mirror of
https://github.com/openvswitch/ovs
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The following macros are renamed to avoid conflicts with other headers: * WARN_UNUSED_RESULT to OVS_WARN_UNUSED_RESULT * PRINTF_FORMAT to OVS_PRINTF_FORMAT * NO_RETURN to OVS_NO_RETURN Signed-off-by: Thomas Graf <tgraf@noironetworks.com> Acked-by: Ben Pfaff <blp@nicira.com>
573 lines
18 KiB
C
573 lines
18 KiB
C
/*
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* Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013, 2014 Nicira, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef UTIL_H
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#define UTIL_H 1
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#include <arpa/inet.h>
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#include <inttypes.h>
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#include <limits.h>
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#include <stdarg.h>
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#include <stdbool.h>
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#include <stddef.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "compiler.h"
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#include "openvswitch/types.h"
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#include "openvswitch/util.h"
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#ifndef va_copy
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#ifdef __va_copy
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#define va_copy __va_copy
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#else
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#define va_copy(dst, src) ((dst) = (src))
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#endif
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#endif
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#ifdef __CHECKER__
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#define BUILD_ASSERT(EXPR) ((void) 0)
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#define BUILD_ASSERT_DECL(EXPR) extern int (*build_assert(void))[1]
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#elif !defined(__cplusplus)
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/* Build-time assertion building block. */
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#define BUILD_ASSERT__(EXPR) \
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sizeof(struct { unsigned int build_assert_failed : (EXPR) ? 1 : -1; })
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/* Build-time assertion for use in a statement context. */
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#define BUILD_ASSERT(EXPR) (void) BUILD_ASSERT__(EXPR)
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/* Build-time assertion for use in a declaration context. */
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#define BUILD_ASSERT_DECL(EXPR) \
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extern int (*build_assert(void))[BUILD_ASSERT__(EXPR)]
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#else /* __cplusplus */
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#include <boost/static_assert.hpp>
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#define BUILD_ASSERT BOOST_STATIC_ASSERT
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#define BUILD_ASSERT_DECL BOOST_STATIC_ASSERT
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#endif /* __cplusplus */
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#ifdef __GNUC__
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#define BUILD_ASSERT_GCCONLY(EXPR) BUILD_ASSERT(EXPR)
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#define BUILD_ASSERT_DECL_GCCONLY(EXPR) BUILD_ASSERT_DECL(EXPR)
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#else
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#define BUILD_ASSERT_GCCONLY(EXPR) ((void) 0)
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#define BUILD_ASSERT_DECL_GCCONLY(EXPR) ((void) 0)
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#endif
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/* Like the standard assert macro, except writes the failure message to the
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* log. */
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#ifndef NDEBUG
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#define ovs_assert(CONDITION) \
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if (!OVS_LIKELY(CONDITION)) { \
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ovs_assert_failure(SOURCE_LOCATOR, __func__, #CONDITION); \
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}
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#else
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#define ovs_assert(CONDITION) ((void) (CONDITION))
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#endif
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OVS_NO_RETURN void ovs_assert_failure(const char *, const char *, const char *);
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/* Casts 'pointer' to 'type' and issues a compiler warning if the cast changes
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* anything other than an outermost "const" or "volatile" qualifier.
