hb-buffer.cc 49.6 KB
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/*
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 * Copyright © 1998-2004  David Turner and Werner Lemberg
 * Copyright © 2004,2007,2009,2010  Red Hat, Inc.
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 * Copyright © 2011,2012  Google, Inc.
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 *
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 *  This is part of HarfBuzz, a text shaping library.
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 *
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 * 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.
 *
 * Red Hat Author(s): Owen Taylor, Behdad Esfahbod
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 * Google Author(s): Behdad Esfahbod
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 */

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#include "hb-buffer.hh"
#include "hb-utf.hh"
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/**
 * SECTION: hb-buffer
 * @title: Buffers
 * @short_description: Input and output buffers
 * @include: hb.h
 *
 * Buffers serve dual role in HarfBuzz; they hold the input characters that are
 * passed hb_shape(), and after shaping they hold the output glyphs.
 **/
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/**
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 * hb_segment_properties_equal:
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 * @a: first #hb_segment_properties_t to compare.
 * @b: second #hb_segment_properties_t to compare.
 *
 * Checks the equality of two #hb_segment_properties_t's.
 *
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 * Return value:
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 * %true if all properties of @a equal those of @b, false otherwise.
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 *
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 * Since: 0.9.7
 **/
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hb_bool_t
hb_segment_properties_equal (const hb_segment_properties_t *a,
			     const hb_segment_properties_t *b)
{
  return a->direction == b->direction &&
	 a->script    == b->script    &&
	 a->language  == b->language  &&
	 a->reserved1 == b->reserved1 &&
	 a->reserved2 == b->reserved2;

}

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/**
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 * hb_segment_properties_hash:
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 * @p: #hb_segment_properties_t to hash.
 *
 * Creates a hash representing @p.
 *
 * Return value:
 * A hash of @p.
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 *
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 * Since: 0.9.7
 **/
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unsigned int
hb_segment_properties_hash (const hb_segment_properties_t *p)
{
  return (unsigned int) p->direction ^
	 (unsigned int) p->script ^
	 (intptr_t) (p->language);
}



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/* Here is how the buffer works internally:
 *
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 * There are two info pointers: info and out_info.  They always have
 * the same allocated size, but different lengths.
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 *
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 * As an optimization, both info and out_info may point to the
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 * same piece of memory, which is owned by info.  This remains the
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 * case as long as out_len doesn't exceed i at any time.
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 * In that case, swap_buffers() is no-op and the glyph operations operate
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 * mostly in-place.
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 *
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 * As soon as out_info gets longer than info, out_info is moved over
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 * to an alternate buffer (which we reuse the pos buffer for!), and its
 * current contents (out_len entries) are copied to the new place.
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 * This should all remain transparent to the user.  swap_buffers() then
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 * switches info and out_info.
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 */

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/* Internal API */

bool
hb_buffer_t::enlarge (unsigned int size)
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{
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  if (unlikely (!successful))
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    return false;
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  if (unlikely (size > max_len))
  {
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    successful = false;
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    return false;
  }
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  unsigned int new_allocated = allocated;
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  hb_glyph_position_t *new_pos = nullptr;
  hb_glyph_info_t *new_info = nullptr;
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  bool separate_out = out_info != info;
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  if (unlikely (hb_unsigned_mul_overflows (size, sizeof (info[0]))))
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    goto done;
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  while (size >= new_allocated)
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    new_allocated += (new_allocated >> 1) + 32;
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  static_assert ((sizeof (info[0]) == sizeof (pos[0])), "");
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  if (unlikely (hb_unsigned_mul_overflows (new_allocated, sizeof (info[0]))))
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    goto done;

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  new_pos = (hb_glyph_position_t *) realloc (pos, new_allocated * sizeof (pos[0]));
  new_info = (hb_glyph_info_t *) realloc (info, new_allocated * sizeof (info[0]));
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done:
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  if (unlikely (!new_pos || !new_info))
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    successful = false;
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  if (likely (new_pos))
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    pos = new_pos;
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  if (likely (new_info))
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    info = new_info;

  out_info = separate_out ? (hb_glyph_info_t *) pos : info;
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  if (likely (successful))
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    allocated = new_allocated;

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  return likely (successful);
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}

bool
hb_buffer_t::make_room_for (unsigned int num_in,
			    unsigned int num_out)
{
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  if (unlikely (!ensure (out_len + num_out))) return false;
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  if (out_info == info &&
      out_len + num_out > idx + num_in)
  {
    assert (have_output);

    out_info = (hb_glyph_info_t *) pos;
    memcpy (out_info, info, out_len * sizeof (out_info[0]));
  }

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  return true;
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}

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bool
hb_buffer_t::shift_forward (unsigned int count)
{
  assert (have_output);
  if (unlikely (!ensure (len + count))) return false;

  memmove (info + idx + count, info + idx, (len - idx) * sizeof (info[0]));
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  if (idx + count > len)
  {
    /* Under memory failure we might expose this area.  At least
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     * clean it up.  Oh well...
     *
     * Ideally, we should at least set Default_Ignorable bits on
     * these, as well as consistent cluster values.  But the former
     * is layering violation... */
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    memset (info + len, 0, (idx + count - len) * sizeof (info[0]));
  }
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  len += count;
  idx += count;

  return true;
}

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hb_buffer_t::scratch_buffer_t *
hb_buffer_t::get_scratch_buffer (unsigned int *size)
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{
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  have_output = false;
  have_positions = false;
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  out_len = 0;
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  out_info = info;

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  assert ((uintptr_t) pos % sizeof (scratch_buffer_t) == 0);
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  *size = allocated * sizeof (pos[0]) / sizeof (scratch_buffer_t);
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  return (scratch_buffer_t *) (void *) pos;
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}

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/* HarfBuzz-Internal API */

void
hb_buffer_t::reset (void)
{
  if (unlikely (hb_object_is_inert (this)))
    return;

  hb_unicode_funcs_destroy (unicode);
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  unicode = hb_unicode_funcs_reference (hb_unicode_funcs_get_default ());
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  flags = HB_BUFFER_FLAG_DEFAULT;
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  replacement = HB_BUFFER_REPLACEMENT_CODEPOINT_DEFAULT;
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  invisible = 0;
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  clear ();
}

void
hb_buffer_t::clear (void)
{
  if (unlikely (hb_object_is_inert (this)))
    return;

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  hb_segment_properties_t default_props = HB_SEGMENT_PROPERTIES_DEFAULT;
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  props = default_props;
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  scratch_flags = HB_BUFFER_SCRATCH_FLAG_DEFAULT;
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  content_type = HB_BUFFER_CONTENT_TYPE_INVALID;
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  successful = true;
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  have_output = false;
  have_positions = false;
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  idx = 0;
  len = 0;
  out_len = 0;
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  out_info = info;
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  serial = 0;
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  memset (context, 0, sizeof context);
  memset (context_len, 0, sizeof context_len);
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  deallocate_var_all ();
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}

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void
hb_buffer_t::add (hb_codepoint_t  codepoint,
		  unsigned int    cluster)
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{
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  hb_glyph_info_t *glyph;

  if (unlikely (!ensure (len + 1))) return;

  glyph = &info[len];

  memset (glyph, 0, sizeof (*glyph));
  glyph->codepoint = codepoint;
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  glyph->mask = 0;
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  glyph->cluster = cluster;

  len++;
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}
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void
hb_buffer_t::add_info (const hb_glyph_info_t &glyph_info)
{
  if (unlikely (!ensure (len + 1))) return;

  info[len] = glyph_info;

  len++;
}


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void
hb_buffer_t::remove_output (void)
{
  if (unlikely (hb_object_is_inert (this)))
    return;

  have_output = false;
  have_positions = false;

  out_len = 0;
  out_info = info;
}

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void
hb_buffer_t::clear_output (void)
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{
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  if (unlikely (hb_object_is_inert (this)))
    return;

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  have_output = true;
  have_positions = false;
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  out_len = 0;
  out_info = info;
}

void
hb_buffer_t::clear_positions (void)
{
  if (unlikely (hb_object_is_inert (this)))
    return;

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  have_output = false;
  have_positions = true;
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  out_len = 0;
  out_info = info;

