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864 lines
25 KiB
C
Vendored
864 lines
25 KiB
C
Vendored
/* ===-------- ia32intrin.h ---------------------------------------------------===
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*
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* Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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* See https://llvm.org/LICENSE.txt for license information.
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* SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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*
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*===-----------------------------------------------------------------------===
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*/
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#ifndef __X86INTRIN_H
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#error "Never use <ia32intrin.h> directly; include <x86intrin.h> instead."
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#endif
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#ifndef __IA32INTRIN_H
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#define __IA32INTRIN_H
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/* Define the default attributes for the functions in this file. */
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#define __DEFAULT_FN_ATTRS __attribute__((__always_inline__, __nodebug__))
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#define __DEFAULT_FN_ATTRS_CRC32 __attribute__((__always_inline__, __nodebug__, __target__("crc32")))
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#if defined(__cplusplus) && (__cplusplus >= 201103L)
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#define __DEFAULT_FN_ATTRS_CAST __attribute__((__always_inline__)) constexpr
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#define __DEFAULT_FN_ATTRS_CONSTEXPR __DEFAULT_FN_ATTRS constexpr
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#else
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#define __DEFAULT_FN_ATTRS_CAST __attribute__((__always_inline__))
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#define __DEFAULT_FN_ATTRS_CONSTEXPR __DEFAULT_FN_ATTRS
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#endif
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/// Finds the first set bit starting from the least significant bit. The result
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/// is undefined if the input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSF instruction or the
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/// \c TZCNT instruction.
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///
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/// \param __A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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/// \see _bit_scan_forward
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__bsfd(int __A) {
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return __builtin_ctz((unsigned int)__A);
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}
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/// Finds the first set bit starting from the most significant bit. The result
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/// is undefined if the input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSR instruction or the
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/// \c LZCNT instruction and an \c XOR.
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///
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/// \param __A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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/// \see _bit_scan_reverse
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__bsrd(int __A) {
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return 31 - __builtin_clz((unsigned int)__A);
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}
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/// Swaps the bytes in the input, converting little endian to big endian or
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/// vice versa.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSWAP instruction.
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///
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/// \param __A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the swapped bytes.
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__bswapd(int __A) {
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return (int)__builtin_bswap32((unsigned int)__A);
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}
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/// Swaps the bytes in the input, converting little endian to big endian or
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/// vice versa.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSWAP instruction.
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///
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/// \param __A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the swapped bytes.
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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_bswap(int __A) {
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return (int)__builtin_bswap32((unsigned int)__A);
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}
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/// Finds the first set bit starting from the least significant bit. The result
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/// is undefined if the input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// int _bit_scan_forward(int A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c BSF instruction or the
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/// \c TZCNT instruction.
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///
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/// \param A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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/// \see __bsfd
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#define _bit_scan_forward(A) __bsfd((A))
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/// Finds the first set bit starting from the most significant bit. The result
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/// is undefined if the input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// int _bit_scan_reverse(int A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c BSR instruction or the
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/// \c LZCNT instruction and an \c XOR.
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///
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/// \param A
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/// A 32-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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/// \see __bsrd
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#define _bit_scan_reverse(A) __bsrd((A))
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#ifdef __x86_64__
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/// Finds the first set bit starting from the least significant bit. The result
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/// is undefined if the input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSF instruction or the
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/// \c TZCNT instruction.
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///
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/// \param __A
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/// A 64-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__bsfq(long long __A) {
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return (long long)__builtin_ctzll((unsigned long long)__A);
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}
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/// Finds the first set bit starting from the most significant bit. The result
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/// is undefined if input is 0.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSR instruction or the
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/// \c LZCNT instruction and an \c XOR.
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///
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/// \param __A
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/// A 64-bit integer operand.
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/// \returns A 32-bit integer containing the bit number.
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__bsrq(long long __A) {
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return 63 - __builtin_clzll((unsigned long long)__A);
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}
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/// Swaps the bytes in the input, converting little endian to big endian or
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/// vice versa.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c BSWAP instruction.
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///
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/// \param __A
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/// A 64-bit integer operand.
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/// \returns A 64-bit integer containing the swapped bytes.
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/// \see _bswap64
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static __inline__ long long __DEFAULT_FN_ATTRS_CONSTEXPR
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__bswapq(long long __A) {
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return (long long)__builtin_bswap64((unsigned long long)__A);
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}
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/// Swaps the bytes in the input, converting little endian to big endian or
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/// vice versa.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// long long _bswap64(long long A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c BSWAP instruction.
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///
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/// \param A
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/// A 64-bit integer operand.
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/// \returns A 64-bit integer containing the swapped bytes.
