1 #include <linux/module.h>
2 #include <linux/sched.h>
3 #include <linux/mutex.h>
4 #include <linux/list.h>
5 #include <linux/stringify.h>
6 #include <linux/kprobes.h>
7 #include <linux/mm.h>
8 #include <linux/vmalloc.h>
9 #include <linux/memory.h>
10 #include <linux/stop_machine.h>
11 #include <linux/slab.h>
12 #include <asm/alternative.h>
13 #include <asm/sections.h>
14 #include <asm/pgtable.h>
15 #include <asm/mce.h>
16 #include <asm/nmi.h>
17 #include <asm/vsyscall.h>
18 #include <asm/cacheflush.h>
19 #include <asm/tlbflush.h>
20 #include <asm/io.h>
21 #include <asm/fixmap.h>
22 
23 #define MAX_PATCH_LEN (255-1)
24 
25 #ifdef CONFIG_HOTPLUG_CPU
26 static int smp_alt_once;
27 
bootonly(char * str)28 static int __init bootonly(char *str)
29 {
30 	smp_alt_once = 1;
31 	return 1;
32 }
33 __setup("smp-alt-boot", bootonly);
34 #else
35 #define smp_alt_once 1
36 #endif
37 
38 static int __initdata_or_module debug_alternative;
39 
debug_alt(char * str)40 static int __init debug_alt(char *str)
41 {
42 	debug_alternative = 1;
43 	return 1;
44 }
45 __setup("debug-alternative", debug_alt);
46 
47 static int noreplace_smp;
48 
setup_noreplace_smp(char * str)49 static int __init setup_noreplace_smp(char *str)
50 {
51 	noreplace_smp = 1;
52 	return 1;
53 }
54 __setup("noreplace-smp", setup_noreplace_smp);
55 
56 #ifdef CONFIG_PARAVIRT
57 static int __initdata_or_module noreplace_paravirt = 0;
58 
setup_noreplace_paravirt(char * str)59 static int __init setup_noreplace_paravirt(char *str)
60 {
61 	noreplace_paravirt = 1;
62 	return 1;
63 }
64 __setup("noreplace-paravirt", setup_noreplace_paravirt);
65 #endif
66 
67 #define DPRINTK(fmt, args...) if (debug_alternative) \
68 	printk(KERN_DEBUG fmt, args)
69 
70 #if defined(GENERIC_NOP1) && !defined(CONFIG_X86_64)
71 /* Use inline assembly to define this because the nops are defined
72    as inline assembly strings in the include files and we cannot
73    get them easily into strings. */
74 asm("\t" __stringify(__INITRODATA_OR_MODULE) "\nintelnops: "
75 	GENERIC_NOP1 GENERIC_NOP2 GENERIC_NOP3 GENERIC_NOP4 GENERIC_NOP5 GENERIC_NOP6
76 	GENERIC_NOP7 GENERIC_NOP8
77     "\t.previous");
78 extern const unsigned char intelnops[];
79 static const unsigned char *const __initconst_or_module
80 intel_nops[ASM_NOP_MAX+1] = {
81 	NULL,
82 	intelnops,
83 	intelnops + 1,
84 	intelnops + 1 + 2,
85 	intelnops + 1 + 2 + 3,
86 	intelnops + 1 + 2 + 3 + 4,
87 	intelnops + 1 + 2 + 3 + 4 + 5,
88 	intelnops + 1 + 2 + 3 + 4 + 5 + 6,
89 	intelnops + 1 + 2 + 3 + 4 + 5 + 6 + 7,
90 };
91 #endif
92 
93 #ifdef K8_NOP1
94 asm("\t" __stringify(__INITRODATA_OR_MODULE) "\nk8nops: "
95 	K8_NOP1 K8_NOP2 K8_NOP3 K8_NOP4 K8_NOP5 K8_NOP6
96 	K8_NOP7 K8_NOP8
97     "\t.previous");
98 extern const unsigned char k8nops[];
99 static const unsigned char *const __initconst_or_module
100 k8_nops[ASM_NOP_MAX+1] = {
101 	NULL,
102 	k8nops,
