ARM: multi_v7_defconfig: Enable support for the ADC thermal sensor
[linux-2.6-microblaze.git] / arch / arm64 / include / asm / uaccess.h
1 /* SPDX-License-Identifier: GPL-2.0-only */
2 /*
3  * Based on arch/arm/include/asm/uaccess.h
4  *
5  * Copyright (C) 2012 ARM Ltd.
6  */
7 #ifndef __ASM_UACCESS_H
8 #define __ASM_UACCESS_H
9
10 #include <asm/alternative.h>
11 #include <asm/kernel-pgtable.h>
12 #include <asm/sysreg.h>
13
14 /*
15  * User space memory access functions
16  */
17 #include <linux/bitops.h>
18 #include <linux/kasan-checks.h>
19 #include <linux/string.h>
20
21 #include <asm/cpufeature.h>
22 #include <asm/mmu.h>
23 #include <asm/ptrace.h>
24 #include <asm/memory.h>
25 #include <asm/extable.h>
26
27 #define HAVE_GET_KERNEL_NOFAULT
28
29 /*
30  * Test whether a block of memory is a valid user space address.
31  * Returns 1 if the range is valid, 0 otherwise.
32  *
33  * This is equivalent to the following test:
34  * (u65)addr + (u65)size <= (u65)TASK_SIZE_MAX
35  */
36 static inline unsigned long __range_ok(const void __user *addr, unsigned long size)
37 {
38         unsigned long ret, limit = TASK_SIZE_MAX - 1;
39
40         /*
41          * Asynchronous I/O running in a kernel thread does not have the
42          * TIF_TAGGED_ADDR flag of the process owning the mm, so always untag
43          * the user address before checking.
44          */
45         if (IS_ENABLED(CONFIG_ARM64_TAGGED_ADDR_ABI) &&
46             (current->flags & PF_KTHREAD || test_thread_flag(TIF_TAGGED_ADDR)))
47                 addr = untagged_addr(addr);
48
49         __chk_user_ptr(addr);
50         asm volatile(
51         // A + B <= C + 1 for all A,B,C, in four easy steps:
52         // 1: X = A + B; X' = X % 2^64
53         "       adds    %0, %3, %2\n"
54         // 2: Set C = 0 if X > 2^64, to guarantee X' > C in step 4
55         "       csel    %1, xzr, %1, hi\n"
56         // 3: Set X' = ~0 if X >= 2^64. For X == 2^64, this decrements X'
57         //    to compensate for the carry flag being set in step 4. For
58         //    X > 2^64, X' merely has to remain nonzero, which it does.
59         "       csinv   %0, %0, xzr, cc\n"
60         // 4: For X < 2^64, this gives us X' - C - 1 <= 0, where the -1
61         //    comes from the carry in being clear. Otherwise, we are
62         //    testing X' - C == 0, subject to the previous adjustments.
63         "       sbcs    xzr, %0, %1\n"
64         "       cset    %0, ls\n"
65         : "=&r" (ret), "+r" (limit) : "Ir" (size), "0" (addr) : "cc");
66
67         return ret;
68 }
69
70 #define access_ok(addr, size)   __range_ok(addr, size)
71
72 #define _ASM_EXTABLE(from, to)                                          \
73         "       .pushsection    __ex_table, \"a\"\n"                    \
74         "       .align          3\n"                                    \
75         "       .long           (" #from " - .), (" #to " - .)\n"       \
76         "       .popsection\n"
77
78 /*
79  * User access enabling/disabling.
80  */
81 #ifdef CONFIG_ARM64_SW_TTBR0_PAN
82 static inline void __uaccess_ttbr0_disable(void)
83 {
84         unsigned long flags, ttbr;
85
86         local_irq_save(flags);
87         ttbr = read_sysreg(ttbr1_el1);
88         ttbr &= ~TTBR_ASID_MASK;
89         /* reserved_pg_dir placed before swapper_pg_dir */
90         write_sysreg(ttbr - PAGE_SIZE, ttbr0_el1);
91         isb();
92         /* Set reserved ASID */
93         write_sysreg(ttbr, ttbr1_el1);
94         isb();
95         local_irq_restore(flags);
96 }
97
98 static inline void __uaccess_ttbr0_enable(void)
99 {
100         unsigned long flags, ttbr0, ttbr1;
101
102         /*
103          * Disable interrupts to avoid preemption between reading the 'ttbr0'
104          * variable and the MSR. A context switch could trigger an ASID
105          * roll-over and an update of 'ttbr0'.
