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David Brazdil0f672f62019-12-10 10:32:29 +00001/* SPDX-License-Identifier: GPL-2.0-only */
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002/*
3 * linux/arch/arm/kernel/entry-common.S
4 *
5 * Copyright (C) 2000 Russell King
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00006 */
7
8#include <asm/assembler.h>
9#include <asm/unistd.h>
10#include <asm/ftrace.h>
11#include <asm/unwind.h>
12#include <asm/memory.h>
13#ifdef CONFIG_AEABI
14#include <asm/unistd-oabi.h>
15#endif
16
17 .equ NR_syscalls, __NR_syscalls
18
19#ifdef CONFIG_NEED_RET_TO_USER
20#include <mach/entry-macro.S>
21#else
22 .macro arch_ret_to_user, tmp1, tmp2
23 .endm
24#endif
25
26#include "entry-header.S"
27
28saved_psr .req r8
29#if defined(CONFIG_TRACE_IRQFLAGS) || defined(CONFIG_CONTEXT_TRACKING)
30saved_pc .req r9
31#define TRACE(x...) x
32#else
33saved_pc .req lr
34#define TRACE(x...)
35#endif
36
37 .section .entry.text,"ax",%progbits
38 .align 5
39#if !(IS_ENABLED(CONFIG_TRACE_IRQFLAGS) || IS_ENABLED(CONFIG_CONTEXT_TRACKING) || \
40 IS_ENABLED(CONFIG_DEBUG_RSEQ))
41/*
42 * This is the fast syscall return path. We do as little as possible here,
43 * such as avoiding writing r0 to the stack. We only use this path if we
44 * have tracing, context tracking and rseq debug disabled - the overheads
45 * from those features make this path too inefficient.
46 */
47ret_fast_syscall:
48__ret_fast_syscall:
49 UNWIND(.fnstart )
50 UNWIND(.cantunwind )
51 disable_irq_notrace @ disable interrupts
52 ldr r2, [tsk, #TI_ADDR_LIMIT]
53 cmp r2, #TASK_SIZE
54 blne addr_limit_check_failed
55 ldr r1, [tsk, #TI_FLAGS] @ re-check for syscall tracing
56 tst r1, #_TIF_SYSCALL_WORK | _TIF_WORK_MASK
57 bne fast_work_pending
58
59
60 /* perform architecture specific actions before user return */
61 arch_ret_to_user r1, lr
62
63 restore_user_regs fast = 1, offset = S_OFF
64 UNWIND(.fnend )
65ENDPROC(ret_fast_syscall)
66
67 /* Ok, we need to do extra processing, enter the slow path. */
68fast_work_pending:
69 str r0, [sp, #S_R0+S_OFF]! @ returned r0
70 /* fall through to work_pending */
71#else
72/*
73 * The "replacement" ret_fast_syscall for when tracing, context tracking,
74 * or rseq debug is enabled. As we will need to call out to some C functions,
75 * we save r0 first to avoid needing to save registers around each C function
76 * call.
77 */
78ret_fast_syscall:
79__ret_fast_syscall:
80 UNWIND(.fnstart )
81 UNWIND(.cantunwind )
82 str r0, [sp, #S_R0 + S_OFF]! @ save returned r0
83#if IS_ENABLED(CONFIG_DEBUG_RSEQ)
84 /* do_rseq_syscall needs interrupts enabled. */
85 mov r0, sp @ 'regs'
86 bl do_rseq_syscall
87#endif
88 disable_irq_notrace @ disable interrupts
89 ldr r2, [tsk, #TI_ADDR_LIMIT]
90 cmp r2, #TASK_SIZE
91 blne addr_limit_check_failed
92 ldr r1, [tsk, #TI_FLAGS] @ re-check for syscall tracing
93 tst r1, #_TIF_SYSCALL_WORK | _TIF_WORK_MASK
94 beq no_work_pending
95 UNWIND(.fnend )
96ENDPROC(ret_fast_syscall)
97
98 /* Slower path - fall through to work_pending */
99#endif
100
101 tst r1, #_TIF_SYSCALL_WORK
102 bne __sys_trace_return_nosave
103slow_work_pending:
104 mov r0, sp @ 'regs'
105 mov r2, why @ 'syscall'
106 bl do_work_pending
107 cmp r0, #0
108 beq no_work_pending
109 movlt scno, #(__NR_restart_syscall - __NR_SYSCALL_BASE)
110 ldmia sp, {r0 - r6} @ have to reload r0 - r6
111 b local_restart @ ... and off we go
112ENDPROC(ret_fast_syscall)
113
114/*
115 * "slow" syscall return path. "why" tells us if this was a real syscall.