103 	k8nops + 1,
104 	k8nops + 1 + 2,
105 	k8nops + 1 + 2 + 3,
106 	k8nops + 1 + 2 + 3 + 4,
107 	k8nops + 1 + 2 + 3 + 4 + 5,
108 	k8nops + 1 + 2 + 3 + 4 + 5 + 6,
109 	k8nops + 1 + 2 + 3 + 4 + 5 + 6 + 7,
110 };
111 #endif
112 
113 #if defined(K7_NOP1) && !defined(CONFIG_X86_64)
114 asm("\t" __stringify(__INITRODATA_OR_MODULE) "\nk7nops: "
115 	K7_NOP1 K7_NOP2 K7_NOP3 K7_NOP4 K7_NOP5 K7_NOP6
116 	K7_NOP7 K7_NOP8
117     "\t.previous");
118 extern const unsigned char k7nops[];
119 static const unsigned char *const __initconst_or_module
120 k7_nops[ASM_NOP_MAX+1] = {
121 	NULL,
122 	k7nops,
123 	k7nops + 1,
124 	k7nops + 1 + 2,
125 	k7nops + 1 + 2 + 3,
126 	k7nops + 1 + 2 + 3 + 4,
127 	k7nops + 1 + 2 + 3 + 4 + 5,
128 	k7nops + 1 + 2 + 3 + 4 + 5 + 6,
129 	k7nops + 1 + 2 + 3 + 4 + 5 + 6 + 7,
130 };
131 #endif
132 
133 #ifdef P6_NOP1
134 asm("\t" __stringify(__INITRODATA_OR_MODULE) "\np6nops: "
135 	P6_NOP1 P6_NOP2 P6_NOP3 P6_NOP4 P6_NOP5 P6_NOP6
136 	P6_NOP7 P6_NOP8
137     "\t.previous");
138 extern const unsigned char p6nops[];
139 static const unsigned char *const __initconst_or_module
140 p6_nops[ASM_NOP_MAX+1] = {
141 	NULL,
142 	p6nops,
143 	p6nops + 1,
144 	p6nops + 1 + 2,
145 	p6nops + 1 + 2 + 3,
146 	p6nops + 1 + 2 + 3 + 4,
147 	p6nops + 1 + 2 + 3 + 4 + 5,
148 	p6nops + 1 + 2 + 3 + 4 + 5 + 6,
149 	p6nops + 1 + 2 + 3 + 4 + 5 + 6 + 7,
150 };
151 #endif
152 
153 #ifdef CONFIG_X86_64
154 
155 extern char __vsyscall_0;
find_nop_table(void)156 static const unsigned char *const *__init_or_module find_nop_table(void)
157 {
158 	if (boot_cpu_data.x86_vendor == X86_VENDOR_INTEL &&
159 	    boot_cpu_has(X86_FEATURE_NOPL))
160 		return p6_nops;
161 	else
162 		return k8_nops;
163 }
164 
165 #else /* CONFIG_X86_64 */
166 
find_nop_table(void)167 static const unsigned char *const *__init_or_module find_nop_table(void)
168 {
169 	if (boot_cpu_has(X86_FEATURE_K8))
170 		return k8_nops;
171 	else if (boot_cpu_has(X86_FEATURE_K7))
172 		return k7_nops;
173 	else if (boot_cpu_has(X86_FEATURE_NOPL))
174 		return p6_nops;
175 	else
176 		return intel_nops;
177 }
178 
179 #endif /* CONFIG_X86_64 */
180 
181 /* Use this to add nops to a buffer, then text_poke the whole buffer. */
add_nops(void * insns,unsigned int len)182 static void __init_or_module add_nops(void *insns, unsigned int len)
183 {
184 	const unsigned char *const *noptable = find_nop_table();
185 
186 	while (len > 0) {
187 		unsigned int noplen = len;
188 		if (noplen > ASM_NOP_MAX)
189 			noplen = ASM_NOP_MAX;
190 		memcpy(insns, noptable[noplen], noplen);
191 		insns += noplen;
192 		len -= noplen;
193 	}
194 }
195 
196 extern struct alt_instr __alt_instructions[], __alt_instructions_end[];
197 extern s32 __smp_locks[], __smp_locks_end[];
198 void *text_poke_early(void *addr, const void *opcode, size_t len);
199 
200 /* Replace instructions with better alternatives for this CPU type.
