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00024 #include "config.h"
00025 #include "system.h"
00026 #include "coretypes.h"
00027 #include "tm.h"
00028 #include "tree.h"
00029 #include "rtl.h"
00030 #include "tm_p.h"
00031 #include "basic-block.h"
00032 #include "function.h"
00033 #include "expr.h"
00034 #include "langhooks.h"
00035 #include "tree-flow.h"
00036 #include "timevar.h"
00037 #include "tree-dump.h"
00038 #include "tree-pass.h"
00039 #include "except.h"
00040 #include "flags.h"
00041 #include "diagnostic.h"
00042 #include "toplev.h"
00043 #include "debug.h"
00044 #include "params.h"
00045
00046
00047
00048
00049
00050
00051 static void
00052 add_reg_br_prob_note (rtx last, int probability)
00053 {
00054 if (profile_status == PROFILE_ABSENT)
00055 return;
00056 for (last = NEXT_INSN (last); last && NEXT_INSN (last); last = NEXT_INSN (last))
00057 if (JUMP_P (last))
00058 {
00059
00060
00061 if (!any_condjump_p (last)
00062 || !JUMP_P (NEXT_INSN (last))
00063 || !simplejump_p (NEXT_INSN (last))
00064 || !NEXT_INSN (NEXT_INSN (last))
00065 || !BARRIER_P (NEXT_INSN (NEXT_INSN (last)))
00066 || !NEXT_INSN (NEXT_INSN (NEXT_INSN (last)))
00067 || !LABEL_P (NEXT_INSN (NEXT_INSN (NEXT_INSN (last))))
00068 || NEXT_INSN (NEXT_INSN (NEXT_INSN (NEXT_INSN (last)))))
00069 goto failed;
00070 gcc_assert (!find_reg_note (last, REG_BR_PROB, 0));
00071 REG_NOTES (last)
00072 = gen_rtx_EXPR_LIST (REG_BR_PROB,
00073 GEN_INT (REG_BR_PROB_BASE - probability),
00074 REG_NOTES (last));
00075 return;
00076 }
00077 if (!last || !JUMP_P (last) || !any_condjump_p (last))
00078 goto failed;
00079 gcc_assert (!find_reg_note (last, REG_BR_PROB, 0));
00080 REG_NOTES (last)
00081 = gen_rtx_EXPR_LIST (REG_BR_PROB,
00082 GEN_INT (probability), REG_NOTES (last));
00083 return;
00084 failed:
00085 if (dump_file)
00086 fprintf (dump_file, "Failed to add probability note\n");
00087 }
00088
00089
00090 #ifndef LOCAL_ALIGNMENT
00091 #define LOCAL_ALIGNMENT(TYPE, ALIGNMENT) ALIGNMENT
00092 #endif
00093
00094 #ifndef STACK_ALIGNMENT_NEEDED
00095 #define STACK_ALIGNMENT_NEEDED 1
00096 #endif
00097
00098
00099
00100
00101 struct stack_var
00102 {
00103
00104 tree decl;
00105
00106
00107
00108
00109 HOST_WIDE_INT offset;
00110
00111
00112
00113 HOST_WIDE_INT size;
00114
00115
00116
00117 unsigned int alignb;
00118
00119
00120 size_t representative;
00121
00122
00123 size_t next;
00124 };
00125
00126 #define EOC ((size_t)-1)
00127
00128
00129 static struct stack_var *stack_vars;
00130 static size_t stack_vars_alloc;
00131 static size_t stack_vars_num;
00132
00133
00134
00135 static size_t *stack_vars_sorted;
00136
00137
00138
00139 static bool *stack_vars_conflict;
00140 static size_t stack_vars_conflict_alloc;
00141
00142
00143
00144
00145 static int frame_phase;
00146
00147
00148
00149 static bool has_protected_decls;
00150
00151
00152
00153 static bool has_short_buffer;
00154
00155
00156
00157
00158 static unsigned int
00159 get_decl_align_unit (tree decl)
00160 {
00161 unsigned int align;
00162
00163 align = DECL_ALIGN (decl);
00164 align = LOCAL_ALIGNMENT (TREE_TYPE (decl), align);
00165 if (align > PREFERRED_STACK_BOUNDARY)
00166 align = PREFERRED_STACK_BOUNDARY;
00167 if (cfun->stack_alignment_needed < align)
00168 cfun->stack_alignment_needed = align;
00169
00170 return align / BITS_PER_UNIT;
00171 }
00172
00173
00174
00175
00176 static HOST_WIDE_INT
00177 alloc_stack_frame_space (HOST_WIDE_INT size, HOST_WIDE_INT align)
00178 {
00179 HOST_WIDE_INT offset, new_frame_offset;
00180
00181 new_frame_offset = frame_offset;
00182 if (FRAME_GROWS_DOWNWARD)
00183 {
00184 new_frame_offset -= size + frame_phase;
00185 new_frame_offset &= -align;
00186 new_frame_offset += frame_phase;
00187 offset = new_frame_offset;
00188 }
00189 else
00190 {
00191 new_frame_offset -= frame_phase;
00192 new_frame_offset += align - 1;
00193 new_frame_offset &= -align;
00194 new_frame_offset += frame_phase;
00195 offset = new_frame_offset;
00196 new_frame_offset += size;
00197 }
00198 frame_offset = new_frame_offset;
00199
00200 if (frame_offset_overflow (frame_offset, cfun->decl))
00201 frame_offset = offset = 0;
00202
00203 return offset;
00204 }
00205
00206
00207
00208 static void
00209 add_stack_var (tree decl)
00210 {
00211 if (stack_vars_num >= stack_vars_alloc)
00212 {
00213 if (stack_vars_alloc)
00214 stack_vars_alloc = stack_vars_alloc * 3 / 2;
00215 else
00216 stack_vars_alloc = 32;
00217 stack_vars
00218 = XRESIZEVEC (struct stack_var, stack_vars, stack_vars_alloc);
00219 }
00220 stack_vars[stack_vars_num].decl = decl;
00221 stack_vars[stack_vars_num].offset = 0;
00222 stack_vars[stack_vars_num].size = tree_low_cst (DECL_SIZE_UNIT (decl), 1);
00223 stack_vars[stack_vars_num].alignb = get_decl_align_unit (decl);
