1 /* Implements exception handling.
2 Copyright (C) 1989, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010,
4 2011, 2012 Free Software Foundation, Inc.
5 Contributed by Mike Stump <mrs@cygnus.com>.
7 This file is part of GCC.
9 GCC is free software; you can redistribute it and/or modify it under
10 the terms of the GNU General Public License as published by the Free
11 Software Foundation; either version 3, or (at your option) any later
14 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15 WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING3. If not see
21 <http://www.gnu.org/licenses/>. */
24 /* An exception is an event that can be "thrown" from within a
25 function. This event can then be "caught" by the callers of
28 The representation of exceptions changes several times during
29 the compilation process:
31 In the beginning, in the front end, we have the GENERIC trees
32 TRY_CATCH_EXPR, TRY_FINALLY_EXPR, WITH_CLEANUP_EXPR,
33 CLEANUP_POINT_EXPR, CATCH_EXPR, and EH_FILTER_EXPR.
35 During initial gimplification (gimplify.c) these are lowered
36 to the GIMPLE_TRY, GIMPLE_CATCH, and GIMPLE_EH_FILTER nodes.
37 The WITH_CLEANUP_EXPR and CLEANUP_POINT_EXPR nodes are converted
38 into GIMPLE_TRY_FINALLY nodes; the others are a more direct 1-1
41 During pass_lower_eh (tree-eh.c) we record the nested structure
42 of the TRY nodes in EH_REGION nodes in CFUN->EH->REGION_TREE.
43 We expand the eh_protect_cleanup_actions langhook into MUST_NOT_THROW
44 regions at this time. We can then flatten the statements within
45 the TRY nodes to straight-line code. Statements that had been within
46 TRY nodes that can throw are recorded within CFUN->EH->THROW_STMT_TABLE,
47 so that we may remember what action is supposed to be taken if
48 a given statement does throw. During this lowering process,
49 we create an EH_LANDING_PAD node for each EH_REGION that has
50 some code within the function that needs to be executed if a
51 throw does happen. We also create RESX statements that are
52 used to transfer control from an inner EH_REGION to an outer
53 EH_REGION. We also create EH_DISPATCH statements as placeholders
54 for a runtime type comparison that should be made in order to
55 select the action to perform among different CATCH and EH_FILTER
58 During pass_lower_eh_dispatch (tree-eh.c), which is run after
59 all inlining is complete, we are able to run assign_filter_values,
60 which allows us to map the set of types manipulated by all of the
61 CATCH and EH_FILTER regions to a set of integers. This set of integers
62 will be how the exception runtime communicates with the code generated
63 within the function. We then expand the GIMPLE_EH_DISPATCH statements
64 to a switch or conditional branches that use the argument provided by
65 the runtime (__builtin_eh_filter) and the set of integers we computed
66 in assign_filter_values.
68 During pass_lower_resx (tree-eh.c), which is run near the end
69 of optimization, we expand RESX statements. If the eh region
70 that is outer to the RESX statement is a MUST_NOT_THROW, then
71 the RESX expands to some form of abort statement. If the eh
72 region that is outer to the RESX statement is within the current
73 function, then the RESX expands to a bookkeeping call
74 (__builtin_eh_copy_values) and a goto. Otherwise, the next
75 handler for the exception must be within a function somewhere
76 up the call chain, so we call back into the exception runtime
77 (__builtin_unwind_resume).
79 During pass_expand (cfgexpand.c), we generate REG_EH_REGION notes
80 that create an rtl to eh_region mapping that corresponds to the
81 gimple to eh_region mapping that had been recorded in the
84 Then, via finish_eh_generation, we generate the real landing pads
85 to which the runtime will actually transfer control. These new
86 landing pads perform whatever bookkeeping is needed by the target
87 backend in order to resume execution within the current function.
88 Each of these new landing pads falls through into the post_landing_pad
89 label which had been used within the CFG up to this point. All
90 exception edges within the CFG are redirected to the new landing pads.
91 If the target uses setjmp to implement exceptions, the various extra
92 calls into the runtime to register and unregister the current stack
93 frame are emitted at this time.
95 During pass_convert_to_eh_region_ranges (except.c), we transform
96 the REG_EH_REGION notes attached to individual insns into
97 non-overlapping ranges of insns bounded by NOTE_INSN_EH_REGION_BEG
98 and NOTE_INSN_EH_REGION_END. Each insn within such ranges has the
99 same associated action within the exception region tree, meaning
100 that (1) the exception is caught by the same landing pad within the
101 current function, (2) the exception is blocked by the runtime with
102 a MUST_NOT_THROW region, or (3) the exception is not handled at all
103 within the current function.
105 Finally, during assembly generation, we call
106 output_function_exception_table (except.c) to emit the tables with
107 which the exception runtime can determine if a given stack frame
108 handles a given exception, and if so what filter value to provide
109 to the function when the non-local control transfer is effected.
110 If the target uses dwarf2 unwinding to implement exceptions, then
111 output_call_frame_info (dwarf2out.c) emits the required unwind data. */
116 #include "coretypes.h"
121 #include "function.h"
123 #include "libfuncs.h"
124 #include "insn-config.h"
126 #include "hard-reg-set.h"
127 #include "basic-block.h"
129 #include "dwarf2asm.h"
130 #include "dwarf2out.h"
138 #include "common/common-target.h"
139 #include "langhooks.h"
141 #include "diagnostic.h"
142 #include "tree-pretty-print.h"
143 #include "tree-pass.h"
144 #include "tree-flow.h"
147 /* Provide defaults for stuff that may not be defined when using
149 #ifndef EH_RETURN_DATA_REGNO
150 #define EH_RETURN_DATA_REGNO(N) INVALID_REGNUM
153 static GTY(()) int call_site_base
;
154 static GTY ((param_is (union tree_node
)))
155 htab_t type_to_runtime_map
;
157 /* Describe the SjLj_Function_Context structure. */
158 static GTY(()) tree sjlj_fc_type_node
;
159 static int sjlj_fc_call_site_ofs
;
160 static int sjlj_fc_data_ofs
;
161 static int sjlj_fc_personality_ofs
;
162 static int sjlj_fc_lsda_ofs
;
163 static int sjlj_fc_jbuf_ofs
;
166 struct GTY(()) call_site_record_d
172 static bool get_eh_region_and_lp_from_rtx (const_rtx
, eh_region
*,
175 static int t2r_eq (const void *, const void *);
176 static hashval_t
t2r_hash (const void *);
178 static int ttypes_filter_eq (const void *, const void *);
179 static hashval_t
ttypes_filter_hash (const void *);
180 static int ehspec_filter_eq (const void *, const void *);
181 static hashval_t
ehspec_filter_hash (const void *);
182 static int add_ttypes_entry (htab_t
, tree
);
183 static int add_ehspec_entry (htab_t
, htab_t
, tree
);
184 static void dw2_build_landing_pads (void);
186 static int action_record_eq (const void *, const void *);
187 static hashval_t
action_record_hash (const void *);
188 static int add_action_record (htab_t
, int, int);
189 static int collect_one_action_chain (htab_t
, eh_region
);
190 static int add_call_site (rtx
, int, int);
192 static void push_uleb128 (VEC (uchar
, gc
) **, unsigned int);
193 static void push_sleb128 (VEC (uchar
, gc
) **, int);
194 #ifndef HAVE_AS_LEB128
195 static int dw2_size_of_call_site_table (int);
196 static int sjlj_size_of_call_site_table (void);
198 static void dw2_output_call_site_table (int, int);
199 static void sjlj_output_call_site_table (void);
205 if (! flag_exceptions
)
208 type_to_runtime_map
= htab_create_ggc (31, t2r_hash
, t2r_eq
, NULL
);
210 /* Create the SjLj_Function_Context structure. This should match
211 the definition in unwind-sjlj.c. */
212 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
214 tree f_jbuf
, f_per
, f_lsda
, f_prev
, f_cs
, f_data
, tmp
;
216 sjlj_fc_type_node
= lang_hooks
.types
.make_type (RECORD_TYPE
);
218 f_prev
= build_decl (BUILTINS_LOCATION
,
219 FIELD_DECL
, get_identifier ("__prev"),
220 build_pointer_type (sjlj_fc_type_node
));
221 DECL_FIELD_CONTEXT (f_prev
) = sjlj_fc_type_node
;
223 f_cs
= build_decl (BUILTINS_LOCATION
,
224 FIELD_DECL
, get_identifier ("__call_site"),
226 DECL_FIELD_CONTEXT (f_cs
) = sjlj_fc_type_node
;
228 tmp
= build_index_type (size_int (4 - 1));
229 tmp
= build_array_type (lang_hooks
.types
.type_for_mode
230 (targetm
.unwind_word_mode (), 1),
232 f_data
= build_decl (BUILTINS_LOCATION
,
233 FIELD_DECL
, get_identifier ("__data"), tmp
);
234 DECL_FIELD_CONTEXT (f_data
) = sjlj_fc_type_node
;
236 f_per
= build_decl (BUILTINS_LOCATION
,
237 FIELD_DECL
, get_identifier ("__personality"),
239 DECL_FIELD_CONTEXT (f_per
) = sjlj_fc_type_node
;
241 f_lsda
= build_decl (BUILTINS_LOCATION
,
242 FIELD_DECL
, get_identifier ("__lsda"),
244 DECL_FIELD_CONTEXT (f_lsda
) = sjlj_fc_type_node
;
246 #ifdef DONT_USE_BUILTIN_SETJMP
248 tmp
= size_int (JMP_BUF_SIZE
- 1);
250 /* Should be large enough for most systems, if it is not,
251 JMP_BUF_SIZE should be defined with the proper value. It will
252 also tend to be larger than necessary for most systems, a more
253 optimal port will define JMP_BUF_SIZE. */
254 tmp
= size_int (FIRST_PSEUDO_REGISTER
+ 2 - 1);
257 /* builtin_setjmp takes a pointer to 5 words. */
258 tmp
= size_int (5 * BITS_PER_WORD
/ POINTER_SIZE
- 1);
260 tmp
= build_index_type (tmp
);
261 tmp
= build_array_type (ptr_type_node
, tmp
);
262 f_jbuf
= build_decl (BUILTINS_LOCATION
,
263 FIELD_DECL
, get_identifier ("__jbuf"), tmp
);
264 #ifdef DONT_USE_BUILTIN_SETJMP
265 /* We don't know what the alignment requirements of the
266 runtime's jmp_buf has. Overestimate. */
267 DECL_ALIGN (f_jbuf
) = BIGGEST_ALIGNMENT
;
268 DECL_USER_ALIGN (f_jbuf
) = 1;
270 DECL_FIELD_CONTEXT (f_jbuf
) = sjlj_fc_type_node
;
272 TYPE_FIELDS (sjlj_fc_type_node
) = f_prev
;
273 TREE_CHAIN (f_prev
) = f_cs
;
274 TREE_CHAIN (f_cs
) = f_data
;
275 TREE_CHAIN (f_data
) = f_per
;
276 TREE_CHAIN (f_per
) = f_lsda
;
277 TREE_CHAIN (f_lsda
) = f_jbuf
;
279 layout_type (sjlj_fc_type_node
);
281 /* Cache the interesting field offsets so that we have
282 easy access from rtl. */
283 sjlj_fc_call_site_ofs
284 = (tree_low_cst (DECL_FIELD_OFFSET (f_cs
), 1)
285 + tree_low_cst (DECL_FIELD_BIT_OFFSET (f_cs
), 1) / BITS_PER_UNIT
);
287 = (tree_low_cst (DECL_FIELD_OFFSET (f_data
), 1)
288 + tree_low_cst (DECL_FIELD_BIT_OFFSET (f_data
), 1) / BITS_PER_UNIT
);
289 sjlj_fc_personality_ofs
290 = (tree_low_cst (DECL_FIELD_OFFSET (f_per
), 1)
291 + tree_low_cst (DECL_FIELD_BIT_OFFSET (f_per
), 1) / BITS_PER_UNIT
);
293 = (tree_low_cst (DECL_FIELD_OFFSET (f_lsda
), 1)
294 + tree_low_cst (DECL_FIELD_BIT_OFFSET (f_lsda
), 1) / BITS_PER_UNIT
);
296 = (tree_low_cst (DECL_FIELD_OFFSET (f_jbuf
), 1)
297 + tree_low_cst (DECL_FIELD_BIT_OFFSET (f_jbuf
), 1) / BITS_PER_UNIT
);
302 init_eh_for_function (void)
304 cfun
->eh
= ggc_alloc_cleared_eh_status ();
306 /* Make sure zero'th entries are used. */
307 VEC_safe_push (eh_region
, gc
, cfun
->eh
->region_array
, NULL
);
308 VEC_safe_push (eh_landing_pad
, gc
, cfun
->eh
->lp_array
, NULL
);
311 /* Routines to generate the exception tree somewhat directly.