201    This runs before SMP is initialized to avoid SMP problems with
202    self modifying code. This implies that asymmetric systems where
203    APs have less capabilities than the boot processor are not handled.
204    Tough. Make sure you disable such features by hand. */
205 
apply_alternatives(struct alt_instr * start,struct alt_instr * end)206 void __init_or_module apply_alternatives(struct alt_instr *start,
207 					 struct alt_instr *end)
208 {
209 	struct alt_instr *a;
210 	u8 insnbuf[MAX_PATCH_LEN];
211 
212 	DPRINTK("%s: alt table %p -> %p\n", __func__, start, end);
213 	for (a = start; a < end; a++) {
214 		u8 *instr = a->instr;
215 		BUG_ON(a->replacementlen > a->instrlen);
216 		BUG_ON(a->instrlen > sizeof(insnbuf));
217 		BUG_ON(a->cpuid >= NCAPINTS*32);
218 		if (!boot_cpu_has(a->cpuid))
219 			continue;
220 #ifdef CONFIG_X86_64
221 		/* vsyscall code is not mapped yet. resolve it manually. */
222 		if (instr >= (u8 *)VSYSCALL_START && instr < (u8*)VSYSCALL_END) {
223 			instr = __va(instr - (u8*)VSYSCALL_START + (u8*)__pa_symbol(&__vsyscall_0));
224 			DPRINTK("%s: vsyscall fixup: %p => %p\n",
225 				__func__, a->instr, instr);
226 		}
227 #endif
228 		memcpy(insnbuf, a->replacement, a->replacementlen);
229 		if (*insnbuf == 0xe8 && a->replacementlen == 5)
230 		    *(s32 *)(insnbuf + 1) += a->replacement - a->instr;
231 		add_nops(insnbuf + a->replacementlen,
232 			 a->instrlen - a->replacementlen);
233 		text_poke_early(instr, insnbuf, a->instrlen);
234 	}
235 }
236 
237 #ifdef CONFIG_SMP
238 
alternatives_smp_lock(const s32 * start,const s32 * end,u8 * text,u8 * text_end)239 static void alternatives_smp_lock(const s32 *start, const s32 *end,
240 				  u8 *text, u8 *text_end)
241 {
242 	const s32 *poff;
243 
244 	mutex_lock(&text_mutex);
245 	for (poff = start; poff < end; poff++) {
246 		u8 *ptr = (u8 *)poff + *poff;
247 
248 		if (!*poff || ptr < text || ptr >= text_end)
249 			continue;
250 		/* turn DS segment override prefix into lock prefix */
251 		if (*ptr == 0x3e)
252 			text_poke(ptr, ((unsigned char []){0xf0}), 1);
253 	};
254 	mutex_unlock(&text_mutex);
255 }
256 
alternatives_smp_unlock(const s32 * start,const s32 * end,u8 * text,u8 * text_end)257 static void alternatives_smp_unlock(const s32 *start, const s32 *end,
258 				    u8 *text, u8 *text_end)
259 {
260 	const s32 *poff;
261 
262 	if (noreplace_smp)
263 		return;
264 
265 	mutex_lock(&text_mutex);
266 	for (poff = start; poff < end; poff++) {
267 		u8 *ptr = (u8 *)poff + *poff;
268 
269 		if (!*poff || ptr < text || ptr >= text_end)
270 			continue;
271 		/* turn lock prefix into DS segment override prefix */
272 		if (*ptr == 0xf0)
273 			text_poke(ptr, ((unsigned char []){0x3E}), 1);
274 	};
275 	mutex_unlock(&text_mutex);
276 }
277 
278 struct smp_alt_module {
279 	/* what is this ??? */
280 	struct module	*mod;
281 	char		*name;
282 
283 	/* ptrs to lock prefixes */
