xref: /freebsd-13.1/sys/sys/systm.h (revision 6b6d7039)
1 /*-
2  * SPDX-License-Identifier: BSD-3-Clause
3  *
4  * Copyright (c) 1982, 1988, 1991, 1993
5  *	The Regents of the University of California.  All rights reserved.
6  * (c) UNIX System Laboratories, Inc.
7  * All or some portions of this file are derived from material licensed
8  * to the University of California by American Telephone and Telegraph
9  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
10  * the permission of UNIX System Laboratories, Inc.
11  *
12  * Redistribution and use in source and binary forms, with or without
13  * modification, are permitted provided that the following conditions
14  * are met:
15  * 1. Redistributions of source code must retain the above copyright
16  *    notice, this list of conditions and the following disclaimer.
17  * 2. Redistributions in binary form must reproduce the above copyright
18  *    notice, this list of conditions and the following disclaimer in the
19  *    documentation and/or other materials provided with the distribution.
20  * 3. Neither the name of the University nor the names of its contributors
21  *    may be used to endorse or promote products derived from this software
22  *    without specific prior written permission.
23  *
24  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34  * SUCH DAMAGE.
35  *
36  *	@(#)systm.h	8.7 (Berkeley) 3/29/95
37  * $FreeBSD$
38  */
39 
40 #ifndef _SYS_SYSTM_H_
41 #define	_SYS_SYSTM_H_
42 
43 #include <sys/cdefs.h>
44 #include <machine/atomic.h>
45 #include <machine/cpufunc.h>
46 #include <sys/callout.h>
47 #include <sys/kassert.h>
48 #include <sys/queue.h>
49 #include <sys/stdint.h>		/* for people using printf mainly */
50 
51 __NULLABILITY_PRAGMA_PUSH
52 
53 #ifdef _KERNEL
54 extern int cold;		/* nonzero if we are doing a cold boot */
55 extern int suspend_blocked;	/* block suspend due to pending shutdown */
56 extern int rebooting;		/* kern_reboot() has been called. */
57 extern char version[];		/* system version */
58 extern char compiler_version[];	/* compiler version */
59 extern char copyright[];	/* system copyright */
60 extern int kstack_pages;	/* number of kernel stack pages */
61 
62 extern u_long pagesizes[];	/* supported page sizes */
63 extern long physmem;		/* physical memory */
64 extern long realmem;		/* 'real' memory */
65 
66 extern char *rootdevnames[2];	/* names of possible root devices */
67 
68 extern int boothowto;		/* reboot flags, from console subsystem */
69 extern int bootverbose;		/* nonzero to print verbose messages */
70 
71 extern int maxusers;		/* system tune hint */
72 extern int ngroups_max;		/* max # of supplemental groups */
73 extern int vm_guest;		/* Running as virtual machine guest? */
74 
75 extern u_long maxphys;		/* max raw I/O transfer size */
76 
77 /*
78  * Detected virtual machine guest types. The intention is to expand
79  * and/or add to the VM_GUEST_VM type if specific VM functionality is
80  * ever implemented (e.g. vendor-specific paravirtualization features).
81  * Keep in sync with vm_guest_sysctl_names[].
82  */
83 enum VM_GUEST { VM_GUEST_NO = 0, VM_GUEST_VM, VM_GUEST_XEN, VM_GUEST_HV,
84 		VM_GUEST_VMWARE, VM_GUEST_KVM, VM_GUEST_BHYVE, VM_GUEST_VBOX,
85 		VM_GUEST_PARALLELS, VM_LAST };
86 
87 #endif /* KERNEL */
88 
89 /*
90  * Align variables.
91  */
92 #define	__read_mostly		__section(".data.read_mostly")
93 #define	__read_frequently	__section(".data.read_frequently")
94 #define	__exclusive_cache_line	__aligned(CACHE_LINE_SIZE) \
95 				    __section(".data.exclusive_cache_line")
96 #if defined(_STANDALONE)
97 struct ucred;
98 #endif
99 
100 #ifdef _KERNEL
101 #include <sys/param.h>		/* MAXCPU */
102 #include <sys/pcpu.h>		/* curthread */
103 #include <sys/kpilite.h>
104 
105 extern int osreldate;
106 
107 extern const void *zero_region;	/* address space maps to a zeroed page	*/
108 
109 extern int unmapped_buf_allowed;
110 
111 #ifdef __LP64__
112 #define	IOSIZE_MAX		iosize_max()
113 #define	DEVFS_IOSIZE_MAX	devfs_iosize_max()
114 #else
115 #define	IOSIZE_MAX		SSIZE_MAX
116 #define	DEVFS_IOSIZE_MAX	SSIZE_MAX
117 #endif
118 
119 /*
120  * General function declarations.
