle as if they are consonants, so we should just chain.
   * Only if not in compatibility mode that is... */

812
  if (indic_options ().uniscribe_bug_compatible)
813 814 815 816 817 818 819 820
  {
    /* For dotted-circle, this is what Uniscribe does:
     * If dotted-circle is the last glyph, it just does nothing.
     * Ie. It doesn't form Reph. */
    if (buffer->info[end - 1].indic_category() == OT_DOTTEDCIRCLE)
      return;
  }

821
  initial_reordering_consonant_syllable (plan, face, buffer, start, end);
B
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822 823
}

824 825
static void
initial_reordering_broken_cluster (const hb_ot_shape_plan_t *plan,
826
				   hb_face_t *face,
827 828 829 830
				   hb_buffer_t *buffer,
				   unsigned int start, unsigned int end)
{
  /* We already inserted dotted-circles, so just call the standalone_cluster. */
831
  initial_reordering_standalone_cluster (plan, face, buffer, start, end);
832 833
}

B
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834
static void
835
initial_reordering_non_indic_cluster (const hb_ot_shape_plan_t *plan HB_UNUSED,
836
				      hb_face_t *face HB_UNUSED,
837 838
				      hb_buffer_t *buffer HB_UNUSED,
				      unsigned int start HB_UNUSED, unsigned int end HB_UNUSED)
B
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839 840 841 842 843
{
  /* Nothing to do right now.  If we ever switch to using the output
   * buffer in the reordering process, we'd need to next_glyph() here. */
}

844 845 846

static void
initial_reordering_syllable (const hb_ot_shape_plan_t *plan,
847
			     hb_face_t *face,
848 849 850 851 852
			     hb_buffer_t *buffer,
			     unsigned int start, unsigned int end)
{
  syllable_type_t syllable_type = (syllable_type_t) (buffer->info[start].syllable() & 0x0F);
  switch (syllable_type) {
853 854 855 856 857
  case consonant_syllable:	initial_reordering_consonant_syllable (plan, face, buffer, start, end); return;
  case vowel_syllable:		initial_reordering_vowel_syllable     (plan, face, buffer, start, end); return;
  case standalone_cluster:	initial_reordering_standalone_cluster (plan, face, buffer, start, end); return;
  case broken_cluster:		initial_reordering_broken_cluster     (plan, face, buffer, start, end); return;
  case non_indic_cluster:	initial_reordering_non_indic_cluster  (plan, face, buffer, start, end); return;
858 859 860
  }
}

861
static inline void
B
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862
insert_dotted_circles (const hb_ot_shape_plan_t *plan HB_UNUSED,
863 864 865
		       hb_font_t *font,
		       hb_buffer_t *buffer)
{
866 867 868 869 870 871 872 873 874 875 876 877
  /* Note: This loop is extra overhead, but should not be measurable. */
  bool has_broken_syllables = false;
  unsigned int count = buffer->len;
  for (unsigned int i = 0; i < count; i++)
    if ((buffer->info[i].syllable() & 0x0F) == broken_cluster) {
      has_broken_syllables = true;
      break;
    }
  if (likely (!has_broken_syllables))
    return;


878 879 880 881
  hb_codepoint_t dottedcircle_glyph;
  if (!font->get_glyph (0x25CC, 0, &dottedcircle_glyph))
    return;

882
  hb_glyph_info_t dottedcircle = {0};
883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909
  dottedcircle.codepoint = 0x25CC;
  set_indic_properties (dottedcircle);
  dottedcircle.codepoint = dottedcircle_glyph;

  buffer->clear_output ();

  buffer->idx = 0;
  unsigned int last_syllable = 0;
  while (buffer->idx < buffer->len)
  {
    unsigned int syllable = buffer->cur().syllable();
    syllable_type_t syllable_type = (syllable_type_t) (syllable & 0x0F);
    if (unlikely (last_syllable != syllable && syllable_type == broken_cluster))
    {
      hb_glyph_info_t info = dottedcircle;
      info.cluster = buffer->cur().cluster;
      info.mask = buffer->cur().mask;
      info.syllable() = buffer->cur().syllable();
      buffer->output_info (info);
      last_syllable = syllable;
    }
    buffer->next_glyph ();
  }

  buffer->swap_buffers ();
}

B
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910
static void
911
initial_reordering (const hb_ot_shape_plan_t *plan,
912
		    hb_font_t *font,
B
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913
		    hb_buffer_t *buffer)
B
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914
{
915
  update_consonant_positions (plan, font, buffer);
916
  insert_dotted_circles (plan, font, buffer);
917 918

