1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _LINUX_JUMP_LABEL_H
3 #define _LINUX_JUMP_LABEL_H
4 
5 /*
6  * Jump label support
7  *
8  * Copyright (C) 2009-2012 Jason Baron <jbaron@redhat.com>
9  * Copyright (C) 2011-2012 Red Hat, Inc., Peter Zijlstra
10  *
11  * DEPRECATED API:
12  *
13  * The use of 'struct static_key' directly, is now DEPRECATED. In addition
14  * static_key_{true,false}() is also DEPRECATED. IE DO NOT use the following:
15  *
16  * struct static_key false = STATIC_KEY_INIT_FALSE;
17  * struct static_key true = STATIC_KEY_INIT_TRUE;
18  * static_key_true()
19  * static_key_false()
20  *
21  * The updated API replacements are:
22  *
23  * DEFINE_STATIC_KEY_TRUE(key);
24  * DEFINE_STATIC_KEY_FALSE(key);
25  * DEFINE_STATIC_KEY_ARRAY_TRUE(keys, count);
26  * DEFINE_STATIC_KEY_ARRAY_FALSE(keys, count);
27  * static_branch_likely()
28  * static_branch_unlikely()
29  *
30  * Jump labels provide an interface to generate dynamic branches using
31  * self-modifying code. Assuming toolchain and architecture support, if we
32  * define a "key" that is initially false via "DEFINE_STATIC_KEY_FALSE(key)",
33  * an "if (static_branch_unlikely(&key))" statement is an unconditional branch
34  * (which defaults to false - and the true block is placed out of line).
35  * Similarly, we can define an initially true key via
36  * "DEFINE_STATIC_KEY_TRUE(key)", and use it in the same
37  * "if (static_branch_unlikely(&key))", in which case we will generate an
38  * unconditional branch to the out-of-line true branch. Keys that are
39  * initially true or false can be using in both static_branch_unlikely()
40  * and static_branch_likely() statements.
41  *
42  * At runtime we can change the branch target by setting the key
43  * to true via a call to static_branch_enable(), or false using
44  * static_branch_disable(). If the direction of the branch is switched by
45  * these calls then we run-time modify the branch target via a
46  * no-op -> jump or jump -> no-op conversion. For example, for an
47  * initially false key that is used in an "if (static_branch_unlikely(&key))"
48  * statement, setting the key to true requires us to patch in a jump
49  * to the out-of-line of true branch.
50  *
51  * In addition to static_branch_{enable,disable}, we can also reference count
52  * the key or branch direction via static_branch_{inc,dec}. Thus,
53  * static_branch_inc() can be thought of as a 'make more true' and
54  * static_branch_dec() as a 'make more false'.
55  *
56  * Since this relies on modifying code, the branch modifying functions
57  * must be considered absolute slow paths (machine wide synchronization etc.).
58  * OTOH, since the affected branches are unconditional, their runtime overhead
59  * will be absolutely minimal, esp. in the default (off) case where the total
60  * effect is a single NOP of appropriate size. The on case will patch in a jump
61  * to the out-of-line block.
62  *
63  * When the control is directly exposed to userspace, it is prudent to delay the
64  * decrement to avoid high frequency code modifications which can (and do)
65  * cause significant performance degradation. Struct static_key_deferred and
66  * static_key_slow_dec_deferred() provide for this.
67  *
68  * Lacking toolchain and or architecture support, static keys fall back to a
69  * simple conditional branch.
70  *
71  * Additional babbling in: Documentation/static-keys.txt
72  */
73 
74 #ifndef __ASSEMBLY__
75 
76 #include <linux/types.h>
77 #include <linux/compiler.h>
78 
79 extern bool static_key_initialized;
80 
81 #define STATIC_KEY_CHECK_USE(key) WARN(!static_key_initialized,		      \
82 				    "%s(): static key '%pS' used before call to jump_label_init()", \
83 				    __func__, (key))
84 
85 #ifdef CONFIG_JUMP_LABEL
86 
87 struct static_key {
88 	atomic_t enabled;
89 /*
90  * Note:
91  *   To make anonymous unions work with old compilers, the static
92  *   initialization of them requires brackets. This creates a dependency
93  *   on the order of the struct with the initializers. If any fields
94  *   are added, STATIC_KEY_INIT_TRUE and STATIC_KEY_INIT_FALSE may need
95  *   to be modified.
