lto-streamer.h revision 1.1.1.2 1 1.1 mrg /* Data structures and declarations used for reading and writing
2 1.1 mrg GIMPLE to a file stream.
3 1.1 mrg
4 1.1.1.2 mrg Copyright (C) 2009-2013 Free Software Foundation, Inc.
5 1.1 mrg Contributed by Doug Kwan <dougkwan (at) google.com>
6 1.1 mrg
7 1.1 mrg This file is part of GCC.
8 1.1 mrg
9 1.1 mrg GCC is free software; you can redistribute it and/or modify it under
10 1.1 mrg the terms of the GNU General Public License as published by the Free
11 1.1 mrg Software Foundation; either version 3, or (at your option) any later
12 1.1 mrg version.
13 1.1 mrg
14 1.1 mrg GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15 1.1 mrg WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 1.1 mrg FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 1.1 mrg for more details.
18 1.1 mrg
19 1.1 mrg You should have received a copy of the GNU General Public License
20 1.1 mrg along with GCC; see the file COPYING3. If not see
21 1.1 mrg <http://www.gnu.org/licenses/>. */
22 1.1 mrg
23 1.1 mrg #ifndef GCC_LTO_STREAMER_H
24 1.1 mrg #define GCC_LTO_STREAMER_H
25 1.1 mrg
26 1.1 mrg #include "plugin-api.h"
27 1.1 mrg #include "tree.h"
28 1.1 mrg #include "gimple.h"
29 1.1 mrg #include "target.h"
30 1.1 mrg #include "cgraph.h"
31 1.1 mrg #include "vec.h"
32 1.1.1.2 mrg #include "alloc-pool.h"
33 1.1.1.2 mrg #include "gcov-io.h"
34 1.1.1.2 mrg #include "diagnostic.h"
35 1.1 mrg
36 1.1 mrg /* Define when debugging the LTO streamer. This causes the writer
37 1.1 mrg to output the numeric value for the memory address of the tree node
38 1.1 mrg being emitted. When debugging a problem in the reader, check the
39 1.1 mrg original address that the writer was emitting using lto_orig_address_get.
40 1.1 mrg With this value, set a breakpoint in the writer (e.g., lto_output_tree)
41 1.1 mrg to trace how the faulty node is being emitted. */
42 1.1 mrg /* #define LTO_STREAMER_DEBUG 1 */
43 1.1 mrg
44 1.1 mrg /* The encoding for a function consists of the following sections:
45 1.1 mrg
46 1.1 mrg 1) The header.
47 1.1 mrg 2) FIELD_DECLS.
48 1.1 mrg 3) FUNCTION_DECLS.
49 1.1 mrg 4) global VAR_DECLS.
50 1.1 mrg 5) type_decls
51 1.1 mrg 6) types.
52 1.1 mrg 7) Names for the labels that have names
53 1.1 mrg 8) The SSA names.
54 1.1 mrg 9) The control flow graph.
55 1.1 mrg 10-11)Gimple for local decls.
56 1.1 mrg 12) Gimple for the function.
57 1.1 mrg 13) Strings.
58 1.1 mrg
59 1.1 mrg 1) THE HEADER.
60 1.1 mrg 2-6) THE GLOBAL DECLS AND TYPES.
61 1.1 mrg
62 1.1 mrg The global decls and types are encoded in the same way. For each
63 1.1 mrg entry, there is word with the offset within the section to the
64 1.1 mrg entry.
65 1.1 mrg
66 1.1 mrg 7) THE LABEL NAMES.
67 1.1 mrg
68 1.1 mrg Since most labels do not have names, this section my be of zero
69 1.1 mrg length. It consists of an array of string table references, one
70 1.1 mrg per label. In the lto code, the labels are given either
71 1.1 mrg positive or negative indexes. the positive ones have names and
72 1.1 mrg the negative ones do not. The positive index can be used to
73 1.1 mrg find the name in this array.
74 1.1 mrg
75 1.1 mrg 9) THE CFG.
76 1.1 mrg
77 1.1 mrg 10) Index into the local decls. Since local decls can have local
78 1.1 mrg decls inside them, they must be read in randomly in order to
79 1.1 mrg properly restore them.
80 1.1 mrg
81 1.1 mrg 11-12) GIMPLE FOR THE LOCAL DECLS AND THE FUNCTION BODY.
82 1.1 mrg
83 1.1 mrg The gimple consists of a set of records.
84 1.1 mrg
85 1.1 mrg THE FUNCTION
86 1.1 mrg
87 1.1 mrg At the top level of (8) is the function. It consists of five
88 1.1 mrg pieces:
89 1.1 mrg
90 1.1 mrg LTO_function - The tag.
