- no more be_init(): backend is initialised in init_firm
[libfirm] / ir / be / bemain.c
1 /*
2  * Copyright (C) 1995-2008 University of Karlsruhe.  All right reserved.
3  *
4  * This file is part of libFirm.
5  *
6  * This file may be distributed and/or modified under the terms of the
7  * GNU General Public License version 2 as published by the Free Software
8  * Foundation and appearing in the file LICENSE.GPL included in the
9  * packaging of this file.
10  *
11  * Licensees holding valid libFirm Professional Edition licenses may use
12  * this file in accordance with the libFirm Commercial License.
13  * Agreement provided with the Software.
14  *
15  * This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
16  * WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
17  * PURPOSE.
18  */
19
20 /**
21  * @file
22  * @brief       Main Backend driver.
23  * @author      Sebastian Hack
24  * @date        25.11.2004
25  * @version     $Id$
26  */
27 #ifdef HAVE_CONFIG_H
28 #include "config.h"
29 #endif
30
31 #include <stdarg.h>
32 #include <stdio.h>
33
34 #include "lc_opts.h"
35 #include "lc_opts_enum.h"
36
37 #include "obst.h"
38 #include "bitset.h"
39
40 #include "irprog.h"
41 #include "irgopt.h"
42 #include "irgraph.h"
43 #include "irdump.h"
44 #include "phiclass.h"
45 #include "irdom_t.h"
46 #include "iredges_t.h"
47 #include "irloop_t.h"
48 #include "irtools.h"
49 #include "irvrfy.h"
50 #include "irprintf.h"
51 #include "iroptimize.h"
52 #include "firmstat.h"
53 #include "execfreq.h"
54 #include "irprofile.h"
55
56 #include "bearch_t.h"
57 #include "be_t.h"
58 #include "bemodule.h"
59 #include "beutil.h"
60 #include "benode_t.h"
61 #include "beirgmod.h"
62 #include "besched_t.h"
63 #include "belistsched.h"
64 #include "belive_t.h"
65 #include "bera.h"
66 #include "bechordal_t.h"
67 #include "beifg.h"
68 #include "beifg_impl.h"
69 #include "becopyopt.h"
70 #include "becopystat.h"
71 #include "bessadestr.h"
72 #include "beabi.h"
73 #include "belower.h"
74 #include "beschedmris.h"
75 #include "bestat.h"
76 #include "beverify.h"
77 #include "be_dbgout.h"
78 #include "beirg_t.h"
79
80 #define NEW_ID(s) new_id_from_chars(s, sizeof(s) - 1)
81
82 #ifdef WITH_ILP
83 #include "beilpsched.h"
84 #endif /* WITH_ILP */
85
86 /* options visible for anyone */
87 static be_options_t be_options = {
88         DUMP_NONE,                         /* dump flags */
89         BE_TIME_OFF,                       /* no timing */
90         0,                                 /* no opt profile */
91         0,                                 /* try to omit frame pointer */
92         0,                                 /* create PIC code */
93         0,                                 /* create gprof compatible profiling code */
94         BE_VRFY_WARN,                      /* verification level: warn */
95         BE_SCHED_LIST,                     /* scheduler: list scheduler */
96         "linux",                           /* target OS name */
97         "i44pc52.info.uni-karlsruhe.de",   /* ilp server */
98         "cplex",                           /* ilp solver */
99         0,                                 /* enable statistic event dumping */
100         "",                                /* print stat events */
101 };
102
103 /* config file. */
104 static char config_file[256] = { 0 };
105
106 /* back end instruction set architecture to use */
107 static const arch_isa_if_t *isa_if = NULL;
108
109 /* possible dumping options */
110 static const lc_opt_enum_mask_items_t dump_items[] = {
111         { "none",       DUMP_NONE },
112         { "initial",    DUMP_INITIAL },
113         { "abi",        DUMP_ABI    },
114         { "sched",      DUMP_SCHED  },
115         { "prepared",   DUMP_PREPARED },
116         { "regalloc",   DUMP_RA },
117         { "final",      DUMP_FINAL },
118         { "be",         DUMP_BE },
119         { "all",        2 * DUMP_BE - 1 },
120         { NULL,         0 }
121 };
122
123 /* verify options. */
124 static const lc_opt_enum_int_items_t vrfy_items[] = {
125         { "off",    BE_VRFY_OFF    },
126         { "warn",   BE_VRFY_WARN   },
127         { "assert", BE_VRFY_ASSERT },
128         { NULL,     0 }
129 };
130
131 /* scheduling options. */
132 static const lc_opt_enum_int_items_t sched_items[] = {
133         { "list", BE_SCHED_LIST },
134 #ifdef WITH_ILP
135         { "ilp",  BE_SCHED_ILP  },
136 #endif /* WITH_ILP */
137         { NULL,   0 }
138 };
139
140 static lc_opt_enum_mask_var_t dump_var = {
141         &be_options.dump_flags, dump_items
142 };
143
144 static lc_opt_enum_int_var_t vrfy_var = {
