1 /* DWARF2 exception handling and frame unwind runtime interface routines.
2 Copyright (C) 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006,
3 2008, 2009, 2010, 2011 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it
8 under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
12 GCC is distributed in the hope that it will be useful, but WITHOUT
13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
14 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
15 License for more details.
17 Under Section 7 of GPL version 3, you are granted additional
18 permissions described in the GCC Runtime Library Exception, version
19 3.1, as published by the Free Software Foundation.
21 You should have received a copy of the GNU General Public License and
22 a copy of the GCC Runtime Library Exception along with this program;
23 see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
24 <http://www.gnu.org/licenses/>. */
28 #include "coretypes.h"
30 #include "libgcc_tm.h"
33 #ifdef __USING_SJLJ_EXCEPTIONS__
34 # define NO_SIZE_OF_ENCODED_VALUE
36 #include "unwind-pe.h"
37 #include "unwind-dw2-fde.h"
39 #include "unwind-dw2.h"
45 #ifndef __USING_SJLJ_EXCEPTIONS__
47 #ifndef STACK_GROWS_DOWNWARD
48 #define STACK_GROWS_DOWNWARD 0
50 #undef STACK_GROWS_DOWNWARD
51 #define STACK_GROWS_DOWNWARD 1
54 /* Dwarf frame registers used for pre gcc 3.0 compiled glibc. */
55 #ifndef PRE_GCC3_DWARF_FRAME_REGISTERS
56 #define PRE_GCC3_DWARF_FRAME_REGISTERS DWARF_FRAME_REGISTERS
59 #ifndef DWARF_REG_TO_UNWIND_COLUMN
60 #define DWARF_REG_TO_UNWIND_COLUMN(REGNO) (REGNO)
63 #ifdef REG_VALUE_IN_UNWIND_CONTEXT
64 typedef _Unwind_Word _Unwind_Context_Reg_Val
;
66 #ifndef ASSUME_EXTENDED_UNWIND_CONTEXT
67 #define ASSUME_EXTENDED_UNWIND_CONTEXT 1
70 static inline _Unwind_Word
71 _Unwind_Get_Unwind_Word (_Unwind_Context_Reg_Val val
)
76 static inline _Unwind_Context_Reg_Val
77 _Unwind_Get_Unwind_Context_Reg_Val (_Unwind_Word val
)
82 typedef void *_Unwind_Context_Reg_Val
;
84 static inline _Unwind_Word
85 _Unwind_Get_Unwind_Word (_Unwind_Context_Reg_Val val
)
87 return (_Unwind_Word
) (_Unwind_Internal_Ptr
) val
;
90 static inline _Unwind_Context_Reg_Val
91 _Unwind_Get_Unwind_Context_Reg_Val (_Unwind_Word val
)
93 return (_Unwind_Context_Reg_Val
) (_Unwind_Internal_Ptr
) val
;
97 #ifndef ASSUME_EXTENDED_UNWIND_CONTEXT
98 #define ASSUME_EXTENDED_UNWIND_CONTEXT 0
101 /* This is the register and unwind state for a particular frame. This
102 provides the information necessary to unwind up past a frame and return
104 struct _Unwind_Context
106 _Unwind_Context_Reg_Val reg
[DWARF_FRAME_REGISTERS
+1];
110 struct dwarf_eh_bases bases
;
111 /* Signal frame context. */
112 #define SIGNAL_FRAME_BIT ((~(_Unwind_Word) 0 >> 1) + 1)
113 /* Context which has version/args_size/by_value fields. */
114 #define EXTENDED_CONTEXT_BIT ((~(_Unwind_Word) 0 >> 2) + 1)
116 /* 0 for now, can be increased when further fields are added to
117 struct _Unwind_Context. */
118 _Unwind_Word version
;
119 _Unwind_Word args_size
;
120 char by_value
[DWARF_FRAME_REGISTERS
+1];
123 /* Byte size of every register managed by these routines. */
124 static unsigned char dwarf_reg_size_table
[DWARF_FRAME_REGISTERS
+1];
127 /* Read unaligned data from the instruction buffer. */
132 unsigned u2
__attribute__ ((mode (HI
)));
133 unsigned u4
__attribute__ ((mode (SI
)));
134 unsigned u8
__attribute__ ((mode (DI
)));
135 signed s2
__attribute__ ((mode (HI
)));
136 signed s4
__attribute__ ((mode (SI
)));
137 signed s8
__attribute__ ((mode (DI
)));
138 } __attribute__ ((packed
));
140 static void uw_update_context (struct _Unwind_Context
*, _Unwind_FrameState
*);
141 static _Unwind_Reason_Code
uw_frame_state_for (struct _Unwind_Context
*,
142 _Unwind_FrameState
*);
145 read_pointer (const void *p
) { const union unaligned
*up
= p
; return up
->p
; }
148 read_1u (const void *p
) { return *(const unsigned char *) p
; }
151 read_1s (const void *p
) { return *(const signed char *) p
; }
154 read_2u (const void *p
) { const union unaligned
*up
= p
; return up
->u2
; }
157 read_2s (const void *p
) { const union unaligned
*up
= p
; return up
->s2
; }
159 static inline unsigned int
160 read_4u (const void *p
) { const union unaligned
*up
= p
; return up
->u4
; }
163 read_4s (const void *p
) { const union unaligned
*up
= p
; return up
->s4
; }
165 static inline unsigned long
166 read_8u (const void *p
) { const union unaligned
*up
= p
; return up
->u8
; }
168 static inline unsigned long
169 read_8s (const void *p
) { const union unaligned
*up
= p
; return up
->s8
; }
171 static inline _Unwind_Word
172 _Unwind_IsSignalFrame (struct _Unwind_Context
*context
)
174 return (context
->flags
& SIGNAL_FRAME_BIT
) ? 1 : 0;
178 _Unwind_SetSignalFrame (struct _Unwind_Context
*context