121  */
122 
123 struct inpcb;
124 struct lock_object;
125 struct malloc_type;
126 struct mtx;
127 struct proc;
128 struct socket;
129 struct thread;
130 struct tty;
131 struct ucred;
132 struct uio;
133 struct _jmp_buf;
134 struct trapframe;
135 struct eventtimer;
136 
137 int	setjmp(struct _jmp_buf *) __returns_twice;
138 void	longjmp(struct _jmp_buf *, int) __dead2;
139 int	dumpstatus(vm_offset_t addr, off_t count);
140 int	nullop(void);
141 int	eopnotsupp(void);
142 int	ureadc(int, struct uio *);
143 void	hashdestroy(void *, struct malloc_type *, u_long);
144 void	*hashinit(int count, struct malloc_type *type, u_long *hashmask);
145 void	*hashinit_flags(int count, struct malloc_type *type,
146     u_long *hashmask, int flags);
147 #define	HASH_NOWAIT	0x00000001
148 #define	HASH_WAITOK	0x00000002
149 
150 void	*phashinit(int count, struct malloc_type *type, u_long *nentries);
151 void	*phashinit_flags(int count, struct malloc_type *type, u_long *nentries,
152     int flags);
153 void	g_waitidle(void);
154 
155 void	cpu_flush_dcache(void *, size_t);
156 void	cpu_rootconf(void);
157 void	critical_enter_KBI(void);
158 void	critical_exit_KBI(void);
159 void	critical_exit_preempt(void);
160 void	init_param1(void);
161 void	init_param2(long physpages);
162 void	init_static_kenv(char *, size_t);
163 void	tablefull(const char *);
164 
165 /*
166  * Allocate per-thread "current" state in the linuxkpi
167  */
168 extern int (*lkpi_alloc_current)(struct thread *, int);
169 int linux_alloc_current_noop(struct thread *, int);
170 
171 #if defined(KLD_MODULE) || defined(KTR_CRITICAL) || !defined(_KERNEL) || defined(GENOFFSET)
172 #define critical_enter() critical_enter_KBI()
173 #define critical_exit() critical_exit_KBI()
174 #else
175 static __inline void
critical_enter(void)176 critical_enter(void)
177 {
178 	struct thread_lite *td;
179 
180 	td = (struct thread_lite *)curthread;
181 	td->td_critnest++;
182 	atomic_interrupt_fence();
183 }
184 
185 static __inline void
critical_exit(void)186 critical_exit(void)
187 {
188 	struct thread_lite *td;
189 
190 	td = (struct thread_lite *)curthread;
191 	KASSERT(td->td_critnest != 0,
192 	    ("critical_exit: td_critnest == 0"));
193 	atomic_interrupt_fence();
194 	td->td_critnest--;
195 	atomic_interrupt_fence();
196 	if (__predict_false(td->td_owepreempt))
197 		critical_exit_preempt();
198 
199 }
200 #endif
201 
202 #ifdef  EARLY_PRINTF
203 typedef void early_putc_t(int ch);
204 extern early_putc_t *early_putc;
205 #endif
206 int	kvprintf(char const *, void (*)(int, void*), void *, int,
207 	    __va_list) __printflike(1, 0);
208 void	log(int, const char *, ...) __printflike(2, 3);
209 void	log_console(struct uio *);
210 void	vlog(int, const char *, __va_list) __printflike(2, 0);
211 int	asprintf(char **ret, struct malloc_type *mtp, const char *format,
212 	    ...) __printflike(3, 4);
213 int	printf(const char *, ...) __printflike(1, 2);
214 int	snprintf(char *, size_t, const char *, ...) __printflike(3, 4);
215 int	sprintf(char *buf, const char *, ...) __printflike(2, 3);
216 int	uprintf(const char *, ...) __printflike(1, 2);
217 int	vprintf(const char *, __va_list) __printflike(1, 0);
218 int	vasprintf(char **ret, struct malloc_type *mtp, const char *format,
219 	    __va_list ap) __printflike(3, 0);
