2020-04-14 21:36:28 +03:00
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/*
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* CDDL HEADER START
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*
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* The contents of this file are subject to the terms of the
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* Common Development and Distribution License, Version 1.0 only
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* (the "License"). You may not use this file except in compliance
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* with the License.
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*
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* You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
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* or http://www.opensolaris.org/os/licensing.
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* See the License for the specific language governing permissions
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* and limitations under the License.
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*
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* When distributing Covered Code, include this CDDL HEADER in each
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* file and include the License file at usr/src/OPENSOLARIS.LICENSE.
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* If applicable, add the following below this CDDL HEADER, with the
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* fields enclosed by brackets "[]" replaced with your own identifying
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* information: Portions Copyright [yyyy] [name of copyright owner]
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*
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* CDDL HEADER END
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*/
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/*
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* Copyright 2004 Sun Microsystems, Inc. All rights reserved.
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* Use is subject to license terms.
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*/
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#ifndef _SYS_CCOMPILE_H
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#define _SYS_CCOMPILE_H
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/*
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* This file contains definitions designed to enable different compilers
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* to be used harmoniously on Solaris systems.
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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/*
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* Allow for version tests for compiler bugs and features.
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*/
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#if defined(__GNUC__)
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#define __GNUC_VERSION \
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(__GNUC__ * 10000 + __GNUC_MINOR__ * 100 + __GNUC_PATCHLEVEL__)
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#else
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#define __GNUC_VERSION 0
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#endif
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#if defined(__ATTRIBUTE_IMPLEMENTED) || defined(__GNUC__)
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/*
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* analogous to lint's PRINTFLIKEn
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*/
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#define __sun_attr___PRINTFLIKE__(__n) \
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__attribute__((__format__(printf, __n, (__n)+1)))
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#define __sun_attr___VPRINTFLIKE__(__n) \
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__attribute__((__format__(printf, __n, 0)))
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/*
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* Handle the kernel printf routines that can take '%b' too
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*/
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#if __GNUC_VERSION < 30402
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/*
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* XX64 at least this doesn't work correctly yet with 3.4.1 anyway!
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*/
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#define __sun_attr___KPRINTFLIKE__ __sun_attr___PRINTFLIKE__
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#define __sun_attr___KVPRINTFLIKE__ __sun_attr___VPRINTFLIKE__
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#else
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#define __sun_attr___KPRINTFLIKE__(__n) \
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__attribute__((__format__(cmn_err, __n, (__n)+1)))
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#define __sun_attr___KVPRINTFLIKE__(__n) \
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__attribute__((__format__(cmn_err, __n, 0)))
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#endif
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/*
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* This one's pretty obvious -- the function never returns
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*/
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#define __sun_attr___noreturn__ __attribute__((__noreturn__))
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/*
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* This is an appropriate label for functions that do not
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* modify their arguments, e.g. strlen()
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*/
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#define __sun_attr___pure__ __attribute__((__pure__))
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/*
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* This is a stronger form of __pure__. Can be used for functions
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* that do not modify their arguments and don't depend on global
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* memory.
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*/
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#define __sun_attr___const__ __attribute__((__const__))
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/*
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* structure packing like #pragma pack(1)
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*/
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#define __sun_attr___packed__ __attribute__((__packed__))
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#define ___sun_attr_inner(__a) __sun_attr_##__a
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#define __sun_attr__(__a) ___sun_attr_inner __a
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#else /* __ATTRIBUTE_IMPLEMENTED || __GNUC__ */
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#define __sun_attr__(__a)
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#endif /* __ATTRIBUTE_IMPLEMENTED || __GNUC__ */
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/*
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* Shorthand versions for readability
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*/
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#define __PRINTFLIKE(__n) __sun_attr__((__PRINTFLIKE__(__n)))
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#define __VPRINTFLIKE(__n) __sun_attr__((__VPRINTFLIKE__(__n)))
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#define __KPRINTFLIKE(__n) __sun_attr__((__KPRINTFLIKE__(__n)))
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#define __KVPRINTFLIKE(__n) __sun_attr__((__KVPRINTFLIKE__(__n)))
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#ifdef _KERNEL
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#define __NORETURN __sun_attr__((__noreturn__))
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#endif
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#define __CONST __sun_attr__((__const__))
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#define __PURE __sun_attr__((__pure__))
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#if (defined(ZFS_DEBUG) || !defined(NDEBUG))&& !defined(DEBUG)
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#define DEBUG
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#endif
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#define EXPORT_SYMBOL(x)
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#define MODULE_AUTHOR(s)
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#define MODULE_DESCRIPTION(s)
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#define MODULE_LICENSE(s)
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#define module_param(a, b, c)
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#define module_param_call(a, b, c, d, e)
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#define module_param_named(a, b, c, d)
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#define MODULE_PARM_DESC(a, b)
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#define asm __asm
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#ifdef ZFS_DEBUG
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#undef NDEBUG
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#endif
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#ifndef EINTEGRITY
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#define EINTEGRITY 97 /* EINTEGRITY is new in 13 */
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#endif
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/*
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* These are bespoke errnos used in ZFS. We map them to their closest FreeBSD
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* equivalents. This gives us more useful error messages from strerror(3).