  hb_glyph_info_t *info = buffer->info;
919 920
  unsigned int count = buffer->len;
  if (unlikely (!count)) return;
921 922 923 924
  unsigned int last = 0;
  unsigned int last_syllable = info[0].syllable();
  for (unsigned int i = 1; i < count; i++)
    if (last_syllable != info[i].syllable()) {
925
      initial_reordering_syllable (plan, font->face, buffer, last, i);
926 927 928
      last = i;
      last_syllable = info[last].syllable();
    }
929
  initial_reordering_syllable (plan, font->face, buffer, last, count);
B
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930 931
}

B
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932
static void
933 934
final_reordering_syllable (const hb_ot_shape_plan_t *plan,
			   hb_buffer_t *buffer,
935
			   unsigned int start, unsigned int end)
B
Behdad Esfahbod 已提交
936
{
937
  const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) plan->data;
938 939
  hb_glyph_info_t *info = buffer->info;

940 941 942 943 944 945
  /* 4. Final reordering:
   *
   * After the localized forms and basic shaping forms GSUB features have been
   * applied (see below), the shaping engine performs some final glyph
   * reordering before applying all the remaining font features to the entire
   * cluster.
946 947 948
   */

  /* Find base again */
949 950 951 952 953 954 955
  unsigned int base;
  for (base = start; base < end; base++)
    if (info[base].indic_position() >= POS_BASE_C) {
      if (start < base && info[base].indic_position() > POS_BASE_C)
        base--;
      break;
    }
956

B
Minor  
Behdad Esfahbod 已提交
957

958
  /*   o Reorder matras:
959 960 961 962 963 964 965
   *
   *     If a pre-base matra character had been reordered before applying basic
   *     features, the glyph can be moved closer to the main consonant based on
   *     whether half-forms had been formed. Actual position for the matra is
   *     defined as “after last standalone halant glyph, after initial matra
   *     position and before the main consonant”. If ZWJ or ZWNJ follow this
   *     halant, position is moved after it.
966 967
   */

968
  if (start + 1 < end && start < base) /* Otherwise there can't be any pre-base matra characters. */
969
  {
970 971 972
    /* If we lost track of base, alas, position before last thingy. */
    unsigned int new_pos = base == end ? base - 2 : base - 1;

973 974 975
    /* Malayalam / Tamil do not have "half" forms or explicit virama forms.
     * The glyphs formed by 'half' are Chillus or ligated explicit viramas.
     * We want to position matra after them.
976
     */
977
    if (buffer->props.script != HB_SCRIPT_MALAYALAM && buffer->props.script != HB_SCRIPT_TAMIL)
978
    {
979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995
      while (new_pos > start &&
	     !(is_one_of (info[new_pos], (FLAG (OT_M) | FLAG (OT_H) | FLAG (OT_Coeng)))))
	new_pos--;

      /* If we found no Halant we are done.
       * Otherwise only proceed if the Halant does
       * not belong to the Matra itself! */
      if (is_halant_or_coeng (info[new_pos]) &&
	  info[new_pos].indic_position() != POS_PRE_M)
      {
	/* -> If ZWJ or ZWNJ follow this halant, position is moved after it. */
	if (new_pos + 1 < end && is_joiner (info[new_pos + 1]))
	  new_pos++;
      }
      else
        new_pos = start; /* No move. */
    }
996

997
    if (start < new_pos && info[new_pos].indic_position () != POS_PRE_M)
998
    {
999
      /* Now go see if there's actually any matras... */
B
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1000
      for (unsigned int i = new_pos; i > start; i--)
1001
	if (info[i - 1].indic_position () == POS_PRE_M)
1002
	{
B
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1003 1004 1005 1006
	  unsigned int old_pos = i - 1;
	  hb_glyph_info_t tmp = info[old_pos];
	  memmove (&info[old_pos], &info[old_pos + 1], (new_pos - old_pos) * sizeof (info[0]));
	  info[new_pos] = tmp;
B
Behdad Esfahbod 已提交
1007
	  new_pos--;
1008
	}
1009
      buffer->merge_clusters (new_pos, MIN (end, base + 1));
1010
    } else {
1011
      for (unsigned int i = start; i < base; i++)
1012
	if (info[i].indic_position () == POS_PRE_M) {
1013
	  buffer->merge_clusters (i, MIN (end, base + 1));
1014 1015
	  break;
	}
1016
    }
1017 1018 1019 1020
  }