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*
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* The cast to int is present only to suppress an "expression using sizeof
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* bool" warning from "sparse" (see
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* http://permalink.gmane.org/gmane.comp.parsers.sparse/2967). */
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#define CONST_CAST(TYPE, POINTER) \
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((void) sizeof ((int) ((POINTER) == (TYPE) (POINTER))), \
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(TYPE) (POINTER))
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extern char *program_name;
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#define __ARRAY_SIZE_NOCHECK(ARRAY) (sizeof(ARRAY) / sizeof((ARRAY)[0]))
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#ifdef __GNUC__
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/* return 0 for array types, 1 otherwise */
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#define __ARRAY_CHECK(ARRAY) \
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!__builtin_types_compatible_p(typeof(ARRAY), typeof(&ARRAY[0]))
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/* compile-time fail if not array */
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#define __ARRAY_FAIL(ARRAY) (sizeof(char[-2*!__ARRAY_CHECK(ARRAY)]))
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#define __ARRAY_SIZE(ARRAY) \
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__builtin_choose_expr(__ARRAY_CHECK(ARRAY), \
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__ARRAY_SIZE_NOCHECK(ARRAY), __ARRAY_FAIL(ARRAY))
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#else
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#define __ARRAY_SIZE(ARRAY) __ARRAY_SIZE_NOCHECK(ARRAY)
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#endif
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/* Returns the number of elements in ARRAY. */
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#define ARRAY_SIZE(ARRAY) __ARRAY_SIZE(ARRAY)
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/* Returns X / Y, rounding up. X must be nonnegative to round correctly. */
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#define DIV_ROUND_UP(X, Y) (((X) + ((Y) - 1)) / (Y))
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/* Returns X rounded up to the nearest multiple of Y. */
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#define ROUND_UP(X, Y) (DIV_ROUND_UP(X, Y) * (Y))
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/* Returns the least number that, when added to X, yields a multiple of Y. */
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#define PAD_SIZE(X, Y) (ROUND_UP(X, Y) - (X))
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/* Returns X rounded down to the nearest multiple of Y. */
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#define ROUND_DOWN(X, Y) ((X) / (Y) * (Y))
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/* Returns true if X is a power of 2, otherwise false. */
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#define IS_POW2(X) ((X) && !((X) & ((X) - 1)))
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static inline bool
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is_pow2(uintmax_t x)
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{
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return IS_POW2(x);
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}
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/* Returns X rounded up to a power of 2. X must be a constant expression. */
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#define ROUND_UP_POW2(X) RUP2__(X)
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#define RUP2__(X) (RUP2_1(X) + 1)
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#define RUP2_1(X) (RUP2_2(X) | (RUP2_2(X) >> 16))
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#define RUP2_2(X) (RUP2_3(X) | (RUP2_3(X) >> 8))
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#define RUP2_3(X) (RUP2_4(X) | (RUP2_4(X) >> 4))
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#define RUP2_4(X) (RUP2_5(X) | (RUP2_5(X) >> 2))
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#define RUP2_5(X) (RUP2_6(X) | (RUP2_6(X) >> 1))
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#define RUP2_6(X) ((X) - 1)
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/* Returns X rounded down to a power of 2. X must be a constant expression. */
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#define ROUND_DOWN_POW2(X) RDP2__(X)
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#define RDP2__(X) (RDP2_1(X) - (RDP2_1(X) >> 1))
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#define RDP2_1(X) (RDP2_2(X) | (RDP2_2(X) >> 16))
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#define RDP2_2(X) (RDP2_3(X) | (RDP2_3(X) >> 8))
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#define RDP2_3(X) (RDP2_4(X) | (RDP2_4(X) >> 4))
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#define RDP2_4(X) (RDP2_5(X) | (RDP2_5(X) >> 2))
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#define RDP2_5(X) ( (X) | ( (X) >> 1))
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/* This system's cache line size, in bytes.
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* Being wrong hurts performance but not correctness. */
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#define CACHE_LINE_SIZE 64
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BUILD_ASSERT_DECL(IS_POW2(CACHE_LINE_SIZE));
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static inline void
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ovs_prefetch_range(const void *start, size_t size)
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{
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const char *addr = (const char *)start;
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size_t ofs;
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for (ofs = 0; ofs < size; ofs += CACHE_LINE_SIZE) {
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OVS_PREFETCH(addr + ofs);
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}
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}
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#ifndef MIN
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#define MIN(X, Y) ((X) < (Y) ? (X) : (Y))
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#endif
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#ifndef MAX
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#define MAX(X, Y) ((X) > (Y) ? (X) : (Y))
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#endif
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#define OVS_NOT_REACHED() abort()
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/* Expands to a string that looks like "<file>:<line>", e.g. "tmp.c:10".