00224
00225
00226 stack_vars[stack_vars_num].representative = stack_vars_num;
00227 stack_vars[stack_vars_num].next = EOC;
00228
00229
00230 SET_DECL_RTL (decl, pc_rtx);
00231
00232 stack_vars_num++;
00233 }
00234
00235
00236
00237 static size_t
00238 triangular_index (size_t i, size_t j)
00239 {
00240 if (i < j)
00241 {
00242 size_t t;
00243 t = i, i = j, j = t;
00244 }
00245 return (i * (i + 1)) / 2 + j;
00246 }
00247
00248
00249
00250 static void
00251 resize_stack_vars_conflict (size_t n)
00252 {
00253 size_t size = triangular_index (n-1, n-1) + 1;
00254
00255 if (size <= stack_vars_conflict_alloc)
00256 return;
00257
00258 stack_vars_conflict = XRESIZEVEC (bool, stack_vars_conflict, size);
00259 memset (stack_vars_conflict + stack_vars_conflict_alloc, 0,
00260 (size - stack_vars_conflict_alloc) * sizeof (bool));
00261 stack_vars_conflict_alloc = size;
00262 }
00263
00264
00265
00266 static void
00267 add_stack_var_conflict (size_t x, size_t y)
00268 {
00269 size_t index = triangular_index (x, y);
00270 gcc_assert (index < stack_vars_conflict_alloc);
00271 stack_vars_conflict[index] = true;
00272 }
00273
00274
00275
00276 static bool
00277 stack_var_conflict_p (size_t x, size_t y)
00278 {
00279 size_t index = triangular_index (x, y);
00280 gcc_assert (index < stack_vars_conflict_alloc);
00281 return stack_vars_conflict[index];
00282 }
00283
00284
00285
00286 static bool
00287 aggregate_contains_union_type (tree type)
00288 {
00289 tree field;
00290
00291 if (TREE_CODE (type) == UNION_TYPE
00292 || TREE_CODE (type) == QUAL_UNION_TYPE)
00293 return true;
00294 if (TREE_CODE (type) == ARRAY_TYPE)
00295 return aggregate_contains_union_type (TREE_TYPE (type));
00296 if (TREE_CODE (type) != RECORD_TYPE)
00297 return false;
00298
00299 for (field = TYPE_FIELDS (type); field; field = TREE_CHAIN (field))
00300 if (TREE_CODE (field) == FIELD_DECL)
00301 if (aggregate_contains_union_type (TREE_TYPE (field)))
00302 return true;
00303
00304 return false;
00305 }
00306
00307
00308
00309
00310
00311
00312
00313
00314
00315
00316
00317 static void
00318 add_alias_set_conflicts (void)
00319 {
00320 size_t i, j, n = stack_vars_num;
00321
00322 for (i = 0; i < n; ++i)
00323 {
00324 tree type_i = TREE_TYPE (stack_vars[i].decl);
00325 bool aggr_i = AGGREGATE_TYPE_P (type_i);
00326 bool contains_union;
00327
00328 contains_union = aggregate_contains_union_type (type_i);
00329 for (j = 0; j < i; ++j)
00330 {
00331 tree type_j = TREE_TYPE (stack_vars[j].decl);
00332 bool aggr_j = AGGREGATE_TYPE_P (type_j);
00333 if (aggr_i != aggr_j
00334
00335
00336 || !objects_must_conflict_p (type_i, type_j)
00337
00338
00339
00340
00341
00342 || contains_union)
00343 add_stack_var_conflict (i, j);
00344 }
00345 }
00346 }
00347
00348
00349
00350
00351 static int
00352 stack_var_size_cmp (const void *a, const void *b)
00353 {
00354 HOST_WIDE_INT sa = stack_vars[*(const size_t *)a].size;
00355 HOST_WIDE_INT sb = stack_vars[*(const size_t *)b].size;
00356 unsigned int uida = DECL_UID (stack_vars[*(const size_t *)a].decl);
00357 unsigned int uidb = DECL_UID (stack_vars[*(const size_t *)b].decl);
00358
00359 if (sa < sb)
00360 return -1;
00361 if (sa > sb)
00362 return 1;
00363
00364
00365 if (uida < uidb)
00366 return -1;
00367 if (uida > uidb)
00368 return 1;
00369 return 0;
00370 }
00371
00372
00373
00374
00375
00376
00377
00378
00379
00380 static void
00381 union_stack_vars (size_t a, size_t b, HOST_WIDE_INT offset)
00382 {
00383 size_t i, last;
00384
00385
00386
00387 for (last = i = b; i != EOC; last = i, i = stack_vars[i].next)
00388 {
00389 stack_vars[i].offset += offset;
00390 stack_vars[i].representative = a;
00391 }
00392 stack_vars[last].next = stack_vars[a].next;
00393 stack_vars[a].next = b;
00394
00395
00396 if (stack_vars[a].alignb < stack_vars[b].alignb)
00397 stack_vars[a].alignb = stack_vars[b].alignb;
00398
00399
00400 for (last = stack_vars_num, i = 0; i < last; ++i)
00401 if (stack_var_conflict_p (b, i))
00402 add_stack_var_conflict (a, i);
00403 }
00404
00405
00406
00407
00408
00409
00410
00411
00412
00413
00414
00415
00416
00417
00418
00419
00420
00421
00422
00423 static void
00424 partition_stack_vars (void)
00425 {
00426 size_t si, sj, n = stack_vars_num;
00427
00428 stack_vars_sorted = XNEWVEC (size_t, stack_vars_num);
00429 for (si = 0; si < n; ++si)
00430 stack_vars_sorted[si] = si;
00431
00432 if (n == 1)
00433 return;
00434
00435 qsort (stack_vars_sorted, n, sizeof (size_t), stack_var_size_cmp);
00436
00437
00438
00439
00440
00441
00442 gcc_assert (sizeof(bool) == sizeof(char));
00443 if (memchr (stack_vars_conflict, false, stack_vars_conflict_alloc) == NULL)
00444 return;
00445
00446 for (si = 0; si < n; ++si)
00447 {
00448 size_t i = stack_vars_sorted[si];