145         &be_options.vrfy_option, vrfy_items
146 };
147
148 static lc_opt_enum_int_var_t sched_var = {
149         &be_options.scheduler, sched_items
150 };
151
152 static const lc_opt_table_entry_t be_main_options[] = {
153         LC_OPT_ENT_STR      ("config",   "read another config file containing backend options", config_file, sizeof(config_file)),
154         LC_OPT_ENT_ENUM_MASK("dump",     "dump irg on several occasions",                       &dump_var),
155         LC_OPT_ENT_BOOL     ("omitfp",   "omit frame pointer",                                  &be_options.omit_fp),
156         LC_OPT_ENT_BOOL     ("pic",      "create PIC code",                                     &be_options.pic),
157         LC_OPT_ENT_BOOL     ("gprof",    "create gprof profiling code",                         &be_options.gprof),
158         LC_OPT_ENT_ENUM_PTR ("vrfy",     "verify the backend irg",                              &vrfy_var),
159         LC_OPT_ENT_BOOL     ("time",     "get backend timing statistics",                       &be_options.timing),
160         LC_OPT_ENT_BOOL     ("profile",  "instrument the code for execution count profiling",   &be_options.opt_profile),
161         LC_OPT_ENT_ENUM_PTR ("sched",    "select a scheduler",                                  &sched_var),
162         LC_OPT_ENT_STR      ("os",       "specify target operating system",                     &be_options.target_os, sizeof(be_options.target_os)),
163 #ifdef FIRM_STATISTICS
164         LC_OPT_ENT_BOOL     ("statev",   "dump statistic events",                               &be_options.statev),
165         LC_OPT_ENT_STR      ("filtev",   "filter for stat events (regex if support is active",  &be_options.filtev, sizeof(be_options.filtev)),
166 #endif
167
168 #ifdef WITH_ILP
169         LC_OPT_ENT_STR ("ilp.server", "the ilp server name", be_options.ilp_server, sizeof(be_options.ilp_server)),
170         LC_OPT_ENT_STR ("ilp.solver", "the ilp solver name", be_options.ilp_solver, sizeof(be_options.ilp_solver)),
171 #endif /* WITH_ILP */
172         LC_OPT_LAST
173 };
174
175 static be_module_list_entry_t *isa_ifs = NULL;
176
177 void be_register_isa_if(const char *name, const arch_isa_if_t *isa)
178 {
179         if (isa_if == NULL)
180                 isa_if = isa;
181
182         be_add_module_to_list(&isa_ifs, name, (void*) isa);
183 }
184
185 void be_opt_register(void)
186 {
187         lc_opt_entry_t *be_grp;
188         static int run_once = 0;
189
190         if (run_once) {
191                 return;
192         }
193         run_once     = 1;
194
195         be_init_modules();
196
197         be_grp = lc_opt_get_grp(firm_opt_get_root(), "be");
198         lc_opt_add_table(be_grp, be_main_options);
199
200         be_add_module_list_opt(be_grp, "isa", "the instruction set architecture",
201                                &isa_ifs, (void**) &isa_if);
202 }
203
204 /* Parse one argument. */
205 int be_parse_arg(const char *arg) {
206         lc_opt_entry_t *be_grp = lc_opt_get_grp(firm_opt_get_root(), "be");
207         if (strcmp(arg, "help") == 0 || (arg[0] == '?' && arg[1] == '\0')) {
208                 lc_opt_print_help(be_grp, stdout);
209                 return -1;
210         }
211         return lc_opt_from_single_arg(be_grp, NULL, arg, NULL);
212 }
213
214 /** The be parameters returned by default, all off. */
215 static const backend_params be_params = {
216         0,    /* need dword lowering */
217         0,    /* don't support inline assembler yet */
218         0,     /* no immediate floating point mode. */
219         NULL, /* no additional opcodes */
220         NULL, /* will be set later */
221         NULL, /* but yet no creator function */
222         NULL, /* context for create_intrinsic_fkt */
223         NULL, /* no if conversion settings */
224         NULL   /* no immediate fp mode */
225 };
226
227 /* Perform schedule verification if requested. */
228 static void be_sched_vrfy(be_irg_t *birg, int vrfy_opt) {
229         if (vrfy_opt == BE_VRFY_WARN) {
230                 be_verify_schedule(birg);
231         } else if (vrfy_opt == BE_VRFY_ASSERT) {
232                 assert(be_verify_schedule(birg) && "Schedule verification failed.");
233         }
234 }
235
236 /* Initialize the Firm backend. Must be run BEFORE init_firm()! */
237 const backend_params *be_init(void)
238 {
239         be_opt_register();
240         be_init_modules();
241
242         if (isa_if->get_params)
243                 return isa_if->get_params();
244         return &be_params;
245 }
246
247 /**
248  * Initializes the main environment for the backend.
