xref: /openbmc/linux/mm/util.c (revision 2345ef96)
1457c8996SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
216d69265SAndrew Morton #include <linux/mm.h>
330992c97SMatt Mackall #include <linux/slab.h>
430992c97SMatt Mackall #include <linux/string.h>
53b32123dSGideon Israel Dsouza #include <linux/compiler.h>
6b95f1b31SPaul Gortmaker #include <linux/export.h>
796840aa0SDavi Arnaut #include <linux/err.h>
83b8f14b4SAdrian Bunk #include <linux/sched.h>
96e84f315SIngo Molnar #include <linux/sched/mm.h>
1079eb597cSDaniel Jordan #include <linux/sched/signal.h>
1168db0cf1SIngo Molnar #include <linux/sched/task_stack.h>
12eb36c587SAl Viro #include <linux/security.h>
139800339bSShaohua Li #include <linux/swap.h>
1433806f06SShaohua Li #include <linux/swapops.h>
1500619bccSJerome Marchand #include <linux/mman.h>
1600619bccSJerome Marchand #include <linux/hugetlb.h>
1739f1f78dSAl Viro #include <linux/vmalloc.h>
18897ab3e0SMike Rapoport #include <linux/userfaultfd_k.h>
19649775beSAlexandre Ghiti #include <linux/elf.h>
2067f3977fSAlexandre Ghiti #include <linux/elf-randomize.h>
2167f3977fSAlexandre Ghiti #include <linux/personality.h>
22649775beSAlexandre Ghiti #include <linux/random.h>
2367f3977fSAlexandre Ghiti #include <linux/processor.h>
2467f3977fSAlexandre Ghiti #include <linux/sizes.h>
2567f3977fSAlexandre Ghiti #include <linux/compat.h>
2600619bccSJerome Marchand 
277c0f6ba6SLinus Torvalds #include <linux/uaccess.h>
2830992c97SMatt Mackall 
296038def0SNamhyung Kim #include "internal.h"
30014bb1deSNeilBrown #include "swap.h"
316038def0SNamhyung Kim 
32a4bb1e43SAndrzej Hajda /**
33a4bb1e43SAndrzej Hajda  * kfree_const - conditionally free memory
34a4bb1e43SAndrzej Hajda  * @x: pointer to the memory
35a4bb1e43SAndrzej Hajda  *
36a4bb1e43SAndrzej Hajda  * Function calls kfree only if @x is not in .rodata section.
37a4bb1e43SAndrzej Hajda  */
kfree_const(const void * x)38a4bb1e43SAndrzej Hajda void kfree_const(const void *x)
39a4bb1e43SAndrzej Hajda {
40a4bb1e43SAndrzej Hajda 	if (!is_kernel_rodata((unsigned long)x))
41a4bb1e43SAndrzej Hajda 		kfree(x);
42a4bb1e43SAndrzej Hajda }
43a4bb1e43SAndrzej Hajda EXPORT_SYMBOL(kfree_const);
44a4bb1e43SAndrzej Hajda 
4530992c97SMatt Mackall /**
4630992c97SMatt Mackall  * kstrdup - allocate space for and copy an existing string
4730992c97SMatt Mackall  * @s: the string to duplicate
4830992c97SMatt Mackall  * @gfp: the GFP mask used in the kmalloc() call when allocating memory
49a862f68aSMike Rapoport  *
50a862f68aSMike Rapoport  * Return: newly allocated copy of @s or %NULL in case of error
5130992c97SMatt Mackall  */
522a6772ebSAlexey Dobriyan noinline
kstrdup(const char * s,gfp_t gfp)5330992c97SMatt Mackall char *kstrdup(const char *s, gfp_t gfp)
5430992c97SMatt Mackall {
5530992c97SMatt Mackall 	size_t len;
5630992c97SMatt Mackall 	char *buf;
5730992c97SMatt Mackall 
5830992c97SMatt Mackall 	if (!s)
5930992c97SMatt Mackall 		return NULL;
6030992c97SMatt Mackall 
6130992c97SMatt Mackall 	len = strlen(s) + 1;
621d2c8eeaSChristoph Hellwig 	buf = kmalloc_track_caller(len, gfp);
6330992c97SMatt Mackall 	if (buf)
6430992c97SMatt Mackall 		memcpy(buf, s, len);
6530992c97SMatt Mackall 	return buf;
6630992c97SMatt Mackall }
6730992c97SMatt Mackall EXPORT_SYMBOL(kstrdup);
6896840aa0SDavi Arnaut 
691a2f67b4SAlexey Dobriyan /**
70a4bb1e43SAndrzej Hajda  * kstrdup_const - conditionally duplicate an existing const string
71a4bb1e43SAndrzej Hajda  * @s: the string to duplicate
72a4bb1e43SAndrzej Hajda  * @gfp: the GFP mask used in the kmalloc() call when allocating memory
73a4bb1e43SAndrzej Hajda  *
74295a1730SBartosz Golaszewski  * Note: Strings allocated by kstrdup_const should be freed by kfree_const and
75295a1730SBartosz Golaszewski  * must not be passed to krealloc().
76a862f68aSMike Rapoport  *
77a862f68aSMike Rapoport  * Return: source string if it is in .rodata section otherwise
78a862f68aSMike Rapoport  * fallback to kstrdup.
79a4bb1e43SAndrzej Hajda  */
kstrdup_const(const char * s,gfp_t gfp)80a4bb1e43SAndrzej Hajda const char *kstrdup_const(const char *s, gfp_t gfp)
81a4bb1e43SAndrzej Hajda {
82a4bb1e43SAndrzej Hajda 	if (is_kernel_rodata((unsigned long)s))
83a4bb1e43SAndrzej Hajda 		return s;
84a4bb1e43SAndrzej Hajda 
85a4bb1e43SAndrzej Hajda 	return kstrdup(s, gfp);
86a4bb1e43SAndrzej Hajda }
87a4bb1e43SAndrzej Hajda EXPORT_SYMBOL(kstrdup_const);
88a4bb1e43SAndrzej Hajda 
89a4bb1e43SAndrzej Hajda /**
901e66df3eSJeremy Fitzhardinge  * kstrndup - allocate space for and copy an existing string
911e66df3eSJeremy Fitzhardinge  * @s: the string to duplicate
921e66df3eSJeremy Fitzhardinge  * @max: read at most @max chars from @s
931e66df3eSJeremy Fitzhardinge  * @gfp: the GFP mask used in the kmalloc() call when allocating memory
94f3515741SDavid Howells  *
95f3515741SDavid Howells  * Note: Use kmemdup_nul() instead if the size is known exactly.
96a862f68aSMike Rapoport  *
97a862f68aSMike Rapoport  * Return: newly allocated copy of @s or %NULL in case of error
981e66df3eSJeremy Fitzhardinge  */
kstrndup(const char * s,size_t max,gfp_t gfp)991e66df3eSJeremy Fitzhardinge char *kstrndup(const char *s, size_t max, gfp_t gfp)
1001e66df3eSJeremy Fitzhardinge {
1011e66df3eSJeremy Fitzhardinge 	size_t len;
1021e66df3eSJeremy Fitzhardinge 	char *buf;
1031e66df3eSJeremy Fitzhardinge 
1041e66df3eSJeremy Fitzhardinge 	if (!s)
1051e66df3eSJeremy Fitzhardinge 		return NULL;
1061e66df3eSJeremy Fitzhardinge 
1071e66df3eSJeremy Fitzhardinge 	len = strnlen(s, max);
1081e66df3eSJeremy Fitzhardinge 	buf = kmalloc_track_caller(len+1, gfp);
1091e66df3eSJeremy Fitzhardinge 	if (buf) {
1101e66df3eSJeremy Fitzhardinge 		memcpy(buf, s, len);
1111e66df3eSJeremy Fitzhardinge 		buf[len] = '\0';
1121e66df3eSJeremy Fitzhardinge 	}
1131e66df3eSJeremy Fitzhardinge 	return buf;
1141e66df3eSJeremy Fitzhardinge }
1151e66df3eSJeremy Fitzhardinge EXPORT_SYMBOL(kstrndup);
1161e66df3eSJeremy Fitzhardinge 
1171e66df3eSJeremy Fitzhardinge /**
1181a2f67b4SAlexey Dobriyan  * kmemdup - duplicate region of memory
1191a2f67b4SAlexey Dobriyan  *
1201a2f67b4SAlexey Dobriyan  * @src: memory region to duplicate
1211a2f67b4SAlexey Dobriyan  * @len: memory region length
1221a2f67b4SAlexey Dobriyan  * @gfp: GFP mask to use
123a862f68aSMike Rapoport  *
1240b7b8704SHao Sun  * Return: newly allocated copy of @src or %NULL in case of error,
1250b7b8704SHao Sun  * result is physically contiguous. Use kfree() to free.
1261a2f67b4SAlexey Dobriyan  */
kmemdup(const void * src,size_t len,gfp_t gfp)1271a2f67b4SAlexey Dobriyan void *kmemdup(const void *src, size_t len, gfp_t gfp)
1281a2f67b4SAlexey Dobriyan {
1291a2f67b4SAlexey Dobriyan 	void *p;
1301a2f67b4SAlexey Dobriyan 
1311d2c8eeaSChristoph Hellwig 	p = kmalloc_track_caller(len, gfp);
1321a2f67b4SAlexey Dobriyan 	if (p)
1331a2f67b4SAlexey Dobriyan 		memcpy(p, src, len);
1341a2f67b4SAlexey Dobriyan 	return p;
1351a2f67b4SAlexey Dobriyan }
1361a2f67b4SAlexey Dobriyan EXPORT_SYMBOL(kmemdup);
1371a2f67b4SAlexey Dobriyan 
138ef2ad80cSChristoph Lameter /**
1390b7b8704SHao Sun  * kvmemdup - duplicate region of memory
1400b7b8704SHao Sun  *
1410b7b8704SHao Sun  * @src: memory region to duplicate
1420b7b8704SHao Sun  * @len: memory region length
1430b7b8704SHao Sun  * @gfp: GFP mask to use
1440b7b8704SHao Sun  *
1450b7b8704SHao Sun  * Return: newly allocated copy of @src or %NULL in case of error,
1460b7b8704SHao Sun  * result may be not physically contiguous. Use kvfree() to free.