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*/
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#define ECKSUM EINTEGRITY
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#define EFRAGS ENOSPC
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/* Similar for ENOACTIVE */
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#define ENOTACTIVE ECANCELED
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#define EREMOTEIO EREMOTE
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#define ECHRNG ENXIO
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#define ETIME ETIMEDOUT
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#define O_LARGEFILE 0
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#define O_RSYNC 0
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#define O_DSYNC 0
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#define KMALLOC_MAX_SIZE MAXPHYS
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#ifdef _KERNEL
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2020-07-01 19:10:08 +03:00
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#if !defined(LOCORE) && !defined(_ASM)
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2020-04-14 21:36:28 +03:00
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typedef unsigned long long u_longlong_t;
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typedef long long longlong_t;
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2020-07-01 19:10:08 +03:00
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2020-04-14 21:36:28 +03:00
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typedef void zfs_kernel_param_t;
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2020-07-01 19:10:08 +03:00
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#endif
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2020-04-14 21:36:28 +03:00
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#define param_set_charp(a, b) (0)
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#define ATTR_UID AT_UID
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#define ATTR_GID AT_GID
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#define ATTR_MODE AT_MODE
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#define ATTR_XVATTR AT_XVATTR
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#define ATTR_CTIME AT_CTIME
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#define ATTR_MTIME AT_MTIME
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#define ATTR_ATIME AT_ATIME
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#define vmem_free zfs_kmem_free
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#define vmem_zalloc(size, flags) zfs_kmem_alloc(size, flags | M_ZERO)
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#define vmem_alloc zfs_kmem_alloc
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#define MUTEX_NOLOCKDEP 0
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#define RW_NOLOCKDEP 0
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2020-07-01 19:10:08 +03:00
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#if !defined(LOCORE) && !defined(_ASM)
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#include <sys/param.h>
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#include <linux/types.h>
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2020-04-14 21:36:28 +03:00
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#if __FreeBSD_version < 1300051
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#define vm_page_valid(m) (m)->valid = VM_PAGE_BITS_ALL
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#define vm_page_do_sunbusy(m)
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#define vm_page_none_valid(m) ((m)->valid == 0)
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#else
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#define vm_page_do_sunbusy(m) vm_page_sunbusy(m)
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#endif
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#if __FreeBSD_version < 1300074
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#define VOP_UNLOCK1(x) VOP_UNLOCK(x, 0)
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#else
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#define VOP_UNLOCK1(x) VOP_UNLOCK(x)
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#endif
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#if __FreeBSD_version < 1300064
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#define VN_IS_DOOMED(vp) ((vp)->v_iflag & VI_DOOMED)
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#endif
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#if __FreeBSD_version < 1300068
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#define VFS_VOP_VECTOR_REGISTER(x)
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#endif
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#if __FreeBSD_version >= 1300076
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#define getnewvnode_reserve_() getnewvnode_reserve()
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#else
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#define getnewvnode_reserve_() getnewvnode_reserve(1)
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#endif
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struct hlist_node {
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struct hlist_node *next, **pprev;
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};
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struct hlist_head {
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struct hlist_node *first;
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};
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typedef struct {
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volatile int counter;
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} atomic_t;
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/* BEGIN CSTYLED */
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#define hlist_for_each(p, head) \
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for (p = (head)->first; p; p = (p)->next)
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#define hlist_entry(ptr, type, field) container_of(ptr, type, field)
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#define container_of(ptr, type, member) \
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({ \
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const __typeof(((type *)0)->member) *__p = (ptr); \
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(type *)((uintptr_t)__p - offsetof(type, member)); \
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})
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/* END CSTYLED */
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static inline void
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hlist_add_head(struct hlist_node *n, struct hlist_head *h)
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{
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n->next = h->first;
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if (h->first != NULL)
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h->first->pprev = &n->next;
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WRITE_ONCE(h->first, n);
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n->pprev = &h->first;
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}
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static inline void
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hlist_del(struct hlist_node *n)
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{
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WRITE_ONCE(*(n->pprev), n->next);
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if (n->next != NULL)
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n->next->pprev = n->pprev;
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}
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/* BEGIN CSTYLED */
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#define READ_ONCE(x) ({ \
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__typeof(x) __var = ({ \
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barrier(); \
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ACCESS_ONCE(x); \
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}); \
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barrier(); \
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__var; \
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})
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#define HLIST_HEAD_INIT { }
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#define HLIST_HEAD(name) struct hlist_head name = HLIST_HEAD_INIT
