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1 /* Functions for writing LTO sections.
2
3 Copyright (C) 2009, 2010 Free Software Foundation, Inc.
4 Contributed by Kenneth Zadeck <zadeck@naturalbridge.com>
5
6 This file is part of GCC.
7
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
12
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
21
22 #include "config.h"
23 #include "system.h"
24 #include "coretypes.h"
25 #include "tm.h"
26 #include "tree.h"
27 #include "expr.h"
28 #include "params.h"
29 #include "input.h"
30 #include "hashtab.h"
31 #include "basic-block.h"
32 #include "tree-flow.h"
33 #include "tree-pass.h"
34 #include "cgraph.h"
35 #include "function.h"
36 #include "ggc.h"
37 #include "except.h"
38 #include "vec.h"
39 #include "pointer-set.h"
40 #include "bitmap.h"
41 #include "langhooks.h"
42 #include "lto-streamer.h"
43 #include "lto-compress.h"
44
45 static VEC(lto_out_decl_state_ptr, heap) *decl_state_stack;
46
47 /* List of out decl states used by functions. We use this to
48 generate the decl directory later. */
49
50 VEC(lto_out_decl_state_ptr, heap) *lto_function_decl_states;
51 /* Returns a hash code for P. */
52
53 hashval_t
54 lto_hash_decl_slot_node (const void *p)
55 {
56 const struct lto_decl_slot *ds = (const struct lto_decl_slot *) p;
57
58 /*
59 return (hashval_t) DECL_UID (ds->t);
60 */
61 return (hashval_t) TREE_HASH (ds->t);
62 }
63
64
65 /* Returns nonzero if P1 and P2 are equal. */
66
67 int
68 lto_eq_decl_slot_node (const void *p1, const void *p2)
69 {
70 const struct lto_decl_slot *ds1 =
71 (const struct lto_decl_slot *) p1;
72 const struct lto_decl_slot *ds2 =
73 (const struct lto_decl_slot *) p2;
74
75 /*
76 return DECL_UID (ds1->t) == DECL_UID (ds2->t);
77 */
78 return ds1->t == ds2->t;
79 }
80
81
82 /* Returns a hash code for P. */
83
84 hashval_t
85 lto_hash_type_slot_node (const void *p)
86 {
87 const struct lto_decl_slot *ds = (const struct lto_decl_slot *) p;
88 return (hashval_t) TYPE_UID (ds->t);
89 }
90
91
92 /* Returns nonzero if P1 and P2 are equal. */
93
94 int
95 lto_eq_type_slot_node (const void *p1, const void *p2)
96 {
97 const struct lto_decl_slot *ds1 =
98 (const struct lto_decl_slot *) p1;
99 const struct lto_decl_slot *ds2 =
100 (const struct lto_decl_slot *) p2;
101
102 return TYPE_UID (ds1->t) == TYPE_UID (ds2->t);
103 }
104
105 /*****************************************************************************
