alias.c [...]: Remove unnecessary casts.
[gcc.git] / gcc / toplev.c
1 /* Top level of GCC compilers (cc1, cc1plus, etc.)
2 Copyright (C) 1987, 1988, 1989, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002, 2003 Free Software Foundation, Inc.
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 2, or (at your option) any later
10 version.
11
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
20 02111-1307, USA. */
21
22 /* This is the top level of cc1/c++.
23 It parses command args, opens files, invokes the various passes
24 in the proper order, and counts the time used by each.
25 Error messages and low-level interface to malloc also handled here. */
26
27 #include "config.h"
28 #undef FLOAT /* This is for hpux. They should change hpux. */
29 #undef FFS /* Some systems define this in param.h. */
30 #include "system.h"
31 #include "coretypes.h"
32 #include "tm.h"
33 #include <signal.h>
34
35 #ifdef HAVE_SYS_RESOURCE_H
36 # include <sys/resource.h>
37 #endif
38
39 #ifdef HAVE_SYS_TIMES_H
40 # include <sys/times.h>
41 #endif
42
43 #include "input.h"
44 #include "tree.h"
45 #include "rtl.h"
46 #include "tm_p.h"
47 #include "flags.h"
48 #include "insn-attr.h"
49 #include "insn-config.h"
50 #include "insn-flags.h"
51 #include "hard-reg-set.h"
52 #include "recog.h"
53 #include "output.h"
54 #include "except.h"
55 #include "function.h"
56 #include "toplev.h"
57 #include "expr.h"
58 #include "basic-block.h"
59 #include "intl.h"
60 #include "ggc.h"
61 #include "graph.h"
62 #include "loop.h"
63 #include "regs.h"
64 #include "timevar.h"
65 #include "diagnostic.h"
66 #include "ssa.h"
67 #include "params.h"
68 #include "reload.h"
69 #include "dwarf2asm.h"
70 #include "integrate.h"
71 #include "real.h"
72 #include "debug.h"
73 #include "target.h"
74 #include "langhooks.h"
75 #include "cfglayout.h"
76 #include "cfgloop.h"
77 #include "hosthooks.h"
78 #include "cgraph.h"
79 #include "opts.h"
80 #include "coverage.h"
81
82 #if defined (DWARF2_UNWIND_INFO) || defined (DWARF2_DEBUGGING_INFO)
83 #include "dwarf2out.h"
84 #endif
85
86 #if defined(DBX_DEBUGGING_INFO) || defined(XCOFF_DEBUGGING_INFO)
87 #include "dbxout.h"
88 #endif
89
90 #ifdef SDB_DEBUGGING_INFO
91 #include "sdbout.h"
92 #endif
93
94 #ifdef XCOFF_DEBUGGING_INFO
95 #include "xcoffout.h" /* Needed for external data
96 declarations for e.g. AIX 4.x. */
97 #endif
98
99 /* Carry information from ASM_DECLARE_OBJECT_NAME
100 to ASM_FINISH_DECLARE_OBJECT. */
101
102 extern int size_directive_output;
103 extern tree last_assemble_variable_decl;
104
105 extern void reg_alloc (void);
106
107 static void general_init (const char *);
108 static void do_compile (void);
109 static void process_options (void);
110 static void backend_init (void);
111 static int lang_dependent_init (const char *);
112 static void init_asm_output (const char *);
113 static void finalize (void);
114
115 static void crash_signal (int) ATTRIBUTE_NORETURN;
116 static void setup_core_dumping (void);
117 static void compile_file (void);
118
119 static int print_single_switch (FILE *, int, int, const char *,
120 const char *, const char *,
121 const char *, const char *);
122 static void print_switch_values (FILE *, int, int, const char *,
123 const char *, const char *);
124
125 /* Rest of compilation helper functions. */
126 static bool rest_of_handle_inlining (tree);
127 static rtx rest_of_handle_ssa (tree, rtx);
128 static void rest_of_handle_cse (tree, rtx);
129 static void rest_of_handle_cse2 (tree, rtx);
130 static void rest_of_handle_gcse (tree, rtx);
131 static void rest_of_handle_life (tree, rtx);
132 static void rest_of_handle_loop_optimize (tree, rtx);
133 static void rest_of_handle_loop2 (tree, rtx);
134 static void rest_of_handle_jump_bypass (tree, rtx);
135 static void rest_of_handle_sibling_calls (rtx);
136 static void rest_of_handle_null_pointer (tree, rtx);
137 static void rest_of_handle_addressof (tree, rtx);
138 static void rest_of_handle_cfg (tree, rtx);
139 static void rest_of_handle_branch_prob (tree, rtx);
140 static void rest_of_handle_if_conversion (tree, rtx);
141 static void rest_of_handle_if_after_combine (tree, rtx);
142 static void rest_of_handle_tracer (tree, rtx);
143 static void rest_of_handle_combine (tree, rtx);
144 static void rest_of_handle_regmove (tree, rtx);
145 #ifdef INSN_SCHEDULING
146 static void rest_of_handle_sched (tree, rtx);
147 static void rest_of_handle_sched2 (tree, rtx);
148 #endif
149 static bool rest_of_handle_new_regalloc (tree, rtx, int *);
150 static bool rest_of_handle_old_regalloc (tree, rtx, int *);
151 static void rest_of_handle_regrename (tree, rtx);
152 static void rest_of_handle_reorder_blocks (tree, rtx);
153 #ifdef STACK_REGS
154 static void rest_of_handle_stack_regs (tree, rtx);
155 #endif
156 static void rest_of_handle_machine_reorg (tree, rtx);
157 #ifdef DELAY_SLOTS
158 static void rest_of_handle_delay_slots (tree, rtx);
159 #endif
160 static void rest_of_handle_final (tree, rtx);
161
162 /* Nonzero to dump debug info whilst parsing (-dy option). */
163 static int set_yydebug;
164
165 /* True if we don't need a backend (e.g. preprocessing only). */
166 static bool no_backend;
167
168 /* Length of line when printing switch values. */
169 #define MAX_LINE 75
170
171 /* Name of program invoked, sans directories. */
172
173 const char *progname;
174
175 /* Copy of argument vector to toplev_main. */
176 static const char **save_argv;
177
178 /* Name of top-level original source file (what was input to cpp).
179 This comes from the #-command at the beginning of the actual input.
180 If there isn't any there, then this is the cc1 input file name. */
181
182 const char *main_input_filename;
183
184 /* Current position in real source file. */
185
186 location_t input_location;
187
188 /* Nonzero if it is unsafe to create any new pseudo registers. */
189 int no_new_pseudos;
190
191 /* Stack of currently pending input files. */
192
193 struct file_stack *input_file_stack;
194
195 /* Incremented on each change to input_file_stack. */
196 int input_file_stack_tick;
197
198 /* Name to use as base of names for dump output files. */
199
200 const char *dump_base_name;
201
202 /* Name to use as a base for auxiliary output files. */
203
204 const char *aux_base_name;
205
206 /* Format to use to print dumpfile index value */
207 #ifndef DUMPFILE_FORMAT
208 #define DUMPFILE_FORMAT ".%02d."
209 #endif
210
211 /* Bit flags that specify the machine subtype we are compiling for.
212 Bits are tested using macros TARGET_... defined in the tm.h file
213 and set by `-m...' switches. Must be defined in rtlanal.c. */
214
215 extern int target_flags;
216
217 /* A mask of target_flags that includes bit X if X was set or cleared
218 on the command line. */
219
220 int target_flags_explicit;
221
222 /* Debug hooks - dependent upon command line options. */
223
224 const struct gcc_debug_hooks *debug_hooks = &do_nothing_debug_hooks;
225
226 /* Describes a dump file. */
227
228 struct dump_file_info
229 {
230 /* The unique extension to apply, e.g. ".jump". */
231 const char *const extension;
232
233 /* The -d<c> character that enables this dump file. */
234 char const debug_switch;
235
236 /* True if there is a corresponding graph dump file. */
237 char const graph_dump_p;
238
239 /* True if the user selected this dump. */
240 char enabled;
241
242 /* True if the files have been initialized (ie truncated). */
243 char initialized;
244 };
245
246 /* Enumerate the extant dump files. */
247
248 enum dump_file_index
249 {
250 DFI_cgraph,
251 DFI_rtl,
252 DFI_sibling,
253 DFI_eh,
254 DFI_jump,
255 DFI_ssa,
256 DFI_ssa_ccp,
257 DFI_ssa_dce,
258 DFI_ussa,
259 DFI_null,
260 DFI_cse,
261 DFI_addressof,
262 DFI_gcse,
263 DFI_loop,
264 DFI_bypass,
265 DFI_cfg,
266 DFI_bp,
267 DFI_ce1,
268 DFI_tracer,
269 DFI_loop2,
270 DFI_cse2,
271 DFI_life,
272 DFI_combine,
273 DFI_ce2,
274 DFI_regmove,
275 DFI_sched,
276 DFI_lreg,
277 DFI_greg,
278 DFI_postreload,
279 DFI_flow2,
280 DFI_peephole2,
281 DFI_rnreg,
282 DFI_bbro,
283 DFI_ce3,
284 DFI_branch_target_load,
285 DFI_sched2,
286 DFI_stack,
287 DFI_mach,
288 DFI_dbr,
289 DFI_MAX
290 };
291
292 /* Describes all the dump files. Should be kept in order of the
293 pass and in sync with dump_file_index above.
294
295 Remaining -d letters:
296
297 " m q "
298 " JK O Q V YZ"
299 */
300
301 static struct dump_file_info dump_file[DFI_MAX] =
302 {
303 { "cgraph", 'U', 0, 0, 0 },
304 { "rtl", 'r', 0, 0, 0 },
305 { "sibling", 'i', 0, 0, 0 },
306 { "eh", 'h', 0, 0, 0 },
307 { "jump", 'j', 0, 0, 0 },
308 { "ssa", 'e', 1, 0, 0 },
309 { "ssaccp", 'W', 1, 0, 0 },
310 { "ssadce", 'X', 1, 0, 0 },
311 { "ussa", 'e', 1, 0, 0 }, /* Yes, duplicate enable switch. */
312 { "null", 'u', 0, 0, 0 },
313 { "cse", 's', 0, 0, 0 },
314 { "addressof", 'F', 0, 0, 0 },
315 { "gcse", 'G', 1, 0, 0 },
316 { "loop", 'L', 1, 0, 0 },
317 { "bypass", 'G', 1, 0, 0 }, /* Yes, duplicate enable switch. */
318 { "cfg", 'f', 1, 0, 0 },
319 { "bp", 'b', 1, 0, 0 },
320 { "ce1", 'C', 1, 0, 0 },
321 { "tracer", 'T', 1, 0, 0 },
322 { "loop2", 'L', 1, 0, 0 },
323 { "cse2", 't', 1, 0, 0 },
324 { "life", 'f', 1, 0, 0 }, /* Yes, duplicate enable switch. */
325 { "combine", 'c', 1, 0, 0 },
326 { "ce2", 'C', 1, 0, 0 },
327 { "regmove", 'N', 1, 0, 0 },
328 { "sched", 'S', 1, 0, 0 },
329 { "lreg", 'l', 1, 0, 0 },
330 { "greg", 'g', 1, 0, 0 },
331 { "postreload", 'o', 1, 0, 0 },
332 { "flow2", 'w', 1, 0, 0 },
333 { "peephole2", 'z', 1, 0, 0 },
334 { "rnreg", 'n', 1, 0, 0 },
335 { "bbro", 'B', 1, 0, 0 },
336 { "ce3", 'E', 1, 0, 0 },
337 { "btl", 'd', 1, 0, 0 }, /* Yes, duplicate enable switch. */
338 { "sched2", 'R', 1, 0, 0 },
339 { "stack", 'k', 1, 0, 0 },
340 { "mach", 'M', 1, 0, 0 },
341 { "dbr", 'd', 0, 0, 0 },
342 };
343
344 static int open_dump_file (enum dump_file_index, tree);
345 static void close_dump_file (enum dump_file_index,
346 void (*) (FILE *, rtx), rtx);
347
348 /* Other flags saying which kinds of debugging dump have been requested. */
349
350 int rtl_dump_and_exit;
351 int flag_print_asm_name;
352 enum graph_dump_types graph_dump_format;
353
354 /* Name for output file of assembly code, specified with -o. */
355
356 const char *asm_file_name;
357
358 /* Type(s) of debugging information we are producing (if any).
359 See flags.h for the definitions of the different possible
360 types of debugging information. */
361 enum debug_info_type write_symbols = NO_DEBUG;
362
363 /* Level of debugging information we are producing. See flags.h
364 for the definitions of the different possible levels. */
365 enum debug_info_level debug_info_level = DINFO_LEVEL_NONE;
366
367 /* Nonzero means use GNU-only extensions in the generated symbolic
368 debugging information. */
369 /* Currently, this only has an effect when write_symbols is set to
370 DBX_DEBUG, XCOFF_DEBUG, or DWARF_DEBUG. */
371 int use_gnu_debug_info_extensions = 0;
372
373 /* Nonzero means do optimizations. -O.
374 Particular numeric values stand for particular amounts of optimization;
375 thus, -O2 stores 2 here. However, the optimizations beyond the basic
376 ones are not controlled directly by this variable. Instead, they are
377 controlled by individual `flag_...' variables that are defaulted
378 based on this variable. */
379
380 int optimize = 0;
381
382 /* Nonzero means optimize for size. -Os.
383 The only valid values are zero and nonzero. When optimize_size is
384 nonzero, optimize defaults to 2, but certain individual code
385 bloating optimizations are disabled. */
386
387 int optimize_size = 0;
388
389 /* The FUNCTION_DECL for the function currently being compiled,
390 or 0 if between functions. */
391 tree current_function_decl;
392
393 /* Set to the FUNC_BEGIN label of the current function, or NULL_TREE
394 if none. */
395 tree current_function_func_begin_label;
396
397 /* Nonzero if doing dwarf2 duplicate elimination. */
398
399 int flag_eliminate_dwarf2_dups = 0;
400
401 /* Nonzero if doing unused type elimination. */
402
403 int flag_eliminate_unused_debug_types = 1;
404
405 /* Nonzero means emit debugging information only for symbols which are used. */
406 int flag_debug_only_used_symbols = 0;
407
408 /* Nonzero if generating code to do profiling. */
409
410 int profile_flag = 0;
411
412 /* Nonzero if generating code to profile program flow graph arcs. */
413
414 int profile_arc_flag = 0;
415
416 /* Nonzero if value histograms should be measured. */
417
418 int flag_profile_values = 0;
419
420 /* Nonzero if generating info for gcov to calculate line test coverage. */
421
422 int flag_test_coverage = 0;
423
424 /* Nonzero indicates that branch taken probabilities should be calculated. */
425
426 int flag_branch_probabilities = 0;
427
428 /* Nonzero if basic blocks should be reordered. */
429
430 int flag_reorder_blocks = 0;
431
432 /* Nonzero if functions should be reordered. */
433
434 int flag_reorder_functions = 0;
435
436 /* Nonzero if registers should be renamed. */
437
438 int flag_rename_registers = 0;
439 int flag_cprop_registers = 0;
440
441 /* Nonzero for -pedantic switch: warn about anything
442 that standard spec forbids. */
443
444 int pedantic = 0;
445
446 /* Temporarily suppress certain warnings.
447 This is set while reading code from a system header file. */
448
449 int in_system_header = 0;
450
451 /* Don't print functions as they are compiled. -quiet. */
452
453 int quiet_flag = 0;
454
455 /* Print times taken by the various passes. -ftime-report. */
456
457 int time_report = 0;
458
459 /* Print memory still in use at end of compilation (which may have little
460 to do with peak memory consumption). -fmem-report. */
461
462 int mem_report = 0;
463
464 /* Nonzero means to collect statistics which might be expensive
465 and to print them when we are done. */
466 int flag_detailed_statistics = 0;
467
468 /* A random sequence of characters, unless overridden by user. */
469 const char *flag_random_seed;
470
471 /* A local time stamp derived from the time of compilation. It will be
472 zero if the system cannot provide a time. It will be -1u, if the
473 user has specified a particular random seed. */
474 unsigned local_tick;
475
476 /* -f flags. */
477
478 /* Nonzero means `char' should be signed. */
479
480 int flag_signed_char;
481
482 /* Nonzero means give an enum type only as many bytes as it needs. */
483
484 int flag_short_enums;
485
486 /* Nonzero for -fcaller-saves: allocate values in regs that need to
487 be saved across function calls, if that produces overall better code.
488 Optional now, so people can test it. */
489
490 #ifdef DEFAULT_CALLER_SAVES
491 int flag_caller_saves = 1;
492 #else
493 int flag_caller_saves = 0;
494 #endif
495
496 /* Nonzero if structures and unions should be returned in memory.
497
498 This should only be defined if compatibility with another compiler or
499 with an ABI is needed, because it results in slower code. */
500
501 #ifndef DEFAULT_PCC_STRUCT_RETURN
502 #define DEFAULT_PCC_STRUCT_RETURN 1
503 #endif
504
505 /* Nonzero for -fpcc-struct-return: return values the same way PCC does. */
506
507 int flag_pcc_struct_return = DEFAULT_PCC_STRUCT_RETURN;
508
509 /* Nonzero for -fforce-mem: load memory value into a register
510 before arithmetic on it. This makes better cse but slower compilation. */
511
512 int flag_force_mem = 0;
513
514 /* Nonzero for -fforce-addr: load memory address into a register before
515 reference to memory. This makes better cse but slower compilation. */
516
517 int flag_force_addr = 0;
518
519 /* Nonzero for -fdefer-pop: don't pop args after each function call;
520 instead save them up to pop many calls' args with one insns. */
521
522 int flag_defer_pop = 0;
523
524 /* Nonzero for -ffloat-store: don't allocate floats and doubles
525 in extended-precision registers. */
526
527 int flag_float_store = 0;
528
529 /* Nonzero for -fcse-follow-jumps:
530 have cse follow jumps to do a more extensive job. */
531
532 int flag_cse_follow_jumps;
533
534 /* Nonzero for -fcse-skip-blocks:
535 have cse follow a branch around a block. */
536 int flag_cse_skip_blocks;
537
538 /* Nonzero for -fexpensive-optimizations:
539 perform miscellaneous relatively-expensive optimizations. */
540 int flag_expensive_optimizations;
541
542 /* Nonzero for -fthread-jumps:
543 have jump optimize output of loop. */
544
545 int flag_thread_jumps;
546
547 /* Nonzero enables strength-reduction in loop.c. */
548
549 int flag_strength_reduce = 0;
550
551 /* Nonzero enables loop unrolling in unroll.c. Only loops for which the
552 number of iterations can be calculated at compile-time (UNROLL_COMPLETELY,
553 UNROLL_MODULO) or at run-time (preconditioned to be UNROLL_MODULO) are
554 unrolled. */
555
556 int flag_old_unroll_loops;
557
558 /* Nonzero enables loop unrolling in unroll.c. All loops are unrolled.
559 This is generally not a win. */
560
561 int flag_old_unroll_all_loops;
562
563 /* Enables unrolling of simple loops in loop-unroll.c. */
564 int flag_unroll_loops;
565
566 /* Enables unrolling of all loops in loop-unroll.c. */
567 int flag_unroll_all_loops;
568
569 /* Nonzero enables loop peeling. */
570 int flag_peel_loops;
571
572 /* Nonzero enables loop unswitching. */
573 int flag_unswitch_loops;
574
575 /* Nonzero enables prefetch optimizations for arrays in loops. */
576
577 int flag_prefetch_loop_arrays;
578
579 /* Nonzero forces all invariant computations in loops to be moved
580 outside the loop. */
581
582 int flag_move_all_movables = 0;
583
584 /* Nonzero forces all general induction variables in loops to be
585 strength reduced. */
586
587 int flag_reduce_all_givs = 0;
588
589 /* Nonzero to perform full register move optimization passes. This is the
590 default for -O2. */
591
592 int flag_regmove = 0;
593
594 /* Nonzero for -fwritable-strings:
595 store string constants in data segment and don't uniquize them. */
596
597 int flag_writable_strings = 0;
598
599 /* Nonzero means don't put addresses of constant functions in registers.