249  *
250  * @param env          an empty environment
251  * @param file_handle  the file handle where the output will be written to
252  */
253 static be_main_env_t *be_init_env(be_main_env_t *env, FILE *file_handle)
254 {
255         memset(env, 0, sizeof(*env));
256         env->options              = &be_options;
257         env->ent_trampoline_map   = pmap_create();
258         env->pic_trampolines_type = new_type_class(NEW_ID("$PIC_TRAMPOLINE_TYPE"));
259         env->ent_pic_symbol_map   = pmap_create();
260         env->pic_symbols_type     = new_type_struct(NEW_ID("$PIC_SYMBOLS_TYPE"));
261
262         remove_irp_type(env->pic_trampolines_type);
263         remove_irp_type(env->pic_symbols_type);
264         set_class_final(env->pic_trampolines_type, 1);
265
266         env->arch_env = arch_env_init(isa_if, file_handle, env);
267
268         be_phi_handler_new(env);
269
270         be_dbg_open();
271         return env;
272 }
273
274 /**
275  * Called when the be_main_env_t can be destroyed.
276  */
277 static void be_done_env(be_main_env_t *env)
278 {
279         arch_env_done(env->arch_env);
280         be_dbg_close();
281         be_phi_handler_free();
282
283         pmap_destroy(env->ent_trampoline_map);
284         pmap_destroy(env->ent_pic_symbol_map);
285         free_type(env->pic_trampolines_type);
286         free_type(env->pic_symbols_type);
287 }
288
289 /**
290  * A wrapper around a firm dumper. Dumps only, if
291  * flags are enabled.
292  *
293  * @param mask    a bitmask containing the reason what will be dumped
294  * @param irg     the IR graph to dump
295  * @param suffix  the suffix for the dumper
296  * @param dumper  the dumper to be called
297  */
298 static void dump(int mask, ir_graph *irg, const char *suffix,
299                  void (*dumper)(ir_graph *, const char *))
300 {
301         if(be_options.dump_flags & mask)
302                 be_dump(irg, suffix, dumper);
303 }
304
305 /**
306  * Prepare a backend graph for code generation and initialize its birg
307  */
308 static void initialize_birg(be_irg_t *birg, ir_graph *irg, be_main_env_t *env)
309 {
310         memset(birg, 0, sizeof(*birg));
311         birg->irg = irg;
312         birg->main_env = env;
313
314         edges_deactivate_kind(irg, EDGE_KIND_DEP);
315         edges_activate_kind(irg, EDGE_KIND_DEP);
316
317         dump(DUMP_INITIAL, irg, "-begin", dump_ir_block_graph);
318
319         be_stat_init_irg(env->arch_env, irg);
320         be_do_stat_nodes(irg, "01 Begin");
321
322         /* set the current graph (this is important for several firm functions) */
323         current_ir_graph = irg;
324
325         /* Normalize proj nodes. */
326         normalize_proj_nodes(irg);
327
328         /* we do this before critical edge split. As this produces less returns,
329            because sometimes (= 164.gzip) multiple returns are slower */
330         normalize_n_returns(irg);
331
332         /* Remove critical edges */
333         remove_critical_cf_edges(irg);
334
335         /* Ensure, that the ir_edges are computed. */
336         edges_assure(irg);
337
338         set_irg_phase_state(irg, phase_backend);
339
340         dump(DUMP_INITIAL, irg, "-prepared", dump_ir_block_graph);
341 }
342
343 #define BE_TIMER_ONLY(code)   do { if (be_timing) { code; } } while(0)
344
345 int be_timing;
346 ir_timer_t *t_abi;
347 ir_timer_t *t_codegen;
348 ir_timer_t *t_sched;
349 ir_timer_t *t_constr;
350 ir_timer_t *t_finish;
351 ir_timer_t *t_emit;
352 ir_timer_t *t_other;
353 ir_timer_t *t_verify;
354 ir_timer_t *t_heights;
355 ir_timer_t *t_live;
356 ir_timer_t *t_execfreq;
357 ir_timer_t *t_ssa_constr;
358 ir_timer_t *t_ra_constr;
359 ir_timer_t *t_ra_prolog;
360 ir_timer_t *t_ra_epilog;
361 ir_timer_t *t_ra_spill;
362 ir_timer_t *t_ra_spill_apply;
363 ir_timer_t *t_ra_color;