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  memset (pos, 0, sizeof (pos[0]) * len);
}

void
hb_buffer_t::swap_buffers (void)
{
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  if (unlikely (!successful)) return;
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  assert (have_output);
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  have_output = false;
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  if (out_info != info)
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  {
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    hb_glyph_info_t *tmp_string;
    tmp_string = info;
    info = out_info;
    out_info = tmp_string;
    pos = (hb_glyph_position_t *) out_info;
  }

  unsigned int tmp;
  tmp = len;
  len = out_len;
  out_len = tmp;

  idx = 0;
}
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void
hb_buffer_t::replace_glyphs (unsigned int num_in,
			     unsigned int num_out,
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			     const uint32_t *glyph_data)
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{
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  if (unlikely (!make_room_for (num_in, num_out))) return;
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  merge_clusters (idx, idx + num_in);
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  hb_glyph_info_t orig_info = info[idx];
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  hb_glyph_info_t *pinfo = &out_info[out_len];
  for (unsigned int i = 0; i < num_out; i++)
  {
    *pinfo = orig_info;
    pinfo->codepoint = glyph_data[i];
    pinfo++;
  }

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  idx  += num_in;
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  out_len += num_out;
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}

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bool
hb_buffer_t::move_to (unsigned int i)
{
  if (!have_output)
  {
    assert (i <= len);
    idx = i;
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    return true;
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  }
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  if (unlikely (!successful))
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    return false;
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  assert (i <= out_len + (len - idx));

  if (out_len < i)
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  {
    unsigned int count = i - out_len;
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    if (unlikely (!make_room_for (count, count))) return false;
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    memmove (out_info + out_len, info + idx, count * sizeof (out_info[0]));
    idx += count;
    out_len += count;
  }
  else if (out_len > i)
  {
    /* Tricky part: rewinding... */
    unsigned int count = out_len - i;

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    /* This will blow in our face if memory allocation fails later
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     * in this same lookup...
     *
     * We used to shift with extra 32 items, instead of the 0 below.
     * But that would leave empty slots in the buffer in case of allocation
     * failures.  Setting to zero for now to avoid other problems (see
     * comments in shift_forward().  This can cause O(N^2) behavior more
     * severely than adding 32 empty slots can... */
    if (unlikely (idx < count && !shift_forward (count + 0))) return false;
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    assert (idx >= count);

    idx -= count;
    out_len -= count;
    memmove (info + idx, out_info + out_len, count * sizeof (out_info[0]));
  }
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  return true;
}

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void
hb_buffer_t::set_masks (hb_mask_t    value,
			hb_mask_t    mask,
			unsigned int cluster_start,
			unsigned int cluster_end)
{
  hb_mask_t not_mask = ~mask;
  value &= mask;

  if (!mask)
    return;

  if (cluster_start == 0 && cluster_end == (unsigned int)-1) {
    unsigned int count = len;
    for (unsigned int i = 0; i < count; i++)
      info[i].mask = (info[i].mask & not_mask) | value;
    return;
  }

  unsigned int count = len;
  for (unsigned int i = 0; i < count; i++)
    if (cluster_start <= info[i].cluster && info[i].cluster < cluster_end)
      info[i].mask = (info[i].mask & not_mask) | value;
}

void
hb_buffer_t::reverse_range (unsigned int start,
			    unsigned int end)
{
  unsigned int i, j;

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  if (end - start < 2)
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    return;

  for (i = start, j = end - 1; i < j; i++, j--) {
    hb_glyph_info_t t;

    t = info[i];
    info[i] = info[j];
    info[j] = t;
  }

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  if (have_positions) {
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    for (i = start, j = end - 1; i < j; i++, j--) {
      hb_glyph_position_t t;

      t = pos[i];
      pos[i] = pos[j];
      pos[j] = t;
    }
  }
}

void
hb_buffer_t::reverse (void)
{
  if (unlikely (!len))
    return;

  reverse_range (0, len);
}

void
hb_buffer_t::reverse_clusters (void)
{
  unsigned int i, start, count, last_cluster;

  if (unlikely (!len))
    return;

  reverse ();

  count = len;
  start = 0;
  last_cluster = info[0].cluster;
  for (i = 1; i < count; i++) {
    if (last_cluster != info[i].cluster) {
      reverse_range (start, i);
      start = i;
      last_cluster = info[i].cluster;
    }
  }
  reverse_range (start, i);
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}

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void
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hb_buffer_t::merge_clusters_impl (unsigned int start,
				  unsigned int end)
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{
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  if (cluster_level == HB_BUFFER_CLUSTER_LEVEL_CHARACTERS)
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  {
    unsafe_to_break (start, end);
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    return;
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  }
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  unsigned int cluster = info[start].cluster;
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  for (unsigned int i = start + 1; i < end; i++)
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    cluster = MIN<unsigned int> (cluster, info[i].cluster);
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  /* Extend end */
  while (end < len && info[end - 1].cluster == info[end].cluster)
    end++;

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  /* Extend start */
  while (idx < start && info[start - 1].cluster == info[start].cluster)
    start--;

  /* If we hit the start of buffer, continue in out-buffer. */
  if (idx == start)
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    for (unsigned int i = out_len; i && out_info[i - 1].cluster == info[start].cluster; i--)
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      set_cluster (out_info[i - 1], cluster);
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  for (unsigned int i = start; i < end; i++)
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    set_cluster (info[i], cluster);
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}
void
hb_buffer_t::merge_out_clusters (unsigned int start,
				 unsigned int end)
{
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  if (cluster_level == HB_BUFFER_CLUSTER_LEVEL_CHARACTERS)
    return;
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  if (unlikely (end - start < 2))
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    return;

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  unsigned int cluster = out_info[start].cluster;
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  for (unsigned int i = start + 1; i < end; i++)
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    cluster = MIN<unsigned int> (cluster, out_info[i].cluster);
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  /* Extend start */
  while (start && out_info[start - 1].cluster == out_info[start].cluster)
    start--;

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  /* Extend end */
  while (end < out_len && out_info[end - 1].cluster == out_info[end].cluster)
    end++;

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  /* If we hit the end of out-buffer, continue in buffer. */
  if (end == out_len)
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    for (unsigned int i = idx; i < len && info[i].cluster == out_info[end - 1].cluster; i++)
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      set_cluster (info[i], cluster);
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  for (unsigned int i = start; i < end; i++)
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    set_cluster (out_info[i], cluster);
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}
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void
hb_buffer_t::delete_glyph ()
{
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  /* The logic here is duplicated in hb_ot_hide_default_ignorables(). */

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  unsigned int cluster = info[idx].cluster;
  if (idx + 1 < len && cluster == info[idx + 1].cluster)
  {
    /* Cluster survives; do nothing. */
    goto done;
  }

  if (out_len)
  {
    /* Merge cluster backward. */
    if (cluster < out_info[out_len - 1].cluster)
    {
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      unsigned int mask = info[idx].mask;
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      unsigned int old_cluster = out_info[out_len - 1].cluster;
      for (unsigned i = out_len; i && out_info[i - 1].cluster == old_cluster; i--)
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	set_cluster (out_info[i - 1], cluster, mask);
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    }
    goto done;
  }

  if (idx + 1 < len)
  {
    /* Merge cluster forward. */
    merge_clusters (idx, idx + 2);
    goto done;
  }

done:
  skip_glyph ();
}
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void
hb_buffer_t::unsafe_to_break_impl (unsigned int start, unsigned int end)
{
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  unsigned int cluster = (unsigned int) -1;
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  cluster = _unsafe_to_break_find_min_cluster (info, start, end, cluster);
  _unsafe_to_break_set_mask (info, start, end, cluster);
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}
void
hb_buffer_t::unsafe_to_break_from_outbuffer (unsigned int start, unsigned int end)
{
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  if (!have_output)
  {
    unsafe_to_break_impl (start, end);
    return;
  }

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  assert (start <= out_len);
  assert (idx <= end);

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  unsigned int cluster = (unsigned int) -1;
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  cluster = _unsafe_to_break_find_min_cluster (out_info, start, out_len, cluster);
  cluster = _unsafe_to_break_find_min_cluster (info, idx, end, cluster);
  _unsafe_to_break_set_mask (out_info, start, out_len, cluster);
  _unsafe_to_break_set_mask (info, idx, end, cluster);
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}