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#define INIT_HLIST_HEAD(head) (head)->first = NULL
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#define INIT_HLIST_NODE(node) \
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do { \
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(node)->next = NULL; \
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(node)->pprev = NULL; \
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} while (0)
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/* END CSTYLED */
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static inline int
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atomic_read(const atomic_t *v)
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{
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return (READ_ONCE(v->counter));
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}
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static inline int
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atomic_inc(atomic_t *v)
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{
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return (atomic_fetchadd_int(&v->counter, 1) + 1);
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}
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static inline int
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atomic_dec(atomic_t *v)
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{
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return (atomic_fetchadd_int(&v->counter, -1) - 1);
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}
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2020-07-01 19:10:08 +03:00
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#endif
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2020-04-14 21:36:28 +03:00
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#else
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typedef long loff_t;
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typedef long rlim64_t;
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typedef int bool_t;
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typedef int enum_t;
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2020-06-06 22:54:04 +03:00
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#ifndef __cplusplus
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2020-04-14 21:36:28 +03:00
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#define __init
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2020-06-06 22:54:04 +03:00
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#endif
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2020-04-14 21:36:28 +03:00
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#define __exit
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#define FALSE 0
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#define TRUE 1
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/*
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* XXX We really need to consolidate on standard
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* error codes in the common code
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*/
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#define ENOSTR ENOTCONN
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#define ENODATA EINVAL
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#define __XSI_VISIBLE 1000
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#define __BSD_VISIBLE 1
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#define __POSIX_VISIBLE 201808
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#define ARRAY_SIZE(a) (sizeof (a) / sizeof (a[0]))
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#define open64 open
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#define pwrite64 pwrite
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#define ftruncate64 ftruncate
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#define lseek64 lseek
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#define pread64 pread
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#define stat64 stat
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#define lstat64 lstat
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#define statfs64 statfs
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#define readdir64 readdir
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#define dirent64 dirent
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#define P2ALIGN(x, align) ((x) & -(align))
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#define P2CROSS(x, y, align) (((x) ^ (y)) > (align) - 1)
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#define P2ROUNDUP(x, align) ((((x) - 1) | ((align) - 1)) + 1)
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#define P2PHASE(x, align) ((x) & ((align) - 1))
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#define P2NPHASE(x, align) (-(x) & ((align) - 1))
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#define ISP2(x) (((x) & ((x) - 1)) == 0)
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#define IS_P2ALIGNED(v, a) ((((uintptr_t)(v)) & ((uintptr_t)(a) - 1)) == 0)
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#define P2BOUNDARY(off, len, align) \
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(((off) ^ ((off) + (len) - 1)) > (align) - 1)
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/*
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* Typed version of the P2* macros. These macros should be used to ensure
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* that the result is correctly calculated based on the data type of (x),
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* which is passed in as the last argument, regardless of the data
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* type of the alignment. For example, if (x) is of type uint64_t,
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* and we want to round it up to a page boundary using "PAGESIZE" as
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* the alignment, we can do either
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*
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* P2ROUNDUP(x, (uint64_t)PAGESIZE)
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* or
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* P2ROUNDUP_TYPED(x, PAGESIZE, uint64_t)
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*/
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#define P2ALIGN_TYPED(x, align, type) \
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((type)(x) & -(type)(align))
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#define P2PHASE_TYPED(x, align, type) \
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((type)(x) & ((type)(align) - 1))
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#define P2NPHASE_TYPED(x, align, type) \
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(-(type)(x) & ((type)(align) - 1))
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#define P2ROUNDUP_TYPED(x, align, type) \
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((((type)(x) - 1) | ((type)(align) - 1)) + 1)
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#define P2END_TYPED(x, align, type) \
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(-(~(type)(x) & -(type)(align)))
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#define P2PHASEUP_TYPED(x, align, phase, type) \
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((type)(phase) - (((type)(phase) - (type)(x)) & -(type)(align)))
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#define P2CROSS_TYPED(x, y, align, type) \
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(((type)(x) ^ (type)(y)) > (type)(align) - 1)
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#define P2SAMEHIGHBIT_TYPED(x, y, type) \
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(((type)(x) ^ (type)(y)) < ((type)(x) & (type)(y)))
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#define DIV_ROUND_UP(n, d) (((n) + (d) - 1) / (d))
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#define RLIM64_INFINITY RLIM_INFINITY
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#define ERESTART EAGAIN
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#define ABS(a) ((a) < 0 ? -(a) : (a))
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#endif
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#ifdef __cplusplus
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}
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#endif
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#endif /* _SYS_CCOMPILE_H */
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