a554497024
From-SVN: r267494
387 lines
9.0 KiB
C++
387 lines
9.0 KiB
C++
/* Traits for hashable types.
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Copyright (C) 2014-2019 Free Software Foundation, Inc.
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 3, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING3. If not see
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<http://www.gnu.org/licenses/>. */
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#ifndef hash_traits_h
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#define hash_traits_h
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/* Helpful type for removing with free. */
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template <typename Type>
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struct typed_free_remove
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{
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static inline void remove (Type *p);
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};
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/* Remove with free. */
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template <typename Type>
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inline void
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typed_free_remove <Type>::remove (Type *p)
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{
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free (p);
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}
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/* Helpful type for removing with delete. */
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template <typename Type>
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struct typed_delete_remove
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{
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static inline void remove (Type *p);
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};
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/* Remove with delete. */
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template <typename Type>
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inline void
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typed_delete_remove <Type>::remove (Type *p)
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{
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delete p;
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}
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/* Helpful type for a no-op remove. */
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template <typename Type>
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struct typed_noop_remove
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{
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static inline void remove (Type &);
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};
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/* Remove doing nothing. */
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template <typename Type>
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inline void
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typed_noop_remove <Type>::remove (Type &)
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{
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}
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/* Hasher for integer type Type in which Empty is a spare value that can be
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used to mark empty slots. If Deleted != Empty then Deleted is another
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spare value that can be used for deleted slots; if Deleted == Empty then
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hash table entries cannot be deleted. */
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template <typename Type, Type Empty, Type Deleted = Empty>
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struct int_hash : typed_noop_remove <Type>
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{
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typedef Type value_type;
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typedef Type compare_type;
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static inline hashval_t hash (value_type);
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static inline bool equal (value_type existing, value_type candidate);
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static inline void mark_deleted (Type &);
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static inline void mark_empty (Type &);
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static inline bool is_deleted (Type);
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static inline bool is_empty (Type);
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};
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template <typename Type, Type Empty, Type Deleted>
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inline hashval_t
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int_hash <Type, Empty, Deleted>::hash (value_type x)
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{
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return x;
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}
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template <typename Type, Type Empty, Type Deleted>
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inline bool
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int_hash <Type, Empty, Deleted>::equal (value_type x, value_type y)
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{
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return x == y;
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}
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template <typename Type, Type Empty, Type Deleted>
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inline void
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int_hash <Type, Empty, Deleted>::mark_deleted (Type &x)
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{
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gcc_assert (Empty != Deleted);
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x = Deleted;
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}
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template <typename Type, Type Empty, Type Deleted>
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inline void
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int_hash <Type, Empty, Deleted>::mark_empty (Type &x)
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{
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x = Empty;
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}
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template <typename Type, Type Empty, Type Deleted>
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inline bool
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int_hash <Type, Empty, Deleted>::is_deleted (Type x)
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{
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return Empty != Deleted && x == Deleted;
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}
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template <typename Type, Type Empty, Type Deleted>
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inline bool
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int_hash <Type, Empty, Deleted>::is_empty (Type x)
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{
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return x == Empty;
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}
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/* Pointer hasher based on pointer equality. Other types of pointer hash
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can inherit this and override the hash and equal functions with some
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other form of equality (such as string equality). */
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template <typename Type>
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struct pointer_hash
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{
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typedef Type *value_type;
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typedef Type *compare_type;
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static inline hashval_t hash (const value_type &);
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static inline bool equal (const value_type &existing,
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const compare_type &candidate);
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static inline void mark_deleted (Type *&);
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static inline void mark_empty (Type *&);
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static inline bool is_deleted (Type *);
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static inline bool is_empty (Type *);
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};
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template <typename Type>
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inline hashval_t
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pointer_hash <Type>::hash (const value_type &candidate)
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{
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/* This is a really poor hash function, but it is what the current code uses,
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so I am reusing it to avoid an additional axis in testing. */
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return (hashval_t) ((intptr_t)candidate >> 3);
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}
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template <typename Type>
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inline bool
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pointer_hash <Type>::equal (const value_type &existing,
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const compare_type &candidate)
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{
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return existing == candidate;
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}
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template <typename Type>
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inline void
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pointer_hash <Type>::mark_deleted (Type *&e)
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{
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e = reinterpret_cast<Type *> (1);
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}
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template <typename Type>
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inline void
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pointer_hash <Type>::mark_empty (Type *&e)
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{
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e = NULL;
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}
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template <typename Type>
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inline bool
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pointer_hash <Type>::is_deleted (Type *e)
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{
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return e == reinterpret_cast<Type *> (1);
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}
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template <typename Type>
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inline bool
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pointer_hash <Type>::is_empty (Type *e)
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{
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return e == NULL;
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}
