2 * arch/arm/kernel/unwind.c
4 * Copyright (C) 2008 ARM Limited
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 * Stack unwinding support for ARM
22 * An ARM EABI version of gcc is required to generate the unwind
23 * tables. For information about the structure of the unwind tables,
24 * see "Exception Handling ABI for the ARM Architecture" at:
26 * http://infocenter.arm.com/help/topic/com.arm.doc.subset.swdev.abi/index.html
29 #include <linux/kernel.h>
30 #include <linux/init.h>
31 #include <linux/module.h>
32 #include <linux/sched.h>
33 #include <linux/slab.h>
34 #include <linux/spinlock.h>
35 #include <linux/list.h>
37 #include <asm/stacktrace.h>
38 #include <asm/traps.h>
39 #include <asm/unwind.h>
41 /* Dummy functions to avoid linker complaints */
42 void __aeabi_unwind_cpp_pr0(void)
45 EXPORT_SYMBOL(__aeabi_unwind_cpp_pr0
);
47 void __aeabi_unwind_cpp_pr1(void)
50 EXPORT_SYMBOL(__aeabi_unwind_cpp_pr1
);
52 void __aeabi_unwind_cpp_pr2(void)
55 EXPORT_SYMBOL(__aeabi_unwind_cpp_pr2
);
57 struct unwind_ctrl_block
{
58 unsigned long vrs
[16]; /* virtual register set */
59 unsigned long *insn
; /* pointer to the current instructions word */
60 int entries
; /* number of entries left to interpret */
61 int byte
; /* current byte number in the instructions word */
65 #ifdef CONFIG_THUMB2_KERNEL
75 extern struct unwind_idx __start_unwind_idx
[];
76 extern struct unwind_idx __stop_unwind_idx
[];
78 static DEFINE_SPINLOCK(unwind_lock
);
79 static LIST_HEAD(unwind_tables
);
81 /* Convert a prel31 symbol to an absolute address */
82 #define prel31_to_addr(ptr) \
84 /* sign-extend to 32 bits */ \
85 long offset = (((long)*(ptr)) << 1) >> 1; \
86 (unsigned long)(ptr) + offset; \
90 * Binary search in the unwind index. The entries entries are
91 * guaranteed to be sorted in ascending order by the linker.
93 static struct unwind_idx
*search_index(unsigned long addr
,
94 struct unwind_idx
*first
,
95 struct unwind_idx
*last
)
97 pr_debug("%s(%08lx, %p, %p)\n", __func__
, addr
, first
, last
);
99 if (addr
< first
->addr
) {
100 pr_warning("unwind: Unknown symbol address %08lx\n", addr
);
102 } else if (addr
>= last
->addr
)
105 while (first
< last
- 1) {
106 struct unwind_idx
*mid
= first
+ ((last
- first
+ 1) >> 1);
108 if (addr
< mid
->addr
)
117 static struct unwind_idx
*unwind_find_idx(unsigned long addr
)
119 struct unwind_idx
*idx
= NULL
;
122 pr_debug("%s(%08lx)\n", __func__
, addr
);
124 if (core_kernel_text(addr
))
125 /* main unwind table */
126 idx
= search_index(addr
, __start_unwind_idx
,
127 __stop_unwind_idx
- 1);
129 /* module unwind tables */
130 struct unwind_table
*table
;
132 spin_lock_irqsave(&unwind_lock
, flags
);
133 list_for_each_entry(table
, &unwind_tables
, list
) {
134 if (addr
>= table
->begin_addr
&&
135 addr
< table
->end_addr
) {
136 idx
= search_index(addr
, table
->start
,
141 spin_unlock_irqrestore(&unwind_lock
, flags
);
144 pr_debug("%s: idx = %p\n", __func__
, idx
);
148 static unsigned long unwind_get_byte(struct unwind_ctrl_block
*ctrl
)
152 if (ctrl
->entries
<= 0) {
153 pr_warning("unwind: Corrupt unwind table\n");
157 ret
= (*ctrl
->insn
>> (ctrl
->byte
* 8)) & 0xff;
159 if (ctrl
->byte
== 0) {
170 * Execute the current unwind instruction.