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/// \see __bswapq
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#define _bswap64(A) __bswapq((A))
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#endif /* __x86_64__ */
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/// Counts the number of bits in the source operand having a value of 1.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c POPCNT instruction or a
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/// sequence of arithmetic and logic operations to calculate it.
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///
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/// \param __A
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/// An unsigned 32-bit integer operand.
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/// \returns A 32-bit integer containing the number of bits with value 1 in the
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/// source operand.
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/// \see _popcnt32
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static __inline__ int __DEFAULT_FN_ATTRS_CONSTEXPR
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__popcntd(unsigned int __A)
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{
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return __builtin_popcount(__A);
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}
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/// Counts the number of bits in the source operand having a value of 1.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// int _popcnt32(int A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c POPCNT instruction or a
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/// sequence of arithmetic and logic operations to calculate it.
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///
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/// \param A
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/// An unsigned 32-bit integer operand.
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/// \returns A 32-bit integer containing the number of bits with value 1 in the
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/// source operand.
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/// \see __popcntd
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#define _popcnt32(A) __popcntd((A))
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#ifdef __x86_64__
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/// Counts the number of bits in the source operand having a value of 1.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c POPCNT instruction or a
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/// sequence of arithmetic and logic operations to calculate it.
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///
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/// \param __A
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/// An unsigned 64-bit integer operand.
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/// \returns A 64-bit integer containing the number of bits with value 1 in the
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/// source operand.
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/// \see _popcnt64
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static __inline__ long long __DEFAULT_FN_ATTRS_CONSTEXPR
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__popcntq(unsigned long long __A)
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{
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return __builtin_popcountll(__A);
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}
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/// Counts the number of bits in the source operand having a value of 1.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// long long _popcnt64(unsigned long long A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c POPCNT instruction or a
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/// sequence of arithmetic and logic operations to calculate it.
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///
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/// \param A
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/// An unsigned 64-bit integer operand.
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/// \returns A 64-bit integer containing the number of bits with value 1 in the
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/// source operand.
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/// \see __popcntq
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#define _popcnt64(A) __popcntq((A))
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#endif /* __x86_64__ */
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#ifdef __x86_64__
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/// Returns the program status-and-control \c RFLAGS register with the \c VM
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/// and \c RF flags cleared.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c PUSHFQ + \c POP instruction sequence.
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///
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/// \returns The 64-bit value of the RFLAGS register.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS
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__readeflags(void)
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{
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return __builtin_ia32_readeflags_u64();
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}
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/// Writes the specified value to the program status-and-control \c RFLAGS
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/// register. Reserved bits are not affected.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c PUSH + \c POPFQ instruction sequence.
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///
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/// \param __f
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/// The 64-bit value to write to \c RFLAGS.
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static __inline__ void __DEFAULT_FN_ATTRS
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__writeeflags(unsigned long long __f)
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{
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__builtin_ia32_writeeflags_u64(__f);
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}
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#else /* !__x86_64__ */
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/// Returns the program status-and-control \c EFLAGS register with the \c VM
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/// and \c RF flags cleared.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c PUSHFD + \c POP instruction sequence.
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///
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/// \returns The 32-bit value of the EFLAGS register.
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static __inline__ unsigned int __DEFAULT_FN_ATTRS
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__readeflags(void)
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{
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return __builtin_ia32_readeflags_u32();
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}
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/// Writes the specified value to the program status-and-control \c EFLAGS
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/// register. Reserved bits are not affected.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c PUSH + \c POPFD instruction sequence.
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///
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/// \param __f
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/// The 32-bit value to write to \c EFLAGS.
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static __inline__ void __DEFAULT_FN_ATTRS
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__writeeflags(unsigned int __f)
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{
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__builtin_ia32_writeeflags_u32(__f);
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}
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#endif /* !__x86_64__ */
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/// Casts a 32-bit float value to a 32-bit unsigned integer value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c VMOVD / \c MOVD instruction in x86_64,
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/// and corresponds to the \c VMOVL / \c MOVL instruction in ia32.
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///
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/// \param __A
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/// A 32-bit float value.
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/// \returns A 32-bit unsigned integer containing the converted value.
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CAST
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_castf32_u32(float __A) {
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return __builtin_bit_cast(unsigned int, __A);
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}
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/// Casts a 64-bit float value to a 64-bit unsigned integer value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c VMOVQ / \c MOVQ instruction in x86_64,
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/// and corresponds to the \c VMOVL / \c MOVL instruction in ia32.
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///
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/// \param __A
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/// A 64-bit float value.