600 Used for compiling the Unix kernel, where strange substitutions are
601 done on the assembly output. */
602
603 int flag_no_function_cse = 0;
604
605 /* Nonzero for -fomit-frame-pointer:
606 don't make a frame pointer in simple functions that don't require one. */
607
608 int flag_omit_frame_pointer = 0;
609
610 /* Nonzero means place each function into its own section on those platforms
611 which support arbitrary section names and unlimited numbers of sections. */
612
613 int flag_function_sections = 0;
614
615 /* ... and similar for data. */
616
617 int flag_data_sections = 0;
618
619 /* Nonzero to inhibit use of define_optimization peephole opts. */
620
621 int flag_no_peephole = 0;
622
623 /* Nonzero allows GCC to optimize sibling and tail recursive calls. */
624
625 int flag_optimize_sibling_calls = 0;
626
627 /* Nonzero means the front end generally wants `errno' maintained by math
628 operations, like built-in SQRT. */
629
630 int flag_errno_math = 1;
631
632 /* Nonzero means that unsafe floating-point math optimizations are allowed
633 for the sake of speed. IEEE compliance is not guaranteed, and operations
634 are allowed to assume that their arguments and results are "normal"
635 (e.g., nonnegative for SQRT). */
636
637 int flag_unsafe_math_optimizations = 0;
638
639 /* Nonzero means that no NaNs or +-Infs are expected. */
640
641 int flag_finite_math_only = 0;
642
643 /* Zero means that floating-point math operations cannot generate a
644 (user-visible) trap. This is the case, for example, in nonstop
645 IEEE 754 arithmetic. Trapping conditions include division by zero,
646 overflow, underflow, invalid and inexact, but does not include
647 operations on signaling NaNs (see below). */
648
649 int flag_trapping_math = 1;
650
651 /* Nonzero means disable transformations observable by signaling NaNs.
652 This option implies that any operation on an IEEE signaling NaN can
653 generate a (user-visible) trap. */
654
655 int flag_signaling_nans = 0;
656
657 /* 0 means straightforward implementation of complex divide acceptable.
658 1 means wide ranges of inputs must work for complex divide.
659 2 means C99-like requirements for complex divide (not yet implemented). */
660
661 int flag_complex_divide_method = 0;
662
663 /* Nonzero means just do syntax checking; don't output anything. */
664
665 int flag_syntax_only = 0;
666
667 /* Nonzero means perform loop optimizer. */
668
669 int flag_loop_optimize;
670
671 /* Nonzero means perform crossjumping. */
672
673 int flag_crossjumping;
674
675 /* Nonzero means perform if conversion. */
676
677 int flag_if_conversion;
678
679 /* Nonzero means perform if conversion after reload. */
680
681 int flag_if_conversion2;
682
683 /* Nonzero means to use global dataflow analysis to eliminate
684 useless null pointer tests. */
685
686 int flag_delete_null_pointer_checks;
687
688 /* Nonzero means perform global CSE. */
689
690 int flag_gcse = 0;
691
692 /* Nonzero means to do the enhanced load motion during gcse, which trys
693 to hoist loads by not killing them when a store to the same location
694 is seen. */
695
696 int flag_gcse_lm = 1;
697
698 /* Nonzero means to perform store motion after gcse, which will try to
699 move stores closer to the exit block. Its not very effective without
700 flag_gcse_lm. */
701
702 int flag_gcse_sm = 1;
703
704 /* Perform target register optimization before prologue / epilogue
705 threading. */
706
707 int flag_branch_target_load_optimize = 0;
708
709 /* Perform target register optimization after prologue / epilogue
710 threading and jump2. */
711
712 int flag_branch_target_load_optimize2 = 0;
713
714 /* Nonzero means to rerun cse after loop optimization. This increases
715 compilation time about 20% and picks up a few more common expressions. */
716
717 int flag_rerun_cse_after_loop;
718
719 /* Nonzero means to run loop optimizations twice. */
720
721 int flag_rerun_loop_opt;
722
723 /* Nonzero for -finline-functions: ok to inline functions that look like
724 good inline candidates. */
725
726 int flag_inline_functions;
727
728 /* Nonzero for -fkeep-inline-functions: even if we make a function
729 go inline everywhere, keep its definition around for debugging
730 purposes. */
731
732 int flag_keep_inline_functions;
733
734 /* Nonzero means that functions will not be inlined. */
735
736 int flag_no_inline = 2;
737
738 /* Nonzero means that we don't want inlining by virtue of -fno-inline,
739 not just because the tree inliner turned us off. */
740
741 int flag_really_no_inline = 2;
742
743 /* Nonzero means that we should emit static const variables
744 regardless of whether or not optimization is turned on. */
745
746 int flag_keep_static_consts = 1;
747
748 /* Nonzero means we should be saving declaration info into a .X file. */
749
750 int flag_gen_aux_info = 0;
751
752 /* Specified name of aux-info file. */
753
754 const char *aux_info_file_name;
755
756 /* Nonzero means make the text shared if supported. */
757
758 int flag_shared_data;
759
760 /* Nonzero means schedule into delayed branch slots if supported. */
761
762 int flag_delayed_branch;
763
764 /* Nonzero if we are compiling pure (sharable) code.
765 Value is 1 if we are doing "small" pic; value is 2 if we're doing
766 "large" pic. */
767
768 int flag_pic;
769
770 /* Nonzero if we are compiling position independent code for executable.
771 The value is 1 if we are doing "small" pic; value is 2 if we're doing
772 "large" pic. */
773
774 int flag_pie;
775
776 /* Nonzero if we are compiling code for a shared library, zero for
777 executable. */
778
779 int flag_shlib;
780
781 /* Set to the default thread-local storage (tls) model to use. */
782
783 enum tls_model flag_tls_default = TLS_MODEL_GLOBAL_DYNAMIC;
784
785 /* Nonzero means generate extra code for exception handling and enable
786 exception handling. */
787
788 int flag_exceptions;
789
790 /* Nonzero means generate frame unwind info table when supported. */
791
792 int flag_unwind_tables = 0;
793
794 /* Nonzero means generate frame unwind info table exact at each insn
795 boundary. */
796
797 int flag_asynchronous_unwind_tables = 0;
798
799 /* Nonzero means don't place uninitialized global data in common storage
800 by default. */
801
802 int flag_no_common;
803
804 /* Nonzero means change certain warnings into errors.
805 Usually these are warnings about failure to conform to some standard. */
806
807 int flag_pedantic_errors = 0;
808
809 /* flag_schedule_insns means schedule insns within basic blocks (before
810 local_alloc).
811 flag_schedule_insns_after_reload means schedule insns after
812 global_alloc. */
813
814 int flag_schedule_insns = 0;
815 int flag_schedule_insns_after_reload = 0;
816
817 /* When flag_schedule_insns_after_reload is set, use EBB scheduler. */
818 int flag_sched2_use_superblocks = 0;
819
820 /* When flag_schedule_insns_after_reload is set, construct traces and EBB
821 scheduler. */
822 int flag_sched2_use_traces = 0;
823
824 /* The following flags have effect only for scheduling before register
825 allocation:
826
827 flag_schedule_interblock means schedule insns across basic blocks.
828 flag_schedule_speculative means allow speculative motion of non-load insns.
829 flag_schedule_speculative_load means allow speculative motion of some
830 load insns.
831 flag_schedule_speculative_load_dangerous allows speculative motion of more
832 load insns. */
833
834 int flag_schedule_interblock = 1;
835 int flag_schedule_speculative = 1;
836 int flag_schedule_speculative_load = 0;
837 int flag_schedule_speculative_load_dangerous = 0;
838
839 int flag_single_precision_constant;
840
841 /* flag_branch_on_count_reg means try to replace add-1,compare,branch tupple
842 by a cheaper branch on a count register. */
843 int flag_branch_on_count_reg = 1;
844
845 /* -finhibit-size-directive inhibits output of .size for ELF.
846 This is used only for compiling crtstuff.c,
847 and it may be extended to other effects
848 needed for crtstuff.c on other systems. */
849 int flag_inhibit_size_directive = 0;
850
851 /* -fverbose-asm causes extra commentary information to be produced in
852 the generated assembly code (to make it more readable). This option
853 is generally only of use to those who actually need to read the
854 generated assembly code (perhaps while debugging the compiler itself).
855 -fno-verbose-asm, the default, causes the extra information
856 to be omitted and is useful when comparing two assembler files. */
857
858 int flag_verbose_asm = 0;
859
860 /* -dA causes debug commentary information to be produced in
861 the generated assembly code (to make it more readable). This option
862 is generally only of use to those who actually need to read the
863 generated assembly code (perhaps while debugging the compiler itself).
864 Currently, this switch is only used by dwarfout.c; however, it is intended
865 to be a catchall for printing debug information in the assembler file. */
866
867 int flag_debug_asm = 0;
868
869 /* -dP causes the rtl to be emitted as a comment in assembly. */
870
871 int flag_dump_rtl_in_asm = 0;
872
873 /* -fgnu-linker specifies use of the GNU linker for initializations.
874 (Or, more generally, a linker that handles initializations.)
875 -fno-gnu-linker says that collect2 will be used. */
876 #ifdef USE_COLLECT2
877 int flag_gnu_linker = 0;
878 #else
879 int flag_gnu_linker = 1;
880 #endif
881
882 /* Nonzero means put zero initialized data in the bss section. */
883 int flag_zero_initialized_in_bss = 1;
884
885 /* Enable SSA. */
886 int flag_ssa = 0;
887
888 /* Enable ssa conditional constant propagation. */
889 int flag_ssa_ccp = 0;
890
891 /* Enable ssa aggressive dead code elimination. */
892 int flag_ssa_dce = 0;
893
894 /* Tag all structures with __attribute__(packed). */
895 int flag_pack_struct = 0;
896
897 /* Emit code to check for stack overflow; also may cause large objects
898 to be allocated dynamically. */
899 int flag_stack_check;
900
901 /* When non-NULL, indicates that whenever space is allocated on the
902 stack, the resulting stack pointer must not pass this
903 address---that is, for stacks that grow downward, the stack pointer
904 must always be greater than or equal to this address; for stacks
905 that grow upward, the stack pointer must be less than this address.
906 At present, the rtx may be either a REG or a SYMBOL_REF, although
907 the support provided depends on the backend. */
908 rtx stack_limit_rtx;
909
910 /* 0 if pointer arguments may alias each other. True in C.
911 1 if pointer arguments may not alias each other but may alias
912 global variables.
913 2 if pointer arguments may not alias each other and may not
914 alias global variables. True in Fortran.
915 This defaults to 0 for C. */
916 int flag_argument_noalias = 0;
917
918 /* Nonzero if we should do (language-dependent) alias analysis.
919 Typically, this analysis will assume that expressions of certain
920 types do not alias expressions of certain other types. Only used
921 if alias analysis (in general) is enabled. */
922 int flag_strict_aliasing = 0;
923
924 /* Instrument functions with calls at entry and exit, for profiling. */
925 int flag_instrument_function_entry_exit = 0;
926
927 /* Nonzero means ignore `#ident' directives. 0 means handle them.
928 On SVR4 targets, it also controls whether or not to emit a
929 string identifying the compiler. */
930
931 int flag_no_ident = 0;
932
933 /* This will perform a peephole pass before sched2. */
934 int flag_peephole2 = 0;
935
936 /* This will try to guess branch probabilities. */
937 int flag_guess_branch_prob = 0;
938
939 /* -fcheck-bounds causes gcc to generate array bounds checks.
940 For C, C++, ObjC: defaults to off.
941 For Java: defaults to on.
942 For Fortran: defaults to off. */
943 int flag_bounds_check = 0;
944
945 /* This will attempt to merge constant section constants, if 1 only
946 string constants and constants from constant pool, if 2 also constant
947 variables. */
948 int flag_merge_constants = 1;
949
950 /* If one, renumber instruction UIDs to reduce the number of
951 unused UIDs if there are a lot of instructions. If greater than
952 one, unconditionally renumber instruction UIDs. */
953 int flag_renumber_insns = 1;
954
955 /* If nonzero, use the graph coloring register allocator. */
956 int flag_new_regalloc = 0;
957
958 /* Nonzero if we perform superblock formation. */
959
960 int flag_tracer = 0;
961
962 /* Nonzero if we perform whole unit at a time compilation. */
963
964 int flag_unit_at_a_time = 0;
965
966 /* Values of the -falign-* flags: how much to align labels in code.
967 0 means `use default', 1 means `don't align'.
968 For each variable, there is an _log variant which is the power
969 of two not less than the variable, for .align output. */
970
971 int align_loops;
972 int align_loops_log;
973 int align_loops_max_skip;
974 int align_jumps;
975 int align_jumps_log;
976 int align_jumps_max_skip;
977 int align_labels;
978 int align_labels_log;
979 int align_labels_max_skip;
980 int align_functions;
981 int align_functions_log;
982
983 /* Like align_functions_log above, but used by front-ends to force the
984 minimum function alignment. Zero means no alignment is forced. */
985 int force_align_functions_log;
986
987 /* Table of supported debugging formats. */
988 static const struct
989 {
990 const char *const arg;
991 /* Since PREFERRED_DEBUGGING_TYPE isn't necessarily a
992 constant expression, we use NO_DEBUG in its place. */
993 const enum debug_info_type debug_type;
994 const int use_extensions_p;
995 const char *const description;
996 } *da,
997 debug_args[] =
998 {
999 { "", NO_DEBUG, DEFAULT_GDB_EXTENSIONS,
1000 N_("Generate debugging info in default format") },
1001 { "gdb", NO_DEBUG, 1, N_("Generate debugging info in default extended format") },
1002 #ifdef DBX_DEBUGGING_INFO
1003 { "stabs", DBX_DEBUG, 0, N_("Generate STABS format debug info") },
1004 { "stabs+", DBX_DEBUG, 1, N_("Generate extended STABS format debug info") },
1005 #endif
1006 #ifdef DWARF_DEBUGGING_INFO
1007 { "dwarf", DWARF_DEBUG, 0, N_("Generate DWARF-1 format debug info") },
1008 { "dwarf+", DWARF_DEBUG, 1,
1009 N_("Generate extended DWARF-1 format debug info") },
1010 #endif
1011 #ifdef DWARF2_DEBUGGING_INFO
1012 { "dwarf-2", DWARF2_DEBUG, 0, N_("Generate DWARF-2 debug info") },
1013 #endif
1014 #ifdef XCOFF_DEBUGGING_INFO
1015 { "xcoff", XCOFF_DEBUG, 0, N_("Generate XCOFF format debug info") },
1016 { "xcoff+", XCOFF_DEBUG, 1, N_("Generate extended XCOFF format debug info") },
1017 #endif
1018 #ifdef SDB_DEBUGGING_INFO
1019 { "coff", SDB_DEBUG, 0, N_("Generate COFF format debug info") },
1020 #endif
1021 #ifdef VMS_DEBUGGING_INFO
1022 { "vms", VMS_DEBUG, 0, N_("Generate VMS format debug info") },
1023 #endif
1024 { 0, 0, 0, 0 }
1025 };
1026
1027 typedef struct
1028 {
1029 const char *const string;
1030 int *const variable;
1031 const int on_value;
1032 }
1033 lang_independent_options;
1034
1035 /* Nonzero if signed arithmetic overflow should trap. */
1036 int flag_trapv = 0;
1037
1038 /* Nonzero if signed arithmetic overflow should wrap around. */
1039 int flag_wrapv = 0;
1040
1041 /* Add or remove a leading underscore from user symbols. */
1042 int flag_leading_underscore = -1;
1043
1044 /* The user symbol prefix after having resolved same. */
1045 const char *user_label_prefix;
1046
1047 static const param_info lang_independent_params[] = {
1048 #define DEFPARAM(ENUM, OPTION, HELP, DEFAULT) \
1049 { OPTION, DEFAULT, HELP },
1050 #include "params.def"
1051 #undef DEFPARAM
1052 { NULL, 0, NULL }
1053 };
1054
1055 /* Table of language-independent -f options.
1056 STRING is the option name. VARIABLE is the address of the variable.
1057 ON_VALUE is the value to store in VARIABLE
1058 if `-fSTRING' is seen as an option.
1059 (If `-fno-STRING' is seen as an option, the opposite value is stored.) */
1060
1061 static const lang_independent_options f_options[] =
1062 {
1063 {"eliminate-dwarf2-dups", &flag_eliminate_dwarf2_dups, 1 },
1064 {"eliminate-unused-debug-symbols", &flag_debug_only_used_symbols, 1 },
1065 {"eliminate-unused-debug-types", &flag_eliminate_unused_debug_types, 1 },
1066 {"float-store", &flag_float_store, 1 },
1067 {"defer-pop", &flag_defer_pop, 1 },
1068 {"omit-frame-pointer", &flag_omit_frame_pointer, 1 },
1069 {"optimize-sibling-calls", &flag_optimize_sibling_calls, 1 },
1070 {"tracer", &flag_tracer, 1 },
1071 {"unit-at-a-time", &flag_unit_at_a_time, 1 },
1072 {"cse-follow-jumps", &flag_cse_follow_jumps, 1 },
1073 {"cse-skip-blocks", &flag_cse_skip_blocks, 1 },
1074 {"expensive-optimizations", &flag_expensive_optimizations, 1 },
1075 {"thread-jumps", &flag_thread_jumps, 1 },
1076 {"strength-reduce", &flag_strength_reduce, 1 },
1077 {"unroll-loops", &flag_unroll_loops, 1 },
1078 {"unroll-all-loops", &flag_unroll_all_loops, 1 },
1079 {"old-unroll-loops", &flag_old_unroll_loops, 1 },
1080 {"old-unroll-all-loops", &flag_old_unroll_all_loops, 1 },
1081 {"peel-loops", &flag_peel_loops, 1 },
1082 {"unswitch-loops", &flag_unswitch_loops, 1 },
1083 {"prefetch-loop-arrays", &flag_prefetch_loop_arrays, 1 },
1084 {"move-all-movables", &flag_move_all_movables, 1 },
1085 {"reduce-all-givs", &flag_reduce_all_givs, 1 },
1086 {"writable-strings", &flag_writable_strings, 1 },
1087 {"peephole", &flag_no_peephole, 0 },
1088 {"force-mem", &flag_force_mem, 1 },
1089 {"force-addr", &flag_force_addr, 1 },
1090 {"function-cse", &flag_no_function_cse, 0 },
1091 {"inline-functions", &flag_inline_functions, 1 },
1092 {"keep-inline-functions", &flag_keep_inline_functions, 1 },
1093 {"inline", &flag_no_inline, 0 },
1094 {"keep-static-consts", &flag_keep_static_consts, 1 },
1095 {"syntax-only", &flag_syntax_only, 1 },
1096 {"shared-data", &flag_shared_data, 1 },
1097 {"caller-saves", &flag_caller_saves, 1 },
1098 {"pcc-struct-return", &flag_pcc_struct_return, 1 },
1099 {"reg-struct-return", &flag_pcc_struct_return, 0 },
1100 {"delayed-branch", &flag_delayed_branch, 1 },
1101 {"gcse", &flag_gcse, 1 },
1102 {"gcse-lm", &flag_gcse_lm, 1 },
1103 {"gcse-sm", &flag_gcse_sm, 1 },
1104 {"branch-target-load-optimize", &flag_branch_target_load_optimize, 1 },
1105 {"branch-target-load-optimize2", &flag_branch_target_load_optimize2, 1 },
1106 {"loop-optimize", &flag_loop_optimize, 1 },
1107 {"crossjumping", &flag_crossjumping, 1 },
1108 {"if-conversion", &flag_if_conversion, 1 },
1109 {"if-conversion2", &flag_if_conversion2, 1 },
1110 {"rerun-cse-after-loop", &flag_rerun_cse_after_loop, 1 },
1111 {"rerun-loop-opt", &flag_rerun_loop_opt, 1 },
1112 {"delete-null-pointer-checks", &flag_delete_null_pointer_checks, 1 },
1113 {"schedule-insns", &flag_schedule_insns, 1 },
1114 {"schedule-insns2", &flag_schedule_insns_after_reload, 1 },
1115 {"sched-interblock",&flag_schedule_interblock, 1 },
1116 {"sched-spec",&flag_schedule_speculative, 1 },
1117 {"sched-spec-load",&flag_schedule_speculative_load, 1 },
1118 {"sched-spec-load-dangerous",&flag_schedule_speculative_load_dangerous, 1 },
1119 {"sched2-use-superblocks", &flag_sched2_use_superblocks, 1 },
1120 {"sched2-use-traces", &flag_sched2_use_traces, 1 },
1121 {"branch-count-reg",&flag_branch_on_count_reg, 1 },
1122 {"pic", &flag_pic, 1 },
1123 {"PIC", &flag_pic, 2 },
1124 {"pie", &flag_pie, 1 },
1125 {"PIE", &flag_pie, 2 },
1126 {"exceptions", &flag_exceptions, 1 },
1127 {"unwind-tables", &flag_unwind_tables, 1 },
1128 {"asynchronous-unwind-tables", &flag_asynchronous_unwind_tables, 1 },
1129 {"non-call-exceptions", &flag_non_call_exceptions, 1 },
1130 {"profile-arcs", &profile_arc_flag, 1 },
1131 {"test-coverage", &flag_test_coverage, 1 },
1132 {"branch-probabilities", &flag_branch_probabilities, 1 },
1133 {"profile", &profile_flag, 1 },
1134 {"reorder-blocks", &flag_reorder_blocks, 1 },
1135 {"reorder-functions", &flag_reorder_functions, 1 },
1136 {"rename-registers", &flag_rename_registers, 1 },
1137 {"cprop-registers", &flag_cprop_registers, 1 },
1138 {"common", &flag_no_common, 0 },
1139 {"inhibit-size-directive", &flag_inhibit_size_directive, 1 },
1140 {"function-sections", &flag_function_sections, 1 },
1141 {"data-sections", &flag_data_sections, 1 },
1142 {"verbose-asm", &flag_verbose_asm, 1 },
1143 {"gnu-linker", &flag_gnu_linker, 1 },
1144 {"regmove", &flag_regmove, 1 },
1145 {"optimize-register-move", &flag_regmove, 1 },
1146 {"pack-struct", &flag_pack_struct, 1 },
1147 {"stack-check", &flag_stack_check, 1 },
1148 {"argument-alias", &flag_argument_noalias, 0 },
1149 {"argument-noalias", &flag_argument_noalias, 1 },
1150 {"argument-noalias-global", &flag_argument_noalias, 2 },
1151 {"strict-aliasing", &flag_strict_aliasing, 1 },
1152 {"align-loops", &align_loops, 0 },
1153 {"align-jumps", &align_jumps, 0 },
1154 {"align-labels", &align_labels, 0 },
1155 {"align-functions", &align_functions, 0 },
1156 {"merge-constants", &flag_merge_constants, 1 },
1157 {"merge-all-constants", &flag_merge_constants, 2 },
1158 {"dump-unnumbered", &flag_dump_unnumbered, 1 },
1159 {"instrument-functions", &flag_instrument_function_entry_exit, 1 },
1160 {"zero-initialized-in-bss", &flag_zero_initialized_in_bss, 1 },
1161 {"ssa", &flag_ssa, 1 },
1162 {"ssa-ccp", &flag_ssa_ccp, 1 },
1163 {"ssa-dce", &flag_ssa_dce, 1 },
1164 {"leading-underscore", &flag_leading_underscore, 1 },
1165 {"ident", &flag_no_ident, 0 },
1166 { "peephole2", &flag_peephole2, 1 },
1167 {"finite-math-only", &flag_finite_math_only, 1 },
1168 { "guess-branch-probability", &flag_guess_branch_prob, 1 },
1169 {"math-errno", &flag_errno_math, 1 },
1170 {"trapping-math", &flag_trapping_math, 1 },
1171 {"unsafe-math-optimizations", &flag_unsafe_math_optimizations, 1 },
1172 {"signaling-nans", &flag_signaling_nans, 1 },
1173 {"bounds-check", &flag_bounds_check, 1 },
1174 {"single-precision-constant", &flag_single_precision_constant, 1 },
1175 {"time-report", &time_report, 1 },
1176 {"mem-report", &mem_report, 1 },
1177 { "trapv", &flag_trapv, 1 },
1178 { "wrapv", &flag_wrapv, 1 },
1179 { "new-ra", &flag_new_regalloc, 1 }
1180 };
1181
1182 /* Here is a table, controlled by the tm.h file, listing each -m switch
1183 and which bits in `target_switches' it should set or clear.