91 1.1 mrg eh tree - This is all of the exception handling regions
92 1.1 mrg put out in a post order traversial of the
93 1.1 mrg tree. Siblings are output as lists terminated
94 1.1 mrg by a 0. The set of fields matches the fields
95 1.1 mrg defined in except.c.
96 1.1 mrg
97 1.1 mrg last_basic_block - in uleb128 form.
98 1.1 mrg
99 1.1 mrg basic blocks - This is the set of basic blocks.
100 1.1 mrg
101 1.1 mrg zero - The termination of the basic blocks.
102 1.1 mrg
103 1.1 mrg BASIC BLOCKS
104 1.1 mrg
105 1.1 mrg There are two forms of basic blocks depending on if they are
106 1.1 mrg empty or not.
107 1.1 mrg
108 1.1 mrg The basic block consists of:
109 1.1 mrg
110 1.1 mrg LTO_bb1 or LTO_bb0 - The tag.
111 1.1 mrg
112 1.1 mrg bb->index - the index in uleb128 form.
113 1.1 mrg
114 1.1 mrg #succs - The number of successors un uleb128 form.
115 1.1 mrg
116 1.1 mrg the successors - For each edge, a pair. The first of the
117 1.1 mrg pair is the index of the successor in
118 1.1 mrg uleb128 form and the second are the flags in
119 1.1 mrg uleb128 form.
120 1.1 mrg
121 1.1 mrg the statements - A gimple tree, as described above.
122 1.1 mrg These are only present for LTO_BB1.
123 1.1 mrg Following each statement is an optional
124 1.1 mrg exception handling record LTO_eh_region
125 1.1 mrg which contains the region number (for
126 1.1 mrg regions >= 0).
127 1.1 mrg
128 1.1 mrg zero - This is only present for LTO_BB1 and is used
129 1.1 mrg to terminate the statements and exception
130 1.1 mrg regions within this block.
131 1.1 mrg
132 1.1 mrg 12) STRINGS
133 1.1 mrg
134 1.1 mrg String are represented in the table as pairs, a length in ULEB128
135 1.1 mrg form followed by the data for the string. */
136 1.1 mrg
137 1.1 mrg /* The string that is the prefix on the section names we make for lto.
138 1.1 mrg For decls the DECL_ASSEMBLER_NAME is appended to make the section
139 1.1 mrg name for the functions and static_initializers. For other types of
140 1.1 mrg sections a '.' and the section type are appended. */
141 1.1 mrg #define LTO_SECTION_NAME_PREFIX ".gnu.lto_"
142 1.1 mrg
143 1.1.1.2 mrg #define LTO_major_version 2
144 1.1.1.2 mrg #define LTO_minor_version 2
145 1.1 mrg
146 1.1 mrg typedef unsigned char lto_decl_flags_t;
147 1.1 mrg
148 1.1 mrg
149 1.1 mrg /* Tags representing the various IL objects written to the bytecode file
150 1.1 mrg (GIMPLE statements, basic blocks, EH regions, tree nodes, etc).
151 1.1 mrg
152 1.1 mrg NOTE, when adding new LTO tags, also update lto_tag_name. */
153 1.1 mrg enum LTO_tags
154 1.1 mrg {
155 1.1 mrg LTO_null = 0,
156 1.1 mrg
157 1.1 mrg /* Reserve enough entries to fit all the tree and gimple codes handled
158 1.1 mrg by the streamer. This guarantees that:
159 1.1 mrg
160 1.1 mrg 1- Given a tree code C:
161 1.1 mrg enum LTO_tags tag == C + 1
162 1.1 mrg
163 1.1 mrg 2- Given a gimple code C:
164 1.1 mrg enum LTO_tags tag == C + NUM_TREE_CODES + 1
165 1.1 mrg
166 1.1 mrg Conversely, to map between LTO tags and tree/gimple codes, the
167 1.1 mrg reverse operation must be applied. */
168 1.1.1.2 mrg LTO_bb0 = 1 + MAX_TREE_CODES + LAST_AND_UNUSED_GIMPLE_CODE,
169 1.1 mrg LTO_bb1,
170 1.1 mrg
171 1.1 mrg /* EH region holding the previous statement. */
172 1.1 mrg LTO_eh_region,
173 1.1 mrg
174 1.1 mrg /* An MD or NORMAL builtin. Only the code and class are streamed out. */