106          */
107         local_irq_save(flags);
108         ttbr0 = READ_ONCE(current_thread_info()->ttbr0);
109
110         /* Restore active ASID */
111         ttbr1 = read_sysreg(ttbr1_el1);
112         ttbr1 &= ~TTBR_ASID_MASK;               /* safety measure */
113         ttbr1 |= ttbr0 & TTBR_ASID_MASK;
114         write_sysreg(ttbr1, ttbr1_el1);
115         isb();
116
117         /* Restore user page table */
118         write_sysreg(ttbr0, ttbr0_el1);
119         isb();
120         local_irq_restore(flags);
121 }
122
123 static inline bool uaccess_ttbr0_disable(void)
124 {
125         if (!system_uses_ttbr0_pan())
126                 return false;
127         __uaccess_ttbr0_disable();
128         return true;
129 }
130
131 static inline bool uaccess_ttbr0_enable(void)
132 {
133         if (!system_uses_ttbr0_pan())
134                 return false;
135         __uaccess_ttbr0_enable();
136         return true;
137 }
138 #else
139 static inline bool uaccess_ttbr0_disable(void)
140 {
141         return false;
142 }
143
144 static inline bool uaccess_ttbr0_enable(void)
145 {
146         return false;
147 }
148 #endif
149
150 static inline void __uaccess_disable_hw_pan(void)
151 {
152         asm(ALTERNATIVE("nop", SET_PSTATE_PAN(0), ARM64_HAS_PAN,
153                         CONFIG_ARM64_PAN));
154 }
155
156 static inline void __uaccess_enable_hw_pan(void)
157 {
158         asm(ALTERNATIVE("nop", SET_PSTATE_PAN(1), ARM64_HAS_PAN,
159                         CONFIG_ARM64_PAN));
160 }
161
162 /*
163  * The Tag Check Flag (TCF) mode for MTE is per EL, hence TCF0
164  * affects EL0 and TCF affects EL1 irrespective of which TTBR is
165  * used.
166  * The kernel accesses TTBR0 usually with LDTR/STTR instructions
167  * when UAO is available, so these would act as EL0 accesses using
168  * TCF0.
169  * However futex.h code uses exclusives which would be executed as
170  * EL1, this can potentially cause a tag check fault even if the
171  * user disables TCF0.
172  *
173  * To address the problem we set the PSTATE.TCO bit in uaccess_enable()
174  * and reset it in uaccess_disable().
175  *
176  * The Tag check override (TCO) bit disables temporarily the tag checking
177  * preventing the issue.
178  */
179 static inline void uaccess_disable_privileged(void)
180 {
181         asm volatile(ALTERNATIVE("nop", SET_PSTATE_TCO(0),
182                                  ARM64_MTE, CONFIG_KASAN_HW_TAGS));
183
184         if (uaccess_ttbr0_disable())
185                 return;
186
187         __uaccess_enable_hw_pan();
188 }
189
190 static inline void uaccess_enable_privileged(void)
191 {
192         asm volatile(ALTERNATIVE("nop", SET_PSTATE_TCO(1),
193                                  ARM64_MTE, CONFIG_KASAN_HW_TAGS));
194
195         if (uaccess_ttbr0_enable())
196                 return;
197
198         __uaccess_disable_hw_pan();
199 }
200
201 /*
202  * Sanitise a uaccess pointer such that it becomes NULL if above the maximum
203  * user address. In case the pointer is tagged (has the top byte set), untag
204  * the pointer before checking.
205  */
206 #define uaccess_mask_ptr(ptr) (__typeof__(ptr))__uaccess_mask_ptr(ptr)
207 static inline void __user *__uaccess_mask_ptr(const void __user *ptr)
208 {
209         void __user *safe_ptr;
210
211         asm volatile(
212         "       bics    xzr, %3, %2\n"
213         "       csel    %0, %1, xzr, eq\n"
214         : "=&r" (safe_ptr)
215         : "r" (ptr), "r" (TASK_SIZE_MAX - 1),
216           "r" (untagged_addr(ptr))
217         : "cc");
218
219         csdb();
220         return safe_ptr;
221 }
222
223 /*
224  * The "__xxx" versions of the user access functions do not verify the address
225  * space - it must have been done previously with a separate "access_ok()"
226  * call.
227  *
228  * The "__xxx_error" versions set the third argument to -EFAULT if an error
229  * occurs, and leave it unchanged on success.