96  *
97  * bit 0 => 1 if key is initially true
98  *	    0 if initially false
99  * bit 1 => 1 if points to struct static_key_mod
100  *	    0 if points to struct jump_entry
101  */
102 	union {
103 		unsigned long type;
104 		struct jump_entry *entries;
105 		struct static_key_mod *next;
106 	};
107 };
108 
109 #else
110 struct static_key {
111 	atomic_t enabled;
112 };
113 #endif	/* CONFIG_JUMP_LABEL */
114 #endif /* __ASSEMBLY__ */
115 
116 #ifdef CONFIG_JUMP_LABEL
117 #include <asm/jump_label.h>
118 #endif
119 
120 #ifndef __ASSEMBLY__
121 
122 enum jump_label_type {
123 	JUMP_LABEL_NOP = 0,
124 	JUMP_LABEL_JMP,
125 };
126 
127 struct module;
128 
129 #ifdef CONFIG_JUMP_LABEL
130 
131 #define JUMP_TYPE_FALSE		0UL
132 #define JUMP_TYPE_TRUE		1UL
133 #define JUMP_TYPE_LINKED	2UL
134 #define JUMP_TYPE_MASK		3UL
135 
static_key_false(struct static_key * key)136 static __always_inline bool static_key_false(struct static_key *key)
137 {
138 	return arch_static_branch(key, false);
139 }
140 
static_key_true(struct static_key * key)141 static __always_inline bool static_key_true(struct static_key *key)
142 {
143 	return !arch_static_branch(key, true);
144 }
145 
146 extern struct jump_entry __start___jump_table[];
147 extern struct jump_entry __stop___jump_table[];
148 
149 extern void jump_label_init(void);
150 extern void jump_label_invalidate_initmem(void);
151 extern void jump_label_lock(void);
152 extern void jump_label_unlock(void);
153 extern void arch_jump_label_transform(struct jump_entry *entry,
154 				      enum jump_label_type type);
155 extern void arch_jump_label_transform_static(struct jump_entry *entry,
156 					     enum jump_label_type type);
157 extern int jump_label_text_reserved(void *start, void *end);
158 extern void static_key_slow_inc(struct static_key *key);
159 extern void static_key_slow_dec(struct static_key *key);
160 extern void static_key_slow_inc_cpuslocked(struct static_key *key);
161 extern void static_key_slow_dec_cpuslocked(struct static_key *key);
162 extern void jump_label_apply_nops(struct module *mod);
163 extern int static_key_count(struct static_key *key);
164 extern void static_key_enable(struct static_key *key);
165 extern void static_key_disable(struct static_key *key);
166 extern void static_key_enable_cpuslocked(struct static_key *key);
167 extern void static_key_disable_cpuslocked(struct static_key *key);
168 
169 /*
170  * We should be using ATOMIC_INIT() for initializing .enabled, but
171  * the inclusion of atomic.h is problematic for inclusion of jump_label.h
172  * in 'low-level' headers. Thus, we are initializing .enabled with a
173  * raw value, but have added a BUILD_BUG_ON() to catch any issues in
174  * jump_label_init() see: kernel/jump_label.c.
175  */
176 #define STATIC_KEY_INIT_TRUE					\
177 	{ .enabled = { 1 },					\
178 	  { .entries = (void *)JUMP_TYPE_TRUE } }
179 #define STATIC_KEY_INIT_FALSE					\
180 	{ .enabled = { 0 },					\
181 	  { .entries = (void *)JUMP_TYPE_FALSE } }
182 
183 #else  /* !CONFIG_JUMP_LABEL */
184 
185 #include <linux/atomic.h>
186 #include <linux/bug.h>
187 
static_key_count(struct static_key * key)188 static inline int static_key_count(struct static_key *key)
189 {
190 	return atomic_read(&key->enabled);
191 }
192 
jump_label_init(void)193 static __always_inline void jump_label_init(void)
194 {
195 	static_key_initialized = true;
196 }
197 
jump_label_invalidate_initmem(void)198 static inline void jump_label_invalidate_initmem(void) {}
199 
static_key_false(struct static_key * key)200 static __always_inline bool static_key_false(struct static_key *key)
201 {
202 	if (unlikely(static_key_count(key) > 0))
203 		return true;
204 	return false;
205 }
206 
static_key_true(struct static_key * key)207 static __always_inline bool static_key_true(struct static_key *key)
208 {
209 	if (likely(static_key_count(key) > 0))
210 		return true;
211 	return false;
212 }
213 
static_key_slow_inc(struct static_key * key)214 static inline void static_key_slow_inc(struct static_key *key)
215 {
216 	STATIC_KEY_CHECK_USE(key);