1470b7b8704SHao Sun  */
kvmemdup(const void * src,size_t len,gfp_t gfp)1480b7b8704SHao Sun void *kvmemdup(const void *src, size_t len, gfp_t gfp)
1490b7b8704SHao Sun {
1500b7b8704SHao Sun 	void *p;
1510b7b8704SHao Sun 
1520b7b8704SHao Sun 	p = kvmalloc(len, gfp);
1530b7b8704SHao Sun 	if (p)
1540b7b8704SHao Sun 		memcpy(p, src, len);
1550b7b8704SHao Sun 	return p;
1560b7b8704SHao Sun }
1570b7b8704SHao Sun EXPORT_SYMBOL(kvmemdup);
1580b7b8704SHao Sun 
1590b7b8704SHao Sun /**
160f3515741SDavid Howells  * kmemdup_nul - Create a NUL-terminated string from unterminated data
161f3515741SDavid Howells  * @s: The data to stringify
162f3515741SDavid Howells  * @len: The size of the data
163f3515741SDavid Howells  * @gfp: the GFP mask used in the kmalloc() call when allocating memory
164a862f68aSMike Rapoport  *
165a862f68aSMike Rapoport  * Return: newly allocated copy of @s with NUL-termination or %NULL in
166a862f68aSMike Rapoport  * case of error
167f3515741SDavid Howells  */
kmemdup_nul(const char * s,size_t len,gfp_t gfp)168f3515741SDavid Howells char *kmemdup_nul(const char *s, size_t len, gfp_t gfp)
169f3515741SDavid Howells {
170f3515741SDavid Howells 	char *buf;
171f3515741SDavid Howells 
172f3515741SDavid Howells 	if (!s)
173f3515741SDavid Howells 		return NULL;
174f3515741SDavid Howells 
175f3515741SDavid Howells 	buf = kmalloc_track_caller(len + 1, gfp);
176f3515741SDavid Howells 	if (buf) {
177f3515741SDavid Howells 		memcpy(buf, s, len);
178f3515741SDavid Howells 		buf[len] = '\0';
179f3515741SDavid Howells 	}
180f3515741SDavid Howells 	return buf;
181f3515741SDavid Howells }
182f3515741SDavid Howells EXPORT_SYMBOL(kmemdup_nul);
183f3515741SDavid Howells 
184f3515741SDavid Howells /**
185610a77e0SLi Zefan  * memdup_user - duplicate memory region from user space
186610a77e0SLi Zefan  *
187610a77e0SLi Zefan  * @src: source address in user space
188610a77e0SLi Zefan  * @len: number of bytes to copy
189610a77e0SLi Zefan  *
190a862f68aSMike Rapoport  * Return: an ERR_PTR() on failure.  Result is physically
19150fd2f29SAl Viro  * contiguous, to be freed by kfree().
192610a77e0SLi Zefan  */
memdup_user(const void __user * src,size_t len)193610a77e0SLi Zefan void *memdup_user(const void __user *src, size_t len)
194610a77e0SLi Zefan {
195610a77e0SLi Zefan 	void *p;
196610a77e0SLi Zefan 
1976c8fcc09SDaniel Vetter 	p = kmalloc_track_caller(len, GFP_USER | __GFP_NOWARN);
198610a77e0SLi Zefan 	if (!p)
199610a77e0SLi Zefan 		return ERR_PTR(-ENOMEM);
200610a77e0SLi Zefan 
201610a77e0SLi Zefan 	if (copy_from_user(p, src, len)) {
202610a77e0SLi Zefan 		kfree(p);
203610a77e0SLi Zefan 		return ERR_PTR(-EFAULT);
204610a77e0SLi Zefan 	}
205610a77e0SLi Zefan 
206610a77e0SLi Zefan 	return p;
207610a77e0SLi Zefan }
208610a77e0SLi Zefan EXPORT_SYMBOL(memdup_user);
209610a77e0SLi Zefan 
21050fd2f29SAl Viro /**
21150fd2f29SAl Viro  * vmemdup_user - duplicate memory region from user space
21250fd2f29SAl Viro  *
21350fd2f29SAl Viro  * @src: source address in user space
21450fd2f29SAl Viro  * @len: number of bytes to copy
21550fd2f29SAl Viro  *
216a862f68aSMike Rapoport  * Return: an ERR_PTR() on failure.  Result may be not
21750fd2f29SAl Viro  * physically contiguous.  Use kvfree() to free.
21850fd2f29SAl Viro  */
vmemdup_user(const void __user * src,size_t len)21950fd2f29SAl Viro void *vmemdup_user(const void __user *src, size_t len)
22050fd2f29SAl Viro {
22150fd2f29SAl Viro 	void *p;
22250fd2f29SAl Viro 
22350fd2f29SAl Viro 	p = kvmalloc(len, GFP_USER);
22450fd2f29SAl Viro 	if (!p)
22550fd2f29SAl Viro 		return ERR_PTR(-ENOMEM);
22650fd2f29SAl Viro 
22750fd2f29SAl Viro 	if (copy_from_user(p, src, len)) {
22850fd2f29SAl Viro 		kvfree(p);
22950fd2f29SAl Viro 		return ERR_PTR(-EFAULT);
23050fd2f29SAl Viro 	}
23150fd2f29SAl Viro 
23250fd2f29SAl Viro 	return p;
23350fd2f29SAl Viro }
23450fd2f29SAl Viro EXPORT_SYMBOL(vmemdup_user);
23550fd2f29SAl Viro 
236b86181f1SMike Rapoport /**
23796840aa0SDavi Arnaut  * strndup_user - duplicate an existing string from user space
23896840aa0SDavi Arnaut  * @s: The string to duplicate
23996840aa0SDavi Arnaut  * @n: Maximum number of bytes to copy, including the trailing NUL.
240a862f68aSMike Rapoport  *
241e9145521SAndrew Morton  * Return: newly allocated copy of @s or an ERR_PTR() in case of error
24296840aa0SDavi Arnaut  */
strndup_user(const char __user * s,long n)24396840aa0SDavi Arnaut char *strndup_user(const char __user *s, long n)
24496840aa0SDavi Arnaut {
24596840aa0SDavi Arnaut 	char *p;
24696840aa0SDavi Arnaut 	long length;
24796840aa0SDavi Arnaut 
24896840aa0SDavi Arnaut 	length = strnlen_user(s, n);
24996840aa0SDavi Arnaut 
25096840aa0SDavi Arnaut 	if (!length)
25196840aa0SDavi Arnaut 		return ERR_PTR(-EFAULT);
25296840aa0SDavi Arnaut 
25396840aa0SDavi Arnaut 	if (length > n)
25496840aa0SDavi Arnaut 		return ERR_PTR(-EINVAL);
25596840aa0SDavi Arnaut 
25690d74045SJulia Lawall 	p = memdup_user(s, length);
25796840aa0SDavi Arnaut 
25890d74045SJulia Lawall 	if (IS_ERR(p))
25990d74045SJulia Lawall 		return p;
26096840aa0SDavi Arnaut 
26196840aa0SDavi Arnaut 	p[length - 1] = '\0';
26296840aa0SDavi Arnaut 
26396840aa0SDavi Arnaut 	return p;
26496840aa0SDavi Arnaut }
26596840aa0SDavi Arnaut EXPORT_SYMBOL(strndup_user);
26616d69265SAndrew Morton 
267e9d408e1SAl Viro /**
268e9d408e1SAl Viro  * memdup_user_nul - duplicate memory region from user space and NUL-terminate
269e9d408e1SAl Viro  *
270e9d408e1SAl Viro  * @src: source address in user space
271e9d408e1SAl Viro  * @len: number of bytes to copy
272e9d408e1SAl Viro  *
273a862f68aSMike Rapoport  * Return: an ERR_PTR() on failure.
274e9d408e1SAl Viro  */
memdup_user_nul(const void __user * src,size_t len)275e9d408e1SAl Viro void *memdup_user_nul(const void __user *src, size_t len)
276e9d408e1SAl Viro {
277e9d408e1SAl Viro 	char *p;
278e9d408e1SAl Viro 
279e9d408e1SAl Viro 	/*
280e9d408e1SAl Viro 	 * Always use GFP_KERNEL, since copy_from_user() can sleep and
281e9d408e1SAl Viro 	 * cause pagefault, which makes it pointless to use GFP_NOFS
282e9d408e1SAl Viro 	 * or GFP_ATOMIC.
283e9d408e1SAl Viro 	 */
284e9d408e1SAl Viro 	p = kmalloc_track_caller(len + 1, GFP_KERNEL);
285e9d408e1SAl Viro 	if (!p)
286e9d408e1SAl Viro 		return ERR_PTR(-ENOMEM);
287e9d408e1SAl Viro 
288e9d408e1SAl Viro 	if (copy_from_user(p, src, len)) {
289e9d408e1SAl Viro 		kfree(p);
290e9d408e1SAl Viro 		return ERR_PTR(-EFAULT);
291e9d408e1SAl Viro 	}
292e9d408e1SAl Viro 	p[len] = '\0';
293e9d408e1SAl Viro 
294e9d408e1SAl Viro 	return p;
295e9d408e1SAl Viro }
296e9d408e1SAl Viro EXPORT_SYMBOL(memdup_user_nul);
297e9d408e1SAl Viro 
298b7643757SSiddhesh Poyarekar /* Check if the vma is being used as a stack by this task */
vma_is_stack_for_current(struct vm_area_struct * vma)299d17af505SAndy Lutomirski int vma_is_stack_for_current(struct vm_area_struct *vma)
300b7643757SSiddhesh Poyarekar {
301d17af505SAndy Lutomirski 	struct task_struct * __maybe_unused t = current;
302d17af505SAndy Lutomirski 
303b7643757SSiddhesh Poyarekar 	return (vma->vm_start <= KSTK_ESP(t) && vma->vm_end >= KSTK_ESP(t));
304b7643757SSiddhesh Poyarekar }
305b7643757SSiddhesh Poyarekar 
306295992fbSChristian König /*
307295992fbSChristian König  * Change backing file, only valid to use during initial VMA setup.
