hb-subset-glyf.cc 11.2 KB
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/*
 * Copyright © 2018  Google, Inc.
 *
 *  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.
 *
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 * Google Author(s): Garret Rieger, Roderick Sheeter
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 */

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#include "hb-open-type-private.hh"
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#include "hb-ot-glyf-table.hh"
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#include "hb-set.h"
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#include "hb-subset-glyf.hh"
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#include "hb-subset-plan.hh"
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static bool
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_calculate_glyf_and_loca_prime_size (const OT::glyf::accelerator_t &glyf,
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                                     hb_prealloced_array_t<hb_codepoint_t> &glyph_ids,
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                                     hb_bool_t drop_hints,
                                     bool *use_short_loca /* OUT */,
                                     unsigned int *glyf_size /* OUT */,
                                     unsigned int *loca_size /* OUT */,
                                     hb_prealloced_array_t<unsigned int> *instruction_ranges /* OUT */)
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{
  unsigned int total = 0;
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  for (unsigned int i = 0; i < glyph_ids.len; i++)
  {
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    hb_codepoint_t next_glyph = glyph_ids[i];
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    unsigned int start_offset, end_offset;
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    if (unlikely (!glyf.get_offsets(next_glyph, &start_offset, &end_offset)))
    {
      DEBUG_MSG(SUBSET, nullptr, "Invalid gid %d", next_glyph);
      continue;
    }
    unsigned int instruction_start = 0, instruction_end = 0;
    if (drop_hints)
    {
      if (unlikely (!glyf.get_instruction_offsets(start_offset, end_offset,
                                                  &instruction_start, &instruction_end)))
      {
        DEBUG_MSG(SUBSET, nullptr, "Unable to get instruction offsets for %d", next_glyph);
        return false;
      }
    }
    *(instruction_ranges->push()) = instruction_start;
    *(instruction_ranges->push()) = instruction_end;
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    total += end_offset - start_offset - (instruction_end - instruction_start);
    fprintf(stderr, "  %d ends at %d (was %d to %d, remove %d)\n", next_glyph, total, start_offset, end_offset, instruction_end - instruction_start);
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  }

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  *glyf_size = total;
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  *use_short_loca = (total <= 131070);
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  *loca_size = (glyph_ids.len + 1)
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      * (*use_short_loca ? sizeof(OT::HBUINT16) : sizeof(OT::HBUINT32));

  DEBUG_MSG(SUBSET, nullptr, "preparing to subset glyf: final size %d, loca size %d, using %s loca",
            total,
            *loca_size,
            *use_short_loca ? "short" : "long");
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  return true;
}

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static bool
_write_loca_entry (unsigned int  id,
                   unsigned int  offset,
                   bool          is_short,
                   void         *loca_prime,
                   unsigned int  loca_size)
{
  unsigned int entry_size = is_short ? sizeof (OT::HBUINT16) : sizeof (OT::HBUINT32);
  if ((id + 1) * entry_size <= loca_size)
  {
    if (is_short) {
      ((OT::HBUINT16*) loca_prime) [id].set (offset / 2);
    } else {
      ((OT::HBUINT32*) loca_prime) [id].set (offset);
    }
    return true;
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  }
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  // Offset was not written because the write is out of bounds.
  DEBUG_MSG (SUBSET,
             nullptr,
             "WARNING: Attempted to write an out of bounds loca entry at index %d. Loca size is %d.",
             id,
             loca_size);
  return false;
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}

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static void
_update_components (hb_subset_plan_t * plan,
		    char * glyph_start,
		    unsigned int length)

{
  OT::glyf::CompositeGlyphHeader::Iterator iterator;
  if (OT::glyf::CompositeGlyphHeader::get_iterator (glyph_start,
						    length,
						    &iterator))
  {
    do
    {
      hb_codepoint_t new_gid;
      if (!hb_subset_plan_new_gid_for_old_id (plan,
					      iterator.current->glyphIndex,
					      &new_gid))
	continue;

      ((OT::glyf::CompositeGlyphHeader *) iterator.current)->glyphIndex.set (new_gid);
    } while (iterator.move_to_next());
  }
}

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static bool
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_write_glyf_and_loca_prime (hb_subset_plan_t              *plan,
			    const OT::glyf::accelerator_t &glyf,
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                            const char                    *glyf_data,
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                            bool                           use_short_loca,
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                            hb_prealloced_array_t<unsigned int> &instruction_ranges,
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                            unsigned int                   glyf_prime_size,
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                            char                          *glyf_prime_data /* OUT */,
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                            unsigned int                   loca_prime_size,
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                            char                          *loca_prime_data /* OUT */)
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{
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  hb_prealloced_array_t<hb_codepoint_t> &glyph_ids = plan->gids_to_retain_sorted;
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  char *glyf_prime_data_next = glyf_prime_data;