220 int	vsnprintf(char *, size_t, const char *, __va_list) __printflike(3, 0);
221 int	vsnrprintf(char *, size_t, int, const char *, __va_list) __printflike(4, 0);
222 int	vsprintf(char *buf, const char *, __va_list) __printflike(2, 0);
223 int	sscanf(const char *, char const * _Nonnull, ...) __scanflike(2, 3);
224 int	vsscanf(const char * _Nonnull, char const * _Nonnull, __va_list)  __scanflike(2, 0);
225 long	strtol(const char *, char **, int);
226 u_long	strtoul(const char *, char **, int);
227 quad_t	strtoq(const char *, char **, int);
228 u_quad_t strtouq(const char *, char **, int);
229 void	tprintf(struct proc *p, int pri, const char *, ...) __printflike(3, 4);
230 void	vtprintf(struct proc *, int, const char *, __va_list) __printflike(3, 0);
231 void	hexdump(const void *ptr, int length, const char *hdr, int flags);
232 #define	HD_COLUMN_MASK	0xff
233 #define	HD_DELIM_MASK	0xff00
234 #define	HD_OMIT_COUNT	(1 << 16)
235 #define	HD_OMIT_HEX	(1 << 17)
236 #define	HD_OMIT_CHARS	(1 << 18)
237 
238 #define ovbcopy(f, t, l) bcopy((f), (t), (l))
239 void	bcopy(const void * _Nonnull from, void * _Nonnull to, size_t len);
240 void	bzero(void * _Nonnull buf, size_t len);
241 void	explicit_bzero(void * _Nonnull, size_t);
242 int	bcmp(const void *b1, const void *b2, size_t len);
243 
244 void	*memset(void * _Nonnull buf, int c, size_t len);
245 void	*memcpy(void * _Nonnull to, const void * _Nonnull from, size_t len);
246 void	*memmove(void * _Nonnull dest, const void * _Nonnull src, size_t n);
247 int	memcmp(const void *b1, const void *b2, size_t len);
248 
249 #if defined(KASAN)
250 #define	SAN_PREFIX	kasan_
251 #elif defined(KCSAN)
252 #define	SAN_PREFIX	kcsan_
253 #endif
254 
255 #ifdef SAN_PREFIX
256 #define	SAN_INTERCEPTOR(func)	__CONCAT(SAN_PREFIX, func)
257 
258 void	*SAN_INTERCEPTOR(memset)(void *, int, size_t);
259 void	*SAN_INTERCEPTOR(memcpy)(void *, const void *, size_t);
260 void	*SAN_INTERCEPTOR(memmove)(void *, const void *, size_t);
261 int	SAN_INTERCEPTOR(memcmp)(const void *, const void *, size_t);
262 #ifndef SAN_RUNTIME
263 #define bcopy(from, to, len)	SAN_INTERCEPTOR(memmove)((to), (from), (len))
264 #define bzero(buf, len)		SAN_INTERCEPTOR(memset)((buf), 0, (len))
265 #define bcmp(b1, b2, len)	SAN_INTERCEPTOR(memcmp)((b1), (b2), (len))
266 #define memset(buf, c, len)	SAN_INTERCEPTOR(memset)((buf), (c), (len))
267 #define memcpy(to, from, len)	SAN_INTERCEPTOR(memcpy)((to), (from), (len))
268 #define memmove(dest, src, n)	SAN_INTERCEPTOR(memmove)((dest), (src), (n))
269 #define memcmp(b1, b2, len)	SAN_INTERCEPTOR(memcmp)((b1), (b2), (len))
270 #endif /* !SAN_RUNTIME */
271 #else
272 #define bcopy(from, to, len) __builtin_memmove((to), (from), (len))
273 #define bzero(buf, len) __builtin_memset((buf), 0, (len))
274 #define bcmp(b1, b2, len) __builtin_memcmp((b1), (b2), (len))
275 #define memset(buf, c, len) __builtin_memset((buf), (c), (len))
276 #define memcpy(to, from, len) __builtin_memcpy((to), (from), (len))
277 #define memmove(dest, src, n) __builtin_memmove((dest), (src), (n))
278 #define memcmp(b1, b2, len) __builtin_memcmp((b1), (b2), (len))
279 #endif /* !SAN_PREFIX */
280 
281 void	*memset_early(void * _Nonnull buf, int c, size_t len);
282 #define bzero_early(buf, len) memset_early((buf), 0, (len))
283 void	*memcpy_early(void * _Nonnull to, const void * _Nonnull from, size_t len);