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/// \returns A 64-bit unsigned integer containing the converted value.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS_CAST
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_castf64_u64(double __A) {
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return __builtin_bit_cast(unsigned long long, __A);
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}
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/// Casts a 32-bit unsigned integer value to a 32-bit float value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c VMOVQ / \c MOVQ instruction in x86_64,
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/// and corresponds to the \c FLDS instruction in ia32.
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///
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/// \param __A
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/// A 32-bit unsigned integer value.
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/// \returns A 32-bit float value containing the converted value.
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static __inline__ float __DEFAULT_FN_ATTRS_CAST
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_castu32_f32(unsigned int __A) {
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return __builtin_bit_cast(float, __A);
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}
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/// Casts a 64-bit unsigned integer value to a 64-bit float value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c VMOVQ / \c MOVQ instruction in x86_64,
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/// and corresponds to the \c FLDL instruction in ia32.
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///
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/// \param __A
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/// A 64-bit unsigned integer value.
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/// \returns A 64-bit float value containing the converted value.
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static __inline__ double __DEFAULT_FN_ATTRS_CAST
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_castu64_f64(unsigned long long __A) {
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return __builtin_bit_cast(double, __A);
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}
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/// Adds the unsigned integer operand to the CRC-32C checksum of the
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/// unsigned char operand.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c CRC32B instruction.
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///
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/// \param __C
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/// An unsigned integer operand to add to the CRC-32C checksum of operand
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/// \a __D.
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/// \param __D
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/// An unsigned 8-bit integer operand used to compute the CRC-32C checksum.
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/// \returns The result of adding operand \a __C to the CRC-32C checksum of
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/// operand \a __D.
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CRC32
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__crc32b(unsigned int __C, unsigned char __D)
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{
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return __builtin_ia32_crc32qi(__C, __D);
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}
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/// Adds the unsigned integer operand to the CRC-32C checksum of the
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/// unsigned short operand.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c CRC32W instruction.
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///
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/// \param __C
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/// An unsigned integer operand to add to the CRC-32C checksum of operand
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/// \a __D.
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/// \param __D
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/// An unsigned 16-bit integer operand used to compute the CRC-32C checksum.
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/// \returns The result of adding operand \a __C to the CRC-32C checksum of
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/// operand \a __D.
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CRC32
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__crc32w(unsigned int __C, unsigned short __D)
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{
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return __builtin_ia32_crc32hi(__C, __D);
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}
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/// Adds the unsigned integer operand to the CRC-32C checksum of the
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/// second unsigned integer operand.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c CRC32D instruction.
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///
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/// \param __C
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/// An unsigned integer operand to add to the CRC-32C checksum of operand
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/// \a __D.
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/// \param __D
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/// An unsigned 32-bit integer operand used to compute the CRC-32C checksum.
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/// \returns The result of adding operand \a __C to the CRC-32C checksum of
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/// operand \a __D.
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CRC32
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__crc32d(unsigned int __C, unsigned int __D)
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{
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return __builtin_ia32_crc32si(__C, __D);
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}
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#ifdef __x86_64__
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/// Adds the unsigned integer operand to the CRC-32C checksum of the
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/// unsigned 64-bit integer operand.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c CRC32Q instruction.
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///
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/// \param __C
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/// An unsigned integer operand to add to the CRC-32C checksum of operand
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/// \a __D.
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/// \param __D
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/// An unsigned 64-bit integer operand used to compute the CRC-32C checksum.
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/// \returns The result of adding operand \a __C to the CRC-32C checksum of
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/// operand \a __D.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS_CRC32
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__crc32q(unsigned long long __C, unsigned long long __D)
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{
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return __builtin_ia32_crc32di(__C, __D);
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}
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#endif /* __x86_64__ */
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/// Reads the specified performance-monitoring counter. Refer to your
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/// processor's documentation to determine which performance counters are
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/// supported.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c RDPMC instruction.
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///
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/// \param __A
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/// The performance counter to read.
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/// \returns The 64-bit value read from the performance counter.
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/// \see _rdpmc
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS
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__rdpmc(int __A) {
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return __builtin_ia32_rdpmc(__A);
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}
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/// Reads the processor's time-stamp counter and the \c IA32_TSC_AUX MSR
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/// \c (0xc0000103).
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c RDTSCP instruction.
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///
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/// \param __A
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/// The address of where to store the 32-bit \c IA32_TSC_AUX value.
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/// \returns The 64-bit value of the time-stamp counter.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS
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__rdtscp(unsigned int *__A) {
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return __builtin_ia32_rdtscp(__A);
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}
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/// Reads the processor's time-stamp counter.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// unsigned long long _rdtsc();
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/// \endcode
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///
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/// This intrinsic corresponds to the \c RDTSC instruction.