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  bool success = true;
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  for (unsigned int i = 0; i < glyph_ids.len; i++)
  {
    unsigned int start_offset, end_offset;
    if (unlikely (!glyf.get_offsets (glyph_ids[i], &start_offset, &end_offset)))
      end_offset = start_offset = 0;
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    unsigned int instruction_start = instruction_ranges[i * 2];
    unsigned int instruction_end = instruction_ranges[i * 2 + 1];
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    int length = end_offset - start_offset - (instruction_end - instruction_start);
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    if (glyf_prime_data_next + length > glyf_prime_data + glyf_prime_size)
    {
      DEBUG_MSG (SUBSET,
                 nullptr,
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                 "WARNING: Attempted to write an out of bounds glyph entry for gid %d (length %d)",
                 i, length);
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      return false;
    }
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    if (instruction_start == instruction_end)
    {
      fprintf(stderr, "i=%d copy %d bytes from %d to %ld\n", i, length, start_offset, glyf_prime_data_next - glyf_prime_data);
      memcpy (glyf_prime_data_next, glyf_data + start_offset, length);
    }
    else
    {
      fprintf(stderr, "i=%d copy %d bytes from %d to %ld\n", i, instruction_start - start_offset, start_offset, glyf_prime_data_next - glyf_prime_data);
      fprintf(stderr, "i=%d copy %d bytes from %d to %ld\n", i, end_offset - instruction_end, instruction_end, glyf_prime_data_next + instruction_start - start_offset - glyf_prime_data);
      memcpy (glyf_prime_data_next, glyf_data + start_offset, instruction_start - start_offset);
      memcpy (glyf_prime_data_next + instruction_start - start_offset, glyf_data + instruction_end, end_offset - instruction_end);
      /* if the instructions end at the end this was a composite glyph */
      if (instruction_end == end_offset)
        ; // TODO(rsheeter) remove WE_HAVE_INSTRUCTIONS from last flags
      else
        ; // TODO(rsheeter) zero instructionLength
    }
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    success = success && _write_loca_entry (i,
                                            glyf_prime_data_next - glyf_prime_data,
                                            use_short_loca,
                                            loca_prime_data,
                                            loca_prime_size);
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    _update_components (plan, glyf_prime_data_next, length);
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    glyf_prime_data_next += length;
  }

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  success = success && _write_loca_entry (glyph_ids.len,
                                          glyf_prime_data_next - glyf_prime_data,
                                          use_short_loca,
                                          loca_prime_data,
                                          loca_prime_size);
  return success;
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}

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static bool
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_hb_subset_glyf_and_loca (const OT::glyf::accelerator_t  &glyf,
                          const char                     *glyf_data,
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                          hb_subset_plan_t               *plan,
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                          bool                           *use_short_loca,
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                          hb_blob_t                     **glyf_prime /* OUT */,
                          hb_blob_t                     **loca_prime /* OUT */)
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{
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  // TODO(grieger): Sanity check allocation size for the new table.
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  hb_prealloced_array_t<hb_codepoint_t> &glyphs_to_retain = plan->gids_to_retain_sorted;
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  unsigned int glyf_prime_size;
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  unsigned int loca_prime_size;
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  hb_prealloced_array_t<unsigned int> instruction_ranges;
  instruction_ranges.init();
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  if (unlikely (!_calculate_glyf_and_loca_prime_size (glyf,
                                                      glyphs_to_retain,
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                                                      plan->drop_hints,
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                                                      use_short_loca,
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                                                      &glyf_prime_size,
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                                                      &loca_prime_size,
                                                      &instruction_ranges))) {
    instruction_ranges.finish();
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    return false;
  }
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  char *glyf_prime_data = (char *) malloc (glyf_prime_size);
  char *loca_prime_data = (char *) malloc (loca_prime_size);
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  if (unlikely (!_write_glyf_and_loca_prime (plan, glyf, glyf_data,
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                                             *use_short_loca,
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                                             instruction_ranges,
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                                             glyf_prime_size, glyf_prime_data,
                                             loca_prime_size, loca_prime_data))) {
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    free (glyf_prime_data);
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    free (loca_prime_data);
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    instruction_ranges.finish();
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    return false;
  }
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  instruction_ranges.finish();
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  *glyf_prime = hb_blob_create (glyf_prime_data,
                                glyf_prime_size,
                                HB_MEMORY_MODE_READONLY,
                                glyf_prime_data,
                                free);
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  *loca_prime = hb_blob_create (loca_prime_data,
                                loca_prime_size,
                                HB_MEMORY_MODE_READONLY,
                                loca_prime_data,
                                free);
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  return true;
}
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/**
 * hb_subset_glyf:
 * Subsets the glyph table according to a provided plan.
 *
 * Return value: subsetted glyf table.
 *
 * Since: 1.7.5
 **/
bool
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hb_subset_glyf_and_loca (hb_subset_plan_t *plan,
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                         bool             *use_short_loca, /* OUT */
                         hb_blob_t       **glyf_prime, /* OUT */
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                         hb_blob_t       **loca_prime /* OUT */)
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{
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  hb_blob_t *glyf_blob = OT::Sanitizer<OT::glyf>().sanitize (plan->source->reference_table (HB_OT_TAG_glyf));
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  const char *glyf_data = hb_blob_get_data(glyf_blob, nullptr);

  OT::glyf::accelerator_t glyf;
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  glyf.init(plan->source);
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  bool result = _hb_subset_glyf_and_loca (glyf,
                                          glyf_data,
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                                          plan,
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                                          use_short_loca,
                                          glyf_prime,
                                          loca_prime);
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  glyf.fini();

  return result;
}