116 * IRQs may be enabled here, so always disable them. Note that we use the
117 * "notrace" version to avoid calling into the tracing code unnecessarily.
118 * do_work_pending() will update this state if necessary.
119 */
120ENTRY(ret_to_user)
121ret_slow_syscall:
122#if IS_ENABLED(CONFIG_DEBUG_RSEQ)
123 /* do_rseq_syscall needs interrupts enabled. */
124 enable_irq_notrace @ enable interrupts
125 mov r0, sp @ 'regs'
126 bl do_rseq_syscall
127#endif
128 disable_irq_notrace @ disable interrupts
129ENTRY(ret_to_user_from_irq)
130 ldr r2, [tsk, #TI_ADDR_LIMIT]
131 cmp r2, #TASK_SIZE
132 blne addr_limit_check_failed
133 ldr r1, [tsk, #TI_FLAGS]
134 tst r1, #_TIF_WORK_MASK
135 bne slow_work_pending
136no_work_pending:
137 asm_trace_hardirqs_on save = 0
138
139 /* perform architecture specific actions before user return */
140 arch_ret_to_user r1, lr
141 ct_user_enter save = 0
142
143 restore_user_regs fast = 0, offset = 0
144ENDPROC(ret_to_user_from_irq)
145ENDPROC(ret_to_user)
146
147/*
148 * This is how we return from a fork.
149 */
150ENTRY(ret_from_fork)
151 bl schedule_tail
152 cmp r5, #0
153 movne r0, r4
154 badrne lr, 1f
155 retne r5
1561: get_thread_info tsk
157 b ret_slow_syscall
158ENDPROC(ret_from_fork)
159
160/*=============================================================================
161 * SWI handler
162 *-----------------------------------------------------------------------------
163 */
164
165 .align 5
Olivier Deprez157378f2022-04-04 15:47:50 +0200166#ifdef CONFIG_HARDEN_BRANCH_HISTORY
167ENTRY(vector_bhb_loop8_swi)
168 sub sp, sp, #PT_REGS_SIZE
169 stmia sp, {r0 - r12}
170 mov r8, #8
1711: b 2f
1722: subs r8, r8, #1
173 bne 1b
174 dsb
175 isb
176 b 3f
177ENDPROC(vector_bhb_loop8_swi)
178
179 .align 5
180ENTRY(vector_bhb_bpiall_swi)
181 sub sp, sp, #PT_REGS_SIZE
182 stmia sp, {r0 - r12}
183 mcr p15, 0, r8, c7, c5, 6 @ BPIALL
184 isb
185 b 3f
186ENDPROC(vector_bhb_bpiall_swi)
187#endif
188 .align 5
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000189ENTRY(vector_swi)
190#ifdef CONFIG_CPU_V7M
191 v7m_exception_entry
192#else
193 sub sp, sp, #PT_REGS_SIZE
194 stmia sp, {r0 - r12} @ Calling r0 - r12
Olivier Deprez157378f2022-04-04 15:47:50 +02001953:
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000196 ARM( add r8, sp, #S_PC )
197 ARM( stmdb r8, {sp, lr}^ ) @ Calling sp, lr
198 THUMB( mov r8, sp )
199 THUMB( store_user_sp_lr r8, r10, S_SP ) @ calling sp, lr
200 mrs saved_psr, spsr @ called from non-FIQ mode, so ok.
201 TRACE( mov saved_pc, lr )
202 str saved_pc, [sp, #S_PC] @ Save calling PC
203 str saved_psr, [sp, #S_PSR] @ Save CPSR
204 str r0, [sp, #S_OLD_R0] @ Save OLD_R0
205#endif
206 zero_fp
207 alignment_trap r10, ip, __cr_alignment
208 asm_trace_hardirqs_on save=0
209 enable_irq_notrace
210 ct_user_exit save=0
211
212 /*
213 * Get the system call number.
214 */
215
216#if defined(CONFIG_OABI_COMPAT)
217
218 /*
219 * If we have CONFIG_OABI_COMPAT then we need to look at the swi
220 * value to determine if it is an EABI or an old ABI call.
221 */
222#ifdef CONFIG_ARM_THUMB
223 tst saved_psr, #PSR_T_BIT
224 movne r10, #0 @ no thumb OABI emulation
225 USER( ldreq r10, [saved_pc, #-4] ) @ get SWI instruction
226#else
227 USER( ldr r10, [saved_pc, #-4] ) @ get SWI instruction
228#endif
229 ARM_BE8(rev r10, r10) @ little endian instruction
230
231#elif defined(CONFIG_AEABI)
232
233 /*
234 * Pure EABI user space always put syscall number into scno (r7).