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///
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/// \returns The 64-bit value of the time-stamp counter.
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#define _rdtsc() __rdtsc()
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/// Reads the specified performance monitoring counter. Refer to your
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/// processor's documentation to determine which performance counters are
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/// supported.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// unsigned long long _rdpmc(int A);
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/// \endcode
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///
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/// This intrinsic corresponds to the \c RDPMC instruction.
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///
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/// \param A
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/// The performance counter to read.
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/// \returns The 64-bit value read from the performance counter.
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/// \see __rdpmc
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#define _rdpmc(A) __rdpmc(A)
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static __inline__ void __DEFAULT_FN_ATTRS
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_wbinvd(void) {
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__builtin_ia32_wbinvd();
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}
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/// Rotates an 8-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROL instruction.
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///
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/// \param __X
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/// The unsigned 8-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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static __inline__ unsigned char __DEFAULT_FN_ATTRS_CONSTEXPR
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__rolb(unsigned char __X, int __C) {
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return __builtin_rotateleft8(__X, __C);
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}
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/// Rotates an 8-bit value to the right by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROR instruction.
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///
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/// \param __X
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/// The unsigned 8-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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static __inline__ unsigned char __DEFAULT_FN_ATTRS_CONSTEXPR
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__rorb(unsigned char __X, int __C) {
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return __builtin_rotateright8(__X, __C);
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}
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/// Rotates a 16-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROL instruction.
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///
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/// \param __X
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/// The unsigned 16-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see _rotwl
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static __inline__ unsigned short __DEFAULT_FN_ATTRS_CONSTEXPR
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__rolw(unsigned short __X, int __C) {
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return __builtin_rotateleft16(__X, __C);
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}
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/// Rotates a 16-bit value to the right by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROR instruction.
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///
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/// \param __X
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/// The unsigned 16-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see _rotwr
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static __inline__ unsigned short __DEFAULT_FN_ATTRS_CONSTEXPR
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__rorw(unsigned short __X, int __C) {
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return __builtin_rotateright16(__X, __C);
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}
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/// Rotates a 32-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROL instruction.
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///
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/// \param __X
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/// The unsigned 32-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see _rotl
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CONSTEXPR
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__rold(unsigned int __X, int __C) {
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return __builtin_rotateleft32(__X, (unsigned int)__C);
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}
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/// Rotates a 32-bit value to the right by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROR instruction.
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///
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/// \param __X
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/// The unsigned 32-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see _rotr
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static __inline__ unsigned int __DEFAULT_FN_ATTRS_CONSTEXPR
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__rord(unsigned int __X, int __C) {
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return __builtin_rotateright32(__X, (unsigned int)__C);
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}
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#ifdef __x86_64__
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/// Rotates a 64-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROL instruction.
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///
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/// \param __X
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/// The unsigned 64-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS_CONSTEXPR
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__rolq(unsigned long long __X, int __C) {
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return __builtin_rotateleft64(__X, (unsigned long long)__C);
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}
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/// Rotates a 64-bit value to the right by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// This intrinsic corresponds to the \c ROR instruction.
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///
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/// \param __X
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/// The unsigned 64-bit value to be rotated.
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/// \param __C
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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static __inline__ unsigned long long __DEFAULT_FN_ATTRS_CONSTEXPR
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__rorq(unsigned long long __X, int __C) {
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return __builtin_rotateright64(__X, (unsigned long long)__C);
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}
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#endif /* __x86_64__ */
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#ifndef _MSC_VER
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/* These are already provided as builtins for MSVC. */
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/* Select the correct function based on the size of long. */
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#ifdef __LP64__
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/// Rotates a 64-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// unsigned long long _lrotl(unsigned long long a, int b);
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/// \endcode
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///
|
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/// This intrinsic corresponds to the \c ROL instruction.
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///
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/// \param a
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/// The unsigned 64-bit value to be rotated.
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/// \param b
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see __rolq
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#define _lrotl(a,b) __rolq((a), (b))
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|
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/// Rotates a 64-bit value to the right by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// unsigned long long _lrotr(unsigned long long a, int b);
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/// \endcode
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///
|
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/// This intrinsic corresponds to the \c ROR instruction.
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///
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/// \param a
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/// The unsigned 64-bit value to be rotated.
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/// \param b
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see __rorq
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#define _lrotr(a,b) __rorq((a), (b))
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#else // __LP64__
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/// Rotates a 32-bit value to the left by the specified number of bits.
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/// This operation is undefined if the number of bits exceeds the size of
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/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
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/// \code
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/// unsigned int _lrotl(unsigned int a, int b);
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/// \endcode
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///
|
|
/// This intrinsic corresponds to the \c ROL instruction.