284 	const s32	*locks;
285 	const s32	*locks_end;
286 
287 	/* .text segment, needed to avoid patching init code ;) */
288 	u8		*text;
289 	u8		*text_end;
290 
291 	struct list_head next;
292 };
293 static LIST_HEAD(smp_alt_modules);
294 static DEFINE_MUTEX(smp_alt);
295 static int smp_mode = 1;	/* protected by smp_alt */
296 
alternatives_smp_module_add(struct module * mod,char * name,void * locks,void * locks_end,void * text,void * text_end)297 void __init_or_module alternatives_smp_module_add(struct module *mod,
298 						  char *name,
299 						  void *locks, void *locks_end,
300 						  void *text,  void *text_end)
301 {
302 	struct smp_alt_module *smp;
303 
304 	if (noreplace_smp)
305 		return;
306 
307 	if (smp_alt_once) {
308 		if (boot_cpu_has(X86_FEATURE_UP))
309 			alternatives_smp_unlock(locks, locks_end,
310 						text, text_end);
311 		return;
312 	}
313 
314 	smp = kzalloc(sizeof(*smp), GFP_KERNEL);
315 	if (NULL == smp)
316 		return; /* we'll run the (safe but slow) SMP code then ... */
317 
318 	smp->mod	= mod;
319 	smp->name	= name;
320 	smp->locks	= locks;
321 	smp->locks_end	= locks_end;
322 	smp->text	= text;
323 	smp->text_end	= text_end;
324 	DPRINTK("%s: locks %p -> %p, text %p -> %p, name %s\n",
325 		__func__, smp->locks, smp->locks_end,
326 		smp->text, smp->text_end, smp->name);
327 
328 	mutex_lock(&smp_alt);
329 	list_add_tail(&smp->next, &smp_alt_modules);
330 	if (boot_cpu_has(X86_FEATURE_UP))
331 		alternatives_smp_unlock(smp->locks, smp->locks_end,
332 					smp->text, smp->text_end);
333 	mutex_unlock(&smp_alt);
334 }
335 
alternatives_smp_module_del(struct module * mod)336 void __init_or_module alternatives_smp_module_del(struct module *mod)
337 {
338 	struct smp_alt_module *item;
339 
340 	if (smp_alt_once || noreplace_smp)
341 		return;
342 
343 	mutex_lock(&smp_alt);
344 	list_for_each_entry(item, &smp_alt_modules, next) {
345 		if (mod != item->mod)
346 			continue;
347 		list_del(&item->next);
348 		mutex_unlock(&smp_alt);
349 		DPRINTK("%s: %s\n", __func__, item->name);
350 		kfree(item);
351 		return;
352 	}
353 	mutex_unlock(&smp_alt);
354 }
355 
356 bool skip_smp_alternatives;
alternatives_smp_switch(int smp)357 void alternatives_smp_switch(int smp)
358 {
359 	struct smp_alt_module *mod;
360 
361 #ifdef CONFIG_LOCKDEP
362 	/*
363 	 * Older binutils section handling bug prevented
364 	 * alternatives-replacement from working reliably.
365 	 *
366 	 * If this still occurs then you should see a hang
367 	 * or crash shortly after this line:
368 	 */
369 	printk("lockdep: fixing up alternatives.\n");
370 #endif
371 
372 	if (noreplace_smp || smp_alt_once || skip_smp_alternatives)
373 		return;
374 	BUG_ON(!smp && (num_online_cpus() > 1));
375 
376 	mutex_lock(&smp_alt);
377 
378 	/*
379 	 * Avoid unnecessary switches because it forces JIT based VMs to
380 	 * throw away all cached translations, which can be quite costly.