312 These are used from tree-eh.c when processing exception related
313 nodes during tree optimization. */
316 gen_eh_region (enum eh_region_type type
, eh_region outer
)
320 /* Insert a new blank region as a leaf in the tree. */
321 new_eh
= ggc_alloc_cleared_eh_region_d ();
323 new_eh
->outer
= outer
;
326 new_eh
->next_peer
= outer
->inner
;
327 outer
->inner
= new_eh
;
331 new_eh
->next_peer
= cfun
->eh
->region_tree
;
332 cfun
->eh
->region_tree
= new_eh
;
335 new_eh
->index
= VEC_length (eh_region
, cfun
->eh
->region_array
);
336 VEC_safe_push (eh_region
, gc
, cfun
->eh
->region_array
, new_eh
);
338 /* Copy the language's notion of whether to use __cxa_end_cleanup. */
339 if (targetm
.arm_eabi_unwinder
&& lang_hooks
.eh_use_cxa_end_cleanup
)
340 new_eh
->use_cxa_end_cleanup
= true;
346 gen_eh_region_cleanup (eh_region outer
)
348 return gen_eh_region (ERT_CLEANUP
, outer
);
352 gen_eh_region_try (eh_region outer
)
354 return gen_eh_region (ERT_TRY
, outer
);
358 gen_eh_region_catch (eh_region t
, tree type_or_list
)
361 tree type_list
, type_node
;
363 gcc_assert (t
->type
== ERT_TRY
);
365 /* Ensure to always end up with a type list to normalize further
366 processing, then register each type against the runtime types map. */
367 type_list
= type_or_list
;
370 if (TREE_CODE (type_or_list
) != TREE_LIST
)
371 type_list
= tree_cons (NULL_TREE
, type_or_list
, NULL_TREE
);
373 type_node
= type_list
;
374 for (; type_node
; type_node
= TREE_CHAIN (type_node
))
375 add_type_for_runtime (TREE_VALUE (type_node
));
378 c
= ggc_alloc_cleared_eh_catch_d ();
379 c
->type_list
= type_list
;
380 l
= t
->u
.eh_try
.last_catch
;
385 t
->u
.eh_try
.first_catch
= c
;
386 t
->u
.eh_try
.last_catch
= c
;
392 gen_eh_region_allowed (eh_region outer
, tree allowed
)
394 eh_region region
= gen_eh_region (ERT_ALLOWED_EXCEPTIONS
, outer
);
395 region
->u
.allowed
.type_list
= allowed
;
397 for (; allowed
; allowed
= TREE_CHAIN (allowed
))
398 add_type_for_runtime (TREE_VALUE (allowed
));
404 gen_eh_region_must_not_throw (eh_region outer
)
406 return gen_eh_region (ERT_MUST_NOT_THROW
, outer
);
410 gen_eh_landing_pad (eh_region region
)
412 eh_landing_pad lp
= ggc_alloc_cleared_eh_landing_pad_d ();
414 lp
->next_lp
= region
->landing_pads
;
416 lp
->index
= VEC_length (eh_landing_pad
, cfun
->eh
->lp_array
);
417 region
->landing_pads
= lp
;
419 VEC_safe_push (eh_landing_pad
, gc
, cfun
->eh
->lp_array
, lp
);
425 get_eh_region_from_number_fn (struct function
*ifun
, int i
)
427 return VEC_index (eh_region
, ifun
->eh
->region_array
, i
);
431 get_eh_region_from_number (int i
)
433 return get_eh_region_from_number_fn (cfun
, i
);
437 get_eh_landing_pad_from_number_fn (struct function
*ifun
, int i
)
439 return VEC_index (eh_landing_pad
, ifun
->eh
->lp_array
, i
);
443 get_eh_landing_pad_from_number (int i
)
445 return get_eh_landing_pad_from_number_fn (cfun
, i
);
449 get_eh_region_from_lp_number_fn (struct function
*ifun
, int i
)
452 return VEC_index (eh_region
, ifun
->eh
->region_array
, -i
);
458 lp
= VEC_index (eh_landing_pad
, ifun
->eh
->lp_array
, i
);
464 get_eh_region_from_lp_number (int i
)
466 return get_eh_region_from_lp_number_fn (cfun
, i
);
469 /* Returns true if the current function has exception handling regions. */
472 current_function_has_exception_handlers (void)
474 return cfun
->eh
->region_tree
!= NULL
;
477 /* A subroutine of duplicate_eh_regions. Copy the eh_region tree at OLD.
478 Root it at OUTER, and apply LP_OFFSET to the lp numbers. */
480 struct duplicate_eh_regions_data
482 duplicate_eh_regions_map label_map
;
483 void *label_map_data
;
484 struct pointer_map_t
*eh_map
;
488 duplicate_eh_regions_1 (struct duplicate_eh_regions_data
*data
,
489 eh_region old_r
, eh_region outer
)
491 eh_landing_pad old_lp
, new_lp
;
495 new_r
= gen_eh_region (old_r
->type
, outer
);
496 slot
= pointer_map_insert (data
->eh_map
, (void *)old_r
);
497 gcc_assert (*slot
== NULL
);
498 *slot
= (void *)new_r
;
508 for (oc
= old_r
->u
.eh_try
.first_catch
; oc
; oc
= oc
->next_catch
)
510 /* We should be doing all our region duplication before and
511 during inlining, which is before filter lists are created. */
512 gcc_assert (oc
->filter_list
== NULL
);
513 nc
= gen_eh_region_catch (new_r
, oc
->type_list
);
514 nc
->label
= data
->label_map (oc
->label
, data
->label_map_data
);
519 case ERT_ALLOWED_EXCEPTIONS
:
520 new_r
->u
.allowed
.type_list
= old_r
->u
.allowed
.type_list
;
521 if (old_r
->u
.allowed
.label
)
522 new_r
->u
.allowed
.label
523 = data
->label_map (old_r
->u
.allowed
.label
, data
->label_map_data
);
525 new_r
->u
.allowed
.label
= NULL_TREE
;
528 case ERT_MUST_NOT_THROW
:
529 new_r
->u
.must_not_throw
.failure_loc
=
530 LOCATION_LOCUS (old_r
->u
.must_not_throw
.failure_loc
);
531 new_r
->u
.must_not_throw
.failure_decl
=
532 old_r
->u
.must_not_throw
.failure_decl
;
536 for (old_lp
= old_r
->landing_pads
; old_lp
; old_lp
= old_lp
->next_lp
)
538 /* Don't bother copying unused landing pads. */
539 if (old_lp
->post_landing_pad
== NULL
)
542 new_lp
= gen_eh_landing_pad (new_r
);
543 slot
= pointer_map_insert (data
->eh_map
, (void *)old_lp
);
544 gcc_assert (*slot
== NULL
);
545 *slot
= (void *)new_lp
;
547 new_lp
->post_landing_pad
548 = data
->label_map (old_lp
->post_landing_pad
, data
->label_map_data
);
549 EH_LANDING_PAD_NR (new_lp
->post_landing_pad
) = new_lp
->index
;
552 /* Make sure to preserve the original use of __cxa_end_cleanup. */
553 new_r
->use_cxa_end_cleanup
= old_r
->use_cxa_end_cleanup
;
555 for (old_r
= old_r
->inner
; old_r
; old_r
= old_r
->next_peer
)
556 duplicate_eh_regions_1 (data
, old_r
, new_r
);
559 /* Duplicate the EH regions from IFUN rooted at COPY_REGION into
560 the current function and root the tree below OUTER_REGION.
561 The special case of COPY_REGION of NULL means all regions.
562 Remap labels using MAP/MAP_DATA callback. Return a pointer map
563 that allows the caller to remap uses of both EH regions and
566 struct pointer_map_t
*
567 duplicate_eh_regions (struct function
*ifun
,
568 eh_region copy_region
, int outer_lp
,
569 duplicate_eh_regions_map map
, void *map_data
)
571 struct duplicate_eh_regions_data data
;
572 eh_region outer_region
;
574 #ifdef ENABLE_CHECKING
575 verify_eh_tree (ifun
);
578 data
.label_map
= map
;
579 data
.label_map_data
= map_data
;
580 data
.eh_map
= pointer_map_create ();
582 outer_region
= get_eh_region_from_lp_number (outer_lp
);
584 /* Copy all the regions in the subtree. */
586 duplicate_eh_regions_1 (&data
, copy_region
, outer_region
);
590 for (r
= ifun
->eh
->region_tree
; r
; r
= r
->next_peer
)
591 duplicate_eh_regions_1 (&data
, r
, outer_region
);
594 #ifdef ENABLE_CHECKING
595 verify_eh_tree (cfun
);
601 /* Return the region that is outer to both REGION_A and REGION_B in IFUN. */
604 eh_region_outermost (struct function
*ifun
, eh_region region_a
,
609 gcc_assert (ifun
->eh
->region_array
);
610 gcc_assert (ifun
->eh
->region_tree
);
612 b_outer
= sbitmap_alloc (VEC_length (eh_region
, ifun
->eh
->region_array
));
613 bitmap_clear (b_outer
);
617 bitmap_set_bit (b_outer
, region_b
->index
);
618 region_b
= region_b
->outer
;
624 if (bitmap_bit_p (b_outer
, region_a
->index
))
626 region_a
= region_a
->outer
;
630 sbitmap_free (b_outer
);
635 t2r_eq (const void *pentry
, const void *pdata
)
637 const_tree
const entry
= (const_tree
) pentry
;
638 const_tree
const data
= (const_tree
) pdata
;
640 return TREE_PURPOSE (entry
) == data
;
644 t2r_hash (const void *pentry
)
646 const_tree
const entry
= (const_tree
) pentry
;
647 return TREE_HASH (TREE_PURPOSE (entry
));
651 add_type_for_runtime (tree type
)
655 /* If TYPE is NOP_EXPR, it means that it already is a runtime type. */
656 if (TREE_CODE (type
) == NOP_EXPR
)
659 slot
= (tree
*) htab_find_slot_with_hash (type_to_runtime_map
, type
,
660 TREE_HASH (type
), INSERT
);
663 tree runtime
= lang_hooks
.eh_runtime_type (type
);
664 *slot
= tree_cons (type
, runtime
, NULL_TREE
);
669 lookup_type_for_runtime (tree type
)
673 /* If TYPE is NOP_EXPR, it means that it already is a runtime type. */
674 if (TREE_CODE (type
) == NOP_EXPR
)
677 slot
= (tree
*) htab_find_slot_with_hash (type_to_runtime_map
, type
,
678 TREE_HASH (type
), NO_INSERT
);
680 /* We should have always inserted the data earlier. */
681 return TREE_VALUE (*slot
);
685 /* Represent an entry in @TTypes for either catch actions
686 or exception filter actions. */
687 struct ttypes_filter
{
692 /* Compare ENTRY (a ttypes_filter entry in the hash table) with DATA
693 (a tree) for a @TTypes type node we are thinking about adding. */
696 ttypes_filter_eq (const void *pentry
, const void *pdata
)
698 const struct ttypes_filter
*const entry
699 = (const struct ttypes_filter
*) pentry
;
700 const_tree
const data
= (const_tree
) pdata
;
702 return entry
->t
== data
;
706 ttypes_filter_hash (const void *pentry
)
708 const struct ttypes_filter
*entry
= (const struct ttypes_filter
*) pentry
;
709 return TREE_HASH (entry
->t
);
712 /* Compare ENTRY with DATA (both struct ttypes_filter) for a @TTypes
713 exception specification list we are thinking about adding. */
714 /* ??? Currently we use the type lists in the order given. Someone
715 should put these in some canonical order. */
718 ehspec_filter_eq (const void *pentry
, const void *pdata
)
720 const struct ttypes_filter
*entry
= (const struct ttypes_filter
*) pentry
;
721 const struct ttypes_filter
*data
= (const struct ttypes_filter
*) pdata
;
723 return type_list_equal (entry
->t
, data
->t
);
726 /* Hash function for exception specification lists. */
729 ehspec_filter_hash (const void *pentry
)
731 const struct ttypes_filter
*entry
= (const struct ttypes_filter
*) pentry
;
735 for (list
= entry
->t
; list
; list
= TREE_CHAIN (list
))
736 h
= (h
<< 5) + (h
>> 27) + TREE_HASH (TREE_VALUE (list
));
740 /* Add TYPE (which may be NULL) to cfun->eh->ttype_data, using TYPES_HASH
741 to speed up the search. Return the filter value to be used. */
744 add_ttypes_entry (htab_t ttypes_hash
, tree type
)
746 struct ttypes_filter
**slot
, *n
;
748 slot
= (struct ttypes_filter
**)
749 htab_find_slot_with_hash (ttypes_hash
, type
, TREE_HASH (type
), INSERT
);