106 Output routines shared by all of the serialization passes.
107 *****************************************************************************/
108
109
110 /* Flush compressed stream data function, sends NUM_CHARS from CHARS
111 to the append lang hook, OPAQUE is currently always NULL. */
112
113 static void
114 lto_append_data (const char *chars, unsigned int num_chars, void *opaque)
115 {
116 gcc_assert (opaque == NULL);
117 lang_hooks.lto.append_data (chars, num_chars, opaque);
118 }
119
120 /* Pointer to the current compression stream. */
121
122 static struct lto_compression_stream *compression_stream = NULL;
123
124 /* Begin a new output section named NAME. If COMPRESS is true, zlib compress
125 the section. */
126
127 void
128 lto_begin_section (const char *name, bool compress)
129 {
130 lang_hooks.lto.begin_section (name);
131
132 /* FIXME lto: for now, suppress compression if the lang_hook that appends
133 data is anything other than assembler output. The effect here is that
134 we get compression of IL only in non-ltrans object files. */
135 gcc_assert (compression_stream == NULL);
136 if (compress)
137 compression_stream = lto_start_compression (lto_append_data, NULL);
138 }
139
140
141 /* End the current output section. */
142
143 void
144 lto_end_section (void)
145 {
146 if (compression_stream)
147 {
148 lto_end_compression (compression_stream);
149 compression_stream = NULL;
150 }
151 lang_hooks.lto.end_section ();
152 }
153
154
155 /* Write all of the chars in OBS to the assembler. Recycle the blocks
156 in obs as this is being done. */
157
158 void
159 lto_write_stream (struct lto_output_stream *obs)
160 {
161 unsigned int block_size = 1024;
162 struct lto_char_ptr_base *block;
163 struct lto_char_ptr_base *next_block;
164 if (!obs->first_block)
165 return;
166
167 for (block = obs->first_block; block; block = next_block)
168 {
169 const char *base = ((char *)block) + sizeof (struct lto_char_ptr_base);
170 unsigned int num_chars = block_size - sizeof (struct lto_char_ptr_base);
171
172 /* If this is not the last block, it is full. If it is the last
173 block, left_in_block indicates how many chars are unoccupied in
174 this block; subtract from num_chars to obtain occupancy. */
175 next_block = (struct lto_char_ptr_base *) block->ptr;
176 if (!next_block)
177 num_chars -= obs->left_in_block;
178
179 /* FIXME lto: WPA mode uses an ELF function as a lang_hook to append
180 output data. This hook is not happy with the way that compression
181 blocks up output differently to the way it's blocked here. So for
182 now, we don't compress WPA output. */
183 if (compression_stream)
184 {
185 lto_compress_block (compression_stream, base, num_chars);
186 lang_hooks.lto.append_data (NULL, 0, block);
187 }
188 else
189 lang_hooks.lto.append_data (base, num_chars, block);
190 block_size *= 2;
191 }
192 }
193
194
195 /* Adds a new block to output stream OBS. */
196
197 void
198 lto_append_block (struct lto_output_stream *obs)
199 {
200 struct lto_char_ptr_base *new_block;
201
202 gcc_assert (obs->left_in_block == 0);
203
204 if (obs->first_block == NULL)
205 {
206 /* This is the first time the stream has been written
207 into. */
208 obs->block_size = 1024;
209 new_block = (struct lto_char_ptr_base*) xmalloc (obs->block_size);
210 obs->first_block = new_block;
211 }
212 else
213 {
214 struct lto_char_ptr_base *tptr;
215 /* Get a new block that is twice as big as the last block
216 and link it into the list. */
217 obs->block_size *= 2;
218 new_block = (struct lto_char_ptr_base*) xmalloc (obs->block_size);
219 /* The first bytes of the block are reserved as a pointer to
