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b.liue9582032025-04-17 19:18:16 +08001/* SPDX-License-Identifier: GPL-2.0 */
2#ifndef _ARCH_POWERPC_UACCESS_H
3#define _ARCH_POWERPC_UACCESS_H
4
5#include <asm/ppc_asm.h>
6#include <asm/processor.h>
7#include <asm/page.h>
8#include <asm/extable.h>
9#include <asm/kup.h>
10
11/*
12 * The fs value determines whether argument validity checking should be
13 * performed or not. If get_fs() == USER_DS, checking is performed, with
14 * get_fs() == KERNEL_DS, checking is bypassed.
15 *
16 * For historical reasons, these macros are grossly misnamed.
17 *
18 * The fs/ds values are now the highest legal address in the "segment".
19 * This simplifies the checking in the routines below.
20 */
21
22#define MAKE_MM_SEG(s) ((mm_segment_t) { (s) })
23
24#define KERNEL_DS MAKE_MM_SEG(~0UL)
25#ifdef __powerpc64__
26/* We use TASK_SIZE_USER64 as TASK_SIZE is not constant */
27#define USER_DS MAKE_MM_SEG(TASK_SIZE_USER64 - 1)
28#else
29#define USER_DS MAKE_MM_SEG(TASK_SIZE - 1)
30#endif
31
32#define get_fs() (current->thread.addr_limit)
33
34static inline void set_fs(mm_segment_t fs)
35{
36 current->thread.addr_limit = fs;
37 /* On user-mode return check addr_limit (fs) is correct */
38 set_thread_flag(TIF_FSCHECK);
39}
40
41#define segment_eq(a, b) ((a).seg == (b).seg)
42
43#define user_addr_max() (get_fs().seg)
44
45#ifdef __powerpc64__
46/*
47 * This check is sufficient because there is a large enough
48 * gap between user addresses and the kernel addresses
49 */
50#define __access_ok(addr, size, segment) \
51 (((addr) <= (segment).seg) && ((size) <= (segment).seg))
52
53#else
54
55static inline int __access_ok(unsigned long addr, unsigned long size,
56 mm_segment_t seg)
57{
58 if (addr > seg.seg)
59 return 0;
60 return (size == 0 || size - 1 <= seg.seg - addr);
61}
62
63#endif
64
65#define access_ok(addr, size) \
66 (__chk_user_ptr(addr), \
67 __access_ok((__force unsigned long)(addr), (size), get_fs()))
68
69/*
70 * These are the main single-value transfer routines. They automatically
71 * use the right size if we just have the right pointer type.
72 *
73 * This gets kind of ugly. We want to return _two_ values in "get_user()"
74 * and yet we don't want to do any pointers, because that is too much
75 * of a performance impact. Thus we have a few rather ugly macros here,
76 * and hide all the ugliness from the user.
77 *
78 * The "__xxx" versions of the user access functions are versions that
79 * do not verify the address space, that must have been done previously
80 * with a separate "access_ok()" call (this is used when we do multiple
81 * accesses to the same area of user memory).
82 *
83 * As we use the same address space for kernel and user data on the
84 * PowerPC, we can just do these as direct assignments. (Of course, the
85 * exception handling means that it's no longer "just"...)
86 *
87 */
88#define get_user(x, ptr) \
89 __get_user_check((x), (ptr), sizeof(*(ptr)))
90#define put_user(x, ptr) \
91 __put_user_check((__typeof__(*(ptr)))(x), (ptr), sizeof(*(ptr)))
92
93#define __get_user(x, ptr) \
94 __get_user_nocheck((x), (ptr), sizeof(*(ptr)))
95#define __put_user(x, ptr) \
96 __put_user_nocheck((__typeof__(*(ptr)))(x), (ptr), sizeof(*(ptr)))
97
98#define __get_user_inatomic(x, ptr) \
99 __get_user_nosleep((x), (ptr), sizeof(*(ptr)))
100#define __put_user_inatomic(x, ptr) \
101 __put_user_nosleep((__typeof__(*(ptr)))(x), (ptr), sizeof(*(ptr)))
102
103extern long __put_user_bad(void);
104
105/*
106 * We don't tell gcc that we are accessing memory, but this is OK
107 * because we do not write to any memory gcc knows about, so there
108 * are no aliasing issues.