751 if ((n
= *slot
) == NULL
)
753 /* Filter value is a 1 based table index. */
755 n
= XNEW (struct ttypes_filter
);
757 n
->filter
= VEC_length (tree
, cfun
->eh
->ttype_data
) + 1;
760 VEC_safe_push (tree
, gc
, cfun
->eh
->ttype_data
, type
);
766 /* Add LIST to cfun->eh->ehspec_data, using EHSPEC_HASH and TYPES_HASH
767 to speed up the search. Return the filter value to be used. */
770 add_ehspec_entry (htab_t ehspec_hash
, htab_t ttypes_hash
, tree list
)
772 struct ttypes_filter
**slot
, *n
;
773 struct ttypes_filter dummy
;
776 slot
= (struct ttypes_filter
**)
777 htab_find_slot (ehspec_hash
, &dummy
, INSERT
);
779 if ((n
= *slot
) == NULL
)
783 if (targetm
.arm_eabi_unwinder
)
784 len
= VEC_length (tree
, cfun
->eh
->ehspec_data
.arm_eabi
);
786 len
= VEC_length (uchar
, cfun
->eh
->ehspec_data
.other
);
788 /* Filter value is a -1 based byte index into a uleb128 buffer. */
790 n
= XNEW (struct ttypes_filter
);
792 n
->filter
= -(len
+ 1);
795 /* Generate a 0 terminated list of filter values. */
796 for (; list
; list
= TREE_CHAIN (list
))
798 if (targetm
.arm_eabi_unwinder
)
799 VEC_safe_push (tree
, gc
, cfun
->eh
->ehspec_data
.arm_eabi
,
803 /* Look up each type in the list and encode its filter
804 value as a uleb128. */
805 push_uleb128 (&cfun
->eh
->ehspec_data
.other
,
806 add_ttypes_entry (ttypes_hash
, TREE_VALUE (list
)));
809 if (targetm
.arm_eabi_unwinder
)
810 VEC_safe_push (tree
, gc
, cfun
->eh
->ehspec_data
.arm_eabi
, NULL_TREE
);
812 VEC_safe_push (uchar
, gc
, cfun
->eh
->ehspec_data
.other
, 0);
818 /* Generate the action filter values to be used for CATCH and
819 ALLOWED_EXCEPTIONS regions. When using dwarf2 exception regions,
820 we use lots of landing pads, and so every type or list can share
821 the same filter value, which saves table space. */
824 assign_filter_values (void)
827 htab_t ttypes
, ehspec
;
831 cfun
->eh
->ttype_data
= VEC_alloc (tree
, gc
, 16);
832 if (targetm
.arm_eabi_unwinder
)
833 cfun
->eh
->ehspec_data
.arm_eabi
= VEC_alloc (tree
, gc
, 64);
835 cfun
->eh
->ehspec_data
.other
= VEC_alloc (uchar
, gc
, 64);
837 ttypes
= htab_create (31, ttypes_filter_hash
, ttypes_filter_eq
, free
);
838 ehspec
= htab_create (31, ehspec_filter_hash
, ehspec_filter_eq
, free
);
840 for (i
= 1; VEC_iterate (eh_region
, cfun
->eh
->region_array
, i
, r
); ++i
)
848 for (c
= r
->u
.eh_try
.first_catch
; c
; c
= c
->next_catch
)
850 /* Whatever type_list is (NULL or true list), we build a list
851 of filters for the region. */
852 c
->filter_list
= NULL_TREE
;
854 if (c
->type_list
!= NULL
)
856 /* Get a filter value for each of the types caught and store
857 them in the region's dedicated list. */
858 tree tp_node
= c
->type_list
;
860 for ( ; tp_node
; tp_node
= TREE_CHAIN (tp_node
))
862 int flt
= add_ttypes_entry (ttypes
, TREE_VALUE (tp_node
));
863 tree flt_node
= build_int_cst (integer_type_node
, flt
);
866 = tree_cons (NULL_TREE
, flt_node
, c
->filter_list
);
871 /* Get a filter value for the NULL list also since it
872 will need an action record anyway. */
873 int flt
= add_ttypes_entry (ttypes
, NULL
);
874 tree flt_node
= build_int_cst (integer_type_node
, flt
);
877 = tree_cons (NULL_TREE
, flt_node
, NULL
);
882 case ERT_ALLOWED_EXCEPTIONS
:
884 = add_ehspec_entry (ehspec
, ttypes
, r
->u
.allowed
.type_list
);
892 htab_delete (ttypes
);
893 htab_delete (ehspec
);
896 /* Emit SEQ into basic block just before INSN (that is assumed to be
897 first instruction of some existing BB and return the newly
900 emit_to_new_bb_before (rtx seq
, rtx insn
)
903 basic_block bb
, prev_bb
;
907 /* If there happens to be a fallthru edge (possibly created by cleanup_cfg
908 call), we don't want it to go into newly created landing pad or other EH
910 for (ei
= ei_start (BLOCK_FOR_INSN (insn
)->preds
); (e
= ei_safe_edge (ei
)); )
911 if (e
->flags
& EDGE_FALLTHRU
)
912 force_nonfallthru (e
);
915 last
= emit_insn_before (seq
, insn
);
916 if (BARRIER_P (last
))
917 last
= PREV_INSN (last
);
918 prev_bb
= BLOCK_FOR_INSN (insn
)->prev_bb
;
919 bb
= create_basic_block (seq
, last
, prev_bb
);
920 update_bb_for_insn (bb
);
921 bb
->flags
|= BB_SUPERBLOCK
;
925 /* A subroutine of dw2_build_landing_pads, also used for edge splitting
926 at the rtl level. Emit the code required by the target at a landing
927 pad for the given region. */
930 expand_dw2_landing_pad_for_region (eh_region region
)
932 #ifdef HAVE_exception_receiver
933 if (HAVE_exception_receiver
)
934 emit_insn (gen_exception_receiver ());
937 #ifdef HAVE_nonlocal_goto_receiver
938 if (HAVE_nonlocal_goto_receiver
)
939 emit_insn (gen_nonlocal_goto_receiver ());
944 if (region
->exc_ptr_reg
)
945 emit_move_insn (region
->exc_ptr_reg
,
946 gen_rtx_REG (ptr_mode
, EH_RETURN_DATA_REGNO (0)));
947 if (region
->filter_reg
)
948 emit_move_insn (region
->filter_reg
,
949 gen_rtx_REG (targetm
.eh_return_filter_mode (),
950 EH_RETURN_DATA_REGNO (1)));
953 /* Expand the extra code needed at landing pads for dwarf2 unwinding. */
956 dw2_build_landing_pads (void)
960 int e_flags
= EDGE_FALLTHRU
;
962 /* If we're going to partition blocks, we need to be able to add
963 new landing pads later, which means that we need to hold on to
964 the post-landing-pad block. Prevent it from being merged away.
965 We'll remove this bit after partitioning. */
966 if (flag_reorder_blocks_and_partition
)
967 e_flags
|= EDGE_PRESERVE
;
969 for (i
= 1; VEC_iterate (eh_landing_pad
, cfun
->eh
->lp_array
, i
, lp
); ++i
)
975 if (lp
== NULL
|| lp
->post_landing_pad
== NULL
)
980 lp
->landing_pad
= gen_label_rtx ();
981 emit_label (lp
->landing_pad
);
982 LABEL_PRESERVE_P (lp
->landing_pad
) = 1;
984 expand_dw2_landing_pad_for_region (lp
->region
);
989 bb
= emit_to_new_bb_before (seq
, label_rtx (lp
->post_landing_pad
));
990 e
= make_edge (bb
, bb
->next_bb
, e_flags
);
991 e
->count
= bb
->count
;
992 e
->probability
= REG_BR_PROB_BASE
;
995 struct loop
*loop
= bb
->next_bb
->loop_father
;
996 /* If we created a pre-header block, add the new block to the
997 outer loop, otherwise to the loop itself. */
998 if (bb
->next_bb
== loop
->header
)
999 add_bb_to_loop (bb
, loop_outer (loop
));
1001 add_bb_to_loop (bb
, loop
);
1007 static VEC (int, heap
) *sjlj_lp_call_site_index
;
1009 /* Process all active landing pads. Assign each one a compact dispatch
1010 index, and a call-site index. */
1013 sjlj_assign_call_site_values (void)
1019 crtl
->eh
.action_record_data
= VEC_alloc (uchar
, gc
, 64);
1020 ar_hash
= htab_create (31, action_record_hash
, action_record_eq
, free
);
1024 for (i
= 1; VEC_iterate (eh_landing_pad
, cfun
->eh
->lp_array
, i
, lp
); ++i
)
1025 if (lp
&& lp
->post_landing_pad
)
1027 int action
, call_site
;
1029 /* First: build the action table. */
1030 action
= collect_one_action_chain (ar_hash
, lp
->region
);
1032 /* Next: assign call-site values. If dwarf2 terms, this would be
1033 the region number assigned by convert_to_eh_region_ranges, but
1034 handles no-action and must-not-throw differently. */
1035 /* Map must-not-throw to otherwise unused call-site index 0. */
1038 /* Map no-action to otherwise unused call-site index -1. */
1039 else if (action
== -1)
1041 /* Otherwise, look it up in the table. */
1043 call_site
= add_call_site (GEN_INT (disp_index
), action
, 0);
1044 VEC_replace (int, sjlj_lp_call_site_index
, i
, call_site
);
1049 htab_delete (ar_hash
);
1054 /* Emit code to record the current call-site index before every
1055 insn that can throw. */
1058 sjlj_mark_call_sites (void)
1060 int last_call_site
= -2;
1063 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
1071 /* Reset value tracking at extended basic block boundaries. */
1073 last_call_site
= -2;
1075 if (! INSN_P (insn
))
1078 nothrow
= get_eh_region_and_lp_from_rtx (insn
, &r
, &lp
);
1082 this_call_site
= VEC_index (int, sjlj_lp_call_site_index
, lp
->index
);
1085 /* Calls (and trapping insns) without notes are outside any
1086 exception handling region in this function. Mark them as
1088 this_call_site
= -1;
1092 gcc_assert (r
->type
== ERT_MUST_NOT_THROW
);
1096 if (this_call_site
!= -1)
1097 crtl
->uses_eh_lsda
= 1;
1099 if (this_call_site
== last_call_site
)
1102 /* Don't separate a call from it's argument loads. */
1105 before
= find_first_parameter_load (insn
, NULL_RTX
);
1108 mem
= adjust_address (crtl
->eh
.sjlj_fc
, TYPE_MODE (integer_type_node
),
1109 sjlj_fc_call_site_ofs
);
1110 emit_move_insn (mem
, GEN_INT (this_call_site
));
1114 emit_insn_before (p
, before
);
1115 last_call_site
= this_call_site
;
1119 /* Construct the SjLj_Function_Context. */
1122 sjlj_emit_function_enter (rtx dispatch_label
)
1124 rtx fn_begin
, fc
, mem
, seq
;
1125 bool fn_begin_outside_block
;
1126 rtx personality
= get_personality_function (current_function_decl
);
1128 fc
= crtl
->eh
.sjlj_fc
;
1132 /* We're storing this libcall's address into memory instead of
1133 calling it directly. Thus, we must call assemble_external_libcall
1134 here, as we can not depend on emit_library_call to do it for us. */
1135 assemble_external_libcall (personality
);
1136 mem
= adjust_address (fc
, Pmode
, sjlj_fc_personality_ofs
);
1137 emit_move_insn (mem
, personality
);
1139 mem
= adjust_address (fc
, Pmode
, sjlj_fc_lsda_ofs
);
1140 if (crtl
->uses_eh_lsda
)
1145 ASM_GENERATE_INTERNAL_LABEL (buf
, "LLSDA", current_function_funcdef_no
);
1146 sym
= gen_rtx_SYMBOL_REF (Pmode
, ggc_strdup (buf
));
1147 SYMBOL_REF_FLAGS (sym
) = SYMBOL_FLAG_LOCAL
;
1148 emit_move_insn (mem
, sym
);
1151 emit_move_insn (mem
, const0_rtx
);
1155 #ifdef DONT_USE_BUILTIN_SETJMP
1157 x
= emit_library_call_value (setjmp_libfunc
, NULL_RTX
, LCT_RETURNS_TWICE
,
1158 TYPE_MODE (integer_type_node
), 1,
1159 plus_constant (Pmode
, XEXP (fc
, 0),
1160 sjlj_fc_jbuf_ofs
), Pmode
);
1162 emit_cmp_and_jump_insns (x
, const0_rtx
, NE
, 0,
1163 TYPE_MODE (integer_type_node
), 0,
1164 dispatch_label
, REG_BR_PROB_BASE
/ 100);
1166 expand_builtin_setjmp_setup (plus_constant (Pmode
, XEXP (fc
, 0),
1172 emit_library_call (unwind_sjlj_register_libfunc
, LCT_NORMAL
, VOIDmode
,
1173 1, XEXP (fc
, 0), Pmode
);
1178 /* ??? Instead of doing this at the beginning of the function,
1179 do this in a block that is at loop level 0 and dominates all