172 static int unwind_exec_insn(struct unwind_ctrl_block
*ctrl
)
174 unsigned long insn
= unwind_get_byte(ctrl
);
176 pr_debug("%s: insn = %08lx\n", __func__
, insn
);
178 if ((insn
& 0xc0) == 0x00)
179 ctrl
->vrs
[SP
] += ((insn
& 0x3f) << 2) + 4;
180 else if ((insn
& 0xc0) == 0x40)
181 ctrl
->vrs
[SP
] -= ((insn
& 0x3f) << 2) + 4;
182 else if ((insn
& 0xf0) == 0x80) {
184 unsigned long *vsp
= (unsigned long *)ctrl
->vrs
[SP
];
185 int load_sp
, reg
= 4;
187 insn
= (insn
<< 8) | unwind_get_byte(ctrl
);
188 mask
= insn
& 0x0fff;
190 pr_warning("unwind: 'Refuse to unwind' instruction %04lx\n",
195 /* pop R4-R15 according to mask */
196 load_sp
= mask
& (1 << (13 - 4));
199 ctrl
->vrs
[reg
] = *vsp
++;
204 ctrl
->vrs
[SP
] = (unsigned long)vsp
;
205 } else if ((insn
& 0xf0) == 0x90 &&
206 (insn
& 0x0d) != 0x0d)
207 ctrl
->vrs
[SP
] = ctrl
->vrs
[insn
& 0x0f];
208 else if ((insn
& 0xf0) == 0xa0) {
209 unsigned long *vsp
= (unsigned long *)ctrl
->vrs
[SP
];
212 /* pop R4-R[4+bbb] */
213 for (reg
= 4; reg
<= 4 + (insn
& 7); reg
++)
214 ctrl
->vrs
[reg
] = *vsp
++;
216 ctrl
->vrs
[14] = *vsp
++;
217 ctrl
->vrs
[SP
] = (unsigned long)vsp
;
218 } else if (insn
== 0xb0) {
219 if (ctrl
->vrs
[PC
] == 0)
220 ctrl
->vrs
[PC
] = ctrl
->vrs
[LR
];
221 /* no further processing */
223 } else if (insn
== 0xb1) {
224 unsigned long mask
= unwind_get_byte(ctrl
);
225 unsigned long *vsp
= (unsigned long *)ctrl
->vrs
[SP
];
228 if (mask
== 0 || mask
& 0xf0) {
229 pr_warning("unwind: Spare encoding %04lx\n",
234 /* pop R0-R3 according to mask */
237 ctrl
->vrs
[reg
] = *vsp
++;
241 ctrl
->vrs
[SP
] = (unsigned long)vsp
;
242 } else if (insn
== 0xb2) {
243 unsigned long uleb128
= unwind_get_byte(ctrl
);
245 ctrl
->vrs
[SP
] += 0x204 + (uleb128
<< 2);
247 pr_warning("unwind: Unhandled instruction %02lx\n", insn
);
251 pr_debug("%s: fp = %08lx sp = %08lx lr = %08lx pc = %08lx\n", __func__
,
252 ctrl
->vrs
[FP
], ctrl
->vrs
[SP
], ctrl
->vrs
[LR
], ctrl
->vrs
[PC
]);
258 * Unwind a single frame starting with *sp for the symbol at *pc. It
259 * updates the *pc and *sp with the new values.