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void
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hb_buffer_t::guess_segment_properties (void)
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{
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  assert (content_type == HB_BUFFER_CONTENT_TYPE_UNICODE ||
	  (!len && content_type == HB_BUFFER_CONTENT_TYPE_INVALID));
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  /* If script is set to INVALID, guess from buffer contents */
  if (props.script == HB_SCRIPT_INVALID) {
    for (unsigned int i = 0; i < len; i++) {
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      hb_script_t script = unicode->script (info[i].codepoint);
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      if (likely (script != HB_SCRIPT_COMMON &&
		  script != HB_SCRIPT_INHERITED &&
		  script != HB_SCRIPT_UNKNOWN)) {
        props.script = script;
        break;
      }
    }
  }

  /* If direction is set to INVALID, guess from script */
  if (props.direction == HB_DIRECTION_INVALID) {
    props.direction = hb_script_get_horizontal_direction (props.script);
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    if (props.direction == HB_DIRECTION_INVALID)
      props.direction = HB_DIRECTION_LTR;
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  }

  /* If language is not set, use default language from locale */
  if (props.language == HB_LANGUAGE_INVALID) {
    /* TODO get_default_for_script? using $LANGUAGE */
    props.language = hb_language_get_default ();
  }
}


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/* Public API */

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DEFINE_NULL_INSTANCE (hb_buffer_t) =
{
  HB_OBJECT_HEADER_STATIC,

  const_cast<hb_unicode_funcs_t *> (&_hb_Null_hb_unicode_funcs_t),
  HB_BUFFER_FLAG_DEFAULT,
  HB_BUFFER_CLUSTER_LEVEL_DEFAULT,
  HB_BUFFER_REPLACEMENT_CODEPOINT_DEFAULT,
679
  0, /* invisible */
680 681 682 683 684 685 686 687 688 689 690 691 692 693
  HB_BUFFER_SCRATCH_FLAG_DEFAULT,
  HB_BUFFER_MAX_LEN_DEFAULT,
  HB_BUFFER_MAX_OPS_DEFAULT,

  HB_BUFFER_CONTENT_TYPE_INVALID,
  HB_SEGMENT_PROPERTIES_DEFAULT,
  false, /* successful */
  true, /* have_output */
  true  /* have_positions */

  /* Zero is good enough for everything else. */
};


694
/**
695
 * hb_buffer_create: (Xconstructor)
696
 *
697
 * Creates a new #hb_buffer_t with all properties to defaults.
698
 *
699 700
 * Return value: (transfer full):
 * A newly allocated #hb_buffer_t with a reference count of 1. The initial
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 * reference count should be released with hb_buffer_destroy() when you are done
702 703 704
 * using the #hb_buffer_t. This function never returns %NULL. If memory cannot
 * be allocated, a special #hb_buffer_t object will be returned on which
 * hb_buffer_allocation_successful() returns %false.
705
 *
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 * Since: 0.9.2
707
 **/
708
hb_buffer_t *
B
Minor  
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hb_buffer_create (void)
710
{
711 712
  hb_buffer_t *buffer;

713
  if (!(buffer = hb_object_create<hb_buffer_t> ()))
714
    return hb_buffer_get_empty ();
715

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  buffer->max_len = HB_BUFFER_MAX_LEN_DEFAULT;
717
  buffer->max_ops = HB_BUFFER_MAX_OPS_DEFAULT;
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719
  buffer->reset ();
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721 722
  return buffer;
}
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724 725 726 727 728 729 730
/**
 * hb_buffer_get_empty:
 *
 * 
 *
 * Return value: (transfer full):
 *
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 * Since: 0.9.2
732
 **/
733 734 735
hb_buffer_t *
hb_buffer_get_empty (void)
{
736
  return const_cast<hb_buffer_t *> (&Null(hb_buffer_t));
737 738
}

739 740
/**
 * hb_buffer_reference: (skip)
741
 * @buffer: an #hb_buffer_t.
742
 *
743 744
 * Increases the reference count on @buffer by one. This prevents @buffer from
 * being destroyed until a matching call to hb_buffer_destroy() is made.
745 746
 *
 * Return value: (transfer full):
747
 * The referenced #hb_buffer_t.
748
 *
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 * Since: 0.9.2
750
 **/
751 752 753
hb_buffer_t *
hb_buffer_reference (hb_buffer_t *buffer)
{
754
  return hb_object_reference (buffer);
755
}
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757 758
/**
 * hb_buffer_destroy: (skip)
759
 * @buffer: an #hb_buffer_t.
760
 *
761 762 763
 * Deallocate the @buffer.
 * Decreases the reference count on @buffer by one. If the result is zero, then
 * @buffer and all associated resources are freed. See hb_buffer_reference().
764
 *
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 * Since: 0.9.2
766
 **/
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void
768
hb_buffer_destroy (hb_buffer_t *buffer)
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{
770
  if (!hb_object_destroy (buffer)) return;
771

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  hb_unicode_funcs_destroy (buffer->unicode);

774
  free (buffer->info);
775
  free (buffer->pos);
776 777
  if (buffer->message_destroy)
    buffer->message_destroy (buffer->message_data);
778

779
  free (buffer);
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}

782 783
/**
 * hb_buffer_set_user_data: (skip)
784
 * @buffer: an #hb_buffer_t.
785 786 787 788 789 790 791 792 793
 * @key: 
 * @data: 
 * @destroy: 
 * @replace: 
 *
 * 
 *
 * Return value: 
 *
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 * Since: 0.9.2
795
 **/
796 797 798 799
hb_bool_t
hb_buffer_set_user_data (hb_buffer_t        *buffer,
			 hb_user_data_key_t *key,
			 void *              data,
800 801
			 hb_destroy_func_t   destroy,
			 hb_bool_t           replace)
802
{
803
  return hb_object_set_user_data (buffer, key, data, destroy, replace);
804 805
}

806 807
/**
 * hb_buffer_get_user_data: (skip)
808
 * @buffer: an #hb_buffer_t.
809 810 811 812 813 814
 * @key: 
 *
 * 
 *
 * Return value: 
 *
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 * Since: 0.9.2
816
 **/
817 818 819 820 821 822 823
void *
hb_buffer_get_user_data (hb_buffer_t        *buffer,
			 hb_user_data_key_t *key)
{
  return hb_object_get_user_data (buffer, key);
}

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825 826
/**
 * hb_buffer_set_content_type:
827
 * @buffer: an #hb_buffer_t.
828
 * @content_type: the type of buffer contents to set
829
 *
830 831
 * Sets the type of @buffer contents, buffers are either empty, contain
 * characters (before shaping) or glyphs (the result of shaping).
832
 *
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 * Since: 0.9.5
834
 **/
835 836 837 838 839 840 841
void
hb_buffer_set_content_type (hb_buffer_t              *buffer,
			    hb_buffer_content_type_t  content_type)
{
  buffer->content_type = content_type;
}

842 843
/**
 * hb_buffer_get_content_type:
844
 * @buffer: an #hb_buffer_t.
845
 *
846
 * see hb_buffer_set_content_type().
847
 *
848 849
 * Return value:
 * The type of @buffer contents.
850
 *
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851
 * Since: 0.9.5
852
 **/
853 854 855 856 857 858 859
hb_buffer_content_type_t
hb_buffer_get_content_type (hb_buffer_t *buffer)
{
  return buffer->content_type;
}


860 861
/**
 * hb_buffer_set_unicode_funcs:
862
 * @buffer: an #hb_buffer_t.
863 864 865 866
 * @unicode_funcs: 
 *
 * 
 *
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 * Since: 0.9.2
868
 **/
B
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869 870
void
hb_buffer_set_unicode_funcs (hb_buffer_t        *buffer,
871
			     hb_unicode_funcs_t *unicode_funcs)
B
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872
{
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873 874 875
  if (unlikely (hb_object_is_inert (buffer)))
    return;

876 877
  if (!unicode_funcs)
    unicode_funcs = hb_unicode_funcs_get_default ();
878

879
  hb_unicode_funcs_reference (unicode_funcs);
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880
  hb_unicode_funcs_destroy (buffer->unicode);
881
  buffer->unicode = unicode_funcs;
B
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882 883
}