1184 If VALUE is positive, it is bits to set.
1185 If VALUE is negative, -VALUE is bits to clear.
1186 (The sign bit is not used so there is no confusion.) */
1187
1188 static const struct
1189 {
1190 const char *const name;
1191 const int value;
1192 const char *const description;
1193 }
1194 target_switches[] = TARGET_SWITCHES;
1195
1196 /* This table is similar, but allows the switch to have a value. */
1197
1198 #ifdef TARGET_OPTIONS
1199 static const struct
1200 {
1201 const char *const prefix;
1202 const char **const variable;
1203 const char *const description;
1204 const char *const value;
1205 }
1206 target_options[] = TARGET_OPTIONS;
1207 #endif
1208
1209 /* Nonzero means warn about function definitions that default the return type
1210 or that use a null return and have a return-type other than void. */
1211
1212 int warn_return_type;
1213
1214 /* Output files for assembler code (real compiler output)
1215 and debugging dumps. */
1216
1217 FILE *asm_out_file;
1218 FILE *aux_info_file;
1219 FILE *rtl_dump_file = NULL;
1220 FILE *cgraph_dump_file = NULL;
1221
1222 /* Set up a default flag_random_seed and local_tick, unless the user
1223 already specified one. */
1224
1225 static void
1226 randomize (void)
1227 {
1228 if (!flag_random_seed)
1229 {
1230 unsigned HOST_WIDE_INT value;
1231 static char random_seed[HOST_BITS_PER_WIDE_INT / 4 + 3];
1232
1233 /* Get some more or less random data. */
1234 #ifdef HAVE_GETTIMEOFDAY
1235 {
1236 struct timeval tv;
1237
1238 gettimeofday (&tv, NULL);
1239 local_tick = tv.tv_sec * 1000 + tv.tv_usec / 1000;
1240 }
1241 #else
1242 {
1243 time_t now = time (NULL);
1244
1245 if (now != (time_t)-1)
1246 local_tick = (unsigned) now;
1247 }
1248 #endif
1249 value = local_tick ^ getpid ();
1250
1251 sprintf (random_seed, HOST_WIDE_INT_PRINT_HEX, value);
1252 flag_random_seed = random_seed;
1253 }
1254 else if (!local_tick)
1255 local_tick = -1;
1256 }
1257
1258
1259 /* Decode the string P as an integral parameter.
1260 If the string is indeed an integer return its numeric value else
1261 issue an Invalid Option error for the option PNAME and return DEFVAL.
1262 If PNAME is zero just return DEFVAL, do not call error. */
1263
1264 int
1265 read_integral_parameter (const char *p, const char *pname, const int defval)
1266 {
1267 const char *endp = p;
1268
1269 while (*endp)
1270 {
1271 if (ISDIGIT (*endp))
1272 endp++;
1273 else
1274 break;
1275 }
1276
1277 if (*endp != 0)
1278 {
1279 if (pname != 0)
1280 error ("invalid option argument `%s'", pname);
1281 return defval;
1282 }
1283
1284 return atoi (p);
1285 }
1286
1287 /* Return the logarithm of X, base 2, considering X unsigned,
1288 if X is a power of 2. Otherwise, returns -1.
1289
1290 This should be used via the `exact_log2' macro. */
1291
1292 int
1293 exact_log2_wide (unsigned HOST_WIDE_INT x)
1294 {
1295 int log = 0;
1296 /* Test for 0 or a power of 2. */
1297 if (x == 0 || x != (x & -x))
1298 return -1;
1299 while ((x >>= 1) != 0)
1300 log++;
1301 return log;
1302 }
1303
1304 /* Given X, an unsigned number, return the largest int Y such that 2**Y <= X.
1305 If X is 0, return -1.
1306
1307 This should be used via the floor_log2 macro. */
1308
1309 int
1310 floor_log2_wide (unsigned HOST_WIDE_INT x)
1311 {
1312 int log = -1;
1313 while (x != 0)
1314 log++,
1315 x >>= 1;
1316 return log;
1317 }
1318
1319 /* Handler for fatal signals, such as SIGSEGV. These are transformed
1320 into ICE messages, which is much more user friendly. In case the
1321 error printer crashes, reset the signal to prevent infinite recursion. */
1322
1323 static void
1324 crash_signal (int signo)
1325 {
1326 signal (signo, SIG_DFL);
1327 internal_error ("%s", strsignal (signo));
1328 }
1329
1330 /* Arrange to dump core on error. (The regular error message is still
1331 printed first, except in the case of abort().) */
1332
1333 static void
1334 setup_core_dumping (void)
1335 {
1336 #ifdef SIGABRT
1337 signal (SIGABRT, SIG_DFL);
1338 #endif
1339 #if defined(HAVE_SETRLIMIT)
1340 {
1341 struct rlimit rlim;
1342 if (getrlimit (RLIMIT_CORE, &rlim) != 0)
1343 fatal_error ("getting core file size maximum limit: %m");
1344 rlim.rlim_cur = rlim.rlim_max;
1345 if (setrlimit (RLIMIT_CORE, &rlim) != 0)
1346 fatal_error ("setting core file size limit to maximum: %m");
1347 }
1348 #endif
1349 diagnostic_abort_on_error (global_dc);
1350 }
1351
1352
1353 /* Strip off a legitimate source ending from the input string NAME of
1354 length LEN. Rather than having to know the names used by all of
1355 our front ends, we strip off an ending of a period followed by
1356 up to five characters. (Java uses ".class".) */
1357
1358 void
1359 strip_off_ending (char *name, int len)
1360 {
1361 int i;
1362 for (i = 2; i < 6 && len > i; i++)
1363 {
1364 if (name[len - i] == '.')
1365 {
1366 name[len - i] = '\0';
1367 break;
1368 }
1369 }
1370 }
1371
1372 /* Output a quoted string. */
1373
1374 void
1375 output_quoted_string (FILE *asm_file, const char *string)
1376 {
1377 #ifdef OUTPUT_QUOTED_STRING
1378 OUTPUT_QUOTED_STRING (asm_file, string);
1379 #else
1380 char c;
1381
1382 putc ('\"', asm_file);
1383 while ((c = *string++) != 0)
1384 {
1385 if (ISPRINT (c))
1386 {
1387 if (c == '\"' || c == '\\')
1388 putc ('\\', asm_file);
1389 putc (c, asm_file);
1390 }
1391 else
1392 fprintf (asm_file, "\\%03o", (unsigned char) c);
1393 }
1394 putc ('\"', asm_file);
1395 #endif
1396 }
1397
1398 /* Output a file name in the form wanted by System V. */
1399
1400 void
1401 output_file_directive (FILE *asm_file, const char *input_name)
1402 {
1403 int len = strlen (input_name);
1404 const char *na = input_name + len;
1405
1406 /* NA gets INPUT_NAME sans directory names. */
1407 while (na > input_name)
1408 {
1409 if (IS_DIR_SEPARATOR (na[-1]))
1410 break;
1411 na--;
1412 }
1413
1414 #ifdef ASM_OUTPUT_MAIN_SOURCE_FILENAME
1415 ASM_OUTPUT_MAIN_SOURCE_FILENAME (asm_file, na);
1416 #else
1417 #ifdef ASM_OUTPUT_SOURCE_FILENAME
1418 ASM_OUTPUT_SOURCE_FILENAME (asm_file, na);
1419 #else
1420 fprintf (asm_file, "\t.file\t");
1421 output_quoted_string (asm_file, na);
1422 fputc ('\n', asm_file);
1423 #endif
1424 #endif
1425 }
1426
1427 /* Routine to open a dump file. Return true if the dump file is enabled. */
1428
1429 static int
1430 open_dump_file (enum dump_file_index index, tree decl)
1431 {
1432 char *dump_name;
1433 const char *open_arg;
1434 char seq[16];
1435
1436 if (! dump_file[index].enabled)
1437 return 0;
1438
1439 timevar_push (TV_DUMP);
1440 if (rtl_dump_file != NULL)
1441 fclose (rtl_dump_file);
1442
1443 sprintf (seq, DUMPFILE_FORMAT, index);
1444
1445 if (! dump_file[index].initialized)
1446 {
1447 /* If we've not initialized the files, do so now. */
1448 if (graph_dump_format != no_graph
1449 && dump_file[index].graph_dump_p)
1450 {
1451 dump_name = concat (seq, dump_file[index].extension, NULL);
1452 clean_graph_dump_file (dump_base_name, dump_name);
1453 free (dump_name);
1454 }
1455 dump_file[index].initialized = 1;
1456 open_arg = "w";
1457 }
1458 else
1459 open_arg = "a";
1460
1461 dump_name = concat (dump_base_name, seq,
1462 dump_file[index].extension, NULL);
1463
1464 rtl_dump_file = fopen (dump_name, open_arg);
1465 if (rtl_dump_file == NULL)
1466 fatal_error ("can't open %s: %m", dump_name);
1467
1468 free (dump_name);
1469
1470 if (decl)
1471 fprintf (rtl_dump_file, "\n;; Function %s%s\n\n",
1472 (*lang_hooks.decl_printable_name) (decl, 2),
1473 cfun->function_frequency == FUNCTION_FREQUENCY_HOT
1474 ? " (hot)"
1475 : cfun->function_frequency == FUNCTION_FREQUENCY_UNLIKELY_EXECUTED
1476 ? " (unlikely executed)"
1477 : "");
1478
1479 timevar_pop (TV_DUMP);
1480 return 1;
1481 }
1482
1483 /* Routine to close a dump file. */
1484
1485 static void
1486 close_dump_file (enum dump_file_index index,
1487 void (*func) (FILE *, rtx),
1488 rtx insns)
1489 {
1490 if (! rtl_dump_file)
1491 return;
1492
1493 timevar_push (TV_DUMP);
1494 if (insns
1495 && graph_dump_format != no_graph
1496 && dump_file[index].graph_dump_p)
1497 {
1498 char seq[16];
1499 char *suffix;
1500
1501 sprintf (seq, DUMPFILE_FORMAT, index);
1502 suffix = concat (seq, dump_file[index].extension, NULL);
1503 print_rtl_graph_with_bb (dump_base_name, suffix, insns);
1504 free (suffix);
1505 }
1506
1507 if (func && insns)
1508 func (rtl_dump_file, insns);
1509
1510 fflush (rtl_dump_file);
1511 fclose (rtl_dump_file);
1512
1513 rtl_dump_file = NULL;
1514 timevar_pop (TV_DUMP);
1515 }
1516
1517 /* Do any final processing required for the declarations in VEC, of
1518 which there are LEN. We write out inline functions and variables
1519 that have been deferred until this point, but which are required.
1520 Returns nonzero if anything was put out. */
1521
1522 int
1523 wrapup_global_declarations (tree *vec, int len)
1524 {
1525 tree decl;
1526 int i;
1527 int reconsider;
1528 int output_something = 0;
1529
1530 for (i = 0; i < len; i++)
1531 {
1532 decl = vec[i];
1533
1534 /* We're not deferring this any longer. Assignment is
1535 conditional to avoid needlessly dirtying PCH pages. */
1536 if (DECL_DEFER_OUTPUT (decl) != 0)
1537 DECL_DEFER_OUTPUT (decl) = 0;
1538
1539 if (TREE_CODE (decl) == VAR_DECL && DECL_SIZE (decl) == 0)
1540 (*lang_hooks.finish_incomplete_decl) (decl);
1541 }
1542
1543 /* Now emit any global variables or functions that we have been
1544 putting off. We need to loop in case one of the things emitted
1545 here references another one which comes earlier in the list. */
1546 do
1547 {
1548 reconsider = 0;
1549 for (i = 0; i < len; i++)
1550 {
1551 decl = vec[i];
1552
1553 if (TREE_ASM_WRITTEN (decl) || DECL_EXTERNAL (decl))
1554 continue;
1555
1556 /* Don't write out static consts, unless we still need them.
1557
1558 We also keep static consts if not optimizing (for debugging),
1559 unless the user specified -fno-keep-static-consts.
1560 ??? They might be better written into the debug information.
1561 This is possible when using DWARF.
1562
1563 A language processor that wants static constants to be always
1564 written out (even if it is not used) is responsible for
1565 calling rest_of_decl_compilation itself. E.g. the C front-end
1566 calls rest_of_decl_compilation from finish_decl.
1567 One motivation for this is that is conventional in some
1568 environments to write things like:
1569 static const char rcsid[] = "... version string ...";
1570 intending to force the string to be in the executable.
1571
1572 A language processor that would prefer to have unneeded
1573 static constants "optimized away" would just defer writing
1574 them out until here. E.g. C++ does this, because static
1575 constants are often defined in header files.
1576
1577 ??? A tempting alternative (for both C and C++) would be
1578 to force a constant to be written if and only if it is
1579 defined in a main file, as opposed to an include file. */
1580
1581 if (TREE_CODE (decl) == VAR_DECL && TREE_STATIC (decl))
1582 {
1583 bool needed = 1;
1584
1585 if (flag_unit_at_a_time
1586 && cgraph_varpool_node (decl)->finalized)
1587 needed = 0;
1588 else if (flag_unit_at_a_time
1589 && (TREE_USED (decl)
1590 || TREE_USED (DECL_ASSEMBLER_NAME (decl))))
1591 /* needed */;
1592 else if (TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl)))
1593 /* needed */;
1594 else if (DECL_COMDAT (decl))
1595 needed = 0;
1596 else if (TREE_READONLY (decl) && !TREE_PUBLIC (decl)
1597 && (optimize || !flag_keep_static_consts
1598 || DECL_ARTIFICIAL (decl)))
1599 needed = 0;
1600
1601 if (needed)
1602 {
1603 reconsider = 1;
1604 rest_of_decl_compilation (decl, NULL, 1, 1);
1605 }
1606 }
1607
1608 if (TREE_CODE (decl) == FUNCTION_DECL
1609 && DECL_INITIAL (decl) != 0
1610 && DECL_SAVED_INSNS (decl) != 0
1611 && (flag_keep_inline_functions
1612 || (TREE_PUBLIC (decl) && !DECL_COMDAT (decl))
1613 || TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl))))
1614 {
1615 reconsider = 1;
1616 output_inline_function (decl);
1617 }
1618 }
1619
1620 if (reconsider)
1621 output_something = 1;
1622 }
1623 while (reconsider);
1624
1625 return output_something;
1626 }
1627
1628 /* Issue appropriate warnings for the global declarations in VEC (of
1629 which there are LEN). Output debugging information for them. */
1630
1631 void
1632 check_global_declarations (tree *vec, int len)
1633 {
1634 tree decl;
1635 int i;
1636
1637 for (i = 0; i < len; i++)
1638 {
1639 decl = vec[i];
1640
1641 if (TREE_CODE (decl) == VAR_DECL && TREE_STATIC (decl)
1642 && ! TREE_ASM_WRITTEN (decl))
1643 /* Cancel the RTL for this decl so that, if debugging info
1644 output for global variables is still to come,
1645 this one will be omitted. */
1646 SET_DECL_RTL (decl, NULL_RTX);
1647
1648 /* Warn about any function
1649 declared static but not defined.
1650 We don't warn about variables,
1651 because many programs have static variables
1652 that exist only to get some text into the object file. */
1653 if (TREE_CODE (decl) == FUNCTION_DECL
1654 && (warn_unused_function
1655 || TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl)))
1656 && DECL_INITIAL (decl) == 0
1657 && DECL_EXTERNAL (decl)
1658 && ! DECL_ARTIFICIAL (decl)
1659 && ! TREE_PUBLIC (decl))
1660 {
1661 if (TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl)))
1662 pedwarn_with_decl (decl,
1663 "`%s' used but never defined");
1664 else
1665 warning_with_decl (decl,
1666 "`%s' declared `static' but never defined");
1667 /* This symbol is effectively an "extern" declaration now. */
1668 TREE_PUBLIC (decl) = 1;
1669 assemble_external (decl);
1670 }
1671
1672 /* Warn about static fns or vars defined but not used. */
1673 if (((warn_unused_function && TREE_CODE (decl) == FUNCTION_DECL)
1674 || (warn_unused_variable && TREE_CODE (decl) == VAR_DECL))
1675 && ! TREE_USED (decl)
1676 /* The TREE_USED bit for file-scope decls is kept in the identifier,
1677 to handle multiple external decls in different scopes. */
1678 && ! TREE_USED (DECL_NAME (decl))
1679 && ! DECL_EXTERNAL (decl)
1680 && ! TREE_PUBLIC (decl)
1681 /* A volatile variable might be used in some non-obvious way. */
1682 && ! TREE_THIS_VOLATILE (decl)
1683 /* Global register variables must be declared to reserve them. */
1684 && ! (TREE_CODE (decl) == VAR_DECL && DECL_REGISTER (decl))
1685 /* Otherwise, ask the language. */
1686 && (*lang_hooks.decls.warn_unused_global) (decl))
1687 warning_with_decl (decl, "`%s' defined but not used");
1688
1689 /* Avoid confusing the debug information machinery when there are
1690 errors. */
1691 if (errorcount == 0 && sorrycount == 0)
1692 {
1693 timevar_push (TV_SYMOUT);
1694 (*debug_hooks->global_decl) (decl);
1695 timevar_pop (TV_SYMOUT);
1696 }
1697 }
1698 }
1699
1700 /* Save the current INPUT_LOCATION on the top entry in the
1701 INPUT_FILE_STACK. Push a new entry for FILE and LINE, and set the
1702 INPUT_LOCATION accordingly. */
1703
1704 void
1705 push_srcloc (const char *file, int line)
1706 {
1707 struct file_stack *fs;
1708
1709 fs = xmalloc (sizeof (struct file_stack));
1710 fs->location = input_location;
1711 fs->next = input_file_stack;
1712 input_filename = file;
1713 input_line = line;
1714 input_file_stack = fs;
1715 input_file_stack_tick++;
1716 }
1717
1718 /* Pop the top entry off the stack of presently open source files.