  /*   o Reorder reph:
1021 1022 1023 1024 1025 1026
   *
   *     Reph’s original position is always at the beginning of the syllable,
   *     (i.e. it is not reordered at the character reordering stage). However,
   *     it will be reordered according to the basic-forms shaping results.
   *     Possible positions for reph, depending on the script, are; after main,
   *     before post-base consonant forms, and after post-base consonant forms.
1027 1028 1029 1030 1031 1032 1033 1034 1035
   */

  /* If there's anything after the Ra that has the REPH pos, it ought to be halant.
   * Which means that the font has failed to ligate the Reph.  In which case, we
   * shouldn't move. */
  if (start + 1 < end &&
      info[start].indic_position() == POS_RA_TO_BECOME_REPH &&
      info[start + 1].indic_position() != POS_RA_TO_BECOME_REPH)
  {
1036 1037 1038 1039
    unsigned int new_reph_pos;
    reph_position_t reph_pos = indic_plan->config->reph_pos;

    /* XXX Figure out old behavior too */
1040

1041 1042
    /*       1. If reph should be positioned after post-base consonant forms,
     *          proceed to step 5.
1043
     */
1044
    if (reph_pos == REPH_POS_AFTER_POST)
1045
    {
1046
      goto reph_step_5;
1047 1048 1049
    }

    /*       2. If the reph repositioning class is not after post-base: target
1050 1051 1052 1053 1054 1055 1056 1057 1058
     *          position is after the first explicit halant glyph between the
     *          first post-reph consonant and last main consonant. If ZWJ or ZWNJ
     *          are following this halant, position is moved after it. If such
     *          position is found, this is the target position. Otherwise,
     *          proceed to the next step.
     *
     *          Note: in old-implementation fonts, where classifications were
     *          fixed in shaping engine, there was no case where reph position
     *          will be found on this step.
1059 1060 1061
     */
    {
      new_reph_pos = start + 1;
1062
      while (new_reph_pos < base && !is_halant_or_coeng (info[new_reph_pos]))
1063 1064
	new_reph_pos++;

1065
      if (new_reph_pos < base && is_halant_or_coeng (info[new_reph_pos])) {
1066 1067 1068 1069 1070 1071 1072 1073
	/* ->If ZWJ or ZWNJ are following this halant, position is moved after it. */
	if (new_reph_pos + 1 < base && is_joiner (info[new_reph_pos + 1]))
	  new_reph_pos++;
	goto reph_move;
      }
    }

    /*       3. If reph should be repositioned after the main consonant: find the
1074 1075
     *          first consonant not ligated with main, or find the first
     *          consonant that is not a potential pre-base reordering Ra.
1076
     */
1077
    if (reph_pos == REPH_POS_AFTER_MAIN)
1078
    {
1079 1080
      new_reph_pos = base;
      /* XXX Skip potential pre-base reordering Ra. */
1081
      while (new_reph_pos + 1 < end && info[new_reph_pos + 1].indic_position() <= POS_AFTER_MAIN)
1082 1083 1084
	new_reph_pos++;
      if (new_reph_pos < end)
        goto reph_move;
1085 1086 1087
    }

    /*       4. If reph should be positioned before post-base consonant, find
1088 1089 1090
     *          first post-base classified consonant not ligated with main. If no
     *          consonant is found, the target position should be before the
     *          first matra, syllable modifier sign or vedic sign.
1091
     */
1092
    /* This is our take on what step 4 is trying to say (and failing, BADLY). */
1093
    if (reph_pos == REPH_POS_AFTER_SUB)
1094
    {
1095 1096
      new_reph_pos = base;
      while (new_reph_pos < end &&
1097
	     !( FLAG (info[new_reph_pos + 1].indic_position()) & (FLAG (POS_POST_C) | FLAG (POS_AFTER_POST) | FLAG (POS_SMVD))))
1098 1099 1100
	new_reph_pos++;
      if (new_reph_pos < end)
        goto reph_move;
1101 1102 1103
    }