, int val
)
181 context
->flags
|= SIGNAL_FRAME_BIT
;
183 context
->flags
&= ~SIGNAL_FRAME_BIT
;
186 static inline _Unwind_Word
187 _Unwind_IsExtendedContext (struct _Unwind_Context
*context
)
189 return (ASSUME_EXTENDED_UNWIND_CONTEXT
190 || (context
->flags
& EXTENDED_CONTEXT_BIT
));
193 /* Get the value of register INDEX as saved in CONTEXT. */
196 _Unwind_GetGR (struct _Unwind_Context
*context
, int index
)
199 _Unwind_Context_Reg_Val val
;
201 #ifdef DWARF_ZERO_REG
202 if (index
== DWARF_ZERO_REG
)
206 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
207 gcc_assert (index
< (int) sizeof(dwarf_reg_size_table
));
208 size
= dwarf_reg_size_table
[index
];
209 val
= context
->reg
[index
];
211 if (_Unwind_IsExtendedContext (context
) && context
->by_value
[index
])
212 return _Unwind_Get_Unwind_Word (val
);
214 /* This will segfault if the register hasn't been saved. */
215 if (size
== sizeof(_Unwind_Ptr
))
216 return * (_Unwind_Ptr
*) (_Unwind_Internal_Ptr
) val
;
219 gcc_assert (size
== sizeof(_Unwind_Word
));
220 return * (_Unwind_Word
*) (_Unwind_Internal_Ptr
) val
;
225 _Unwind_GetPtr (struct _Unwind_Context
*context
, int index
)
227 return (void *)(_Unwind_Ptr
) _Unwind_GetGR (context
, index
);
230 /* Get the value of the CFA as saved in CONTEXT. */
233 _Unwind_GetCFA (struct _Unwind_Context
*context
)
235 return (_Unwind_Ptr
) context
->cfa
;
238 /* Overwrite the saved value for register INDEX in CONTEXT with VAL. */
241 _Unwind_SetGR (struct _Unwind_Context
*context
, int index
, _Unwind_Word val
)
246 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
247 gcc_assert (index
< (int) sizeof(dwarf_reg_size_table
));
248 size
= dwarf_reg_size_table
[index
];
250 if (_Unwind_IsExtendedContext (context
) && context
->by_value
[index
])
252 context
->reg
[index
] = _Unwind_Get_Unwind_Context_Reg_Val (val
);
256 ptr
= (void *) (_Unwind_Internal_Ptr
) context
->reg
[index
];
258 if (size
== sizeof(_Unwind_Ptr
))
259 * (_Unwind_Ptr
*) ptr
= val
;
262 gcc_assert (size
== sizeof(_Unwind_Word
));
263 * (_Unwind_Word
*) ptr
= val
;
267 /* Get the pointer to a register INDEX as saved in CONTEXT. */
270 _Unwind_GetGRPtr (struct _Unwind_Context
*context
, int index
)
272 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
273 if (_Unwind_IsExtendedContext (context
) && context
->by_value
[index
])
274 return &context
->reg
[index
];
275 return (void *) (_Unwind_Internal_Ptr
) context
->reg
[index
];
278 /* Set the pointer to a register INDEX as saved in CONTEXT. */
281 _Unwind_SetGRPtr (struct _Unwind_Context
*context
, int index
, void *p
)
283 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
284 if (_Unwind_IsExtendedContext (context
))
285 context
->by_value
[index
] = 0;
286 context
->reg
[index
] = (_Unwind_Context_Reg_Val
) (_Unwind_Internal_Ptr
) p
;
289 /* Overwrite the saved value for register INDEX in CONTEXT with VAL. */
292 _Unwind_SetGRValue (struct _Unwind_Context
*context
, int index
,
295 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
296 gcc_assert (index
< (int) sizeof(dwarf_reg_size_table
));
297 /* Return column size may be smaller than _Unwind_Context_Reg_Val. */
298 gcc_assert (dwarf_reg_size_table
[index
] <= sizeof (_Unwind_Context_Reg_Val
));
300 context
->by_value
[index
] = 1;
301 context
->reg
[index
] = _Unwind_Get_Unwind_Context_Reg_Val (val
);
304 /* Return nonzero if register INDEX is stored by value rather than
308 _Unwind_GRByValue (struct _Unwind_Context
*context
, int index
)
310 index
= DWARF_REG_TO_UNWIND_COLUMN (index
);
311 return context
->by_value
[index
];
314 /* Retrieve the return address for CONTEXT. */
317 _Unwind_GetIP (struct _Unwind_Context
*context
)
319 return (_Unwind_Ptr
) context
->ra
;
322 /* Retrieve the return address and flag whether that IP is before
323 or after first not yet fully executed instruction. */
326 _Unwind_GetIPInfo (struct _Unwind_Context
*context
, int *ip_before_insn
)
328 *ip_before_insn
= _Unwind_IsSignalFrame (context
);
329 return (_Unwind_Ptr
) context
->ra
;
332 /* Overwrite the return address for CONTEXT with VAL. */
335 _Unwind_SetIP (struct _Unwind_Context
*context
, _Unwind_Ptr val
)
337 context
->ra
= (void *) val
;
341 _Unwind_GetLanguageSpecificData (struct _Unwind_Context
*context
)
343 return context
->lsda
;
347 _Unwind_GetRegionStart (struct _Unwind_Context
*context
)
349 return (_Unwind_Ptr
) context
->bases
.func
;
353 _Unwind_FindEnclosingFunction (void *pc
)
355 struct dwarf_eh_bases bases
;
356 const struct dwarf_fde
*fde
= _Unwind_Find_FDE (pc
-1, &bases
);
365 _Unwind_GetDataRelBase (struct _Unwind_Context
*context
)
367 return (_Unwind_Ptr
) context
->bases
.dbase
;
371 _Unwind_GetTextRelBase (struct _Unwind_Context
*context
)
373 return (_Unwind_Ptr
) context
->bases