220 the next block. Set the chain of the full block to the
221 pointer to the new block. */
222 tptr = obs->current_block;
223 tptr->ptr = (char *) new_block;
224 }
225
226 /* Set the place for the next char at the first position after the
227 chain to the next block. */
228 obs->current_pointer
229 = ((char *) new_block) + sizeof (struct lto_char_ptr_base);
230 obs->current_block = new_block;
231 /* Null out the newly allocated block's pointer to the next block. */
232 new_block->ptr = NULL;
233 obs->left_in_block = obs->block_size - sizeof (struct lto_char_ptr_base);
234 }
235
236
237 /* Write raw DATA of length LEN to the output block OB. */
238
239 void
240 lto_output_data_stream (struct lto_output_stream *obs, const void *data,
241 size_t len)
242 {
243 while (len)
244 {
245 size_t copy;
246
247 /* No space left. */
248 if (obs->left_in_block == 0)
249 lto_append_block (obs);
250
251 /* Determine how many bytes to copy in this loop. */
252 if (len <= obs->left_in_block)
253 copy = len;
254 else
255 copy = obs->left_in_block;
256
257 /* Copy the data and do bookkeeping. */
258 memcpy (obs->current_pointer, data, copy);
259 obs->current_pointer += copy;
260 obs->total_size += copy;
261 obs->left_in_block -= copy;
262 data = (const char *) data + copy;
263 len -= copy;
264 }
265 }
266
267
268 /* Output an unsigned LEB128 quantity to OBS. */
269
270 void
271 lto_output_uleb128_stream (struct lto_output_stream *obs,
272 unsigned HOST_WIDE_INT work)
273 {
274 do
275 {
276 unsigned int byte = (work & 0x7f);
277 work >>= 7;
278 if (work != 0)
279 /* More bytes to follow. */
280 byte |= 0x80;
281
282 lto_output_1_stream (obs, byte);
283 }
284 while (work != 0);
285 }
286
287 /* Identical to output_uleb128_stream above except using unsigned
288 HOST_WIDEST_INT type. For efficiency on host where unsigned HOST_WIDEST_INT
289 is not native, we only use this if we know that HOST_WIDE_INT is not wide
290 enough. */
291
292 void
293 lto_output_widest_uint_uleb128_stream (struct lto_output_stream *obs,
294 unsigned HOST_WIDEST_INT work)
295 {
296 do
297 {
298 unsigned int byte = (work & 0x7f);
299 work >>= 7;
300 if (work != 0)
301 /* More bytes to follow. */
302 byte |= 0x80;
303
304 lto_output_1_stream (obs, byte);
305 }
306 while (work != 0);
307 }
308
309
310 /* Output a signed LEB128 quantity. */
311
312 void
313 lto_output_sleb128_stream (struct lto_output_stream *obs, HOST_WIDE_INT work)
314 {
315 int more, byte;
316
317 do
318 {
319 byte = (work & 0x7f);
320 /* arithmetic shift */
321 work >>= 7;
322 more = !((work == 0 && (byte & 0x40) == 0)
323 || (work == -1 && (byte & 0x40) != 0));
324 if (more)
325 byte |= 0x80;
326
327 lto_output_1_stream (obs, byte);
328 }
329 while (more);
330 }
331
332
333 /* Pack WORK into BP in a variant of uleb format. */
334
335 void
336 bp_pack_var_len_unsigned (struct bitpack_d *bp, unsigned HOST_WIDE_INT work)
337 {
338 do
339 {
340 unsigned int half_byte = (work & 0x7);
341 work >>= 3;
342 if (work != 0)
343 /* More half_bytes to follow. */
344 half_byte |= 0x8;
345
346 bp_pack_value (bp, half_byte, 4);
347 }
348 while (work != 0);
349 }
350
351
352 /* Pack WORK into BP in a variant of sleb format. */
353
354 void
355 bp_pack_var_len_int (struct bitpack_d *bp, HOST_WIDE_INT work)
356 {
357 int more, half_byte;
358
359 do
360 {
361 half_byte = (work & 0x7);
362 /* arithmetic shift */
363 work >>= 3;
364 more = !((work == 0 && (half_byte & 0x4) == 0)
365 || (work == -1 && (half_byte & 0x4) != 0));
366 if (more)
367 half_byte |= 0x8;
368
369 bp_pack_value (bp, half_byte, 4);
370 }
371 while (more);