308295992fbSChristian König  */
vma_set_file(struct vm_area_struct * vma,struct file * file)309295992fbSChristian König void vma_set_file(struct vm_area_struct *vma, struct file *file)
310295992fbSChristian König {
311295992fbSChristian König 	/* Changing an anonymous vma with this is illegal */
312295992fbSChristian König 	get_file(file);
313295992fbSChristian König 	swap(vma->vm_file, file);
314295992fbSChristian König 	fput(file);
315295992fbSChristian König }
316295992fbSChristian König EXPORT_SYMBOL(vma_set_file);
317295992fbSChristian König 
318649775beSAlexandre Ghiti #ifndef STACK_RND_MASK
319649775beSAlexandre Ghiti #define STACK_RND_MASK (0x7ff >> (PAGE_SHIFT - 12))     /* 8MB of VA */
320649775beSAlexandre Ghiti #endif
321649775beSAlexandre Ghiti 
randomize_stack_top(unsigned long stack_top)322649775beSAlexandre Ghiti unsigned long randomize_stack_top(unsigned long stack_top)
323649775beSAlexandre Ghiti {
324649775beSAlexandre Ghiti 	unsigned long random_variable = 0;
325649775beSAlexandre Ghiti 
326649775beSAlexandre Ghiti 	if (current->flags & PF_RANDOMIZE) {
327649775beSAlexandre Ghiti 		random_variable = get_random_long();
328649775beSAlexandre Ghiti 		random_variable &= STACK_RND_MASK;
329649775beSAlexandre Ghiti 		random_variable <<= PAGE_SHIFT;
330649775beSAlexandre Ghiti 	}
331649775beSAlexandre Ghiti #ifdef CONFIG_STACK_GROWSUP
332649775beSAlexandre Ghiti 	return PAGE_ALIGN(stack_top) + random_variable;
333649775beSAlexandre Ghiti #else
334649775beSAlexandre Ghiti 	return PAGE_ALIGN(stack_top) - random_variable;
335649775beSAlexandre Ghiti #endif
336649775beSAlexandre Ghiti }
337649775beSAlexandre Ghiti 
3385ad7dd88SJason A. Donenfeld /**
3395ad7dd88SJason A. Donenfeld  * randomize_page - Generate a random, page aligned address
3405ad7dd88SJason A. Donenfeld  * @start:	The smallest acceptable address the caller will take.
3415ad7dd88SJason A. Donenfeld  * @range:	The size of the area, starting at @start, within which the
3425ad7dd88SJason A. Donenfeld  *		random address must fall.
3435ad7dd88SJason A. Donenfeld  *
3445ad7dd88SJason A. Donenfeld  * If @start + @range would overflow, @range is capped.
3455ad7dd88SJason A. Donenfeld  *
3465ad7dd88SJason A. Donenfeld  * NOTE: Historical use of randomize_range, which this replaces, presumed that
3475ad7dd88SJason A. Donenfeld  * @start was already page aligned.  We now align it regardless.
3485ad7dd88SJason A. Donenfeld  *
3495ad7dd88SJason A. Donenfeld  * Return: A page aligned address within [start, start + range).  On error,
3505ad7dd88SJason A. Donenfeld  * @start is returned.
3515ad7dd88SJason A. Donenfeld  */
randomize_page(unsigned long start,unsigned long range)3525ad7dd88SJason A. Donenfeld unsigned long randomize_page(unsigned long start, unsigned long range)
3535ad7dd88SJason A. Donenfeld {
3545ad7dd88SJason A. Donenfeld 	if (!PAGE_ALIGNED(start)) {
3555ad7dd88SJason A. Donenfeld 		range -= PAGE_ALIGN(start) - start;
3565ad7dd88SJason A. Donenfeld 		start = PAGE_ALIGN(start);
3575ad7dd88SJason A. Donenfeld 	}
3585ad7dd88SJason A. Donenfeld 
3595ad7dd88SJason A. Donenfeld 	if (start > ULONG_MAX - range)
3605ad7dd88SJason A. Donenfeld 		range = ULONG_MAX - start;
3615ad7dd88SJason A. Donenfeld 
3625ad7dd88SJason A. Donenfeld 	range >>= PAGE_SHIFT;
3635ad7dd88SJason A. Donenfeld 
3645ad7dd88SJason A. Donenfeld 	if (range == 0)
3655ad7dd88SJason A. Donenfeld 		return start;
3665ad7dd88SJason A. Donenfeld 
3675ad7dd88SJason A. Donenfeld 	return start + (get_random_long() % range << PAGE_SHIFT);
3685ad7dd88SJason A. Donenfeld }
3695ad7dd88SJason A. Donenfeld 
37067f3977fSAlexandre Ghiti #ifdef CONFIG_ARCH_WANT_DEFAULT_TOPDOWN_MMAP_LAYOUT
arch_randomize_brk(struct mm_struct * mm)371723820f3SChristophe Leroy unsigned long __weak arch_randomize_brk(struct mm_struct *mm)
372e7142bf5SAlexandre Ghiti {
373e7142bf5SAlexandre Ghiti 	/* Is the current task 32bit ? */
374e7142bf5SAlexandre Ghiti 	if (!IS_ENABLED(CONFIG_64BIT) || is_compat_task())
375e7142bf5SAlexandre Ghiti 		return randomize_page(mm->brk, SZ_32M);
376e7142bf5SAlexandre Ghiti 
377e7142bf5SAlexandre Ghiti 	return randomize_page(mm->brk, SZ_1G);
378e7142bf5SAlexandre Ghiti }
379e7142bf5SAlexandre Ghiti 
arch_mmap_rnd(void)38067f3977fSAlexandre Ghiti unsigned long arch_mmap_rnd(void)
38167f3977fSAlexandre Ghiti {
38267f3977fSAlexandre Ghiti 	unsigned long rnd;
38367f3977fSAlexandre Ghiti 
38467f3977fSAlexandre Ghiti #ifdef CONFIG_HAVE_ARCH_MMAP_RND_COMPAT_BITS
38567f3977fSAlexandre Ghiti 	if (is_compat_task())
38667f3977fSAlexandre Ghiti 		rnd = get_random_long() & ((1UL << mmap_rnd_compat_bits) - 1);
38767f3977fSAlexandre Ghiti 	else
38867f3977fSAlexandre Ghiti #endif /* CONFIG_HAVE_ARCH_MMAP_RND_COMPAT_BITS */
38967f3977fSAlexandre Ghiti 		rnd = get_random_long() & ((1UL << mmap_rnd_bits) - 1);
39067f3977fSAlexandre Ghiti 
39167f3977fSAlexandre Ghiti 	return rnd << PAGE_SHIFT;
39267f3977fSAlexandre Ghiti }
39367f3977fSAlexandre Ghiti 
mmap_is_legacy(struct rlimit * rlim_stack)39467f3977fSAlexandre Ghiti static int mmap_is_legacy(struct rlimit *rlim_stack)
39567f3977fSAlexandre Ghiti {
39667f3977fSAlexandre Ghiti 	if (current->personality & ADDR_COMPAT_LAYOUT)
39767f3977fSAlexandre Ghiti 		return 1;
39867f3977fSAlexandre Ghiti 
3993033cd43SHelge Deller 	/* On parisc the stack always grows up - so a unlimited stack should
4003033cd43SHelge Deller 	 * not be an indicator to use the legacy memory layout. */
4013033cd43SHelge Deller 	if (rlim_stack->rlim_cur == RLIM_INFINITY &&
4023033cd43SHelge Deller 		!IS_ENABLED(CONFIG_STACK_GROWSUP))
40367f3977fSAlexandre Ghiti 		return 1;
40467f3977fSAlexandre Ghiti 
40567f3977fSAlexandre Ghiti 	return sysctl_legacy_va_layout;
40667f3977fSAlexandre Ghiti }
40767f3977fSAlexandre Ghiti 
40867f3977fSAlexandre Ghiti /*
40967f3977fSAlexandre Ghiti  * Leave enough space between the mmap area and the stack to honour ulimit in
41067f3977fSAlexandre Ghiti  * the face of randomisation.
41167f3977fSAlexandre Ghiti  */
41267f3977fSAlexandre Ghiti #define MIN_GAP		(SZ_128M)
41367f3977fSAlexandre Ghiti #define MAX_GAP		(STACK_TOP / 6 * 5)
41467f3977fSAlexandre Ghiti 
mmap_base(unsigned long rnd,struct rlimit * rlim_stack)41567f3977fSAlexandre Ghiti static unsigned long mmap_base(unsigned long rnd, struct rlimit *rlim_stack)
41667f3977fSAlexandre Ghiti {
417*2345ef96SHelge Deller #ifdef CONFIG_STACK_GROWSUP
418*2345ef96SHelge Deller 	/*
419*2345ef96SHelge Deller 	 * For an upwards growing stack the calculation is much simpler.
420*2345ef96SHelge Deller 	 * Memory for the maximum stack size is reserved at the top of the
421*2345ef96SHelge Deller 	 * task. mmap_base starts directly below the stack and grows
422*2345ef96SHelge Deller 	 * downwards.
423*2345ef96SHelge Deller 	 */
424*2345ef96SHelge Deller 	return PAGE_ALIGN_DOWN(mmap_upper_limit(rlim_stack) - rnd);
425*2345ef96SHelge Deller #else
42667f3977fSAlexandre Ghiti 	unsigned long gap = rlim_stack->rlim_cur;
42767f3977fSAlexandre Ghiti 	unsigned long pad = stack_guard_gap;
42867f3977fSAlexandre Ghiti 
42967f3977fSAlexandre Ghiti 	/* Account for stack randomization if necessary */
43067f3977fSAlexandre Ghiti 	if (current->flags & PF_RANDOMIZE)
43167f3977fSAlexandre Ghiti 		pad += (STACK_RND_MASK << PAGE_SHIFT);
43267f3977fSAlexandre Ghiti 
43367f3977fSAlexandre Ghiti 	/* Values close to RLIM_INFINITY can overflow. */
43467f3977fSAlexandre Ghiti 	if (gap + pad > gap)
43567f3977fSAlexandre Ghiti 		gap += pad;
43667f3977fSAlexandre Ghiti 
43767f3977fSAlexandre Ghiti 	if (gap < MIN_GAP)
43867f3977fSAlexandre Ghiti 		gap = MIN_GAP;
43967f3977fSAlexandre Ghiti 	else if (gap > MAX_GAP)
44067f3977fSAlexandre Ghiti 		gap = MAX_GAP;
44167f3977fSAlexandre Ghiti 
44267f3977fSAlexandre Ghiti 	return PAGE_ALIGN(STACK_TOP - gap - rnd);
443*2345ef96SHelge Deller #endif
44467f3977fSAlexandre Ghiti }
44567f3977fSAlexandre Ghiti 
arch_pick_mmap_layout(struct mm_struct * mm,struct rlimit * rlim_stack)44667f3977fSAlexandre Ghiti void arch_pick_mmap_layout(struct mm_struct *mm, struct rlimit *rlim_stack)
44767f3977fSAlexandre Ghiti {
44867f3977fSAlexandre Ghiti 	unsigned long random_factor = 0UL;
44967f3977fSAlexandre Ghiti 
45067f3977fSAlexandre Ghiti 	if (current->flags & PF_RANDOMIZE)
45167f3977fSAlexandre Ghiti 		random_factor = arch_mmap_rnd();
45267f3977fSAlexandre Ghiti 
45367f3977fSAlexandre Ghiti 	if (mmap_is_legacy(rlim_stack)) {
45467f3977fSAlexandre Ghiti 		mm->mmap_base = TASK_UNMAPPED_BASE + random_factor;
45567f3977fSAlexandre Ghiti 		mm->get_unmapped_area = arch_get_unmapped_area;
45667f3977fSAlexandre Ghiti 	} else {
45767f3977fSAlexandre Ghiti 		mm->mmap_base = mmap_base(random_factor, rlim_stack);
45867f3977fSAlexandre Ghiti 		mm->get_unmapped_area = arch_get_unmapped_area_topdown;
45967f3977fSAlexandre Ghiti 	}
46067f3977fSAlexandre Ghiti }
46167f3977fSAlexandre Ghiti #elif defined(CONFIG_MMU) && !defined(HAVE_ARCH_PICK_MMAP_LAYOUT)
arch_pick_mmap_layout(struct mm_struct * mm,struct rlimit * rlim_stack)4628f2af155SKees Cook void arch_pick_mmap_layout(struct mm_struct *mm, struct rlimit *rlim_stack)
46316d69265SAndrew Morton {
46416d69265SAndrew Morton 	mm->mmap_base = TASK_UNMAPPED_BASE;
46516d69265SAndrew Morton 	mm->get_unmapped_area = arch_get_unmapped_area;
46616d69265SAndrew Morton }
46716d69265SAndrew Morton #endif
468912985dcSRusty Russell 
46979eb597cSDaniel Jordan /**
47079eb597cSDaniel Jordan  * __account_locked_vm - account locked pages to an mm's locked_vm
47179eb597cSDaniel Jordan  * @mm:          mm to account against
47279eb597cSDaniel Jordan  * @pages:       number of pages to account
47379eb597cSDaniel Jordan  * @inc:         %true if @pages should be considered positive, %false if not
47479eb597cSDaniel Jordan  * @task:        task used to check RLIMIT_MEMLOCK
47579eb597cSDaniel Jordan  * @bypass_rlim: %true if checking RLIMIT_MEMLOCK should be skipped
47679eb597cSDaniel Jordan  *
47779eb597cSDaniel Jordan  * Assumes @task and @mm are valid (i.e. at least one reference on each), and
478c1e8d7c6SMichel Lespinasse  * that mmap_lock is held as writer.