364 ir_timer_t *t_ra_ifg;
365 ir_timer_t *t_ra_copymin;
366 ir_timer_t *t_ra_ssa;
367 ir_timer_t *t_ra_other;
368
369 /**
370  * The Firm backend main loop.
371  * Do architecture specific lowering for all graphs
372  * and call the architecture specific code generator.
373  *
374  * @param file_handle   the file handle the output will be written to
375  * @param cup_name      name of the compilation unit
376  */
377 static void be_main_loop(FILE *file_handle, const char *cup_name)
378 {
379         int i;
380         be_main_env_t env;
381         char prof_filename[256];
382         static const char suffix[] = ".prof";
383         be_irg_t *birgs;
384         int num_birgs;
385         ir_graph **irg_list, **backend_irg_list;
386         arch_env_t *arch_env;
387
388         be_timing = (be_options.timing == BE_TIME_ON);
389
390         if (be_timing) {
391                 t_abi        = ir_timer_register("time_beabi",       "be abi introduction");
392                 t_codegen    = ir_timer_register("time_codegen",     "codegeneration");
393                 t_sched      = ir_timer_register("time_sched",       "scheduling");
394                 t_constr     = ir_timer_register("time_constr",      "assure constraints");
395                 t_finish     = ir_timer_register("time_finish",      "graph finish");
396                 t_emit       = ir_timer_register("time_emiter",      "code emiter");
397                 t_verify     = ir_timer_register("time_verify",      "graph verification");
398                 t_other      = ir_timer_register("time_other",       "other");
399                 t_heights    = ir_timer_register("time_heights",     "heights");
400                 t_live       = ir_timer_register("time_liveness",    "be liveness");
401                 t_execfreq   = ir_timer_register("time_execfreq",    "execfreq");
402                 t_ssa_constr = ir_timer_register("time_ssa_constr",  "ssa reconstruction");
403                 t_ra_prolog  = ir_timer_register("time_ra_prolog",   "regalloc prolog");
404                 t_ra_epilog  = ir_timer_register("time_ra_epilog",   "regalloc epilog");
405                 t_ra_constr  = ir_timer_register("time_ra_constr",   "regalloc constraints");
406                 t_ra_spill   = ir_timer_register("time_ra_spill",    "spiller");
407                 t_ra_spill_apply
408                         = ir_timer_register("time_ra_spill_apply", "apply spills");
409                 t_ra_color   = ir_timer_register("time_ra_color",    "graph coloring");
410                 t_ra_ifg     = ir_timer_register("time_ra_ifg",      "interference graph");
411                 t_ra_copymin = ir_timer_register("time_ra_copymin",  "copy minimization");
412                 t_ra_ssa     = ir_timer_register("time_ra_ssadestr", "ssa destruction");
413                 t_ra_other   = ir_timer_register("time_ra_other",    "regalloc other");
414         }
415
416         be_init_env(&env, file_handle);
417         env.cup_name = cup_name;
418
419         be_dbg_so(cup_name);
420         be_dbg_types();
421
422         arch_env = env.arch_env;
423
424         /* backend may provide an ordered list of irgs where code should be generated for */
425         irg_list         = NEW_ARR_F(ir_graph *, 0);
426         backend_irg_list = arch_env_get_backend_irg_list(arch_env, &irg_list);
427
428         /* we might need 1 birg more for instrumentation constructor */
429         num_birgs = backend_irg_list ? ARR_LEN(backend_irg_list) : get_irp_n_irgs();
430         birgs     = alloca(sizeof(birgs[0]) * (num_birgs + 1));
431
432         /* First: initialize all birgs */
433         for(i = 0; i < num_birgs; ++i) {
434                 ir_graph *irg = backend_irg_list ? backend_irg_list[i] : get_irp_irg(i);
435                 initialize_birg(&birgs[i], irg, &env);