00449 HOST_WIDE_INT isize = stack_vars[i].size;
00450 HOST_WIDE_INT offset = 0;
00451
00452 for (sj = si; sj-- > 0; )
00453 {
00454 size_t j = stack_vars_sorted[sj];
00455 HOST_WIDE_INT jsize = stack_vars[j].size;
00456 unsigned int jalign = stack_vars[j].alignb;
00457
00458
00459 if (stack_vars[j].representative != j)
00460 continue;
00461
00462
00463 if (isize < jsize)
00464 continue;
00465
00466
00467 if (stack_var_conflict_p (i, j))
00468 continue;
00469
00470
00471 if (offset & (jalign - 1))
00472 {
00473 HOST_WIDE_INT toff = offset;
00474 toff += jalign - 1;
00475 toff &= -(HOST_WIDE_INT)jalign;
00476 if (isize - (toff - offset) < jsize)
00477 continue;
00478
00479 isize -= toff - offset;
00480 offset = toff;
00481 }
00482
00483
00484 union_stack_vars (i, j, offset);
00485
00486 isize -= jsize;
00487 if (isize == 0)
00488 break;
00489 }
00490 }
00491 }
00492
00493
00494
00495 static void
00496 dump_stack_var_partition (void)
00497 {
00498 size_t si, i, j, n = stack_vars_num;
00499
00500 for (si = 0; si < n; ++si)
00501 {
00502 i = stack_vars_sorted[si];
00503
00504
00505 if (stack_vars[i].representative != i)
00506 continue;
00507
00508 fprintf (dump_file, "Partition %lu: size " HOST_WIDE_INT_PRINT_DEC
00509 " align %u\n", (unsigned long) i, stack_vars[i].size,
00510 stack_vars[i].alignb);
00511
00512 for (j = i; j != EOC; j = stack_vars[j].next)
00513 {
00514 fputc ('\t', dump_file);
00515 print_generic_expr (dump_file, stack_vars[j].decl, dump_flags);
00516 fprintf (dump_file, ", offset " HOST_WIDE_INT_PRINT_DEC "\n",
00517 stack_vars[i].offset);
00518 }
00519 }
00520 }
00521
00522
00523
00524 static void
00525 expand_one_stack_var_at (tree decl, HOST_WIDE_INT offset)
00526 {
00527 HOST_WIDE_INT align;
00528 rtx x;
00529
00530
00531 gcc_assert (offset == trunc_int_for_mode (offset, Pmode));
00532
00533 x = plus_constant (virtual_stack_vars_rtx, offset);
00534 x = gen_rtx_MEM (DECL_MODE (decl), x);
00535
00536
00537 offset -= frame_phase;
00538 align = offset & -offset;
00539 align *= BITS_PER_UNIT;
00540 if (align > STACK_BOUNDARY || align == 0)
00541 align = STACK_BOUNDARY;
00542 DECL_ALIGN (decl) = align;
00543 DECL_USER_ALIGN (decl) = 0;
00544
00545 set_mem_attributes (x, decl, true);
00546 SET_DECL_RTL (decl, x);
00547 }
00548
00549
00550
00551
00552
00553 static void
00554 expand_stack_vars (bool (*pred) (tree))
00555 {
00556 size_t si, i, j, n = stack_vars_num;
00557
00558 for (si = 0; si < n; ++si)
00559 {
00560 HOST_WIDE_INT offset;
00561
00562 i = stack_vars_sorted[si];
00563
00564
00565 if (stack_vars[i].representative != i)
00566 continue;
00567
00568
00569
00570 if (DECL_RTL (stack_vars[i].decl) != pc_rtx)
00571 continue;
00572
00573
00574
00575 if (pred && !pred (stack_vars[i].decl))
00576 continue;
00577
00578 offset = alloc_stack_frame_space (stack_vars[i].size,
00579 stack_vars[i].alignb);
00580
00581
00582
00583 for (j = i; j != EOC; j = stack_vars[j].next)
00584 expand_one_stack_var_at (stack_vars[j].decl,
00585 stack_vars[j].offset + offset);
00586 }
00587 }
00588
00589
00590
00591
00592 static void
00593 expand_one_stack_var (tree var)
00594 {
00595 HOST_WIDE_INT size, offset, align;
00596
00597 size = tree_low_cst (DECL_SIZE_UNIT (var), 1);
00598 align = get_decl_align_unit (var);
00599 offset = alloc_stack_frame_space (size, align);
00600
00601 expand_one_stack_var_at (var, offset);
00602 }
00603
00604
00605
00606
00607 static void
00608 expand_one_static_var (tree var)
00609 {
00610
00611
00612 if (flag_unit_at_a_time)
00613 return;
00614
00615
00616 var = DECL_ORIGIN (var);
00617
00618
00619 if (TREE_ASM_WRITTEN (var))
00620 return;
00621
00622
00623
00624 if (lang_hooks.expand_decl (var))
00625 return;
00626
00627
00628 rest_of_decl_compilation (var, 0, 0);
00629 }
00630
00631
00632
00633
00634 static void
00635 expand_one_hard_reg_var (tree var)
00636 {
00637 rest_of_decl_compilation (var, 0, 0);
00638 }
00639
00640
00641
00642
00643 static void
00644 expand_one_register_var (tree var)
00645 {
00646 tree type = TREE_TYPE (var);
00647 int unsignedp = TYPE_UNSIGNED (type);
00648 enum machine_mode reg_mode
00649 = promote_mode (type, DECL_MODE (var), &unsignedp, 0);
00650 rtx x = gen_reg_rtx (reg_mode);
00651
00652 SET_DECL_RTL (var, x);
00653
00654
00655 if (!DECL_ARTIFICIAL (var))
00656 {
00657 mark_user_reg (x);
00658
00659
00660
00661
00662
00663
00664
00665 if (POINTER_TYPE_P (type))
00666 mark_reg_pointer (x, TYPE_ALIGN (TREE_TYPE (TREE_TYPE (var))));
00667 }
00668 }
00669
00670
00671
00672
00673
00674 static void
00675 expand_one_error_var (tree var)
00676 {
00677 enum machine_mode mode = DECL_MODE (var);
00678 rtx x;
00679
00680 if (mode == BLKmode)
00681 x = gen_rtx_MEM (BLKmode, const0_rtx);
00682 else if (mode == VOIDmode)