.tbase
;
377 #include "md-unwind-support.h"
379 /* Extract any interesting information from the CIE for the translation
380 unit F belongs to. Return a pointer to the byte after the augmentation,
381 or NULL if we encountered an undecipherable augmentation. */
383 static const unsigned char *
384 extract_cie_info (const struct dwarf_cie
*cie
, struct _Unwind_Context
*context
,
385 _Unwind_FrameState
*fs
)
387 const unsigned char *aug
= cie
->augmentation
;
388 const unsigned char *p
= aug
+ strlen ((const char *)aug
) + 1;
389 const unsigned char *ret
= NULL
;
393 /* g++ v2 "eh" has pointer immediately following augmentation string,
394 so it must be handled first. */
395 if (aug
[0] == 'e' && aug
[1] == 'h')
397 fs
->eh_ptr
= read_pointer (p
);
398 p
+= sizeof (void *);
402 /* After the augmentation resp. pointer for "eh" augmentation
403 follows for CIE version >= 4 address size byte and
404 segment size byte. */
405 if (__builtin_expect (cie
->version
>= 4, 0))
407 if (p
[0] != sizeof (void *) || p
[1] != 0)
411 /* Immediately following this are the code and
412 data alignment and return address column. */
413 p
= read_uleb128 (p
, &utmp
);
414 fs
->code_align
= (_Unwind_Word
)utmp
;
415 p
= read_sleb128 (p
, &stmp
);
416 fs
->data_align
= (_Unwind_Sword
)stmp
;
417 if (cie
->version
== 1)
418 fs
->retaddr_column
= *p
++;
421 p
= read_uleb128 (p
, &utmp
);
422 fs
->retaddr_column
= (_Unwind_Word
)utmp
;
424 fs
->lsda_encoding
= DW_EH_PE_omit
;
426 /* If the augmentation starts with 'z', then a uleb128 immediately
427 follows containing the length of the augmentation field following
431 p
= read_uleb128 (p
, &utmp
);
438 /* Iterate over recognized augmentation subsequences. */
441 /* "L" indicates a byte showing how the LSDA pointer is encoded. */
444 fs
->lsda_encoding
= *p
++;
448 /* "R" indicates a byte indicating how FDE addresses are encoded. */
449 else if (aug
[0] == 'R')
451 fs
->fde_encoding
= *p
++;
455 /* "P" indicates a personality routine in the CIE augmentation. */
456 else if (aug
[0] == 'P')
458 _Unwind_Ptr personality
;
460 p
= read_encoded_value (context
, *p
, p
+ 1, &personality
);
461 fs
->personality
= (_Unwind_Personality_Fn
) personality
;
465 /* "S" indicates a signal frame. */
466 else if (aug
[0] == 'S')
468 fs
->signal_frame
= 1;
472 /* Otherwise we have an unknown augmentation string.
473 Bail unless we saw a 'z' prefix. */
478 return ret
? ret
: p
;
482 /* Decode a DW_OP stack program. Return the top of stack. Push INITIAL
483 onto the stack to start. */
486 execute_stack_op (const unsigned char *op_ptr
, const unsigned char *op_end
,
487 struct _Unwind_Context
*context
, _Unwind_Word initial
)
489 _Unwind_Word stack
[64]; /* ??? Assume this is enough. */
495 while (op_ptr
< op_end
)
497 enum dwarf_location_atom op
= *op_ptr
++;
499 _uleb128_t reg
, utmp
;
500 _sleb128_t offset
, stmp
;
536 result
= op
- DW_OP_lit0
;
540 result
= (_Unwind_Word
) (_Unwind_Ptr
) read_pointer (op_ptr
);
541 op_ptr
+= sizeof (void *);
544 case DW_OP_GNU_encoded_addr
:
547 op_ptr
= read_encoded_value (context
, *op_ptr
, op_ptr
+1, &presult
);
553 result
= read_1u (op_ptr
);
557 result
= read_1s (op_ptr
);
561 result
= read_2u (op_ptr
);
565 result
= read_2s (op_ptr
);
569 result
= read_4u (op_ptr
);
573 result
= read_4s (op_ptr
);
577 result
= read_8u (op_ptr
);
581 result
= read_8s (op_ptr
);
585 op_ptr
= read_uleb128 (op_ptr
, &utmp
);
586 result
= (_Unwind_Word
)utmp
;
589 op_ptr
= read_sleb128 (op_ptr
, &stmp
);
590 result
= (_Unwind_Sword
)stmp
;
625 result
= _Unwind_GetGR (context
, op
- DW_OP_reg0
);
628 op_ptr
= read_uleb128 (op_ptr
, ®
);
629 result
= _Unwind_GetGR (context
, reg
);
664 op_ptr
= read_sleb128 (op_ptr
, &offset
);
665 result
= _Unwind_GetGR (context
, op
- DW_OP_breg0
) + offset
;
668 op_ptr
= read_uleb128 (op_ptr
, ®
);
669 op_ptr
= read_sleb128 (op_ptr
, &offset
);
670 result
= _Unwind_GetGR (context
, reg
) + (_Unwind_Word
)offset
;
674 gcc_assert (stack_elt
);
675 result
= stack
[stack_elt
- 1];
679 gcc_assert (stack_elt
);
685 gcc_assert (offset
< stack_elt
- 1);
686 result
= stack
[stack_elt
- 1 - offset
];
690 gcc_assert (stack_elt
>= 2);
691 result
= stack
[stack_elt
- 2];
697 gcc_assert (stack_elt
>= 2);
698 t
= stack
[stack_elt
- 1];
699 stack
[stack_elt
- 1] = stack
[stack_elt
- 2];
700 stack
[stack_elt
- 2] = t
;
706 _Unwind_Word t1
, t2
, t3
;
708 gcc_assert (stack_elt
>= 3);
709 t1
= stack
[stack_elt
- 1];
710 t2
= stack
[stack_elt
- 2];
711 t3
= stack
[stack_elt
- 3];
712 stack
[stack_elt
- 1] = t2
;
713 stack
[stack_elt
- 2] = t3
;
714 stack
[stack_elt
- 3] = t1
;
719 case DW_OP_deref_size
:
723 case DW_OP_plus_uconst
:
724 /* Unary operations. */
725 gcc_assert (stack_elt
);
728 result
= stack
[stack_elt
];
734 void *ptr