47979eb597cSDaniel Jordan  *
48079eb597cSDaniel Jordan  * Return:
48179eb597cSDaniel Jordan  * * 0       on success
48279eb597cSDaniel Jordan  * * -ENOMEM if RLIMIT_MEMLOCK would be exceeded.
48379eb597cSDaniel Jordan  */
__account_locked_vm(struct mm_struct * mm,unsigned long pages,bool inc,struct task_struct * task,bool bypass_rlim)48479eb597cSDaniel Jordan int __account_locked_vm(struct mm_struct *mm, unsigned long pages, bool inc,
48579eb597cSDaniel Jordan 			struct task_struct *task, bool bypass_rlim)
48679eb597cSDaniel Jordan {
48779eb597cSDaniel Jordan 	unsigned long locked_vm, limit;
48879eb597cSDaniel Jordan 	int ret = 0;
48979eb597cSDaniel Jordan 
49042fc5414SMichel Lespinasse 	mmap_assert_write_locked(mm);
49179eb597cSDaniel Jordan 
49279eb597cSDaniel Jordan 	locked_vm = mm->locked_vm;
49379eb597cSDaniel Jordan 	if (inc) {
49479eb597cSDaniel Jordan 		if (!bypass_rlim) {
49579eb597cSDaniel Jordan 			limit = task_rlimit(task, RLIMIT_MEMLOCK) >> PAGE_SHIFT;
49679eb597cSDaniel Jordan 			if (locked_vm + pages > limit)
49779eb597cSDaniel Jordan 				ret = -ENOMEM;
49879eb597cSDaniel Jordan 		}
49979eb597cSDaniel Jordan 		if (!ret)
50079eb597cSDaniel Jordan 			mm->locked_vm = locked_vm + pages;
50179eb597cSDaniel Jordan 	} else {
50279eb597cSDaniel Jordan 		WARN_ON_ONCE(pages > locked_vm);
50379eb597cSDaniel Jordan 		mm->locked_vm = locked_vm - pages;
50479eb597cSDaniel Jordan 	}
50579eb597cSDaniel Jordan 
50679eb597cSDaniel Jordan 	pr_debug("%s: [%d] caller %ps %c%lu %lu/%lu%s\n", __func__, task->pid,
50779eb597cSDaniel Jordan 		 (void *)_RET_IP_, (inc) ? '+' : '-', pages << PAGE_SHIFT,
50879eb597cSDaniel Jordan 		 locked_vm << PAGE_SHIFT, task_rlimit(task, RLIMIT_MEMLOCK),
50979eb597cSDaniel Jordan 		 ret ? " - exceeded" : "");
51079eb597cSDaniel Jordan 
51179eb597cSDaniel Jordan 	return ret;
51279eb597cSDaniel Jordan }
51379eb597cSDaniel Jordan EXPORT_SYMBOL_GPL(__account_locked_vm);
51479eb597cSDaniel Jordan 
51579eb597cSDaniel Jordan /**
51679eb597cSDaniel Jordan  * account_locked_vm - account locked pages to an mm's locked_vm
51779eb597cSDaniel Jordan  * @mm:          mm to account against, may be NULL
51879eb597cSDaniel Jordan  * @pages:       number of pages to account
51979eb597cSDaniel Jordan  * @inc:         %true if @pages should be considered positive, %false if not
52079eb597cSDaniel Jordan  *
52179eb597cSDaniel Jordan  * Assumes a non-NULL @mm is valid (i.e. at least one reference on it).
52279eb597cSDaniel Jordan  *
52379eb597cSDaniel Jordan  * Return:
52479eb597cSDaniel Jordan  * * 0       on success, or if mm is NULL
52579eb597cSDaniel Jordan  * * -ENOMEM if RLIMIT_MEMLOCK would be exceeded.
52679eb597cSDaniel Jordan  */
account_locked_vm(struct mm_struct * mm,unsigned long pages,bool inc)52779eb597cSDaniel Jordan int account_locked_vm(struct mm_struct *mm, unsigned long pages, bool inc)
52879eb597cSDaniel Jordan {
52979eb597cSDaniel Jordan 	int ret;
53079eb597cSDaniel Jordan 
53179eb597cSDaniel Jordan 	if (pages == 0 || !mm)
53279eb597cSDaniel Jordan 		return 0;
53379eb597cSDaniel Jordan 
534d8ed45c5SMichel Lespinasse 	mmap_write_lock(mm);
53579eb597cSDaniel Jordan 	ret = __account_locked_vm(mm, pages, inc, current,
53679eb597cSDaniel Jordan 				  capable(CAP_IPC_LOCK));
537d8ed45c5SMichel Lespinasse 	mmap_write_unlock(mm);
53879eb597cSDaniel Jordan 
53979eb597cSDaniel Jordan 	return ret;
54079eb597cSDaniel Jordan }
54179eb597cSDaniel Jordan EXPORT_SYMBOL_GPL(account_locked_vm);
54279eb597cSDaniel Jordan 
vm_mmap_pgoff(struct file * file,unsigned long addr,unsigned long len,unsigned long prot,unsigned long flag,unsigned long pgoff)543eb36c587SAl Viro unsigned long vm_mmap_pgoff(struct file *file, unsigned long addr,
544eb36c587SAl Viro 	unsigned long len, unsigned long prot,
5459fbeb5abSMichal Hocko 	unsigned long flag, unsigned long pgoff)
546eb36c587SAl Viro {
547eb36c587SAl Viro 	unsigned long ret;
548eb36c587SAl Viro 	struct mm_struct *mm = current->mm;
54941badc15SMichel Lespinasse 	unsigned long populate;
550897ab3e0SMike Rapoport 	LIST_HEAD(uf);
551eb36c587SAl Viro 
552eb36c587SAl Viro 	ret = security_mmap_file(file, prot, flag);
553eb36c587SAl Viro 	if (!ret) {
554d8ed45c5SMichel Lespinasse 		if (mmap_write_lock_killable(mm))
555dc0ef0dfSMichal Hocko 			return -EINTR;
556592b5fadSYu-cheng Yu 		ret = do_mmap(file, addr, len, prot, flag, 0, pgoff, &populate,
55745e55300SPeter Collingbourne 			      &uf);
558d8ed45c5SMichel Lespinasse 		mmap_write_unlock(mm);
559897ab3e0SMike Rapoport 		userfaultfd_unmap_complete(mm, &uf);
56041badc15SMichel Lespinasse 		if (populate)
56141badc15SMichel Lespinasse 			mm_populate(ret, populate);
562eb36c587SAl Viro 	}
563eb36c587SAl Viro 	return ret;
564eb36c587SAl Viro }
565eb36c587SAl Viro 
vm_mmap(struct file * file,unsigned long addr,unsigned long len,unsigned long prot,unsigned long flag,unsigned long offset)566eb36c587SAl Viro unsigned long vm_mmap(struct file *file, unsigned long addr,
567eb36c587SAl Viro 	unsigned long len, unsigned long prot,
568eb36c587SAl Viro 	unsigned long flag, unsigned long offset)
569eb36c587SAl Viro {
570eb36c587SAl Viro 	if (unlikely(offset + PAGE_ALIGN(len) < offset))
571eb36c587SAl Viro 		return -EINVAL;
572ea53cde0SAlexander Kuleshov 	if (unlikely(offset_in_page(offset)))
573eb36c587SAl Viro 		return -EINVAL;
574eb36c587SAl Viro 
5759fbeb5abSMichal Hocko 	return vm_mmap_pgoff(file, addr, len, prot, flag, offset >> PAGE_SHIFT);
576eb36c587SAl Viro }
577eb36c587SAl Viro EXPORT_SYMBOL(vm_mmap);
578eb36c587SAl Viro 
579a7c3e901SMichal Hocko /**
580a7c3e901SMichal Hocko  * kvmalloc_node - attempt to allocate physically contiguous memory, but upon
581a7c3e901SMichal Hocko  * failure, fall back to non-contiguous (vmalloc) allocation.
582a7c3e901SMichal Hocko  * @size: size of the request.
583a7c3e901SMichal Hocko  * @flags: gfp mask for the allocation - must be compatible (superset) with GFP_KERNEL.
584a7c3e901SMichal Hocko  * @node: numa node to allocate from
585a7c3e901SMichal Hocko  *
586a7c3e901SMichal Hocko  * Uses kmalloc to get the memory but if the allocation fails then falls back
587a7c3e901SMichal Hocko  * to the vmalloc allocator. Use kvfree for freeing the memory.