372 }
373
374
375 /* Lookup NAME in ENCODER. If NAME is not found, create a new entry in
376 ENCODER for NAME with the next available index of ENCODER, then
377 print the index to OBS. True is returned if NAME was added to
378 ENCODER. The resulting index is stored in THIS_INDEX.
379
380 If OBS is NULL, the only action is to add NAME to the encoder. */
381
382 bool
383 lto_output_decl_index (struct lto_output_stream *obs,
384 struct lto_tree_ref_encoder *encoder,
385 tree name, unsigned int *this_index)
386 {
387 void **slot;
388 struct lto_decl_slot d_slot;
389 int index;
390 bool new_entry_p = FALSE;
391
392 d_slot.t = name;
393 slot = htab_find_slot (encoder->tree_hash_table, &d_slot, INSERT);
394 if (*slot == NULL)
395 {
396 struct lto_decl_slot *new_slot
397 = (struct lto_decl_slot *) xmalloc (sizeof (struct lto_decl_slot));
398 index = encoder->next_index++;
399
400 new_slot->t = name;
401 new_slot->slot_num = index;
402 *slot = new_slot;
403 VEC_safe_push (tree, heap, encoder->trees, name);
404 new_entry_p = TRUE;
405 }
406 else
407 {
408 struct lto_decl_slot *old_slot = (struct lto_decl_slot *)*slot;
409 index = old_slot->slot_num;
410 }
411
412 if (obs)
413 lto_output_uleb128_stream (obs, index);
414 *this_index = index;
415 return new_entry_p;
416 }
417
418 /* Output a field DECL to OBS. */
419
420 void
421 lto_output_field_decl_index (struct lto_out_decl_state *decl_state,
422 struct lto_output_stream * obs, tree decl)
423 {
424 unsigned int index;
425 lto_output_decl_index (obs, &decl_state->streams[LTO_DECL_STREAM_FIELD_DECL],
426 decl, &index);
427 }
428
429 /* Output a function DECL to OBS. */
430
431 void
432 lto_output_fn_decl_index (struct lto_out_decl_state *decl_state,
433 struct lto_output_stream * obs, tree decl)
434 {
435 unsigned int index;
436 lto_output_decl_index (obs, &decl_state->streams[LTO_DECL_STREAM_FN_DECL],
437 decl, &index);
438 }
439
440 /* Output a namespace DECL to OBS. */
441
442 void
443 lto_output_namespace_decl_index (struct lto_out_decl_state *decl_state,
444 struct lto_output_stream * obs, tree decl)
445 {
446 unsigned int index;
447 lto_output_decl_index (obs,
448 &decl_state->streams[LTO_DECL_STREAM_NAMESPACE_DECL],
449 decl, &index);
450 }
451
452 /* Output a static or extern var DECL to OBS. */
453
454 void
455 lto_output_var_decl_index (struct lto_out_decl_state *decl_state,
456 struct lto_output_stream * obs, tree decl)
457 {
458 unsigned int index;
459 lto_output_decl_index (obs, &decl_state->streams[LTO_DECL_STREAM_VAR_DECL],
460 decl, &index);
461 }
462
463 /* Output a type DECL to OBS. */
464
465 void
466 lto_output_type_decl_index (struct lto_out_decl_state *decl_state,
467 struct lto_output_stream * obs, tree decl)
468 {
469 unsigned int index;
470 lto_output_decl_index (obs, &decl_state->streams[LTO_DECL_STREAM_TYPE_DECL],
471 decl, &index);
472 }
473
474 /* Output a type REF to OBS. */
475
476 void
477 lto_output_type_ref_index (struct lto_out_decl_state *decl_state,
478 struct lto_output_stream *obs, tree ref)
479 {
480 unsigned int index;
481 lto_output_decl_index (obs, &decl_state->streams[LTO_DECL_STREAM_TYPE],
482 ref, &index);
483 }
484
485
486 /* Create the output block and return it. */
487
488 struct lto_simple_output_block *
489 lto_create_simple_output_block (enum lto_section_type section_type)
490 {
491 struct lto_simple_output_block *ob
492 = ((struct lto_simple_output_block *)
493 xcalloc (1, sizeof (struct lto_simple_output_block)));
494
495 ob->section_type = section_type;
496 ob->decl_state = lto_get_out_decl_state ();