= (void *) (_Unwind_Ptr
) result
;
735 result
= (_Unwind_Ptr
) read_pointer (ptr
);
739 case DW_OP_deref_size
:
741 void *ptr
= (void *) (_Unwind_Ptr
) result
;
745 result
= read_1u (ptr
);
748 result
= read_2u (ptr
);
751 result
= read_4u (ptr
);
754 result
= read_8u (ptr
);
763 if ((_Unwind_Sword
) result
< 0)
772 case DW_OP_plus_uconst
:
773 op_ptr
= read_uleb128 (op_ptr
, &utmp
);
774 result
+= (_Unwind_Word
)utmp
;
800 /* Binary operations. */
801 _Unwind_Word first
, second
;
802 gcc_assert (stack_elt
>= 2);
805 second
= stack
[stack_elt
];
806 first
= stack
[stack_elt
+ 1];
811 result
= second
& first
;
814 result
= (_Unwind_Sword
) second
/ (_Unwind_Sword
) first
;
817 result
= second
- first
;
820 result
= second
% first
;
823 result
= second
* first
;
826 result
= second
| first
;
829 result
= second
+ first
;
832 result
= second
<< first
;
835 result
= second
>> first
;
838 result
= (_Unwind_Sword
) second
>> first
;
841 result
= second
^ first
;
844 result
= (_Unwind_Sword
) second
<= (_Unwind_Sword
) first
;
847 result
= (_Unwind_Sword
) second
>= (_Unwind_Sword
) first
;
850 result
= (_Unwind_Sword
) second
== (_Unwind_Sword
) first
;
853 result
= (_Unwind_Sword
) second
< (_Unwind_Sword
) first
;
856 result
= (_Unwind_Sword
) second
> (_Unwind_Sword
) first
;
859 result
= (_Unwind_Sword
) second
!= (_Unwind_Sword
) first
;
869 offset
= read_2s (op_ptr
);
875 gcc_assert (stack_elt
);
878 offset
= read_2s (op_ptr
);
880 if (stack
[stack_elt
] != 0)
891 /* Most things push a result value. */
892 gcc_assert ((size_t) stack_elt
< sizeof(stack
)/sizeof(*stack
));
893 stack
[stack_elt
++] = result
;
897 /* We were executing this program to get a value. It should be
899 gcc_assert (stack_elt
);
901 return stack
[stack_elt
];
905 /* Decode DWARF 2 call frame information. Takes pointers the
906 instruction sequence to decode, current register information and
907 CIE info, and the PC range to evaluate. */
910 execute_cfa_program (const unsigned char *insn_ptr
,
911 const unsigned char *insn_end
,
912 struct _Unwind_Context
*context
,
913 _Unwind_FrameState
*fs
)
915 struct frame_state_reg_info
*unused_rs
= NULL
;
917 /* Don't allow remember/restore between CIE and FDE programs. */
918 fs
->regs
.prev
= NULL
;
920 /* The comparison with the return address uses < rather than <= because
921 we are only interested in the effects of code before the call; for a
922 noreturn function, the return address may point to unrelated code with
923 a different stack configuration that we are not interested in. We
924 assume that the call itself is unwind info-neutral; if not, or if
925 there are delay instructions that adjust the stack, these must be
926 reflected at the point immediately before the call insn.
927 In signal frames, return address is after last completed instruction,
928 so we add 1 to return address to make the comparison <=. */
929 while (insn_ptr
< insn_end
930 && fs
->pc
< context
->ra
+ _Unwind_IsSignalFrame (context
))
932 unsigned char insn
= *insn_ptr
++;
933 _uleb128_t reg
, utmp
;
934 _sleb128_t offset
, stmp
;
936 if ((insn
& 0xc0) == DW_CFA_advance_loc
)
937 fs
->pc
+= (insn
& 0x3f) * fs
->code_align
;
938 else if ((insn
& 0xc0) == DW_CFA_offset
)
941 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
942 offset
= (_Unwind_Sword
) utmp
* fs
->data_align
;
943 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
945 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= offset
;
947 else if ((insn
& 0xc0) == DW_CFA_restore
)
950 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
= REG_UNSAVED
;
958 insn_ptr
= read_encoded_value (context
, fs
->fde_encoding
,
960 fs
->pc
= (void *) pc
;
964 case DW_CFA_advance_loc1
:
965 fs
->pc
+= read_1u (insn_ptr
) * fs
->code_align
;
968 case DW_CFA_advance_loc2
:
969 fs
->pc
+= read_2u (insn_ptr
) * fs
->code_align
;
972 case DW_CFA_advance_loc4
:
973 fs
->pc
+= read_4u (insn_ptr
) * fs
->code_align
;
977 case DW_CFA_offset_extended
:
978 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
979 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
980 offset
= (_Unwind_Sword
) utmp
* fs
->data_align
;
981 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
983 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= offset
;
986 case DW_CFA_restore_extended
:
987 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
988 /* FIXME, this is wrong; the CIE might have said that the
989 register was saved somewhere. */
990 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN(reg
)].how
= REG_UNSAVED
;
993 case DW_CFA_same_value
:
994 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
995 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN(reg
)].how
= REG_UNSAVED
;
998 case DW_CFA_undefined
:
999 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1000 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN(reg
)].how
= REG_UNDEFINED
;
1006 case DW_CFA_register
:
1009 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1010 insn_ptr
= read_uleb128 (insn_ptr
, ®2
);
1011 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
= REG_SAVED_REG
;
1012 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.reg
=
1017 case DW_CFA_remember_state
:
1019 struct frame_state_reg_info
*new_rs
;
1023 unused_rs
= unused_rs
->prev
;
1026 new_rs
= alloca (sizeof (struct frame_state_reg_info
));
1029 fs
->regs
.prev
= new_rs
;
1033 case DW_CFA_restore_state
:
1035 struct frame_state_reg_info
*old_rs
= fs
->regs
.prev
;
1037 old_rs
->prev
= unused_rs
;
1042 case DW_CFA_def_cfa
:
1043 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1044 fs
->regs
.cfa_reg
= (_Unwind_Word
)utmp
;
1045 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1046 fs
->regs
.cfa_offset
= (_Unwind_Word
)utmp
;
1047 fs
->regs
.cfa_how
= CFA_REG_OFFSET
;
1050 case DW_CFA_def_cfa_register
:
1051 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1052 fs
->regs
.cfa_reg
= (_Unwind_Word
)utmp
;
1053 fs
->regs
.cfa_how
= CFA_REG_OFFSET
;
1056 case DW_CFA_def_cfa_offset
:
1057 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1058 fs
->regs
.cfa_offset
= utmp
;
1059 /* cfa_how deliberately not set. */
1062 case DW_CFA_def_cfa_expression
:
1063 fs
->regs
.cfa_exp
= insn_ptr
;
1064 fs
->regs
.cfa_how
= CFA_EXP
;
1065 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1069 case DW_CFA_expression
:
1070 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1071 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
= REG_SAVED_EXP
;
1072 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.exp
= insn_ptr
;
1073 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1078 case DW_CFA_offset_extended_sf
:
1079 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1080 insn_ptr
= read_sleb128 (insn_ptr
, &stmp
);
1081 offset
= stmp
* fs
->data_align
;
1082 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
1084 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= offset
;
1087 case DW_CFA_def_cfa_sf
:
1088 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1089 fs
->regs
.cfa_reg
= (_Unwind_Word
)utmp
;
1090 insn_ptr
= read_sleb128 (insn_ptr
, &stmp
);
1091 fs
->regs
.cfa_offset
= (_Unwind_Sword
)stmp
;
1092 fs
->regs
.cfa_how
= CFA_REG_OFFSET
;
1093 fs
->regs
.cfa_offset
*= fs
->data_align
;
1096 case DW_CFA_def_cfa_offset_sf
:
1097 insn_ptr
= read_sleb128 (insn_ptr
, &stmp
);
1098 fs
->regs
.cfa_offset
= (_Unwind_Sword
)stmp
;
1099 fs
->regs
.cfa_offset
*= fs
->data_align
;
1100 /* cfa_how deliberately not set. */
1103 case DW_CFA_val_offset
:
1104 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1105 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1106 offset
= (_Unwind_Sword
) utmp
* fs
->data_align
;
1107 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
1108 = REG_SAVED_VAL_OFFSET
;
1109 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= offset
;
1112 case DW_CFA_val_offset_sf
:
1113 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1114 insn_ptr
= read_sleb128 (insn_ptr
, &stmp
);
1115 offset
= stmp
* fs
->data_align
;
1116 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
1117 = REG_SAVED_VAL_OFFSET
;
1118 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= offset
;
1121 case DW_CFA_val_expression
:
1122 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1123 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
1124 = REG_SAVED_VAL_EXP
;
1125 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.exp
= insn_ptr
;
1126 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1130 case DW_CFA_GNU_window_save
:
1131 /* ??? Hardcoded for SPARC register window configuration. */
1132 for (reg
= 16; reg
< 32; ++reg
)
1134 fs
->regs
.reg
[reg
].how
= REG_SAVED_OFFSET
;
1135 fs
->regs
.reg
[reg
].loc
.offset
= (reg
- 16) * sizeof (void *);
1139 case DW_CFA_GNU_args_size
:
1140 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1141 context
->args_size
= (_Unwind_Word
)utmp
;
1144 case DW_CFA_GNU_negative_offset_extended
:
1145 /* Obsoleted by DW_CFA_offset_extended_sf, but used by
1146 older PowerPC code. */
1147 insn_ptr
= read_uleb128 (insn_ptr
, ®
);
1148 insn_ptr
= read_uleb128 (insn_ptr
, &utmp
);
1149 offset
= (_Unwind_Word
) utmp
* fs
->data_align
;
1150 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].how
1152 fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (reg
)].loc
.offset
= -offset
;
1161 /* Given the _Unwind_Context CONTEXT for a stack frame, look up the FDE for
1162 its caller and decode it into FS. This function also sets the
1163 args_size and lsda members of CONTEXT, as they are really information