436         }
437         DEL_ARR_F(irg_list);
438
439         /*
440                 Get the filename for the profiling data.
441                 Beware: '\0' is already included in sizeof(suffix)
442         */
443         memset(prof_filename, 0, sizeof(prof_filename));
444         strncpy(prof_filename, cup_name, sizeof(prof_filename) - sizeof(suffix));
445         strcat(prof_filename, suffix);
446
447         /*
448                 Next: Either instruments all irgs with profiling code
449                 or try to read in profile data for current translation unit.
450         */
451         if (be_options.opt_profile) {
452                 ir_graph *prof_init_irg = ir_profile_instrument(prof_filename, profile_default);
453                 initialize_birg(&birgs[num_birgs], prof_init_irg, &env);
454                 num_birgs++;
455         } else {
456                 ir_profile_read(prof_filename);
457         }
458
459         /* For all graphs */
460         for (i = 0; i < num_birgs; ++i) {
461                 be_irg_t *birg = &birgs[i];
462                 ir_graph *irg  = birg->irg;
463                 optimization_state_t state;
464                 const arch_code_generator_if_t *cg_if;
465
466                 /* set the current graph (this is important for several firm functions) */
467                 current_ir_graph = irg;
468
469 #if 0
470                 {
471                         unsigned percent = 100*i/num_birgs;
472                         ir_printf("%u.%02u %+F\n", percent/100, percent%100, irg);
473                 }
474 #endif
475                 be_sched_init_phase(irg);
476
477                 /* reset the phi handler. */
478                 be_phi_handler_reset();
479
480                 stat_ev_ctx_push_fobj("bemain_irg", irg);
481
482                 /* stop and reset timers */
483                 BE_TIMER_PUSH(t_other);   /* t_other */
484
485                 /* Verify the initial graph */
486                 BE_TIMER_PUSH(t_verify);
487                 if (be_options.vrfy_option == BE_VRFY_WARN) {
488                         irg_verify(irg, VRFY_ENFORCE_SSA);
489                         be_check_dominance(irg);
490                 } else if (be_options.vrfy_option == BE_VRFY_ASSERT) {
491                         assert(irg_verify(irg, VRFY_ENFORCE_SSA) && "irg verification failed");
492                         assert(be_check_dominance(irg) && "Dominance verification failed");
493                 }
494                 BE_TIMER_POP(t_verify);
495
496                 /* Get the code generator interface. */
497                 cg_if = arch_env_get_code_generator_if(arch_env);
498
499                 /* get a code generator for this graph. */
500                 birg->cg = cg_if->init(birg);
501
502                 /* some transformations need to be done before abi introduce */
503                 arch_code_generator_before_abi(birg->cg);
504
505                 /* implement the ABI conventions. */
506                 BE_TIMER_PUSH(t_abi);
507                 birg->abi = be_abi_introduce(birg);
508                 BE_TIMER_POP(t_abi);
509
510                 dump(DUMP_ABI, irg, "-abi", dump_ir_block_graph);
511                 be_do_stat_nodes(irg, "02 Abi");
512
513                 if (be_options.vrfy_option == BE_VRFY_WARN) {
514                         be_check_dominance(irg);
515                         be_verify_out_edges(irg);
516                 } else if (be_options.vrfy_option == BE_VRFY_ASSERT) {
517                         assert(be_verify_out_edges(irg));
518                         assert(be_check_dominance(irg) && "Dominance verification failed");
519                 }
520
521                 /* generate code */
522                 stat_ev_ctx_push_str("bemain_phase", "prepare");
523                 BE_TIMER_PUSH(t_codegen);
524                 arch_code_generator_prepare_graph(birg->cg);
525                 BE_TIMER_POP(t_codegen);
526                 stat_ev_ctx_pop("bemain_phase");
527
528                 /* reset the phi handler. */
529                 be_phi_handler_reset();
530
531                 be_do_stat_nodes(irg, "03 Prepare");