497 ob->main_stream = ((struct lto_output_stream *)
498 xcalloc (1, sizeof (struct lto_output_stream)));
499
500 return ob;
501 }
502
503
504 /* Produce a simple section for one of the ipa passes. */
505
506 void
507 lto_destroy_simple_output_block (struct lto_simple_output_block *ob)
508 {
509 char *section_name;
510 struct lto_simple_header header;
511 struct lto_output_stream *header_stream;
512
513 section_name = lto_get_section_name (ob->section_type, NULL, NULL);
514 lto_begin_section (section_name, !flag_wpa);
515 free (section_name);
516
517 /* Write the header which says how to decode the pieces of the
518 t. */
519 memset (&header, 0, sizeof (struct lto_simple_header));
520 header.lto_header.major_version = LTO_major_version;
521 header.lto_header.minor_version = LTO_minor_version;
522 header.lto_header.section_type = LTO_section_cgraph;
523
524 header.compressed_size = 0;
525
526 header.main_size = ob->main_stream->total_size;
527
528 header_stream = XCNEW (struct lto_output_stream);
529 lto_output_data_stream (header_stream, &header, sizeof header);
530 lto_write_stream (header_stream);
531 free (header_stream);
532
533 lto_write_stream (ob->main_stream);
534
535 /* Put back the assembly section that was there before we started
536 writing lto info. */
537 lto_end_section ();
538
539 free (ob->main_stream);
540 free (ob);
541 }
542
543
544 /* Return a new lto_out_decl_state. */
545
546 struct lto_out_decl_state *
547 lto_new_out_decl_state (void)
548 {
549 struct lto_out_decl_state *state = XCNEW (struct lto_out_decl_state);
550 int i;
551 htab_hash hash_fn;
552 htab_eq eq_fn;
553
554 for (i = 0; i < LTO_N_DECL_STREAMS; i++)
555 {
556 if (i == LTO_DECL_STREAM_TYPE)
557 {
558 hash_fn = lto_hash_type_slot_node;
559 eq_fn = lto_eq_type_slot_node;
560 }
561 else
562 {
563 hash_fn = lto_hash_decl_slot_node;
564 eq_fn = lto_eq_decl_slot_node;
565 }
566 lto_init_tree_ref_encoder (&state->streams[i], hash_fn, eq_fn);
567 }
568
569 return state;
570 }
571
572
573 /* Delete STATE and components. */
574
575 void
576 lto_delete_out_decl_state (struct lto_out_decl_state *state)
577 {
578 int i;
579
580 for (i = 0; i < LTO_N_DECL_STREAMS; i++)
581 lto_destroy_tree_ref_encoder (&state->streams[i]);
582
583 free (state);
584 }
585
586
587 /* Get the currently used lto_out_decl_state structure. */
588
589 struct lto_out_decl_state *
590 lto_get_out_decl_state (void)
591 {
592 return VEC_last (lto_out_decl_state_ptr, decl_state_stack);
593 }
594
595 /* Push STATE to top of out decl stack. */
596
597 void
598 lto_push_out_decl_state (struct lto_out_decl_state *state)
599 {
600 VEC_safe_push (lto_out_decl_state_ptr, heap, decl_state_stack, state);
601 }
602
603 /* Pop the currently used out-decl state from top of stack. */
604
605 struct lto_out_decl_state *
606 lto_pop_out_decl_state (void)
607 {
608 return VEC_pop (lto_out_decl_state_ptr, decl_state_stack);
609 }
610
611 /* Record STATE after it has been used in serializing the body of
612 FN_DECL. STATE should no longer be used by the caller. The ownership
613 of it is taken over from this point. */
614
615 void
616 lto_record_function_out_decl_state (tree fn_decl,
617 struct lto_out_decl_state *state)
618 {
619 int i;
620
621 /* Strip all hash tables to save some memory. */
622 for (i = 0; i < LTO_N_DECL_STREAMS; i++)
623 if (state->streams[i].tree_hash_table)
624 {
625 htab_delete (state->streams[i].tree_hash_table);
626 state->streams[i].tree_hash_table = NULL;
627 }
628 state->fn_decl = fn_decl;
629 VEC_safe_push (lto_out_decl_state_ptr, heap, lto_function_decl_states,
630 state);
631 }