1164 about the caller's frame. */
1166 static _Unwind_Reason_Code
1167 uw_frame_state_for (struct _Unwind_Context
*context
, _Unwind_FrameState
*fs
)
1169 const struct dwarf_fde
*fde
;
1170 const struct dwarf_cie
*cie
;
1171 const unsigned char *aug
, *insn
, *end
;
1173 memset (fs
, 0, sizeof (*fs
));
1174 context
->args_size
= 0;
1177 if (context
->ra
== 0)
1178 return _URC_END_OF_STACK
;
1180 fde
= _Unwind_Find_FDE (context
->ra
+ _Unwind_IsSignalFrame (context
) - 1,
1184 #ifdef MD_FALLBACK_FRAME_STATE_FOR
1185 /* Couldn't find frame unwind info for this function. Try a
1186 target-specific fallback mechanism. This will necessarily
1187 not provide a personality routine or LSDA. */
1188 return MD_FALLBACK_FRAME_STATE_FOR (context
, fs
);
1190 return _URC_END_OF_STACK
;
1194 fs
->pc
= context
->bases
.func
;
1196 cie
= get_cie (fde
);
1197 insn
= extract_cie_info (cie
, context
, fs
);
1199 /* CIE contained unknown augmentation. */
1200 return _URC_FATAL_PHASE1_ERROR
;
1202 /* First decode all the insns in the CIE. */
1203 end
= (const unsigned char *) next_fde ((const struct dwarf_fde
*) cie
);
1204 execute_cfa_program (insn
, end
, context
, fs
);
1206 /* Locate augmentation for the fde. */
1207 aug
= (const unsigned char *) fde
+ sizeof (*fde
);
1208 aug
+= 2 * size_of_encoded_value (fs
->fde_encoding
);
1213 aug
= read_uleb128 (aug
, &i
);
1216 if (fs
->lsda_encoding
!= DW_EH_PE_omit
)
1220 aug
= read_encoded_value (context
, fs
->lsda_encoding
, aug
, &lsda
);
1221 context
->lsda
= (void *) lsda
;
1224 /* Then the insns in the FDE up to our target PC. */
1227 end
= (const unsigned char *) next_fde (fde
);
1228 execute_cfa_program (insn
, end
, context
, fs
);
1230 return _URC_NO_REASON
;
1233 typedef struct frame_state
1239 long reg_or_offset
[PRE_GCC3_DWARF_FRAME_REGISTERS
+1];
1240 unsigned short cfa_reg
;
1241 unsigned short retaddr_column
;
1242 char saved
[PRE_GCC3_DWARF_FRAME_REGISTERS
+1];
1245 struct frame_state
* __frame_state_for (void *, struct frame_state
*);
1247 /* Called from pre-G++ 3.0 __throw to find the registers to restore for
1248 a given PC_TARGET. The caller should allocate a local variable of
1249 `struct frame_state' and pass its address to STATE_IN. */
1251 struct frame_state
*
1252 __frame_state_for (void *pc_target
, struct frame_state
*state_in
)
1254 struct _Unwind_Context context
;
1255 _Unwind_FrameState fs
;
1258 memset (&context
, 0, sizeof (struct _Unwind_Context
));
1259 if (!ASSUME_EXTENDED_UNWIND_CONTEXT
)
1260 context
.flags
= EXTENDED_CONTEXT_BIT
;
1261 context
.ra
= pc_target
+ 1;
1263 if (uw_frame_state_for (&context
, &fs
) != _URC_NO_REASON
)
1266 /* We have no way to pass a location expression for the CFA to our
1267 caller. It wouldn't understand it anyway. */
1268 if (fs
.regs
.cfa_how
== CFA_EXP
)
1271 for (reg
= 0; reg
< PRE_GCC3_DWARF_FRAME_REGISTERS
+ 1; reg
++)
1273 state_in
->saved
[reg
] = fs
.regs
.reg
[reg
].how
;
1274 switch (state_in
->saved
[reg
])
1277 state_in
->reg_or_offset
[reg
] = fs
.regs
.reg
[reg
].loc
.reg
;
1279 case REG_SAVED_OFFSET
:
1280 state_in
->reg_or_offset
[reg
] = fs
.regs
.reg
[reg
].loc
.offset
;
1283 state_in
->reg_or_offset
[reg
] = 0;
1288 state_in
->cfa_offset
= fs
.regs
.cfa_offset
;
1289 state_in
->cfa_reg
= fs
.regs
.cfa_reg
;
1290 state_in
->retaddr_column
= fs
.retaddr_column
;
1291 state_in
->args_size
= context
.args_size
;
1292 state_in
->eh_ptr
= fs
.eh_ptr
;
1297 typedef union { _Unwind_Ptr ptr
; _Unwind_Word word
; } _Unwind_SpTmp
;
1300 _Unwind_SetSpColumn (struct _Unwind_Context
*context
, void *cfa
,
1301 _Unwind_SpTmp
*tmp_sp
)
1303 int size
= dwarf_reg_size_table
[__builtin_dwarf_sp_column ()];
1305 if (size
== sizeof(_Unwind_Ptr
))
1306 tmp_sp
->ptr
= (_Unwind_Ptr
) cfa
;
1309 gcc_assert (size
== sizeof(_Unwind_Word
));
1310 tmp_sp
->word
= (_Unwind_Ptr
) cfa
;
1312 _Unwind_SetGRPtr (context
, __builtin_dwarf_sp_column (), tmp_sp
);
1316 uw_update_context_1 (struct _Unwind_Context
*context
, _Unwind_FrameState
*fs
)
1318 struct _Unwind_Context orig_context
= *context
;
1322 #ifdef EH_RETURN_STACKADJ_RTX
1323 /* Special handling here: Many machines do not use a frame pointer,
1324 and track the CFA only through offsets from the stack pointer from
1325 one frame to the next. In this case, the stack pointer is never
1326 stored, so it has no saved address in the context. What we do
1327 have is the CFA from the previous stack frame.
1329 In very special situations (such as unwind info for signal return),
1330 there may be location expressions that use the stack pointer as well.
1332 Do this conditionally for one frame. This allows the unwind info
1333 for one frame to save a copy of the stack pointer from the previous
1334 frame, and be able to use much easier CFA mechanisms to do it.