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*
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* See http://c-faq.com/ansi/stringize.html for an explanation of STRINGIZE and
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* STRINGIZE2. */
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#define SOURCE_LOCATOR __FILE__ ":" STRINGIZE(__LINE__)
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#define STRINGIZE(ARG) STRINGIZE2(ARG)
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#define STRINGIZE2(ARG) #ARG
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/* Given a pointer-typed lvalue OBJECT, expands to a pointer type that may be
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* assigned to OBJECT. */
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#ifdef __GNUC__
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#define OVS_TYPEOF(OBJECT) typeof(OBJECT)
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#else
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#define OVS_TYPEOF(OBJECT) void *
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#endif
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/* Given OBJECT of type pointer-to-structure, expands to the offset of MEMBER
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* within an instance of the structure.
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*
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* The GCC-specific version avoids the technicality of undefined behavior if
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* OBJECT is null, invalid, or not yet initialized. This makes some static
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* checkers (like Coverity) happier. But the non-GCC version does not actually
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* dereference any pointer, so it would be surprising for it to cause any
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* problems in practice.
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*/
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#ifdef __GNUC__
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#define OBJECT_OFFSETOF(OBJECT, MEMBER) offsetof(typeof(*(OBJECT)), MEMBER)
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#else
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#define OBJECT_OFFSETOF(OBJECT, MEMBER) \
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((char *) &(OBJECT)->MEMBER - (char *) (OBJECT))
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#endif
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/* Given POINTER, the address of the given MEMBER in a STRUCT object, returns
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the STRUCT object. */
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#define CONTAINER_OF(POINTER, STRUCT, MEMBER) \
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((STRUCT *) (void *) ((char *) (POINTER) - offsetof (STRUCT, MEMBER)))
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/* Given POINTER, the address of the given MEMBER within an object of the type
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* that that OBJECT points to, returns OBJECT as an assignment-compatible
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* pointer type (either the correct pointer type or "void *"). OBJECT must be
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* an lvalue.
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*
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* This is the same as CONTAINER_OF except that it infers the structure type
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* from the type of '*OBJECT'. */
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#define OBJECT_CONTAINING(POINTER, OBJECT, MEMBER) \
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((OVS_TYPEOF(OBJECT)) (void *) \
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((char *) (POINTER) - OBJECT_OFFSETOF(OBJECT, MEMBER)))
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/* Given POINTER, the address of the given MEMBER within an object of the type
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* that that OBJECT points to, assigns the address of the outer object to
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* OBJECT, which must be an lvalue.
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*
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* Evaluates to (void) 0 as the result is not to be used. */
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#define ASSIGN_CONTAINER(OBJECT, POINTER, MEMBER) \
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((OBJECT) = OBJECT_CONTAINING(POINTER, OBJECT, MEMBER), (void) 0)
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/* As explained in the comment above OBJECT_OFFSETOF(), non-GNUC compilers
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* like MSVC will complain about un-initialized variables if OBJECT
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* hasn't already been initialized. To prevent such warnings, INIT_CONTAINER()
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* can be used as a wrapper around ASSIGN_CONTAINER. */
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#define INIT_CONTAINER(OBJECT, POINTER, MEMBER) \
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((OBJECT) = NULL, ASSIGN_CONTAINER(OBJECT, POINTER, MEMBER))
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/* Given ATTR, and TYPE, cast the ATTR to TYPE by first casting ATTR to
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* (void *). This is to suppress the alignment warning issued by clang. */
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#define ALIGNED_CAST(TYPE, ATTR) ((TYPE) (void *) (ATTR))
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/* Use "%"PRIuSIZE to format size_t with printf(). */
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#ifdef _WIN32
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#define PRIdSIZE "Id"