175 1.1 mrg LTO_builtin_decl,
176 1.1 mrg
177 1.1.1.2 mrg /* Shared INTEGER_CST node. */
178 1.1.1.2 mrg LTO_integer_cst,
179 1.1.1.2 mrg
180 1.1 mrg /* Function body. */
181 1.1 mrg LTO_function,
182 1.1 mrg
183 1.1 mrg /* EH table. */
184 1.1 mrg LTO_eh_table,
185 1.1 mrg
186 1.1 mrg /* EH region types. These mirror enum eh_region_type. */
187 1.1 mrg LTO_ert_cleanup,
188 1.1 mrg LTO_ert_try,
189 1.1 mrg LTO_ert_allowed_exceptions,
190 1.1 mrg LTO_ert_must_not_throw,
191 1.1 mrg
192 1.1 mrg /* EH landing pad. */
193 1.1 mrg LTO_eh_landing_pad,
194 1.1 mrg
195 1.1 mrg /* EH try/catch node. */
196 1.1 mrg LTO_eh_catch,
197 1.1 mrg
198 1.1 mrg /* Special for global streamer. Reference to previously-streamed node. */
199 1.1 mrg LTO_tree_pickle_reference,
200 1.1 mrg
201 1.1 mrg /* References to indexable tree nodes. These objects are stored in
202 1.1 mrg tables that are written separately from the function bodies that
203 1.1 mrg reference them. This way they can be instantiated even when the
204 1.1 mrg referencing functions aren't (e.g., during WPA) and it also allows
205 1.1 mrg functions to be copied from one file to another without having
206 1.1 mrg to unpickle the body first (the references are location
207 1.1 mrg independent).
208 1.1 mrg
209 1.1 mrg NOTE, do not regroup these values as the grouping is exposed
210 1.1 mrg in the range checks done in lto_input_tree. */
211 1.1 mrg LTO_field_decl_ref, /* Do not change. */
212 1.1 mrg LTO_function_decl_ref,
213 1.1 mrg LTO_label_decl_ref,
214 1.1 mrg LTO_namespace_decl_ref,
215 1.1 mrg LTO_result_decl_ref,
216 1.1 mrg LTO_ssa_name_ref,
217 1.1 mrg LTO_type_decl_ref,
218 1.1 mrg LTO_type_ref,
219 1.1 mrg LTO_const_decl_ref,
220 1.1 mrg LTO_imported_decl_ref,
221 1.1.1.2 mrg LTO_translation_unit_decl_ref,
222 1.1 mrg LTO_global_decl_ref, /* Do not change. */
223 1.1 mrg
224 1.1 mrg /* This tag must always be last. */
225 1.1 mrg LTO_NUM_TAGS
226 1.1 mrg };
227 1.1 mrg
228 1.1 mrg
229 1.1 mrg /* Set of section types that are in an LTO file. This list will grow
230 1.1 mrg as the number of IPA passes grows since each IPA pass will need its
231 1.1 mrg own section type to store its summary information.
232 1.1 mrg
233 1.1 mrg When adding a new section type, you must also extend the
234 1.1 mrg LTO_SECTION_NAME array in lto-section-in.c. */
235 1.1 mrg enum lto_section_type
236 1.1 mrg {
237 1.1 mrg LTO_section_decls = 0,
238 1.1 mrg LTO_section_function_body,
239 1.1 mrg LTO_section_static_initializer,
240 1.1.1.2 mrg LTO_section_symtab,
241 1.1.1.2 mrg LTO_section_refs,
242 1.1.1.2 mrg LTO_section_asm,
243 1.1 mrg LTO_section_jump_functions,
244 1.1 mrg LTO_section_ipa_pure_const,
245 1.1 mrg LTO_section_ipa_reference,
246 1.1.1.2 mrg LTO_section_symtab_nodes,
247 1.1 mrg LTO_section_opts,
248 1.1.1.2 mrg LTO_section_cgraph_opt_sum,
249 1.1.1.2 mrg LTO_section_inline_summary,
250 1.1.1.2 mrg LTO_section_ipcp_transform,
251 1.1 mrg LTO_N_SECTION_TYPES /* Must be last. */
252 1.1 mrg };
253 1.1 mrg
254 1.1 mrg /* Indices to the various function, type and symbol streams. */
255 1.1 mrg typedef enum
256 1.1 mrg {
257 1.1 mrg LTO_DECL_STREAM_TYPE = 0, /* Must be first. */
258 1.1 mrg LTO_DECL_STREAM_FIELD_DECL,
259 1.1 mrg LTO_DECL_STREAM_FN_DECL,
260 1.1 mrg LTO_DECL_STREAM_VAR_DECL,