1180 can_throw_internal instructions. */
1182 fn_begin_outside_block
= true;
1183 for (fn_begin
= get_insns (); ; fn_begin
= NEXT_INSN (fn_begin
))
1184 if (NOTE_P (fn_begin
))
1186 if (NOTE_KIND (fn_begin
) == NOTE_INSN_FUNCTION_BEG
)
1188 else if (NOTE_INSN_BASIC_BLOCK_P (fn_begin
))
1189 fn_begin_outside_block
= false;
1192 if (fn_begin_outside_block
)
1193 insert_insn_on_edge (seq
, single_succ_edge (ENTRY_BLOCK_PTR
));
1195 emit_insn_after (seq
, fn_begin
);
1198 /* Call back from expand_function_end to know where we should put
1199 the call to unwind_sjlj_unregister_libfunc if needed. */
1202 sjlj_emit_function_exit_after (rtx after
)
1204 crtl
->eh
.sjlj_exit_after
= after
;
1208 sjlj_emit_function_exit (void)
1214 emit_library_call (unwind_sjlj_unregister_libfunc
, LCT_NORMAL
, VOIDmode
,
1215 1, XEXP (crtl
->eh
.sjlj_fc
, 0), Pmode
);
1220 /* ??? Really this can be done in any block at loop level 0 that
1221 post-dominates all can_throw_internal instructions. This is
1222 the last possible moment. */
1224 insn
= crtl
->eh
.sjlj_exit_after
;
1226 insn
= NEXT_INSN (insn
);
1228 emit_insn_after (seq
, insn
);
1232 sjlj_emit_dispatch_table (rtx dispatch_label
, int num_dispatch
)
1234 enum machine_mode unwind_word_mode
= targetm
.unwind_word_mode ();
1235 enum machine_mode filter_mode
= targetm
.eh_return_filter_mode ();
1237 rtx mem
, seq
, fc
, before
, exc_ptr_reg
, filter_reg
;
1238 rtx first_reachable_label
;
1243 VEC(tree
, heap
) *dispatch_labels
= NULL
;
1245 fc
= crtl
->eh
.sjlj_fc
;
1249 emit_label (dispatch_label
);
1251 #ifndef DONT_USE_BUILTIN_SETJMP
1252 expand_builtin_setjmp_receiver (dispatch_label
);
1254 /* The caller of expand_builtin_setjmp_receiver is responsible for
1255 making sure that the label doesn't vanish. The only other caller
1256 is the expander for __builtin_setjmp_receiver, which places this
1257 label on the nonlocal_goto_label list. Since we're modeling these
1258 CFG edges more exactly, we can use the forced_labels list instead. */
1259 LABEL_PRESERVE_P (dispatch_label
) = 1;
1261 = gen_rtx_EXPR_LIST (VOIDmode
, dispatch_label
, forced_labels
);
1264 /* Load up exc_ptr and filter values from the function context. */
1265 mem
= adjust_address (fc
, unwind_word_mode
, sjlj_fc_data_ofs
);
1266 if (unwind_word_mode
!= ptr_mode
)
1268 #ifdef POINTERS_EXTEND_UNSIGNED
1269 mem
= convert_memory_address (ptr_mode
, mem
);
1271 mem
= convert_to_mode (ptr_mode
, mem
, 0);
1274 exc_ptr_reg
= force_reg (ptr_mode
, mem
);
1276 mem
= adjust_address (fc
, unwind_word_mode
,
1277 sjlj_fc_data_ofs
+ GET_MODE_SIZE (unwind_word_mode
));
1278 if (unwind_word_mode
!= filter_mode
)
1279 mem
= convert_to_mode (filter_mode
, mem
, 0);
1280 filter_reg
= force_reg (filter_mode
, mem
);
1282 /* Jump to one of the directly reachable regions. */
1285 first_reachable_label
= NULL
;
1287 /* If there's exactly one call site in the function, don't bother
1288 generating a switch statement. */
1289 if (num_dispatch
> 1)
1290 dispatch_labels
= VEC_alloc (tree
, heap
, num_dispatch
);
1292 for (i
= 1; VEC_iterate (eh_landing_pad
, cfun
->eh
->lp_array
, i
, lp
); ++i
)
1293 if (lp
&& lp
->post_landing_pad
)
1299 lp
->landing_pad
= dispatch_label
;
1301 if (num_dispatch
> 1)
1303 tree t_label
, case_elt
, t
;
1305 t_label
= create_artificial_label (UNKNOWN_LOCATION
);
1306 t
= build_int_cst (integer_type_node
, disp_index
);
1307 case_elt
= build_case_label (t
, NULL
, t_label
);
1308 VEC_quick_push (tree
, dispatch_labels
, case_elt
);
1309 label
= label_rtx (t_label
);
1312 label
= gen_label_rtx ();
1314 if (disp_index
== 0)
1315 first_reachable_label
= label
;
1320 emit_move_insn (r
->exc_ptr_reg
, exc_ptr_reg
);
1322 emit_move_insn (r
->filter_reg
, filter_reg
);
1324 seq2
= get_insns ();
1327 before
= label_rtx (lp
->post_landing_pad
);
1328 bb
= emit_to_new_bb_before (seq2
, before
);
1329 e
= make_edge (bb
, bb
->next_bb
, EDGE_FALLTHRU
);
1330 e
->count
= bb
->count
;
1331 e
->probability
= REG_BR_PROB_BASE
;
1334 struct loop
*loop
= bb
->next_bb
->loop_father
;
1335 /* If we created a pre-header block, add the new block to the
1336 outer loop, otherwise to the loop itself. */
1337 if (bb
->next_bb
== loop
->header
)
1338 add_bb_to_loop (bb
, loop_outer (loop
));
1340 add_bb_to_loop (bb
, loop
);
1341 /* ??? For multiple dispatches we will end up with edges
1342 from the loop tree root into this loop, making it a
1343 multiple-entry loop. Discard all affected loops. */
1344 if (num_dispatch
> 1)
1346 for (loop
= bb
->loop_father
;
1347 loop_outer (loop
); loop
= loop_outer (loop
))
1349 loop
->header
= NULL
;
1357 gcc_assert (disp_index
== num_dispatch
);
1359 if (num_dispatch
> 1)
1361 rtx disp
= adjust_address (fc
, TYPE_MODE (integer_type_node
),
1362 sjlj_fc_call_site_ofs
);
1363 expand_sjlj_dispatch_table (disp
, dispatch_labels
);
1369 bb
= emit_to_new_bb_before (seq
, first_reachable_label
);
1370 if (num_dispatch
== 1)
1372 e
= make_edge (bb
, bb
->next_bb
, EDGE_FALLTHRU
);
1373 e
->count
= bb
->count
;
1374 e
->probability
= REG_BR_PROB_BASE
;
1377 struct loop
*loop
= bb
->next_bb
->loop_father
;
1378 /* If we created a pre-header block, add the new block to the
1379 outer loop, otherwise to the loop itself. */
1380 if (bb
->next_bb
== loop
->header
)
1381 add_bb_to_loop (bb
, loop_outer (loop
));
1383 add_bb_to_loop (bb
, loop
);
1388 /* We are not wiring up edges here, but as the dispatcher call
1389 is at function begin simply associate the block with the
1390 outermost (non-)loop. */
1392 add_bb_to_loop (bb
, current_loops
->tree_root
);
1397 sjlj_build_landing_pads (void)
1401 num_dispatch
= VEC_length (eh_landing_pad
, cfun
->eh
->lp_array
);
1402 if (num_dispatch
== 0)
1404 VEC_safe_grow (int, heap
, sjlj_lp_call_site_index
, num_dispatch
);
1406 num_dispatch
= sjlj_assign_call_site_values ();
1407 if (num_dispatch
> 0)
1409 rtx dispatch_label
= gen_label_rtx ();
1410 int align
= STACK_SLOT_ALIGNMENT (sjlj_fc_type_node
,
1411 TYPE_MODE (sjlj_fc_type_node
),
1412 TYPE_ALIGN (sjlj_fc_type_node
));
1414 = assign_stack_local (TYPE_MODE (sjlj_fc_type_node
),
1415 int_size_in_bytes (sjlj_fc_type_node
),
1418 sjlj_mark_call_sites ();
1419 sjlj_emit_function_enter (dispatch_label
);
1420 sjlj_emit_dispatch_table (dispatch_label
, num_dispatch
);
1421 sjlj_emit_function_exit ();
1424 /* If we do not have any landing pads, we may still need to register a
1425 personality routine and (empty) LSDA to handle must-not-throw regions. */
1426 else if (function_needs_eh_personality (cfun
) != eh_personality_none
)
1428 int align
= STACK_SLOT_ALIGNMENT (sjlj_fc_type_node
,
1429 TYPE_MODE (sjlj_fc_type_node
),
1430 TYPE_ALIGN (sjlj_fc_type_node
));
1432 = assign_stack_local (TYPE_MODE (sjlj_fc_type_node
),
1433 int_size_in_bytes (sjlj_fc_type_node
),
1436 sjlj_mark_call_sites ();
1437 sjlj_emit_function_enter (NULL_RTX
);
1438 sjlj_emit_function_exit ();
1441 VEC_free (int, heap
, sjlj_lp_call_site_index
);
1444 /* After initial rtl generation, call back to finish generating
1445 exception support code. */
1448 finish_eh_generation (void)
1452 /* Construct the landing pads. */
1453 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
1454 sjlj_build_landing_pads ();
1456 dw2_build_landing_pads ();
1457 break_superblocks ();
1459 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
1460 /* Kludge for Alpha (see alpha_gp_save_rtx). */
1461 || single_succ_edge (ENTRY_BLOCK_PTR
)->insns
.r
)
1462 commit_edge_insertions ();
1464 /* Redirect all EH edges from the post_landing_pad to the landing pad. */
1471 lp
= get_eh_landing_pad_from_rtx (BB_END (bb
));
1473 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1474 if (e
->flags
& EDGE_EH
)
1477 /* We should not have generated any new throwing insns during this
1478 pass, and we should not have lost any EH edges, so we only need
1479 to handle two cases here:
1480 (1) reachable handler and an existing edge to post-landing-pad,
1481 (2) no reachable handler and no edge. */
1482 gcc_assert ((lp
!= NULL
) == (e
!= NULL
));
1485 gcc_assert (BB_HEAD (e
->dest
) == label_rtx (lp
->post_landing_pad
));
1487 redirect_edge_succ (e
, BLOCK_FOR_INSN (lp
->landing_pad
));
1488 e
->flags
|= (CALL_P (BB_END (bb
))
1489 ? EDGE_ABNORMAL
| EDGE_ABNORMAL_CALL
1495 /* This section handles removing dead code for flow. */
1498 remove_eh_landing_pad (eh_landing_pad lp
)
1502 for (pp
= &lp
->region
->landing_pads
; *pp
!= lp
; pp
= &(*pp
)->next_lp
)
1506 if (lp
->post_landing_pad
)
1507 EH_LANDING_PAD_NR (lp
->post_landing_pad
) = 0;
1508 VEC_replace (eh_landing_pad
, cfun
->eh
->lp_array
, lp
->index
, NULL
);
1511 /* Splice REGION from the region tree. */
1514 remove_eh_handler (eh_region region
)
1516 eh_region
*pp
, *pp_start
, p
, outer
;
1519 for (lp
= region
->landing_pads
; lp
; lp
= lp
->next_lp
)
1521 if (lp
->post_landing_pad
)
1522 EH_LANDING_PAD_NR (lp
->post_landing_pad
) = 0;
1523 VEC_replace (eh_landing_pad
, cfun
->eh
->lp_array
, lp
->index
, NULL
);
1526 outer
= region
->outer
;
1528 pp_start
= &outer
->inner
;
1530 pp_start
= &cfun
->eh
->region_tree
;
1531 for (pp
= pp_start
, p
= *pp
; p
!= region
; pp
= &p
->next_peer
, p
= *pp
)
1535 *pp
= p
= region
->inner
;
1544 *pp
= region
->next_peer
;
1546 VEC_replace (eh_region
, cfun
->eh
->region_array
, region
->index
, NULL
);
1549 /* Invokes CALLBACK for every exception handler landing pad label.
1550 Only used by reload hackery; should not be used by new code. */
1553 for_each_eh_label (void (*callback
) (rtx
))
1558 for (i
= 1; VEC_iterate (eh_landing_pad
, cfun
->eh
->lp_array
, i
, lp
); ++i
)
1562 rtx lab
= lp
->landing_pad
;
1563 if (lab
&& LABEL_P (lab
))
1569 /* Create the REG_EH_REGION note for INSN, given its ECF_FLAGS for a
1572 At the gimple level, we use LP_NR
1573 > 0 : The statement transfers to landing pad LP_NR
1574 = 0 : The statement is outside any EH region
1575 < 0 : The statement is within MUST_NOT_THROW region -LP_NR.
1577 At the rtl level, we use LP_NR
1578 > 0 : The insn transfers to landing pad LP_NR
1579 = 0 : The insn cannot throw
1580 < 0 : The insn is within MUST_NOT_THROW region -LP_NR
1581 = INT_MIN : The insn cannot throw or execute a nonlocal-goto.