    /*       5. If no consonant is found in steps 3 or 4, move reph to a position
1104 1105 1106 1107 1108 1109
     *          immediately before the first post-base matra, syllable modifier
     *          sign or vedic sign that has a reordering class after the intended
     *          reph position. For example, if the reordering position for reph
     *          is post-main, it will skip above-base matras that also have a
     *          post-main position.
     */
1110 1111
    reph_step_5:
    {
1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122
      /* Copied from step 2. */
      new_reph_pos = start + 1;
      while (new_reph_pos < base && !is_halant_or_coeng (info[new_reph_pos]))
	new_reph_pos++;

      if (new_reph_pos < base && is_halant_or_coeng (info[new_reph_pos])) {
	/* ->If ZWJ or ZWNJ are following this halant, position is moved after it. */
	if (new_reph_pos + 1 < base && is_joiner (info[new_reph_pos + 1]))
	  new_reph_pos++;
	goto reph_move;
      }
1123
    }
1124

1125 1126 1127 1128 1129 1130 1131
    /*       6. Otherwise, reorder reph to the end of the syllable.
     */
    {
      new_reph_pos = end - 1;
      while (new_reph_pos > start && info[new_reph_pos].indic_position() == POS_SMVD)
	new_reph_pos--;

1132 1133 1134 1135 1136 1137 1138
      /*
       * If the Reph is to be ending up after a Matra,Halant sequence,
       * position it before that Halant so it can interact with the Matra.
       * However, if it's a plain Consonant,Halant we shouldn't do that.
       * Uniscribe doesn't do this.
       * TEST: U+0930,U+094D,U+0915,U+094B,U+094D
       */
1139
      if (!indic_options ().uniscribe_bug_compatible &&
1140
	  unlikely (is_halant_or_coeng (info[new_reph_pos]))) {
1141 1142 1143 1144 1145 1146 1147
	for (unsigned int i = base + 1; i < new_reph_pos; i++)
	  if (info[i].indic_category() == OT_M) {
	    /* Ok, got it. */
	    new_reph_pos--;
	  }
      }
      goto reph_move;
1148 1149
    }

1150 1151
    reph_move:
    {
1152 1153 1154
      /* Yay, one big cluster! Merge before moving. */
      buffer->merge_clusters (start, end);

1155 1156 1157 1158 1159
      /* Move */
      hb_glyph_info_t reph = info[start];
      memmove (&info[start], &info[start + 1], (new_reph_pos - start) * sizeof (info[0]));
      info[new_reph_pos] = reph;
    }
1160 1161 1162 1163
  }


  /*   o Reorder pre-base reordering consonants:
1164 1165 1166 1167 1168
   *
   *     If a pre-base reordering consonant is found, reorder it according to
   *     the following rules:
   */

1169
  if (indic_plan->mask_array[PREF] && base + 1 < end) /* Otherwise there can't be any pre-base reordering Ra. */
1170
  {
1171
    for (unsigned int i = base + 1; i < end; i++)
1172
      if ((info[i].mask & indic_plan->mask_array[PREF]) != 0)
1173
      {
1174 1175 1176 1177
	/*       1. Only reorder a glyph produced by substitution during application
	 *          of the <pref> feature. (Note that a font may shape a Ra consonant with
	 *          the feature generally but block it in certain contexts.)
	 */
1178
	if (i + 1 == end || (info[i + 1].mask & indic_plan->mask_array[PREF]) == 0)
1179 1180 1181 1182 1183 1184 1185 1186 1187 1188
	{
	  /*
	   *       2. Try to find a target position the same way as for pre-base matra.
	   *          If it is found, reorder pre-base consonant glyph.
	   *
	   *       3. If position is not found, reorder immediately before main
	   *          consonant.
	   */

	  unsigned int new_pos = base;
1189 1190 1191 1192 1193
	  /* Malayalam / Tamil do not have "half" forms or explicit virama forms.
	   * The glyphs formed by 'half' are Chillus or ligated explicit viramas.
	   * We want to position matra after them.
	   */
	  if (buffer->props.script != HB_SCRIPT_MALAYALAM && buffer->props.script != HB_SCRIPT_TAMIL)
1194
	  {
1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210
	    while (new_pos > start &&
		   !(is_one_of (info[new_pos - 1], FLAG(OT_M) | HALANT_OR_COENG_FLAGS)))
	      new_pos--;

	    /* In Khmer coeng model, a V,Ra can go *after* matras.  If it goes after a
	     * split matra, it should be reordered to *before* the left part of such matra. */
	    if (new_pos > start && info[new_pos - 1].indic_category() == OT_M)
	    {
	      unsigned int old_pos = i;
	      for (unsigned int i = base + 1; i < old_pos; i++)
		if (info[i].indic_category() == OT_M)
		{
		  new_pos--;
		  break;
		}
	    }
1211 1212
	  }