261 1.1 mrg LTO_DECL_STREAM_TYPE_DECL,
262 1.1 mrg LTO_DECL_STREAM_NAMESPACE_DECL,
263 1.1 mrg LTO_DECL_STREAM_LABEL_DECL,
264 1.1 mrg LTO_N_DECL_STREAMS
265 1.1 mrg } lto_decl_stream_e_t;
266 1.1 mrg
267 1.1 mrg typedef enum ld_plugin_symbol_resolution ld_plugin_symbol_resolution_t;
268 1.1 mrg
269 1.1 mrg
270 1.1 mrg /* Macro to define convenience functions for type and decl streams
271 1.1 mrg in lto_file_decl_data. */
272 1.1 mrg #define DEFINE_DECL_STREAM_FUNCS(UPPER_NAME, name) \
273 1.1 mrg static inline tree \
274 1.1 mrg lto_file_decl_data_get_ ## name (struct lto_file_decl_data *data, \
275 1.1 mrg unsigned int idx) \
276 1.1 mrg { \
277 1.1 mrg struct lto_in_decl_state *state = data->current_decl_state; \
278 1.1 mrg gcc_assert (idx < state->streams[LTO_DECL_STREAM_## UPPER_NAME].size); \
279 1.1 mrg return state->streams[LTO_DECL_STREAM_## UPPER_NAME].trees[idx]; \
280 1.1 mrg } \
281 1.1 mrg \
282 1.1 mrg static inline unsigned int \
283 1.1 mrg lto_file_decl_data_num_ ## name ## s (struct lto_file_decl_data *data) \
284 1.1 mrg { \
285 1.1 mrg struct lto_in_decl_state *state = data->current_decl_state; \
286 1.1 mrg return state->streams[LTO_DECL_STREAM_## UPPER_NAME].size; \
287 1.1 mrg }
288 1.1 mrg
289 1.1 mrg
290 1.1 mrg /* Return a char pointer to the start of a data stream for an lto pass
291 1.1 mrg or function. The first parameter is the file data that contains
292 1.1 mrg the information. The second parameter is the type of information
293 1.1 mrg to be obtained. The third parameter is the name of the function
294 1.1 mrg and is only used when finding a function body; otherwise it is
295 1.1 mrg NULL. The fourth parameter is the length of the data returned. */
296 1.1 mrg typedef const char* (lto_get_section_data_f) (struct lto_file_decl_data *,
297 1.1 mrg enum lto_section_type,
298 1.1 mrg const char *,
299 1.1 mrg size_t *);
300 1.1 mrg
301 1.1 mrg /* Return the data found from the above call. The first three
302 1.1 mrg parameters are the same as above. The fourth parameter is the data
303 1.1.1.2 mrg itself and the fifth is the length of the data. */
304 1.1 mrg typedef void (lto_free_section_data_f) (struct lto_file_decl_data *,
305 1.1 mrg enum lto_section_type,
306 1.1 mrg const char *,
307 1.1 mrg const char *,
308 1.1 mrg size_t);
309 1.1 mrg
310 1.1 mrg /* Structure used as buffer for reading an LTO file. */
311 1.1 mrg struct lto_input_block
312 1.1 mrg {
313 1.1 mrg const char *data;
314 1.1 mrg unsigned int p;
315 1.1 mrg unsigned int len;
316 1.1 mrg };
317 1.1 mrg
318 1.1 mrg #define LTO_INIT_INPUT_BLOCK(BASE,D,P,L) \
319 1.1 mrg do { \
320 1.1 mrg BASE.data = D; \
321 1.1 mrg BASE.p = P; \
322 1.1 mrg BASE.len = L; \
323 1.1 mrg } while (0)
324 1.1 mrg
325 1.1 mrg #define LTO_INIT_INPUT_BLOCK_PTR(BASE,D,P,L) \
326 1.1 mrg do { \
327 1.1 mrg BASE->data = D; \
328 1.1 mrg BASE->p = P; \
329 1.1 mrg BASE->len = L; \
330 1.1 mrg } while (0)
331 1.1 mrg
332 1.1 mrg
333 1.1 mrg /* The is the first part of the record for a function or constructor
334 1.1 mrg in the .o file. */
335 1.1 mrg struct lto_header
336 1.1 mrg {
337 1.1 mrg int16_t major_version;
338 1.1 mrg int16_t minor_version;
339 1.1 mrg };
340 1.1 mrg
341 1.1 mrg /* The header for a function body. */
342 1.1 mrg struct lto_function_header
343 1.1 mrg {
344 1.1 mrg /* The header for all types of sections. */