1719 Restore the INPUT_LOCATION from the new topmost entry on the
1720 stack. */
1721
1722 void
1723 pop_srcloc (void)
1724 {
1725 struct file_stack *fs;
1726
1727 fs = input_file_stack;
1728 input_location = fs->location;
1729 input_file_stack = fs->next;
1730 free (fs);
1731 input_file_stack_tick++;
1732 }
1733
1734 /* Compile an entire translation unit. Write a file of assembly
1735 output and various debugging dumps. */
1736
1737 static void
1738 compile_file (void)
1739 {
1740 /* Initialize yet another pass. */
1741
1742 init_final (main_input_filename);
1743 coverage_init (aux_base_name);
1744
1745 timevar_push (TV_PARSE);
1746
1747 /* Call the parser, which parses the entire file (calling
1748 rest_of_compilation for each function). */
1749 (*lang_hooks.parse_file) (set_yydebug);
1750
1751 /* In case there were missing block closers,
1752 get us back to the global binding level. */
1753 (*lang_hooks.clear_binding_stack) ();
1754
1755 /* Compilation is now finished except for writing
1756 what's left of the symbol table output. */
1757 timevar_pop (TV_PARSE);
1758
1759 if (flag_syntax_only)
1760 return;
1761
1762 (*lang_hooks.decls.final_write_globals)();
1763
1764 cgraph_varpool_assemble_pending_decls ();
1765
1766 /* This must occur after the loop to output deferred functions.
1767 Else the coverage initializer would not be emitted if all the
1768 functions in this compilation unit were deferred. */
1769 coverage_finish ();
1770
1771 /* Write out any pending weak symbol declarations. */
1772
1773 weak_finish ();
1774
1775 /* Do dbx symbols. */
1776 timevar_push (TV_SYMOUT);
1777
1778 #ifdef DWARF2_UNWIND_INFO
1779 if (dwarf2out_do_frame ())
1780 dwarf2out_frame_finish ();
1781 #endif
1782
1783 (*debug_hooks->finish) (main_input_filename);
1784 timevar_pop (TV_SYMOUT);
1785
1786 /* Output some stuff at end of file if nec. */
1787
1788 dw2_output_indirect_constants ();
1789
1790 if (profile_arc_flag || flag_test_coverage || flag_branch_probabilities)
1791 {
1792 timevar_push (TV_DUMP);
1793 open_dump_file (DFI_bp, NULL);
1794
1795 end_branch_prob ();
1796
1797 close_dump_file (DFI_bp, NULL, NULL_RTX);
1798 timevar_pop (TV_DUMP);
1799 }
1800
1801 targetm.asm_out.file_end ();
1802
1803 /* Attach a special .ident directive to the end of the file to identify
1804 the version of GCC which compiled this code. The format of the .ident
1805 string is patterned after the ones produced by native SVR4 compilers. */
1806 #ifdef IDENT_ASM_OP
1807 if (!flag_no_ident)
1808 fprintf (asm_out_file, "%s\"GCC: (GNU) %s\"\n",
1809 IDENT_ASM_OP, version_string);
1810 #endif
1811
1812 if (optimize > 0 && open_dump_file (DFI_combine, NULL))
1813 {
1814 timevar_push (TV_DUMP);
1815 dump_combine_total_stats (rtl_dump_file);
1816 close_dump_file (DFI_combine, NULL, NULL_RTX);
1817 timevar_pop (TV_DUMP);
1818 }
1819 }
1820
1821 /* This is called from various places for FUNCTION_DECL, VAR_DECL,
1822 and TYPE_DECL nodes.
1823
1824 This does nothing for local (non-static) variables, unless the
1825 variable is a register variable with an ASMSPEC. In that case, or
1826 if the variable is not an automatic, it sets up the RTL and
1827 outputs any assembler code (label definition, storage allocation
1828 and initialization).
1829
1830 DECL is the declaration. If ASMSPEC is nonzero, it specifies
1831 the assembler symbol name to be used. TOP_LEVEL is nonzero
1832 if this declaration is not within a function. */
1833
1834 void
1835 rest_of_decl_compilation (tree decl,
1836 const char *asmspec,
1837 int top_level,
1838 int at_end)
1839 {
1840 /* We deferred calling assemble_alias so that we could collect
1841 other attributes such as visibility. Emit the alias now. */
1842 {
1843 tree alias;
1844 alias = lookup_attribute ("alias", DECL_ATTRIBUTES (decl));
1845 if (alias)
1846 {
1847 alias = TREE_VALUE (TREE_VALUE (alias));
1848 alias = get_identifier (TREE_STRING_POINTER (alias));
1849 assemble_alias (decl, alias);
1850 }
1851 }
1852
1853 /* Forward declarations for nested functions are not "external",
1854 but we need to treat them as if they were. */
1855 if (TREE_STATIC (decl) || DECL_EXTERNAL (decl)
1856 || TREE_CODE (decl) == FUNCTION_DECL)
1857 {
1858 timevar_push (TV_VARCONST);
1859
1860 if (asmspec)
1861 make_decl_rtl (decl, asmspec);
1862
1863 /* Don't output anything when a tentative file-scope definition
1864 is seen. But at end of compilation, do output code for them. */
1865 if (at_end || !DECL_DEFER_OUTPUT (decl))
1866 {
1867 if (flag_unit_at_a_time && !cgraph_global_info_ready
1868 && TREE_CODE (decl) != FUNCTION_DECL && top_level)
1869 cgraph_varpool_finalize_decl (decl);
1870 else
1871 assemble_variable (decl, top_level, at_end, 0);
1872 }
1873
1874 #ifdef ASM_FINISH_DECLARE_OBJECT
1875 if (decl == last_assemble_variable_decl)
1876 {
1877 ASM_FINISH_DECLARE_OBJECT (asm_out_file, decl,
1878 top_level, at_end);
1879 }
1880 #endif
1881
1882 timevar_pop (TV_VARCONST);
1883 }
1884 else if (DECL_REGISTER (decl) && asmspec != 0)
1885 {
1886 if (decode_reg_name (asmspec) >= 0)
1887 {
1888 SET_DECL_RTL (decl, NULL_RTX);
1889 make_decl_rtl (decl, asmspec);
1890 }
1891 else
1892 {
1893 error ("invalid register name `%s' for register variable", asmspec);
1894 DECL_REGISTER (decl) = 0;
1895 if (!top_level)
1896 expand_decl (decl);
1897 }
1898 }
1899 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)
1900 else if ((write_symbols == DBX_DEBUG || write_symbols == XCOFF_DEBUG)
1901 && TREE_CODE (decl) == TYPE_DECL)
1902 {
1903 timevar_push (TV_SYMOUT);
1904 dbxout_symbol (decl, 0);
1905 timevar_pop (TV_SYMOUT);
1906 }
1907 #endif
1908 #ifdef SDB_DEBUGGING_INFO
1909 else if (write_symbols == SDB_DEBUG && top_level
1910 && TREE_CODE (decl) == TYPE_DECL)
1911 {
1912 timevar_push (TV_SYMOUT);
1913 sdbout_symbol (decl, 0);
1914 timevar_pop (TV_SYMOUT);
1915 }
1916 #endif
1917 #ifdef DWARF2_DEBUGGING_INFO
1918 else if ((write_symbols == DWARF2_DEBUG
1919 || write_symbols == VMS_AND_DWARF2_DEBUG)
1920 && top_level
1921 && TREE_CODE (decl) == TYPE_DECL)
1922 {
1923 timevar_push (TV_SYMOUT);
1924 dwarf2out_decl (decl);
1925 timevar_pop (TV_SYMOUT);
1926 }
1927 #endif
1928 }
1929
1930 /* Called after finishing a record, union or enumeral type. */
1931
1932 void
1933 rest_of_type_compilation (
1934 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO) \
1935 || defined (SDB_DEBUGGING_INFO) || defined (DWARF2_DEBUGGING_INFO)
1936 tree type,
1937 int toplev
1938 #else
1939 tree type ATTRIBUTE_UNUSED,
1940 int toplev ATTRIBUTE_UNUSED
1941 #endif
1942 )
1943 {
1944 /* Avoid confusing the debug information machinery when there are
1945 errors. */
1946 if (errorcount != 0 || sorrycount != 0)
1947 return;
1948
1949 timevar_push (TV_SYMOUT);
1950 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)
1951 if (write_symbols == DBX_DEBUG || write_symbols == XCOFF_DEBUG)
1952 dbxout_symbol (TYPE_STUB_DECL (type), !toplev);
1953 #endif
1954 #ifdef SDB_DEBUGGING_INFO
1955 if (write_symbols == SDB_DEBUG)
1956 sdbout_symbol (TYPE_STUB_DECL (type), !toplev);
1957 #endif
1958 #ifdef DWARF2_DEBUGGING_INFO
1959 if ((write_symbols == DWARF2_DEBUG
1960 || write_symbols == VMS_AND_DWARF2_DEBUG)
1961 && toplev)
1962 dwarf2out_decl (TYPE_STUB_DECL (type));
1963 #endif
1964 timevar_pop (TV_SYMOUT);
1965 }
1966
1967 /* Turn the RTL into assembly. */
1968 static void
1969 rest_of_handle_final (tree decl, rtx insns)
1970 {
1971 timevar_push (TV_FINAL);
1972 {
1973 rtx x;
1974 const char *fnname;
1975
1976 /* Get the function's name, as described by its RTL. This may be
1977 different from the DECL_NAME name used in the source file. */
1978
1979 x = DECL_RTL (decl);
1980 if (GET_CODE (x) != MEM)
1981 abort ();
1982 x = XEXP (x, 0);
1983 if (GET_CODE (x) != SYMBOL_REF)
1984 abort ();
1985 fnname = XSTR (x, 0);
1986
1987 assemble_start_function (decl, fnname);
1988 final_start_function (insns, asm_out_file, optimize);
1989 final (insns, asm_out_file, optimize, 0);
1990 final_end_function ();
1991
1992 #ifdef IA64_UNWIND_INFO
1993 /* ??? The IA-64 ".handlerdata" directive must be issued before
1994 the ".endp" directive that closes the procedure descriptor. */
1995 output_function_exception_table ();
1996 #endif
1997
1998 assemble_end_function (decl, fnname);
1999
2000 #ifndef IA64_UNWIND_INFO
2001 /* Otherwise, it feels unclean to switch sections in the middle. */
2002 output_function_exception_table ();
2003 #endif
2004
2005 if (! quiet_flag)
2006 fflush (asm_out_file);
2007
2008 /* Release all memory allocated by flow. */
2009 free_basic_block_vars (0);
2010
2011 /* Release all memory held by regsets now. */
2012 regset_release_memory ();
2013 }
2014 timevar_pop (TV_FINAL);
2015
2016 ggc_collect ();
2017 }
2018
2019 #ifdef DELAY_SLOTS
2020 /* Run delay slot optimization. */
2021 static void
2022 rest_of_handle_delay_slots (tree decl, rtx insns)
2023 {
2024 timevar_push (TV_DBR_SCHED);
2025 open_dump_file (DFI_dbr, decl);
2026
2027 dbr_schedule (insns, rtl_dump_file);
2028
2029 close_dump_file (DFI_dbr, print_rtl, insns);
2030 timevar_pop (TV_DBR_SCHED);
2031
2032 ggc_collect ();
2033 }
2034 #endif
2035
2036 #ifdef STACK_REGS
2037 /* Convert register usage from flat register file usage to a stack
2038 register file. */
2039 static void
2040 rest_of_handle_stack_regs (tree decl, rtx insns)
2041 {
2042 timevar_push (TV_REG_STACK);
2043 open_dump_file (DFI_stack, decl);
2044
2045 if (reg_to_stack (insns, rtl_dump_file) && optimize)
2046 {
2047 if (cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_POST_REGSTACK
2048 | (flag_crossjumping ? CLEANUP_CROSSJUMP : 0))
2049 && flag_reorder_blocks)
2050 {
2051 reorder_basic_blocks ();
2052 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_POST_REGSTACK);
2053 }
2054 }
2055
2056 close_dump_file (DFI_stack, print_rtl_with_bb, insns);
2057 timevar_pop (TV_REG_STACK);
2058
2059 ggc_collect ();
2060 }
2061 #endif
2062
2063
2064 /* Machine independent reorg pass. */
2065 static void
2066 rest_of_handle_machine_reorg (tree decl, rtx insns)
2067 {
2068 timevar_push (TV_MACH_DEP);
2069 open_dump_file (DFI_mach, decl);
2070
2071 (*targetm.machine_dependent_reorg) ();
2072
2073 close_dump_file (DFI_mach, print_rtl, insns);
2074 timevar_pop (TV_MACH_DEP);
2075
2076 ggc_collect ();
2077 }
2078
2079
2080 /* Run new register allocator. Return TRUE if we must exit
2081 rest_of_compilation upon return. */
2082 static bool
2083 rest_of_handle_new_regalloc (tree decl, rtx insns, int *rebuild_notes)
2084 {
2085 int failure;
2086
2087 delete_trivially_dead_insns (insns, max_reg_num ());
2088 reg_alloc ();
2089
2090 timevar_pop (TV_LOCAL_ALLOC);
2091 if (dump_file[DFI_lreg].enabled)
2092 {
2093 timevar_push (TV_DUMP);
2094
2095 close_dump_file (DFI_lreg, NULL, NULL);
2096 timevar_pop (TV_DUMP);
2097 }
2098
2099 /* XXX clean up the whole mess to bring live info in shape again. */
2100 timevar_push (TV_GLOBAL_ALLOC);
2101 open_dump_file (DFI_greg, decl);
2102
2103 build_insn_chain (insns);
2104 failure = reload (insns, 0);
2105
2106 timevar_pop (TV_GLOBAL_ALLOC);
2107
2108 if (dump_file[DFI_greg].enabled)
2109 {
2110 timevar_push (TV_DUMP);
2111
2112 dump_global_regs (rtl_dump_file);
2113
2114 close_dump_file (DFI_greg, print_rtl_with_bb, insns);
2115 timevar_pop (TV_DUMP);
2116 }
2117
2118 if (failure)
2119 return true;
2120
2121 reload_completed = 1;
2122 *rebuild_notes = 0;
2123
2124 return false;
2125 }
2126
2127 /* Run old register allocator. Return TRUE if we must exit
2128 rest_of_compilation upon return. */
2129 static bool
2130 rest_of_handle_old_regalloc (tree decl, rtx insns, int *rebuild_notes)
2131 {
2132 int failure;
2133
2134 /* Allocate the reg_renumber array. */
2135 allocate_reg_info (max_regno, FALSE, TRUE);
2136
2137 /* And the reg_equiv_memory_loc array. */
2138 reg_equiv_memory_loc = xcalloc (max_regno, sizeof (rtx));
2139
2140 allocate_initial_values (reg_equiv_memory_loc);
2141
2142 regclass (insns, max_reg_num (), rtl_dump_file);
2143 *rebuild_notes = local_alloc ();
2144
2145 timevar_pop (TV_LOCAL_ALLOC);
2146
2147 if (dump_file[DFI_lreg].enabled)
2148 {
2149 timevar_push (TV_DUMP);
2150
2151 dump_flow_info (rtl_dump_file);
2152 dump_local_alloc (rtl_dump_file);
2153
2154 close_dump_file (DFI_lreg, print_rtl_with_bb, insns);
2155 timevar_pop (TV_DUMP);
2156 }
2157
2158 ggc_collect ();
2159
2160 timevar_push (TV_GLOBAL_ALLOC);
2161 open_dump_file (DFI_greg, decl);
2162
2163 /* If optimizing, allocate remaining pseudo-regs. Do the reload
2164 pass fixing up any insns that are invalid. */
2165
2166 if (optimize)
2167 failure = global_alloc (rtl_dump_file);
2168 else
2169 {
2170 build_insn_chain (insns);
2171 failure = reload (insns, 0);
2172 }
2173
2174 timevar_pop (TV_GLOBAL_ALLOC);
2175
2176 if (dump_file[DFI_greg].enabled)
2177 {
2178 timevar_push (TV_DUMP);
2179
2180 dump_global_regs (rtl_dump_file);
2181
2182 close_dump_file (DFI_greg, print_rtl_with_bb, insns);
2183 timevar_pop (TV_DUMP);
2184 }
2185
2186 return failure;
2187 }
2188
2189 /* Run the regrename and cprop passes. */
2190 static void
2191 rest_of_handle_regrename (tree decl, rtx insns)
2192 {
2193 timevar_push (TV_RENAME_REGISTERS);
2194 open_dump_file (DFI_rnreg, decl);
2195
2196 if (flag_rename_registers)
2197 regrename_optimize ();
2198 if (flag_cprop_registers)
2199 copyprop_hardreg_forward ();
2200
2201 close_dump_file (DFI_rnreg, print_rtl_with_bb, insns);
2202 timevar_pop (TV_RENAME_REGISTERS);
2203 }
2204
2205 /* Reorder basic blocks. */
2206 static void
2207 rest_of_handle_reorder_blocks (tree decl, rtx insns)
2208 {
2209 timevar_push (TV_REORDER_BLOCKS);
2210 open_dump_file (DFI_bbro, decl);
2211
2212 /* Last attempt to optimize CFG, as scheduling, peepholing and insn
2213 splitting possibly introduced more crossjumping opportunities. */
2214 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_UPDATE_LIFE
2215 | (flag_crossjumping ? CLEANUP_CROSSJUMP : 0));
2216
2217 if (flag_sched2_use_traces && flag_schedule_insns_after_reload)
2218 tracer ();
2219 if (flag_reorder_blocks)
2220 reorder_basic_blocks ();
2221 if (flag_reorder_blocks
2222 || (flag_sched2_use_traces && flag_schedule_insns_after_reload))
2223 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_UPDATE_LIFE);
2224
2225 close_dump_file (DFI_bbro, print_rtl_with_bb, insns);
2226 timevar_pop (TV_REORDER_BLOCKS);
2227 }
2228
2229 #ifdef INSN_SCHEDULING
2230 /* Run instruction scheduler. */
2231 static void
2232 rest_of_handle_sched (tree decl, rtx insns)
2233 {
2234 timevar_push (TV_SCHED);
2235
2236 /* Print function header into sched dump now
2237 because doing the sched analysis makes some of the dump. */
2238 if (optimize > 0 && flag_schedule_insns)
2239 {
2240 open_dump_file (DFI_sched, decl);
2241
2242 /* Do control and data sched analysis,
2243 and write some of the results to dump file. */
2244
2245 schedule_insns (rtl_dump_file);
2246
2247 close_dump_file (DFI_sched, print_rtl_with_bb, insns);
2248 }
2249 timevar_pop (TV_SCHED);
2250
2251 ggc_collect ();
2252 }
2253
2254 /* Run second scheduling pass after reload. */
2255 static void
2256 rest_of_handle_sched2 (tree decl, rtx insns)
2257 {
2258 timevar_push (TV_SCHED2);
2259 open_dump_file (DFI_sched2, decl);
2260
2261 /* Do control and data sched analysis again,
2262 and write some more of the results to dump file. */
2263
2264 split_all_insns (1);
2265
2266 if (flag_sched2_use_superblocks || flag_sched2_use_traces)
2267 {
2268 schedule_ebbs (rtl_dump_file);
2269 /* No liveness updating code yet, but it should be easy to do.