230  */
231 #define __get_mem_asm(load, reg, x, addr, err)                          \
232         asm volatile(                                                   \
233         "1:     " load "        " reg "1, [%2]\n"                       \
234         "2:\n"                                                          \
235         "       .section .fixup, \"ax\"\n"                              \
236         "       .align  2\n"                                            \
237         "3:     mov     %w0, %3\n"                                      \
238         "       mov     %1, #0\n"                                       \
239         "       b       2b\n"                                           \
240         "       .previous\n"                                            \
241         _ASM_EXTABLE(1b, 3b)                                            \
242         : "+r" (err), "=&r" (x)                                         \
243         : "r" (addr), "i" (-EFAULT))
244
245 #define __raw_get_mem(ldr, x, ptr, err)                                 \
246 do {                                                                    \
247         unsigned long __gu_val;                                         \
248         switch (sizeof(*(ptr))) {                                       \
249         case 1:                                                         \
250                 __get_mem_asm(ldr "b", "%w", __gu_val, (ptr), (err));   \
251                 break;                                                  \
252         case 2:                                                         \
253                 __get_mem_asm(ldr "h", "%w", __gu_val, (ptr), (err));   \
254                 break;                                                  \
255         case 4:                                                         \
256                 __get_mem_asm(ldr, "%w", __gu_val, (ptr), (err));       \
257                 break;                                                  \
258         case 8:                                                         \
259                 __get_mem_asm(ldr, "%x",  __gu_val, (ptr), (err));      \
260                 break;                                                  \
261         default:                                                        \
262                 BUILD_BUG();                                            \
263         }                                                               \
264         (x) = (__force __typeof__(*(ptr)))__gu_val;                     \
265 } while (0)
266
267 #define __raw_get_user(x, ptr, err)                                     \
268 do {                                                                    \
269         __chk_user_ptr(ptr);                                            \
270         uaccess_ttbr0_enable();                                         \
271         __raw_get_mem("ldtr", x, ptr, err);                             \
272         uaccess_ttbr0_disable();                                        \
273 } while (0)
274
275 #define __get_user_error(x, ptr, err)                                   \
276 do {                                                                    \
277         __typeof__(*(ptr)) __user *__p = (ptr);                         \
278         might_fault();                                                  \
279         if (access_ok(__p, sizeof(*__p))) {                             \
280                 __p = uaccess_mask_ptr(__p);                            \
281                 __raw_get_user((x), __p, (err));                        \
282         } else {                                                        \
283                 (x) = (__force __typeof__(x))0; (err) = -EFAULT;        \
284         }                                                               \
285 } while (0)
286
287 #define __get_user(x, ptr)                                              \
288 ({                                                                      \
289         int __gu_err = 0;                                               \
290         __get_user_error((x), (ptr), __gu_err);                         \
291         __gu_err;                                                       \
292 })
293
294 #define get_user        __get_user
295
296 #define __get_kernel_nofault(dst, src, type, err_label)                 \
297 do {                                                                    \
298         int __gkn_err = 0;                                              \
299                                                                         \
300         __raw_get_mem("ldr", *((type *)(dst)),                          \
301                       (__force type *)(src), __gkn_err);                \
302         if (unlikely(__gkn_err))                                        \
303                 goto err_label;                                         \
304 } while (0)
305
306 #define __put_mem_asm(store, reg, x, addr, err)                         \
307         asm volatile(                                                   \
308         "1:     " store "       " reg "1, [%2]\n"                       \
309         "2:\n"                                                          \
310         "       .section .fixup,\"ax\"\n"                               \
311         "       .align  2\n"                                            \
312         "3:     mov     %w0, %3\n"                                      \
313         "       b       2b\n"                                           \
314         "       .previous\n"                                            \
315         _ASM_EXTABLE(1b, 3b)                                            \
316         : "+r" (err)                                                    \
317         : "r" (x), "r" (addr), "i" (-EFAULT))
318
319 #define __raw_put_mem(str, x, ptr, err)                                 \
320 do {                                                                    \
321         __typeof__(*(ptr)) __pu_val = (x);                              \
322         switch (sizeof(*(ptr))) {                                       \
323         case 1:                                                         \
324                 __put_mem_asm(str "b", "%w", __pu_val, (ptr), (err));   \
325                 break;                                                  \
326         case 2:                                                         \
327                 __put_mem_asm(str "h", "%w", __pu_val, (ptr), (err));   \
328                 break;                                                  \