235 */
236#elif defined(CONFIG_ARM_THUMB)
237 /* Legacy ABI only, possibly thumb mode. */
238 tst saved_psr, #PSR_T_BIT @ this is SPSR from save_user_regs
239 addne scno, r7, #__NR_SYSCALL_BASE @ put OS number in
240 USER( ldreq scno, [saved_pc, #-4] )
241
242#else
243 /* Legacy ABI only. */
244 USER( ldr scno, [saved_pc, #-4] ) @ get SWI instruction
245#endif
246
247 /* saved_psr and saved_pc are now dead */
248
249 uaccess_disable tbl
250
251 adr tbl, sys_call_table @ load syscall table pointer
252
253#if defined(CONFIG_OABI_COMPAT)
254 /*
255 * If the swi argument is zero, this is an EABI call and we do nothing.
256 *
257 * If this is an old ABI call, get the syscall number into scno and
258 * get the old ABI syscall table address.
259 */
260 bics r10, r10, #0xff000000
261 eorne scno, r10, #__NR_OABI_SYSCALL_BASE
262 ldrne tbl, =sys_oabi_call_table
263#elif !defined(CONFIG_AEABI)
264 bic scno, scno, #0xff000000 @ mask off SWI op-code
265 eor scno, scno, #__NR_SYSCALL_BASE @ check OS number
266#endif
267 get_thread_info tsk
268 /*
269 * Reload the registers that may have been corrupted on entry to
270 * the syscall assembly (by tracing or context tracking.)
271 */
272 TRACE( ldmia sp, {r0 - r3} )
273
274local_restart:
275 ldr r10, [tsk, #TI_FLAGS] @ check for syscall tracing
276 stmdb sp!, {r4, r5} @ push fifth and sixth args
277
278 tst r10, #_TIF_SYSCALL_WORK @ are we tracing syscalls?
279 bne __sys_trace
280
281 invoke_syscall tbl, scno, r10, __ret_fast_syscall
282
283 add r1, sp, #S_OFF
2842: cmp scno, #(__ARM_NR_BASE - __NR_SYSCALL_BASE)
285 eor r0, scno, #__NR_SYSCALL_BASE @ put OS number back
286 bcs arm_syscall
287 mov why, #0 @ no longer a real syscall
288 b sys_ni_syscall @ not private func
289
290#if defined(CONFIG_OABI_COMPAT) || !defined(CONFIG_AEABI)
291 /*
292 * We failed to handle a fault trying to access the page
293 * containing the swi instruction, but we're not really in a
294 * position to return -EFAULT. Instead, return back to the
295 * instruction and re-enter the user fault handling path trying
296 * to page it in. This will likely result in sending SEGV to the
297 * current task.
298 */
2999001:
300 sub lr, saved_pc, #4
301 str lr, [sp, #S_PC]
302 get_thread_info tsk
303 b ret_fast_syscall
304#endif
305ENDPROC(vector_swi)
306
307 /*
308 * This is the really slow path. We're going to be doing
309 * context switches, and waiting for our parent to respond.
310 */
311__sys_trace:
312 mov r1, scno
313 add r0, sp, #S_OFF
314 bl syscall_trace_enter
315 mov scno, r0
316 invoke_syscall tbl, scno, r10, __sys_trace_return, reload=1
317 cmp scno, #-1 @ skip the syscall?
318 bne 2b
319 add sp, sp, #S_OFF @ restore stack
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000320
David Brazdil0f672f62019-12-10 10:32:29 +0000321__sys_trace_return_nosave:
322 enable_irq_notrace
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000323 mov r0, sp
324 bl syscall_trace_exit
325 b ret_slow_syscall
326
David Brazdil0f672f62019-12-10 10:32:29 +0000327__sys_trace_return:
328 str r0, [sp, #S_R0 + S_OFF]! @ save returned r0
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000329 mov r0, sp
330 bl syscall_trace_exit
331 b ret_slow_syscall
332
333 .align 5
334#ifdef CONFIG_ALIGNMENT_TRAP
335 .type __cr_alignment, #object
336__cr_alignment:
337 .word cr_alignment
338#endif
339 .ltorg
340
341 .macro syscall_table_start, sym
342 .equ __sys_nr, 0
343 .type \sym, #object
344ENTRY(\sym)
345 .endm
346
347 .macro syscall, nr, func
348 .ifgt __sys_nr - \nr
349 .error "Duplicated/unorded system call entry"
350 .endif
351 .rept \nr - __sys_nr
352 .long sys_ni_syscall
353 .endr
354 .long \func
355 .equ __sys_nr, \nr + 1
356 .endm
357
358 .macro syscall_table_end, sym
359 .ifgt __sys_nr - __NR_syscalls
360 .error "System call table too big"
361 .endif
362 .rept __NR_syscalls - __sys_nr
363 .long sys_ni_syscall
364 .endr
365 .size \sym, . - \sym
366 .endm
367
368#define NATIVE(nr, func) syscall nr, func
369
370/*
371 * This is the syscall table declaration for native ABI syscalls.