2270 reg-stack recompute the liveness when needed for now. */
2271 count_or_remove_death_notes (NULL, 1);
2272 cleanup_cfg (CLEANUP_EXPENSIVE);
2273 }
2274 else
2275 schedule_insns (rtl_dump_file);
2276
2277 close_dump_file (DFI_sched2, print_rtl_with_bb, insns);
2278 timevar_pop (TV_SCHED2);
2279
2280 ggc_collect ();
2281 }
2282 #endif
2283
2284 /* Register allocation pre-pass, to reduce number of moves necessary
2285 for two-address machines. */
2286 static void
2287 rest_of_handle_regmove (tree decl, rtx insns)
2288 {
2289 timevar_push (TV_REGMOVE);
2290 open_dump_file (DFI_regmove, decl);
2291
2292 regmove_optimize (insns, max_reg_num (), rtl_dump_file);
2293
2294 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_UPDATE_LIFE);
2295 close_dump_file (DFI_regmove, print_rtl_with_bb, insns);
2296 timevar_pop (TV_REGMOVE);
2297
2298 ggc_collect ();
2299 }
2300
2301 /* Run tracer. */
2302 static void
2303 rest_of_handle_tracer (tree decl, rtx insns)
2304 {
2305 timevar_push (TV_TRACER);
2306 open_dump_file (DFI_tracer, decl);
2307 if (rtl_dump_file)
2308 dump_flow_info (rtl_dump_file);
2309 tracer ();
2310 cleanup_cfg (CLEANUP_EXPENSIVE);
2311 reg_scan (insns, max_reg_num (), 0);
2312 close_dump_file (DFI_tracer, print_rtl_with_bb, get_insns ());
2313 timevar_pop (TV_TRACER);
2314 }
2315
2316 /* If-conversion and CFG cleanup. */
2317 static void
2318 rest_of_handle_if_conversion (tree decl, rtx insns)
2319 {
2320 open_dump_file (DFI_ce1, decl);
2321 if (flag_if_conversion)
2322 {
2323 timevar_push (TV_IFCVT);
2324 if (rtl_dump_file)
2325 dump_flow_info (rtl_dump_file);
2326 cleanup_cfg (CLEANUP_EXPENSIVE);
2327 reg_scan (insns, max_reg_num (), 0);
2328 if_convert (0);
2329 timevar_pop (TV_IFCVT);
2330 }
2331 timevar_push (TV_JUMP);
2332 cleanup_cfg (CLEANUP_EXPENSIVE);
2333 reg_scan (insns, max_reg_num (), 0);
2334 timevar_pop (TV_JUMP);
2335 close_dump_file (DFI_ce1, print_rtl_with_bb, get_insns ());
2336 }
2337
2338 /* Rerun if-conversion, as combine may have simplified things enough
2339 to now meet sequence length restrictions. */
2340 static void
2341 rest_of_handle_if_after_combine (tree decl, rtx insns)
2342 {
2343 timevar_push (TV_IFCVT);
2344 open_dump_file (DFI_ce2, decl);
2345
2346 no_new_pseudos = 0;
2347 if_convert (1);
2348 no_new_pseudos = 1;
2349
2350 close_dump_file (DFI_ce2, print_rtl_with_bb, insns);
2351 timevar_pop (TV_IFCVT);
2352 }
2353
2354 /* Do branch profiling and static profile estimation passes. */
2355 static void
2356 rest_of_handle_branch_prob (tree decl, rtx insns)
2357 {
2358 struct loops loops;
2359
2360 timevar_push (TV_BRANCH_PROB);
2361 open_dump_file (DFI_bp, decl);
2362 if (profile_arc_flag || flag_test_coverage || flag_branch_probabilities)
2363 branch_prob ();
2364
2365 /* Discover and record the loop depth at the head of each basic
2366 block. The loop infrastructure does the real job for us. */
2367 flow_loops_find (&loops, LOOP_TREE);
2368
2369 if (rtl_dump_file)
2370 flow_loops_dump (&loops, rtl_dump_file, NULL, 0);
2371
2372 /* Estimate using heuristics if no profiling info is available. */
2373 if (flag_guess_branch_prob)
2374 estimate_probability (&loops);
2375
2376 flow_loops_free (&loops);
2377 close_dump_file (DFI_bp, print_rtl_with_bb, insns);
2378 timevar_pop (TV_BRANCH_PROB);
2379 }
2380
2381 /* Do control and data flow analysis; write some of the results to the
2382 dump file. */
2383 static void
2384 rest_of_handle_cfg (tree decl, rtx insns)
2385 {
2386 open_dump_file (DFI_cfg, decl);
2387 if (rtl_dump_file)
2388 dump_flow_info (rtl_dump_file);
2389 if (optimize)
2390 cleanup_cfg (CLEANUP_EXPENSIVE
2391 | (flag_thread_jumps ? CLEANUP_THREADING : 0));
2392
2393 /* It may make more sense to mark constant functions after dead code is
2394 eliminated by life_analysis, but we need to do it early, as -fprofile-arcs
2395 may insert code making function non-constant, but we still must consider
2396 it as constant, otherwise -fbranch-probabilities will not read data back.
2397
2398 life_analysis rarely eliminates modification of external memory.
2399 */
2400 if (optimize)
2401 mark_constant_function ();
2402
2403 close_dump_file (DFI_cfg, print_rtl_with_bb, insns);
2404 }
2405
2406 /* Purge addressofs. */
2407 static void
2408 rest_of_handle_addressof (tree decl, rtx insns)
2409 {
2410 open_dump_file (DFI_addressof, decl);
2411
2412 purge_addressof (insns);
2413 if (optimize && purge_all_dead_edges (0))
2414 delete_unreachable_blocks ();
2415 reg_scan (insns, max_reg_num (), 1);
2416
2417 close_dump_file (DFI_addressof, print_rtl, insns);
2418 }
2419
2420 /* We may have potential sibling or tail recursion sites. Select one
2421 (of possibly multiple) methods of performing the call. */
2422 static void
2423 rest_of_handle_sibling_calls (rtx insns)
2424 {
2425 rtx insn;
2426 optimize_sibling_and_tail_recursive_calls ();
2427
2428 /* Recompute the CFG as sibling optimization clobbers it randomly. */
2429 free_bb_for_insn ();
2430 find_exception_handler_labels ();
2431 rebuild_jump_labels (insns);
2432 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
2433
2434 /* There is pass ordering problem - we must lower NOTE_INSN_PREDICTION
2435 notes before simplifying cfg and we must do lowering after sibcall
2436 that unhides parts of RTL chain and cleans up the CFG.
2437
2438 Until sibcall is replaced by tree-level optimizer, lets just
2439 sweep away the NOTE_INSN_PREDICTION notes that leaked out. */
2440 for (insn = get_insns (); insn; insn = NEXT_INSN (insn))
2441 if (GET_CODE (insn) == NOTE
2442 && NOTE_LINE_NUMBER (insn) == NOTE_INSN_PREDICTION)
2443 delete_insn (insn);
2444
2445 close_dump_file (DFI_sibling, print_rtl, get_insns ());
2446 }
2447
2448 /* Perform jump bypassing and control flow optimizations. */
2449 static void
2450 rest_of_handle_jump_bypass (tree decl, rtx insns)
2451 {
2452 timevar_push (TV_BYPASS);
2453 open_dump_file (DFI_bypass, decl);
2454
2455 cleanup_cfg (CLEANUP_EXPENSIVE);
2456
2457 if (bypass_jumps (rtl_dump_file))
2458 {
2459 rebuild_jump_labels (insns);
2460 cleanup_cfg (CLEANUP_EXPENSIVE);
2461 delete_trivially_dead_insns (insns, max_reg_num ());
2462 }
2463
2464 close_dump_file (DFI_bypass, print_rtl_with_bb, insns);
2465 timevar_pop (TV_BYPASS);
2466
2467 ggc_collect ();
2468
2469 #ifdef ENABLE_CHECKING
2470 verify_flow_info ();
2471 #endif
2472 }
2473
2474 /* Handle inlining of functions in rest_of_compilation. Return TRUE
2475 if we must exit rest_of_compilation upon return. */
2476 static bool
2477 rest_of_handle_inlining (tree decl)
2478 {
2479 rtx insns;
2480 int inlinable = 0;
2481 tree parent;
2482 const char *lose;
2483
2484 /* If we are reconsidering an inline function at the end of
2485 compilation, skip the stuff for making it inline. */
2486 if (DECL_SAVED_INSNS (decl) != 0)
2487 return 0;
2488
2489 /* If this is nested inside an inlined external function, pretend
2490 it was only declared. Since we cannot inline such functions,
2491 generating code for this one is not only not necessary but will
2492 confuse some debugging output writers. */
2493 for (parent = DECL_CONTEXT (current_function_decl);
2494 parent != NULL_TREE;
2495 parent = get_containing_scope (parent))
2496 if (TREE_CODE (parent) == FUNCTION_DECL
2497 && DECL_INLINE (parent) && DECL_EXTERNAL (parent))
2498 {
2499 DECL_INITIAL (decl) = 0;
2500 return true;
2501 }
2502 else if (TYPE_P (parent))
2503 /* A function in a local class should be treated normally. */
2504 break;
2505
2506 /* If requested, consider whether to make this function inline. */
2507 if ((DECL_INLINE (decl) && !flag_no_inline)
2508 || flag_inline_functions)
2509 {
2510 timevar_push (TV_INTEGRATION);
2511 lose = function_cannot_inline_p (decl);
2512 timevar_pop (TV_INTEGRATION);
2513 if (lose || ! optimize)
2514 {
2515 if (warn_inline && DECL_INLINE (decl))
2516 warning_with_decl (decl, lose);
2517 DECL_ABSTRACT_ORIGIN (decl) = 0;
2518 /* Don't really compile an extern inline function.
2519 If we can't make it inline, pretend
2520 it was only declared. */
2521 if (DECL_EXTERNAL (decl))
2522 {
2523 DECL_INITIAL (decl) = 0;
2524 return true;
2525 }
2526 }
2527 else {
2528 /* ??? Note that we used to just make it look like if
2529 the "inline" keyword was specified when we decide
2530 to inline it (because of -finline-functions).
2531 garloff@suse.de, 2002-04-24: Add another flag to
2532 actually record this piece of information. */
2533 if (!DECL_INLINE (decl))
2534 DID_INLINE_FUNC (decl) = 1;
2535 inlinable = DECL_INLINE (decl) = 1;
2536 }
2537 }
2538
2539 insns = get_insns ();
2540
2541 /* Dump the rtl code if we are dumping rtl. */
2542
2543 if (open_dump_file (DFI_rtl, decl))
2544 {
2545 if (DECL_SAVED_INSNS (decl))
2546 fprintf (rtl_dump_file, ";; (integrable)\n\n");
2547 close_dump_file (DFI_rtl, print_rtl, insns);
2548 }
2549
2550 /* Convert from NOTE_INSN_EH_REGION style notes, and do other
2551 sorts of eh initialization. Delay this until after the
2552 initial rtl dump so that we can see the original nesting. */
2553 convert_from_eh_region_ranges ();
2554
2555 /* If function is inline, and we don't yet know whether to
2556 compile it by itself, defer decision till end of compilation.
2557 wrapup_global_declarations will (indirectly) call
2558 rest_of_compilation again for those functions that need to
2559 be output. Also defer those functions that we are supposed
2560 to defer. */
2561
2562 if (inlinable
2563 || (DECL_INLINE (decl)
2564 && flag_inline_functions
2565 && ((! TREE_PUBLIC (decl) && ! TREE_ADDRESSABLE (decl)
2566 && ! TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (decl))
2567 && ! flag_keep_inline_functions)
2568 || DECL_EXTERNAL (decl))))
2569 DECL_DEFER_OUTPUT (decl) = 1;
2570
2571 if (DECL_INLINE (decl))
2572 /* DWARF wants separate debugging info for abstract and
2573 concrete instances of all inline functions, including those
2574 declared inline but not inlined, and those inlined even
2575 though they weren't declared inline. Conveniently, that's
2576 what DECL_INLINE means at this point. */
2577 (*debug_hooks->deferred_inline_function) (decl);
2578
2579 if (DECL_DEFER_OUTPUT (decl))
2580 {
2581 /* If -Wreturn-type, we have to do a bit of compilation. We just
2582 want to call cleanup the cfg to figure out whether or not we can
2583 fall off the end of the function; we do the minimum amount of
2584 work necessary to make that safe. */
2585 if (warn_return_type)
2586 {
2587 int saved_optimize = optimize;
2588
2589 optimize = 0;
2590 rebuild_jump_labels (insns);
2591 find_exception_handler_labels ();
2592 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
2593 cleanup_cfg (CLEANUP_PRE_SIBCALL | CLEANUP_PRE_LOOP);
2594 optimize = saved_optimize;
2595
2596 /* CFG is no longer maintained up-to-date. */
2597 free_bb_for_insn ();
2598 }
2599
2600 set_nothrow_function_flags ();
2601 if (current_function_nothrow)
2602 /* Now we know that this can't throw; set the flag for the benefit
2603 of other functions later in this translation unit. */
2604 TREE_NOTHROW (current_function_decl) = 1;
2605
2606 timevar_push (TV_INTEGRATION);
2607 save_for_inline (decl);
2608 timevar_pop (TV_INTEGRATION);
2609 DECL_SAVED_INSNS (decl)->inlinable = inlinable;
2610 return true;
2611 }
2612
2613 /* If specified extern inline but we aren't inlining it, we are
2614 done. This goes for anything that gets here with DECL_EXTERNAL
2615 set, not just things with DECL_INLINE. */
2616 return (bool) DECL_EXTERNAL (decl);
2617 }
2618
2619 /* Rest of compilation helper to convert the rtl to SSA form. */
2620 static rtx
2621 rest_of_handle_ssa (tree decl, rtx insns)
2622 {
2623 timevar_push (TV_TO_SSA);
2624 open_dump_file (DFI_ssa, decl);
2625
2626 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2627 convert_to_ssa ();
2628
2629 close_dump_file (DFI_ssa, print_rtl_with_bb, insns);
2630 timevar_pop (TV_TO_SSA);
2631
2632 /* Perform sparse conditional constant propagation, if requested. */
2633 if (flag_ssa_ccp)
2634 {
2635 timevar_push (TV_SSA_CCP);
2636 open_dump_file (DFI_ssa_ccp, decl);
2637
2638 ssa_const_prop ();
2639
2640 close_dump_file (DFI_ssa_ccp, print_rtl_with_bb, get_insns ());
2641 timevar_pop (TV_SSA_CCP);
2642 }
2643
2644 /* It would be useful to cleanup the CFG at this point, but block
2645 merging and possibly other transformations might leave a PHI
2646 node in the middle of a basic block, which is a strict no-no. */
2647
2648 /* The SSA implementation uses basic block numbers in its phi
2649 nodes. Thus, changing the control-flow graph or the basic
2650 blocks, e.g., calling find_basic_blocks () or cleanup_cfg (),
2651 may cause problems. */
2652
2653 if (flag_ssa_dce)
2654 {
2655 /* Remove dead code. */
2656
2657 timevar_push (TV_SSA_DCE);
2658 open_dump_file (DFI_ssa_dce, decl);
2659
2660 insns = get_insns ();
2661 ssa_eliminate_dead_code ();
2662
2663 close_dump_file (DFI_ssa_dce, print_rtl_with_bb, insns);
2664 timevar_pop (TV_SSA_DCE);
2665 }
2666
2667 /* Convert from SSA form. */
2668
2669 timevar_push (TV_FROM_SSA);
2670 open_dump_file (DFI_ussa, decl);
2671
2672 convert_from_ssa ();
2673 /* New registers have been created. Rescan their usage. */
2674 reg_scan (insns, max_reg_num (), 1);
2675
2676 close_dump_file (DFI_ussa, print_rtl_with_bb, insns);
2677 timevar_pop (TV_FROM_SSA);
2678
2679 ggc_collect ();
2680
2681 return insns;
2682 }
2683
2684 /* Try to identify useless null pointer tests and delete them. */
2685 static void
2686 rest_of_handle_null_pointer (tree decl, rtx insns)
2687 {
2688 open_dump_file (DFI_null, decl);
2689 if (rtl_dump_file)
2690 dump_flow_info (rtl_dump_file);
2691
2692 if (delete_null_pointer_checks (insns))
2693 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2694
2695 close_dump_file (DFI_null, print_rtl_with_bb, insns);
2696 }
2697
2698 /* Try combining insns through substitution. */
2699 static void
2700 rest_of_handle_combine (tree decl, rtx insns)
2701 {
2702 int rebuild_jump_labels_after_combine = 0;
2703
2704 timevar_push (TV_COMBINE);
2705 open_dump_file (DFI_combine, decl);
2706
2707 rebuild_jump_labels_after_combine
2708 = combine_instructions (insns, max_reg_num ());
2709
2710 /* Combining insns may have turned an indirect jump into a
2711 direct jump. Rebuild the JUMP_LABEL fields of jumping
2712 instructions. */
2713 if (rebuild_jump_labels_after_combine)
2714 {
2715 timevar_push (TV_JUMP);
2716 rebuild_jump_labels (insns);
2717 timevar_pop (TV_JUMP);
2718
2719 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_UPDATE_LIFE);
2720 }
2721
2722 close_dump_file (DFI_combine, print_rtl_with_bb, insns);
2723 timevar_pop (TV_COMBINE);
2724
2725 ggc_collect ();
2726 }
2727
2728 /* Perform life analysis. */
2729 static void
2730 rest_of_handle_life (tree decl, rtx insns)
2731 {
2732 open_dump_file (DFI_life, decl);
2733 regclass_init ();
2734
2735 #ifdef ENABLE_CHECKING
2736 verify_flow_info ();
2737 #endif
2738 life_analysis (insns, rtl_dump_file, PROP_FINAL);
2739 if (optimize)
2740 cleanup_cfg ((optimize ? CLEANUP_EXPENSIVE : 0) | CLEANUP_UPDATE_LIFE
2741 | (flag_thread_jumps ? CLEANUP_THREADING : 0));
2742 timevar_pop (TV_FLOW);
2743
2744 if (warn_uninitialized)
2745 {
2746 uninitialized_vars_warning (DECL_INITIAL (decl));
2747 if (extra_warnings)
2748 setjmp_args_warning ();
2749 }
2750
2751 if (optimize)
2752 {
2753 if (!flag_new_regalloc && initialize_uninitialized_subregs ())
2754 {
2755 /* Insns were inserted, and possibly pseudos created, so
2756 things might look a bit different. */
2757 insns = get_insns ();
2758 allocate_reg_life_data ();
2759 update_life_info (NULL, UPDATE_LIFE_GLOBAL_RM_NOTES,
2760 PROP_LOG_LINKS | PROP_REG_INFO | PROP_DEATH_NOTES);
2761 }
2762 }
2763
2764 no_new_pseudos = 1;
2765
2766 close_dump_file (DFI_life, print_rtl_with_bb, insns);
2767
2768 ggc_collect ();
2769 }
2770
2771 /* Perform common subexpression elimination. Nonzero value from
2772 `cse_main' means that jumps were simplified and some code may now
2773 be unreachable, so do jump optimization again. */
2774 static void
2775 rest_of_handle_cse (tree decl, rtx insns)
2776 {
2777 int tem;
2778
2779 open_dump_file (DFI_cse, decl);
2780 if (rtl_dump_file)
2781 dump_flow_info (rtl_dump_file);
2782 timevar_push (TV_CSE);
2783
2784 reg_scan (insns, max_reg_num (), 1);
2785
2786 tem = cse_main (insns, max_reg_num (), 0, rtl_dump_file);
2787 if (tem)
2788 rebuild_jump_labels (insns);
2789 purge_all_dead_edges (0);
2790
2791 delete_trivially_dead_insns (insns, max_reg_num ());
2792
2793 /* If we are not running more CSE passes, then we are no longer
2794 expecting CSE to be run. But always rerun it in a cheap mode. */
2795 cse_not_expected = !flag_rerun_cse_after_loop && !flag_gcse;
2796
2797 if (tem || optimize > 1)
2798 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2799 /* Try to identify useless null pointer tests and delete them. */
2800 if (flag_delete_null_pointer_checks)
2801 {
2802 timevar_push (TV_JUMP);
2803
2804 if (delete_null_pointer_checks (insns))
2805 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2806 timevar_pop (TV_JUMP);
2807 }
2808
2809 /* The second pass of jump optimization is likely to have
2810 removed a bunch more instructions. */
2811 renumber_insns (rtl_dump_file);
2812
2813 timevar_pop (TV_CSE);
2814 close_dump_file (DFI_cse, print_rtl_with_bb, insns);
2815 }
2816
2817 /* Run second CSE pass after loop optimizations. */
2818 static void
2819 rest_of_handle_cse2 (tree decl, rtx insns)
2820 {
2821 int tem;
2822
2823 timevar_push (TV_CSE2);
2824 open_dump_file (DFI_cse2, decl);
2825 if (rtl_dump_file)
2826 dump_flow_info (rtl_dump_file);
2827 /* CFG is no longer maintained up-to-date. */
2828 tem = cse_main (insns, max_reg_num (), 1, rtl_dump_file);
2829 purge_all_dead_edges (0);
2830 delete_trivially_dead_insns (insns, max_reg_num ());
2831
2832 if (tem)
2833 {
2834 timevar_push (TV_JUMP);
2835 rebuild_jump_labels (insns);
2836 cleanup_cfg (CLEANUP_EXPENSIVE);
2837 timevar_pop (TV_JUMP);
2838 }
2839 reg_scan (insns, max_reg_num (), 0);
2840 close_dump_file (DFI_cse2, print_rtl_with_bb, insns);
2841 ggc_collect ();
2842 timevar_pop (TV_CSE2);
2843 }
2844
2845 /* Perform global cse. */
2846 static void
2847 rest_of_handle_gcse (tree decl, rtx insns)
2848 {
2849 int save_csb, save_cfj;
2850 int tem2 = 0, tem;
2851
2852 timevar_push (TV_GCSE);
2853 open_dump_file (DFI_gcse, decl);
2854
2855 tem = gcse_main (insns, rtl_dump_file);
2856 rebuild_jump_labels (insns);
2857 delete_trivially_dead_insns (insns, max_reg_num ());
2858
2859 save_csb = flag_cse_skip_blocks;
2860 save_cfj = flag_cse_follow_jumps;
2861 flag_cse_skip_blocks = flag_cse_follow_jumps = 0;
2862
2863 /* Instantiate any remaining CONSTANT_P_RTX nodes. */
2864 if (current_function_calls_constant_p)
2865 purge_builtin_constant_p ();
2866
2867 /* If -fexpensive-optimizations, re-run CSE to clean up things done
2868 by gcse. */
2869 if (flag_expensive_optimizations)
2870 {
2871 timevar_push (TV_CSE);
2872 reg_scan (insns, max_reg_num (), 1);
2873 tem2 = cse_main (insns, max_reg_num (), 0, rtl_dump_file);
2874 purge_all_dead_edges (0);
2875 delete_trivially_dead_insns (insns, max_reg_num ());
2876 timevar_pop (TV_CSE);
2877 cse_not_expected = !flag_rerun_cse_after_loop;
2878 }
2879
2880 /* If gcse or cse altered any jumps, rerun jump optimizations to clean
2881 things up. Then possibly re-run CSE again. */
2882 while (tem || tem2)
2883 {
2884 tem = tem2 = 0;
2885 timevar_push (TV_JUMP);
2886 rebuild_jump_labels (insns);
2887 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2888 timevar_pop (TV_JUMP);
2889
2890 if (flag_expensive_optimizations)
2891 {
2892 timevar_push (TV_CSE);
2893 reg_scan (insns, max_reg_num (), 1);