1335 Always zap the saved stack pointer value for the next frame; carrying
1336 the value over from one frame to another doesn't make sense. */
1338 _Unwind_SpTmp tmp_sp
;
1340 if (!_Unwind_GetGRPtr (&orig_context
, __builtin_dwarf_sp_column ()))
1341 _Unwind_SetSpColumn (&orig_context
, context
->cfa
, &tmp_sp
);
1342 _Unwind_SetGRPtr (context
, __builtin_dwarf_sp_column (), NULL
);
1345 /* Compute this frame's CFA. */
1346 switch (fs
->regs
.cfa_how
)
1348 case CFA_REG_OFFSET
:
1349 cfa
= _Unwind_GetPtr (&orig_context
, fs
->regs
.cfa_reg
);
1350 cfa
+= fs
->regs
.cfa_offset
;
1355 const unsigned char *exp
= fs
->regs
.cfa_exp
;
1358 exp
= read_uleb128 (exp
, &len
);
1359 cfa
= (void *) (_Unwind_Ptr
)
1360 execute_stack_op (exp
, exp
+ len
, &orig_context
, 0);
1369 /* Compute the addresses of all registers saved in this frame. */
1370 for (i
= 0; i
< DWARF_FRAME_REGISTERS
+ 1; ++i
)
1371 switch (fs
->regs
.reg
[i
].how
)
1377 case REG_SAVED_OFFSET
:
1378 _Unwind_SetGRPtr (context
, i
,
1379 (void *) (cfa
+ fs
->regs
.reg
[i
].loc
.offset
));
1383 if (_Unwind_GRByValue (&orig_context
, fs
->regs
.reg
[i
].loc
.reg
))
1384 _Unwind_SetGRValue (context
, i
,
1385 _Unwind_GetGR (&orig_context
,
1386 fs
->regs
.reg
[i
].loc
.reg
));
1388 _Unwind_SetGRPtr (context
, i
,
1389 _Unwind_GetGRPtr (&orig_context
,
1390 fs
->regs
.reg
[i
].loc
.reg
));
1395 const unsigned char *exp
= fs
->regs
.reg
[i
].loc
.exp
;
1399 exp
= read_uleb128 (exp
, &len
);
1400 val
= execute_stack_op (exp
, exp
+ len
, &orig_context
,
1402 _Unwind_SetGRPtr (context
, i
, (void *) val
);
1406 case REG_SAVED_VAL_OFFSET
:
1407 _Unwind_SetGRValue (context
, i
,
1408 (_Unwind_Internal_Ptr
)
1409 (cfa
+ fs
->regs
.reg
[i
].loc
.offset
));
1412 case REG_SAVED_VAL_EXP
:
1414 const unsigned char *exp
= fs
->regs
.reg
[i
].loc
.exp
;
1418 exp
= read_uleb128 (exp
, &len
);
1419 val
= execute_stack_op (exp
, exp
+ len
, &orig_context
,
1421 _Unwind_SetGRValue (context
, i
, val
);
1426 _Unwind_SetSignalFrame (context
, fs
->signal_frame
);
1428 #ifdef MD_FROB_UPDATE_CONTEXT
1429 MD_FROB_UPDATE_CONTEXT (context
, fs
);
1433 /* CONTEXT describes the unwind state for a frame, and FS describes the FDE
1434 of its caller. Update CONTEXT to refer to the caller as well. Note
1435 that the args_size and lsda members are not updated here, but later in
1436 uw_frame_state_for. */
1439 uw_update_context (struct _Unwind_Context
*context
, _Unwind_FrameState
*fs
)
1441 uw_update_context_1 (context
, fs
);
1443 /* In general this unwinder doesn't make any distinction between
1444 undefined and same_value rule. Call-saved registers are assumed
1445 to have same_value rule by default and explicit undefined
1446 rule is handled like same_value. The only exception is
1447 DW_CFA_undefined on retaddr_column which is supposed to
1448 mark outermost frame in DWARF 3. */
1449 if (fs
->regs
.reg
[DWARF_REG_TO_UNWIND_COLUMN (fs
->retaddr_column
)].how
1451 /* uw_frame_state_for uses context->ra == 0 check to find outermost
1455 /* Compute the return address now, since the return address column
1456 can change from frame to frame. */
1457 context
->ra
= __builtin_extract_return_addr
1458 (_Unwind_GetPtr (context
, fs
->retaddr_column
));
1462 uw_advance_context (struct _Unwind_Context
*context
, _Unwind_FrameState
*fs
)
1464 uw_update_context (context
, fs
);
1467 /* Fill in CONTEXT for top-of-stack. The only valid registers at this
1468 level will be the return address and the CFA. */
1470 #define uw_init_context(CONTEXT) \
1473 /* Do any necessary initialization to access arbitrary stack frames. \
1474 On the SPARC, this means flushing the register windows. */ \
1475 __builtin_unwind_init (); \
1476 uw_init_context_1 (CONTEXT, __builtin_dwarf_cfa (), \
1477 __builtin_return_address (0)); \
1482 init_dwarf_reg_size_table (void)
1484 __builtin_init_dwarf_reg_size_table (dwarf_reg_size_table
);
1487 static void __attribute__((noinline
))
1488 uw_init_context_1 (struct _Unwind_Context
*context
,
1489 void *outer_cfa
, void *outer_ra
)
1491 void *ra
= __builtin_extract_return_addr (__builtin_return_address (0));
1492 _Unwind_FrameState fs
;
1493 _Unwind_SpTmp sp_slot
;
1494 _Unwind_Reason_Code code
;
1496 memset (context
, 0, sizeof (struct _Unwind_Context
));
1498 if (!ASSUME_EXTENDED_UNWIND_CONTEXT
)
1499 context
->flags
= EXTENDED_CONTEXT_BIT
;
1501 code
= uw_frame_state_for (context
, &fs
);
1502 gcc_assert (code
== _URC_NO_REASON
);
1506 static __gthread_once_t once_regsizes
= __GTHREAD_ONCE_INIT
;
1507 if (__gthread_once (&once_regsizes
, init_dwarf_reg_size_table