1582 missing note: The insn is outside any EH region.
1584 ??? This difference probably ought to be avoided. We could stand
1585 to record nothrow for arbitrary gimple statements, and so avoid
1586 some moderately complex lookups in stmt_could_throw_p. Perhaps
1587 NOTHROW should be mapped on both sides to INT_MIN. Perhaps the
1588 no-nonlocal-goto property should be recorded elsewhere as a bit
1589 on the call_insn directly. Perhaps we should make more use of
1590 attaching the trees to call_insns (reachable via symbol_ref in
1591 direct call cases) and just pull the data out of the trees. */
1594 make_reg_eh_region_note (rtx insn
, int ecf_flags
, int lp_nr
)
1597 if (ecf_flags
& ECF_NOTHROW
)
1599 else if (lp_nr
!= 0)
1600 value
= GEN_INT (lp_nr
);
1603 add_reg_note (insn
, REG_EH_REGION
, value
);
1606 /* Create a REG_EH_REGION note for a CALL_INSN that cannot throw
1607 nor perform a non-local goto. Replace the region note if it
1611 make_reg_eh_region_note_nothrow_nononlocal (rtx insn
)
1613 rtx note
= find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
);
1614 rtx intmin
= GEN_INT (INT_MIN
);
1617 XEXP (note
, 0) = intmin
;
1619 add_reg_note (insn
, REG_EH_REGION
, intmin
);
1622 /* Return true if INSN could throw, assuming no REG_EH_REGION note
1626 insn_could_throw_p (const_rtx insn
)
1628 if (!flag_exceptions
)
1632 if (INSN_P (insn
) && cfun
->can_throw_non_call_exceptions
)
1633 return may_trap_p (PATTERN (insn
));
1637 /* Copy an REG_EH_REGION note to each insn that might throw beginning
1638 at FIRST and ending at LAST. NOTE_OR_INSN is either the source insn
1639 to look for a note, or the note itself. */
1642 copy_reg_eh_region_note_forward (rtx note_or_insn
, rtx first
, rtx last
)
1644 rtx insn
, note
= note_or_insn
;
1646 if (INSN_P (note_or_insn
))
1648 note
= find_reg_note (note_or_insn
, REG_EH_REGION
, NULL_RTX
);
1652 note
= XEXP (note
, 0);
1654 for (insn
= first
; insn
!= last
; insn
= NEXT_INSN (insn
))
1655 if (!find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
)
1656 && insn_could_throw_p (insn
))
1657 add_reg_note (insn
, REG_EH_REGION
, note
);
1660 /* Likewise, but iterate backward. */
1663 copy_reg_eh_region_note_backward (rtx note_or_insn
, rtx last
, rtx first
)
1665 rtx insn
, note
= note_or_insn
;
1667 if (INSN_P (note_or_insn
))
1669 note
= find_reg_note (note_or_insn
, REG_EH_REGION
, NULL_RTX
);
1673 note
= XEXP (note
, 0);
1675 for (insn
= last
; insn
!= first
; insn
= PREV_INSN (insn
))
1676 if (insn_could_throw_p (insn
))
1677 add_reg_note (insn
, REG_EH_REGION
, note
);
1681 /* Extract all EH information from INSN. Return true if the insn
1682 was marked NOTHROW. */
1685 get_eh_region_and_lp_from_rtx (const_rtx insn
, eh_region
*pr
,
1686 eh_landing_pad
*plp
)
1688 eh_landing_pad lp
= NULL
;
1694 if (! INSN_P (insn
))
1697 if (NONJUMP_INSN_P (insn
)
1698 && GET_CODE (PATTERN (insn
)) == SEQUENCE
)
1699 insn
= XVECEXP (PATTERN (insn
), 0, 0);
1701 note
= find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
);
1704 ret
= !insn_could_throw_p (insn
);
1708 lp_nr
= INTVAL (XEXP (note
, 0));
1709 if (lp_nr
== 0 || lp_nr
== INT_MIN
)
1716 r
= VEC_index (eh_region
, cfun
->eh
->region_array
, -lp_nr
);
1719 lp
= VEC_index (eh_landing_pad
, cfun
->eh
->lp_array
, lp_nr
);
1729 /* Return the landing pad to which INSN may go, or NULL if it does not
1730 have a reachable landing pad within this function. */
1733 get_eh_landing_pad_from_rtx (const_rtx insn
)
1738 get_eh_region_and_lp_from_rtx (insn
, &r
, &lp
);
1742 /* Return the region to which INSN may go, or NULL if it does not
1743 have a reachable region within this function. */
1746 get_eh_region_from_rtx (const_rtx insn
)
1751 get_eh_region_and_lp_from_rtx (insn
, &r
, &lp
);
1755 /* Return true if INSN throws and is caught by something in this function. */
1758 can_throw_internal (const_rtx insn
)
1760 return get_eh_landing_pad_from_rtx (insn
) != NULL
;
1763 /* Return true if INSN throws and escapes from the current function. */
1766 can_throw_external (const_rtx insn
)
1772 if (! INSN_P (insn
))
1775 if (NONJUMP_INSN_P (insn
)
1776 && GET_CODE (PATTERN (insn
)) == SEQUENCE
)
1778 rtx seq
= PATTERN (insn
);
1779 int i
, n
= XVECLEN (seq
, 0);
1781 for (i
= 0; i
< n
; i
++)
1782 if (can_throw_external (XVECEXP (seq
, 0, i
)))
1788 nothrow
= get_eh_region_and_lp_from_rtx (insn
, &r
, &lp
);
1790 /* If we can't throw, we obviously can't throw external. */
1794 /* If we have an internal landing pad, then we're not external. */
1798 /* If we're not within an EH region, then we are external. */
1802 /* The only thing that ought to be left is MUST_NOT_THROW regions,
1803 which don't always have landing pads. */
1804 gcc_assert (r
->type
== ERT_MUST_NOT_THROW
);
1808 /* Return true if INSN cannot throw at all. */
1811 insn_nothrow_p (const_rtx insn
)
1816 if (! INSN_P (insn
))
1819 if (NONJUMP_INSN_P (insn
)
1820 && GET_CODE (PATTERN (insn
)) == SEQUENCE
)
1822 rtx seq
= PATTERN (insn
);
1823 int i
, n
= XVECLEN (seq
, 0);
1825 for (i
= 0; i
< n
; i
++)
1826 if (!insn_nothrow_p (XVECEXP (seq
, 0, i
)))
1832 return get_eh_region_and_lp_from_rtx (insn
, &r
, &lp
);
1835 /* Return true if INSN can perform a non-local goto. */
1836 /* ??? This test is here in this file because it (ab)uses REG_EH_REGION. */
1839 can_nonlocal_goto (const_rtx insn
)
1841 if (nonlocal_goto_handler_labels
&& CALL_P (insn
))
1843 rtx note
= find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
);
1844 if (!note
|| INTVAL (XEXP (note
, 0)) != INT_MIN
)
1850 /* Set TREE_NOTHROW and crtl->all_throwers_are_sibcalls. */
1853 set_nothrow_function_flags (void)
1859 /* Assume crtl->all_throwers_are_sibcalls until we encounter
1860 something that can throw an exception. We specifically exempt
1861 CALL_INSNs that are SIBLING_CALL_P, as these are really jumps,
1862 and can't throw. Most CALL_INSNs are not SIBLING_CALL_P, so this
1865 crtl
->all_throwers_are_sibcalls
= 1;
1867 /* If we don't know that this implementation of the function will
1868 actually be used, then we must not set TREE_NOTHROW, since
1869 callers must not assume that this function does not throw. */
1870 if (TREE_NOTHROW (current_function_decl
))
1873 if (! flag_exceptions
)
1876 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
1877 if (can_throw_external (insn
))
1881 if (!CALL_P (insn
) || !SIBLING_CALL_P (insn
))
1883 crtl
->all_throwers_are_sibcalls
= 0;
1888 for (insn
= crtl
->epilogue_delay_list
; insn
;
1889 insn
= XEXP (insn
, 1))
1890 if (can_throw_external (insn
))
1894 if (!CALL_P (insn
) || !SIBLING_CALL_P (insn
))
1896 crtl
->all_throwers_are_sibcalls
= 0;
1901 && (cgraph_function_body_availability (cgraph_get_node
1902 (current_function_decl
))
1903 >= AVAIL_AVAILABLE
))
1905 struct cgraph_node
*node
= cgraph_get_node (current_function_decl
);
1906 struct cgraph_edge
*e
;
1907 for (e
= node
->callers
; e
; e
= e
->next_caller
)
1908 e
->can_throw_external
= false;
1909 cgraph_set_nothrow_flag (node
, true);
1912 fprintf (dump_file
, "Marking function nothrow: %s\n\n",
1913 current_function_name ());
1918 struct rtl_opt_pass pass_set_nothrow_function_flags
=
1922 "nothrow", /* name */
1923 OPTGROUP_NONE
, /* optinfo_flags */
1925 set_nothrow_function_flags
, /* execute */
1928 0, /* static_pass_number */
1929 TV_NONE
, /* tv_id */
1930 0, /* properties_required */
1931 0, /* properties_provided */
1932 0, /* properties_destroyed */
1933 0, /* todo_flags_start */
1934 0 /* todo_flags_finish */
1939 /* Various hooks for unwind library. */
1941 /* Expand the EH support builtin functions:
1942 __builtin_eh_pointer and __builtin_eh_filter. */
1945 expand_builtin_eh_common (tree region_nr_t
)
1947 HOST_WIDE_INT region_nr
;
1950 gcc_assert (host_integerp (region_nr_t
, 0));
1951 region_nr
= tree_low_cst (region_nr_t
, 0);
1953 region
= VEC_index (eh_region
, cfun
->eh
->region_array
, region_nr
);
1955 /* ??? We shouldn't have been able to delete a eh region without
1956 deleting all the code that depended on it. */
1957 gcc_assert (region
!= NULL
);
1962 /* Expand to the exc_ptr value from the given eh region. */
1965 expand_builtin_eh_pointer (tree exp
)
1968 = expand_builtin_eh_common (CALL_EXPR_ARG (exp
, 0));
1969 if (region
->exc_ptr_reg
== NULL
)
1970 region
->exc_ptr_reg
= gen_reg_rtx (ptr_mode
);
1971 return region
->exc_ptr_reg
;
1974 /* Expand to the filter value from the given eh region. */
1977 expand_builtin_eh_filter (tree exp
)
1980 = expand_builtin_eh_common (CALL_EXPR_ARG (exp
, 0));
1981 if (region
->filter_reg
== NULL
)
1982 region
->filter_reg
= gen_reg_rtx (targetm
.eh_return_filter_mode ());
1983 return region
->filter_reg
;
1986 /* Copy the exc_ptr and filter values from one landing pad's registers
1987 to another. This is used to inline the resx statement. */
1990 expand_builtin_eh_copy_values (tree exp
)
1993 = expand_builtin_eh_common (CALL_EXPR_ARG (exp
, 0));
1995 = expand_builtin_eh_common (CALL_EXPR_ARG (exp
, 1));
1996 enum machine_mode fmode
= targetm
.eh_return_filter_mode ();
1998 if (dst
->exc_ptr_reg
== NULL
)
1999 dst
->exc_ptr_reg
= gen_reg_rtx (ptr_mode
);
2000 if (src
->exc_ptr_reg
== NULL
)
2001 src
->exc_ptr_reg
= gen_reg_rtx (ptr_mode
);
2003 if (dst
->filter_reg
== NULL
)
2004 dst
->filter_reg
= gen_reg_rtx (fmode
);
2005 if (src
->filter_reg
== NULL
)
2006 src
->filter_reg
= gen_reg_rtx (fmode
);
2008 emit_move_insn (dst
->exc_ptr_reg
, src
->exc_ptr_reg
);
2009 emit_move_insn (dst
->filter_reg
, src
->filter_reg
);
2014 /* Do any necessary initialization to access arbitrary stack frames.
2015 On the SPARC, this means flushing the register windows. */
2018 expand_builtin_unwind_init (void)
2020 /* Set this so all the registers get saved in our frame; we need to be
2021 able to copy the saved values for any registers from frames we unwind. */
2022 crtl
->saves_all_registers
= 1;
2024 #ifdef SETUP_FRAME_ADDRESSES
2025 SETUP_FRAME_ADDRESSES ();
2029 /* Map a non-negative number to an eh return data register number; expands
2030 to -1 if no return data register is associated with the input number.