381 	 */
382 	if (smp == smp_mode) {
383 		/* nothing */
384 	} else if (smp) {
385 		printk(KERN_INFO "SMP alternatives: switching to SMP code\n");
386 		clear_cpu_cap(&boot_cpu_data, X86_FEATURE_UP);
387 		clear_cpu_cap(&cpu_data(0), X86_FEATURE_UP);
388 		list_for_each_entry(mod, &smp_alt_modules, next)
389 			alternatives_smp_lock(mod->locks, mod->locks_end,
390 					      mod->text, mod->text_end);
391 	} else {
392 		printk(KERN_INFO "SMP alternatives: switching to UP code\n");
393 		set_cpu_cap(&boot_cpu_data, X86_FEATURE_UP);
394 		set_cpu_cap(&cpu_data(0), X86_FEATURE_UP);
395 		list_for_each_entry(mod, &smp_alt_modules, next)
396 			alternatives_smp_unlock(mod->locks, mod->locks_end,
397 						mod->text, mod->text_end);
398 	}
399 	smp_mode = smp;
400 	mutex_unlock(&smp_alt);
401 }
402 
403 /* Return 1 if the address range is reserved for smp-alternatives */
alternatives_text_reserved(void * start,void * end)404 int alternatives_text_reserved(void *start, void *end)
405 {
406 	struct smp_alt_module *mod;
407 	const s32 *poff;
408 	u8 *text_start = start;
409 	u8 *text_end = end;
410 
411 	list_for_each_entry(mod, &smp_alt_modules, next) {
412 		if (mod->text > text_end || mod->text_end < text_start)
413 			continue;
414 		for (poff = mod->locks; poff < mod->locks_end; poff++) {
415 			const u8 *ptr = (const u8 *)poff + *poff;
416 
417 			if (text_start <= ptr && text_end > ptr)
418 				return 1;
419 		}
420 	}
421 
422 	return 0;
423 }
424 #endif
425 
426 #ifdef CONFIG_PARAVIRT
apply_paravirt(struct paravirt_patch_site * start,struct paravirt_patch_site * end)427 void __init_or_module apply_paravirt(struct paravirt_patch_site *start,
428 				     struct paravirt_patch_site *end)
429 {
430 	struct paravirt_patch_site *p;
431 	char insnbuf[MAX_PATCH_LEN];
432 
433 	if (noreplace_paravirt)
434 		return;
435 
436 	for (p = start; p < end; p++) {
437 		unsigned int used;
438 
439 		BUG_ON(p->len > MAX_PATCH_LEN);
440 		/* prep the buffer with the original instructions */
441 		memcpy(insnbuf, p->instr, p->len);
442 		used = pv_init_ops.patch(p->instrtype, p->clobbers, insnbuf,
443 					 (unsigned long)p->instr, p->len);
444 
445 		BUG_ON(used > p->len);
446 
447 		/* Pad the rest with nops */
448 		add_nops(insnbuf + used, p->len - used);
449 		text_poke_early(p->instr, insnbuf, p->len);
450 	}
451 }
452 extern struct paravirt_patch_site __start_parainstructions[],
453 	__stop_parainstructions[];
454 #endif	/* CONFIG_PARAVIRT */
455 
alternative_instructions(void)456 void __init alternative_instructions(void)
457 {
458 	/* The patching is not fully atomic, so try to avoid local interruptions
459 	   that might execute the to be patched code.
460 	   Other CPUs are not running. */
461 	stop_nmi();
462 
463 	/*
464 	 * Don't stop machine check exceptions while patching.
465 	 * MCEs only happen when something got corrupted and in this
466 	 * case we must do something about the corruption.
467 	 * Ignoring it is worse than a unlikely patching race.
468 	 * Also machine checks tend to be broadcast and if one CPU
469 	 * goes into machine check the others follow quickly, so we don't
470 	 * expect a machine check to cause undue problems during to code
471 	 * patching.
472 	 */
473 
474 	apply_alternatives(__alt_instructions, __alt_instructions_end);
475 
476 	/* switch to patch-once-at-boottime-only mode and free the
477 	 * tables in case we know the number of CPUs will never ever
478 	 * change */
479 #ifdef CONFIG_HOTPLUG_CPU
480 	if (num_possible_cpus() < 2)
481 		smp_alt_once = 1;
482 #endif
483 
484 #ifdef CONFIG_SMP
485 	if (smp_alt_once) {
486 		if (1 == num_possible_cpus()) {
487 			printk(KERN_INFO "SMP alternatives: switching to UP code\n");
488 			set_cpu_cap(&boot_cpu_data, X86_FEATURE_UP);
489 			set_cpu_cap(&cpu_data(0), X86_FEATURE_UP);
490 
491 			alternatives_smp_unlock(__smp_locks, __smp_locks_end,
492 						_text, _etext);
493 		}
494 	} else {
495 		alternatives_smp_module_add(NULL, "core kernel",
496 					    __smp_locks, __smp_locks_end,
497 					    _text, _etext);
498 
499 		/* Only switch to UP mode if we don't immediately boot others */
500 		if (num_present_cpus() == 1 || setup_max_cpus <= 1)
501 			alternatives_smp_switch(0);
502 	}
503 #endif
504  	apply_paravirt(__parainstructions, __parainstructions_end);
505 
506 	if (smp_alt_once)
507 		free_init_pages("SMP alternatives",
508 				(unsigned long)__smp_locks,
509 				(unsigned long)__smp_locks_end);
510 
511 	restart_nmi();
512 }
513 
514 /**
515  * text_poke_early - Update instructions on a live kernel at boot time
516  * @addr: address to modify
517  * @opcode: source of the copy
518  * @len: length to copy
519  *
520  * When you use this code to patch more than one byte of an instruction
521  * you need to make sure that other CPUs cannot execute this code in parallel.