261 int unwind_frame(struct stackframe
*frame
)
263 unsigned long high
, low
;
264 struct unwind_idx
*idx
;
265 struct unwind_ctrl_block ctrl
;
267 /* only go to a higher address on the stack */
269 high
= ALIGN(low
, THREAD_SIZE
) + THREAD_SIZE
;
271 pr_debug("%s(pc = %08lx lr = %08lx sp = %08lx)\n", __func__
,
272 frame
->pc
, frame
->lr
, frame
->sp
);
274 if (!kernel_text_address(frame
->pc
))
277 idx
= unwind_find_idx(frame
->pc
);
279 pr_warning("unwind: Index not found %08lx\n", frame
->pc
);
283 ctrl
.vrs
[FP
] = frame
->fp
;
284 ctrl
.vrs
[SP
] = frame
->sp
;
285 ctrl
.vrs
[LR
] = frame
->lr
;
291 else if ((idx
->insn
& 0x80000000) == 0)
292 /* prel31 to the unwind table */
293 ctrl
.insn
= (unsigned long *)prel31_to_addr(&idx
->insn
);
294 else if ((idx
->insn
& 0xff000000) == 0x80000000)
295 /* only personality routine 0 supported in the index */
296 ctrl
.insn
= &idx
->insn
;
298 pr_warning("unwind: Unsupported personality routine %08lx in the index at %p\n",
303 /* check the personality routine */
304 if ((*ctrl
.insn
& 0xff000000) == 0x80000000) {
307 } else if ((*ctrl
.insn
& 0xff000000) == 0x81000000) {
309 ctrl
.entries
= 1 + ((*ctrl
.insn
& 0x00ff0000) >> 16);
311 pr_warning("unwind: Unsupported personality routine %08lx at %p\n",
312 *ctrl
.insn
, ctrl
.insn
);
316 while (ctrl
.entries
> 0) {
317 int urc
= unwind_exec_insn(&ctrl
);
320 if (ctrl
.vrs
[SP
] < low
|| ctrl
.vrs
[SP
] >= high
)
324 if (ctrl
.vrs
[PC
] == 0)
325 ctrl
.vrs
[PC
] = ctrl
.vrs
[LR
];
327 /* check for infinite loop */
328 if (frame
->pc
== ctrl
.vrs
[PC
])
331 frame
->fp
= ctrl
.vrs
[FP
];
332 frame
->sp
= ctrl
.vrs
[SP
];
333 frame
->lr
= ctrl
.vrs
[LR
];
334 frame
->pc
= ctrl
.vrs
[PC
];
339 void unwind_backtrace(struct pt_regs
*regs
, struct task_struct
*tsk
)
341 struct stackframe frame
;
342 register unsigned long current_sp
asm ("sp");
344 pr_debug("%s(regs = %p tsk = %p)\n", __func__
, regs
, tsk
);
350 frame
.fp
= regs
->ARM_fp
;
351 frame
.sp
= regs
->ARM_sp
;
352 frame
.lr
= regs
->ARM_lr
;
353 frame
.pc
= regs
->ARM_pc
;
354 } else if (tsk
== current
) {
355 frame
.fp
= (unsigned long)__builtin_frame_address(0);
356 frame
.sp
= current_sp
;
357 frame
.lr
= (unsigned long)__builtin_return_address(0);
358 frame
.pc
= (unsigned long)unwind_backtrace
;
360 /* task blocked in __switch_to */
361 frame
.fp
= thread_saved_fp(tsk
);
362 frame
.sp
= thread_saved_sp(tsk
);
364 * The function calling __switch_to cannot be a leaf function
365 * so LR is recovered from the stack.
368 frame
.pc
= thread_saved_pc(tsk
);
373 unsigned long where
= frame
.pc
;
375 urc
= unwind_frame(&frame
);
378 dump_backtrace_entry(where
, frame
.pc
, frame
.sp
- 4);
382 struct unwind_table
*unwind_table_add(unsigned long start
, unsigned long size
,
383 unsigned long text_addr
,
384 unsigned long text_size
)
387 struct unwind_idx
*idx
;
388 struct unwind_table
*tab
= kmalloc(sizeof(*tab
), GFP_KERNEL
);
390 pr_debug("%s(%08lx, %08lx, %08lx, %08lx)\n", __func__
, start
, size
,
391 text_addr
, text_size
);
396 tab
->start
= (struct unwind_idx
*)start
;
397 tab
->stop
= (struct unwind_idx
*)(start
+ size
);
398 tab
->begin_addr
= text_addr
;
399 tab
->end_addr
= text_addr
+ text_size
;
401 /* Convert the symbol addresses to absolute values */
402 for (idx
= tab
->start
; idx
< tab
->stop
; idx
++)
403 idx
->addr
= prel31_to_addr(&idx
->addr
);
405 spin_lock_irqsave(&unwind_lock
, flags
);
406 list_add_tail(&tab
->list
, &unwind_tables
);
407 spin_unlock_irqrestore(&unwind_lock
, flags
);
412 void unwind_table_del(struct unwind_table
*tab
)
419 spin_lock_irqsave(&unwind_lock
, flags
);
420 list_del(&tab
->list
);
421 spin_unlock_irqrestore(&unwind_lock
, flags
);
426 int __init
unwind_init(void)
428 struct unwind_idx
*idx
;
430 /* Convert the symbol addresses to absolute values */
431 for (idx
= __start_unwind_idx
; idx
< __stop_unwind_idx
; idx
++)
432 idx
->addr
= prel31_to_addr(&idx
->addr
);
434 pr_debug("unwind: ARM stack unwinding initialised\n");