109 */
110#define __put_user_asm(x, addr, err, op) \
111 __asm__ __volatile__( \
112 "1: " op " %1,0(%2) # put_user\n" \
113 "2:\n" \
114 ".section .fixup,\"ax\"\n" \
115 "3: li %0,%3\n" \
116 " b 2b\n" \
117 ".previous\n" \
118 EX_TABLE(1b, 3b) \
119 : "=r" (err) \
120 : "r" (x), "b" (addr), "i" (-EFAULT), "0" (err))
121
122#ifdef __powerpc64__
123#define __put_user_asm2(x, ptr, retval) \
124 __put_user_asm(x, ptr, retval, "std")
125#else /* __powerpc64__ */
126#define __put_user_asm2(x, addr, err) \
127 __asm__ __volatile__( \
128 "1: stw %1,0(%2)\n" \
129 "2: stw %1+1,4(%2)\n" \
130 "3:\n" \
131 ".section .fixup,\"ax\"\n" \
132 "4: li %0,%3\n" \
133 " b 3b\n" \
134 ".previous\n" \
135 EX_TABLE(1b, 4b) \
136 EX_TABLE(2b, 4b) \
137 : "=r" (err) \
138 : "r" (x), "b" (addr), "i" (-EFAULT), "0" (err))
139#endif /* __powerpc64__ */
140
141#define __put_user_size(x, ptr, size, retval) \
142do { \
143 retval = 0; \
144 allow_write_to_user(ptr, size); \
145 switch (size) { \
146 case 1: __put_user_asm(x, ptr, retval, "stb"); break; \
147 case 2: __put_user_asm(x, ptr, retval, "sth"); break; \
148 case 4: __put_user_asm(x, ptr, retval, "stw"); break; \
149 case 8: __put_user_asm2(x, ptr, retval); break; \
150 default: __put_user_bad(); \
151 } \
152 prevent_write_to_user(ptr, size); \
153} while (0)
154
155#define __put_user_nocheck(x, ptr, size) \
156({ \
157 long __pu_err; \
158 __typeof__(*(ptr)) __user *__pu_addr = (ptr); \
159 if (!is_kernel_addr((unsigned long)__pu_addr)) \
160 might_fault(); \
161 __chk_user_ptr(ptr); \
162 __put_user_size((x), __pu_addr, (size), __pu_err); \
163 __pu_err; \
164})
165
166#define __put_user_check(x, ptr, size) \
167({ \
168 long __pu_err = -EFAULT; \
169 __typeof__(*(ptr)) __user *__pu_addr = (ptr); \
170 might_fault(); \
171 if (access_ok(__pu_addr, size)) \
172 __put_user_size((x), __pu_addr, (size), __pu_err); \
173 __pu_err; \
174})
175
176#define __put_user_nosleep(x, ptr, size) \
177({ \
178 long __pu_err; \
179 __typeof__(*(ptr)) __user *__pu_addr = (ptr); \
180 __chk_user_ptr(ptr); \
181 __put_user_size((x), __pu_addr, (size), __pu_err); \
182 __pu_err; \
183})
184
185
186extern long __get_user_bad(void);
187
188/*
189 * This does an atomic 128 byte aligned load from userspace.
190 * Upto caller to do enable_kernel_vmx() before calling!