284 void	*memmove_early(void * _Nonnull dest, const void * _Nonnull src, size_t n);
285 #define bcopy_early(from, to, len) memmove_early((to), (from), (len))
286 
287 #define	copystr(src, dst, len, outlen)	({			\
288 	size_t __r, __len, *__outlen;				\
289 								\
290 	__len = (len);						\
291 	__outlen = (outlen);					\
292 	__r = strlcpy((dst), (src), __len);			\
293 	if (__outlen != NULL)					\
294 		*__outlen = ((__r >= __len) ? __len : __r + 1);	\
295 	((__r >= __len) ? ENAMETOOLONG : 0);			\
296 })
297 
298 int	copyinstr(const void * __restrict udaddr,
299 	    void * _Nonnull __restrict kaddr, size_t len,
300 	    size_t * __restrict lencopied);
301 int	copyin(const void * __restrict udaddr,
302 	    void * _Nonnull __restrict kaddr, size_t len);
303 int	copyin_nofault(const void * __restrict udaddr,
304 	    void * _Nonnull __restrict kaddr, size_t len);
305 int	copyout(const void * _Nonnull __restrict kaddr,
306 	    void * __restrict udaddr, size_t len);
307 int	copyout_nofault(const void * _Nonnull __restrict kaddr,
308 	    void * __restrict udaddr, size_t len);
309 
310 #ifdef SAN_PREFIX
311 int	SAN_INTERCEPTOR(copyin)(const void *, void *, size_t);
312 int	SAN_INTERCEPTOR(copyinstr)(const void *, void *, size_t, size_t *);
313 int	SAN_INTERCEPTOR(copyout)(const void *, void *, size_t);
314 #ifndef SAN_RUNTIME
315 #define	copyin(u, k, l)		SAN_INTERCEPTOR(copyin)((u), (k), (l))
316 #define	copyinstr(u, k, l, lc)	SAN_INTERCEPTOR(copyinstr)((u), (k), (l), (lc))
317 #define	copyout(k, u, l)	SAN_INTERCEPTOR(copyout)((k), (u), (l))
318 #endif /* !SAN_RUNTIME */
319 #endif /* SAN_PREFIX */
320 
321 int	fubyte(volatile const void *base);
322 long	fuword(volatile const void *base);
323 int	fuword16(volatile const void *base);
324 int32_t	fuword32(volatile const void *base);
325 int64_t	fuword64(volatile const void *base);
326 int	fueword(volatile const void *base, long *val);
327 int	fueword32(volatile const void *base, int32_t *val);
328 int	fueword64(volatile const void *base, int64_t *val);
329 int	subyte(volatile void *base, int byte);
330 int	suword(volatile void *base, long word);
331 int	suword16(volatile void *base, int word);
332 int	suword32(volatile void *base, int32_t word);
333 int	suword64(volatile void *base, int64_t word);
334 uint32_t casuword32(volatile uint32_t *base, uint32_t oldval, uint32_t newval);
335 u_long	casuword(volatile u_long *p, u_long oldval, u_long newval);
336 int	casueword32(volatile uint32_t *base, uint32_t oldval, uint32_t *oldvalp,
337 	    uint32_t newval);
338 int	casueword(volatile u_long *p, u_long oldval, u_long *oldvalp,
339 	    u_long newval);
340 
341 void	realitexpire(void *);
342 
343 int	sysbeep(int hertz, sbintime_t duration);
344 
345 void	hardclock(int cnt, int usermode);
346 void	hardclock_sync(int cpu);
347 void	softclock(void *);
348 void	statclock(int cnt, int usermode);
349 void	profclock(int cnt, int usermode, uintfptr_t pc);
350 
351 int	hardclockintr(void);
352 
353 void	startprofclock(struct proc *);
354 void	stopprofclock(struct proc *);
355 void	cpu_startprofclock(void);
356 void	cpu_stopprofclock(void);
357 void	suspendclock(void);
358 void	resumeclock(void);
359 sbintime_t 	cpu_idleclock(void);
360 void	cpu_activeclock(void);
361 void	cpu_new_callout(int cpu, sbintime_t bt, sbintime_t bt_opt);