217 	atomic_inc(&key->enabled);
218 }
219 
static_key_slow_dec(struct static_key * key)220 static inline void static_key_slow_dec(struct static_key *key)
221 {
222 	STATIC_KEY_CHECK_USE(key);
223 	atomic_dec(&key->enabled);
224 }
225 
226 #define static_key_slow_inc_cpuslocked(key) static_key_slow_inc(key)
227 #define static_key_slow_dec_cpuslocked(key) static_key_slow_dec(key)
228 
jump_label_text_reserved(void * start,void * end)229 static inline int jump_label_text_reserved(void *start, void *end)
230 {
231 	return 0;
232 }
233 
jump_label_lock(void)234 static inline void jump_label_lock(void) {}
jump_label_unlock(void)235 static inline void jump_label_unlock(void) {}
236 
jump_label_apply_nops(struct module * mod)237 static inline int jump_label_apply_nops(struct module *mod)
238 {
239 	return 0;
240 }
241 
static_key_enable(struct static_key * key)242 static inline void static_key_enable(struct static_key *key)
243 {
244 	STATIC_KEY_CHECK_USE(key);
245 
246 	if (atomic_read(&key->enabled) != 0) {
247 		WARN_ON_ONCE(atomic_read(&key->enabled) != 1);
248 		return;
249 	}
250 	atomic_set(&key->enabled, 1);
251 }
252 
static_key_disable(struct static_key * key)253 static inline void static_key_disable(struct static_key *key)
254 {
255 	STATIC_KEY_CHECK_USE(key);
256 
257 	if (atomic_read(&key->enabled) != 1) {
258 		WARN_ON_ONCE(atomic_read(&key->enabled) != 0);
259 		return;
260 	}
261 	atomic_set(&key->enabled, 0);
262 }
263 
264 #define static_key_enable_cpuslocked(k)		static_key_enable((k))
265 #define static_key_disable_cpuslocked(k)	static_key_disable((k))
266 
267 #define STATIC_KEY_INIT_TRUE	{ .enabled = ATOMIC_INIT(1) }
268 #define STATIC_KEY_INIT_FALSE	{ .enabled = ATOMIC_INIT(0) }
269 
270 #endif	/* CONFIG_JUMP_LABEL */
271 
272 #define STATIC_KEY_INIT STATIC_KEY_INIT_FALSE
273 #define jump_label_enabled static_key_enabled
274 
275 /* -------------------------------------------------------------------------- */
276 
277 /*
278  * Two type wrappers around static_key, such that we can use compile time
279  * type differentiation to emit the right code.
280  *
281  * All the below code is macros in order to play type games.
282  */
283 
284 struct static_key_true {
285 	struct static_key key;
286 };
287 
288 struct static_key_false {
289 	struct static_key key;
290 };
291 
292 #define STATIC_KEY_TRUE_INIT  (struct static_key_true) { .key = STATIC_KEY_INIT_TRUE,  }
293 #define STATIC_KEY_FALSE_INIT (struct static_key_false){ .key = STATIC_KEY_INIT_FALSE, }
294 
295 #define DEFINE_STATIC_KEY_TRUE(name)	\
296 	struct static_key_true name = STATIC_KEY_TRUE_INIT
297 
298 #define DEFINE_STATIC_KEY_TRUE_RO(name)	\
299 	struct static_key_true name __ro_after_init = STATIC_KEY_TRUE_INIT
300 
301 #define DECLARE_STATIC_KEY_TRUE(name)	\
302 	extern struct static_key_true name
303 
304 #define DEFINE_STATIC_KEY_FALSE(name)	\
305 	struct static_key_false name = STATIC_KEY_FALSE_INIT
306 
307 #define DEFINE_STATIC_KEY_FALSE_RO(name)	\
308 	struct static_key_false name __ro_after_init = STATIC_KEY_FALSE_INIT
309 
310 #define DECLARE_STATIC_KEY_FALSE(name)	\
311 	extern struct static_key_false name
312 
313 #define DEFINE_STATIC_KEY_ARRAY_TRUE(name, count)		\
314 	struct static_key_true name[count] = {			\
315 		[0 ... (count) - 1] = STATIC_KEY_TRUE_INIT,	\
316 	}
317 
318 #define DEFINE_STATIC_KEY_ARRAY_FALSE(name, count)		\
319 	struct static_key_false name[count] = {			\
320 		[0 ... (count) - 1] = STATIC_KEY_FALSE_INIT,	\
321 	}
322 
323 extern bool ____wrong_branch_error(void);
324 
325 #define static_key_enabled(x)							\
326 ({										\
327 	if (!__builtin_types_compatible_p(typeof(*x), struct static_key) &&	\
328 	    !__builtin_types_compatible_p(typeof(*x), struct static_key_true) &&\
329 	    !__builtin_types_compatible_p(typeof(*x), struct static_key_false))	\
330 		____wrong_branch_error();					\
331 	static_key_count((struct static_key *)x) > 0;				\
332 })
333 
334 #ifdef CONFIG_JUMP_LABEL
335 
336 /*
337  * Combine the right initial value (type) with the right branch order
338  * to generate the desired result.