2031 At least the inputs 0 and 1 must be mapped; the target may provide more. */
2034 expand_builtin_eh_return_data_regno (tree exp
)
2036 tree which
= CALL_EXPR_ARG (exp
, 0);
2037 unsigned HOST_WIDE_INT iwhich
;
2039 if (TREE_CODE (which
) != INTEGER_CST
)
2041 error ("argument of %<__builtin_eh_return_regno%> must be constant");
2045 iwhich
= tree_low_cst (which
, 1);
2046 iwhich
= EH_RETURN_DATA_REGNO (iwhich
);
2047 if (iwhich
== INVALID_REGNUM
)
2050 #ifdef DWARF_FRAME_REGNUM
2051 iwhich
= DWARF_FRAME_REGNUM (iwhich
);
2053 iwhich
= DBX_REGISTER_NUMBER (iwhich
);
2056 return GEN_INT (iwhich
);
2059 /* Given a value extracted from the return address register or stack slot,
2060 return the actual address encoded in that value. */
2063 expand_builtin_extract_return_addr (tree addr_tree
)
2065 rtx addr
= expand_expr (addr_tree
, NULL_RTX
, Pmode
, EXPAND_NORMAL
);
2067 if (GET_MODE (addr
) != Pmode
2068 && GET_MODE (addr
) != VOIDmode
)
2070 #ifdef POINTERS_EXTEND_UNSIGNED
2071 addr
= convert_memory_address (Pmode
, addr
);
2073 addr
= convert_to_mode (Pmode
, addr
, 0);
2077 /* First mask out any unwanted bits. */
2078 #ifdef MASK_RETURN_ADDR
2079 expand_and (Pmode
, addr
, MASK_RETURN_ADDR
, addr
);
2082 /* Then adjust to find the real return address. */
2083 #if defined (RETURN_ADDR_OFFSET)
2084 addr
= plus_constant (Pmode
, addr
, RETURN_ADDR_OFFSET
);
2090 /* Given an actual address in addr_tree, do any necessary encoding
2091 and return the value to be stored in the return address register or
2092 stack slot so the epilogue will return to that address. */
2095 expand_builtin_frob_return_addr (tree addr_tree
)
2097 rtx addr
= expand_expr (addr_tree
, NULL_RTX
, ptr_mode
, EXPAND_NORMAL
);
2099 addr
= convert_memory_address (Pmode
, addr
);
2101 #ifdef RETURN_ADDR_OFFSET
2102 addr
= force_reg (Pmode
, addr
);
2103 addr
= plus_constant (Pmode
, addr
, -RETURN_ADDR_OFFSET
);
2109 /* Set up the epilogue with the magic bits we'll need to return to the
2110 exception handler. */
2113 expand_builtin_eh_return (tree stackadj_tree ATTRIBUTE_UNUSED
,
2118 #ifdef EH_RETURN_STACKADJ_RTX
2119 tmp
= expand_expr (stackadj_tree
, crtl
->eh
.ehr_stackadj
,
2120 VOIDmode
, EXPAND_NORMAL
);
2121 tmp
= convert_memory_address (Pmode
, tmp
);
2122 if (!crtl
->eh
.ehr_stackadj
)
2123 crtl
->eh
.ehr_stackadj
= copy_to_reg (tmp
);
2124 else if (tmp
!= crtl
->eh
.ehr_stackadj
)
2125 emit_move_insn (crtl
->eh
.ehr_stackadj
, tmp
);
2128 tmp
= expand_expr (handler_tree
, crtl
->eh
.ehr_handler
,
2129 VOIDmode
, EXPAND_NORMAL
);
2130 tmp
= convert_memory_address (Pmode
, tmp
);
2131 if (!crtl
->eh
.ehr_handler
)
2132 crtl
->eh
.ehr_handler
= copy_to_reg (tmp
);
2133 else if (tmp
!= crtl
->eh
.ehr_handler
)
2134 emit_move_insn (crtl
->eh
.ehr_handler
, tmp
);
2136 if (!crtl
->eh
.ehr_label
)
2137 crtl
->eh
.ehr_label
= gen_label_rtx ();
2138 emit_jump (crtl
->eh
.ehr_label
);
2141 /* Expand __builtin_eh_return. This exit path from the function loads up
2142 the eh return data registers, adjusts the stack, and branches to a
2143 given PC other than the normal return address. */
2146 expand_eh_return (void)
2150 if (! crtl
->eh
.ehr_label
)
2153 crtl
->calls_eh_return
= 1;
2155 #ifdef EH_RETURN_STACKADJ_RTX
2156 emit_move_insn (EH_RETURN_STACKADJ_RTX
, const0_rtx
);
2159 around_label
= gen_label_rtx ();
2160 emit_jump (around_label
);
2162 emit_label (crtl
->eh
.ehr_label
);
2163 clobber_return_register ();
2165 #ifdef EH_RETURN_STACKADJ_RTX
2166 emit_move_insn (EH_RETURN_STACKADJ_RTX
, crtl
->eh
.ehr_stackadj
);
2169 #ifdef HAVE_eh_return
2171 emit_insn (gen_eh_return (crtl
->eh
.ehr_handler
));
2175 #ifdef EH_RETURN_HANDLER_RTX
2176 emit_move_insn (EH_RETURN_HANDLER_RTX
, crtl
->eh
.ehr_handler
);
2178 error ("__builtin_eh_return not supported on this target");
2182 emit_label (around_label
);
2185 /* Convert a ptr_mode address ADDR_TREE to a Pmode address controlled by
2186 POINTERS_EXTEND_UNSIGNED and return it. */
2189 expand_builtin_extend_pointer (tree addr_tree
)
2191 rtx addr
= expand_expr (addr_tree
, NULL_RTX
, ptr_mode
, EXPAND_NORMAL
);
2194 #ifdef POINTERS_EXTEND_UNSIGNED
2195 extend
= POINTERS_EXTEND_UNSIGNED
;
2197 /* The previous EH code did an unsigned extend by default, so we do this also
2202 return convert_modes (targetm
.unwind_word_mode (), ptr_mode
, addr
, extend
);
2205 /* In the following functions, we represent entries in the action table
2206 as 1-based indices. Special cases are:
2208 0: null action record, non-null landing pad; implies cleanups
2209 -1: null action record, null landing pad; implies no action
2210 -2: no call-site entry; implies must_not_throw
2211 -3: we have yet to process outer regions
2213 Further, no special cases apply to the "next" field of the record.
2214 For next, 0 means end of list. */
2216 struct action_record
2224 action_record_eq (const void *pentry
, const void *pdata
)
2226 const struct action_record
*entry
= (const struct action_record
*) pentry
;
2227 const struct action_record
*data
= (const struct action_record
*) pdata
;
2228 return entry
->filter
== data
->filter
&& entry
->next
== data
->next
;
2232 action_record_hash (const void *pentry
)
2234 const struct action_record
*entry
= (const struct action_record
*) pentry
;
2235 return entry
->next
* 1009 + entry
->filter
;
2239 add_action_record (htab_t ar_hash
, int filter
, int next
)
2241 struct action_record
**slot
, *new_ar
, tmp
;
2243 tmp
.filter
= filter
;
2245 slot
= (struct action_record
**) htab_find_slot (ar_hash
, &tmp
, INSERT
);
2247 if ((new_ar
= *slot
) == NULL
)
2249 new_ar
= XNEW (struct action_record
);
2250 new_ar
->offset
= VEC_length (uchar
, crtl
->eh
.action_record_data
) + 1;
2251 new_ar
->filter
= filter
;
2252 new_ar
->next
= next
;
2255 /* The filter value goes in untouched. The link to the next
2256 record is a "self-relative" byte offset, or zero to indicate
2257 that there is no next record. So convert the absolute 1 based
2258 indices we've been carrying around into a displacement. */
2260 push_sleb128 (&crtl
->eh
.action_record_data
, filter
);
2262 next
-= VEC_length (uchar
, crtl
->eh
.action_record_data
) + 1;
2263 push_sleb128 (&crtl
->eh
.action_record_data
, next
);
2266 return new_ar
->offset
;
2270 collect_one_action_chain (htab_t ar_hash
, eh_region region
)
2274 /* If we've reached the top of the region chain, then we have
2275 no actions, and require no landing pad. */
2279 switch (region
->type
)
2284 /* A cleanup adds a zero filter to the beginning of the chain, but
2285 there are special cases to look out for. If there are *only*
2286 cleanups along a path, then it compresses to a zero action.
2287 Further, if there are multiple cleanups along a path, we only
2288 need to represent one of them, as that is enough to trigger
2289 entry to the landing pad at runtime. */
2290 next
= collect_one_action_chain (ar_hash
, region
->outer
);
2293 for (r
= region
->outer
; r
; r
= r
->outer
)
2294 if (r
->type
== ERT_CLEANUP
)
2296 return add_action_record (ar_hash
, 0, next
);
2303 /* Process the associated catch regions in reverse order.
2304 If there's a catch-all handler, then we don't need to
2305 search outer regions. Use a magic -3 value to record
2306 that we haven't done the outer search. */
2308 for (c
= region
->u
.eh_try
.last_catch
; c
; c
= c
->prev_catch
)
2310 if (c
->type_list
== NULL
)
2312 /* Retrieve the filter from the head of the filter list
2313 where we have stored it (see assign_filter_values). */
2314 int filter
= TREE_INT_CST_LOW (TREE_VALUE (c
->filter_list
));
2315 next
= add_action_record (ar_hash
, filter
, 0);
2319 /* Once the outer search is done, trigger an action record for
2320 each filter we have. */
2325 next
= collect_one_action_chain (ar_hash
, region
->outer
);
2327 /* If there is no next action, terminate the chain. */
2330 /* If all outer actions are cleanups or must_not_throw,
2331 we'll have no action record for it, since we had wanted
2332 to encode these states in the call-site record directly.
2333 Add a cleanup action to the chain to catch these. */
2335 next
= add_action_record (ar_hash
, 0, 0);
2338 flt_node
= c
->filter_list
;
2339 for (; flt_node
; flt_node
= TREE_CHAIN (flt_node
))
2341 int filter
= TREE_INT_CST_LOW (TREE_VALUE (flt_node
));
2342 next
= add_action_record (ar_hash
, filter
, next
);
2349 case ERT_ALLOWED_EXCEPTIONS
:
2350 /* An exception specification adds its filter to the
2351 beginning of the chain. */
2352 next
= collect_one_action_chain (ar_hash
, region
->outer
);
2354 /* If there is no next action, terminate the chain. */
2357 /* If all outer actions are cleanups or must_not_throw,
2358 we'll have no action record for it, since we had wanted
2359 to encode these states in the call-site record directly.
2360 Add a cleanup action to the chain to catch these. */
2362 next
= add_action_record (ar_hash
, 0, 0);
2364 return add_action_record (ar_hash
, region
->u
.allowed
.filter
, next
);
2366 case ERT_MUST_NOT_THROW
:
2367 /* A must-not-throw region with no inner handlers or cleanups
2368 requires no call-site entry. Note that this differs from
2369 the no handler or cleanup case in that we do require an lsda
2370 to be generated. Return a magic -2 value to record this. */
2378 add_call_site (rtx landing_pad
, int action
, int section
)
2380 call_site_record record
;
2382 record
= ggc_alloc_call_site_record_d ();
2383 record
->landing_pad
= landing_pad
;
2384 record
->action
= action
;
2386 VEC_safe_push (call_site_record
, gc
,
2387 crtl
->eh
.call_site_record_v
[section
], record
);
2389 return call_site_base
+ VEC_length (call_site_record
,
2390 crtl
->eh
.call_site_record_v
[section
]) - 1;
2393 /* Turn REG_EH_REGION notes back into NOTE_INSN_EH_REGION notes.
