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https://sourceware.org/git/binutils-gdb.git
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1d506c26d9
This commit is the result of the following actions: - Running gdb/copyright.py to update all of the copyright headers to include 2024, - Manually updating a few files the copyright.py script told me to update, these files had copyright headers embedded within the file, - Regenerating gdbsupport/Makefile.in to refresh it's copyright date, - Using grep to find other files that still mentioned 2023. If these files were updated last year from 2022 to 2023 then I've updated them this year to 2024. I'm sure I've probably missed some dates. Feel free to fix them up as you spot them.
246 lines
7.8 KiB
C++
246 lines
7.8 KiB
C++
/* Shared general utility routines for GDB, the GNU debugger.
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Copyright (C) 1986-2024 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License 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 this program. If not, see <http://www.gnu.org/licenses/>. */
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#ifndef COMMON_COMMON_UTILS_H
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#define COMMON_COMMON_UTILS_H
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#include <string>
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#include <vector>
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#include "gdbsupport/byte-vector.h"
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#include "gdbsupport/gdb_unique_ptr.h"
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#include "gdbsupport/array-view.h"
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#include "poison.h"
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#include <string_view>
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#if defined HAVE_LIBXXHASH
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# include <xxhash.h>
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#else
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# include "hashtab.h"
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#endif
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/* xmalloc(), xrealloc() and xcalloc() have already been declared in
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"libiberty.h". */
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/* Like xmalloc, but zero the memory. */
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void *xzalloc (size_t);
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/* Like asprintf and vasprintf, but return the string, throw an error
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if no memory. */
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gdb::unique_xmalloc_ptr<char> xstrprintf (const char *format, ...)
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ATTRIBUTE_PRINTF (1, 2);
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gdb::unique_xmalloc_ptr<char> xstrvprintf (const char *format, va_list ap)
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ATTRIBUTE_PRINTF (1, 0);
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/* Like snprintf, but throw an error if the output buffer is too small. */
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int xsnprintf (char *str, size_t size, const char *format, ...)
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ATTRIBUTE_PRINTF (3, 4);
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/* Returns a std::string built from a printf-style format string. */
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std::string string_printf (const char* fmt, ...)
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ATTRIBUTE_PRINTF (1, 2);
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/* Like string_printf, but takes a va_list. */
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std::string string_vprintf (const char* fmt, va_list args)
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ATTRIBUTE_PRINTF (1, 0);
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/* Like string_printf, but appends to DEST instead of returning a new
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std::string. */
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std::string &string_appendf (std::string &dest, const char* fmt, ...)
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ATTRIBUTE_PRINTF (2, 3);
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/* Like string_appendf, but takes a va_list. */
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std::string &string_vappendf (std::string &dest, const char* fmt, va_list args)
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ATTRIBUTE_PRINTF (2, 0);
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/* Make a copy of the string at PTR with LEN characters
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(and add a null character at the end in the copy).