339  *
340  *
341  * type\branch|	likely (1)	      |	unlikely (0)
342  * -----------+-----------------------+------------------
343  *            |                       |
344  *  true (1)  |	   ...		      |	   ...
345  *            |    NOP		      |	   JMP L
346  *            |    <br-stmts>	      |	1: ...
347  *            |	L: ...		      |
348  *            |			      |
349  *            |			      |	L: <br-stmts>
350  *            |			      |	   jmp 1b
351  *            |                       |
352  * -----------+-----------------------+------------------
353  *            |                       |
354  *  false (0) |	   ...		      |	   ...
355  *            |    JMP L	      |	   NOP
356  *            |    <br-stmts>	      |	1: ...
357  *            |	L: ...		      |
358  *            |			      |
359  *            |			      |	L: <br-stmts>
360  *            |			      |	   jmp 1b
361  *            |                       |
362  * -----------+-----------------------+------------------
363  *
364  * The initial value is encoded in the LSB of static_key::entries,
365  * type: 0 = false, 1 = true.
366  *
367  * The branch type is encoded in the LSB of jump_entry::key,
368  * branch: 0 = unlikely, 1 = likely.
369  *
370  * This gives the following logic table:
371  *
372  *	enabled	type	branch	  instuction
373  * -----------------------------+-----------
374  *	0	0	0	| NOP
375  *	0	0	1	| JMP
376  *	0	1	0	| NOP
377  *	0	1	1	| JMP
378  *
379  *	1	0	0	| JMP
380  *	1	0	1	| NOP
381  *	1	1	0	| JMP
382  *	1	1	1	| NOP
383  *
384  * Which gives the following functions:
385  *
386  *   dynamic: instruction = enabled ^ branch
387  *   static:  instruction = type ^ branch
388  *
389  * See jump_label_type() / jump_label_init_type().
390  */
391 
392 #define static_branch_likely(x)							\
393 ({										\
394 	bool branch;								\
395 	if (__builtin_types_compatible_p(typeof(*x), struct static_key_true))	\
396 		branch = !arch_static_branch(&(x)->key, true);			\
397 	else if (__builtin_types_compatible_p(typeof(*x), struct static_key_false)) \
398 		branch = !arch_static_branch_jump(&(x)->key, true);		\
399 	else									\
400 		branch = ____wrong_branch_error();				\
401 	likely(branch);								\
402 })
403 
404 #define static_branch_unlikely(x)						\
405 ({										\
406 	bool branch;								\
407 	if (__builtin_types_compatible_p(typeof(*x), struct static_key_true))	\
408 		branch = arch_static_branch_jump(&(x)->key, false);		\
409 	else if (__builtin_types_compatible_p(typeof(*x), struct static_key_false)) \
410 		branch = arch_static_branch(&(x)->key, false);			\
411 	else									\
412 		branch = ____wrong_branch_error();				\
413 	unlikely(branch);							\
414 })
415 
416 #else /* !CONFIG_JUMP_LABEL */
417 
418 #define static_branch_likely(x)		likely(static_key_enabled(&(x)->key))
419 #define static_branch_unlikely(x)	unlikely(static_key_enabled(&(x)->key))
420 
421 #endif /* CONFIG_JUMP_LABEL */
422 
423 /*
424  * Advanced usage; refcount, branch is enabled when: count != 0
425  */
426 
427 #define static_branch_inc(x)		static_key_slow_inc(&(x)->key)
428 #define static_branch_dec(x)		static_key_slow_dec(&(x)->key)
429 #define static_branch_inc_cpuslocked(x)	static_key_slow_inc_cpuslocked(&(x)->key)
430 #define static_branch_dec_cpuslocked(x)	static_key_slow_dec_cpuslocked(&(x)->key)
431 
432 /*
433  * Normal usage; boolean enable/disable.
434  */
435 
436 #define static_branch_enable(x)			static_key_enable(&(x)->key)
437 #define static_branch_disable(x)		static_key_disable(&(x)->key)
438 #define static_branch_enable_cpuslocked(x)	static_key_enable_cpuslocked(&(x)->key)
439 #define static_branch_disable_cpuslocked(x)	static_key_disable_cpuslocked(&(x)->key)
440 
441 #endif /* __ASSEMBLY__ */
442 
443 #endif	/* _LINUX_JUMP_LABEL_H */
444