532
533                 dump(DUMP_PREPARED, irg, "-prepared", dump_ir_block_graph);
534
535                 if (be_options.vrfy_option == BE_VRFY_WARN) {
536                         be_check_dominance(irg);
537                         be_verify_out_edges(irg);
538                 } else if (be_options.vrfy_option == BE_VRFY_ASSERT) {
539                         assert(be_verify_out_edges(irg));
540                         assert(be_check_dominance(irg) && "Dominance verification failed");
541                 }
542
543                 BE_TIMER_PUSH(t_execfreq);
544                 /**
545                  * Create execution frequencies from profile data or estimate some
546                  */
547                 if (ir_profile_has_data())
548                         birg->exec_freq = ir_create_execfreqs_from_profile(irg);
549                 else
550                         birg->exec_freq = compute_execfreq(irg, 10);
551                 BE_TIMER_POP(t_execfreq);
552
553
554                 /* disabled for now, fails for EmptyFor.c and XXEndless.c */
555                 /* be_live_chk_compare(birg); */
556
557                 /* let backend prepare scheduling */
558                 stat_ev_ctx_push_str("bemain_phase", "before_sched");
559                 BE_TIMER_PUSH(t_codegen);
560                 arch_code_generator_before_sched(birg->cg);
561                 BE_TIMER_POP(t_codegen);
562                 stat_ev_ctx_pop("bemain_phase");
563
564                 /* schedule the irg */
565                 BE_TIMER_PUSH(t_sched);
566                 switch (be_options.scheduler) {
567                         default:
568                                 fprintf(stderr, "Warning: invalid scheduler (%d) selected, falling back to list scheduler.\n", be_options.scheduler);
569                         case BE_SCHED_LIST:
570                                 list_sched(birg, &be_options);
571                                 break;
572 #ifdef WITH_ILP
573                         case BE_SCHED_ILP:
574                                 be_ilp_sched(birg, &be_options);
575                                 break;
576 #endif /* WITH_ILP */
577                 };
578                 BE_TIMER_POP(t_sched);
579
580                 dump(DUMP_SCHED, irg, "-sched", dump_ir_block_graph_sched);
581
582                 /* check schedule */
583                 BE_TIMER_PUSH(t_verify);
584                 be_sched_vrfy(birg, be_options.vrfy_option);
585                 BE_TIMER_POP(t_verify);
586
587                 be_do_stat_nodes(irg, "04 Schedule");
588
589                 /* introduce patterns to assure constraints */
590                 BE_TIMER_PUSH(t_constr);
591                 /* we switch off optimizations here, because they might cause trouble */
592                 save_optimization_state(&state);
593                 set_optimize(0);
594                 set_opt_normalize(0);
595                 set_opt_cse(0);
596
597                 assert(!get_opt_cse());
598
599                 /* add Keeps for should_be_different constrained nodes  */
600                 /* beware: needs schedule due to usage of be_ssa_constr */
601                 assure_constraints(birg);
602                 BE_TIMER_POP(t_constr);
603
604                 dump(DUMP_SCHED, irg, "-assured", dump_ir_block_graph_sched);
605                 be_do_stat_nodes(irg, "05 Constraints");
606
607                 /* stuff needs to be done after scheduling but before register allocation */
608                 BE_TIMER_PUSH(t_codegen);
609                 arch_code_generator_before_ra(birg->cg);
610                 BE_TIMER_POP(t_codegen);
611
612                 /* connect all stack modifying nodes together (see beabi.c) */
613                 BE_TIMER_PUSH(t_abi);
614                 be_abi_fix_stack_nodes(birg->abi);
615                 BE_TIMER_POP(t_abi);
616
617                 dump(DUMP_SCHED, irg, "-fix_stack", dump_ir_block_graph_sched);
618
619                 /* check schedule */
620                 BE_TIMER_PUSH(t_verify);
621                 be_sched_vrfy(birg, be_options.vrfy_option);
622                 BE_TIMER_POP(t_verify);