884 885
/**
 * hb_buffer_get_unicode_funcs:
886
 * @buffer: an #hb_buffer_t.
887 888 889 890 891
 *
 * 
 *
 * Return value: 
 *
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892
 * Since: 0.9.2
893
 **/
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894 895 896 897 898 899
hb_unicode_funcs_t *
hb_buffer_get_unicode_funcs (hb_buffer_t        *buffer)
{
  return buffer->unicode;
}

900 901
/**
 * hb_buffer_set_direction:
902
 * @buffer: an #hb_buffer_t.
903
 * @direction: the #hb_direction_t of the @buffer
904
 *
905 906 907 908 909 910 911
 * Set the text flow direction of the buffer. No shaping can happen without
 * setting @buffer direction, and it controls the visual direction for the
 * output glyphs; for RTL direction the glyphs will be reversed. Many layout
 * features depend on the proper setting of the direction, for example,
 * reversing RTL text before shaping, then shaping with LTR direction is not
 * the same as keeping the text in logical order and shaping with RTL
 * direction.
912
 *
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913
 * Since: 0.9.2
914
 **/
B
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915 916 917 918 919
void
hb_buffer_set_direction (hb_buffer_t    *buffer,
			 hb_direction_t  direction)

{
B
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920 921 922
  if (unlikely (hb_object_is_inert (buffer)))
    return;

923
  buffer->props.direction = direction;
B
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924 925
}

926 927
/**
 * hb_buffer_get_direction:
928
 * @buffer: an #hb_buffer_t.
929
 *
930
 * See hb_buffer_set_direction()
931
 *
932 933
 * Return value:
 * The direction of the @buffer.
934
 *
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935
 * Since: 0.9.2
936
 **/
B
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937 938 939
hb_direction_t
hb_buffer_get_direction (hb_buffer_t    *buffer)
{
940
  return buffer->props.direction;
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941 942
}

943 944
/**
 * hb_buffer_set_script:
945
 * @buffer: an #hb_buffer_t.
946
 * @script: an #hb_script_t to set.
947
 *
948 949 950 951 952 953 954 955 956
 * Sets the script of @buffer to @script.
 *
 * Script is crucial for choosing the proper shaping behaviour for scripts that
 * require it (e.g. Arabic) and the which OpenType features defined in the font
 * to be applied.
 *
 * You can pass one of the predefined #hb_script_t values, or use
 * hb_script_from_string() or hb_script_from_iso15924_tag() to get the
 * corresponding script from an ISO 15924 script tag.
957
 *
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 * Since: 0.9.2
959
 **/
960 961 962 963
void
hb_buffer_set_script (hb_buffer_t *buffer,
		      hb_script_t  script)
{
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964 965 966
  if (unlikely (hb_object_is_inert (buffer)))
    return;

967
  buffer->props.script = script;
968 969
}

970 971
/**
 * hb_buffer_get_script:
972
 * @buffer: an #hb_buffer_t.
973
 *
974
 * See hb_buffer_set_script().
975
 *
976 977
 * Return value:
 * The #hb_script_t of the @buffer.
978
 *
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979
 * Since: 0.9.2
980
 **/
981 982 983
hb_script_t
hb_buffer_get_script (hb_buffer_t *buffer)
{
984
  return buffer->props.script;
985 986
}

987 988
/**
 * hb_buffer_set_language:
989
 * @buffer: an #hb_buffer_t.
990
 * @language: an hb_language_t to set.
991
 *
992 993 994 995 996 997 998 999 1000
 * Sets the language of @buffer to @language.
 *
 * Languages are crucial for selecting which OpenType feature to apply to the
 * buffer which can result in applying language-specific behaviour. Languages
 * are orthogonal to the scripts, and though they are related, they are
 * different concepts and should not be confused with each other.
 *
 * Use hb_language_from_string() to convert from ISO 639 language codes to
 * #hb_language_t.
1001
 *
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1002
 * Since: 0.9.2
1003
 **/
1004 1005 1006 1007
void
hb_buffer_set_language (hb_buffer_t   *buffer,
			hb_language_t  language)
{
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1008 1009 1010
  if (unlikely (hb_object_is_inert (buffer)))
    return;

1011
  buffer->props.language = language;
1012 1013
}

1014 1015
/**
 * hb_buffer_get_language:
1016
 * @buffer: an #hb_buffer_t.
1017
 *
1018
 * See hb_buffer_set_language().
1019
 *
1020
 * Return value: (transfer none):
1021
 * The #hb_language_t of the buffer. Must not be freed by the caller.
1022
 *
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1023
 * Since: 0.9.2
1024
 **/
1025 1026 1027
hb_language_t
hb_buffer_get_language (hb_buffer_t *buffer)
{
1028
  return buffer->props.language;
1029 1030
}

1031 1032
/**
 * hb_buffer_set_segment_properties:
1033
 * @buffer: an #hb_buffer_t.
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1034
 * @props: an #hb_segment_properties_t to use.
1035
 *
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1036 1037 1038
 * Sets the segment properties of the buffer, a shortcut for calling
 * hb_buffer_set_direction(), hb_buffer_set_script() and
 * hb_buffer_set_language() individually.
1039
 *
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1040
 * Since: 0.9.7
1041
 **/
1042 1043 1044 1045 1046 1047 1048 1049 1050 1051
void
hb_buffer_set_segment_properties (hb_buffer_t *buffer,
				  const hb_segment_properties_t *props)
{
  if (unlikely (hb_object_is_inert (buffer)))
    return;

  buffer->props = *props;
}

1052 1053
/**
 * hb_buffer_get_segment_properties:
1054
 * @buffer: an #hb_buffer_t.
K
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1055
 * @props: (out): the output #hb_segment_properties_t.
1056
 *
K
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1057
 * Sets @props to the #hb_segment_properties_t of @buffer.
1058
 *
S
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1059
 * Since: 0.9.7
1060
 **/
1061 1062 1063 1064 1065 1066 1067 1068
void
hb_buffer_get_segment_properties (hb_buffer_t *buffer,
				  hb_segment_properties_t *props)
{
  *props = buffer->props;
}


1069 1070
/**
 * hb_buffer_set_flags:
1071
 * @buffer: an #hb_buffer_t.
1072
 * @flags: the buffer flags to set.
1073
 *
1074
 * Sets @buffer flags to @flags. See #hb_buffer_flags_t.
1075
 *
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1076
 * Since: 0.9.7
1077
 **/
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1078 1079 1080 1081 1082 1083 1084 1085 1086 1087
void
hb_buffer_set_flags (hb_buffer_t       *buffer,
		     hb_buffer_flags_t  flags)
{
  if (unlikely (hb_object_is_inert (buffer)))
    return;

  buffer->flags = flags;
}

1088 1089
/**
 * hb_buffer_get_flags:
1090
 * @buffer: an #hb_buffer_t.
1091
 *
1092
 * See hb_buffer_set_flags().
1093 1094
 *
 * Return value: 
1095
 * The @buffer flags.
1096
 *
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1097
 * Since: 0.9.7
1098
 **/
B
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1099 1100 1101 1102 1103 1104
hb_buffer_flags_t
hb_buffer_get_flags (hb_buffer_t *buffer)
{
  return buffer->flags;
}

1105 1106
/**
 * hb_buffer_set_cluster_level:
1107
 * @buffer: an #hb_buffer_t.
1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125
 * @cluster_level: 
 *
 * 
 *
 * Since: 0.9.42
 **/
void
hb_buffer_set_cluster_level (hb_buffer_t       *buffer,
		     hb_buffer_cluster_level_t  cluster_level)
{
  if (unlikely (hb_object_is_inert (buffer)))
    return;

  buffer->cluster_level = cluster_level;
}

/**
 * hb_buffer_get_cluster_level:
1126
 * @buffer: an #hb_buffer_t.
1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139
 *
 * 
 *
 * Return value: 
 *
 * Since: 0.9.42
 **/
hb_buffer_cluster_level_t
hb_buffer_get_cluster_level (hb_buffer_t *buffer)
{
  return buffer->cluster_level;
}