588a7c3e901SMichal Hocko  *
589a421ef30SMichal Hocko  * GFP_NOWAIT and GFP_ATOMIC are not supported, neither is the __GFP_NORETRY modifier.
590cc965a29SMichal Hocko  * __GFP_RETRY_MAYFAIL is supported, and it should be used only if kmalloc is
591cc965a29SMichal Hocko  * preferable to the vmalloc fallback, due to visible performance drawbacks.
592a7c3e901SMichal Hocko  *
593a862f68aSMike Rapoport  * Return: pointer to the allocated memory of %NULL in case of failure
594a7c3e901SMichal Hocko  */
kvmalloc_node(size_t size,gfp_t flags,int node)595a7c3e901SMichal Hocko void *kvmalloc_node(size_t size, gfp_t flags, int node)
596a7c3e901SMichal Hocko {
597a7c3e901SMichal Hocko 	gfp_t kmalloc_flags = flags;
598a7c3e901SMichal Hocko 	void *ret;
599a7c3e901SMichal Hocko 
600a7c3e901SMichal Hocko 	/*
6014f4f2ba9SMichal Hocko 	 * We want to attempt a large physically contiguous block first because
6024f4f2ba9SMichal Hocko 	 * it is less likely to fragment multiple larger blocks and therefore
6034f4f2ba9SMichal Hocko 	 * contribute to a long term fragmentation less than vmalloc fallback.
6044f4f2ba9SMichal Hocko 	 * However make sure that larger requests are not too disruptive - no
6054f4f2ba9SMichal Hocko 	 * OOM killer and no allocation failure warnings as we have a fallback.
606a7c3e901SMichal Hocko 	 */
6076c5ab651SMichal Hocko 	if (size > PAGE_SIZE) {
6086c5ab651SMichal Hocko 		kmalloc_flags |= __GFP_NOWARN;
6096c5ab651SMichal Hocko 
610cc965a29SMichal Hocko 		if (!(kmalloc_flags & __GFP_RETRY_MAYFAIL))
6116c5ab651SMichal Hocko 			kmalloc_flags |= __GFP_NORETRY;
612a421ef30SMichal Hocko 
613a421ef30SMichal Hocko 		/* nofail semantic is implemented by the vmalloc fallback */
614a421ef30SMichal Hocko 		kmalloc_flags &= ~__GFP_NOFAIL;
6156c5ab651SMichal Hocko 	}
616a7c3e901SMichal Hocko 
617a7c3e901SMichal Hocko 	ret = kmalloc_node(size, kmalloc_flags, node);
618a7c3e901SMichal Hocko 
619a7c3e901SMichal Hocko 	/*
620a7c3e901SMichal Hocko 	 * It doesn't really make sense to fallback to vmalloc for sub page
621a7c3e901SMichal Hocko 	 * requests
622a7c3e901SMichal Hocko 	 */
623a7c3e901SMichal Hocko 	if (ret || size <= PAGE_SIZE)
624a7c3e901SMichal Hocko 		return ret;
625a7c3e901SMichal Hocko 
62630c19366SFlorian Westphal 	/* non-sleeping allocations are not supported by vmalloc */
62730c19366SFlorian Westphal 	if (!gfpflags_allow_blocking(flags))
62830c19366SFlorian Westphal 		return NULL;
62930c19366SFlorian Westphal 
6307661809dSLinus Torvalds 	/* Don't even allow crazy sizes */
6310708a0afSDaniel Borkmann 	if (unlikely(size > INT_MAX)) {
6320708a0afSDaniel Borkmann 		WARN_ON_ONCE(!(flags & __GFP_NOWARN));
6337661809dSLinus Torvalds 		return NULL;
6340708a0afSDaniel Borkmann 	}
6357661809dSLinus Torvalds 
6369becb688SLinus Torvalds 	/*
6379becb688SLinus Torvalds 	 * kvmalloc() can always use VM_ALLOW_HUGE_VMAP,
6389becb688SLinus Torvalds 	 * since the callers already cannot assume anything
6399becb688SLinus Torvalds 	 * about the resulting pointer, and cannot play
6409becb688SLinus Torvalds 	 * protection games.
6419becb688SLinus Torvalds 	 */
6429becb688SLinus Torvalds 	return __vmalloc_node_range(size, 1, VMALLOC_START, VMALLOC_END,
6439becb688SLinus Torvalds 			flags, PAGE_KERNEL, VM_ALLOW_HUGE_VMAP,
6449becb688SLinus Torvalds 			node, __builtin_return_address(0));
645a7c3e901SMichal Hocko }
646a7c3e901SMichal Hocko EXPORT_SYMBOL(kvmalloc_node);
647a7c3e901SMichal Hocko 
648ff4dc772SMike Rapoport /**
64904b8e946SAndrew Morton  * kvfree() - Free memory.
65004b8e946SAndrew Morton  * @addr: Pointer to allocated memory.
651ff4dc772SMike Rapoport  *
65204b8e946SAndrew Morton  * kvfree frees memory allocated by any of vmalloc(), kmalloc() or kvmalloc().
65304b8e946SAndrew Morton  * It is slightly more efficient to use kfree() or vfree() if you are certain
65404b8e946SAndrew Morton  * that you know which one to use.
65504b8e946SAndrew Morton  *
65652414d33SAndrey Ryabinin  * Context: Either preemptible task context or not-NMI interrupt.
657ff4dc772SMike Rapoport  */
kvfree(const void * addr)65839f1f78dSAl Viro void kvfree(const void *addr)
65939f1f78dSAl Viro {
66039f1f78dSAl Viro 	if (is_vmalloc_addr(addr))
66139f1f78dSAl Viro 		vfree(addr);
66239f1f78dSAl Viro 	else
66339f1f78dSAl Viro 		kfree(addr);
66439f1f78dSAl Viro }
66539f1f78dSAl Viro EXPORT_SYMBOL(kvfree);
66639f1f78dSAl Viro 
667d4eaa283SWaiman Long /**
668d4eaa283SWaiman Long  * kvfree_sensitive - Free a data object containing sensitive information.
669d4eaa283SWaiman Long  * @addr: address of the data object to be freed.
670d4eaa283SWaiman Long  * @len: length of the data object.
671d4eaa283SWaiman Long  *
672d4eaa283SWaiman Long  * Use the special memzero_explicit() function to clear the content of a
673d4eaa283SWaiman Long  * kvmalloc'ed object containing sensitive data to make sure that the
674d4eaa283SWaiman Long  * compiler won't optimize out the data clearing.
675d4eaa283SWaiman Long  */
kvfree_sensitive(const void * addr,size_t len)676d4eaa283SWaiman Long void kvfree_sensitive(const void *addr, size_t len)
677d4eaa283SWaiman Long {
678d4eaa283SWaiman Long 	if (likely(!ZERO_OR_NULL_PTR(addr))) {
679d4eaa283SWaiman Long 		memzero_explicit((void *)addr, len);
680d4eaa283SWaiman Long 		kvfree(addr);
681d4eaa283SWaiman Long 	}
682d4eaa283SWaiman Long }
683d4eaa283SWaiman Long EXPORT_SYMBOL(kvfree_sensitive);
684d4eaa283SWaiman Long 
kvrealloc(const void * p,size_t oldsize,size_t newsize,gfp_t flags)685de2860f4SDave Chinner void *kvrealloc(const void *p, size_t oldsize, size_t newsize, gfp_t flags)
686de2860f4SDave Chinner {
687de2860f4SDave Chinner 	void *newp;
688de2860f4SDave Chinner 
689de2860f4SDave Chinner 	if (oldsize >= newsize)
690de2860f4SDave Chinner 		return (void *)p;
691de2860f4SDave Chinner 	newp = kvmalloc(newsize, flags);
692de2860f4SDave Chinner 	if (!newp)
693de2860f4SDave Chinner 		return NULL;
694de2860f4SDave Chinner 	memcpy(newp, p, oldsize);
695de2860f4SDave Chinner 	kvfree(p);
696de2860f4SDave Chinner 	return newp;
697de2860f4SDave Chinner }
698de2860f4SDave Chinner EXPORT_SYMBOL(kvrealloc);
699de2860f4SDave Chinner 
700a8749a35SPaolo Bonzini /**
701a8749a35SPaolo Bonzini  * __vmalloc_array - allocate memory for a virtually contiguous array.
702a8749a35SPaolo Bonzini  * @n: number of elements.
703a8749a35SPaolo Bonzini  * @size: element size.
704a8749a35SPaolo Bonzini  * @flags: the type of memory to allocate (see kmalloc).
705a8749a35SPaolo Bonzini  */
__vmalloc_array(size_t n,size_t size,gfp_t flags)706a8749a35SPaolo Bonzini void *__vmalloc_array(size_t n, size_t size, gfp_t flags)
707a8749a35SPaolo Bonzini {
708a8749a35SPaolo Bonzini 	size_t bytes;
709a8749a35SPaolo Bonzini 
710a8749a35SPaolo Bonzini 	if (unlikely(check_mul_overflow(n, size, &bytes)))
711a8749a35SPaolo Bonzini 		return NULL;
712a8749a35SPaolo Bonzini 	return __vmalloc(bytes, flags);
713a8749a35SPaolo Bonzini }
714a8749a35SPaolo Bonzini EXPORT_SYMBOL(__vmalloc_array);
715a8749a35SPaolo Bonzini 
716a8749a35SPaolo Bonzini /**
717a8749a35SPaolo Bonzini  * vmalloc_array - allocate memory for a virtually contiguous array.
718a8749a35SPaolo Bonzini  * @n: number of elements.
719a8749a35SPaolo Bonzini  * @size: element size.
720a8749a35SPaolo Bonzini  */
vmalloc_array(size_t n,size_t size)721a8749a35SPaolo Bonzini void *vmalloc_array(size_t n, size_t size)
722a8749a35SPaolo Bonzini {
723a8749a35SPaolo Bonzini 	return __vmalloc_array(n, size, GFP_KERNEL);
724a8749a35SPaolo Bonzini }
725a8749a35SPaolo Bonzini EXPORT_SYMBOL(vmalloc_array);
726a8749a35SPaolo Bonzini 
727a8749a35SPaolo Bonzini /**
728a8749a35SPaolo Bonzini  * __vcalloc - allocate and zero memory for a virtually contiguous array.
729a8749a35SPaolo Bonzini  * @n: number of elements.
730a8749a35SPaolo Bonzini  * @size: element size.
731a8749a35SPaolo Bonzini  * @flags: the type of memory to allocate (see kmalloc).