522  * Also no thread must be currently preempted in the middle of these
523  * instructions. And on the local CPU you need to be protected again NMI or MCE
524  * handlers seeing an inconsistent instruction while you patch.
525  */
text_poke_early(void * addr,const void * opcode,size_t len)526 void *__init_or_module text_poke_early(void *addr, const void *opcode,
527 					      size_t len)
528 {
529 	unsigned long flags;
530 	local_irq_save(flags);
531 	memcpy(addr, opcode, len);
532 	sync_core();
533 	local_irq_restore(flags);
534 	/* Could also do a CLFLUSH here to speed up CPU recovery; but
535 	   that causes hangs on some VIA CPUs. */
536 	return addr;
537 }
538 
539 /**
540  * text_poke - Update instructions on a live kernel
541  * @addr: address to modify
542  * @opcode: source of the copy
543  * @len: length to copy
544  *
545  * Only atomic text poke/set should be allowed when not doing early patching.
546  * It means the size must be writable atomically and the address must be aligned
547  * in a way that permits an atomic write. It also makes sure we fit on a single
548  * page.
549  *
550  * Note: Must be called under text_mutex.
551  */
text_poke(void * addr,const void * opcode,size_t len)552 void *__kprobes text_poke(void *addr, const void *opcode, size_t len)
553 {
554 	unsigned long flags;
555 	char *vaddr;
556 	struct page *pages[2];
557 	int i;
558 
559 	if (!core_kernel_text((unsigned long)addr)) {
560 		pages[0] = vmalloc_to_page(addr);
561 		pages[1] = vmalloc_to_page(addr + PAGE_SIZE);
562 	} else {
563 		pages[0] = virt_to_page(addr);
564 		WARN_ON(!PageReserved(pages[0]));
565 		pages[1] = virt_to_page(addr + PAGE_SIZE);
566 	}
567 	BUG_ON(!pages[0]);
568 	local_irq_save(flags);
569 	set_fixmap(FIX_TEXT_POKE0, page_to_phys(pages[0]));
570 	if (pages[1])
571 		set_fixmap(FIX_TEXT_POKE1, page_to_phys(pages[1]));
572 	vaddr = (char *)fix_to_virt(FIX_TEXT_POKE0);
573 	memcpy(&vaddr[(unsigned long)addr & ~PAGE_MASK], opcode, len);
574 	clear_fixmap(FIX_TEXT_POKE0);
575 	if (pages[1])
576 		clear_fixmap(FIX_TEXT_POKE1);
577 	local_flush_tlb();
578 	sync_core();
579 	/* Could also do a CLFLUSH here to speed up CPU recovery; but
580 	   that causes hangs on some VIA CPUs. */
581 	for (i = 0; i < len; i++)
582 		BUG_ON(((char *)addr)[i] != ((char *)opcode)[i]);
583 	local_irq_restore(flags);
584 	return addr;
585 }
586 
587 /*
588  * Cross-modifying kernel text with stop_machine().
589  * This code originally comes from immediate value.