1213
	  if (new_pos > start && is_halant_or_coeng (info[new_pos - 1]))
1214 1215 1216 1217 1218 1219
	    /* -> If ZWJ or ZWNJ follow this halant, position is moved after it. */
	    if (new_pos < end && is_joiner (info[new_pos]))
	      new_pos++;

	  {
	    unsigned int old_pos = i;
1220
	    buffer->merge_clusters (new_pos, old_pos + 1);
1221 1222 1223 1224 1225 1226 1227
	    hb_glyph_info_t tmp = info[old_pos];
	    memmove (&info[new_pos + 1], &info[new_pos], (old_pos - new_pos) * sizeof (info[0]));
	    info[new_pos] = tmp;
	  }
	}

        break;
1228
      }
1229
  }
1230 1231


1232
  /* Apply 'init' to the Left Matra if it's a word start. */
1233
  if (info[start].indic_position () == POS_PRE_M &&
1234
      (!start ||
B
Minor  
Behdad Esfahbod 已提交
1235
       !(FLAG (_hb_glyph_info_get_general_category (&info[start - 1])) &
1236
	 FLAG_RANGE (HB_UNICODE_GENERAL_CATEGORY_FORMAT, HB_UNICODE_GENERAL_CATEGORY_NON_SPACING_MARK))))
1237
    info[start].mask |= indic_plan->mask_array[INIT];
1238

1239

B
Behdad Esfahbod 已提交
1240 1241 1242
  /*
   * Finish off the clusters and go home!
   */
B
Behdad Esfahbod 已提交
1243
  if (indic_options ().uniscribe_bug_compatible)
1244
  {
1245
    /* Uniscribe merges the entire cluster.
1246 1247 1248
     * This means, half forms are submerged into the main consonants cluster.
     * This is unnecessary, and makes cursor positioning harder, but that's what
     * Uniscribe does. */
1249
    buffer->merge_clusters (start, end);
1250
  }
1251
}
1252 1253


1254
static void
1255
final_reordering (const hb_ot_shape_plan_t *plan,
B
Behdad Esfahbod 已提交
1256
		  hb_font_t *font HB_UNUSED,
B
Behdad Esfahbod 已提交
1257
		  hb_buffer_t *buffer)
1258 1259
{
  unsigned int count = buffer->len;
1260
  if (unlikely (!count)) return;
1261 1262 1263

  hb_glyph_info_t *info = buffer->info;
  unsigned int last = 0;
1264
  unsigned int last_syllable = info[0].syllable();
1265
  for (unsigned int i = 1; i < count; i++)
1266
    if (last_syllable != info[i].syllable()) {
1267
      final_reordering_syllable (plan, buffer, last, i);
1268
      last = i;
1269
      last_syllable = info[last].syllable();
1270
    }
1271
  final_reordering_syllable (plan, buffer, last, count);
1272

1273 1274 1275 1276
  /* Zero syllables now... */
  for (unsigned int i = 0; i < count; i++)
    info[i].syllable() = 0;

B
Behdad Esfahbod 已提交
1277 1278 1279 1280 1281
  HB_BUFFER_DEALLOCATE_VAR (buffer, indic_category);
  HB_BUFFER_DEALLOCATE_VAR (buffer, indic_position);
}


1282
static hb_ot_shape_normalization_mode_t
B
Behdad Esfahbod 已提交
1283
normalization_preference_indic (const hb_segment_properties_t *props HB_UNUSED)
1284 1285 1286 1287
{
  return HB_OT_SHAPE_NORMALIZATION_MODE_COMPOSED_DIACRITICS_NO_SHORT_CIRCUIT;
}

1288 1289
static bool
decompose_indic (const hb_ot_shape_normalize_context_t *c,
1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326
		 hb_codepoint_t  ab,
		 hb_codepoint_t *a,
		 hb_codepoint_t *b)
{
  switch (ab)
  {
    /* Don't decompose these. */
    case 0x0931  : return false;
    case 0x0B94  : return false;