191 */
192#define __get_user_atomic_128_aligned(kaddr, uaddr, err) \
193 __asm__ __volatile__( \
194 ".machine push\n" \
195 ".machine altivec\n" \
196 "1: lvx 0,0,%1 # get user\n" \
197 " stvx 0,0,%2 # put kernel\n" \
198 ".machine pop\n" \
199 "2:\n" \
200 ".section .fixup,\"ax\"\n" \
201 "3: li %0,%3\n" \
202 " b 2b\n" \
203 ".previous\n" \
204 EX_TABLE(1b, 3b) \
205 : "=r" (err) \
206 : "b" (uaddr), "b" (kaddr), "i" (-EFAULT), "0" (err))
207
208#define __get_user_asm(x, addr, err, op) \
209 __asm__ __volatile__( \
210 "1: "op" %1,0(%2) # get_user\n" \
211 "2:\n" \
212 ".section .fixup,\"ax\"\n" \
213 "3: li %0,%3\n" \
214 " li %1,0\n" \
215 " b 2b\n" \
216 ".previous\n" \
217 EX_TABLE(1b, 3b) \
218 : "=r" (err), "=r" (x) \
219 : "b" (addr), "i" (-EFAULT), "0" (err))
220
221#ifdef __powerpc64__
222#define __get_user_asm2(x, addr, err) \
223 __get_user_asm(x, addr, err, "ld")
224#else /* __powerpc64__ */
225#define __get_user_asm2(x, addr, err) \
226 __asm__ __volatile__( \
227 "1: lwz %1,0(%2)\n" \
228 "2: lwz %1+1,4(%2)\n" \
229 "3:\n" \
230 ".section .fixup,\"ax\"\n" \
231 "4: li %0,%3\n" \
232 " li %1,0\n" \
233 " li %1+1,0\n" \
234 " b 3b\n" \
235 ".previous\n" \
236 EX_TABLE(1b, 4b) \
237 EX_TABLE(2b, 4b) \
238 : "=r" (err), "=&r" (x) \
239 : "b" (addr), "i" (-EFAULT), "0" (err))
240#endif /* __powerpc64__ */
241
242#define __get_user_size(x, ptr, size, retval) \
243do { \
244 retval = 0; \
245 __chk_user_ptr(ptr); \
246 if (size > sizeof(x)) \
247 (x) = __get_user_bad(); \
248 allow_read_from_user(ptr, size); \
249 switch (size) { \
250 case 1: __get_user_asm(x, ptr, retval, "lbz"); break; \
251 case 2: __get_user_asm(x, ptr, retval, "lhz"); break; \
252 case 4: __get_user_asm(x, ptr, retval, "lwz"); break; \
253 case 8: __get_user_asm2(x, ptr, retval); break; \
254 default: (x) = __get_user_bad(); \
255 } \
256 prevent_read_from_user(ptr, size); \
257} while (0)
258
259/*
260 * This is a type: either unsigned long, if the argument fits into
261 * that type, or otherwise unsigned long long.
262 */
263#define __long_type(x) \
264 __typeof__(__builtin_choose_expr(sizeof(x) > sizeof(0UL), 0ULL, 0UL))
265
266#define __get_user_nocheck(x, ptr, size) \
267({ \
268 long __gu_err; \
269 __long_type(*(ptr)) __gu_val; \
270 __typeof__(*(ptr)) __user *__gu_addr = (ptr); \
271 __chk_user_ptr(ptr); \
272 if (!is_kernel_addr((unsigned long)__gu_addr)) \
273 might_fault(); \
274 barrier_nospec(); \
275 __get_user_size(__gu_val, __gu_addr, (size), __gu_err); \
276 (x) = (__typeof__(*(ptr)))__gu_val; \
277 __gu_err; \
278})
279
280#define __get_user_check(x, ptr, size) \
281({ \
282 long __gu_err = -EFAULT; \
283 __long_type(*(ptr)) __gu_val = 0; \
284 __typeof__(*(ptr)) __user *__gu_addr = (ptr); \
285 might_fault(); \
286 if (access_ok(__gu_addr, (size))) { \
287 barrier_nospec(); \
288 __get_user_size(__gu_val, __gu_addr, (size), __gu_err); \
289 } \
290 (x) = (__force __typeof__(*(ptr)))__gu_val; \
291 __gu_err; \
292})
293
294#define __get_user_nosleep(x, ptr, size) \
295({ \
296 long __gu_err; \
297 __long_type(*(ptr)) __gu_val; \
298 __typeof__(*(ptr)) __user *__gu_addr = (ptr); \
299 __chk_user_ptr(ptr); \
300 barrier_nospec(); \
301 __get_user_size(__gu_val, __gu_addr, (size), __gu_err); \
302 (x) = (__force __typeof__(*(ptr)))__gu_val; \
303 __gu_err; \
304})
305
306
307/* more complex routines */