2894 tem2 = cse_main (insns, max_reg_num (), 0, rtl_dump_file);
2895 purge_all_dead_edges (0);
2896 delete_trivially_dead_insns (insns, max_reg_num ());
2897 timevar_pop (TV_CSE);
2898 }
2899 }
2900
2901 close_dump_file (DFI_gcse, print_rtl_with_bb, insns);
2902 timevar_pop (TV_GCSE);
2903
2904 ggc_collect ();
2905 flag_cse_skip_blocks = save_csb;
2906 flag_cse_follow_jumps = save_cfj;
2907 #ifdef ENABLE_CHECKING
2908 verify_flow_info ();
2909 #endif
2910 }
2911
2912 /* Move constant computations out of loops. */
2913 static void
2914 rest_of_handle_loop_optimize (tree decl, rtx insns)
2915 {
2916 int do_unroll, do_prefetch;
2917
2918 timevar_push (TV_LOOP);
2919 delete_dead_jumptables ();
2920 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
2921 open_dump_file (DFI_loop, decl);
2922
2923 /* CFG is no longer maintained up-to-date. */
2924 free_bb_for_insn ();
2925
2926 if (flag_unroll_loops)
2927 do_unroll = 0; /* Having two unrollers is useless. */
2928 else
2929 do_unroll = flag_old_unroll_loops ? LOOP_UNROLL : LOOP_AUTO_UNROLL;
2930 do_prefetch = flag_prefetch_loop_arrays ? LOOP_PREFETCH : 0;
2931
2932 if (flag_rerun_loop_opt)
2933 {
2934 cleanup_barriers ();
2935
2936 /* We only want to perform unrolling once. */
2937 loop_optimize (insns, rtl_dump_file, do_unroll);
2938 do_unroll = 0;
2939
2940 /* The first call to loop_optimize makes some instructions
2941 trivially dead. We delete those instructions now in the
2942 hope that doing so will make the heuristics in loop work
2943 better and possibly speed up compilation. */
2944 delete_trivially_dead_insns (insns, max_reg_num ());
2945
2946 /* The regscan pass is currently necessary as the alias
2947 analysis code depends on this information. */
2948 reg_scan (insns, max_reg_num (), 1);
2949 }
2950 cleanup_barriers ();
2951 loop_optimize (insns, rtl_dump_file, do_unroll | LOOP_BCT | do_prefetch);
2952
2953 /* Loop can create trivially dead instructions. */
2954 delete_trivially_dead_insns (insns, max_reg_num ());
2955 close_dump_file (DFI_loop, print_rtl, insns);
2956 timevar_pop (TV_LOOP);
2957 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
2958
2959 ggc_collect ();
2960 }
2961
2962 /* Perform loop optimizations. It might be better to do them a bit
2963 sooner, but we want the profile feedback to work more
2964 efficiently. */
2965 static void
2966 rest_of_handle_loop2 (tree decl, rtx insns)
2967 {
2968 struct loops *loops;
2969 timevar_push (TV_LOOP);
2970 open_dump_file (DFI_loop2, decl);
2971 if (rtl_dump_file)
2972 dump_flow_info (rtl_dump_file);
2973
2974 loops = loop_optimizer_init (rtl_dump_file);
2975
2976 if (loops)
2977 {
2978 /* The optimizations: */
2979 if (flag_unswitch_loops)
2980 unswitch_loops (loops);
2981
2982 if (flag_peel_loops || flag_unroll_loops)
2983 unroll_and_peel_loops (loops,
2984 (flag_peel_loops ? UAP_PEEL : 0) |
2985 (flag_unroll_loops ? UAP_UNROLL : 0) |
2986 (flag_unroll_all_loops ? UAP_UNROLL_ALL : 0));
2987
2988 loop_optimizer_finalize (loops, rtl_dump_file);
2989 }
2990
2991 cleanup_cfg (CLEANUP_EXPENSIVE);
2992 delete_trivially_dead_insns (insns, max_reg_num ());
2993 reg_scan (insns, max_reg_num (), 0);
2994 if (rtl_dump_file)
2995 dump_flow_info (rtl_dump_file);
2996 close_dump_file (DFI_loop2, print_rtl_with_bb, get_insns ());
2997 timevar_pop (TV_LOOP);
2998 ggc_collect ();
2999 }
3000
3001 /* This is called from finish_function (within langhooks.parse_file)
3002 after each top-level definition is parsed.
3003 It is supposed to compile that function or variable
3004 and output the assembler code for it.
3005 After we return, the tree storage is freed. */
3006
3007 void
3008 rest_of_compilation (tree decl)
3009 {
3010 rtx insns;
3011 int rebuild_label_notes_after_reload;
3012
3013 timevar_push (TV_REST_OF_COMPILATION);
3014
3015 /* Register rtl specific functions for cfg. */
3016 rtl_register_cfg_hooks ();
3017
3018 /* Now that we're out of the frontend, we shouldn't have any more
3019 CONCATs anywhere. */
3020 generating_concat_p = 0;
3021
3022 /* When processing delayed functions, prepare_function_start() won't
3023 have been run to re-initialize it. */
3024 cse_not_expected = ! optimize;
3025
3026 /* First, make sure that NOTE_BLOCK is set correctly for each
3027 NOTE_INSN_BLOCK_BEG/NOTE_INSN_BLOCK_END note. */
3028 if (!cfun->x_whole_function_mode_p)
3029 identify_blocks ();
3030
3031 /* In function-at-a-time mode, we do not attempt to keep the BLOCK
3032 tree in sensible shape. So, we just recalculate it here. */
3033 if (cfun->x_whole_function_mode_p)
3034 reorder_blocks ();
3035
3036 init_flow ();
3037
3038 if (rest_of_handle_inlining (decl))
3039 goto exit_rest_of_compilation;
3040
3041 /* If we're emitting a nested function, make sure its parent gets
3042 emitted as well. Doing otherwise confuses debug info. */
3043 {
3044 tree parent;
3045 for (parent = DECL_CONTEXT (current_function_decl);
3046 parent != NULL_TREE;
3047 parent = get_containing_scope (parent))
3048 if (TREE_CODE (parent) == FUNCTION_DECL)
3049 TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (parent)) = 1;
3050 }
3051
3052 /* We are now committed to emitting code for this function. Do any
3053 preparation, such as emitting abstract debug info for the inline
3054 before it gets mangled by optimization. */
3055 if (DECL_INLINE (decl))
3056 (*debug_hooks->outlining_inline_function) (decl);
3057
3058 /* Remove any notes we don't need. That will make iterating
3059 over the instruction sequence faster, and allow the garbage
3060 collector to reclaim the memory used by the notes. */
3061 remove_unnecessary_notes ();
3062 reorder_blocks ();
3063
3064 ggc_collect ();
3065
3066 /* Initialize some variables used by the optimizers. */
3067 init_function_for_compilation ();
3068
3069 if (! DECL_DEFER_OUTPUT (decl))
3070 TREE_ASM_WRITTEN (decl) = 1;
3071
3072 /* Now that integrate will no longer see our rtl, we need not
3073 distinguish between the return value of this function and the
3074 return value of called functions. Also, we can remove all SETs
3075 of subregs of hard registers; they are only here because of
3076 integrate. Also, we can now initialize pseudos intended to
3077 carry magic hard reg data throughout the function. */
3078 rtx_equal_function_value_matters = 0;
3079 purge_hard_subreg_sets (get_insns ());
3080
3081 /* Early return if there were errors. We can run afoul of our
3082 consistency checks, and there's not really much point in fixing them.
3083 Don't return yet if -Wreturn-type; we need to do cleanup_cfg. */
3084 if (((rtl_dump_and_exit || flag_syntax_only) && !warn_return_type)
3085 || errorcount || sorrycount)
3086 goto exit_rest_of_compilation;
3087
3088 timevar_push (TV_JUMP);
3089 open_dump_file (DFI_sibling, decl);
3090 insns = get_insns ();
3091 rebuild_jump_labels (insns);
3092 find_exception_handler_labels ();
3093 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
3094
3095 delete_unreachable_blocks ();
3096
3097 /* We have to issue these warnings now already, because CFG cleanups
3098 further down may destroy the required information. */
3099 check_function_return_warnings ();
3100
3101 /* Turn NOTE_INSN_PREDICTIONs into branch predictions. */
3102 if (flag_guess_branch_prob)
3103 {
3104 timevar_push (TV_BRANCH_PROB);
3105 note_prediction_to_br_prob ();
3106 timevar_pop (TV_BRANCH_PROB);
3107 }
3108
3109 if (flag_optimize_sibling_calls)
3110 rest_of_handle_sibling_calls (insns);
3111
3112 timevar_pop (TV_JUMP);
3113
3114 insn_locators_initialize ();
3115 /* Complete generation of exception handling code. */
3116 if (doing_eh (0))
3117 {
3118 timevar_push (TV_JUMP);
3119 open_dump_file (DFI_eh, decl);
3120
3121 finish_eh_generation ();
3122
3123 close_dump_file (DFI_eh, print_rtl, get_insns ());
3124 timevar_pop (TV_JUMP);
3125 }
3126
3127 /* Delay emitting hard_reg_initial_value sets until after EH landing pad
3128 generation, which might create new sets. */
3129 emit_initial_value_sets ();
3130
3131 #ifdef FINALIZE_PIC
3132 /* If we are doing position-independent code generation, now
3133 is the time to output special prologues and epilogues.
3134 We do not want to do this earlier, because it just clutters
3135 up inline functions with meaningless insns. */
3136 if (flag_pic)
3137 FINALIZE_PIC;
3138 #endif
3139
3140 insns = get_insns ();
3141
3142 /* Copy any shared structure that should not be shared. */
3143 unshare_all_rtl (current_function_decl, insns);
3144
3145 #ifdef SETJMP_VIA_SAVE_AREA
3146 /* This must be performed before virtual register instantiation.
3147 Please be aware the everything in the compiler that can look
3148 at the RTL up to this point must understand that REG_SAVE_AREA
3149 is just like a use of the REG contained inside. */
3150 if (current_function_calls_alloca)
3151 optimize_save_area_alloca (insns);
3152 #endif
3153
3154 /* Instantiate all virtual registers. */
3155 instantiate_virtual_regs (current_function_decl, insns);
3156
3157 open_dump_file (DFI_jump, decl);
3158
3159 /* Always do one jump optimization pass to ensure that JUMP_LABEL fields
3160 are initialized and to compute whether control can drop off the end
3161 of the function. */
3162
3163 timevar_push (TV_JUMP);
3164 /* Turn NOTE_INSN_EXPECTED_VALUE into REG_BR_PROB. Do this
3165 before jump optimization switches branch directions. */
3166 if (flag_guess_branch_prob)
3167 expected_value_to_br_prob ();
3168
3169 reg_scan (insns, max_reg_num (), 0);
3170 rebuild_jump_labels (insns);
3171 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
3172 delete_trivially_dead_insns (insns, max_reg_num ());
3173 if (rtl_dump_file)
3174 dump_flow_info (rtl_dump_file);
3175 cleanup_cfg ((optimize ? CLEANUP_EXPENSIVE : 0) | CLEANUP_PRE_LOOP
3176 | (flag_thread_jumps ? CLEANUP_THREADING : 0));
3177
3178 if (optimize)
3179 {
3180 free_bb_for_insn ();
3181 copy_loop_headers (insns);
3182 find_basic_blocks (insns, max_reg_num (), rtl_dump_file);
3183 }
3184 purge_line_number_notes (insns);
3185
3186 timevar_pop (TV_JUMP);
3187 close_dump_file (DFI_jump, print_rtl, insns);
3188
3189 /* Now is when we stop if -fsyntax-only and -Wreturn-type. */
3190 if (rtl_dump_and_exit || flag_syntax_only || DECL_DEFER_OUTPUT (decl))
3191 goto exit_rest_of_compilation;
3192
3193 /* Long term, this should probably move before the jump optimizer too,
3194 but I didn't want to disturb the rtl_dump_and_exit and related
3195 stuff at this time. */
3196 if (optimize > 0 && flag_ssa)
3197 insns = rest_of_handle_ssa (decl, insns);
3198
3199 timevar_push (TV_JUMP);
3200
3201 if (optimize)
3202 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_PRE_LOOP);
3203
3204 if (flag_delete_null_pointer_checks)
3205 rest_of_handle_null_pointer (decl, insns);
3206
3207 /* Jump optimization, and the removal of NULL pointer checks, may
3208 have reduced the number of instructions substantially. CSE, and
3209 future passes, allocate arrays whose dimensions involve the
3210 maximum instruction UID, so if we can reduce the maximum UID
3211 we'll save big on memory. */
3212 renumber_insns (rtl_dump_file);
3213 timevar_pop (TV_JUMP);
3214
3215 close_dump_file (DFI_jump, print_rtl_with_bb, insns);
3216
3217 ggc_collect ();
3218
3219 if (optimize > 0)
3220 rest_of_handle_cse (decl, insns);
3221
3222 rest_of_handle_addressof (decl, insns);
3223
3224 ggc_collect ();
3225
3226 if (optimize > 0)
3227 {
3228 if (flag_gcse)
3229 rest_of_handle_gcse (decl, insns);
3230
3231 if (flag_loop_optimize)
3232 rest_of_handle_loop_optimize (decl, insns);
3233
3234 if (flag_gcse)
3235 rest_of_handle_jump_bypass (decl, insns);
3236 }
3237
3238 timevar_push (TV_FLOW);
3239
3240 rest_of_handle_cfg (decl, insns);
3241
3242 if (optimize > 0
3243 || profile_arc_flag || flag_test_coverage || flag_branch_probabilities)
3244 rest_of_handle_branch_prob (decl, insns);
3245
3246 if (optimize > 0)
3247 rest_of_handle_if_conversion (decl, insns);
3248
3249 if (flag_tracer)
3250 rest_of_handle_tracer (decl, insns);
3251
3252 if (optimize > 0
3253 && (flag_unswitch_loops
3254 || flag_peel_loops
3255 || flag_unroll_loops))
3256 rest_of_handle_loop2 (decl, insns);
3257
3258 if (flag_rerun_cse_after_loop)
3259 rest_of_handle_cse2 (decl, insns);
3260
3261 cse_not_expected = 1;
3262
3263 rest_of_handle_life (decl, insns);
3264
3265 if (optimize > 0)
3266 rest_of_handle_combine (decl, insns);
3267
3268 if (flag_if_conversion)
3269 rest_of_handle_if_after_combine (decl, insns);
3270
3271 if (optimize > 0 && (flag_regmove || flag_expensive_optimizations))
3272 rest_of_handle_regmove (decl, insns);
3273
3274 /* Do unconditional splitting before register allocation to allow machine
3275 description to add extra information not needed previously. */
3276 split_all_insns (1);
3277
3278 #ifdef OPTIMIZE_MODE_SWITCHING
3279 timevar_push (TV_MODE_SWITCH);
3280
3281 no_new_pseudos = 0;
3282 optimize_mode_switching (NULL);
3283 no_new_pseudos = 1;
3284
3285 timevar_pop (TV_MODE_SWITCH);
3286 #endif
3287
3288 /* Any of the several passes since flow1 will have munged register
3289 lifetime data a bit. We need it to be up to date for scheduling
3290 (see handling of reg_known_equiv in init_alias_analysis). */
3291 recompute_reg_usage (insns, !optimize_size);
3292
3293 #ifdef INSN_SCHEDULING
3294 rest_of_handle_sched (decl, insns);
3295 #endif
3296
3297 /* Determine if the current function is a leaf before running reload
3298 since this can impact optimizations done by the prologue and
3299 epilogue thus changing register elimination offsets. */
3300 current_function_is_leaf = leaf_function_p ();
3301
3302 timevar_push (TV_LOCAL_ALLOC);
3303 open_dump_file (DFI_lreg, decl);
3304
3305 if (flag_new_regalloc)
3306 {
3307 if (rest_of_handle_new_regalloc (decl, insns,
3308 &rebuild_label_notes_after_reload))
3309 goto exit_rest_of_compilation;
3310 }
3311 else
3312 {
3313 if (rest_of_handle_old_regalloc (decl, insns,
3314 &rebuild_label_notes_after_reload))
3315 goto exit_rest_of_compilation;
3316 }
3317
3318 ggc_collect ();
3319
3320 open_dump_file (DFI_postreload, decl);
3321
3322 /* Do a very simple CSE pass over just the hard registers. */
3323 if (optimize > 0)
3324 {
3325 timevar_push (TV_RELOAD_CSE_REGS);
3326 reload_cse_regs (insns);
3327 timevar_pop (TV_RELOAD_CSE_REGS);
3328 }
3329
3330 /* Register allocation and reloading may have turned an indirect jump into
3331 a direct jump. If so, we must rebuild the JUMP_LABEL fields of
3332 jumping instructions. */
3333 if (rebuild_label_notes_after_reload)
3334 {
3335 timevar_push (TV_JUMP);
3336
3337 rebuild_jump_labels (insns);
3338 purge_all_dead_edges (0);
3339
3340 timevar_pop (TV_JUMP);
3341 }
3342
3343 close_dump_file (DFI_postreload, print_rtl_with_bb, insns);
3344
3345 /* Re-create the death notes which were deleted during reload. */
3346 timevar_push (TV_FLOW2);
3347 open_dump_file (DFI_flow2, decl);
3348
3349 #ifdef ENABLE_CHECKING
3350 verify_flow_info ();
3351 #endif
3352
3353 /* If optimizing, then go ahead and split insns now. */
3354 #ifndef STACK_REGS
3355 if (optimize > 0)
3356 #endif
3357 split_all_insns (0);
3358
3359 if (flag_branch_target_load_optimize)
3360 {
3361 open_dump_file (DFI_branch_target_load, decl);
3362
3363 branch_target_load_optimize (insns, false);
3364
3365 close_dump_file (DFI_branch_target_load, print_rtl_with_bb, insns);
3366
3367 ggc_collect ();
3368 }
3369
3370 if (optimize)
3371 cleanup_cfg (CLEANUP_EXPENSIVE);
3372
3373 /* On some machines, the prologue and epilogue code, or parts thereof,
3374 can be represented as RTL. Doing so lets us schedule insns between
3375 it and the rest of the code and also allows delayed branch
3376 scheduling to operate in the epilogue. */
3377 thread_prologue_and_epilogue_insns (insns);
3378 epilogue_completed = 1;
3379
3380 if (optimize)
3381 {
3382 life_analysis (insns, rtl_dump_file, PROP_FINAL);
3383 cleanup_cfg (CLEANUP_EXPENSIVE | CLEANUP_UPDATE_LIFE
3384 | (flag_crossjumping ? CLEANUP_CROSSJUMP : 0));
3385
3386 /* This is kind of a heuristic. We need to run combine_stack_adjustments
3387 even for machines with possibly nonzero RETURN_POPS_ARGS
3388 and ACCUMULATE_OUTGOING_ARGS. We expect that only ports having
3389 push instructions will have popping returns. */
3390 #ifndef PUSH_ROUNDING
3391 if (!ACCUMULATE_OUTGOING_ARGS)
3392 #endif
3393 combine_stack_adjustments ();
3394
3395 ggc_collect ();
3396 }
3397
3398 flow2_completed = 1;
3399
3400 close_dump_file (DFI_flow2, print_rtl_with_bb, insns);
3401 timevar_pop (TV_FLOW2);
3402
3403 #ifdef HAVE_peephole2
3404 if (optimize > 0 && flag_peephole2)
3405 {
3406 timevar_push (TV_PEEPHOLE2);
3407 open_dump_file (DFI_peephole2, decl);
3408
3409 peephole2_optimize (rtl_dump_file);
3410
3411 close_dump_file (DFI_peephole2, print_rtl_with_bb, insns);
3412 timevar_pop (TV_PEEPHOLE2);
3413 }
3414 #endif
3415
3416 if (optimize > 0)
3417 {
3418 if (flag_rename_registers || flag_cprop_registers)
3419 rest_of_handle_regrename (decl, insns);
3420
3421 rest_of_handle_reorder_blocks (decl, insns);
3422 }
3423
3424 if (flag_if_conversion2)
3425 {
3426 timevar_push (TV_IFCVT2);
3427 open_dump_file (DFI_ce3, decl);
3428
3429 if_convert (1);
3430
3431 close_dump_file (DFI_ce3, print_rtl_with_bb, insns);
3432 timevar_pop (TV_IFCVT2);
3433 }
3434
3435 if (flag_branch_target_load_optimize2)
3436 {
3437 /* Leave this a warning for now so that it is possible to experiment
3438 with running this pass twice. In 3.6, we should either make this
3439 an error, or use separate dump files. */
3440 if (flag_branch_target_load_optimize)
3441 warning ("branch target register load optimization is not intended "
3442 "to be run twice");
3443
3444 open_dump_file (DFI_branch_target_load, decl);
3445
3446 branch_target_load_optimize (insns, true);
3447
3448 close_dump_file (DFI_branch_target_load, print_rtl_with_bb, insns);
3449
3450 ggc_collect ();
3451 }
3452
3453 #ifdef INSN_SCHEDULING
3454 if (optimize > 0 && flag_schedule_insns_after_reload)
3455 rest_of_handle_sched2 (decl, insns);
3456 #endif
3457
3458 #ifdef LEAF_REGISTERS
3459 current_function_uses_only_leaf_regs
3460 = optimize > 0 && only_leaf_regs_used () && leaf_function_p ();
3461 #endif
3462
3463 #ifdef STACK_REGS
3464 rest_of_handle_stack_regs (decl, insns);
3465 #endif
3466
3467 compute_alignments ();
3468
3469 /* CFG is no longer maintained up-to-date. */
3470 free_bb_for_insn ();
3471
3472 if (targetm.machine_dependent_reorg != 0)
3473 rest_of_handle_machine_reorg (decl, insns);
3474
3475 purge_line_number_notes (insns);
3476 cleanup_barriers ();
3477
3478 #ifdef DELAY_SLOTS
3479 if (optimize > 0 && flag_delayed_branch)
3480 rest_of_handle_delay_slots (decl, insns);
3481 #endif
3482
3483 #if defined (HAVE_ATTR_length) && !defined (STACK_REGS)
3484 timevar_push (TV_SHORTEN_BRANCH);
3485 split_all_insns_noflow ();
3486 timevar_pop (TV_SHORTEN_BRANCH);
3487 #endif
3488
3489 convert_to_eh_region_ranges ();
3490
3491 /* Shorten branches. */
3492 timevar_push (TV_SHORTEN_BRANCH);
3493 shorten_branches (get_insns ());
3494 timevar_pop (TV_SHORTEN_BRANCH);
3495
3496 set_nothrow_function_flags ();
3497 if (current_function_nothrow)
3498 /* Now we know that this can't throw; set the flag for the benefit
3499 of other functions later in this translation unit. */
3500 TREE_NOTHROW (current_function_decl) = 1;
3501
3502 rest_of_handle_final (decl, insns);
3503
3504 /* Write DBX symbols if requested. */
3505
3506 /* Note that for those inline functions where we don't initially
3507 know for certain that we will be generating an out-of-line copy,
3508 the first invocation of this routine (rest_of_compilation) will
3509 skip over this code by doing a `goto exit_rest_of_compilation;'.