345 1.1 mrg struct lto_header lto_header;
346 1.1 mrg
347 1.1 mrg /* Number of labels with names. */
348 1.1 mrg int32_t num_named_labels;
349 1.1 mrg
350 1.1 mrg /* Number of labels without names. */
351 1.1 mrg int32_t num_unnamed_labels;
352 1.1 mrg
353 1.1 mrg /* Size compressed or 0 if not compressed. */
354 1.1 mrg int32_t compressed_size;
355 1.1 mrg
356 1.1 mrg /* Size of names for named labels. */
357 1.1 mrg int32_t named_label_size;
358 1.1 mrg
359 1.1 mrg /* Size of the cfg. */
360 1.1 mrg int32_t cfg_size;
361 1.1 mrg
362 1.1 mrg /* Size of main gimple body of function. */
363 1.1 mrg int32_t main_size;
364 1.1 mrg
365 1.1 mrg /* Size of the string table. */
366 1.1 mrg int32_t string_size;
367 1.1 mrg };
368 1.1 mrg
369 1.1 mrg
370 1.1 mrg /* Structure describing a symbol section. */
371 1.1 mrg struct lto_decl_header
372 1.1 mrg {
373 1.1 mrg /* The header for all types of sections. */
374 1.1 mrg struct lto_header lto_header;
375 1.1 mrg
376 1.1 mrg /* Size of region for decl state. */
377 1.1 mrg int32_t decl_state_size;
378 1.1 mrg
379 1.1 mrg /* Number of nodes in globals stream. */
380 1.1 mrg int32_t num_nodes;
381 1.1 mrg
382 1.1 mrg /* Size of region for expressions, decls, types, etc. */
383 1.1 mrg int32_t main_size;
384 1.1 mrg
385 1.1 mrg /* Size of the string table. */
386 1.1 mrg int32_t string_size;
387 1.1 mrg };
388 1.1 mrg
389 1.1 mrg
390 1.1.1.2 mrg /* Structure describing top level asm()s. */
391 1.1.1.2 mrg struct lto_asm_header
392 1.1.1.2 mrg {
393 1.1.1.2 mrg /* The header for all types of sections. */
394 1.1.1.2 mrg struct lto_header lto_header;
395 1.1.1.2 mrg
396 1.1.1.2 mrg /* Size compressed or 0 if not compressed. */
397 1.1.1.2 mrg int32_t compressed_size;
398 1.1.1.2 mrg
399 1.1.1.2 mrg /* Size of region for expressions, decls, types, etc. */
400 1.1.1.2 mrg int32_t main_size;
401 1.1.1.2 mrg
402 1.1.1.2 mrg /* Size of the string table. */
403 1.1.1.2 mrg int32_t string_size;
404 1.1.1.2 mrg };
405 1.1.1.2 mrg
406 1.1.1.2 mrg
407 1.1 mrg /* Statistics gathered during LTO, WPA and LTRANS. */
408 1.1 mrg struct lto_stats_d
409 1.1 mrg {
410 1.1 mrg unsigned HOST_WIDE_INT num_input_cgraph_nodes;
411 1.1.1.2 mrg unsigned HOST_WIDE_INT num_output_symtab_nodes;
412 1.1 mrg unsigned HOST_WIDE_INT num_input_files;
413 1.1 mrg unsigned HOST_WIDE_INT num_output_files;
414 1.1 mrg unsigned HOST_WIDE_INT num_cgraph_partitions;
415 1.1 mrg unsigned HOST_WIDE_INT section_size[LTO_N_SECTION_TYPES];
416 1.1 mrg unsigned HOST_WIDE_INT num_function_bodies;
417 1.1 mrg unsigned HOST_WIDE_INT num_trees[NUM_TREE_CODES];
418 1.1 mrg unsigned HOST_WIDE_INT num_output_il_bytes;
419 1.1 mrg unsigned HOST_WIDE_INT num_compressed_il_bytes;
420 1.1 mrg unsigned HOST_WIDE_INT num_input_il_bytes;
421 1.1 mrg unsigned HOST_WIDE_INT num_uncompressed_il_bytes;
422 1.1 mrg };
423 1.1 mrg
424 1.1.1.2 mrg /* Entry of LTO symtab encoder. */
425 1.1.1.2 mrg typedef struct
426 1.1 mrg {
427 1.1.1.2 mrg symtab_node node;
428 1.1.1.2 mrg /* Is the node in this partition (i.e. ltrans of this partition will
429 1.1.1.2 mrg be responsible for outputting it)? */
430 1.1.1.2 mrg unsigned int in_partition:1;
431 1.1.1.2 mrg /* Do we encode body in this partition? */
432 1.1.1.2 mrg unsigned int body:1;
433 1.1.1.2 mrg /* Do we encode initializer in this partition?