362 void	cpu_et_frequency(struct eventtimer *et, uint64_t newfreq);
363 extern int	cpu_disable_c2_sleep;
364 extern int	cpu_disable_c3_sleep;
365 
366 char	*kern_getenv(const char *name);
367 void	freeenv(char *env);
368 int	getenv_int(const char *name, int *data);
369 int	getenv_uint(const char *name, unsigned int *data);
370 int	getenv_long(const char *name, long *data);
371 int	getenv_ulong(const char *name, unsigned long *data);
372 int	getenv_string(const char *name, char *data, int size);
373 int	getenv_int64(const char *name, int64_t *data);
374 int	getenv_uint64(const char *name, uint64_t *data);
375 int	getenv_quad(const char *name, quad_t *data);
376 int	getenv_bool(const char *name, bool *data);
377 bool	getenv_is_true(const char *name);
378 bool	getenv_is_false(const char *name);
379 int	kern_setenv(const char *name, const char *value);
380 int	kern_unsetenv(const char *name);
381 int	testenv(const char *name);
382 
383 int	getenv_array(const char *name, void *data, int size, int *psize,
384     int type_size, bool allow_signed);
385 #define	GETENV_UNSIGNED	false	/* negative numbers not allowed */
386 #define	GETENV_SIGNED	true	/* negative numbers allowed */
387 
388 typedef uint64_t (cpu_tick_f)(void);
389 void set_cputicker(cpu_tick_f *func, uint64_t freq, unsigned var);
390 extern cpu_tick_f *cpu_ticks;
391 uint64_t cpu_tickrate(void);
392 uint64_t cputick2usec(uint64_t tick);
393 
394 #include <sys/libkern.h>
395 
396 /* Initialize the world */
397 void	consinit(void);
398 void	cpu_initclocks(void);
399 void	cpu_initclocks_bsp(void);
400 void	cpu_initclocks_ap(void);
401 void	usrinfoinit(void);
402 
403 /* Finalize the world */
404 void	kern_reboot(int) __dead2;
405 void	shutdown_nice(int);
406 
407 /* Stubs for obsolete functions that used to be for interrupt management */
splhigh(void)408 static __inline intrmask_t	splhigh(void)		{ return 0; }
splimp(void)409 static __inline intrmask_t	splimp(void)		{ return 0; }
splnet(void)410 static __inline intrmask_t	splnet(void)		{ return 0; }
spltty(void)411 static __inline intrmask_t	spltty(void)		{ return 0; }
splx(intrmask_t ipl __unused)412 static __inline void		splx(intrmask_t ipl __unused)	{ return; }
413 
414 /*
415  * Common `proc' functions are declared here so that proc.h can be included
416  * less often.
417  */
418 int	_sleep(const void * _Nonnull chan, struct lock_object *lock, int pri,
419 	   const char *wmesg, sbintime_t sbt, sbintime_t pr, int flags);
420 #define	msleep(chan, mtx, pri, wmesg, timo)				\
421 	_sleep((chan), &(mtx)->lock_object, (pri), (wmesg),		\
422 	    tick_sbt * (timo), 0, C_HARDCLOCK)
423 #define	msleep_sbt(chan, mtx, pri, wmesg, bt, pr, flags)		\
424 	_sleep((chan), &(mtx)->lock_object, (pri), (wmesg), (bt), (pr),	\
425 	    (flags))
426 int	msleep_spin_sbt(const void * _Nonnull chan, struct mtx *mtx,
427 	    const char *wmesg, sbintime_t sbt, sbintime_t pr, int flags);
428 #define	msleep_spin(chan, mtx, wmesg, timo)				\
429 	msleep_spin_sbt((chan), (mtx), (wmesg), tick_sbt * (timo),	\
430 	    0, C_HARDCLOCK)
431 int	pause_sbt(const char *wmesg, sbintime_t sbt, sbintime_t pr,
432 	    int flags);
433 #define	pause(wmesg, timo)						\
434 	pause_sbt((wmesg), tick_sbt * (timo), 0, C_HARDCLOCK)
435 #define	pause_sig(wmesg, timo)						\
436 	pause_sbt((wmesg), tick_sbt * (timo), 0, C_HARDCLOCK | C_CATCH)