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|
///
|
|
/// \param a
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/// The unsigned 32-bit value to be rotated.
|
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/// \param b
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/// The number of bits to rotate the value.
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/// \returns The rotated value.
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/// \see __rold
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#define _lrotl(a,b) __rold((a), (b))
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/// Rotates a 32-bit value to the right by the specified number of bits.
|
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/// This operation is undefined if the number of bits exceeds the size of
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|
/// the value.
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///
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/// \headerfile <x86intrin.h>
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///
|
|
/// \code
|
|
/// unsigned int _lrotr(unsigned int a, int b);
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|
/// \endcode
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|
///
|
|
/// This intrinsic corresponds to the \c ROR instruction.
|
|
///
|
|
/// \param a
|
|
/// The unsigned 32-bit value to be rotated.
|
|
/// \param b
|
|
/// The number of bits to rotate the value.
|
|
/// \returns The rotated value.
|
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/// \see __rord
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#define _lrotr(a,b) __rord((a), (b))
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#endif // __LP64__
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|
|
/// Rotates a 32-bit value to the left by the specified number of bits.
|
|
/// This operation is undefined if the number of bits exceeds the size of
|
|
/// the value.
|
|
///
|
|
/// \headerfile <x86intrin.h>
|
|
///
|
|
/// \code
|
|
/// unsigned int _rotl(unsigned int a, int b);
|
|
/// \endcode
|
|
///
|
|
/// This intrinsic corresponds to the \c ROL instruction.
|
|
///
|
|
/// \param a
|
|
/// The unsigned 32-bit value to be rotated.
|
|
/// \param b
|
|
/// The number of bits to rotate the value.
|
|
/// \returns The rotated value.
|
|
/// \see __rold
|
|
#define _rotl(a,b) __rold((a), (b))
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|
|
/// Rotates a 32-bit value to the right by the specified number of bits.
|
|
/// This operation is undefined if the number of bits exceeds the size of
|
|
/// the value.
|
|
///
|
|
/// \headerfile <x86intrin.h>
|
|
///
|
|
/// \code
|
|
/// unsigned int _rotr(unsigned int a, int b);
|
|
/// \endcode
|
|
///
|
|
/// This intrinsic corresponds to the \c ROR instruction.
|
|
///
|
|
/// \param a
|
|
/// The unsigned 32-bit value to be rotated.
|
|
/// \param b
|
|
/// The number of bits to rotate the value.
|
|
/// \returns The rotated value.
|
|
/// \see __rord
|
|
#define _rotr(a,b) __rord((a), (b))
|
|
#endif // _MSC_VER
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|
|
/* These are not builtins so need to be provided in all modes. */
|
|
/// Rotates a 16-bit value to the left by the specified number of bits.
|
|
/// This operation is undefined if the number of bits exceeds the size of
|
|
/// the value.
|
|
///
|
|
/// \headerfile <x86intrin.h>
|
|
///
|
|
/// \code
|
|
/// unsigned short _rotwl(unsigned short a, int b);
|
|
/// \endcode
|
|
///
|
|
/// This intrinsic corresponds to the \c ROL instruction.
|
|
///
|
|
/// \param a
|
|
/// The unsigned 16-bit value to be rotated.
|
|
/// \param b
|
|
/// The number of bits to rotate the value.
|
|
/// \returns The rotated value.
|
|
/// \see __rolw
|
|
#define _rotwl(a,b) __rolw((a), (b))
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|
|
/// Rotates a 16-bit value to the right by the specified number of bits.
|
|
/// This operation is undefined if the number of bits exceeds the size of
|
|
/// the value.
|
|
///
|
|
/// \headerfile <x86intrin.h>
|
|
///
|
|
/// \code
|
|
/// unsigned short _rotwr(unsigned short a, int b);
|
|
/// \endcode
|
|
///
|
|
/// This intrinsic corresponds to the \c ROR instruction.
|
|
///
|
|
/// \param a
|
|
/// The unsigned 16-bit value to be rotated.
|
|
/// \param b
|
|
/// The number of bits to rotate the value.
|
|
/// \returns The rotated value.
|
|
/// \see __rorw
|
|
#define _rotwr(a,b) __rorw((a), (b))
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|
|
#undef __DEFAULT_FN_ATTRS
|
|
#undef __DEFAULT_FN_ATTRS_CAST
|
|
#undef __DEFAULT_FN_ATTRS_CRC32
|
|
#undef __DEFAULT_FN_ATTRS_CONSTEXPR
|
|
|
|
#endif /* __IA32INTRIN_H */
|