732a8749a35SPaolo Bonzini  */
__vcalloc(size_t n,size_t size,gfp_t flags)733a8749a35SPaolo Bonzini void *__vcalloc(size_t n, size_t size, gfp_t flags)
734a8749a35SPaolo Bonzini {
735a8749a35SPaolo Bonzini 	return __vmalloc_array(n, size, flags | __GFP_ZERO);
736a8749a35SPaolo Bonzini }
737a8749a35SPaolo Bonzini EXPORT_SYMBOL(__vcalloc);
738a8749a35SPaolo Bonzini 
739a8749a35SPaolo Bonzini /**
740a8749a35SPaolo Bonzini  * vcalloc - allocate and zero memory for a virtually contiguous array.
741a8749a35SPaolo Bonzini  * @n: number of elements.
742a8749a35SPaolo Bonzini  * @size: element size.
743a8749a35SPaolo Bonzini  */
vcalloc(size_t n,size_t size)744a8749a35SPaolo Bonzini void *vcalloc(size_t n, size_t size)
745a8749a35SPaolo Bonzini {
746a8749a35SPaolo Bonzini 	return __vmalloc_array(n, size, GFP_KERNEL | __GFP_ZERO);
747a8749a35SPaolo Bonzini }
748a8749a35SPaolo Bonzini EXPORT_SYMBOL(vcalloc);
749a8749a35SPaolo Bonzini 
folio_anon_vma(struct folio * folio)750e05b3453SMatthew Wilcox (Oracle) struct anon_vma *folio_anon_vma(struct folio *folio)
751e39155eaSKirill A. Shutemov {
75264601000SMatthew Wilcox (Oracle) 	unsigned long mapping = (unsigned long)folio->mapping;
753e39155eaSKirill A. Shutemov 
754e39155eaSKirill A. Shutemov 	if ((mapping & PAGE_MAPPING_FLAGS) != PAGE_MAPPING_ANON)
755e39155eaSKirill A. Shutemov 		return NULL;
75664601000SMatthew Wilcox (Oracle) 	return (void *)(mapping - PAGE_MAPPING_ANON);
757e39155eaSKirill A. Shutemov }
758e39155eaSKirill A. Shutemov 
7592f52578fSMatthew Wilcox (Oracle) /**
7602f52578fSMatthew Wilcox (Oracle)  * folio_mapping - Find the mapping where this folio is stored.
7612f52578fSMatthew Wilcox (Oracle)  * @folio: The folio.
7622f52578fSMatthew Wilcox (Oracle)  *
7632f52578fSMatthew Wilcox (Oracle)  * For folios which are in the page cache, return the mapping that this
7642f52578fSMatthew Wilcox (Oracle)  * page belongs to.  Folios in the swap cache return the swap mapping
7652f52578fSMatthew Wilcox (Oracle)  * this page is stored in (which is different from the mapping for the
7662f52578fSMatthew Wilcox (Oracle)  * swap file or swap device where the data is stored).
7672f52578fSMatthew Wilcox (Oracle)  *
7682f52578fSMatthew Wilcox (Oracle)  * You can call this for folios which aren't in the swap cache or page
7692f52578fSMatthew Wilcox (Oracle)  * cache and it will return NULL.
7702f52578fSMatthew Wilcox (Oracle)  */
folio_mapping(struct folio * folio)7712f52578fSMatthew Wilcox (Oracle) struct address_space *folio_mapping(struct folio *folio)
7729800339bSShaohua Li {
7731c290f64SKirill A. Shutemov 	struct address_space *mapping;
7741c290f64SKirill A. Shutemov 
77503e5ac2fSMikulas Patocka 	/* This happens if someone calls flush_dcache_page on slab page */
7762f52578fSMatthew Wilcox (Oracle) 	if (unlikely(folio_test_slab(folio)))
77703e5ac2fSMikulas Patocka 		return NULL;
77803e5ac2fSMikulas Patocka 
7792f52578fSMatthew Wilcox (Oracle) 	if (unlikely(folio_test_swapcache(folio)))
7803d2c9087SDavid Hildenbrand 		return swap_address_space(folio->swap);
78133806f06SShaohua Li 
7822f52578fSMatthew Wilcox (Oracle) 	mapping = folio->mapping;
78368f2736aSMatthew Wilcox (Oracle) 	if ((unsigned long)mapping & PAGE_MAPPING_FLAGS)
784e39155eaSKirill A. Shutemov 		return NULL;
785bda807d4SMinchan Kim 
78668f2736aSMatthew Wilcox (Oracle) 	return mapping;
7879800339bSShaohua Li }
7882f52578fSMatthew Wilcox (Oracle) EXPORT_SYMBOL(folio_mapping);
7899800339bSShaohua Li 
7904ba1119cSMatthew Wilcox (Oracle) /**
791715cbfd6SMatthew Wilcox (Oracle)  * folio_copy - Copy the contents of one folio to another.
792715cbfd6SMatthew Wilcox (Oracle)  * @dst: Folio to copy to.
793715cbfd6SMatthew Wilcox (Oracle)  * @src: Folio to copy from.
794715cbfd6SMatthew Wilcox (Oracle)  *
795715cbfd6SMatthew Wilcox (Oracle)  * The bytes in the folio represented by @src are copied to @dst.
796715cbfd6SMatthew Wilcox (Oracle)  * Assumes the caller has validated that @dst is at least as large as @src.
797715cbfd6SMatthew Wilcox (Oracle)  * Can be called in atomic context for order-0 folios, but if the folio is
798715cbfd6SMatthew Wilcox (Oracle)  * larger, it may sleep.
799715cbfd6SMatthew Wilcox (Oracle)  */
folio_copy(struct folio * dst,struct folio * src)800715cbfd6SMatthew Wilcox (Oracle) void folio_copy(struct folio *dst, struct folio *src)
80179789db0SMatthew Wilcox (Oracle) {
802715cbfd6SMatthew Wilcox (Oracle) 	long i = 0;
803715cbfd6SMatthew Wilcox (Oracle) 	long nr = folio_nr_pages(src);
80479789db0SMatthew Wilcox (Oracle) 
805715cbfd6SMatthew Wilcox (Oracle) 	for (;;) {
806715cbfd6SMatthew Wilcox (Oracle) 		copy_highpage(folio_page(dst, i), folio_page(src, i));
807715cbfd6SMatthew Wilcox (Oracle) 		if (++i == nr)
808715cbfd6SMatthew Wilcox (Oracle) 			break;
80979789db0SMatthew Wilcox (Oracle) 		cond_resched();
81079789db0SMatthew Wilcox (Oracle) 	}
81179789db0SMatthew Wilcox (Oracle) }
81279789db0SMatthew Wilcox (Oracle) 
81339a1aa8eSAndrey Ryabinin int sysctl_overcommit_memory __read_mostly = OVERCOMMIT_GUESS;
81439a1aa8eSAndrey Ryabinin int sysctl_overcommit_ratio __read_mostly = 50;
81539a1aa8eSAndrey Ryabinin unsigned long sysctl_overcommit_kbytes __read_mostly;
81639a1aa8eSAndrey Ryabinin int sysctl_max_map_count __read_mostly = DEFAULT_MAX_MAP_COUNT;
81739a1aa8eSAndrey Ryabinin unsigned long sysctl_user_reserve_kbytes __read_mostly = 1UL << 17; /* 128MB */
81839a1aa8eSAndrey Ryabinin unsigned long sysctl_admin_reserve_kbytes __read_mostly = 1UL << 13; /* 8MB */
81939a1aa8eSAndrey Ryabinin 
overcommit_ratio_handler(struct ctl_table * table,int write,void * buffer,size_t * lenp,loff_t * ppos)82032927393SChristoph Hellwig int overcommit_ratio_handler(struct ctl_table *table, int write, void *buffer,
82132927393SChristoph Hellwig 		size_t *lenp, loff_t *ppos)
82249f0ce5fSJerome Marchand {
82349f0ce5fSJerome Marchand 	int ret;
82449f0ce5fSJerome Marchand 
82549f0ce5fSJerome Marchand 	ret = proc_dointvec(table, write, buffer, lenp, ppos);
82649f0ce5fSJerome Marchand 	if (ret == 0 && write)
82749f0ce5fSJerome Marchand 		sysctl_overcommit_kbytes = 0;
82849f0ce5fSJerome Marchand 	return ret;
82949f0ce5fSJerome Marchand }
83049f0ce5fSJerome Marchand 
sync_overcommit_as(struct work_struct * dummy)83156f3547bSFeng Tang static void sync_overcommit_as(struct work_struct *dummy)
83256f3547bSFeng Tang {
83356f3547bSFeng Tang 	percpu_counter_sync(&vm_committed_as);
83456f3547bSFeng Tang }
83556f3547bSFeng Tang 
overcommit_policy_handler(struct ctl_table * table,int write,void * buffer,size_t * lenp,loff_t * ppos)83656f3547bSFeng Tang int overcommit_policy_handler(struct ctl_table *table, int write, void *buffer,
83756f3547bSFeng Tang 		size_t *lenp, loff_t *ppos)
83856f3547bSFeng Tang {
83956f3547bSFeng Tang 	struct ctl_table t;
840bcbda810SChen Jun 	int new_policy = -1;
84156f3547bSFeng Tang 	int ret;
84256f3547bSFeng Tang 
84356f3547bSFeng Tang 	/*
84456f3547bSFeng Tang 	 * The deviation of sync_overcommit_as could be big with loose policy
84556f3547bSFeng Tang 	 * like OVERCOMMIT_ALWAYS/OVERCOMMIT_GUESS. When changing policy to
84656f3547bSFeng Tang 	 * strict OVERCOMMIT_NEVER, we need to reduce the deviation to comply
84731454980SBhaskar Chowdhury 	 * with the strict "NEVER", and to avoid possible race condition (even
84856f3547bSFeng Tang 	 * though user usually won't too frequently do the switching to policy
84956f3547bSFeng Tang 	 * OVERCOMMIT_NEVER), the switch is done in the following order:
85056f3547bSFeng Tang 	 *	1. changing the batch
85156f3547bSFeng Tang 	 *	2. sync percpu count on each CPU
85256f3547bSFeng Tang 	 *	3. switch the policy
85356f3547bSFeng Tang 	 */
85456f3547bSFeng Tang 	if (write) {
85556f3547bSFeng Tang 		t = *table;
85656f3547bSFeng Tang 		t.data = &new_policy;
85756f3547bSFeng Tang 		ret = proc_dointvec_minmax(&t, write, buffer, lenp, ppos);
858bcbda810SChen Jun 		if (ret || new_policy == -1)
85956f3547bSFeng Tang 			return ret;
86056f3547bSFeng Tang 
86156f3547bSFeng Tang 		mm_compute_batch(new_policy);
86256f3547bSFeng Tang 		if (new_policy == OVERCOMMIT_NEVER)
86356f3547bSFeng Tang 			schedule_on_each_cpu(sync_overcommit_as);
86456f3547bSFeng Tang 		sysctl_overcommit_memory = new_policy;
86556f3547bSFeng Tang 	} else {
86656f3547bSFeng Tang 		ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
86756f3547bSFeng Tang 	}
86856f3547bSFeng Tang 
86956f3547bSFeng Tang 	return ret;
87056f3547bSFeng Tang }
87156f3547bSFeng Tang 
overcommit_kbytes_handler(struct ctl_table * table,int write,void * buffer,size_t * lenp,loff_t * ppos)87232927393SChristoph Hellwig int overcommit_kbytes_handler(struct ctl_table *table, int write, void *buffer,
87332927393SChristoph Hellwig 		size_t *lenp, loff_t *ppos)
87449f0ce5fSJerome Marchand {
87549f0ce5fSJerome Marchand 	int ret;
87649f0ce5fSJerome Marchand 
87749f0ce5fSJerome Marchand 	ret = proc_doulongvec_minmax(table, write, buffer, lenp, ppos);
87849f0ce5fSJerome Marchand 	if (ret == 0 && write)
87949f0ce5fSJerome Marchand 		sysctl_overcommit_ratio = 0;
88049f0ce5fSJerome Marchand 	return ret;
88149f0ce5fSJerome Marchand }
88249f0ce5fSJerome Marchand 
88300619bccSJerome Marchand /*
88400619bccSJerome Marchand  * Committed memory limit enforced when OVERCOMMIT_NEVER policy is used
88500619bccSJerome Marchand  */
vm_commit_limit(void)88600619bccSJerome Marchand unsigned long vm_commit_limit(void)
88700619bccSJerome Marchand {
88849f0ce5fSJerome Marchand 	unsigned long allowed;
88949f0ce5fSJerome Marchand 
89049f0ce5fSJerome Marchand 	if (sysctl_overcommit_kbytes)
89149f0ce5fSJerome Marchand 		allowed = sysctl_overcommit_kbytes >> (PAGE_SHIFT - 10);
89249f0ce5fSJerome Marchand 	else
893ca79b0c2SArun KS 		allowed = ((totalram_pages() - hugetlb_total_pages())
89449f0ce5fSJerome Marchand 			   * sysctl_overcommit_ratio / 100);
89549f0ce5fSJerome Marchand 	allowed += total_swap_pages;
89649f0ce5fSJerome Marchand 
89749f0ce5fSJerome Marchand 	return allowed;
89800619bccSJerome Marchand }
89900619bccSJerome Marchand 
90039a1aa8eSAndrey Ryabinin /*
90139a1aa8eSAndrey Ryabinin  * Make sure vm_committed_as in one cacheline and not cacheline shared with
90239a1aa8eSAndrey Ryabinin  * other variables. It can be updated by several CPUs frequently.