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#define PRIiSIZE "Ii"
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#define PRIoSIZE "Io"
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#define PRIuSIZE "Iu"
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#define PRIxSIZE "Ix"
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#define PRIXSIZE "IX"
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#else
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#define PRIdSIZE "zd"
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#define PRIiSIZE "zi"
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#define PRIoSIZE "zo"
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#define PRIuSIZE "zu"
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#define PRIxSIZE "zx"
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#define PRIXSIZE "zX"
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#endif
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#ifndef _WIN32
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typedef uint32_t HANDLE;
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define set_program_name(name) \
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ovs_set_program_name(name, OVS_PACKAGE_VERSION)
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const char *get_subprogram_name(void);
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void set_subprogram_name(const char *format, ...) OVS_PRINTF_FORMAT(1, 2);
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void ovs_print_version(uint8_t min_ofp, uint8_t max_ofp);
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OVS_NO_RETURN void out_of_memory(void);
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void *xmalloc(size_t) MALLOC_LIKE;
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void *xcalloc(size_t, size_t) MALLOC_LIKE;
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void *xzalloc(size_t) MALLOC_LIKE;
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void *xrealloc(void *, size_t);
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void *xmemdup(const void *, size_t) MALLOC_LIKE;
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char *xmemdup0(const char *, size_t) MALLOC_LIKE;
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char *xstrdup(const char *) MALLOC_LIKE;
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char *xasprintf(const char *format, ...) OVS_PRINTF_FORMAT(1, 2) MALLOC_LIKE;
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char *xvasprintf(const char *format, va_list) OVS_PRINTF_FORMAT(1, 0) MALLOC_LIKE;
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void *x2nrealloc(void *p, size_t *n, size_t s);
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void *xmalloc_cacheline(size_t) MALLOC_LIKE;
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void *xzalloc_cacheline(size_t) MALLOC_LIKE;
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void free_cacheline(void *);
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void ovs_strlcpy(char *dst, const char *src, size_t size);
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void ovs_strzcpy(char *dst, const char *src, size_t size);
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OVS_NO_RETURN void ovs_abort(int err_no, const char *format, ...)
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OVS_PRINTF_FORMAT(2, 3);
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OVS_NO_RETURN void ovs_abort_valist(int err_no, const char *format, va_list)
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OVS_PRINTF_FORMAT(2, 0);
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OVS_NO_RETURN void ovs_fatal(int err_no, const char *format, ...)
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OVS_PRINTF_FORMAT(2, 3);
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OVS_NO_RETURN void ovs_fatal_valist(int err_no, const char *format, va_list)
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OVS_PRINTF_FORMAT(2, 0);
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void ovs_error(int err_no, const char *format, ...) OVS_PRINTF_FORMAT(2, 3);
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void ovs_error_valist(int err_no, const char *format, va_list)
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OVS_PRINTF_FORMAT(2, 0);
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const char *ovs_retval_to_string(int);
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const char *ovs_strerror(int);
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void ovs_hex_dump(FILE *, const void *, size_t, uintptr_t offset, bool ascii);
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bool str_to_int(const char *, int base, int *);
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bool str_to_long(const char *, int base, long *);
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bool str_to_llong(const char *, int base, long long *);
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bool str_to_uint(const char *, int base, unsigned int *);
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bool ovs_scan(const char *s, const char *format, ...) OVS_SCANF_FORMAT(2, 3);
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bool ovs_scan_len(const char *s, int *n, const char *format, ...);
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bool str_to_double(const char *, double *);
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int hexit_value(int c);
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uintmax_t hexits_value(const char *s, size_t n, bool *ok);
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const char *english_list_delimiter(size_t index, size_t total);
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char *get_cwd(void);
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#ifndef _WIN32
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char *dir_name(const char *file_name);