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1140

1141 1142
/**
 * hb_buffer_set_replacement_codepoint:
1143
 * @buffer: an #hb_buffer_t.
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1144
 * @replacement: the replacement #hb_codepoint_t
1145
 *
K
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1146 1147 1148 1149
 * Sets the #hb_codepoint_t that replaces invalid entries for a given encoding
 * when adding text to @buffer.
 *
 * Default is %HB_BUFFER_REPLACEMENT_CODEPOINT_DEFAULT.
1150
 *
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1151
 * Since: 0.9.31
1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
 **/
void
hb_buffer_set_replacement_codepoint (hb_buffer_t    *buffer,
				     hb_codepoint_t  replacement)
{
  if (unlikely (hb_object_is_inert (buffer)))
    return;

  buffer->replacement = replacement;
}

/**
 * hb_buffer_get_replacement_codepoint:
1165
 * @buffer: an #hb_buffer_t.
1166
 *
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1167
 * See hb_buffer_set_replacement_codepoint().
1168 1169
 *
 * Return value: 
K
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1170
 * The @buffer replacement #hb_codepoint_t.
1171
 *
S
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1172
 * Since: 0.9.31
1173 1174 1175 1176 1177 1178 1179 1180
 **/
hb_codepoint_t
hb_buffer_get_replacement_codepoint (hb_buffer_t    *buffer)
{
  return buffer->replacement;
}


1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220
/**
 * hb_buffer_set_invisible_codepoint:
 * @buffer: an #hb_buffer_t.
 * @invisible: the invisible #hb_codepoint_t
 *
 * Sets the #hb_codepoint_t that replaces invisible characters in
 * the shaping result.  If set to zero (default), the glyph for the
 * U+0020 SPACE character is used.  Otherwise, this value is used
 * verbatim.
 *
 * Since: REPLACEME
 **/
void
hb_buffer_set_invisible_codepoint (hb_buffer_t    *buffer,
				   hb_codepoint_t  invisible)
{
  if (unlikely (hb_object_is_inert (buffer)))
    return;

  buffer->invisible = invisible;
}

/**
 * hb_buffer_get_invisible_codepoint:
 * @buffer: an #hb_buffer_t.
 *
 * See hb_buffer_set_invisible_codepoint().
 *
 * Return value: 
 * The @buffer invisible #hb_codepoint_t.
 *
 * Since: REPLACEME
 **/
hb_codepoint_t
hb_buffer_get_invisible_codepoint (hb_buffer_t    *buffer)
{
  return buffer->invisible;
}


1221 1222
/**
 * hb_buffer_reset:
1223
 * @buffer: an #hb_buffer_t.
1224
 *
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1225 1226
 * Resets the buffer to its initial status, as if it was just newly created
 * with hb_buffer_create().
1227
 *
B
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1228
 * Since: 0.9.2
1229
 **/
1230 1231
void
hb_buffer_reset (hb_buffer_t *buffer)
B
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1232
{
1233
  buffer->reset ();
B
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1234 1235
}

1236 1237
/**
 * hb_buffer_clear_contents:
1238
 * @buffer: an #hb_buffer_t.
1239
 *
K
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1240 1241
 * Similar to hb_buffer_reset(), but does not clear the Unicode functions and
 * the replacement code point.
1242
 *
S
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1243
 * Since: 0.9.11
1244
 **/
B
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1245
void
1246
hb_buffer_clear_contents (hb_buffer_t *buffer)
B
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1247 1248 1249 1250
{
  buffer->clear ();
}

1251 1252
/**
 * hb_buffer_pre_allocate:
1253
 * @buffer: an #hb_buffer_t.
1254
 * @size: number of items to pre allocate.
1255
 *
1256
 * Pre allocates memory for @buffer to fit at least @size number of items.
1257
 *
1258
 * Return value:
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1259
 * %true if @buffer memory allocation succeeded, %false otherwise.
1260
 *
B
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1261
 * Since: 0.9.2
1262
 **/
1263
hb_bool_t
1264
hb_buffer_pre_allocate (hb_buffer_t *buffer, unsigned int size)
B
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1265
{
1266
  return buffer->ensure (size);
B
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1267 1268
}

1269 1270
/**
 * hb_buffer_allocation_successful:
1271
 * @buffer: an #hb_buffer_t.
1272
 *
1273
 * Check if allocating memory for the buffer succeeded.
1274
 *
1275
 * Return value:
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1276
 * %true if @buffer memory allocation succeeded, %false otherwise.
1277
 *
B
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1278
 * Since: 0.9.2
1279
 **/
1280 1281 1282
hb_bool_t
hb_buffer_allocation_successful (hb_buffer_t  *buffer)
{
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1283
  return buffer->successful;
1284 1285
}

1286 1287
/**
 * hb_buffer_add:
1288 1289 1290
 * @buffer: an #hb_buffer_t.
 * @codepoint: a Unicode code point.
 * @cluster: the cluster value of @codepoint.
1291
 *
1292 1293 1294 1295 1296
 * Appends a character with the Unicode value of @codepoint to @buffer, and
 * gives it the initial cluster value of @cluster. Clusters can be any thing
 * the client wants, they are usually used to refer to the index of the
 * character in the input text stream and are output in
 * #hb_glyph_info_t.cluster field.
1297
 *
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1298 1299 1300
 * This function does not check the validity of @codepoint, it is up to the
 * caller to ensure it is a valid Unicode code point.
 *
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1301
 * Since: 0.9.7
1302
 **/
1303
void
1304 1305 1306
hb_buffer_add (hb_buffer_t    *buffer,
	       hb_codepoint_t  codepoint,
	       unsigned int    cluster)
1307
{
1308
  buffer->add (codepoint, cluster);
1309
  buffer->clear_context (1);
1310 1311
}

1312 1313
/**
 * hb_buffer_set_length:
1314
 * @buffer: an #hb_buffer_t.
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1315
 * @length: the new length of @buffer.
1316
 *
K
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1317 1318
 * Similar to hb_buffer_pre_allocate(), but clears any new items added at the
 * end.
1319 1320
 *
 * Return value: 
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1321
 * %true if @buffer memory allocation succeeded, %false otherwise.
1322
 *
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1323
 * Since: 0.9.2
1324
 **/
1325 1326 1327 1328
hb_bool_t
hb_buffer_set_length (hb_buffer_t  *buffer,
		      unsigned int  length)
{
1329 1330 1331
  if (unlikely (hb_object_is_inert (buffer)))
    return length == 0;

1332
  if (!buffer->ensure (length))
1333
    return false;
1334 1335 1336 1337 1338 1339 1340 1341 1342

  /* Wipe the new space */
  if (length > buffer->len) {
    memset (buffer->info + buffer->len, 0, sizeof (buffer->info[0]) * (length - buffer->len));
    if (buffer->have_positions)
      memset (buffer->pos + buffer->len, 0, sizeof (buffer->pos[0]) * (length - buffer->len));
  }

  buffer->len = length;
1343 1344

  if (!length)
1345 1346
  {
    buffer->content_type = HB_BUFFER_CONTENT_TYPE_INVALID;
1347
    buffer->clear_context (0);
1348
  }
1349 1350
  buffer->clear_context (1);

1351
  return true;
1352 1353
}

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1354 1355
/**
 * hb_buffer_get_length:
1356
 * @buffer: an #hb_buffer_t.
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1357 1358 1359
 *
 * Returns the number of items in the buffer.
 *
1360 1361
 * Return value:
 * The @buffer length.
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1362
 * The value valid as long as buffer has not been modified.
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1363
 *
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1364
 * Since: 0.9.2
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 **/
1366
unsigned int
1367
hb_buffer_get_length (hb_buffer_t *buffer)
1368
{
1369
  return buffer->len;
1370 1371
}

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1372 1373
/**
 * hb_buffer_get_glyph_infos:
1374
 * @buffer: an #hb_buffer_t.
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1375 1376
 * @length: (out): output array length.
 *
1377 1378
 * Returns @buffer glyph information array.  Returned pointer
 * is valid as long as @buffer contents are not modified.
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1379
 *
1380 1381
 * Return value: (transfer none) (array length=length):
 * The @buffer glyph information array.
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 * The value valid as long as buffer has not been modified.
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1383
 *
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1384
 * Since: 0.9.2
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1385
 **/
1386
hb_glyph_info_t *
1387 1388
hb_buffer_get_glyph_infos (hb_buffer_t  *buffer,
                           unsigned int *length)
1389
{
1390 1391 1392
  if (length)
    *length = buffer->len;