90339a1aa8eSAndrey Ryabinin  */
90439a1aa8eSAndrey Ryabinin struct percpu_counter vm_committed_as ____cacheline_aligned_in_smp;
90539a1aa8eSAndrey Ryabinin 
90639a1aa8eSAndrey Ryabinin /*
90739a1aa8eSAndrey Ryabinin  * The global memory commitment made in the system can be a metric
90839a1aa8eSAndrey Ryabinin  * that can be used to drive ballooning decisions when Linux is hosted
90939a1aa8eSAndrey Ryabinin  * as a guest. On Hyper-V, the host implements a policy engine for dynamically
91039a1aa8eSAndrey Ryabinin  * balancing memory across competing virtual machines that are hosted.
91139a1aa8eSAndrey Ryabinin  * Several metrics drive this policy engine including the guest reported
91239a1aa8eSAndrey Ryabinin  * memory commitment.
9134e2ee51eSFeng Tang  *
9144e2ee51eSFeng Tang  * The time cost of this is very low for small platforms, and for big
9154e2ee51eSFeng Tang  * platform like a 2S/36C/72T Skylake server, in worst case where
9164e2ee51eSFeng Tang  * vm_committed_as's spinlock is under severe contention, the time cost
9174e2ee51eSFeng Tang  * could be about 30~40 microseconds.
91839a1aa8eSAndrey Ryabinin  */
vm_memory_committed(void)91939a1aa8eSAndrey Ryabinin unsigned long vm_memory_committed(void)
92039a1aa8eSAndrey Ryabinin {
9214e2ee51eSFeng Tang 	return percpu_counter_sum_positive(&vm_committed_as);
92239a1aa8eSAndrey Ryabinin }
92339a1aa8eSAndrey Ryabinin EXPORT_SYMBOL_GPL(vm_memory_committed);
92439a1aa8eSAndrey Ryabinin 
92539a1aa8eSAndrey Ryabinin /*
92639a1aa8eSAndrey Ryabinin  * Check that a process has enough memory to allocate a new virtual
92739a1aa8eSAndrey Ryabinin  * mapping. 0 means there is enough memory for the allocation to
92839a1aa8eSAndrey Ryabinin  * succeed and -ENOMEM implies there is not.
92939a1aa8eSAndrey Ryabinin  *
93039a1aa8eSAndrey Ryabinin  * We currently support three overcommit policies, which are set via the
931ee65728eSMike Rapoport  * vm.overcommit_memory sysctl.  See Documentation/mm/overcommit-accounting.rst
93239a1aa8eSAndrey Ryabinin  *
93339a1aa8eSAndrey Ryabinin  * Strict overcommit modes added 2002 Feb 26 by Alan Cox.
93439a1aa8eSAndrey Ryabinin  * Additional code 2002 Jul 20 by Robert Love.
93539a1aa8eSAndrey Ryabinin  *
93639a1aa8eSAndrey Ryabinin  * cap_sys_admin is 1 if the process has admin privileges, 0 otherwise.
93739a1aa8eSAndrey Ryabinin  *
93839a1aa8eSAndrey Ryabinin  * Note this is a helper function intended to be used by LSMs which
93939a1aa8eSAndrey Ryabinin  * wish to use this logic.
94039a1aa8eSAndrey Ryabinin  */
__vm_enough_memory(struct mm_struct * mm,long pages,int cap_sys_admin)94139a1aa8eSAndrey Ryabinin int __vm_enough_memory(struct mm_struct *mm, long pages, int cap_sys_admin)
94239a1aa8eSAndrey Ryabinin {
9438c7829b0SJohannes Weiner 	long allowed;
94439a1aa8eSAndrey Ryabinin 
94539a1aa8eSAndrey Ryabinin 	vm_acct_memory(pages);
94639a1aa8eSAndrey Ryabinin 
94739a1aa8eSAndrey Ryabinin 	/*
94839a1aa8eSAndrey Ryabinin 	 * Sometimes we want to use more memory than we have
94939a1aa8eSAndrey Ryabinin 	 */
95039a1aa8eSAndrey Ryabinin 	if (sysctl_overcommit_memory == OVERCOMMIT_ALWAYS)
95139a1aa8eSAndrey Ryabinin 		return 0;
95239a1aa8eSAndrey Ryabinin 
95339a1aa8eSAndrey Ryabinin 	if (sysctl_overcommit_memory == OVERCOMMIT_GUESS) {
9548c7829b0SJohannes Weiner 		if (pages > totalram_pages() + total_swap_pages)
95539a1aa8eSAndrey Ryabinin 			goto error;
95639a1aa8eSAndrey Ryabinin 		return 0;
95739a1aa8eSAndrey Ryabinin 	}
95839a1aa8eSAndrey Ryabinin 
95939a1aa8eSAndrey Ryabinin 	allowed = vm_commit_limit();
96039a1aa8eSAndrey Ryabinin 	/*
96139a1aa8eSAndrey Ryabinin 	 * Reserve some for root
96239a1aa8eSAndrey Ryabinin 	 */
96339a1aa8eSAndrey Ryabinin 	if (!cap_sys_admin)
96439a1aa8eSAndrey Ryabinin 		allowed -= sysctl_admin_reserve_kbytes >> (PAGE_SHIFT - 10);
96539a1aa8eSAndrey Ryabinin 
96639a1aa8eSAndrey Ryabinin 	/*
96739a1aa8eSAndrey Ryabinin 	 * Don't let a single process grow so big a user can't recover
96839a1aa8eSAndrey Ryabinin 	 */
96939a1aa8eSAndrey Ryabinin 	if (mm) {
9708c7829b0SJohannes Weiner 		long reserve = sysctl_user_reserve_kbytes >> (PAGE_SHIFT - 10);
9718c7829b0SJohannes Weiner 
97239a1aa8eSAndrey Ryabinin 		allowed -= min_t(long, mm->total_vm / 32, reserve);
97339a1aa8eSAndrey Ryabinin 	}
97439a1aa8eSAndrey Ryabinin 
97539a1aa8eSAndrey Ryabinin 	if (percpu_counter_read_positive(&vm_committed_as) < allowed)
97639a1aa8eSAndrey Ryabinin 		return 0;
97739a1aa8eSAndrey Ryabinin error:
9786bdfc60cSJakub Wilk 	pr_warn_ratelimited("%s: pid: %d, comm: %s, not enough memory for the allocation\n",
97944b414c8SKefeng Wang 			    __func__, current->pid, current->comm);
98039a1aa8eSAndrey Ryabinin 	vm_unacct_memory(pages);
98139a1aa8eSAndrey Ryabinin 
98239a1aa8eSAndrey Ryabinin 	return -ENOMEM;
98339a1aa8eSAndrey Ryabinin }
98439a1aa8eSAndrey Ryabinin 
985a9090253SWilliam Roberts /**
986a9090253SWilliam Roberts  * get_cmdline() - copy the cmdline value to a buffer.
987a9090253SWilliam Roberts  * @task:     the task whose cmdline value to copy.
988a9090253SWilliam Roberts  * @buffer:   the buffer to copy to.
989a9090253SWilliam Roberts  * @buflen:   the length of the buffer. Larger cmdline values are truncated
990a9090253SWilliam Roberts  *            to this length.
991a862f68aSMike Rapoport  *
992a862f68aSMike Rapoport  * Return: the size of the cmdline field copied. Note that the copy does
993a9090253SWilliam Roberts  * not guarantee an ending NULL byte.