00683 x = const0_rtx;
00684 else
00685 x = gen_reg_rtx (mode);
00686
00687 SET_DECL_RTL (var, x);
00688 }
00689
00690
00691
00692
00693
00694
00695
00696
00697
00698 static bool
00699 defer_stack_allocation (tree var, bool toplevel)
00700 {
00701
00702
00703 if (flag_stack_protect)
00704 return true;
00705
00706
00707
00708
00709
00710 if (toplevel && optimize < 2)
00711 return false;
00712
00713
00714
00715
00716
00717
00718
00719 if (optimize == 0 && tree_low_cst (DECL_SIZE_UNIT (var), 1) < 32)
00720 return false;
00721
00722 return true;
00723 }
00724
00725
00726
00727
00728
00729 static void
00730 expand_one_var (tree var, bool toplevel)
00731 {
00732 if (TREE_CODE (var) != VAR_DECL)
00733 lang_hooks.expand_decl (var);
00734 else if (DECL_EXTERNAL (var))
00735 ;
00736 else if (DECL_HAS_VALUE_EXPR_P (var))
00737 ;
00738 else if (TREE_STATIC (var))
00739 expand_one_static_var (var);
00740 else if (DECL_RTL_SET_P (var))
00741 ;
00742 else if (TREE_TYPE (var) == error_mark_node)
00743 expand_one_error_var (var);
00744 else if (DECL_HARD_REGISTER (var))
00745 expand_one_hard_reg_var (var);
00746 else if (use_register_for_decl (var))
00747 expand_one_register_var (var);
00748 else if (defer_stack_allocation (var, toplevel))
00749 add_stack_var (var);
00750 else
00751 expand_one_stack_var (var);
00752 }
00753
00754
00755
00756
00757
00758
00759
00760 static void
00761 expand_used_vars_for_block (tree block, bool toplevel)
00762 {
00763 size_t i, j, old_sv_num, this_sv_num, new_sv_num;
00764 tree t;
00765
00766 old_sv_num = toplevel ? 0 : stack_vars_num;
00767
00768
00769 for (t = BLOCK_VARS (block); t ; t = TREE_CHAIN (t))
00770 if (TREE_USED (t)
00771
00772
00773
00774 || (!flag_unit_at_a_time && TREE_STATIC (t)
00775 && DECL_PRESERVE_P (t)))
00776 expand_one_var (t, toplevel);
00777
00778 this_sv_num = stack_vars_num;
00779
00780
00781 for (t = BLOCK_SUBBLOCKS (block); t ; t = BLOCK_CHAIN (t))
00782 expand_used_vars_for_block (t, false);
00783
00784
00785
00786
00787
00788
00789 if (old_sv_num < this_sv_num)
00790 {
00791 new_sv_num = stack_vars_num;
00792 resize_stack_vars_conflict (new_sv_num);
00793
00794 for (i = old_sv_num; i < new_sv_num; ++i)
00795 for (j = i < this_sv_num ? i+1 : this_sv_num; j-- > old_sv_num ;)
00796 add_stack_var_conflict (i, j);
00797 }
00798 }
00799
00800
00801
00802
00803 static void
00804 clear_tree_used (tree block)
00805 {
00806 tree t;
00807
00808 for (t = BLOCK_VARS (block); t ; t = TREE_CHAIN (t))
00809
00810 TREE_USED (t) = 0;
00811
00812 for (t = BLOCK_SUBBLOCKS (block); t ; t = BLOCK_CHAIN (t))
00813 clear_tree_used (t);
00814 }
00815
00816
00817
00818 #define SPCT_HAS_LARGE_CHAR_ARRAY 1
00819 #define SPCT_HAS_SMALL_CHAR_ARRAY 2
00820 #define SPCT_HAS_ARRAY 4
00821 #define SPCT_HAS_AGGREGATE 8
00822
00823 static unsigned int
00824 stack_protect_classify_type (tree type)
00825 {
00826 unsigned int ret = 0;
00827 tree t;
00828
00829 switch (TREE_CODE (type))
00830 {
00831 case ARRAY_TYPE:
00832 t = TYPE_MAIN_VARIANT (TREE_TYPE (type));
00833 if (t == char_type_node
00834 || t == signed_char_type_node
00835 || t == unsigned_char_type_node)
00836 {
00837 unsigned HOST_WIDE_INT max = PARAM_VALUE (PARAM_SSP_BUFFER_SIZE);
00838 unsigned HOST_WIDE_INT len;
00839
00840 if (!TYPE_SIZE_UNIT (type)
00841 || !host_integerp (TYPE_SIZE_UNIT (type), 1))
00842 len = max;
00843 else
00844 len = tree_low_cst (TYPE_SIZE_UNIT (type), 1);
00845
00846 if (len < max)
00847 ret = SPCT_HAS_SMALL_CHAR_ARRAY | SPCT_HAS_ARRAY;
00848 else
00849 ret = SPCT_HAS_LARGE_CHAR_ARRAY | SPCT_HAS_ARRAY;
00850 }
00851 else
00852 ret = SPCT_HAS_ARRAY;
00853 break;
00854
00855 case UNION_TYPE:
00856 case QUAL_UNION_TYPE:
00857 case RECORD_TYPE:
00858 ret = SPCT_HAS_AGGREGATE;
00859 for (t = TYPE_FIELDS (type); t ; t = TREE_CHAIN (t))
00860 if (TREE_CODE (t) == FIELD_DECL)
00861 ret |= stack_protect_classify_type (TREE_TYPE (t));
00862 break;
00863
00864 default:
00865 break;
00866 }
00867
00868 return ret;
00869 }
00870
00871
00872
00873
00874
00875
00876 static int
00877 stack_protect_decl_phase (tree decl)
00878 {
00879 unsigned int bits = stack_protect_classify_type (TREE_TYPE (decl));
00880 int ret = 0;
00881
00882 if (bits & SPCT_HAS_SMALL_CHAR_ARRAY)
00883 has_short_buffer = true;
00884
00885 if (flag_stack_protect == 2)
00886 {
00887 if ((bits & (SPCT_HAS_SMALL_CHAR_ARRAY | SPCT_HAS_LARGE_CHAR_ARRAY))
00888 && !(bits & SPCT_HAS_AGGREGATE))
00889 ret = 1;
00890 else if (bits & SPCT_HAS_ARRAY)
00891 ret = 2;
00892 }
00893 else
00894 ret = (bits & SPCT_HAS_LARGE_CHAR_ARRAY) != 0;
00895
00896 if (ret)
00897 has_protected_decls = true;
00898
00899 return ret;
00900 }
00901
00902
00903
00904
00905 static bool
00906 stack_protect_decl_phase_1 (tree decl)