590  */
591 static atomic_t stop_machine_first;
592 static int wrote_text;
593 
594 struct text_poke_params {
595 	struct text_poke_param *params;
596 	int nparams;
597 };
598 
stop_machine_text_poke(void * data)599 static int __kprobes stop_machine_text_poke(void *data)
600 {
601 	struct text_poke_params *tpp = data;
602 	struct text_poke_param *p;
603 	int i;
604 
605 	if (atomic_dec_and_test(&stop_machine_first)) {
606 		for (i = 0; i < tpp->nparams; i++) {
607 			p = &tpp->params[i];
608 			text_poke(p->addr, p->opcode, p->len);
609 		}
610 		smp_wmb();	/* Make sure other cpus see that this has run */
611 		wrote_text = 1;
612 	} else {
613 		while (!wrote_text)
614 			cpu_relax();
615 		smp_mb();	/* Load wrote_text before following execution */
616 	}
617 
618 	for (i = 0; i < tpp->nparams; i++) {
619 		p = &tpp->params[i];
620 		flush_icache_range((unsigned long)p->addr,
621 				   (unsigned long)p->addr + p->len);
622 	}
623 	/*
624 	 * Intel Archiecture Software Developer's Manual section 7.1.3 specifies
625 	 * that a core serializing instruction such as "cpuid" should be
626 	 * executed on _each_ core before the new instruction is made visible.
627 	 */
628 	sync_core();
629 	return 0;
630 }
631 
632 /**
633  * text_poke_smp - Update instructions on a live kernel on SMP
634  * @addr: address to modify
635  * @opcode: source of the copy
636  * @len: length to copy
637  *
638  * Modify multi-byte instruction by using stop_machine() on SMP. This allows
639  * user to poke/set multi-byte text on SMP. Only non-NMI/MCE code modifying
640  * should be allowed, since stop_machine() does _not_ protect code against
641  * NMI and MCE.
642  *
643  * Note: Must be called under get_online_cpus() and text_mutex.
644  */
text_poke_smp(void * addr,const void * opcode,size_t len)645 void *__kprobes text_poke_smp(void *addr, const void *opcode, size_t len)
646 {
647 	struct text_poke_params tpp;
648 	struct text_poke_param p;
649 
650 	p.addr = addr;
651 	p.opcode = opcode;
652 	p.len = len;
653 	tpp.params = &p;
654 	tpp.nparams = 1;
655 	atomic_set(&stop_machine_first, 1);
656 	wrote_text = 0;
657 	/* Use __stop_machine() because the caller already got online_cpus. */
658 	__stop_machine(stop_machine_text_poke, (void *)&tpp, cpu_online_mask);
659 	return addr;
660 }
661 
662 /**
663  * text_poke_smp_batch - Update instructions on a live kernel on SMP
664  * @params: an array of text_poke parameters
665  * @n: the number of elements in params.
666  *
667  * Modify multi-byte instruction by using stop_machine() on SMP. Since the
668  * stop_machine() is heavy task, it is better to aggregate text_poke requests
669  * and do it once if possible.
670  *
671  * Note: Must be called under get_online_cpus() and text_mutex.
672  */
text_poke_smp_batch(struct text_poke_param * params,int n)673 void __kprobes text_poke_smp_batch(struct text_poke_param *params, int n)
674 {
675 	struct text_poke_params tpp = {.params = params, .nparams = n};
676 
677 	atomic_set(&stop_machine_first, 1);
678 	wrote_text = 0;
679 	__stop_machine(stop_machine_text_poke, (void *)&tpp, NULL);
680 }
681 
682 #if defined(CONFIG_DYNAMIC_FTRACE) || defined(HAVE_JUMP_LABEL)
683 
684 #ifdef CONFIG_X86_64
685 unsigned char ideal_nop5[5] = { 0x66, 0x66, 0x66, 0x66, 0x90 };
686 #else
687 unsigned char ideal_nop5[5] = { 0x3e, 0x8d, 0x74, 0x26, 0x00 };
688 #endif
689 
arch_init_ideal_nop5(void)690 void __init arch_init_ideal_nop5(void)
691 {
692 	/*
693 	 * There is no good nop for all x86 archs.  This selection
694 	 * algorithm should be unified with the one in find_nop_table(),
695 	 * but this should be good enough for now.
696 	 *
697 	 * For cases other than the ones below, use the safe (as in
698 	 * always functional) defaults above.
699 	 */
700 #ifdef CONFIG_X86_64
701 	/* Don't use these on 32 bits due to broken virtualizers */
702 	if (boot_cpu_data.x86_vendor == X86_VENDOR_INTEL)
703 		memcpy(ideal_nop5, p6_nops[5], 5);
704 #endif
705 }
706 #endif
707