437 #define	tsleep(chan, pri, wmesg, timo)					\
438 	_sleep((chan), NULL, (pri), (wmesg), tick_sbt * (timo),		\
439 	    0, C_HARDCLOCK)
440 #define	tsleep_sbt(chan, pri, wmesg, bt, pr, flags)			\
441 	_sleep((chan), NULL, (pri), (wmesg), (bt), (pr), (flags))
442 void	wakeup(const void *chan);
443 void	wakeup_one(const void *chan);
444 void	wakeup_any(const void *chan);
445 
446 /*
447  * Common `struct cdev *' stuff are declared here to avoid #include poisoning
448  */
449 
450 struct cdev;
451 dev_t dev2udev(struct cdev *x);
452 const char *devtoname(struct cdev *cdev);
453 
454 #ifdef __LP64__
455 size_t	devfs_iosize_max(void);
456 size_t	iosize_max(void);
457 #endif
458 
459 int poll_no_poll(int events);
460 
461 /* XXX: Should be void nanodelay(u_int nsec); */
462 void	DELAY(int usec);
463 
464 /* Root mount holdback API */
465 struct root_hold_token {
466 	int				flags;
467 	const char			*who;
468 	TAILQ_ENTRY(root_hold_token)	list;
469 };
470 
471 struct root_hold_token *root_mount_hold(const char *identifier);
472 void root_mount_hold_token(const char *identifier, struct root_hold_token *h);
473 void root_mount_rel(struct root_hold_token *h);
474 int root_mounted(void);
475 
476 /*
477  * Unit number allocation API. (kern/subr_unit.c)
478  */
479 struct unrhdr;
480 struct unrhdr *new_unrhdr(int low, int high, struct mtx *mutex);
481 void init_unrhdr(struct unrhdr *uh, int low, int high, struct mtx *mutex);
482 void delete_unrhdr(struct unrhdr *uh);
483 void clear_unrhdr(struct unrhdr *uh);
484 void clean_unrhdr(struct unrhdr *uh);
485 void clean_unrhdrl(struct unrhdr *uh);
486 int alloc_unr(struct unrhdr *uh);
487 int alloc_unr_specific(struct unrhdr *uh, u_int item);
488 int alloc_unrl(struct unrhdr *uh);
489 void free_unr(struct unrhdr *uh, u_int item);
490 
491 #ifndef __LP64__
492 #define UNR64_LOCKED
493 #endif
494 
495 struct unrhdr64 {
496         uint64_t	counter;
497 };
498 
499 static __inline void
new_unrhdr64(struct unrhdr64 * unr64,uint64_t low)500 new_unrhdr64(struct unrhdr64 *unr64, uint64_t low)
501 {
502 
503 	unr64->counter = low;
504 }
505 
506 #ifdef UNR64_LOCKED
507 uint64_t alloc_unr64(struct unrhdr64 *);
508 #else
509 static __inline uint64_t
alloc_unr64(struct unrhdr64 * unr64)510 alloc_unr64(struct unrhdr64 *unr64)
511 {
512 
513 	return (atomic_fetchadd_64(&unr64->counter, 1));
514 }
515 #endif
516 
517 void	intr_prof_stack_use(struct thread *td, struct trapframe *frame);
518 
519 void counted_warning(unsigned *counter, const char *msg);
520 
521 /*
522  * APIs to manage deprecation and obsolescence.
523  */
524 void _gone_in(int major, const char *msg);
525 void _gone_in_dev(device_t dev, int major, const char *msg);
526 #ifdef NO_OBSOLETE_CODE
527 #define __gone_ok(m, msg)					 \
528 	_Static_assert(m < P_OSREL_MAJOR(__FreeBSD_version)),	 \
529 	    "Obsolete code: " msg);
530 #else
531 #define	__gone_ok(m, msg)
532 #endif
533 #define gone_in(major, msg)		__gone_ok(major, msg) _gone_in(major, msg)
534 #define gone_in_dev(dev, major, msg)	__gone_ok(major, msg) _gone_in_dev(dev, major, msg)
535 
536 #if defined(INVARIANTS) || defined(WITNESS)
537 #define	__diagused
538 #else
539 #define	__diagused	__unused
540 #endif
541 
542 #endif /* _KERNEL */
543 
544 __NULLABILITY_PRAGMA_POP
545 #endif /* !_SYS_SYSTM_H_ */
546