00907 {
00908 return stack_protect_decl_phase (decl) == 1;
00909 }
00910
00911 static bool
00912 stack_protect_decl_phase_2 (tree decl)
00913 {
00914 return stack_protect_decl_phase (decl) == 2;
00915 }
00916
00917
00918
00919
00920 static void
00921 add_stack_protection_conflicts (void)
00922 {
00923 size_t i, j, n = stack_vars_num;
00924 unsigned char *phase;
00925
00926 phase = XNEWVEC (unsigned char, n);
00927 for (i = 0; i < n; ++i)
00928 phase[i] = stack_protect_decl_phase (stack_vars[i].decl);
00929
00930 for (i = 0; i < n; ++i)
00931 {
00932 unsigned char ph_i = phase[i];
00933 for (j = 0; j < i; ++j)
00934 if (ph_i != phase[j])
00935 add_stack_var_conflict (i, j);
00936 }
00937
00938 XDELETEVEC (phase);
00939 }
00940
00941
00942
00943 static void
00944 create_stack_guard (void)
00945 {
00946 tree guard = build_decl (VAR_DECL, NULL, ptr_type_node);
00947 TREE_THIS_VOLATILE (guard) = 1;
00948 TREE_USED (guard) = 1;
00949 expand_one_stack_var (guard);
00950 cfun->stack_protect_guard = guard;
00951 }
00952
00953
00954
00955 static void
00956 expand_used_vars (void)
00957 {
00958 tree t, outer_block = DECL_INITIAL (current_function_decl);
00959
00960
00961 {
00962 int align = PREFERRED_STACK_BOUNDARY / BITS_PER_UNIT;
00963 int off = STARTING_FRAME_OFFSET % align;
00964 frame_phase = off ? align - off : 0;
00965 }
00966
00967
00968 for (t = cfun->unexpanded_var_list; t; t = TREE_CHAIN (t))
00969 TREE_USED (TREE_VALUE (t)) = 1;
00970
00971
00972 clear_tree_used (outer_block);
00973
00974
00975 has_protected_decls = false;
00976 has_short_buffer = false;
00977
00978
00979
00980 for (t = cfun->unexpanded_var_list; t; t = TREE_CHAIN (t))
00981 {
00982 tree var = TREE_VALUE (t);
00983 bool expand_now = false;
00984
00985
00986
00987
00988
00989
00990 if (TREE_STATIC (var) || DECL_EXTERNAL (var))
00991 expand_now = true;
00992
00993
00994
00995
00996
00997 else if (is_gimple_reg (var))
00998 expand_now = true;
00999
01000
01001
01002
01003 else if (TREE_USED (var))
01004 expand_now = true;
01005
01006
01007
01008 TREE_USED (var) = 1;
01009
01010 if (expand_now)
01011 expand_one_var (var, true);
01012 }
01013 cfun->unexpanded_var_list = NULL_TREE;
01014
01015
01016
01017 expand_used_vars_for_block (outer_block, true);
01018
01019 if (stack_vars_num > 0)
01020 {
01021
01022
01023
01024 add_alias_set_conflicts ();
01025
01026
01027
01028 if (flag_stack_protect)
01029 add_stack_protection_conflicts ();
01030
01031
01032
01033 partition_stack_vars ();
01034 if (dump_file)
01035 dump_stack_var_partition ();
01036 }
01037
01038
01039
01040 if (flag_stack_protect == 2
01041 || (flag_stack_protect
01042 && (current_function_calls_alloca || has_protected_decls)))
01043 create_stack_guard ();
01044
01045
01046 if (stack_vars_num > 0)
01047 {
01048
01049
01050
01051
01052
01053 if (has_protected_decls)
01054 {
01055
01056 expand_stack_vars (stack_protect_decl_phase_1);
01057
01058
01059 if (flag_stack_protect == 2)
01060 expand_stack_vars (stack_protect_decl_phase_2);
01061 }
01062
01063 expand_stack_vars (NULL);
01064
01065
01066 XDELETEVEC (stack_vars);
01067 XDELETEVEC (stack_vars_sorted);
01068 XDELETEVEC (stack_vars_conflict);
01069 stack_vars = NULL;
01070 stack_vars_alloc = stack_vars_num = 0;
01071 stack_vars_conflict = NULL;
01072 stack_vars_conflict_alloc = 0;
01073 }
01074
01075
01076 if (STACK_ALIGNMENT_NEEDED)
01077 {
01078 HOST_WIDE_INT align = PREFERRED_STACK_BOUNDARY / BITS_PER_UNIT;
01079 if (!FRAME_GROWS_DOWNWARD)
01080 frame_offset += align - 1;
01081 frame_offset &= -align;
01082 }
01083 }
01084
01085
01086
01087
01088
01089
01090 static void
01091 maybe_dump_rtl_for_tree_stmt (tree stmt, rtx since)
01092 {
01093 if (dump_file && (dump_flags & TDF_DETAILS))
01094 {
01095 fprintf (dump_file, "\n;; ");
01096 print_generic_expr (dump_file, stmt, TDF_SLIM);
01097 fprintf (dump_file, "\n");
01098
01099 print_rtl (dump_file, since ? NEXT_INSN (since) : since);
01100 }
01101 }
01102
01103
01104
01105
01106
01107 static basic_block
01108 expand_gimple_cond_expr (basic_block bb, tree stmt)
01109 {
01110 basic_block new_bb, dest;
01111 edge new_edge;
01112 edge true_edge;
01113 edge false_edge;
01114 tree pred = COND_EXPR_COND (stmt);
01115 tree then_exp = COND_EXPR_THEN (stmt);
01116 tree else_exp = COND_EXPR_ELSE (stmt);
01117 rtx last2, last;
01118
01119 last2 = last = get_last_insn ();
01120
01121 extract_true_false_edges_from_block (bb, &true_edge, &false_edge);
01122 if (EXPR_LOCUS (stmt))
01123 {
01124 emit_line_note (*(EXPR_LOCUS (stmt)));
01125 record_block_change (TREE_BLOCK (stmt));
01126 }
01127
01128
01129 true_edge->flags &= ~EDGE_TRUE_VALUE;
01130 false_edge->flags &= ~EDGE_FALSE_VALUE;
01131
01132
01133
01134 if (TREE_CODE (then_exp) == GOTO_EXPR && IS_EMPTY_STMT (else_exp))
