Coverage Report

Created: 2025-07-11 06:34

/src/harfbuzz/src/hb-cache.hh
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/*
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 * Copyright © 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
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 * license or royalty fees, to use, copy, modify, and distribute this
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 * software and its documentation for any purpose, provided that the
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 * above copyright notice and the following two paragraphs appear in
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 * all copies of this software.
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 *
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 * IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE TO ANY PARTY FOR
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 * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
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 * ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN
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 * IF THE COPYRIGHT HOLDER HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
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 * DAMAGE.
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 *
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 * THE COPYRIGHT HOLDER SPECIFICALLY DISCLAIMS ANY WARRANTIES, INCLUDING,
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 * BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
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 * FITNESS FOR A PARTICULAR PURPOSE.  THE SOFTWARE PROVIDED HEREUNDER IS
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 * ON AN "AS IS" BASIS, AND THE COPYRIGHT HOLDER HAS NO OBLIGATION TO
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 * PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
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 *
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 * Google Author(s): Behdad Esfahbod
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 */
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#ifndef HB_CACHE_HH
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#define HB_CACHE_HH
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#include "hb.hh"
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/* Implements a lockfree and thread-safe cache for int->int functions,
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 * using (optionally) _relaxed_ atomic integer operations.
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 *
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 * The cache is a fixed-size array of 16-bit or 32-bit integers,
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 * typically 256 elements.
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 *
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 * The key is split into two parts: the cache index (high bits)
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 * and the rest (low bits).
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 *
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 * The cache index is used to index into the array.  The array
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 * member is a 16-bit or 32-bit integer that is used *both*
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 * to store the low bits of the key, and the value.
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 *
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 * The value is stored in the least significant bits of the integer.
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 * The low bits of the key are stored in the most significant bits
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 * of the integer.
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 *
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 * A cache hit is detected by comparing the low bits of the key
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 * with the high bits of the integer at the array position indexed
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 * by the high bits of the key. If they match, the value is extracted
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 * from the least significant bits of the integer and returned.
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 * Otherwise, a cache miss is reported.
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 *
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 * Cache operations (storage and retrieval) involve just a few
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 * arithmetic operations and a single memory access.
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 */
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template <unsigned int key_bits=16,
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   unsigned int value_bits=8 + 32 - key_bits,
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   unsigned int cache_bits=8,
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   bool thread_safe=true>
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struct hb_cache_t
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{
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  using item_t = typename std::conditional<thread_safe,
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             typename std::conditional<key_bits + value_bits - cache_bits <= 16,
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                     hb_atomic_t<unsigned short>,
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                     hb_atomic_t<unsigned int>>::type,
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             typename std::conditional<key_bits + value_bits - cache_bits <= 16,
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                     unsigned short,
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                     unsigned int>::type
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            >::type;
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  static_assert ((key_bits >= cache_bits), "");
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  static_assert ((key_bits + value_bits <= cache_bits + 8 * sizeof (item_t)), "");
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2.45k
  hb_cache_t () { clear (); }
Unexecuted instantiation: hb_cache_t<21u, 19u, 8u, true>::hb_cache_t()
Unexecuted instantiation: hb_cache_t<24u, 16u, 8u, true>::hb_cache_t()
hb_cache_t<21u, 3u, 8u, true>::hb_cache_t()
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78
2.30k
  hb_cache_t () { clear (); }
Unexecuted instantiation: hb_cache_t<16u, 24u, 8u, false>::hb_cache_t()
hb_cache_t<15u, 8u, 7u, true>::hb_cache_t()
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156
  hb_cache_t () { clear (); }
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  void clear ()
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2.61k
  {
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2.61k
    for (auto &v : values)
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628k
      v = -1;
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  }
Unexecuted instantiation: hb_cache_t<21u, 19u, 8u, true>::clear()
hb_cache_t<21u, 3u, 8u, true>::clear()
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2.30k
  {
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    for (auto &v : values)
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589k
      v = -1;
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  }
hb_cache_t<15u, 8u, 7u, true>::clear()
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  {
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    for (auto &v : values)
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39.9k
      v = -1;
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  }
Unexecuted instantiation: hb_cache_t<24u, 16u, 8u, true>::clear()
Unexecuted instantiation: hb_cache_t<16u, 24u, 8u, false>::clear()
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  bool get (unsigned int key, unsigned int *value) const
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2.00M
  {
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2.00M
    unsigned int k = key & ((1u<<cache_bits)-1);
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2.00M
    unsigned int v = values[k];
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2.00M
    if ((key_bits + value_bits - cache_bits == 8 * sizeof (item_t) && v == (unsigned int) -1) ||
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2.00M
  (v >> value_bits) != (key >> cache_bits))
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18.9k
      return false;
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1.98M
    *value = v & ((1u<<value_bits)-1);
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1.98M
    return true;
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2.00M
  }
Unexecuted instantiation: hb_cache_t<15u, 8u, 7u, true>::get(unsigned int, unsigned int*) const
Unexecuted instantiation: hb_cache_t<21u, 19u, 8u, true>::get(unsigned int, unsigned int*) const
hb_cache_t<21u, 3u, 8u, true>::get(unsigned int, unsigned int*) const
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2.00M
  {
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2.00M
    unsigned int k = key & ((1u<<cache_bits)-1);
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2.00M
    unsigned int v = values[k];
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2.00M
    if ((key_bits + value_bits - cache_bits == 8 * sizeof (item_t) && v == (unsigned int) -1) ||
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2.00M
  (v >> value_bits) != (key >> cache_bits))
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18.9k
      return false;
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1.98M
    *value = v & ((1u<<value_bits)-1);
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1.98M
    return true;
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  }
Unexecuted instantiation: hb_cache_t<24u, 16u, 8u, true>::get(unsigned int, unsigned int*) const
Unexecuted instantiation: hb_cache_t<16u, 24u, 8u, false>::get(unsigned int, unsigned int*) const
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  bool set (unsigned int key, unsigned int value)
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18.9k
  {
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    if (unlikely ((key >> key_bits) || (value >> value_bits)))
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0
      return false; /* Overflows */
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18.9k
    unsigned int k = key & ((1u<<cache_bits)-1);
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18.9k
    unsigned int v = ((key>>cache_bits)<<value_bits) | value;
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18.9k
    values[k] = v;
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    return true;
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  }
Unexecuted instantiation: hb_cache_t<15u, 8u, 7u, true>::set(unsigned int, unsigned int)
Unexecuted instantiation: hb_cache_t<21u, 19u, 8u, true>::set(unsigned int, unsigned int)
hb_cache_t<21u, 3u, 8u, true>::set(unsigned int, unsigned int)
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18.9k
  {
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18.9k
    if (unlikely ((key >> key_bits) || (value >> value_bits)))
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0
      return false; /* Overflows */
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18.9k
    unsigned int k = key & ((1u<<cache_bits)-1);
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18.9k
    unsigned int v = ((key>>cache_bits)<<value_bits) | value;
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18.9k
    values[k] = v;
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    return true;
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  }
Unexecuted instantiation: hb_cache_t<24u, 16u, 8u, true>::set(unsigned int, unsigned int)
Unexecuted instantiation: hb_cache_t<16u, 24u, 8u, false>::set(unsigned int, unsigned int)
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  private:
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  item_t values[1u<<cache_bits];
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};
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#endif /* HB_CACHE_HH */