1393
  return (hb_glyph_info_t *) buffer->info;
1394 1395
}

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1396 1397
/**
 * hb_buffer_get_glyph_positions:
1398
 * @buffer: an #hb_buffer_t.
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1399 1400
 * @length: (out): output length.
 *
1401 1402
 * Returns @buffer glyph position array.  Returned pointer
 * is valid as long as @buffer contents are not modified.
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1403
 *
1404 1405
 * Return value: (transfer none) (array length=length):
 * The @buffer glyph position array.
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1406
 * The value valid as long as buffer has not been modified.
B
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1407
 *
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1408
 * Since: 0.9.2
B
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1409
 **/
1410
hb_glyph_position_t *
1411 1412
hb_buffer_get_glyph_positions (hb_buffer_t  *buffer,
                               unsigned int *length)
1413
{
1414
  if (!buffer->have_positions)
1415
    buffer->clear_positions ();
1416

1417 1418 1419
  if (length)
    *length = buffer->len;

1420
  return (hb_glyph_position_t *) buffer->pos;
1421
}
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1422

1423 1424
/**
 * hb_glyph_info_get_glyph_flags:
B
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1425
 * @info: a #hb_glyph_info_t.
1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439
 *
 * Returns glyph flags encoded within a #hb_glyph_info_t.
 *
 * Return value:
 * The #hb_glyph_flags_t encoded within @info.
 *
 * Since: 1.5.0
 **/
hb_glyph_flags_t
(hb_glyph_info_get_glyph_flags) (const hb_glyph_info_t *info)
{
  return hb_glyph_info_get_glyph_flags (info);
}

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1440 1441
/**
 * hb_buffer_reverse:
1442
 * @buffer: an #hb_buffer_t.
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1443 1444 1445
 *
 * Reverses buffer contents.
 *
B
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1446
 * Since: 0.9.2
B
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1447
 **/
1448 1449 1450
void
hb_buffer_reverse (hb_buffer_t *buffer)
{
1451
  buffer->reverse ();
1452 1453
}

1454 1455
/**
 * hb_buffer_reverse_range:
1456
 * @buffer: an #hb_buffer_t.
1457 1458 1459
 * @start: start index.
 * @end: end index.
 *
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1460
 * Reverses buffer contents between start to end.
1461
 *
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1462
 * Since: 0.9.41
1463 1464 1465 1466 1467 1468 1469 1470
 **/
void
hb_buffer_reverse_range (hb_buffer_t *buffer,
			 unsigned int start, unsigned int end)
{
  buffer->reverse_range (start, end);
}

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1471 1472
/**
 * hb_buffer_reverse_clusters:
1473
 * @buffer: an #hb_buffer_t.
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1474 1475 1476 1477 1478
 *
 * Reverses buffer clusters.  That is, the buffer contents are
 * reversed, then each cluster (consecutive items having the
 * same cluster number) are reversed again.
 *
B
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1479
 * Since: 0.9.2
B
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1480
 **/
1481 1482 1483
void
hb_buffer_reverse_clusters (hb_buffer_t *buffer)
{
1484
  buffer->reverse_clusters ();
1485 1486
}

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1487 1488
/**
 * hb_buffer_guess_segment_properties:
1489
 * @buffer: an #hb_buffer_t.
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1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502
 *
 * Sets unset buffer segment properties based on buffer Unicode
 * contents.  If buffer is not empty, it must have content type
 * %HB_BUFFER_CONTENT_TYPE_UNICODE.
 *
 * If buffer script is not set (ie. is %HB_SCRIPT_INVALID), it
 * will be set to the Unicode script of the first character in
 * the buffer that has a script other than %HB_SCRIPT_COMMON,
 * %HB_SCRIPT_INHERITED, and %HB_SCRIPT_UNKNOWN.
 *
 * Next, if buffer direction is not set (ie. is %HB_DIRECTION_INVALID),
 * it will be set to the natural horizontal direction of the
 * buffer script as returned by hb_script_get_horizontal_direction().
1503 1504
 * If hb_script_get_horizontal_direction() returns %HB_DIRECTION_INVALID,
 * then %HB_DIRECTION_LTR is used.
B
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1505 1506 1507 1508 1509
 *
 * Finally, if buffer language is not set (ie. is %HB_LANGUAGE_INVALID),
 * it will be set to the process's default language as returned by
 * hb_language_get_default().  This may change in the future by
 * taking buffer script into consideration when choosing a language.
1510 1511
 * Note that hb_language_get_default() is NOT threadsafe the first time
 * it is called.  See documentation for that function for details.
B
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1512
 *
S
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1513
 * Since: 0.9.7
B
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1514
 **/
1515
void
1516
hb_buffer_guess_segment_properties (hb_buffer_t *buffer)
1517
{
1518
  buffer->guess_segment_properties ();
1519 1520
}

1521
template <typename utf_t>
1522 1523
static inline void
hb_buffer_add_utf (hb_buffer_t  *buffer,
1524
		   const typename utf_t::codepoint_t *text,
1525 1526 1527 1528
		   int           text_length,
		   unsigned int  item_offset,
		   int           item_length)
{
1529
  typedef typename utf_t::codepoint_t T;
1530
  const hb_codepoint_t replacement = buffer->replacement;
1531

1532 1533 1534 1535 1536 1537
  assert (buffer->content_type == HB_BUFFER_CONTENT_TYPE_UNICODE ||
	  (!buffer->len && buffer->content_type == HB_BUFFER_CONTENT_TYPE_INVALID));

  if (unlikely (hb_object_is_inert (buffer)))
    return;

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1538
  if (text_length == -1)
1539
    text_length = utf_t::strlen (text);
1540 1541 1542 1543 1544 1545

  if (item_length == -1)
    item_length = text_length - item_offset;

  buffer->ensure (buffer->len + item_length * sizeof (T) / 4);

1546 1547 1548 1549 1550 1551 1552 1553
  /* If buffer is empty and pre-context provided, install it.
   * This check is written this way, to make sure people can
   * provide pre-context in one add_utf() call, then provide
   * text in a follow-up call.  See:
   *
   * https://bugzilla.mozilla.org/show_bug.cgi?id=801410#c13
   */
  if (!buffer->len && item_offset > 0)
1554 1555 1556 1557 1558 1559 1560 1561
  {
    /* Add pre-context */
    buffer->clear_context (0);
    const T *prev = text + item_offset;
    const T *start = text;
    while (start < prev && buffer->context_len[0] < buffer->CONTEXT_LENGTH)
    {
      hb_codepoint_t u;
1562
      prev = utf_t::prev (prev, start, &u, replacement);
1563 1564 1565 1566 1567
      buffer->context[0][buffer->context_len[0]++] = u;
    }
  }

  const T *next = text + item_offset;
1568
  const T *end = next + item_length;
1569 1570
  while (next < end)
  {
1571 1572
    hb_codepoint_t u;
    const T *old_next = next;
1573
    next = utf_t::next (next, end, &u, replacement);
1574
    buffer->add (u, old_next - (const T *) text);
1575 1576 1577 1578 1579 1580 1581 1582
  }

  /* Add post-context */
  buffer->clear_context (1);
  end = text + text_length;
  while (next < end && buffer->context_len[1] < buffer->CONTEXT_LENGTH)
  {
    hb_codepoint_t u;
1583
    next = utf_t::next (next, end, &u, replacement);
1584
    buffer->context[1][buffer->context_len[1]++] = u;
1585 1586 1587
  }

  buffer->content_type = HB_BUFFER_CONTENT_TYPE_UNICODE;
1588 1589
}

1590 1591
/**
 * hb_buffer_add_utf8:
1592
 * @buffer: an #hb_buffer_t.
K
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1593 1594
 * @text: (array length=text_length) (element-type uint8_t): an array of UTF-8
 *               characters to append.
1595 1596 1597 1598
 * @text_length: the length of the @text, or -1 if it is %NULL terminated.
 * @item_offset: the offset of the first character to add to the @buffer.
 * @item_length: the number of characters to add to the @buffer, or -1 for the
 *               end of @text (assuming it is %NULL terminated).
1599
 *
1600
 * See hb_buffer_add_codepoints().
1601
 *
K
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1602 1603 1604
 * Replaces invalid UTF-8 characters with the @buffer replacement code point,
 * see hb_buffer_set_replacement_codepoint().
 *
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1605
 * Since: 0.9.2
1606
 **/
1607 1608 1609
void
hb_buffer_add_utf8 (hb_buffer_t  *buffer,
		    const char   *text,
1610
		    int           text_length,
1611
		    unsigned int  item_offset,
1612
		    int           item_length)
1613
{
1614
  hb_buffer_add_utf<hb_utf8_t> (buffer, (const uint8_t *) text, text_length, item_offset, item_length);
1615 1616
}