01135 {
01136 jumpif (pred, label_rtx (GOTO_DESTINATION (then_exp)));
01137 add_reg_br_prob_note (last, true_edge->probability);
01138 maybe_dump_rtl_for_tree_stmt (stmt, last);
01139 if (EXPR_LOCUS (then_exp))
01140 emit_line_note (*(EXPR_LOCUS (then_exp)));
01141 return NULL;
01142 }
01143 if (TREE_CODE (else_exp) == GOTO_EXPR && IS_EMPTY_STMT (then_exp))
01144 {
01145 jumpifnot (pred, label_rtx (GOTO_DESTINATION (else_exp)));
01146 add_reg_br_prob_note (last, false_edge->probability);
01147 maybe_dump_rtl_for_tree_stmt (stmt, last);
01148 if (EXPR_LOCUS (else_exp))
01149 emit_line_note (*(EXPR_LOCUS (else_exp)));
01150 return NULL;
01151 }
01152 gcc_assert (TREE_CODE (then_exp) == GOTO_EXPR
01153 && TREE_CODE (else_exp) == GOTO_EXPR);
01154
01155 jumpif (pred, label_rtx (GOTO_DESTINATION (then_exp)));
01156 add_reg_br_prob_note (last, true_edge->probability);
01157 last = get_last_insn ();
01158 expand_expr (else_exp, const0_rtx, VOIDmode, 0);
01159
01160 BB_END (bb) = last;
01161 if (BARRIER_P (BB_END (bb)))
01162 BB_END (bb) = PREV_INSN (BB_END (bb));
01163 update_bb_for_insn (bb);
01164
01165 new_bb = create_basic_block (NEXT_INSN (last), get_last_insn (), bb);
01166 dest = false_edge->dest;
01167 redirect_edge_succ (false_edge, new_bb);
01168 false_edge->flags |= EDGE_FALLTHRU;
01169 new_bb->count = false_edge->count;
01170 new_bb->frequency = EDGE_FREQUENCY (false_edge);
01171 new_edge = make_edge (new_bb, dest, 0);
01172 new_edge->probability = REG_BR_PROB_BASE;
01173 new_edge->count = new_bb->count;
01174 if (BARRIER_P (BB_END (new_bb)))
01175 BB_END (new_bb) = PREV_INSN (BB_END (new_bb));
01176 update_bb_for_insn (new_bb);
01177
01178 maybe_dump_rtl_for_tree_stmt (stmt, last2);
01179
01180 if (EXPR_LOCUS (else_exp))
01181 emit_line_note (*(EXPR_LOCUS (else_exp)));
01182
01183 return new_bb;
01184 }
01185
01186
01187
01188
01189
01190
01191
01192
01193
01194
01195
01196 static basic_block
01197 expand_gimple_tailcall (basic_block bb, tree stmt, bool *can_fallthru)
01198 {
01199 rtx last2, last;
01200 edge e;
01201 edge_iterator ei;
01202 int probability;
01203 gcov_type count;
01204
01205 last2 = last = get_last_insn ();
01206
01207 expand_expr_stmt (stmt);
01208
01209 for (last = NEXT_INSN (last); last; last = NEXT_INSN (last))
01210 if (CALL_P (last) && SIBLING_CALL_P (last))
01211 goto found;
01212
01213 maybe_dump_rtl_for_tree_stmt (stmt, last2);
01214
01215 *can_fallthru = true;
01216 return NULL;
01217
01218 found:
01219
01220
01221 do_pending_stack_adjust ();
01222
01223
01224
01225
01226
01227
01228
01229
01230 probability = 0;
01231 count = 0;
01232
01233 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
01234 {
01235 if (!(e->flags & (EDGE_ABNORMAL | EDGE_EH)))
01236 {
01237 if (e->dest != EXIT_BLOCK_PTR)
01238 {
01239 e->dest->count -= e->count;
01240 e->dest->frequency -= EDGE_FREQUENCY (e);
01241 if (e->dest->count < 0)
01242 e->dest->count = 0;
01243 if (e->dest->frequency < 0)
01244 e->dest->frequency = 0;
01245 }
01246 count += e->count;
01247 probability += e->probability;
01248 remove_edge (e);
01249 }
01250 else
01251 ei_next (&ei);
01252 }
01253
01254
01255
01256
01257 last = NEXT_INSN (last);
01258 gcc_assert (BARRIER_P (last));
01259
01260 *can_fallthru = false;
01261 while (NEXT_INSN (last))
01262 {
01263
01264
01265 if (LABEL_P (NEXT_INSN (last)))
01266 {
01267 *can_fallthru = true;
01268 break;
01269 }
01270 delete_insn (NEXT_INSN (last));
01271 }
01272
01273 e = make_edge (bb, EXIT_BLOCK_PTR, EDGE_ABNORMAL | EDGE_SIBCALL);
01274 e->probability += probability;
01275 e->count += count;
01276 BB_END (bb) = last;
01277 update_bb_for_insn (bb);
01278
01279 if (NEXT_INSN (last))
01280 {
01281 bb = create_basic_block (NEXT_INSN (last), get_last_insn (), bb);
01282
01283 last = BB_END (bb);
01284 if (BARRIER_P (last))
01285 BB_END (bb) = PREV_INSN (last);
01286 }
01287
01288 maybe_dump_rtl_for_tree_stmt (stmt, last2);
01289
01290 return bb;
01291 }
01292
01293
01294
01295 static basic_block
01296 expand_gimple_basic_block (basic_block bb)
01297 {
01298 block_stmt_iterator bsi = bsi_start (bb);
01299 tree stmt = NULL;
01300 rtx note, last;
01301 edge e;
01302 edge_iterator ei;
01303
01304 if (dump_file)
01305 {
01306 fprintf (dump_file,
01307 "\n;; Generating RTL for tree basic block %d\n",
01308 bb->index);
01309 }
01310
01311 init_rtl_bb_info (bb);
01312 bb->flags |= BB_RTL;
01313
01314 if (!bsi_end_p (bsi))
01315 stmt = bsi_stmt (bsi);
01316
01317 if (stmt && TREE_CODE (stmt) == LABEL_EXPR)
01318 {
01319 last = get_last_insn ();
01320
01321 expand_expr_stmt (stmt);
01322
01323
01324
01325 BB_HEAD (bb) = NEXT_INSN (last);
01326 if (NOTE_P (BB_HEAD (bb)))
01327 BB_HEAD (bb) = NEXT_INSN (BB_HEAD (bb));