434 1.1.1.2 mrg For example the readonly variable initializers are encoded to aid
435 1.1.1.2 mrg constant folding even if they are not in the partition. */
436 1.1.1.2 mrg unsigned int initializer:1;
437 1.1.1.2 mrg } lto_encoder_entry;
438 1.1.1.2 mrg
439 1.1 mrg
440 1.1.1.2 mrg /* Encoder data structure used to stream callgraph nodes. */
441 1.1.1.2 mrg struct lto_symtab_encoder_d
442 1.1.1.2 mrg {
443 1.1.1.2 mrg vec<lto_encoder_entry> nodes;
444 1.1.1.2 mrg pointer_map_t *map;
445 1.1 mrg };
446 1.1 mrg
447 1.1.1.2 mrg typedef struct lto_symtab_encoder_d *lto_symtab_encoder_t;
448 1.1.1.2 mrg
449 1.1.1.2 mrg /* Iterator structure for cgraph node sets. */
450 1.1.1.2 mrg typedef struct
451 1.1.1.2 mrg {
452 1.1.1.2 mrg lto_symtab_encoder_t encoder;
453 1.1.1.2 mrg unsigned index;
454 1.1.1.2 mrg } lto_symtab_encoder_iterator;
455 1.1.1.2 mrg
456 1.1.1.2 mrg
457 1.1.1.2 mrg
458 1.1 mrg
459 1.1 mrg /* Mapping from indices to trees. */
460 1.1.1.2 mrg struct GTY(()) lto_tree_ref_table
461 1.1 mrg {
462 1.1 mrg /* Array of referenced trees . */
463 1.1.1.2 mrg tree * GTY((length ("%h.size"))) trees;
464 1.1 mrg
465 1.1 mrg /* Size of array. */
466 1.1 mrg unsigned int size;
467 1.1 mrg };
468 1.1 mrg
469 1.1 mrg
470 1.1 mrg /* Mapping between trees and slots in an array. */
471 1.1 mrg struct lto_decl_slot
472 1.1 mrg {
473 1.1 mrg tree t;
474 1.1 mrg int slot_num;
475 1.1 mrg };
476 1.1 mrg
477 1.1 mrg
478 1.1 mrg /* The lto_tree_ref_encoder struct is used to encode trees into indices. */
479 1.1 mrg
480 1.1 mrg struct lto_tree_ref_encoder
481 1.1 mrg {
482 1.1 mrg htab_t tree_hash_table; /* Maps pointers to indices. */
483 1.1 mrg unsigned int next_index; /* Next available index. */
484 1.1.1.2 mrg vec<tree> trees; /* Maps indices to pointers. */
485 1.1 mrg };
486 1.1 mrg
487 1.1 mrg
488 1.1 mrg /* Structure to hold states of input scope. */
489 1.1.1.2 mrg struct GTY(()) lto_in_decl_state
490 1.1 mrg {
491 1.1 mrg /* Array of lto_in_decl_buffers to store type and decls streams. */
492 1.1 mrg struct lto_tree_ref_table streams[LTO_N_DECL_STREAMS];
493 1.1 mrg
494 1.1 mrg /* If this in-decl state is associated with a function. FN_DECL
495 1.1 mrg point to the FUNCTION_DECL. */
496 1.1 mrg tree fn_decl;
497 1.1 mrg };
498 1.1 mrg
499 1.1 mrg typedef struct lto_in_decl_state *lto_in_decl_state_ptr;
500 1.1 mrg
501 1.1 mrg
502 1.1 mrg /* The structure that holds all of the vectors of global types,
503 1.1 mrg decls and cgraph nodes used in the serialization of this file. */
504 1.1 mrg struct lto_out_decl_state
505 1.1 mrg {
506 1.1 mrg /* The buffers contain the sets of decls of various kinds and types we have
507 1.1 mrg seen so far and the indexes assigned to them. */
508 1.1 mrg struct lto_tree_ref_encoder streams[LTO_N_DECL_STREAMS];
509 1.1 mrg
510 1.1 mrg /* Encoder for cgraph nodes. */