1617 1618
/**
 * hb_buffer_add_utf16:
1619 1620 1621 1622 1623 1624
 * @buffer: an #hb_buffer_t.
 * @text: (array length=text_length): an array of UTF-16 characters to append.
 * @text_length: the length of the @text, or -1 if it is %NULL terminated.
 * @item_offset: the offset of the first character to add to the @buffer.
 * @item_length: the number of characters to add to the @buffer, or -1 for the
 *               end of @text (assuming it is %NULL terminated).
1625
 *
1626
 * See hb_buffer_add_codepoints().
1627
 *
K
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1628 1629 1630
 * Replaces invalid UTF-16 characters with the @buffer replacement code point,
 * see hb_buffer_set_replacement_codepoint().
 *
B
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1631
 * Since: 0.9.2
1632
 **/
1633 1634 1635
void
hb_buffer_add_utf16 (hb_buffer_t    *buffer,
		     const uint16_t *text,
1636
		     int             text_length,
1637
		     unsigned int    item_offset,
1638
		     int             item_length)
1639
{
1640
  hb_buffer_add_utf<hb_utf16_t> (buffer, text, text_length, item_offset, item_length);
1641 1642
}

1643 1644
/**
 * hb_buffer_add_utf32:
1645 1646 1647 1648 1649 1650
 * @buffer: an #hb_buffer_t.
 * @text: (array length=text_length): an array of UTF-32 characters to append.
 * @text_length: the length of the @text, or -1 if it is %NULL terminated.
 * @item_offset: the offset of the first character to add to the @buffer.
 * @item_length: the number of characters to add to the @buffer, or -1 for the
 *               end of @text (assuming it is %NULL terminated).
1651
 *
1652
 * See hb_buffer_add_codepoints().
1653
 *
K
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1654 1655 1656
 * Replaces invalid UTF-32 characters with the @buffer replacement code point,
 * see hb_buffer_set_replacement_codepoint().
 *
B
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1657
 * Since: 0.9.2
1658
 **/
1659 1660 1661
void
hb_buffer_add_utf32 (hb_buffer_t    *buffer,
		     const uint32_t *text,
1662
		     int             text_length,
1663
		     unsigned int    item_offset,
1664
		     int             item_length)
1665
{
1666 1667 1668 1669 1670
  hb_buffer_add_utf<hb_utf32_t<> > (buffer, text, text_length, item_offset, item_length);
}

/**
 * hb_buffer_add_latin1:
1671
 * @buffer: an #hb_buffer_t.
K
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1672 1673 1674 1675 1676 1677
 * @text: (array length=text_length) (element-type uint8_t): an array of UTF-8
 *               characters to append.
 * @text_length: the length of the @text, or -1 if it is %NULL terminated.
 * @item_offset: the offset of the first character to add to the @buffer.
 * @item_length: the number of characters to add to the @buffer, or -1 for the
 *               end of @text (assuming it is %NULL terminated).
1678
 *
K
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1679 1680 1681 1682
 * Similar to hb_buffer_add_codepoints(), but allows only access to first 256
 * Unicode code points that can fit in 8-bit strings.
 *
 * <note>Has nothing to do with non-Unicode Latin-1 encoding.</note>
1683
 *
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1684
 * Since: 0.9.39
1685 1686 1687 1688 1689 1690 1691 1692 1693
 **/
void
hb_buffer_add_latin1 (hb_buffer_t   *buffer,
		      const uint8_t *text,
		      int            text_length,
		      unsigned int   item_offset,
		      int            item_length)
{
  hb_buffer_add_utf<hb_latin1_t> (buffer, text, text_length, item_offset, item_length);
1694 1695 1696 1697
}

/**
 * hb_buffer_add_codepoints:
1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713
 * @buffer: a #hb_buffer_t to append characters to.
 * @text: (array length=text_length): an array of Unicode code points to append.
 * @text_length: the length of the @text, or -1 if it is %NULL terminated.
 * @item_offset: the offset of the first code point to add to the @buffer.
 * @item_length: the number of code points to add to the @buffer, or -1 for the
 *               end of @text (assuming it is %NULL terminated).
 *
 * Appends characters from @text array to @buffer. The @item_offset is the
 * position of the first character from @text that will be appended, and
 * @item_length is the number of character. When shaping part of a larger text
 * (e.g. a run of text from a paragraph), instead of passing just the substring
 * corresponding to the run, it is preferable to pass the whole
 * paragraph and specify the run start and length as @item_offset and
 * @item_length, respectively, to give HarfBuzz the full context to be able,
 * for example, to do cross-run Arabic shaping or properly handle combining
 * marks at stat of run.
1714
 *
K
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1715 1716 1717
 * This function does not check the validity of @text, it is up to the caller
 * to ensure it contains a valid Unicode code points.
 *
S
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1718
 * Since: 0.9.31
1719 1720 1721 1722 1723 1724 1725 1726
 **/
void
hb_buffer_add_codepoints (hb_buffer_t          *buffer,
			  const hb_codepoint_t *text,
			  int                   text_length,
			  unsigned int          item_offset,
			  int                   item_length)
{
1727
  hb_buffer_add_utf<hb_utf32_t<false> > (buffer, text, text_length, item_offset, item_length);
1728
}
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1729 1730


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1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748
/**
 * hb_buffer_append:
 * @buffer: an #hb_buffer_t.
 * @source: source #hb_buffer_t.
 * @start: start index into source buffer to copy.  Use 0 to copy from start of buffer.
 * @end: end index into source buffer to copy.  Use (unsigned int) -1 to copy to end of buffer.
 *
 * Append (part of) contents of another buffer to this buffer.
 *
 * Since: 1.5.0
 **/
HB_EXTERN void
hb_buffer_append (hb_buffer_t *buffer,
		  hb_buffer_t *source,
		  unsigned int start,
		  unsigned int end)
{
  assert (!buffer->have_output && !source->have_output);
1749 1750
  assert (buffer->have_positions == source->have_positions ||
	  !buffer->len || !source->len);
B
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1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762
  assert (buffer->content_type == source->content_type ||
	  !buffer->len || !source->len);

  if (end > source->len)
    end = source->len;
  if (start > end)
    start = end;
  if (start == end)
    return;

  if (!buffer->len)
    buffer->content_type = source->content_type;
1763 1764
  if (!buffer->have_positions && source->have_positions)
    buffer->clear_positions ();
B
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1765

B
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1766
  if (buffer->len + (end - start) < buffer->len) /* Overflows. */
B
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1767
  {
B
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1768
    buffer->successful = false;
B
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1769 1770 1771 1772 1773
    return;
  }

  unsigned int orig_len = buffer->len;
  hb_buffer_set_length (buffer, buffer->len + (end - start));
B
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1774
  if (unlikely (!buffer->successful))
B
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1775 1776 1777 1778 1779 1780 1781 1782
    return;

  memcpy (buffer->info + orig_len, source->info + start, (end - start) * sizeof (buffer->info[0]));
  if (buffer->have_positions)
    memcpy (buffer->pos + orig_len, source->pos + start, (end - start) * sizeof (buffer->pos[0]));
}


1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824
static int
compare_info_codepoint (const hb_glyph_info_t *pa,
			const hb_glyph_info_t *pb)
{
  return (int) pb->codepoint - (int) pa->codepoint;
}

static inline void
normalize_glyphs_cluster (hb_buffer_t *buffer,
			  unsigned int start,
			  unsigned int end,
			  bool backward)
{
  hb_glyph_position_t *pos = buffer->pos;

  /* Total cluster advance */
  hb_position_t total_x_advance = 0, total_y_advance = 0;
  for (unsigned int i = start; i < end; i++)
  {
    total_x_advance += pos[i].x_advance;
    total_y_advance += pos[i].y_advance;
  }

  hb_position_t x_advance = 0, y_advance = 0;
  for (unsigned int i = start; i < end; i++)
  {
    pos[i].x_offset += x_advance;
    pos[i].y_offset += y_advance;

    x_advance += pos[i].x_advance;
    y_advance += pos[i].y_advance;

    pos[i].x_advance = 0;
    pos[i].y_advance = 0;
  }

  if (backward)
  {
    /* Transfer all cluster advance to the last glyph. */
    pos[end - 1].x_advance = total_x_advance;
    pos[end - 1].y_advance = total_y_advance;