01328 bsi_next (&bsi);
01329 note = emit_note_after (NOTE_INSN_BASIC_BLOCK, BB_HEAD (bb));
01330
01331 maybe_dump_rtl_for_tree_stmt (stmt, last);
01332 }
01333 else
01334 note = BB_HEAD (bb) = emit_note (NOTE_INSN_BASIC_BLOCK);
01335
01336 NOTE_BASIC_BLOCK (note) = bb;
01337
01338 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
01339 {
01340
01341 e->flags &= ~EDGE_EXECUTABLE;
01342
01343
01344
01345
01346 if (e->flags & EDGE_ABNORMAL)
01347 remove_edge (e);
01348 else
01349 ei_next (&ei);
01350 }
01351
01352 for (; !bsi_end_p (bsi); bsi_next (&bsi))
01353 {
01354 tree stmt = bsi_stmt (bsi);
01355 basic_block new_bb;
01356
01357 if (!stmt)
01358 continue;
01359
01360
01361
01362 if (TREE_CODE (stmt) == COND_EXPR)
01363 {
01364 new_bb = expand_gimple_cond_expr (bb, stmt);
01365 if (new_bb)
01366 return new_bb;
01367 }
01368 else
01369 {
01370 tree call = get_call_expr_in (stmt);
01371 if (call && CALL_EXPR_TAILCALL (call))
01372 {
01373 bool can_fallthru;
01374 new_bb = expand_gimple_tailcall (bb, stmt, &can_fallthru);
01375 if (new_bb)
01376 {
01377 if (can_fallthru)
01378 bb = new_bb;
01379 else
01380 return new_bb;
01381 }
01382 }
01383 else
01384 {
01385 last = get_last_insn ();
01386 expand_expr_stmt (stmt);
01387 maybe_dump_rtl_for_tree_stmt (stmt, last);
01388 }
01389 }
01390 }
01391
01392 do_pending_stack_adjust ();
01393
01394
01395
01396 last = get_last_insn ();
01397 if (BARRIER_P (last))
01398 last = PREV_INSN (last);
01399 if (JUMP_TABLE_DATA_P (last))
01400 last = PREV_INSN (PREV_INSN (last));
01401 BB_END (bb) = last;
01402
01403 update_bb_for_insn (bb);
01404
01405 return bb;
01406 }
01407
01408
01409
01410
01411 static basic_block
01412 construct_init_block (void)
01413 {
01414 basic_block init_block, first_block;
01415 edge e = NULL;
01416 int flags;
01417
01418
01419 gcc_assert (EDGE_COUNT (ENTRY_BLOCK_PTR->succs) == 1);
01420 init_rtl_bb_info (ENTRY_BLOCK_PTR);
01421 init_rtl_bb_info (EXIT_BLOCK_PTR);
01422 ENTRY_BLOCK_PTR->flags |= BB_RTL;
01423 EXIT_BLOCK_PTR->flags |= BB_RTL;
01424
01425 e = EDGE_SUCC (ENTRY_BLOCK_PTR, 0);
01426
01427
01428
01429 if (e && e->dest != ENTRY_BLOCK_PTR->next_bb)
01430 {
01431 tree label = tree_block_label (e->dest);
01432
01433 emit_jump (label_rtx (label));
01434 flags = 0;
01435 }
01436 else
01437 flags = EDGE_FALLTHRU;
01438
01439 init_block = create_basic_block (NEXT_INSN (get_insns ()),
01440 get_last_insn (),
01441 ENTRY_BLOCK_PTR);
01442 init_block->frequency = ENTRY_BLOCK_PTR->frequency;
01443 init_block->count = ENTRY_BLOCK_PTR->count;
01444 if (e)
01445 {
01446 first_block = e->dest;
01447 redirect_edge_succ (e, init_block);
01448 e = make_edge (init_block, first_block, flags);
01449 }
01450 else
01451 e = make_edge (init_block, EXIT_BLOCK_PTR, EDGE_FALLTHRU);
01452 e->probability = REG_BR_PROB_BASE;
01453 e->count = ENTRY_BLOCK_PTR->count;
01454
01455 update_bb_for_insn (init_block);
01456 return init_block;
01457 }
01458
01459
01460
01461
01462 static void
01463 construct_exit_block (void)
01464 {
01465 rtx head = get_last_insn ();
01466 rtx end;
01467 basic_block exit_block;
01468 edge e, e2;
01469 unsigned ix;
01470 edge_iterator ei;
01471
01472
01473
01474 #ifdef USE_MAPPED_LOCATION
01475 if (cfun->function_end_locus != UNKNOWN_LOCATION)
01476 #else
01477 if (cfun->function_end_locus.file)
01478 #endif
01479 input_location = cfun->function_end_locus;
01480
01481
01482 record_block_change (DECL_INITIAL (current_function_decl));
01483
01484
01485 expand_function_end ();
01486
01487 end = get_last_insn ();
01488 if (head == end)
01489 return;
01490 while (NEXT_INSN (head) && NOTE_P (NEXT_INSN (head)))
01491 head = NEXT_INSN (head);
01492 exit_block = create_basic_block (NEXT_INSN (head), end,
01493 EXIT_BLOCK_PTR->prev_bb);
01494 exit_block->frequency = EXIT_BLOCK_PTR->frequency;
01495 exit_block->count = EXIT_BLOCK_PTR->count;
01496
01497 ix = 0;
01498 while (ix < EDGE_COUNT (EXIT_BLOCK_PTR->preds))
01499 {
01500 e = EDGE_PRED (EXIT_BLOCK_PTR, ix);
01501 if (!(e->flags & EDGE_ABNORMAL))
01502 redirect_edge_succ (e, exit_block);
01503 else
01504 ix++;
01505 }
01506
01507 e = make_edge (exit_block, EXIT_BLOCK_PTR, EDGE_FALLTHRU);
01508 e->probability = REG_BR_PROB_BASE;
01509 e->count = EXIT_BLOCK_PTR->count;
01510 FOR_EACH_EDGE (e2, ei, EXIT_BLOCK_PTR->preds)
01511 if (e2 != e)
01512 {
01513 e->count -= e2->count;
01514 exit_block->count -= e2->count;
01515 exit_block->frequency -= EDGE_FREQUENCY (e2);
01516 }
01517 if (e->count < 0)
01518 e->count = 0;
01519 if (exit_block->count < 0)
01520 exit_block->count = 0;
01521 if (exit_block->frequency < 0)
01522 exit_block->frequency = 0;
01523 update_bb_for_insn (exit_block);
01524 }
01525
01526
01527
01528
01529
01530 static tree