329         case 4:                                                         \
330                 __put_mem_asm(str, "%w", __pu_val, (ptr), (err));       \
331                 break;                                                  \
332         case 8:                                                         \
333                 __put_mem_asm(str, "%x", __pu_val, (ptr), (err));       \
334                 break;                                                  \
335         default:                                                        \
336                 BUILD_BUG();                                            \
337         }                                                               \
338 } while (0)
339
340 #define __raw_put_user(x, ptr, err)                                     \
341 do {                                                                    \
342         __chk_user_ptr(ptr);                                            \
343         uaccess_ttbr0_enable();                                         \
344         __raw_put_mem("sttr", x, ptr, err);                             \
345         uaccess_ttbr0_disable();                                        \
346 } while (0)
347
348 #define __put_user_error(x, ptr, err)                                   \
349 do {                                                                    \
350         __typeof__(*(ptr)) __user *__p = (ptr);                         \
351         might_fault();                                                  \
352         if (access_ok(__p, sizeof(*__p))) {                             \
353                 __p = uaccess_mask_ptr(__p);                            \
354                 __raw_put_user((x), __p, (err));                        \
355         } else  {                                                       \
356                 (err) = -EFAULT;                                        \
357         }                                                               \
358 } while (0)
359
360 #define __put_user(x, ptr)                                              \
361 ({                                                                      \
362         int __pu_err = 0;                                               \
363         __put_user_error((x), (ptr), __pu_err);                         \
364         __pu_err;                                                       \
365 })
366
367 #define put_user        __put_user
368
369 #define __put_kernel_nofault(dst, src, type, err_label)                 \
370 do {                                                                    \
371         int __pkn_err = 0;                                              \
372                                                                         \
373         __raw_put_mem("str", *((type *)(src)),                          \
374                       (__force type *)(dst), __pkn_err);                \
375         if (unlikely(__pkn_err))                                        \
376                 goto err_label;                                         \
377 } while(0)
378
379 extern unsigned long __must_check __arch_copy_from_user(void *to, const void __user *from, unsigned long n);
380 #define raw_copy_from_user(to, from, n)                                 \
381 ({                                                                      \
382         unsigned long __acfu_ret;                                       \
383         uaccess_ttbr0_enable();                                         \
384         __acfu_ret = __arch_copy_from_user((to),                        \
385                                       __uaccess_mask_ptr(from), (n));   \
386         uaccess_ttbr0_disable();                                        \
387         __acfu_ret;                                                     \
388 })
389
390 extern unsigned long __must_check __arch_copy_to_user(void __user *to, const void *from, unsigned long n);
391 #define raw_copy_to_user(to, from, n)                                   \
392 ({                                                                      \
393         unsigned long __actu_ret;                                       \
394         uaccess_ttbr0_enable();                                         \
395         __actu_ret = __arch_copy_to_user(__uaccess_mask_ptr(to),        \
396                                     (from), (n));                       \
397         uaccess_ttbr0_disable();                                        \
398         __actu_ret;                                                     \
399 })
400
401 extern unsigned long __must_check __arch_copy_in_user(void __user *to, const void __user *from, unsigned long n);
402 #define raw_copy_in_user(to, from, n)                                   \
403 ({                                                                      \
404         unsigned long __aciu_ret;                                       \
405         uaccess_ttbr0_enable();                                         \
406         __aciu_ret = __arch_copy_in_user(__uaccess_mask_ptr(to),        \
407                                     __uaccess_mask_ptr(from), (n));     \
408         uaccess_ttbr0_disable();                                        \
409         __aciu_ret;                                                     \
410 })
411
412 #define INLINE_COPY_TO_USER
413 #define INLINE_COPY_FROM_USER
414
415 extern unsigned long __must_check __arch_clear_user(void __user *to, unsigned long n);
416 static inline unsigned long __must_check __clear_user(void __user *to, unsigned long n)
417 {
418         if (access_ok(to, n)) {
419                 uaccess_ttbr0_enable();
420                 n = __arch_clear_user(__uaccess_mask_ptr(to), n);
421                 uaccess_ttbr0_disable();
422         }
423         return n;
424 }
425 #define clear_user      __clear_user
426
427 extern long strncpy_from_user(char *dest, const char __user *src, long count);
428
429 extern __must_check long strnlen_user(const char __user *str, long n);
430
431 #ifdef CONFIG_ARCH_HAS_UACCESS_FLUSHCACHE
432 struct page;
433 void memcpy_page_flushcache(char *to, struct page *page, size_t offset, size_t len);
434 extern unsigned long __must_check __copy_user_flushcache(void *to, const void __user *from, unsigned long n);
435
436 static inline int __copy_from_user_flushcache(void *dst, const void __user *src, unsigned size)
437 {
438         kasan_check_write(dst, size);
439         return __copy_user_flushcache(dst, __uaccess_mask_ptr(src), size);
440 }
441 #endif
442
443 #endif /* __ASM_UACCESS_H */