623
624                 /* do some statistics */
625                 //be_do_stat_reg_pressure(birg);
626
627 #ifdef FIRM_STATISTICS
628                 stat_ev_dbl("costs_before_ra", be_estimate_irg_costs(irg, arch_env, birg->exec_freq));
629 #endif
630
631                 /* Do register allocation */
632                 be_allocate_registers(birg);
633
634 #ifdef FIRM_STATISTICS
635                 stat_ev_dbl("costs_before_ra", be_estimate_irg_costs(irg, arch_env, birg->exec_freq));
636 #endif
637
638                 dump(DUMP_RA, irg, "-ra", dump_ir_block_graph_sched);
639                 be_do_stat_nodes(irg, "06 Register Allocation");
640
641                 /* let the code generator prepare the graph for emitter */
642                 BE_TIMER_PUSH(t_finish);
643                 arch_code_generator_after_ra(birg->cg);
644                 BE_TIMER_POP(t_finish);
645
646                 /* fix stack offsets */
647                 BE_TIMER_PUSH(t_abi);
648                 be_abi_fix_stack_nodes(birg->abi);
649                 be_remove_dead_nodes_from_schedule(birg);
650                 be_abi_fix_stack_bias(birg->abi);
651                 BE_TIMER_POP(t_abi);
652
653                 dump(DUMP_SCHED, irg, "-fix_stack_after_ra", dump_ir_block_graph_sched);
654
655                 BE_TIMER_PUSH(t_finish);
656                 arch_code_generator_finish(birg->cg);
657                 BE_TIMER_POP(t_finish);
658
659                 dump(DUMP_FINAL, irg, "-finish", dump_ir_block_graph_sched);
660
661                 /* check schedule and register allocation */
662                 BE_TIMER_PUSH(t_verify);
663                 if (be_options.vrfy_option == BE_VRFY_WARN) {
664                         irg_verify(irg, VRFY_ENFORCE_SSA);
665                         be_check_dominance(irg);
666                         be_verify_out_edges(irg);
667                         be_verify_schedule(birg);
668                         be_verify_register_allocation(birg);
669                 } else if (be_options.vrfy_option == BE_VRFY_ASSERT) {
670                         assert(irg_verify(irg, VRFY_ENFORCE_SSA) && "irg verification failed");
671                         assert(be_verify_out_edges(irg) && "out edge verification failed");
672                         assert(be_check_dominance(irg) && "Dominance verification failed");
673                         assert(be_verify_schedule(birg) && "Schedule verification failed");
674                         assert(be_verify_register_allocation(birg)
675                                && "register allocation verification failed");
676
677                 }
678                 BE_TIMER_POP(t_verify);
679
680                 /* emit assembler code */
681                 BE_TIMER_PUSH(t_emit);
682                 arch_code_generator_done(birg->cg);
683                 BE_TIMER_POP(t_emit);
684
685                 dump(DUMP_FINAL, irg, "-end", dump_ir_block_graph_sched);
686
687                 BE_TIMER_PUSH(t_abi);
688                 be_abi_free(birg->abi);
689                 BE_TIMER_POP(t_abi);
690
691                 be_do_stat_nodes(irg, "07 Final");
692                 restore_optimization_state(&state);
693
694                 BE_TIMER_POP(t_other);
695
696 #define STOP_AND_RESET_TIMER(timer) do { ir_timer_stop(timer); ir_timer_reset(timer); } while(0)
697
698 #define LC_EMIT(timer)  \
699                 stat_ev_if {    \
700                         stat_ev_dbl(ir_timer_get_name(timer), ir_timer_elapsed_msec(timer));  \
701                 } else { \
702                         printf("%-20s: %8.3lf msec\n", ir_timer_get_description(timer), (double)ir_timer_elapsed_usec(timer) / 1000.0); \
703                 } \
704                 STOP_AND_RESET_TIMER(timer);
705
706                 BE_TIMER_ONLY(
707                         stat_ev_if {
708                         } else {
709                                 printf("==>> IRG %s <<==\n", get_entity_name(get_irg_entity(irg)));
710                         }
711                         LC_EMIT(t_abi);
712                         LC_EMIT(t_codegen);
713                         LC_EMIT(t_sched);