01531 discover_nonconstant_array_refs_r (tree * tp, int *walk_subtrees,
01532 void *data ATTRIBUTE_UNUSED)
01533 {
01534 tree t = *tp;
01535
01536 if (IS_TYPE_OR_DECL_P (t))
01537 *walk_subtrees = 0;
01538 else if (TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
01539 {
01540 while (((TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
01541 && is_gimple_min_invariant (TREE_OPERAND (t, 1))
01542 && (!TREE_OPERAND (t, 2)
01543 || is_gimple_min_invariant (TREE_OPERAND (t, 2))))
01544 || (TREE_CODE (t) == COMPONENT_REF
01545 && (!TREE_OPERAND (t,2)
01546 || is_gimple_min_invariant (TREE_OPERAND (t, 2))))
01547 || TREE_CODE (t) == BIT_FIELD_REF
01548 || TREE_CODE (t) == REALPART_EXPR
01549 || TREE_CODE (t) == IMAGPART_EXPR
01550 || TREE_CODE (t) == VIEW_CONVERT_EXPR
01551 || TREE_CODE (t) == NOP_EXPR
01552 || TREE_CODE (t) == CONVERT_EXPR)
01553 t = TREE_OPERAND (t, 0);
01554
01555 if (TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
01556 {
01557 t = get_base_address (t);
01558 if (t && DECL_P (t))
01559 TREE_ADDRESSABLE (t) = 1;
01560 }
01561
01562 *walk_subtrees = 0;
01563 }
01564
01565 return NULL_TREE;
01566 }
01567
01568
01569
01570
01571
01572
01573 static void
01574 discover_nonconstant_array_refs (void)
01575 {
01576 basic_block bb;
01577 block_stmt_iterator bsi;
01578
01579 FOR_EACH_BB (bb)
01580 {
01581 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
01582 walk_tree (bsi_stmt_ptr (bsi), discover_nonconstant_array_refs_r,
01583 NULL , NULL);
01584 }
01585 }
01586
01587
01588
01589
01590
01591
01592
01593
01594
01595
01596 static unsigned int
01597 tree_expand_cfg (void)
01598 {
01599 basic_block bb, init_block;
01600 sbitmap blocks;
01601 edge_iterator ei;
01602 edge e;
01603
01604
01605 currently_expanding_to_rtl = 1;
01606
01607
01608 reset_block_changes ();
01609
01610
01611 discover_nonconstant_array_refs ();
01612
01613
01614 expand_used_vars ();
01615
01616
01617 if (warn_stack_protect)
01618 {
01619 if (current_function_calls_alloca)
01620 warning (0, "not protecting local variables: variable length buffer");
01621 if (has_short_buffer && !cfun->stack_protect_guard)
01622 warning (0, "not protecting function: no buffer at least %d bytes long",
01623 (int) PARAM_VALUE (PARAM_SSP_BUFFER_SIZE));
01624 }
01625
01626 #ifdef KEY
01627
01628 if (flag_spin_file)
01629 return 0;
01630 #endif
01631
01632
01633 expand_function_start (current_function_decl);
01634
01635
01636
01637 if (DECL_NAME (current_function_decl)
01638 && MAIN_NAME_P (DECL_NAME (current_function_decl))
01639 && DECL_FILE_SCOPE_P (current_function_decl))
01640 expand_main_function ();
01641
01642
01643
01644 if (cfun->stack_protect_guard)
01645 stack_protect_prologue ();
01646
01647
01648 rtl_register_cfg_hooks ();
01649
01650 init_block = construct_init_block ();
01651
01652
01653
01654 FOR_EACH_EDGE (e, ei, ENTRY_BLOCK_PTR->succs)
01655 e->flags &= ~EDGE_EXECUTABLE;
01656
01657 FOR_BB_BETWEEN (bb, init_block->next_bb, EXIT_BLOCK_PTR, next_bb)
01658 bb = expand_gimple_basic_block (bb);
01659
01660 construct_exit_block ();
01661
01662
01663 currently_expanding_to_rtl = 0;
01664
01665
01666
01667 convert_from_eh_region_ranges ();
01668
01669 rebuild_jump_labels (get_insns ());
01670 find_exception_handler_labels ();
01671
01672 blocks = sbitmap_alloc (last_basic_block);
01673 sbitmap_ones (blocks);
01674 find_many_sub_basic_blocks (blocks);
01675 purge_all_dead_edges ();
01676 sbitmap_free (blocks);
01677
01678 compact_blocks ();
01679 #ifdef ENABLE_CHECKING
01680 verify_flow_info();
01681 #endif
01682
01683
01684
01685 DECL_DEFER_OUTPUT (current_function_decl) = 0;
01686
01687
01688
01689 generating_concat_p = 0;
01690
01691 finalize_block_changes ();
01692
01693 if (dump_file)
01694 {
01695 fprintf (dump_file,
01696 "\n\n;;\n;; Full RTL generated for this function:\n;;\n");
01697
01698 }
01699
01700
01701
01702 {
01703 tree parent;
01704 for (parent = DECL_CONTEXT (current_function_decl);
01705 parent != NULL_TREE;
01706 parent = get_containing_scope (parent))
01707 if (TREE_CODE (parent) == FUNCTION_DECL)
01708 TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (parent)) = 1;
01709 }
01710
01711
01712
01713
01714 if (cgraph_function_possibly_inlined_p (current_function_decl))
01715 (*debug_hooks->outlining_inline_function) (current_function_decl);
01716
01717 TREE_ASM_WRITTEN (current_function_decl) = 1;
01718
01719
01720 return_label = NULL;
01721 naked_return_label = NULL;
01722 return 0;
01723 }
01724
01725 struct tree_opt_pass pass_expand =
01726 {
01727 "expand",
01728 NULL,
01729 tree_expand_cfg,
01730 NULL,
01731 NULL,
01732 0,
01733 TV_EXPAND,
01734
01735 PROP_gimple_leh | PROP_cfg,
01736 PROP_rtl,
01737 PROP_trees,
01738 0,
01739 TODO_dump_func,
01740 'r'
01741 };