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/* Hasher for "const char *" strings, using string rather than pointer
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equality. */
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struct string_hash : pointer_hash <const char>
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{
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static inline hashval_t hash (const char *);
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static inline bool equal (const char *, const char *);
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};
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inline hashval_t
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string_hash::hash (const char *id)
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{
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return htab_hash_string (id);
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}
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inline bool
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string_hash::equal (const char *id1, const char *id2)
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{
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return strcmp (id1, id2) == 0;
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}
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/* Remover and marker for entries in gc memory. */
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template<typename T>
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struct ggc_remove
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{
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static void remove (T &) {}
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static void
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ggc_mx (T &p)
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{
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extern void gt_ggc_mx (T &);
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gt_ggc_mx (p);
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}
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/* Overridden in ggc_cache_remove. */
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static void
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ggc_maybe_mx (T &p)
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{
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ggc_mx (p);
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}
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static void
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pch_nx (T &p)
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{
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extern void gt_pch_nx (T &);
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gt_pch_nx (p);
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}
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static void
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pch_nx (T &p, gt_pointer_operator op, void *cookie)
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{
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op (&p, cookie);
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}
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};
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/* Remover and marker for "cache" entries in gc memory. These entries can
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be deleted if there are no non-cache references to the data. */
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template<typename T>
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struct ggc_cache_remove : ggc_remove<T>
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{
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/* Entries are weakly held because this is for caches. */
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static void ggc_maybe_mx (T &) {}
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static int
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keep_cache_entry (T &e)
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{
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return ggc_marked_p (e) ? -1 : 0;
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}
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};
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/* Traits for pointer elements that should not be freed when an element
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is deleted. */
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template <typename T>
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struct nofree_ptr_hash : pointer_hash <T>, typed_noop_remove <T *> {};
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/* Traits for pointer elements that should be freed via free() when an
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element is deleted. */
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template <typename T>
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struct free_ptr_hash : pointer_hash <T>, typed_free_remove <T> {};
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/* Traits for pointer elements that should be freed via delete operand when an
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element is deleted. */
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template <typename T>
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struct delete_ptr_hash : pointer_hash <T>, typed_delete_remove <T> {};
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/* Traits for elements that point to gc memory. The pointed-to data
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must be kept across collections. */
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template <typename T>
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struct ggc_ptr_hash : pointer_hash <T>, ggc_remove <T *> {};
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/* Traits for elements that point to gc memory. The elements don't
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in themselves keep the pointed-to data alive and they can be deleted
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if the pointed-to data is going to be collected. */
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template <typename T>
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struct ggc_cache_ptr_hash : pointer_hash <T>, ggc_cache_remove <T *> {};
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/* Traits for string elements that should not be freed when an element
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is deleted. */
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struct nofree_string_hash : string_hash, typed_noop_remove <const char *> {};
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/* Traits for pairs of values, using the first to record empty and
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deleted slots. */
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template <typename T1, typename T2>
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struct pair_hash
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{
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typedef std::pair <typename T1::value_type,
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typename T2::value_type> value_type;
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typedef std::pair <typename T1::compare_type,
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typename T2::compare_type> compare_type;
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static inline hashval_t hash (const value_type &);
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static inline bool equal (const value_type &, const compare_type &);
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static inline void remove (value_type &);
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static inline void mark_deleted (value_type &);
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static inline void mark_empty (value_type &);
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static inline bool is_deleted (const value_type &);
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static inline bool is_empty (const value_type &);
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};
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template <typename T1, typename T2>
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inline hashval_t
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pair_hash <T1, T2>::hash (const value_type &x)
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{
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return iterative_hash_hashval_t (T1::hash (x.first), T2::hash (x.second));
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}
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template <typename T1, typename T2>
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inline bool
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pair_hash <T1, T2>::equal (const value_type &x, const compare_type &y)
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{
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return T1::equal (x.first, y.first) && T2::equal (x.second, y.second);
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}
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template <typename T1, typename T2>
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inline void
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pair_hash <T1, T2>::remove (value_type &x)
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{
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T1::remove (x.first);
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T2::remove (x.second);
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}
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template <typename T1, typename T2>
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inline void
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pair_hash <T1, T2>::mark_deleted (value_type &x)
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{
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T1::mark_deleted (x.first);
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}
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template <typename T1, typename T2>
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inline void
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pair_hash <T1, T2>::mark_empty (value_type &x)
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{
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T1::mark_empty (x.first);
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}
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template <typename T1, typename T2>
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inline bool
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pair_hash <T1, T2>::is_deleted (const value_type &x)
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{
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return T1::is_deleted (x.first);
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}
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template <typename T1, typename T2>
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inline bool
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pair_hash <T1, T2>::is_empty (const value_type &x)
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{
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return T1::is_empty (x.first);
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}
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template <typename T> struct default_hash_traits : T {};
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template <typename T>
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struct default_hash_traits <T *> : ggc_ptr_hash <T> {};
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#endif
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