372 * With EABI a couple syscalls are obsolete and defined as sys_ni_syscall.
373 */
374 syscall_table_start sys_call_table
375#define COMPAT(nr, native, compat) syscall nr, native
376#ifdef CONFIG_AEABI
377#include <calls-eabi.S>
378#else
379#include <calls-oabi.S>
380#endif
381#undef COMPAT
382 syscall_table_end sys_call_table
383
384/*============================================================================
385 * Special system call wrappers
386 */
387@ r0 = syscall number
388@ r8 = syscall table
389sys_syscall:
390 bic scno, r0, #__NR_OABI_SYSCALL_BASE
391 cmp scno, #__NR_syscall - __NR_SYSCALL_BASE
392 cmpne scno, #NR_syscalls @ check range
393#ifdef CONFIG_CPU_SPECTRE
394 movhs scno, #0
395 csdb
396#endif
David Brazdil0f672f62019-12-10 10:32:29 +0000397 stmialo sp, {r5, r6} @ shuffle args
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000398 movlo r0, r1
399 movlo r1, r2
400 movlo r2, r3
401 movlo r3, r4
402 ldrlo pc, [tbl, scno, lsl #2]
403 b sys_ni_syscall
404ENDPROC(sys_syscall)
405
406sys_sigreturn_wrapper:
407 add r0, sp, #S_OFF
408 mov why, #0 @ prevent syscall restart handling
409 b sys_sigreturn
410ENDPROC(sys_sigreturn_wrapper)
411
412sys_rt_sigreturn_wrapper:
413 add r0, sp, #S_OFF
414 mov why, #0 @ prevent syscall restart handling
415 b sys_rt_sigreturn
416ENDPROC(sys_rt_sigreturn_wrapper)
417
418sys_statfs64_wrapper:
419 teq r1, #88
420 moveq r1, #84
421 b sys_statfs64
422ENDPROC(sys_statfs64_wrapper)
423
424sys_fstatfs64_wrapper:
425 teq r1, #88
426 moveq r1, #84
427 b sys_fstatfs64
428ENDPROC(sys_fstatfs64_wrapper)
429
430/*
431 * Note: off_4k (r5) is always units of 4K. If we can't do the requested
432 * offset, we return EINVAL.
433 */
434sys_mmap2:
435 str r5, [sp, #4]
436 b sys_mmap_pgoff
437ENDPROC(sys_mmap2)
438
439#ifdef CONFIG_OABI_COMPAT
440
441/*
442 * These are syscalls with argument register differences
443 */
444
445sys_oabi_pread64:
446 stmia sp, {r3, r4}
447 b sys_pread64
448ENDPROC(sys_oabi_pread64)
449
450sys_oabi_pwrite64:
451 stmia sp, {r3, r4}
452 b sys_pwrite64
453ENDPROC(sys_oabi_pwrite64)
454
455sys_oabi_truncate64:
456 mov r3, r2
457 mov r2, r1
458 b sys_truncate64
459ENDPROC(sys_oabi_truncate64)
460
461sys_oabi_ftruncate64:
462 mov r3, r2
463 mov r2, r1
464 b sys_ftruncate64
465ENDPROC(sys_oabi_ftruncate64)
466
467sys_oabi_readahead:
468 str r3, [sp]
469 mov r3, r2
470 mov r2, r1
471 b sys_readahead
472ENDPROC(sys_oabi_readahead)
473
474/*
475 * Let's declare a second syscall table for old ABI binaries
476 * using the compatibility syscall entries.
477 */
478 syscall_table_start sys_oabi_call_table
479#define COMPAT(nr, native, compat) syscall nr, compat
480#include <calls-oabi.S>
481 syscall_table_end sys_oabi_call_table
482
483#endif
484