511 1.1.1.2 mrg lto_symtab_encoder_t symtab_node_encoder;
512 1.1 mrg
513 1.1 mrg /* If this out-decl state belongs to a function, fn_decl points to that
514 1.1 mrg function. Otherwise, it is NULL. */
515 1.1 mrg tree fn_decl;
516 1.1 mrg };
517 1.1 mrg
518 1.1 mrg typedef struct lto_out_decl_state *lto_out_decl_state_ptr;
519 1.1 mrg
520 1.1.1.2 mrg
521 1.1.1.2 mrg /* Compact representation of a index <-> resolution pair. Unpacked to an
522 1.1.1.2 mrg vector later. */
523 1.1.1.2 mrg struct res_pair
524 1.1.1.2 mrg {
525 1.1.1.2 mrg ld_plugin_symbol_resolution_t res;
526 1.1.1.2 mrg unsigned index;
527 1.1.1.2 mrg };
528 1.1.1.2 mrg typedef struct res_pair res_pair;
529 1.1.1.2 mrg
530 1.1 mrg
531 1.1 mrg /* One of these is allocated for each object file that being compiled
532 1.1 mrg by lto. This structure contains the tables that are needed by the
533 1.1 mrg serialized functions and ipa passes to connect themselves to the
534 1.1 mrg global types and decls as they are reconstituted. */
535 1.1.1.2 mrg struct GTY(()) lto_file_decl_data
536 1.1 mrg {
537 1.1 mrg /* Decl state currently used. */
538 1.1 mrg struct lto_in_decl_state *current_decl_state;
539 1.1 mrg
540 1.1 mrg /* Decl state corresponding to regions outside of any functions
541 1.1 mrg in the compilation unit. */
542 1.1 mrg struct lto_in_decl_state *global_decl_state;
543 1.1 mrg
544 1.1 mrg /* Table of cgraph nodes present in this file. */
545 1.1.1.2 mrg lto_symtab_encoder_t GTY((skip)) symtab_node_encoder;
546 1.1 mrg
547 1.1 mrg /* Hash table maps lto-related section names to location in file. */
548 1.1.1.2 mrg htab_t GTY((param_is (struct lto_in_decl_state))) function_decl_states;
549 1.1 mrg
550 1.1 mrg /* The .o file that these offsets relate to. */
551 1.1.1.2 mrg const char *GTY((skip)) file_name;
552 1.1 mrg
553 1.1 mrg /* Hash table maps lto-related section names to location in file. */
554 1.1.1.2 mrg htab_t GTY((skip)) section_hash_table;
555 1.1 mrg
556 1.1 mrg /* Hash new name of renamed global declaration to its original name. */
557 1.1.1.2 mrg htab_t GTY((skip)) renaming_hash_table;
558 1.1.1.2 mrg
559 1.1.1.2 mrg /* Linked list used temporarily in reader */
560 1.1.1.2 mrg struct lto_file_decl_data *next;
561 1.1.1.2 mrg
562 1.1.1.2 mrg /* Sub ID for merged objects. */
563 1.1.1.2 mrg unsigned HOST_WIDE_INT id;
564 1.1.1.2 mrg
565 1.1.1.2 mrg /* Symbol resolutions for this file */
566 1.1.1.2 mrg vec<res_pair> GTY((skip)) respairs;
567 1.1.1.2 mrg unsigned max_index;
568 1.1.1.2 mrg
569 1.1.1.2 mrg struct gcov_ctr_summary GTY((skip)) profile_info;
570 1.1 mrg };
571 1.1 mrg
572 1.1.1.2 mrg typedef struct lto_file_decl_data *lto_file_decl_data_ptr;
573 1.1.1.2 mrg
574 1.1 mrg struct lto_char_ptr_base
575 1.1 mrg {
576 1.1 mrg char *ptr;
577 1.1 mrg };
578 1.1 mrg
579 1.1 mrg /* An incore byte stream to buffer the various parts of the function.