    /*
     * Decompose split matras that don't have Unicode decompositions.
     */

    case 0x0F77  : *a = 0x0FB2; *b= 0x0F81; return true;
    case 0x0F79  : *a = 0x0FB3; *b= 0x0F81; return true;
    case 0x17BE  : *a = 0x17C1; *b= 0x17BE; return true;
    case 0x17BF  : *a = 0x17C1; *b= 0x17BF; return true;
    case 0x17C0  : *a = 0x17C1; *b= 0x17C0; return true;
    case 0x17C4  : *a = 0x17C1; *b= 0x17C4; return true;
    case 0x17C5  : *a = 0x17C1; *b= 0x17C5; return true;
    case 0x1925  : *a = 0x1920; *b= 0x1923; return true;
    case 0x1926  : *a = 0x1920; *b= 0x1924; return true;
    case 0x1B3C  : *a = 0x1B42; *b= 0x1B3C; return true;
    case 0x1112E  : *a = 0x11127; *b= 0x11131; return true;
    case 0x1112F  : *a = 0x11127; *b= 0x11132; return true;
#if 0
    /* This one has no decomposition in Unicode, but needs no decomposition either. */
    /* case 0x0AC9  : return false; */
    case 0x0B57  : *a = no decomp, -> RIGHT; return true;
    case 0x1C29  : *a = no decomp, -> LEFT; return true;
    case 0xA9C0  : *a = no decomp, -> RIGHT; return true;
    case 0x111BF  : *a = no decomp, -> ABOVE; return true;
#endif
  }

1327
  if ((ab == 0x0DDA || hb_in_range<hb_codepoint_t> (ab, 0x0DDC, 0x0DDE)))
1328
  {
1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347
    /*
     * Sinhala split matras...  Let the fun begin.
     *
     * These four characters have Unicode decompositions.  However, Uniscribe
     * decomposes them "Khmer-style", that is, it uses the character itself to
     * get the second half.  The first half of all four decompositions is always
     * U+0DD9.
     *
     * Now, there are buggy fonts, namely, the widely used lklug.ttf, that are
     * broken with Uniscribe.  But we need to support them.  As such, we only
     * do the Uniscribe-style decomposition if the character is transformed into
     * its "sec.half" form by the 'pstf' feature.  Otherwise, we fall back to
     * Unicode decomposition.
     *
     * Note that we can't unconditionally use Unicode decomposition.  That would
     * break some other fonts, that are designed to work with Uniscribe, and
     * don't have positioning features for the Unicode-style decomposition.
     *
     * Argh...
1348 1349 1350 1351 1352
     *
     * The Uniscribe behavior is now documented in the newly published Sinhala
     * spec in 2012:
     *
     *   http://www.microsoft.com/typography/OpenTypeDev/sinhala/intro.htm#shaping
1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367
     */

    const indic_shape_plan_t *indic_plan = (const indic_shape_plan_t *) c->plan->data;

    hb_codepoint_t glyph;

    if (indic_options ().uniscribe_bug_compatible ||
	(c->font->get_glyph (ab, 0, &glyph) &&
	 indic_plan->pstf.would_substitute (&glyph, 1, true, c->font->face)))
    {
      /* Ok, safe to use Uniscribe-style decomposition. */
      *a = 0x0DD9;
      *b = ab;
      return true;
    }
1368 1369
  }

1370
  return c->unicode->decompose (ab, a, b);
1371 1372
}

1373 1374
static bool
compose_indic (const hb_ot_shape_normalize_context_t *c,
1375 1376 1377 1378 1379
	       hb_codepoint_t  a,
	       hb_codepoint_t  b,
	       hb_codepoint_t *ab)
{
  /* Avoid recomposing split matras. */
1380
  if (HB_UNICODE_GENERAL_CATEGORY_IS_MARK (c->unicode->general_category (a)))
1381 1382 1383 1384 1385
    return false;

  /* Composition-exclusion exceptions that we want to recompose. */
  if (a == 0x09AF && b == 0x09BC) { *ab = 0x09DF; return true; }

1386
  return c->unicode->compose (a, b, ab);
1387 1388 1389
}


1390 1391 1392 1393 1394
const hb_ot_complex_shaper_t _hb_ot_complex_shaper_indic =
{
  "indic",
  collect_features_indic,
  override_features_indic,
1395 1396
  data_create_indic,
  data_destroy_indic,
1397
  NULL, /* preprocess_text */
1398
  normalization_preference_indic,
1399 1400
  decompose_indic,
  compose_indic,
1401
  setup_masks_indic,
1402
  false, /* zero_width_attached_marks */
1403
  false, /* fallback_position */
1404
};