1825
    hb_stable_sort (buffer->info + start, end - start - 1, compare_info_codepoint, buffer->pos + start);
1826 1827 1828 1829 1830 1831 1832 1833
  } else {
    /* Transfer all cluster advance to the first glyph. */
    pos[start].x_advance += total_x_advance;
    pos[start].y_advance += total_y_advance;
    for (unsigned int i = start + 1; i < end; i++) {
      pos[i].x_offset -= total_x_advance;
      pos[i].y_offset -= total_y_advance;
    }
1834
    hb_stable_sort (buffer->info + start + 1, end - start - 1, compare_info_codepoint, buffer->pos + start + 1);
1835 1836 1837
  }
}

1838 1839
/**
 * hb_buffer_normalize_glyphs:
1840
 * @buffer: an #hb_buffer_t.
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 *
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 * Reorders a glyph buffer to have canonical in-cluster glyph order / position.
 * The resulting clusters should behave identical to pre-reordering clusters.
 *
 * <note>This has nothing to do with Unicode normalization.</note>
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 *
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 * Since: 0.9.2
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 **/
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void
hb_buffer_normalize_glyphs (hb_buffer_t *buffer)
{
  assert (buffer->have_positions);
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  assert (buffer->content_type == HB_BUFFER_CONTENT_TYPE_GLYPHS ||
	  (!buffer->len && buffer->content_type == HB_BUFFER_CONTENT_TYPE_INVALID));
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  bool backward = HB_DIRECTION_IS_BACKWARD (buffer->props.direction);

  unsigned int count = buffer->len;
  if (unlikely (!count)) return;
  hb_glyph_info_t *info = buffer->info;

  unsigned int start = 0;
  unsigned int end;
  for (end = start + 1; end < count; end++)
    if (info[start].cluster != info[end].cluster) {
      normalize_glyphs_cluster (buffer, start, end, backward);
      start = end;
    }
  normalize_glyphs_cluster (buffer, start, end, backward);
}
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void
hb_buffer_t::sort (unsigned int start, unsigned int end, int(*compar)(const hb_glyph_info_t *, const hb_glyph_info_t *))
{
  assert (!have_positions);
  for (unsigned int i = start + 1; i < end; i++)
  {
    unsigned int j = i;
    while (j > start && compar (&info[j - 1], &info[i]) > 0)
      j--;
    if (i == j)
      continue;
    /* Move item i to occupy place for item j, shift what's in between. */
    merge_clusters (j, i + 1);
    {
      hb_glyph_info_t t = info[i];
      memmove (&info[j + 1], &info[j], (i - j) * sizeof (hb_glyph_info_t));
      info[j] = t;
    }
  }
}
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/*
 * Comparing buffers.
 */

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/**
 * hb_buffer_diff:
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 * @buffer: a buffer.
 * @reference: other buffer to compare to.
 * @dottedcircle_glyph: glyph id of U+25CC DOTTED CIRCLE, or (hb_codepont_t) -1.
 * @position_fuzz: allowed absolute difference in position values.
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 *
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 * If dottedcircle_glyph is (hb_codepoint_t) -1 then %HB_BUFFER_DIFF_FLAG_DOTTED_CIRCLE_PRESENT
 * and %HB_BUFFER_DIFF_FLAG_NOTDEF_PRESENT are never returned.  This should be used by most
 * callers if just comparing two buffers is needed.
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 *
 * Since: 1.5.0
 **/
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hb_buffer_diff_flags_t
hb_buffer_diff (hb_buffer_t *buffer,
		hb_buffer_t *reference,
		hb_codepoint_t dottedcircle_glyph,
		unsigned int position_fuzz)
{
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  if (buffer->content_type != reference->content_type && buffer->len && reference->len)
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    return HB_BUFFER_DIFF_FLAG_CONTENT_TYPE_MISMATCH;

  hb_buffer_diff_flags_t result = HB_BUFFER_DIFF_FLAG_EQUAL;
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  bool contains = dottedcircle_glyph != (hb_codepoint_t) -1;
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  unsigned int count = reference->len;

  if (buffer->len != count)
  {
    /*
     * we can't compare glyph-by-glyph, but we do want to know if there
     * are .notdef or dottedcircle glyphs present in the reference buffer
     */
    const hb_glyph_info_t *info = reference->info;
    unsigned int i;
    for (i = 0; i < count; i++)
    {
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      if (contains && info[i].codepoint == dottedcircle_glyph)
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        result |= HB_BUFFER_DIFF_FLAG_DOTTED_CIRCLE_PRESENT;
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      if (contains && info[i].codepoint == 0)
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        result |= HB_BUFFER_DIFF_FLAG_NOTDEF_PRESENT;
    }
    result |= HB_BUFFER_DIFF_FLAG_LENGTH_MISMATCH;
    return hb_buffer_diff_flags_t (result);
  }

  if (!count)
    return hb_buffer_diff_flags_t (result);

  const hb_glyph_info_t *buf_info = buffer->info;
  const hb_glyph_info_t *ref_info = reference->info;
  for (unsigned int i = 0; i < count; i++)
  {
    if (buf_info->codepoint != ref_info->codepoint)
      result |= HB_BUFFER_DIFF_FLAG_CODEPOINT_MISMATCH;
    if (buf_info->cluster != ref_info->cluster)
      result |= HB_BUFFER_DIFF_FLAG_CLUSTER_MISMATCH;
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    if ((buf_info->mask & ~ref_info->mask & HB_GLYPH_FLAG_DEFINED))
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      result |= HB_BUFFER_DIFF_FLAG_GLYPH_FLAGS_MISMATCH;
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    if (contains && ref_info->codepoint == dottedcircle_glyph)
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      result |= HB_BUFFER_DIFF_FLAG_DOTTED_CIRCLE_PRESENT;
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    if (contains && ref_info->codepoint == 0)
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      result |= HB_BUFFER_DIFF_FLAG_NOTDEF_PRESENT;
    buf_info++;
    ref_info++;
  }

  if (buffer->content_type == HB_BUFFER_CONTENT_TYPE_GLYPHS)
  {
    assert (buffer->have_positions);
    const hb_glyph_position_t *buf_pos = buffer->pos;
    const hb_glyph_position_t *ref_pos = reference->pos;
    for (unsigned int i = 0; i < count; i++)
    {
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      if ((unsigned int) abs (buf_pos->x_advance - ref_pos->x_advance) > position_fuzz ||
          (unsigned int) abs (buf_pos->y_advance - ref_pos->y_advance) > position_fuzz ||
          (unsigned int) abs (buf_pos->x_offset - ref_pos->x_offset) > position_fuzz ||
          (unsigned int) abs (buf_pos->y_offset - ref_pos->y_offset) > position_fuzz)
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      {
        result |= HB_BUFFER_DIFF_FLAG_POSITION_MISMATCH;
        break;
      }
      buf_pos++;
      ref_pos++;
    }
  }

  return result;
}


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/*
 * Debugging.
 */

/**
 * hb_buffer_set_message_func:
1995
 * @buffer: an #hb_buffer_t.
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 * @func: (closure user_data) (destroy destroy) (scope notified):
 * @user_data:
 * @destroy:
 *
 * 
 *
 * Since: 1.1.3
 **/
void
hb_buffer_set_message_func (hb_buffer_t *buffer,
			    hb_buffer_message_func_t func,
			    void *user_data, hb_destroy_func_t destroy)
{
  if (buffer->message_destroy)
    buffer->message_destroy (buffer->message_data);

  if (func) {
    buffer->message_func = func;
    buffer->message_data = user_data;
    buffer->message_destroy = destroy;
  } else {
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    buffer->message_func = nullptr;
    buffer->message_data = nullptr;
    buffer->message_destroy = nullptr;
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  }
}

bool
hb_buffer_t::message_impl (hb_font_t *font, const char *fmt, va_list ap)
{
  char buf[100];
  vsnprintf (buf, sizeof (buf),  fmt, ap);
  return (bool) this->message_func (this, font, buf, this->message_data);
}