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char *base_name(const char *file_name);
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#endif
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char *abs_file_name(const char *dir, const char *file_name);
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char *follow_symlinks(const char *filename);
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void ignore(bool x OVS_UNUSED);
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/* Bitwise tests. */
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/* Returns the number of trailing 0-bits in 'n'. Undefined if 'n' == 0. */
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#if __GNUC__ >= 4
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static inline int
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raw_ctz(uint64_t n)
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{
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/* With GCC 4.7 on 32-bit x86, if a 32-bit integer is passed as 'n', using
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* a plain __builtin_ctzll() here always generates an out-of-line function
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* call. The test below helps it to emit a single 'bsf' instruction. */
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return (__builtin_constant_p(n <= UINT32_MAX) && n <= UINT32_MAX
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? __builtin_ctz(n)
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: __builtin_ctzll(n));
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}
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static inline int
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raw_clz64(uint64_t n)
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{
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return __builtin_clzll(n);
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}
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#elif _MSC_VER
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static inline int
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raw_ctz(uint64_t n)
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{
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#ifdef _WIN64
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uint32_t r = 0;
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_BitScanForward64(&r, n);
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return r;
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#else
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uint32_t low = n, high, r = 0;
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if (_BitScanForward(&r, low)) {
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return r;
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}
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high = n >> 32;
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_BitScanForward(&r, high);
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return r + 32;
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#endif
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}
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static inline int
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raw_clz64(uint64_t n)
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{
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#ifdef _WIN64
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uint32_t r = 0;
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_BitScanReverse64(&r, n);
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return 63 - r;
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#else
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uint32_t low, high = n >> 32, r = 0;
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if (_BitScanReverse(&r, high)) {
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return 31 - r;
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}
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low = n;
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_BitScanReverse(&r, low);
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return 63 - r;
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#endif
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}
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#else
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/* Defined in util.c. */
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int raw_ctz(uint64_t n);
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int raw_clz64(uint64_t n);
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#endif
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/* Returns the number of trailing 0-bits in 'n', or 32 if 'n' is 0. */
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static inline int
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ctz32(uint32_t n)
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{
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return n ? raw_ctz(n) : 32;
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}
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/* Returns the number of trailing 0-bits in 'n', or 64 if 'n' is 0. */
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static inline int
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ctz64(uint64_t n)
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{
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return n ? raw_ctz(n) : 64;
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}
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/* Returns the number of leading 0-bits in 'n', or 32 if 'n' is 0. */
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static inline int
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clz32(uint32_t n)
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{
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return n ? raw_clz64(n) - 32 : 32;
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}