3510 Later on, wrapup_global_declarations will (indirectly) call
3511 rest_of_compilation again for those inline functions that need
3512 to have out-of-line copies generated. During that call, we
3513 *will* be routed past here. */
3514
3515 timevar_push (TV_SYMOUT);
3516 (*debug_hooks->function_decl) (decl);
3517 timevar_pop (TV_SYMOUT);
3518
3519 exit_rest_of_compilation:
3520
3521 coverage_end_function ();
3522
3523 /* In case the function was not output,
3524 don't leave any temporary anonymous types
3525 queued up for sdb output. */
3526 #ifdef SDB_DEBUGGING_INFO
3527 if (write_symbols == SDB_DEBUG)
3528 sdbout_types (NULL_TREE);
3529 #endif
3530
3531 reload_completed = 0;
3532 epilogue_completed = 0;
3533 flow2_completed = 0;
3534 no_new_pseudos = 0;
3535
3536 timevar_push (TV_FINAL);
3537
3538 /* Clear out the insn_length contents now that they are no
3539 longer valid. */
3540 init_insn_lengths ();
3541
3542 /* Show no temporary slots allocated. */
3543 init_temp_slots ();
3544
3545 free_basic_block_vars (0);
3546 free_bb_for_insn ();
3547
3548 timevar_pop (TV_FINAL);
3549
3550 if ((*targetm.binds_local_p) (current_function_decl))
3551 {
3552 int pref = cfun->preferred_stack_boundary;
3553 if (cfun->recursive_call_emit
3554 && cfun->stack_alignment_needed > cfun->preferred_stack_boundary)
3555 pref = cfun->stack_alignment_needed;
3556 cgraph_rtl_info (current_function_decl)->preferred_incoming_stack_boundary
3557 = pref;
3558 }
3559
3560 /* Make sure volatile mem refs aren't considered valid operands for
3561 arithmetic insns. We must call this here if this is a nested inline
3562 function, since the above code leaves us in the init_recog state
3563 (from final.c), and the function context push/pop code does not
3564 save/restore volatile_ok.
3565
3566 ??? Maybe it isn't necessary for expand_start_function to call this
3567 anymore if we do it here? */
3568
3569 init_recog_no_volatile ();
3570
3571 /* We're done with this function. Free up memory if we can. */
3572 free_after_parsing (cfun);
3573 if (! DECL_DEFER_OUTPUT (decl))
3574 {
3575 free_after_compilation (cfun);
3576
3577 /* Clear integrate.c's pointer to the cfun structure we just
3578 destroyed. */
3579 DECL_SAVED_INSNS (decl) = 0;
3580 }
3581 cfun = 0;
3582
3583 ggc_collect ();
3584
3585 timevar_pop (TV_REST_OF_COMPILATION);
3586 }
3587
3588 /* Display help for generic options. */
3589 void
3590 display_help (void)
3591 {
3592 unsigned long i;
3593
3594 for (i = ARRAY_SIZE (debug_args); i--;)
3595 {
3596 if (debug_args[i].description != NULL)
3597 printf (" -g%-21s %s\n",
3598 debug_args[i].arg, _(debug_args[i].description));
3599 }
3600
3601 display_target_options ();
3602 }
3603
3604 /* Display help for target options. */
3605 void
3606 display_target_options (void)
3607 {
3608 int undoc, i;
3609 static bool displayed = false;
3610
3611 /* Avoid double printing for --help --target-help. */
3612 if (displayed)
3613 return;
3614
3615 displayed = true;
3616
3617 if (ARRAY_SIZE (target_switches) > 1
3618 #ifdef TARGET_OPTIONS
3619 || ARRAY_SIZE (target_options) > 1
3620 #endif
3621 )
3622 {
3623 int doc = 0;
3624
3625 undoc = 0;
3626
3627 printf (_("\nTarget specific options:\n"));
3628
3629 for (i = ARRAY_SIZE (target_switches); i--;)
3630 {
3631 const char *option = target_switches[i].name;
3632 const char *description = target_switches[i].description;
3633
3634 if (option == NULL || *option == 0)
3635 continue;
3636 else if (description == NULL)
3637 {
3638 undoc = 1;
3639
3640 if (extra_warnings)
3641 printf (_(" -m%-23s [undocumented]\n"), option);
3642 }
3643 else if (*description != 0)
3644 doc += printf (" -m%-23s %s\n", option, _(description));
3645 }
3646
3647 #ifdef TARGET_OPTIONS
3648 for (i = ARRAY_SIZE (target_options); i--;)
3649 {
3650 const char *option = target_options[i].prefix;
3651 const char *description = target_options[i].description;
3652
3653 if (option == NULL || *option == 0)
3654 continue;
3655 else if (description == NULL)
3656 {
3657 undoc = 1;
3658
3659 if (extra_warnings)
3660 printf (_(" -m%-23s [undocumented]\n"), option);
3661 }
3662 else if (*description != 0)
3663 doc += printf (" -m%-23s %s\n", option, _(description));
3664 }
3665 #endif
3666 if (undoc)
3667 {
3668 if (doc)
3669 printf (_("\nThere are undocumented target specific options as well.\n"));
3670 else
3671 printf (_(" They exist, but they are not documented.\n"));
3672 }
3673 }
3674 }
3675
3676 /* Parse a -d... command line switch. */
3677
3678 void
3679 decode_d_option (const char *arg)
3680 {
3681 int i, c, matched;
3682
3683 while (*arg)
3684 switch (c = *arg++)
3685 {
3686 case 'a':
3687 for (i = 0; i < (int) DFI_MAX; ++i)
3688 dump_file[i].enabled = 1;
3689 break;
3690 case 'A':
3691 flag_debug_asm = 1;
3692 break;
3693 case 'p':
3694 flag_print_asm_name = 1;
3695 break;
3696 case 'P':
3697 flag_dump_rtl_in_asm = 1;
3698 flag_print_asm_name = 1;
3699 break;
3700 case 'v':
3701 graph_dump_format = vcg;
3702 break;
3703 case 'x':
3704 rtl_dump_and_exit = 1;
3705 break;
3706 case 'y':
3707 set_yydebug = 1;
3708 break;
3709 case 'D': /* These are handled by the preprocessor. */
3710 case 'I':
3711 break;
3712 case 'H':
3713 setup_core_dumping();
3714 break;
3715
3716 default:
3717 matched = 0;
3718 for (i = 0; i < (int) DFI_MAX; ++i)
3719 if (c == dump_file[i].debug_switch)
3720 {
3721 dump_file[i].enabled = 1;
3722 matched = 1;
3723 }
3724
3725 if (! matched)
3726 warning ("unrecognized gcc debugging option: %c", c);
3727 break;
3728 }
3729 }
3730
3731 /* Indexed by enum debug_info_type. */
3732 const char *const debug_type_names[] =
3733 {
3734 "none", "stabs", "coff", "dwarf-1", "dwarf-2", "xcoff", "vms"
3735 };
3736
3737 /* Parse a -g... command line switch. ARG is the value after the -g.
3738 It is safe to access 'ARG - 2' to generate the full switch name.
3739 Return the number of strings consumed. */
3740
3741 void
3742 decode_g_option (const char *arg)
3743 {
3744 static unsigned level = 0;
3745 /* A lot of code assumes write_symbols == NO_DEBUG if the
3746 debugging level is 0 (thus -gstabs1 -gstabs0 would lose track
3747 of what debugging type has been selected). This records the
3748 selected type. It is an error to specify more than one
3749 debugging type. */
3750 static enum debug_info_type selected_debug_type = NO_DEBUG;
3751 /* Nonzero if debugging format has been explicitly set.
3752 -g and -ggdb don't explicitly set the debugging format so
3753 -gdwarf -g3 is equivalent to -gdwarf3. */
3754 static int type_explicitly_set_p = 0;
3755
3756 /* The maximum admissible debug level value. */
3757 static const unsigned max_debug_level = 3;
3758
3759 /* Look up ARG in the table. */
3760 for (da = debug_args; da->arg; da++)
3761 {
3762 const int da_len = strlen (da->arg);
3763
3764 if (da_len == 0 || ! strncmp (arg, da->arg, da_len))
3765 {
3766 enum debug_info_type type = da->debug_type;
3767 const char *p = arg + da_len;
3768
3769 if (*p && ! ISDIGIT (*p))
3770 continue;
3771
3772 /* A debug flag without a level defaults to level 2.
3773 Note we do not want to call read_integral_parameter
3774 for that case since it will call atoi which
3775 will return zero.
3776
3777 ??? We may want to generalize the interface to
3778 read_integral_parameter to better handle this case
3779 if this case shows up often. */
3780 if (*p)
3781 level = read_integral_parameter (p, 0, max_debug_level + 1);
3782 else
3783 level = (level == 0) ? 2 : level;
3784
3785 if (da_len > 1 && *p && !strncmp (arg, "dwarf", da_len))
3786 {
3787 error ("use -gdwarf -g%d for DWARF v1, level %d",
3788 level, level);
3789 if (level == 2)
3790 error ("use -gdwarf-2 for DWARF v2");
3791 }
3792
3793 if (level > max_debug_level)
3794 {
3795 warning ("\
3796 ignoring option `%s' due to invalid debug level specification",
3797 arg - 2);
3798 level = debug_info_level;
3799 }
3800
3801 if (type == NO_DEBUG)
3802 {
3803 type = PREFERRED_DEBUGGING_TYPE;
3804
3805 if (da_len > 1 && strncmp (arg, "gdb", da_len) == 0)
3806 {
3807 #ifdef DWARF2_DEBUGGING_INFO
3808 type = DWARF2_DEBUG;
3809 #else
3810 #ifdef DBX_DEBUGGING_INFO
3811 type = DBX_DEBUG;
3812 #endif
3813 #endif
3814 }
3815 }
3816
3817 if (type == NO_DEBUG)
3818 warning ("`%s': unknown or unsupported -g option", arg - 2);
3819
3820 /* Does it conflict with an already selected type? */
3821 if (type_explicitly_set_p
3822 /* -g/-ggdb don't conflict with anything. */
3823 && da->debug_type != NO_DEBUG
3824 && type != selected_debug_type)
3825 warning ("`%s' ignored, conflicts with `-g%s'",
3826 arg - 2, debug_type_names[(int) selected_debug_type]);
3827 else
3828 {
3829 /* If the format has already been set, -g/-ggdb
3830 only change the debug level. */
3831 if (type_explicitly_set_p && da->debug_type == NO_DEBUG)
3832 /* Don't change debugging type. */
3833 ;
3834 else
3835 {
3836 selected_debug_type = type;
3837 type_explicitly_set_p = da->debug_type != NO_DEBUG;
3838 }
3839
3840 write_symbols = (level == 0
3841 ? NO_DEBUG
3842 : selected_debug_type);
3843 use_gnu_debug_info_extensions = da->use_extensions_p;
3844 debug_info_level = (enum debug_info_level) level;
3845 }
3846
3847 break;
3848 }
3849 }
3850
3851 if (! da->arg)
3852 warning ("`-g%s': unknown or unsupported -g option", arg);
3853 }
3854
3855 /* Decode -m switches. */
3856 /* Decode the switch -mNAME. */
3857
3858 void
3859 set_target_switch (const char *name)
3860 {
3861 size_t j;
3862 int valid_target_option = 0;
3863
3864 for (j = 0; j < ARRAY_SIZE (target_switches); j++)
3865 if (!strcmp (target_switches[j].name, name))
3866 {
3867 if (target_switches[j].value < 0)
3868 target_flags &= ~-target_switches[j].value;
3869 else
3870 target_flags |= target_switches[j].value;
3871 if (name[0] != 0)
3872 {
3873 if (target_switches[j].value < 0)
3874 target_flags_explicit |= -target_switches[j].value;
3875 else
3876 target_flags_explicit |= target_switches[j].value;
3877 }
3878 valid_target_option = 1;
3879 }
3880
3881 #ifdef TARGET_OPTIONS
3882 if (!valid_target_option)
3883 for (j = 0; j < ARRAY_SIZE (target_options); j++)
3884 {
3885 int len = strlen (target_options[j].prefix);
3886 if (target_options[j].value)
3887 {
3888 if (!strcmp (target_options[j].prefix, name))
3889 {
3890 *target_options[j].variable = target_options[j].value;
3891 valid_target_option = 1;
3892 }
3893 }
3894 else
3895 {
3896 if (!strncmp (target_options[j].prefix, name, len))
3897 {
3898 *target_options[j].variable = name + len;
3899 valid_target_option = 1;
3900 }
3901 }
3902 }
3903 #endif
3904
3905 if (!valid_target_option)
3906 error ("invalid option `%s'", name);
3907 }
3908
3909 /* Print version information to FILE.
3910 Each line begins with INDENT (for the case where FILE is the
3911 assembler output file). */
3912
3913 void
3914 print_version (FILE *file, const char *indent)
3915 {
3916 #ifndef __VERSION__
3917 #define __VERSION__ "[?]"
3918 #endif
3919 fnotice (file,
3920 #ifdef __GNUC__
3921 "%s%s%s version %s (%s)\n%s\tcompiled by GNU C version %s.\n"
3922 #else
3923 "%s%s%s version %s (%s) compiled by CC.\n"
3924 #endif
3925 , indent, *indent != 0 ? " " : "",
3926 lang_hooks.name, version_string, TARGET_NAME,
3927 indent, __VERSION__);
3928 fnotice (file, "%s%sGGC heuristics: --param ggc-min-expand=%d --param ggc-min-heapsize=%d\n",
3929 indent, *indent != 0 ? " " : "",
3930 PARAM_VALUE (GGC_MIN_EXPAND), PARAM_VALUE (GGC_MIN_HEAPSIZE));
3931 }
3932
3933 /* Print an option value and return the adjusted position in the line.
3934 ??? We don't handle error returns from fprintf (disk full); presumably
3935 other code will catch a disk full though. */
3936
3937 static int
3938 print_single_switch (FILE *file, int pos, int max,
3939 const char *indent, const char *sep, const char *term,
3940 const char *type, const char *name)
3941 {
3942 /* The ultrix fprintf returns 0 on success, so compute the result we want
3943 here since we need it for the following test. */
3944 int len = strlen (sep) + strlen (type) + strlen (name);
3945
3946 if (pos != 0
3947 && pos + len > max)
3948 {
3949 fprintf (file, "%s", term);
3950 pos = 0;
3951 }
3952 if (pos == 0)
3953 {
3954 fprintf (file, "%s", indent);
3955 pos = strlen (indent);
3956 }
3957 fprintf (file, "%s%s%s", sep, type, name);
3958 pos += len;
3959 return pos;
3960 }
3961
3962 /* Print active target switches to FILE.
3963 POS is the current cursor position and MAX is the size of a "line".
3964 Each line begins with INDENT and ends with TERM.
3965 Each switch is separated from the next by SEP. */
3966
3967 static void
3968 print_switch_values (FILE *file, int pos, int max,
3969 const char *indent, const char *sep, const char *term)
3970 {
3971 size_t j;
3972 const char **p;
3973
3974 /* Fill in the -frandom-seed option, if the user didn't pass it, so
3975 that it can be printed below. This helps reproducibility. */
3976 randomize ();
3977
3978 /* Print the options as passed. */
3979 pos = print_single_switch (file, pos, max, indent, *indent ? " " : "", term,
3980 _("options passed: "), "");
3981
3982 for (p = &save_argv[1]; *p != NULL; p++)
3983 if (**p == '-')
3984 {
3985 /* Ignore these. */
3986 if (strcmp (*p, "-o") == 0)
3987 {
3988 if (p[1] != NULL)
3989 p++;
3990 continue;
3991 }
3992 if (strcmp (*p, "-quiet") == 0)
3993 continue;
3994 if (strcmp (*p, "-version") == 0)
3995 continue;
3996 if ((*p)[1] == 'd')
3997 continue;
3998
3999 pos = print_single_switch (file, pos, max, indent, sep, term, *p, "");
4000 }
4001 if (pos > 0)
4002 fprintf (file, "%s", term);
4003
4004 /* Print the -f and -m options that have been enabled.