) != 0
1508 && dwarf_reg_size_table
[0] == 0)
1509 init_dwarf_reg_size_table ();
1512 if (dwarf_reg_size_table
[0] == 0)
1513 init_dwarf_reg_size_table ();
1516 /* Force the frame state to use the known cfa value. */
1517 _Unwind_SetSpColumn (context
, outer_cfa
, &sp_slot
);
1518 fs
.regs
.cfa_how
= CFA_REG_OFFSET
;
1519 fs
.regs
.cfa_reg
= __builtin_dwarf_sp_column ();
1520 fs
.regs
.cfa_offset
= 0;
1522 uw_update_context_1 (context
, &fs
);
1524 /* If the return address column was saved in a register in the
1525 initialization context, then we can't see it in the given
1526 call frame data. So have the initialization context tell us. */
1527 context
->ra
= __builtin_extract_return_addr (outer_ra
);
1530 static void _Unwind_DebugHook (void *, void *)
1531 __attribute__ ((__noinline__
, __used__
, __noclone__
));
1533 /* This function is called during unwinding. It is intended as a hook
1534 for a debugger to intercept exceptions. CFA is the CFA of the
1535 target frame. HANDLER is the PC to which control will be
1538 _Unwind_DebugHook (void *cfa
__attribute__ ((__unused__
)),
1539 void *handler
__attribute__ ((__unused__
)))
1541 /* We only want to use stap probes starting with v3. Earlier
1542 versions added too much startup cost. */
1543 #if defined (HAVE_SYS_SDT_H) && defined (STAP_PROBE2) && _SDT_NOTE_TYPE >= 3
1544 STAP_PROBE2 (libgcc
, unwind
, cfa
, handler
);
1550 /* Install TARGET into CURRENT so that we can return to it. This is a
1551 macro because __builtin_eh_return must be invoked in the context of
1554 #define uw_install_context(CURRENT, TARGET) \
1557 long offset = uw_install_context_1 ((CURRENT), (TARGET)); \
1558 void *handler = __builtin_frob_return_addr ((TARGET)->ra); \
1559 _Unwind_DebugHook ((TARGET)->cfa, handler); \
1560 __builtin_eh_return (offset, handler); \
1565 uw_install_context_1 (struct _Unwind_Context
*current
,
1566 struct _Unwind_Context
*target
)
1569 _Unwind_SpTmp sp_slot
;
1571 /* If the target frame does not have a saved stack pointer,
1572 then set up the target's CFA. */
1573 if (!_Unwind_GetGRPtr (target
, __builtin_dwarf_sp_column ()))
1574 _Unwind_SetSpColumn (target
, target
->cfa
, &sp_slot
);
1576 for (i
= 0; i
< DWARF_FRAME_REGISTERS
; ++i
)
1578 void *c
= (void *) (_Unwind_Internal_Ptr
) current
->reg
[i
];
1579 void *t
= (void *) (_Unwind_Internal_Ptr
)target
->reg
[i
];
1581 gcc_assert (current
->by_value
[i
] == 0);
1582 if (target
->by_value
[i
] && c
)
1586 if (dwarf_reg_size_table
[i
] == sizeof (_Unwind_Word
))
1588 w
= (_Unwind_Internal_Ptr
) t
;
1589 memcpy (c
, &w
, sizeof (_Unwind_Word
));
1593 gcc_assert (dwarf_reg_size_table
[i
] == sizeof (_Unwind_Ptr
));
1594 p
= (_Unwind_Internal_Ptr
) t
;
1595 memcpy (c
, &p
, sizeof (_Unwind_Ptr
));
1598 else if (t
&& c
&& t
!= c
)
1599 memcpy (c
, t
, dwarf_reg_size_table
[i
]);
1602 /* If the current frame doesn't have a saved stack pointer, then we
1603 need to rely on EH_RETURN_STACKADJ_RTX to get our target stack
1604 pointer value reloaded. */
1605 if (!_Unwind_GetGRPtr (current
, __builtin_dwarf_sp_column ()))
1609 target_cfa
= _Unwind_GetPtr (target
, __builtin_dwarf_sp_column ());
1611 /* We adjust SP by the difference between CURRENT and TARGET's CFA. */
1612 if (STACK_GROWS_DOWNWARD
)
1613 return target_cfa
- current
->cfa
+ target
->args_size
;
1615 return current
->cfa
- target_cfa
- target
->args_size
;
1620 static inline _Unwind_Ptr
1621 uw_identify_context (struct _Unwind_Context
*context
)
1623 /* The CFA is not sufficient to disambiguate the context of a function
1624 interrupted by a signal before establishing its frame and the context
1625 of the signal itself. */
1626 if (STACK_GROWS_DOWNWARD
)
1627 return _Unwind_GetCFA (context
) - _Unwind_IsSignalFrame (context
);
1629 return _Unwind_GetCFA (context
) + _Unwind_IsSignalFrame (context
);
1633 #include "unwind.inc"
1635 #if defined (USE_GAS_SYMVER) && defined (SHARED) && defined (USE_LIBUNWIND_EXCEPTIONS)
1636 alias (_Unwind_Backtrace
);
1637 alias (_Unwind_DeleteException
);
1638 alias (_Unwind_FindEnclosingFunction
);
1639 alias (_Unwind_ForcedUnwind
);
1640 alias (_Unwind_GetDataRelBase
);
1641 alias (_Unwind_GetTextRelBase
);
1642 alias (_Unwind_GetCFA
);
1643 alias (_Unwind_GetGR
);
1644 alias (_Unwind_GetIP
);
1645 alias (_Unwind_GetLanguageSpecificData
);
1646 alias (_Unwind_GetRegionStart
);
1647 alias (_Unwind_RaiseException
);
1648 alias (_Unwind_Resume
);
1649 alias (_Unwind_Resume_or_Rethrow
);
1650 alias (_Unwind_SetGR
);
1651 alias (_Unwind_SetIP
);
1654 #endif /* !USING_SJLJ_EXCEPTIONS */