308
309extern unsigned long __copy_tofrom_user(void __user *to,
310 const void __user *from, unsigned long size);
311
312#ifdef __powerpc64__
313static inline unsigned long
314raw_copy_in_user(void __user *to, const void __user *from, unsigned long n)
315{
316 unsigned long ret;
317
318 barrier_nospec();
319 allow_read_write_user(to, from, n);
320 ret = __copy_tofrom_user(to, from, n);
321 prevent_read_write_user(to, from, n);
322 return ret;
323}
324#endif /* __powerpc64__ */
325
326static inline unsigned long raw_copy_from_user(void *to,
327 const void __user *from, unsigned long n)
328{
329 unsigned long ret;
330 if (__builtin_constant_p(n) && (n <= 8)) {
331 ret = 1;
332
333 switch (n) {
334 case 1:
335 barrier_nospec();
336 __get_user_size(*(u8 *)to, from, 1, ret);
337 break;
338 case 2:
339 barrier_nospec();
340 __get_user_size(*(u16 *)to, from, 2, ret);
341 break;
342 case 4:
343 barrier_nospec();
344 __get_user_size(*(u32 *)to, from, 4, ret);
345 break;
346 case 8:
347 barrier_nospec();
348 __get_user_size(*(u64 *)to, from, 8, ret);
349 break;
350 }
351 if (ret == 0)
352 return 0;
353 }
354
355 barrier_nospec();
356 allow_read_from_user(from, n);
357 ret = __copy_tofrom_user((__force void __user *)to, from, n);
358 prevent_read_from_user(from, n);
359 return ret;
360}
361
362static inline unsigned long raw_copy_to_user(void __user *to,
363 const void *from, unsigned long n)
364{
365 unsigned long ret;
366 if (__builtin_constant_p(n) && (n <= 8)) {
367 ret = 1;
368
369 switch (n) {
370 case 1:
371 __put_user_size(*(u8 *)from, (u8 __user *)to, 1, ret);
372 break;
373 case 2:
374 __put_user_size(*(u16 *)from, (u16 __user *)to, 2, ret);
375 break;
376 case 4:
377 __put_user_size(*(u32 *)from, (u32 __user *)to, 4, ret);
378 break;
379 case 8:
380 __put_user_size(*(u64 *)from, (u64 __user *)to, 8, ret);
381 break;
382 }
383 if (ret == 0)
384 return 0;
385 }
386
387 allow_write_to_user(to, n);
388 ret = __copy_tofrom_user(to, (__force const void __user *)from, n);
389 prevent_write_to_user(to, n);
390 return ret;
391}
392
393static __always_inline unsigned long __must_check
394copy_to_user_mcsafe(void __user *to, const void *from, unsigned long n)
395{
396 if (likely(check_copy_size(from, n, true))) {
397 if (access_ok(to, n)) {
398 allow_write_to_user(to, n);
399 n = memcpy_mcsafe((void *)to, from, n);
400 prevent_write_to_user(to, n);
401 }
402 }
403
404 return n;
405}
406
407unsigned long __arch_clear_user(void __user *addr, unsigned long size);
408
409static inline unsigned long clear_user(void __user *addr, unsigned long size)
410{
411 unsigned long ret = size;
412 might_fault();
413 if (likely(access_ok(addr, size))) {
414 allow_write_to_user(addr, size);
415 ret = __arch_clear_user(addr, size);
416 prevent_write_to_user(addr, size);
417 }
418 return ret;
419}
420
421static inline unsigned long __clear_user(void __user *addr, unsigned long size)
422{
423 return clear_user(addr, size);
424}
425
426extern long strncpy_from_user(char *dst, const char __user *src, long count);
427extern __must_check long strnlen_user(const char __user *str, long n);
428
429extern long __copy_from_user_flushcache(void *dst, const void __user *src,
430 unsigned size);
431extern void memcpy_page_flushcache(char *to, struct page *page, size_t offset,
432 size_t len);
433
434#endif /* _ARCH_POWERPC_UACCESS_H */