4005 We don't handle language specific options but printing argv
4006 should suffice. */
4007
4008 pos = print_single_switch (file, 0, max, indent, *indent ? " " : "", term,
4009 _("options enabled: "), "");
4010
4011 for (j = 0; j < ARRAY_SIZE (f_options); j++)
4012 if (*f_options[j].variable == f_options[j].on_value)
4013 pos = print_single_switch (file, pos, max, indent, sep, term,
4014 "-f", f_options[j].string);
4015
4016 /* Print target specific options. */
4017
4018 for (j = 0; j < ARRAY_SIZE (target_switches); j++)
4019 if (target_switches[j].name[0] != '\0'
4020 && target_switches[j].value > 0
4021 && ((target_switches[j].value & target_flags)
4022 == target_switches[j].value))
4023 {
4024 pos = print_single_switch (file, pos, max, indent, sep, term,
4025 "-m", target_switches[j].name);
4026 }
4027
4028 #ifdef TARGET_OPTIONS
4029 for (j = 0; j < ARRAY_SIZE (target_options); j++)
4030 if (*target_options[j].variable != NULL)
4031 {
4032 char prefix[256];
4033 sprintf (prefix, "-m%s", target_options[j].prefix);
4034 pos = print_single_switch (file, pos, max, indent, sep, term,
4035 prefix, *target_options[j].variable);
4036 }
4037 #endif
4038
4039 fprintf (file, "%s", term);
4040 }
4041
4042 /* Open assembly code output file. Do this even if -fsyntax-only is
4043 on, because then the driver will have provided the name of a
4044 temporary file or bit bucket for us. NAME is the file specified on
4045 the command line, possibly NULL. */
4046 static void
4047 init_asm_output (const char *name)
4048 {
4049 if (name == NULL && asm_file_name == 0)
4050 asm_out_file = stdout;
4051 else
4052 {
4053 if (asm_file_name == 0)
4054 {
4055 int len = strlen (dump_base_name);
4056 char *dumpname = xmalloc (len + 6);
4057 memcpy (dumpname, dump_base_name, len + 1);
4058 strip_off_ending (dumpname, len);
4059 strcat (dumpname, ".s");
4060 asm_file_name = dumpname;
4061 }
4062 if (!strcmp (asm_file_name, "-"))
4063 asm_out_file = stdout;
4064 else
4065 asm_out_file = fopen (asm_file_name, "w+");
4066 if (asm_out_file == 0)
4067 fatal_error ("can't open %s for writing: %m", asm_file_name);
4068 }
4069
4070 #ifdef IO_BUFFER_SIZE
4071 setvbuf (asm_out_file, xmalloc (IO_BUFFER_SIZE),
4072 _IOFBF, IO_BUFFER_SIZE);
4073 #endif
4074
4075 if (!flag_syntax_only)
4076 {
4077 targetm.asm_out.file_start ();
4078
4079 #ifdef ASM_COMMENT_START
4080 if (flag_verbose_asm)
4081 {
4082 /* Print the list of options in effect. */
4083 print_version (asm_out_file, ASM_COMMENT_START);
4084 print_switch_values (asm_out_file, 0, MAX_LINE,
4085 ASM_COMMENT_START, " ", "\n");
4086 /* Add a blank line here so it appears in assembler output but not
4087 screen output. */
4088 fprintf (asm_out_file, "\n");
4089 }
4090 #endif
4091 }
4092 }
4093
4094 /* Initialization of the front end environment, before command line
4095 options are parsed. Signal handlers, internationalization etc.
4096 ARGV0 is main's argv[0]. */
4097 static void
4098 general_init (const char *argv0)
4099 {
4100 const char *p;
4101
4102 p = argv0 + strlen (argv0);
4103 while (p != argv0 && !IS_DIR_SEPARATOR (p[-1]))
4104 --p;
4105 progname = p;
4106
4107 xmalloc_set_program_name (progname);
4108
4109 hex_init ();
4110
4111 gcc_init_libintl ();
4112
4113 /* Trap fatal signals, e.g. SIGSEGV, and convert them to ICE messages. */
4114 #ifdef SIGSEGV
4115 signal (SIGSEGV, crash_signal);
4116 #endif
4117 #ifdef SIGILL
4118 signal (SIGILL, crash_signal);
4119 #endif
4120 #ifdef SIGBUS
4121 signal (SIGBUS, crash_signal);
4122 #endif
4123 #ifdef SIGABRT
4124 signal (SIGABRT, crash_signal);
4125 #endif
4126 #if defined SIGIOT && (!defined SIGABRT || SIGABRT != SIGIOT)
4127 signal (SIGIOT, crash_signal);
4128 #endif
4129 #ifdef SIGFPE
4130 signal (SIGFPE, crash_signal);
4131 #endif
4132
4133 /* Other host-specific signal setup. */
4134 (*host_hooks.extra_signals)();
4135
4136 /* Initialize the diagnostics reporting machinery, so option parsing
4137 can give warnings and errors. */
4138 diagnostic_initialize (global_dc);
4139
4140 /* Initialize the garbage-collector, string pools and tree type hash
4141 table. */
4142 init_ggc ();
4143 init_stringpool ();
4144 init_ttree ();
4145
4146 /* Initialize register usage now so switches may override. */
4147 init_reg_sets ();
4148
4149 /* Register the language-independent parameters. */
4150 add_params (lang_independent_params, LAST_PARAM);
4151
4152 /* This must be done after add_params but before argument processing. */
4153 init_ggc_heuristics();
4154 }
4155
4156 /* Process the options that have been parsed. */
4157 static void
4158 process_options (void)
4159 {
4160 /* Allow the front end to perform consistency checks and do further
4161 initialization based on the command line options. This hook also
4162 sets the original filename if appropriate (e.g. foo.i -> foo.c)
4163 so we can correctly initialize debug output. */
4164 no_backend = (*lang_hooks.post_options) (&main_input_filename);
4165 input_filename = main_input_filename;
4166
4167 #ifdef OVERRIDE_OPTIONS
4168 /* Some machines may reject certain combinations of options. */
4169 OVERRIDE_OPTIONS;
4170 #endif
4171
4172 /* Set aux_base_name if not already set. */
4173 if (aux_base_name)
4174 ;
4175 else if (main_input_filename)
4176 {
4177 char *name = xstrdup (lbasename (main_input_filename));
4178
4179 strip_off_ending (name, strlen (name));
4180 aux_base_name = name;
4181 }
4182 else
4183 aux_base_name = "gccaux";
4184
4185 /* Set up the align_*_log variables, defaulting them to 1 if they
4186 were still unset. */
4187 if (align_loops <= 0) align_loops = 1;
4188 if (align_loops_max_skip > align_loops || !align_loops)
4189 align_loops_max_skip = align_loops - 1;
4190 align_loops_log = floor_log2 (align_loops * 2 - 1);
4191 if (align_jumps <= 0) align_jumps = 1;
4192 if (align_jumps_max_skip > align_jumps || !align_jumps)
4193 align_jumps_max_skip = align_jumps - 1;
4194 align_jumps_log = floor_log2 (align_jumps * 2 - 1);
4195 if (align_labels <= 0) align_labels = 1;
4196 align_labels_log = floor_log2 (align_labels * 2 - 1);
4197 if (align_labels_max_skip > align_labels || !align_labels)
4198 align_labels_max_skip = align_labels - 1;
4199 if (align_functions <= 0) align_functions = 1;
4200 align_functions_log = floor_log2 (align_functions * 2 - 1);
4201
4202 /* Unrolling all loops implies that standard loop unrolling must also
4203 be done. */
4204 if (flag_unroll_all_loops)
4205 flag_unroll_loops = 1;
4206
4207 if (flag_unroll_loops)
4208 {
4209 flag_old_unroll_loops = 0;
4210 flag_old_unroll_all_loops = 0;
4211 }
4212
4213 if (flag_old_unroll_all_loops)
4214 flag_old_unroll_loops = 1;
4215
4216 /* Old loop unrolling requires that strength_reduction be on also. Silently
4217 turn on strength reduction here if it isn't already on. Also, the loop
4218 unrolling code assumes that cse will be run after loop, so that must
4219 be turned on also. */
4220 if (flag_old_unroll_loops)
4221 {
4222 flag_strength_reduce = 1;
4223 flag_rerun_cse_after_loop = 1;
4224 }
4225 if (flag_unroll_loops || flag_peel_loops)
4226 flag_rerun_cse_after_loop = 1;
4227
4228 if (flag_non_call_exceptions)
4229 flag_asynchronous_unwind_tables = 1;
4230 if (flag_asynchronous_unwind_tables)
4231 flag_unwind_tables = 1;
4232
4233 /* Disable unit-at-a-time mode for frontends not supporting callgraph
4234 interface. */
4235 if (flag_unit_at_a_time && ! lang_hooks.callgraph.expand_function)
4236 flag_unit_at_a_time = 0;
4237
4238 /* Warn about options that are not supported on this machine. */
4239 #ifndef INSN_SCHEDULING
4240 if (flag_schedule_insns || flag_schedule_insns_after_reload)
4241 warning ("instruction scheduling not supported on this target machine");
4242 #endif
4243 #ifndef DELAY_SLOTS
4244 if (flag_delayed_branch)
4245 warning ("this target machine does not have delayed branches");
4246 #endif
4247
4248 user_label_prefix = USER_LABEL_PREFIX;
4249 if (flag_leading_underscore != -1)
4250 {
4251 /* If the default prefix is more complicated than "" or "_",
4252 issue a warning and ignore this option. */
4253 if (user_label_prefix[0] == 0 ||
4254 (user_label_prefix[0] == '_' && user_label_prefix[1] == 0))
4255 {
4256 user_label_prefix = flag_leading_underscore ? "_" : "";
4257 }
4258 else
4259 warning ("-f%sleading-underscore not supported on this target machine",
4260 flag_leading_underscore ? "" : "no-");
4261 }
4262
4263 /* If we are in verbose mode, write out the version and maybe all the
4264 option flags in use. */
4265 if (version_flag)
4266 {
4267 print_version (stderr, "");
4268 if (! quiet_flag)
4269 print_switch_values (stderr, 0, MAX_LINE, "", " ", "\n");
4270 }
4271
4272 if (flag_syntax_only)
4273 {
4274 write_symbols = NO_DEBUG;
4275 profile_flag = 0;
4276 }
4277
4278 /* Now we know write_symbols, set up the debug hooks based on it.
4279 By default we do nothing for debug output. */
4280 #if defined(DBX_DEBUGGING_INFO)
4281 if (write_symbols == DBX_DEBUG)
4282 debug_hooks = &dbx_debug_hooks;
4283 #endif
4284 #if defined(XCOFF_DEBUGGING_INFO)
4285 if (write_symbols == XCOFF_DEBUG)
4286 debug_hooks = &xcoff_debug_hooks;
4287 #endif
4288 #ifdef SDB_DEBUGGING_INFO
4289 if (write_symbols == SDB_DEBUG)
4290 debug_hooks = &sdb_debug_hooks;
4291 #endif
4292 #ifdef DWARF_DEBUGGING_INFO
4293 if (write_symbols == DWARF_DEBUG)
4294 debug_hooks = &dwarf_debug_hooks;
4295 #endif
4296 #ifdef DWARF2_DEBUGGING_INFO
4297 if (write_symbols == DWARF2_DEBUG)
4298 debug_hooks = &dwarf2_debug_hooks;
4299 #endif
4300 #ifdef VMS_DEBUGGING_INFO
4301 if (write_symbols == VMS_DEBUG || write_symbols == VMS_AND_DWARF2_DEBUG)
4302 debug_hooks = &vmsdbg_debug_hooks;
4303 #endif
4304
4305 /* If auxiliary info generation is desired, open the output file.
4306 This goes in the same directory as the source file--unlike
4307 all the other output files. */
4308 if (flag_gen_aux_info)
4309 {
4310 aux_info_file = fopen (aux_info_file_name, "w");
4311 if (aux_info_file == 0)
4312 fatal_error ("can't open %s: %m", aux_info_file_name);
4313 }
4314
4315 if (! targetm.have_named_sections)
4316 {
4317 if (flag_function_sections)
4318 {
4319 warning ("-ffunction-sections not supported for this target");
4320 flag_function_sections = 0;
4321 }
4322 if (flag_data_sections)
4323 {
4324 warning ("-fdata-sections not supported for this target");
4325 flag_data_sections = 0;
4326 }
4327 }
4328
4329 if (flag_function_sections && profile_flag)
4330 {
4331 warning ("-ffunction-sections disabled; it makes profiling impossible");
4332 flag_function_sections = 0;
4333 }
4334
4335 #ifndef HAVE_prefetch
4336 if (flag_prefetch_loop_arrays)
4337 {
4338 warning ("-fprefetch-loop-arrays not supported for this target");
4339 flag_prefetch_loop_arrays = 0;
4340 }
4341 #else
4342 if (flag_prefetch_loop_arrays && !HAVE_prefetch)
4343 {
4344 warning ("-fprefetch-loop-arrays not supported for this target (try -march switches)");
4345 flag_prefetch_loop_arrays = 0;
4346 }
4347 #endif
4348
4349 /* This combination of options isn't handled for i386 targets and doesn't
4350 make much sense anyway, so don't allow it. */
4351 if (flag_prefetch_loop_arrays && optimize_size)
4352 {
4353 warning ("-fprefetch-loop-arrays is not supported with -Os");
4354 flag_prefetch_loop_arrays = 0;
4355 }
4356
4357 #ifndef OBJECT_FORMAT_ELF
4358 if (flag_function_sections && write_symbols != NO_DEBUG)
4359 warning ("-ffunction-sections may affect debugging on some targets");
4360 #endif
4361
4362 /* The presence of IEEE signaling NaNs, implies all math can trap. */
4363 if (flag_signaling_nans)
4364 flag_trapping_math = 1;
4365 }
4366
4367 /* Initialize the compiler back end. */
4368 static void
4369 backend_init (void)
4370 {
4371 /* init_emit_once uses reg_raw_mode and therefore must be called
4372 after init_regs which initialized reg_raw_mode. */
4373 init_regs ();
4374 init_emit_once (debug_info_level == DINFO_LEVEL_NORMAL
4375 || debug_info_level == DINFO_LEVEL_VERBOSE
4376 #ifdef VMS_DEBUGGING_INFO
4377 /* Enable line number info for traceback. */
4378 || debug_info_level > DINFO_LEVEL_NONE
4379 #endif
4380 || flag_test_coverage
4381 || warn_notreached);
4382 init_fake_stack_mems ();
4383 init_alias_once ();
4384 init_loop ();
4385 init_reload ();
4386 init_function_once ();
4387 init_varasm_once ();
4388
4389 /* The following initialization functions need to generate rtl, so
4390 provide a dummy function context for them. */
4391 init_dummy_function_start ();
4392 init_expmed ();
4393 if (flag_caller_saves)
4394 init_caller_save ();
4395 expand_dummy_function_end ();
4396 }
4397
4398 /* Language-dependent initialization. Returns nonzero on success. */
4399 static int
4400 lang_dependent_init (const char *name)
4401 {
4402 if (dump_base_name == 0)
4403 dump_base_name = name ? name : "gccdump";
4404
4405 /* Other front-end initialization. */
4406 if ((*lang_hooks.init) () == 0)
4407 return 0;
4408
4409 init_asm_output (name);
4410
4411 /* These create various _DECL nodes, so need to be called after the
4412 front end is initialized. */
4413 init_eh ();
4414 init_optabs ();
4415
4416 /* The following initialization functions need to generate rtl, so
4417 provide a dummy function context for them. */
4418 init_dummy_function_start ();
4419 init_expr_once ();
4420 expand_dummy_function_end ();
4421
4422 /* If dbx symbol table desired, initialize writing it and output the
4423 predefined types. */
4424 timevar_push (TV_SYMOUT);
4425
4426 #ifdef DWARF2_UNWIND_INFO
4427 if (dwarf2out_do_frame ())
4428 dwarf2out_frame_init ();
4429 #endif
4430
4431 /* Now we have the correct original filename, we can initialize
4432 debug output. */
4433 (*debug_hooks->init) (name);
4434
4435 timevar_pop (TV_SYMOUT);
4436
4437 return 1;
4438 }
4439
4440 /* Clean up: close opened files, etc. */
4441
4442 static void
4443 finalize (void)
4444 {
4445 /* Close the dump files. */
4446 if (flag_gen_aux_info)
4447 {
4448 fclose (aux_info_file);
4449 if (errorcount)
4450 unlink (aux_info_file_name);
4451 }
4452
4453 /* Close non-debugging input and output files. Take special care to note
4454 whether fclose returns an error, since the pages might still be on the
4455 buffer chain while the file is open. */
4456
4457 if (asm_out_file)
4458 {
4459 if (ferror (asm_out_file) != 0)
4460 fatal_error ("error writing to %s: %m", asm_file_name);
4461 if (fclose (asm_out_file) != 0)
4462 fatal_error ("error closing %s: %m", asm_file_name);
4463 }
4464
4465 /* Do whatever is necessary to finish printing the graphs. */
4466 if (graph_dump_format != no_graph)
4467 {
4468 int i;
4469
4470 for (i = 0; i < (int) DFI_MAX; ++i)
4471 if (dump_file[i].initialized && dump_file[i].graph_dump_p)
4472 {
4473 char seq[16];
4474 char *suffix;
4475
4476 sprintf (seq, DUMPFILE_FORMAT, i);
4477 suffix = concat (seq, dump_file[i].extension, NULL);
4478 finish_graph_dump_file (dump_base_name, suffix);
4479 free (suffix);
4480 }
4481 }
4482
4483 if (mem_report)
4484 {
4485 ggc_print_statistics ();
4486 stringpool_statistics ();
4487 dump_tree_statistics ();
4488 }
4489
4490 /* Free up memory for the benefit of leak detectors. */
4491 free_reg_info ();
4492
4493 /* Language-specific end of compilation actions. */
4494 (*lang_hooks.finish) ();
4495 }
4496
4497 /* Initialize the compiler, and compile the input file. */
4498 static void
4499 do_compile (void)
4500 {
4501 /* Initialize timing first. The C front ends read the main file in
4502 the post_options hook, and C++ does file timings. */
4503 if (time_report || !quiet_flag || flag_detailed_statistics)
4504 timevar_init ();
4505 timevar_start (TV_TOTAL);
4506
4507 process_options ();
4508
4509 /* Don't do any more if an error has already occurred. */
4510 if (!errorcount)
4511 {
4512 /* Set up the back-end if requested. */
4513 if (!no_backend)
4514 backend_init ();
4515
4516 /* Language-dependent initialization. Returns true on success. */
4517 if (lang_dependent_init (main_input_filename))
4518 {
4519 if (flag_unit_at_a_time)
4520 {
4521 open_dump_file (DFI_cgraph, NULL);
4522 cgraph_dump_file = rtl_dump_file;
4523 rtl_dump_file = NULL;
4524 }
4525
4526 compile_file ();
4527
4528 if (flag_unit_at_a_time)
4529 {
4530 rtl_dump_file = cgraph_dump_file;
4531 cgraph_dump_file = NULL;
4532 close_dump_file (DFI_cgraph, NULL, NULL_RTX);
4533 }
4534 }
4535
4536 finalize ();
4537 }
4538
4539 /* Stop timing and print the times. */
4540 timevar_stop (TV_TOTAL);
4541 timevar_print (stderr);
4542 }
4543
4544 /* Entry point of cc1, cc1plus, jc1, f771, etc.
4545 Decode command args, then call compile_file.
4546 Exit code is FATAL_EXIT_CODE if can't open files or if there were
4547 any errors, or SUCCESS_EXIT_CODE if compilation succeeded.
4548
4549 It is not safe to call this function more than once. */
4550
4551 int
4552 toplev_main (unsigned int argc, const char **argv)
4553 {
4554 save_argv = argv;
4555
4556 /* Initialization of GCC's environment, and diagnostics. */
4557 general_init (argv[0]);
4558
4559 /* Parse the options and do minimal processing; basically just
4560 enough to default flags appropriately. */
4561 decode_options (argc, argv);
4562
4563 randomize ();
4564
4565 /* Exit early if we can (e.g. -help). */
4566 if (!exit_after_options)
4567 do_compile ();
4568
4569 if (errorcount || sorrycount)
4570 return (FATAL_EXIT_CODE);
4571
4572 return (SUCCESS_EXIT_CODE);
4573 }