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/* Returns the number of leading 0-bits in 'n', or 64 if 'n' is 0. */
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static inline int
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clz64(uint64_t n)
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{
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return n ? raw_clz64(n) : 64;
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}
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/* Given a word 'n', calculates floor(log_2('n')). This is equivalent
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* to finding the bit position of the most significant one bit in 'n'. It is
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* an error to call this function with 'n' == 0. */
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static inline int
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log_2_floor(uint64_t n)
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{
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return 63 - raw_clz64(n);
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}
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/* Given a word 'n', calculates ceil(log_2('n')). It is an error to
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* call this function with 'n' == 0. */
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static inline int
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log_2_ceil(uint64_t n)
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{
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||
return log_2_floor(n) + !is_pow2(n);
|
||
}
|
||
|
||
/* unsigned int count_1bits(uint64_t x):
|
||
*
|
||
* Returns the number of 1-bits in 'x', between 0 and 64 inclusive. */
|
||
#if UINTPTR_MAX == UINT64_MAX
|
||
static inline unsigned int
|
||
count_1bits(uint64_t x)
|
||
{
|
||
#if __GNUC__ >= 4 && __POPCNT__
|
||
return __builtin_popcountll(x);
|
||
#else
|
||
/* This portable implementation is the fastest one we know of for 64
|
||
* bits, and about 3x faster than GCC 4.7 __builtin_popcountll(). */
|
||
const uint64_t h55 = UINT64_C(0x5555555555555555);
|
||
const uint64_t h33 = UINT64_C(0x3333333333333333);
|
||
const uint64_t h0F = UINT64_C(0x0F0F0F0F0F0F0F0F);
|
||
const uint64_t h01 = UINT64_C(0x0101010101010101);
|
||
x -= (x >> 1) & h55; /* Count of each 2 bits in-place. */
|
||
x = (x & h33) + ((x >> 2) & h33); /* Count of each 4 bits in-place. */
|
||
x = (x + (x >> 4)) & h0F; /* Count of each 8 bits in-place. */
|
||
return (x * h01) >> 56; /* Sum of all bytes. */
|
||
#endif
|
||
}
|
||
#else /* Not 64-bit. */
|
||
#if __GNUC__ >= 4 && __POPCNT__
|
||
static inline unsigned int
|
||
count_1bits_32__(uint32_t x)
|
||
{
|
||
return __builtin_popcount(x);
|
||
}
|
||
#else
|
||
#define NEED_COUNT_1BITS_8 1
|
||
extern const uint8_t count_1bits_8[256];
|
||
static inline unsigned int
|
||
count_1bits_32__(uint32_t x)
|
||
{
|
||
/* This portable implementation is the fastest one we know of for 32 bits,
|
||
* and faster than GCC __builtin_popcount(). */
|
||
return (count_1bits_8[x & 0xff] +
|
||
count_1bits_8[(x >> 8) & 0xff] +
|
||
count_1bits_8[(x >> 16) & 0xff] +
|
||
count_1bits_8[x >> 24]);
|
||
}
|
||
#endif
|
||
static inline unsigned int
|
||
count_1bits(uint64_t x)
|
||
{
|
||
return count_1bits_32__(x) + count_1bits_32__(x >> 32);
|
||
}
|
||
#endif
|
||
|
||
/* Returns the rightmost 1-bit in 'x' (e.g. 01011000 => 00001000), or 0 if 'x'
|
||
* is 0. */
|
||
static inline uintmax_t
|
||
rightmost_1bit(uintmax_t x)
|
||
{
|
||
return x & -x;
|
||
}
|
||
|
||
/* Returns 'x' with its rightmost 1-bit changed to a zero (e.g. 01011000 =>
|
||
* 01010000), or 0 if 'x' is 0. */
|
||
static inline uintmax_t
|
||
zero_rightmost_1bit(uintmax_t x)
|
||
{
|
||
return x & (x - 1);
|
||
}
|
||
|
||
/* Returns the index of the rightmost 1-bit in 'x' (e.g. 01011000 => 3), or 32
|
||
* if 'x' is 0.
|
||
*
|
||
* Unlike the other functions for rightmost 1-bits, this function only works
|
||
* with 32-bit integers. */
|
||
static inline int
|
||
rightmost_1bit_idx(uint32_t x)
|
||
{
|
||
return ctz32(x);
|
||
}
|
||
|
||
/* Returns the index of the leftmost 1-bit in 'x' (e.g. 01011000 => 6), or 32
|
||
* if 'x' is 0.
|
||
*
|
||
* This function only works with 32-bit integers. */
|
||
static inline uint32_t
|
||
leftmost_1bit_idx(uint32_t x)
|
||
{
|
||
return x ? log_2_floor(x) : 32;
|
||
}
|
||
|
||
/* Return a ovs_be32 prefix in network byte order with 'plen' highest bits set.
|
||
* Shift with 32 is undefined behavior, but we rather use 64-bit shift than
|
||
* compare. */
|
||
static inline ovs_be32 be32_prefix_mask(int plen)
|
||
{
|
||
return htonl((uint64_t)UINT32_MAX << (32 - plen));
|
||
}
|
||
|
||
bool is_all_zeros(const void *, size_t);
|
||
bool is_all_ones(const void *, size_t);
|
||
void bitwise_copy(const void *src, unsigned int src_len, unsigned int src_ofs,
|
||
void *dst, unsigned int dst_len, unsigned int dst_ofs,
|
||
unsigned int n_bits);
|
||
void bitwise_zero(void *dst_, unsigned int dst_len, unsigned dst_ofs,
|
||
unsigned int n_bits);
|
||
void bitwise_one(void *dst_, unsigned int dst_len, unsigned dst_ofs,
|
||
unsigned int n_bits);
|
||
bool bitwise_is_all_zeros(const void *, unsigned int len, unsigned int ofs,
|
||
unsigned int n_bits);
|
||
unsigned int bitwise_scan(const void *, unsigned int len,
|
||
bool target, unsigned int start, unsigned int end);
|
||
void bitwise_put(uint64_t value,
|
||
void *dst, unsigned int dst_len, unsigned int dst_ofs,
|
||
unsigned int n_bits);
|
||
uint64_t bitwise_get(const void *src, unsigned int src_len,
|
||
unsigned int src_ofs, unsigned int n_bits);
|
||
|
||
void xsleep(unsigned int seconds);
|
||
|
||
#ifdef _WIN32
|
||
|
||
char *ovs_format_message(int error);
|
||
char *ovs_lasterror_to_string(void);
|
||
int ftruncate(int fd, off_t length);
|
||
#endif
|
||
|
||
#ifdef __cplusplus
|
||
}
|
||
#endif
|
||
|
||
#endif /* util.h */
|