714                         LC_EMIT(t_live);
715                         LC_EMIT(t_heights);
716                         LC_EMIT(t_ssa_constr);
717                         LC_EMIT(t_constr);
718                         LC_EMIT(t_execfreq);
719                         LC_EMIT(t_ra_prolog);
720                         LC_EMIT(t_ra_spill);
721                         LC_EMIT(t_ra_spill_apply);
722                         LC_EMIT(t_ra_constr);
723                         LC_EMIT(t_ra_color);
724                         LC_EMIT(t_ra_ifg);
725                         LC_EMIT(t_ra_copymin);
726                         LC_EMIT(t_ra_ssa);
727                         LC_EMIT(t_ra_epilog);
728                         LC_EMIT(t_ra_other);
729                         LC_EMIT(t_finish);
730                         LC_EMIT(t_emit);
731                         LC_EMIT(t_verify);
732                         LC_EMIT(t_other);
733                 );
734 #undef LC_EMIT
735
736                 be_sched_free_phase(irg);
737
738                 be_free_birg(birg);
739
740         /* switched off due to statistics (statistic module needs all irgs) */
741 #if 0   /* STA needs irgs */
742 #ifdef FIRM_STATISTICS
743                 if (! stat_is_active())
744 #endif /* FIRM_STATISTICS */
745                         free_ir_graph(irg);
746 #endif /* if 0 */
747                 stat_ev_ctx_pop("bemain_irg");
748         }
749         ir_profile_free();
750         be_done_env(&env);
751 }
752
753 /* Main interface to the frontend. */
754 void be_main(FILE *file_handle, const char *cup_name)
755 {
756         ir_timer_t *t = NULL;
757
758         /* The user specified another config file to read. do that now. */
759         if(strlen(config_file) > 0) {
760                 FILE *f;
761
762                 if((f = fopen(config_file, "rt")) != NULL) {
763                         lc_opt_from_file(config_file, f, NULL);
764                         fclose(f);
765                 }
766         }
767
768         if (be_options.timing == BE_TIME_ON) {
769                 t = ir_timer_register("bemain", "measure complete bemain loop");
770
771                 if (ir_timer_enter_high_priority()) {
772                         fprintf(stderr, "Warning: Could not enter high priority mode.\n");
773                 }
774
775                 ir_timer_reset_and_start(t);
776         }
777
778 #ifdef FIRM_STATISTICS
779         if (be_options.statev) {
780                 const char *dot = strrchr(cup_name, '.');
781                 const char *pos = dot ? dot : cup_name + strlen(cup_name);
782                 char       *buf = alloca(pos - cup_name + 1);
783                 strncpy(buf, cup_name, pos - cup_name);
784                 buf[pos - cup_name] = '\0';
785
786                 be_options.statev = 1;
787                 stat_ev_begin(buf, be_options.filtev);
788         }
789 #endif
790
791         /* never build code for pseudo irgs */
792         set_visit_pseudo_irgs(0);
793
794         be_node_init();
795
796         be_main_loop(file_handle, cup_name);
797
798         if (be_options.timing == BE_TIME_ON) {
799                 ir_timer_stop(t);
800                 ir_timer_leave_high_priority();
801                 stat_ev_if {
802                         stat_ev_dbl("backend_time", ir_timer_elapsed_msec(t));
803                 } else {
804                         printf("%-20s: %lu msec\n", "BEMAINLOOP", ir_timer_elapsed_msec(t));
805                 }
806         }
807
808 #ifdef FIRM_STATISTICS
809         if (be_options.statev)
810                 stat_ev_end();
811 #endif
812 }
813
814 unsigned be_put_ignore_regs(const be_irg_t *birg, const arch_register_class_t *cls, bitset_t *bs)
815 {
816         if (bs == NULL)
817                 bs = bitset_alloca(cls->n_regs);
818         else
819                 bitset_clear_all(bs);
820
821         assert(bitset_size(bs) == (unsigned)cls->n_regs);
822         arch_put_non_ignore_regs(birg->main_env->arch_env, cls, bs);
823         bitset_flip_all(bs);
824         be_abi_put_ignore_regs(birg->abi, cls, bs);
825
826         return bitset_popcnt(bs);
827 }