2394 The new note numbers will not refer to region numbers, but
2395 instead to call site entries. */
2398 convert_to_eh_region_ranges (void)
2400 rtx insn
, iter
, note
;
2402 int last_action
= -3;
2403 rtx last_action_insn
= NULL_RTX
;
2404 rtx last_landing_pad
= NULL_RTX
;
2405 rtx first_no_action_insn
= NULL_RTX
;
2408 rtx section_switch_note
= NULL_RTX
;
2409 rtx first_no_action_insn_before_switch
= NULL_RTX
;
2410 rtx last_no_action_insn_before_switch
= NULL_RTX
;
2411 int saved_call_site_base
= call_site_base
;
2413 crtl
->eh
.action_record_data
= VEC_alloc (uchar
, gc
, 64);
2415 ar_hash
= htab_create (31, action_record_hash
, action_record_eq
, free
);
2417 for (iter
= get_insns (); iter
; iter
= NEXT_INSN (iter
))
2424 rtx this_landing_pad
;
2427 if (NONJUMP_INSN_P (insn
)
2428 && GET_CODE (PATTERN (insn
)) == SEQUENCE
)
2429 insn
= XVECEXP (PATTERN (insn
), 0, 0);
2431 nothrow
= get_eh_region_and_lp_from_rtx (insn
, ®ion
, &lp
);
2435 this_action
= collect_one_action_chain (ar_hash
, region
);
2439 /* Existence of catch handlers, or must-not-throw regions
2440 implies that an lsda is needed (even if empty). */
2441 if (this_action
!= -1)
2442 crtl
->uses_eh_lsda
= 1;
2444 /* Delay creation of region notes for no-action regions
2445 until we're sure that an lsda will be required. */
2446 else if (last_action
== -3)
2448 first_no_action_insn
= iter
;
2452 if (this_action
>= 0)
2453 this_landing_pad
= lp
->landing_pad
;
2455 this_landing_pad
= NULL_RTX
;
2457 /* Differing actions or landing pads implies a change in call-site
2458 info, which implies some EH_REGION note should be emitted. */
2459 if (last_action
!= this_action
2460 || last_landing_pad
!= this_landing_pad
)
2462 /* If there is a queued no-action region in the other section
2463 with hot/cold partitioning, emit it now. */
2464 if (first_no_action_insn_before_switch
)
2466 gcc_assert (this_action
!= -1
2467 && last_action
== (first_no_action_insn
2469 call_site
= add_call_site (NULL_RTX
, 0, 0);
2470 note
= emit_note_before (NOTE_INSN_EH_REGION_BEG
,
2471 first_no_action_insn_before_switch
);
2472 NOTE_EH_HANDLER (note
) = call_site
;
2473 note
= emit_note_after (NOTE_INSN_EH_REGION_END
,
2474 last_no_action_insn_before_switch
);
2475 NOTE_EH_HANDLER (note
) = call_site
;
2476 gcc_assert (last_action
!= -3
2477 || (last_action_insn
2478 == last_no_action_insn_before_switch
));
2479 first_no_action_insn_before_switch
= NULL_RTX
;
2480 last_no_action_insn_before_switch
= NULL_RTX
;
2483 /* If we'd not seen a previous action (-3) or the previous
2484 action was must-not-throw (-2), then we do not need an
2486 if (last_action
>= -1)
2488 /* If we delayed the creation of the begin, do it now. */
2489 if (first_no_action_insn
)
2491 call_site
= add_call_site (NULL_RTX
, 0, cur_sec
);
2492 note
= emit_note_before (NOTE_INSN_EH_REGION_BEG
,
2493 first_no_action_insn
);
2494 NOTE_EH_HANDLER (note
) = call_site
;
2495 first_no_action_insn
= NULL_RTX
;
2498 note
= emit_note_after (NOTE_INSN_EH_REGION_END
,
2500 NOTE_EH_HANDLER (note
) = call_site
;
2503 /* If the new action is must-not-throw, then no region notes
2505 if (this_action
>= -1)
2507 call_site
= add_call_site (this_landing_pad
,
2508 this_action
< 0 ? 0 : this_action
,
2510 note
= emit_note_before (NOTE_INSN_EH_REGION_BEG
, iter
);
2511 NOTE_EH_HANDLER (note
) = call_site
;
2514 last_action
= this_action
;
2515 last_landing_pad
= this_landing_pad
;
2517 last_action_insn
= iter
;
2519 else if (NOTE_P (iter
)
2520 && NOTE_KIND (iter
) == NOTE_INSN_SWITCH_TEXT_SECTIONS
)
2522 gcc_assert (section_switch_note
== NULL_RTX
);
2523 gcc_assert (flag_reorder_blocks_and_partition
);
2524 section_switch_note
= iter
;
2525 if (first_no_action_insn
)
2527 first_no_action_insn_before_switch
= first_no_action_insn
;
2528 last_no_action_insn_before_switch
= last_action_insn
;
2529 first_no_action_insn
= NULL_RTX
;
2530 gcc_assert (last_action
== -1);
2533 /* Force closing of current EH region before section switch and
2534 opening a new one afterwards. */
2535 else if (last_action
!= -3)
2536 last_landing_pad
= pc_rtx
;
2537 call_site_base
+= VEC_length (call_site_record
,
2538 crtl
->eh
.call_site_record_v
[cur_sec
]);
2540 gcc_assert (crtl
->eh
.call_site_record_v
[cur_sec
] == NULL
);
2541 crtl
->eh
.call_site_record_v
[cur_sec
]
2542 = VEC_alloc (call_site_record
, gc
, 10);
2545 if (last_action
>= -1 && ! first_no_action_insn
)
2547 note
= emit_note_after (NOTE_INSN_EH_REGION_END
, last_action_insn
);
2548 NOTE_EH_HANDLER (note
) = call_site
;
2551 call_site_base
= saved_call_site_base
;
2553 htab_delete (ar_hash
);
2558 gate_convert_to_eh_region_ranges (void)
2560 /* Nothing to do for SJLJ exceptions or if no regions created. */
2561 if (cfun
->eh
->region_tree
== NULL
)
2563 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
2568 struct rtl_opt_pass pass_convert_to_eh_region_ranges
=
2572 "eh_ranges", /* name */
2573 OPTGROUP_NONE
, /* optinfo_flags */
2574 gate_convert_to_eh_region_ranges
, /* gate */
2575 convert_to_eh_region_ranges
, /* execute */
2578 0, /* static_pass_number */
2579 TV_NONE
, /* tv_id */
2580 0, /* properties_required */
2581 0, /* properties_provided */
2582 0, /* properties_destroyed */
2583 0, /* todo_flags_start */
2584 0 /* todo_flags_finish */
2589 push_uleb128 (VEC (uchar
, gc
) **data_area
, unsigned int value
)
2593 unsigned char byte
= value
& 0x7f;
2597 VEC_safe_push (uchar
, gc
, *data_area
, byte
);
2603 push_sleb128 (VEC (uchar
, gc
) **data_area
, int value
)
2610 byte
= value
& 0x7f;
2612 more
= ! ((value
== 0 && (byte
& 0x40) == 0)
2613 || (value
== -1 && (byte
& 0x40) != 0));
2616 VEC_safe_push (uchar
, gc
, *data_area
, byte
);
2622 #ifndef HAVE_AS_LEB128
2624 dw2_size_of_call_site_table (int section
)
2626 int n
= VEC_length (call_site_record
, crtl
->eh
.call_site_record_v
[section
]);
2627 int size
= n
* (4 + 4 + 4);
2630 for (i
= 0; i
< n
; ++i
)
2632 struct call_site_record_d
*cs
=
2633 VEC_index (call_site_record
, crtl
->eh
.call_site_record_v
[section
], i
);
2634 size
+= size_of_uleb128 (cs
->action
);
2641 sjlj_size_of_call_site_table (void)
2643 int n
= VEC_length (call_site_record
, crtl
->eh
.call_site_record_v
[0]);
2647 for (i
= 0; i
< n
; ++i
)
2649 struct call_site_record_d
*cs
=
2650 VEC_index (call_site_record
, crtl
->eh
.call_site_record_v
[0], i
);
2651 size
+= size_of_uleb128 (INTVAL (cs
->landing_pad
));
2652 size
+= size_of_uleb128 (cs
->action
);
2660 dw2_output_call_site_table (int cs_format
, int section
)
2662 int n
= VEC_length (call_site_record
, crtl
->eh
.call_site_record_v
[section
]);
2667 begin
= current_function_func_begin_label
;
2668 else if (first_function_block_is_cold
)
2669 begin
= crtl
->subsections
.hot_section_label
;
2671 begin
= crtl
->subsections
.cold_section_label
;
2673 for (i
= 0; i
< n
; ++i
)
2675 struct call_site_record_d
*cs
=
2676 VEC_index (call_site_record
, crtl
->eh
.call_site_record_v
[section
], i
);
2677 char reg_start_lab
[32];
2678 char reg_end_lab
[32];
2679 char landing_pad_lab
[32];
2681 ASM_GENERATE_INTERNAL_LABEL (reg_start_lab
, "LEHB", call_site_base
+ i
);
2682 ASM_GENERATE_INTERNAL_LABEL (reg_end_lab
, "LEHE", call_site_base
+ i
);
2684 if (cs
->landing_pad
)
2685 ASM_GENERATE_INTERNAL_LABEL (landing_pad_lab
, "L",
2686 CODE_LABEL_NUMBER (cs
->landing_pad
));
2688 /* ??? Perhaps use insn length scaling if the assembler supports
2689 generic arithmetic. */
2690 /* ??? Perhaps use attr_length to choose data1 or data2 instead of
2691 data4 if the function is small enough. */
2692 if (cs_format
== DW_EH_PE_uleb128
)
2694 dw2_asm_output_delta_uleb128 (reg_start_lab
, begin
,
2695 "region %d start", i
);
2696 dw2_asm_output_delta_uleb128 (reg_end_lab
, reg_start_lab
,
2698 if (cs
->landing_pad
)
2699 dw2_asm_output_delta_uleb128 (landing_pad_lab
, begin
,
2702 dw2_asm_output_data_uleb128 (0, "landing pad");
2706 dw2_asm_output_delta (4, reg_start_lab
, begin
,
2707 "region %d start", i
);
2708 dw2_asm_output_delta (4, reg_end_lab
, reg_start_lab
, "length");
2709 if (cs
->landing_pad
)
2710 dw2_asm_output_delta (4, landing_pad_lab
, begin
,
2713 dw2_asm_output_data (4, 0, "landing pad");
2715 dw2_asm_output_data_uleb128 (cs
->action
, "action");
2718 call_site_base
+= n
;
2722 sjlj_output_call_site_table (void)
2724 int n
= VEC_length (call_site_record
, crtl
->eh
.call_site_record_v
[0]);
2727 for (i
= 0; i
< n
; ++i
)
2729 struct call_site_record_d
*cs
=
2730 VEC_index (call_site_record
, crtl
->eh
.call_site_record_v
[0], i
);
2732 dw2_asm_output_data_uleb128 (INTVAL (cs
->landing_pad
),
2733 "region %d landing pad", i
);
2734 dw2_asm_output_data_uleb128 (cs
->action
, "action");
2737 call_site_base
+= n
;
2740 /* Switch to the section that should be used for exception tables. */
2743 switch_to_exception_section (const char * ARG_UNUSED (fnname
))
2747 if (exception_section
)
2748 s
= exception_section
;
2751 /* Compute the section and cache it into exception_section,
2752 unless it depends on the function name. */
2753 if (targetm_common
.have_named_sections
)
2757 if (EH_TABLES_CAN_BE_READ_ONLY
)
2760 ASM_PREFERRED_EH_DATA_FORMAT (/*code=*/0, /*global=*/1);
2761 flags
= ((! flag_pic
2762 || ((tt_format
& 0x70) != DW_EH_PE_absptr
2763 && (tt_format
& 0x70) != DW_EH_PE_aligned
))
2764 ? 0 : SECTION_WRITE
);
2767 flags
= SECTION_WRITE
;
2769 #ifdef HAVE_LD_EH_GC_SECTIONS
2770 if (flag_function_sections
2771 || (DECL_ONE_ONLY (current_function_decl
) && HAVE_COMDAT_GROUP
))
2773 char *section_name
= XNEWVEC (char, strlen (fnname
) + 32);
2774 /* The EH table must match the code section, so only mark
2775 it linkonce if we have COMDAT groups to tie them together. */
2776 if (DECL_ONE_ONLY (current_function_decl
) && HAVE_COMDAT_GROUP
)
2777 flags
|= SECTION_LINKONCE
;
2778 sprintf (section_name
, ".gcc_except_table.%s", fnname
);
2779 s
= get_section (section_name
, flags
, current_function_decl
);
2780 free (section_name
);
2785 = s
= get_section (".gcc_except_table", flags
, NULL
);
2789 = s
= flag_pic
? data_section
: readonly_data_section
;
2792 switch_to_section (s
);
2796 /* Output a reference from an exception table to the type_info object TYPE.