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Uses malloc to get the space. Returns the address of the copy. */
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char *savestring (const char *ptr, size_t len);
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/* Extract the next word from ARG. The next word is defined as either,
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everything up to the next space, or, if the next word starts with either
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a single or double quote, then everything up to the closing quote. The
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enclosing quotes are not returned in the result string. The pointer in
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ARG is updated to point to the first character after the end of the
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word, or, for quoted words, the first character after the closing
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quote. */
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std::string extract_string_maybe_quoted (const char **arg);
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/* The strerror() function can return NULL for errno values that are
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out of range. Provide a "safe" version that always returns a
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printable string. This version is also thread-safe. */
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extern const char *safe_strerror (int);
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/* Version of startswith that takes string_view arguments. Return
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true if the start of STRING matches PATTERN, false otherwise. */
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static inline bool
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startswith (std::string_view string, std::string_view pattern)
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{
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return (string.length () >= pattern.length ()
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&& strncmp (string.data (), pattern.data (), pattern.length ()) == 0);
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}
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/* Return true if the strings are equal. */
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static inline bool
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streq (const char *lhs, const char *rhs)
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{
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return strcmp (lhs, rhs) == 0;
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}
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/* Compare C strings for std::sort. */
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static inline bool
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compare_cstrings (const char *str1, const char *str2)
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{
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return strcmp (str1, str2) < 0;
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}
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ULONGEST strtoulst (const char *num, const char **trailer, int base);
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/* Skip leading whitespace characters in INP, returning an updated
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pointer. If INP is NULL, return NULL. */
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extern char *skip_spaces (char *inp);
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/* A const-correct version of the above. */
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extern const char *skip_spaces (const char *inp);
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/* Skip leading non-whitespace characters in INP, returning an updated
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pointer. If INP is NULL, return NULL. */
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extern char *skip_to_space (char *inp);
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/* A const-correct version of the above. */
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extern const char *skip_to_space (const char *inp);
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/* Assumes that V is an argv for a program, and iterates through
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freeing all the elements. */
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extern void free_vector_argv (std::vector<char *> &v);
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/* Return true if VALUE is in [LOW, HIGH]. */
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template <typename T>
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static bool
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in_inclusive_range (T value, T low, T high)
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{
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return value >= low && value <= high;
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}
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/* Ensure that V is aligned to an N byte boundary (N's assumed to be a
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power of 2). Round up/down when necessary. Examples of correct
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use include:
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addr = align_up (addr, 8); -- VALUE needs 8 byte alignment
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write_memory (addr, value, len);
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addr += len;
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and:
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sp = align_down (sp - len, 16); -- Keep SP 16 byte aligned
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write_memory (sp, value, len);
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Note that uses such as:
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write_memory (addr, value, len);
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addr += align_up (len, 8);
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and:
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sp -= align_up (len, 8);
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write_memory (sp, value, len);
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are typically not correct as they don't ensure that the address (SP
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or ADDR) is correctly aligned (relying on previous alignment to
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keep things right). This is also why the methods are called
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"align_..." instead of "round_..." as the latter reads better with
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this incorrect coding style. */
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extern ULONGEST align_up (ULONGEST v, int n);
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extern ULONGEST align_down (ULONGEST v, int n);
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/* Convert hex digit A to a number, or throw an exception. */
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extern int fromhex (int a);
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/* HEX is a string of characters representing hexadecimal digits.
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Convert pairs of hex digits to bytes and store sequentially into
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BIN. COUNT is the maximum number of characters to convert. This
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will convert fewer characters if the number of hex characters
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actually seen is odd, or if HEX terminates before COUNT characters.
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Returns the number of characters actually converted. */
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extern int hex2bin (const char *hex, gdb_byte *bin, int count);
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/* Like the above, but return a gdb::byte_vector. */
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gdb::byte_vector hex2bin (const char *hex);
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/* Build a string containing the contents of BYTES. Each byte is
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represented as a 2 character hex string, with spaces separating each
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individual byte. */
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extern std::string bytes_to_string (gdb::array_view<const gdb_byte> bytes);
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/* See bytes_to_string above. This takes a BUFFER pointer and LENGTH
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rather than an array view. */
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static inline std::string bytes_to_string (const gdb_byte *buffer,
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size_t length)
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{
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return bytes_to_string ({buffer, length});
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}
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/* A fast hashing function. This can be used to hash data in a fast way
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when the length is known. If no fast hashing library is available, falls
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back to iterative_hash from libiberty. START_VALUE can be set to
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continue hashing from a previous value. */
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static inline unsigned int
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fast_hash (const void *ptr, size_t len, unsigned int start_value = 0)
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{
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#if defined HAVE_LIBXXHASH
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return XXH64 (ptr, len, start_value);
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#else
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return iterative_hash (ptr, len, start_value);
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#endif
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}
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namespace gdb
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{
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/* Hash type for std::string_view.
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Even after we switch to C++17 and dump our string_view implementation, we
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might want to keep this hash implementation if it's faster than std::hash
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for std::string_view. */
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struct string_view_hash
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{
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std::size_t operator() (std::string_view view) const
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{ return fast_hash (view.data (), view.length ()); }
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};
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} /* namespace gdb */
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#endif /* COMMON_COMMON_UTILS_H */
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