994a9090253SWilliam Roberts  */
get_cmdline(struct task_struct * task,char * buffer,int buflen)995a9090253SWilliam Roberts int get_cmdline(struct task_struct *task, char *buffer, int buflen)
996a9090253SWilliam Roberts {
997a9090253SWilliam Roberts 	int res = 0;
998a9090253SWilliam Roberts 	unsigned int len;
999a9090253SWilliam Roberts 	struct mm_struct *mm = get_task_mm(task);
1000a3b609efSMateusz Guzik 	unsigned long arg_start, arg_end, env_start, env_end;
1001a9090253SWilliam Roberts 	if (!mm)
1002a9090253SWilliam Roberts 		goto out;
1003a9090253SWilliam Roberts 	if (!mm->arg_end)
1004a9090253SWilliam Roberts 		goto out_mm;	/* Shh! No looking before we're done */
1005a9090253SWilliam Roberts 
1006bc81426fSMichal Koutný 	spin_lock(&mm->arg_lock);
1007a3b609efSMateusz Guzik 	arg_start = mm->arg_start;
1008a3b609efSMateusz Guzik 	arg_end = mm->arg_end;
1009a3b609efSMateusz Guzik 	env_start = mm->env_start;
1010a3b609efSMateusz Guzik 	env_end = mm->env_end;
1011bc81426fSMichal Koutný 	spin_unlock(&mm->arg_lock);
1012a3b609efSMateusz Guzik 
1013a3b609efSMateusz Guzik 	len = arg_end - arg_start;
1014a9090253SWilliam Roberts 
1015a9090253SWilliam Roberts 	if (len > buflen)
1016a9090253SWilliam Roberts 		len = buflen;
1017a9090253SWilliam Roberts 
1018f307ab6dSLorenzo Stoakes 	res = access_process_vm(task, arg_start, buffer, len, FOLL_FORCE);
1019a9090253SWilliam Roberts 
1020a9090253SWilliam Roberts 	/*
1021a9090253SWilliam Roberts 	 * If the nul at the end of args has been overwritten, then
1022a9090253SWilliam Roberts 	 * assume application is using setproctitle(3).
1023a9090253SWilliam Roberts 	 */
1024a9090253SWilliam Roberts 	if (res > 0 && buffer[res-1] != '\0' && len < buflen) {
1025a9090253SWilliam Roberts 		len = strnlen(buffer, res);
1026a9090253SWilliam Roberts 		if (len < res) {
1027a9090253SWilliam Roberts 			res = len;
1028a9090253SWilliam Roberts 		} else {
1029a3b609efSMateusz Guzik 			len = env_end - env_start;
1030a9090253SWilliam Roberts 			if (len > buflen - res)
1031a9090253SWilliam Roberts 				len = buflen - res;
1032a3b609efSMateusz Guzik 			res += access_process_vm(task, env_start,
1033f307ab6dSLorenzo Stoakes 						 buffer+res, len,
1034f307ab6dSLorenzo Stoakes 						 FOLL_FORCE);
1035a9090253SWilliam Roberts 			res = strnlen(buffer, res);
1036a9090253SWilliam Roberts 		}
1037a9090253SWilliam Roberts 	}
1038a9090253SWilliam Roberts out_mm:
1039a9090253SWilliam Roberts 	mmput(mm);
1040a9090253SWilliam Roberts out:
1041a9090253SWilliam Roberts 	return res;
1042a9090253SWilliam Roberts }
1043010c164aSSong Liu 
memcmp_pages(struct page * page1,struct page * page2)10444d1a8a2dSCatalin Marinas int __weak memcmp_pages(struct page *page1, struct page *page2)
1045010c164aSSong Liu {
1046010c164aSSong Liu 	char *addr1, *addr2;
1047010c164aSSong Liu 	int ret;
1048010c164aSSong Liu 
1049010c164aSSong Liu 	addr1 = kmap_atomic(page1);
1050010c164aSSong Liu 	addr2 = kmap_atomic(page2);
1051010c164aSSong Liu 	ret = memcmp(addr1, addr2, PAGE_SIZE);
1052010c164aSSong Liu 	kunmap_atomic(addr2);
1053010c164aSSong Liu 	kunmap_atomic(addr1);
1054010c164aSSong Liu 	return ret;
1055010c164aSSong Liu }
10568e7f37f2SPaul E. McKenney 
10575bb1bb35SPaul E. McKenney #ifdef CONFIG_PRINTK
10588e7f37f2SPaul E. McKenney /**
10598e7f37f2SPaul E. McKenney  * mem_dump_obj - Print available provenance information
10608e7f37f2SPaul E. McKenney  * @object: object for which to find provenance information.
10618e7f37f2SPaul E. McKenney  *
10628e7f37f2SPaul E. McKenney  * This function uses pr_cont(), so that the caller is expected to have
10638e7f37f2SPaul E. McKenney  * printed out whatever preamble is appropriate.  The provenance information
10648e7f37f2SPaul E. McKenney  * depends on the type of object and on how much debugging is enabled.
10658e7f37f2SPaul E. McKenney  * For example, for a slab-cache object, the slab name is printed, and,
10668e7f37f2SPaul E. McKenney  * if available, the return address and stack trace from the allocation
1067e548eaa1SManinder Singh  * and last free path of that object.
10688e7f37f2SPaul E. McKenney  */
mem_dump_obj(void * object)10698e7f37f2SPaul E. McKenney void mem_dump_obj(void *object)
10708e7f37f2SPaul E. McKenney {
10712521781cSJoe Perches 	const char *type;
10722521781cSJoe Perches 
107398f18083SPaul E. McKenney 	if (kmem_valid_obj(object)) {
107498f18083SPaul E. McKenney 		kmem_dump_obj(object);
107598f18083SPaul E. McKenney 		return;
107698f18083SPaul E. McKenney 	}
10772521781cSJoe Perches 
107898f18083SPaul E. McKenney 	if (vmalloc_dump_obj(object))
107998f18083SPaul E. McKenney 		return;
10802521781cSJoe Perches 
1081c83ad36aSZqiang 	if (is_vmalloc_addr(object))
1082c83ad36aSZqiang 		type = "vmalloc memory";
1083c83ad36aSZqiang 	else if (virt_addr_valid(object))
10842521781cSJoe Perches 		type = "non-slab/vmalloc memory";
10852521781cSJoe Perches 	else if (object == NULL)
10862521781cSJoe Perches 		type = "NULL pointer";
1087b70fa3b1SPaul E. McKenney 	else if (object == ZERO_SIZE_PTR)
10882521781cSJoe Perches 		type = "zero-size pointer";
1089b70fa3b1SPaul E. McKenney 	else
10902521781cSJoe Perches 		type = "non-paged memory";
10912521781cSJoe Perches 
10922521781cSJoe Perches 	pr_cont(" %s\n", type);
10938e7f37f2SPaul E. McKenney }
10940d3dd2c8SPaul E. McKenney EXPORT_SYMBOL_GPL(mem_dump_obj);
10955bb1bb35SPaul E. McKenney #endif
109682840451SDavid Hildenbrand 
109782840451SDavid Hildenbrand /*
109882840451SDavid Hildenbrand  * A driver might set a page logically offline -- PageOffline() -- and
109982840451SDavid Hildenbrand  * turn the page inaccessible in the hypervisor; after that, access to page
110082840451SDavid Hildenbrand  * content can be fatal.
110182840451SDavid Hildenbrand  *
110282840451SDavid Hildenbrand  * Some special PFN walkers -- i.e., /proc/kcore -- read content of random
110382840451SDavid Hildenbrand  * pages after checking PageOffline(); however, these PFN walkers can race
110482840451SDavid Hildenbrand  * with drivers that set PageOffline().
110582840451SDavid Hildenbrand  *
110682840451SDavid Hildenbrand  * page_offline_freeze()/page_offline_thaw() allows for a subsystem to
110782840451SDavid Hildenbrand  * synchronize with such drivers, achieving that a page cannot be set
110882840451SDavid Hildenbrand  * PageOffline() while frozen.
110982840451SDavid Hildenbrand  *
111082840451SDavid Hildenbrand  * page_offline_begin()/page_offline_end() is used by drivers that care about
111182840451SDavid Hildenbrand  * such races when setting a page PageOffline().
111282840451SDavid Hildenbrand  */
111382840451SDavid Hildenbrand static DECLARE_RWSEM(page_offline_rwsem);
111482840451SDavid Hildenbrand 
page_offline_freeze(void)111582840451SDavid Hildenbrand void page_offline_freeze(void)
111682840451SDavid Hildenbrand {
111782840451SDavid Hildenbrand 	down_read(&page_offline_rwsem);
111882840451SDavid Hildenbrand }
111982840451SDavid Hildenbrand 
page_offline_thaw(void)112082840451SDavid Hildenbrand void page_offline_thaw(void)
112182840451SDavid Hildenbrand {
112282840451SDavid Hildenbrand 	up_read(&page_offline_rwsem);
112382840451SDavid Hildenbrand }
112482840451SDavid Hildenbrand 
page_offline_begin(void)112582840451SDavid Hildenbrand void page_offline_begin(void)
112682840451SDavid Hildenbrand {
112782840451SDavid Hildenbrand 	down_write(&page_offline_rwsem);
112882840451SDavid Hildenbrand }
112982840451SDavid Hildenbrand EXPORT_SYMBOL(page_offline_begin);
113082840451SDavid Hildenbrand 
page_offline_end(void)113182840451SDavid Hildenbrand void page_offline_end(void)
113282840451SDavid Hildenbrand {
113382840451SDavid Hildenbrand 	up_write(&page_offline_rwsem);
113482840451SDavid Hildenbrand }
113582840451SDavid Hildenbrand EXPORT_SYMBOL(page_offline_end);
113608b0b005SMatthew Wilcox (Oracle) 
113729d26f12SMatthew Wilcox (Oracle) #ifndef flush_dcache_folio
flush_dcache_folio(struct folio * folio)113808b0b005SMatthew Wilcox (Oracle) void flush_dcache_folio(struct folio *folio)
113908b0b005SMatthew Wilcox (Oracle) {
114008b0b005SMatthew Wilcox (Oracle) 	long i, nr = folio_nr_pages(folio);
114108b0b005SMatthew Wilcox (Oracle) 
114208b0b005SMatthew Wilcox (Oracle) 	for (i = 0; i < nr; i++)
114308b0b005SMatthew Wilcox (Oracle) 		flush_dcache_page(folio_page(folio, i));
114408b0b005SMatthew Wilcox (Oracle) }
114508b0b005SMatthew Wilcox (Oracle) EXPORT_SYMBOL(flush_dcache_folio);
114608b0b005SMatthew Wilcox (Oracle) #endif
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