2797 TT_FORMAT and TT_FORMAT_SIZE describe the DWARF encoding method used for
2801 output_ttype (tree type
, int tt_format
, int tt_format_size
)
2804 bool is_public
= true;
2806 if (type
== NULL_TREE
)
2810 /* FIXME lto. pass_ipa_free_lang_data changes all types to
2811 runtime types so TYPE should already be a runtime type
2812 reference. When pass_ipa_free_lang data is made a default
2813 pass, we can then remove the call to lookup_type_for_runtime
2816 type
= lookup_type_for_runtime (type
);
2818 value
= expand_expr (type
, NULL_RTX
, VOIDmode
, EXPAND_INITIALIZER
);
2820 /* Let cgraph know that the rtti decl is used. Not all of the
2821 paths below go through assemble_integer, which would take
2822 care of this for us. */
2824 if (TREE_CODE (type
) == ADDR_EXPR
)
2826 type
= TREE_OPERAND (type
, 0);
2827 if (TREE_CODE (type
) == VAR_DECL
)
2828 is_public
= TREE_PUBLIC (type
);
2831 gcc_assert (TREE_CODE (type
) == INTEGER_CST
);
2834 /* Allow the target to override the type table entry format. */
2835 if (targetm
.asm_out
.ttype (value
))
2838 if (tt_format
== DW_EH_PE_absptr
|| tt_format
== DW_EH_PE_aligned
)
2839 assemble_integer (value
, tt_format_size
,
2840 tt_format_size
* BITS_PER_UNIT
, 1);
2842 dw2_asm_output_encoded_addr_rtx (tt_format
, value
, is_public
, NULL
);
2846 output_one_function_exception_table (int section
)
2848 int tt_format
, cs_format
, lp_format
, i
;
2849 #ifdef HAVE_AS_LEB128
2850 char ttype_label
[32];
2851 char cs_after_size_label
[32];
2852 char cs_end_label
[32];
2857 int tt_format_size
= 0;
2859 have_tt_data
= (VEC_length (tree
, cfun
->eh
->ttype_data
)
2860 || (targetm
.arm_eabi_unwinder
2861 ? VEC_length (tree
, cfun
->eh
->ehspec_data
.arm_eabi
)
2862 : VEC_length (uchar
, cfun
->eh
->ehspec_data
.other
)));
2864 /* Indicate the format of the @TType entries. */
2866 tt_format
= DW_EH_PE_omit
;
2869 tt_format
= ASM_PREFERRED_EH_DATA_FORMAT (/*code=*/0, /*global=*/1);
2870 #ifdef HAVE_AS_LEB128
2871 ASM_GENERATE_INTERNAL_LABEL (ttype_label
,
2872 section
? "LLSDATTC" : "LLSDATT",
2873 current_function_funcdef_no
);
2875 tt_format_size
= size_of_encoded_value (tt_format
);
2877 assemble_align (tt_format_size
* BITS_PER_UNIT
);
2880 targetm
.asm_out
.internal_label (asm_out_file
, section
? "LLSDAC" : "LLSDA",
2881 current_function_funcdef_no
);
2883 /* The LSDA header. */
2885 /* Indicate the format of the landing pad start pointer. An omitted
2886 field implies @LPStart == @Start. */
2887 /* Currently we always put @LPStart == @Start. This field would
2888 be most useful in moving the landing pads completely out of
2889 line to another section, but it could also be used to minimize
2890 the size of uleb128 landing pad offsets. */
2891 lp_format
= DW_EH_PE_omit
;
2892 dw2_asm_output_data (1, lp_format
, "@LPStart format (%s)",
2893 eh_data_format_name (lp_format
));
2895 /* @LPStart pointer would go here. */
2897 dw2_asm_output_data (1, tt_format
, "@TType format (%s)",
2898 eh_data_format_name (tt_format
));
2900 #ifndef HAVE_AS_LEB128
2901 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
2902 call_site_len
= sjlj_size_of_call_site_table ();
2904 call_site_len
= dw2_size_of_call_site_table (section
);
2907 /* A pc-relative 4-byte displacement to the @TType data. */
2910 #ifdef HAVE_AS_LEB128
2911 char ttype_after_disp_label
[32];
2912 ASM_GENERATE_INTERNAL_LABEL (ttype_after_disp_label
,
2913 section
? "LLSDATTDC" : "LLSDATTD",
2914 current_function_funcdef_no
);
2915 dw2_asm_output_delta_uleb128 (ttype_label
, ttype_after_disp_label
,
2916 "@TType base offset");
2917 ASM_OUTPUT_LABEL (asm_out_file
, ttype_after_disp_label
);
2919 /* Ug. Alignment queers things. */
2920 unsigned int before_disp
, after_disp
, last_disp
, disp
;
2922 before_disp
= 1 + 1;
2923 after_disp
= (1 + size_of_uleb128 (call_site_len
)
2925 + VEC_length (uchar
, crtl
->eh
.action_record_data
)
2926 + (VEC_length (tree
, cfun
->eh
->ttype_data
)
2932 unsigned int disp_size
, pad
;
2935 disp_size
= size_of_uleb128 (disp
);
2936 pad
= before_disp
+ disp_size
+ after_disp
;
2937 if (pad
% tt_format_size
)
2938 pad
= tt_format_size
- (pad
% tt_format_size
);
2941 disp
= after_disp
+ pad
;
2943 while (disp
!= last_disp
);
2945 dw2_asm_output_data_uleb128 (disp
, "@TType base offset");
2949 /* Indicate the format of the call-site offsets. */
2950 #ifdef HAVE_AS_LEB128
2951 cs_format
= DW_EH_PE_uleb128
;
2953 cs_format
= DW_EH_PE_udata4
;
2955 dw2_asm_output_data (1, cs_format
, "call-site format (%s)",
2956 eh_data_format_name (cs_format
));
2958 #ifdef HAVE_AS_LEB128
2959 ASM_GENERATE_INTERNAL_LABEL (cs_after_size_label
,
2960 section
? "LLSDACSBC" : "LLSDACSB",
2961 current_function_funcdef_no
);
2962 ASM_GENERATE_INTERNAL_LABEL (cs_end_label
,
2963 section
? "LLSDACSEC" : "LLSDACSE",
2964 current_function_funcdef_no
);
2965 dw2_asm_output_delta_uleb128 (cs_end_label
, cs_after_size_label
,
2966 "Call-site table length");
2967 ASM_OUTPUT_LABEL (asm_out_file
, cs_after_size_label
);
2968 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
2969 sjlj_output_call_site_table ();
2971 dw2_output_call_site_table (cs_format
, section
);
2972 ASM_OUTPUT_LABEL (asm_out_file
, cs_end_label
);
2974 dw2_asm_output_data_uleb128 (call_site_len
, "Call-site table length");
2975 if (targetm_common
.except_unwind_info (&global_options
) == UI_SJLJ
)
2976 sjlj_output_call_site_table ();
2978 dw2_output_call_site_table (cs_format
, section
);
2981 /* ??? Decode and interpret the data for flag_debug_asm. */
2984 FOR_EACH_VEC_ELT (uchar
, crtl
->eh
.action_record_data
, i
, uc
)
2985 dw2_asm_output_data (1, uc
, i
? NULL
: "Action record table");
2989 assemble_align (tt_format_size
* BITS_PER_UNIT
);
2991 i
= VEC_length (tree
, cfun
->eh
->ttype_data
);
2994 tree type
= VEC_index (tree
, cfun
->eh
->ttype_data
, i
);
2995 output_ttype (type
, tt_format
, tt_format_size
);
2998 #ifdef HAVE_AS_LEB128
3000 ASM_OUTPUT_LABEL (asm_out_file
, ttype_label
);
3003 /* ??? Decode and interpret the data for flag_debug_asm. */
3004 if (targetm
.arm_eabi_unwinder
)
3008 VEC_iterate (tree
, cfun
->eh
->ehspec_data
.arm_eabi
, i
, type
); ++i
)
3009 output_ttype (type
, tt_format
, tt_format_size
);
3015 VEC_iterate (uchar
, cfun
->eh
->ehspec_data
.other
, i
, uc
); ++i
)
3016 dw2_asm_output_data (1, uc
,
3017 i
? NULL
: "Exception specification table");
3022 output_function_exception_table (const char *fnname
)
3024 rtx personality
= get_personality_function (current_function_decl
);
3026 /* Not all functions need anything. */
3027 if (! crtl
->uses_eh_lsda
)
3032 assemble_external_libcall (personality
);
3034 if (targetm
.asm_out
.emit_except_personality
)
3035 targetm
.asm_out
.emit_except_personality (personality
);
3038 switch_to_exception_section (fnname
);
3040 /* If the target wants a label to begin the table, emit it here. */
3041 targetm
.asm_out
.emit_except_table_label (asm_out_file
);
3043 output_one_function_exception_table (0);
3044 if (crtl
->eh
.call_site_record_v
[1] != NULL
)
3045 output_one_function_exception_table (1);
3047 switch_to_section (current_function_section ());
3051 set_eh_throw_stmt_table (struct function
*fun
, struct htab
*table
)
3053 fun
->eh
->throw_stmt_table
= table
;
3057 get_eh_throw_stmt_table (struct function
*fun
)
3059 return fun
->eh
->throw_stmt_table
;
3062 /* Determine if the function needs an EH personality function. */
3064 enum eh_personality_kind
3065 function_needs_eh_personality (struct function
*fn
)
3067 enum eh_personality_kind kind
= eh_personality_none
;
3070 FOR_ALL_EH_REGION_FN (i
, fn
)
3075 /* Can do with any personality including the generic C one. */
3076 kind
= eh_personality_any
;
3080 case ERT_ALLOWED_EXCEPTIONS
:
3081 /* Always needs a EH personality function. The generic C
3082 personality doesn't handle these even for empty type lists. */
3083 return eh_personality_lang
;
3085 case ERT_MUST_NOT_THROW
:
3086 /* Always needs a EH personality function. The language may specify
3087 what abort routine that must be used, e.g. std::terminate. */
3088 return eh_personality_lang
;
3095 /* Dump EH information to OUT. */
3098 dump_eh_tree (FILE * out
, struct function
*fun
)
3102 static const char *const type_name
[] = {
3103 "cleanup", "try", "allowed_exceptions", "must_not_throw"
3106 i
= fun
->eh
->region_tree
;
3110 fprintf (out
, "Eh tree:\n");
3113 fprintf (out
, " %*s %i %s", depth
* 2, "",
3114 i
->index
, type_name
[(int) i
->type
]);
3116 if (i
->landing_pads
)
3120 fprintf (out
, " land:");
3121 if (current_ir_type () == IR_GIMPLE
)
3123 for (lp
= i
->landing_pads
; lp
; lp
= lp
->next_lp
)
3125 fprintf (out
, "{%i,", lp
->index
);
3126 print_generic_expr (out
, lp
->post_landing_pad
, 0);
3134 for (lp
= i
->landing_pads
; lp
; lp
= lp
->next_lp
)
3136 fprintf (out
, "{%i,", lp
->index
);
3137 if (lp
->landing_pad
)
3138 fprintf (out
, "%i%s,", INSN_UID (lp
->landing_pad
),
3139 NOTE_P (lp
->landing_pad
) ? "(del)" : "");
3141 fprintf (out
, "(nil),");
3142 if (lp
->post_landing_pad
)
3144 rtx lab
= label_rtx (lp
->post_landing_pad
);
3145 fprintf (out
, "%i%s}", INSN_UID (lab
),
3146 NOTE_P (lab
) ? "(del)" : "");
3149 fprintf (out
, "(nil)}");
3159 case ERT_MUST_NOT_THROW
:
3165 fprintf (out
, " catch:");
3166 for (c
= i
->u
.eh_try
.first_catch
; c
; c
= c
->next_catch
)
3171 fprintf (out
, "lab:");
3172 print_generic_expr (out
, c
->label
, 0);
3175 print_generic_expr (out
, c
->type_list
, 0);
3183 case ERT_ALLOWED_EXCEPTIONS
:
3184 fprintf (out
, " filter :%i types:", i
->u
.allowed
.filter
);
3185 print_generic_expr (out
, i
->u
.allowed
.type_list
, 0);
3190 /* If there are sub-regions, process them. */
3192 i
= i
->inner
, depth
++;
3193 /* If there are peers, process them. */
3194 else if (i
->next_peer
)
3196 /* Otherwise, step back up the tree to the next peer. */
3206 while (i
->next_peer
== NULL
);
3212 /* Dump the EH tree for FN on stderr. */
3215 debug_eh_tree (struct function
*fn
)
3217 dump_eh_tree (stderr
, fn
);
3220 /* Verify invariants on EH datastructures. */
3223 verify_eh_tree (struct function
*fun
)
3226 int nvisited_lp
, nvisited_r
;
3227 int count_lp
, count_r
, depth
, i
;
3231 if (!fun
->eh
->region_tree
)
3235 for (i
= 1; VEC_iterate (eh_region
, fun
->eh
->region_array
, i
, r
); ++i
)
3242 error ("region_array is corrupted for region %i", r
->index
);
3248 for (i
= 1; VEC_iterate (eh_landing_pad
, fun
->eh
->lp_array
, i
, lp
); ++i
)
3255 error ("lp_array is corrupted for lp %i", lp
->index
);
3260 depth
= nvisited_lp
= nvisited_r
= 0;
3262 r
= fun
->eh
->region_tree
;
3265 if (VEC_index (eh_region
, fun
->eh
->region_array
, r
->index
) != r
)
3267 error ("region_array is corrupted for region %i", r
->index
);
3270 if (r
->outer
!= outer
)
3272 error ("outer block of region %i is wrong", r
->index
);
3277 error ("negative nesting depth of region %i", r
->index
);
3282 for (lp
= r
->landing_pads
; lp
; lp
= lp
->next_lp
)
3284 if (VEC_index (eh_landing_pad
, fun
->eh
->lp_array
, lp
->index
) != lp
)
3286 error ("lp_array is corrupted for lp %i", lp
->index
);
3289 if (lp
->region
!= r
)
3291 error ("region of lp %i is wrong", lp
->index
);
3298 outer
= r
, r
= r
->inner
, depth
++;
3299 else if (r
->next_peer
)
3311 while (r
->next_peer
== NULL
);
3318 error ("tree list ends on depth %i", depth
);
3321 if (count_r
!= nvisited_r
)
3323 error ("region_array does not match region_tree");
3326 if (count_lp
!= nvisited_lp
)
3328 error ("lp_array does not match region_tree");
3334 dump_eh_tree (stderr
, fun
);
3335 internal_error ("verify_eh_tree failed");
3339 #include "gt-except.h"