580 1.1 mrg The entire structure should be zeroed when created. The record
581 1.1 mrg consists of a set of blocks. The first sizeof (ptr) bytes are used
582 1.1 mrg as a chain, and the rest store the bytes to be written. */
583 1.1 mrg struct lto_output_stream
584 1.1 mrg {
585 1.1 mrg /* The pointer to the first block in the stream. */
586 1.1 mrg struct lto_char_ptr_base * first_block;
587 1.1 mrg
588 1.1 mrg /* The pointer to the last and current block in the stream. */
589 1.1 mrg struct lto_char_ptr_base * current_block;
590 1.1 mrg
591 1.1 mrg /* The pointer to where the next char should be written. */
592 1.1 mrg char * current_pointer;
593 1.1 mrg
594 1.1 mrg /* The number of characters left in the current block. */
595 1.1 mrg unsigned int left_in_block;
596 1.1 mrg
597 1.1 mrg /* The block size of the last block allocated. */
598 1.1 mrg unsigned int block_size;
599 1.1 mrg
600 1.1 mrg /* The total number of characters written. */
601 1.1 mrg unsigned int total_size;
602 1.1 mrg };
603 1.1 mrg
604 1.1 mrg /* The is the first part of the record in an LTO file for many of the
605 1.1 mrg IPA passes. */
606 1.1 mrg struct lto_simple_header
607 1.1 mrg {
608 1.1 mrg /* The header for all types of sections. */
609 1.1 mrg struct lto_header lto_header;
610 1.1 mrg
611 1.1 mrg /* Size of main gimple body of function. */
612 1.1 mrg int32_t main_size;
613 1.1 mrg
614 1.1 mrg /* Size of main stream when compressed. */
615 1.1 mrg int32_t compressed_size;
616 1.1 mrg };
617 1.1 mrg
618 1.1 mrg /* A simple output block. This can be used for simple IPA passes that
619 1.1 mrg do not need more than one stream. */
620 1.1 mrg struct lto_simple_output_block
621 1.1 mrg {
622 1.1 mrg enum lto_section_type section_type;
623 1.1 mrg struct lto_out_decl_state *decl_state;
624 1.1 mrg
625 1.1 mrg /* The stream that the main tree codes are written to. */
626 1.1 mrg struct lto_output_stream *main_stream;
627 1.1 mrg };
628 1.1 mrg
629 1.1 mrg /* Data structure holding all the data and descriptors used when writing
630 1.1 mrg an LTO file. */
631 1.1 mrg struct output_block
632 1.1 mrg {
633 1.1 mrg enum lto_section_type section_type;
634 1.1 mrg struct lto_out_decl_state *decl_state;
635 1.1 mrg
636 1.1 mrg /* The stream that the main tree codes are written to. */
637 1.1 mrg struct lto_output_stream *main_stream;
638 1.1 mrg
639 1.1 mrg /* The stream that contains the string table. */
640 1.1 mrg struct lto_output_stream *string_stream;
641 1.1 mrg
642 1.1 mrg /* The stream that contains the cfg. */
643 1.1 mrg struct lto_output_stream *cfg_stream;
644 1.1 mrg
645 1.1 mrg /* The hash table that contains the set of strings we have seen so
646 1.1 mrg far and the indexes assigned to them. */
647 1.1 mrg htab_t string_hash_table;
648 1.1 mrg
649 1.1 mrg /* The current cgraph_node that we are currently serializing. Null
650 1.1 mrg if we are serializing something else. */
651 1.1 mrg struct cgraph_node *cgraph_node;
652 1.1 mrg
653 1.1 mrg /* These are the last file and line that were seen in the stream.
654 1.1 mrg If the current node differs from these, it needs to insert
655 1.1 mrg something into the stream and fix these up. */
656 1.1 mrg const char *current_file;
657 1.1 mrg int current_line;
658 1.1 mrg int current_col;
659 1.1 mrg
660 1.1 mrg /* True if writing globals and types. */
661 1.1 mrg bool global;
662 1.1 mrg
663 1.1 mrg /* Cache of nodes written in this section. */
664 1.1.1.2 mrg struct streamer_tree_cache_d *writer_cache;
665 1.1.1.2 mrg
666 1.1.1.2 mrg /* All data persistent across whole duration of output block
667 1.1.1.2 mrg can go here. */
668 1.1.1.2 mrg struct obstack obstack;
669 1.1 mrg };
670 1.1 mrg
671 1.1 mrg
672 1.1 mrg /* Data and descriptors used when reading from an LTO file. */
673 1.1 mrg struct data_in
674 1.1 mrg {
675 1.1 mrg /* The global decls and types. */
676 1.1 mrg struct lto_file_decl_data *file_data;
677 1.1 mrg
678 1.1 mrg /* All of the labels. */
679 1.1 mrg tree *labels;
680 1.1 mrg
681 1.1 mrg /* The string table. */
682 1.1 mrg const char *strings;
683 1.1 mrg
684 1.1 mrg /* The length of the string table. */
685 1.1 mrg unsigned int strings_len;
686 1.1 mrg
687 1.1 mrg /* Number of named labels. Used to find the index of unnamed labels
688 1.1 mrg since they share space with the named labels. */
689 1.1 mrg unsigned int num_named_labels;
690 1.1 mrg
691 1.1 mrg /* Number of unnamed labels. */
692 1.1 mrg unsigned int num_unnamed_labels;
693 1.1 mrg
694 1.1 mrg /* Maps each reference number to the resolution done by the linker. */
695 1.1.1.2 mrg vec<ld_plugin_symbol_resolution_t> globals_resolution;
696 1.1 mrg
697 1.1 mrg /* Cache of pickled nodes. */
698 1.1.1.2 mrg struct streamer_tree_cache_d *reader_cache;
699 1.1 mrg };
700 1.1 mrg
701 1.1 mrg
702 1.1 mrg /* In lto-section-in.c */
703 1.1 mrg extern struct lto_input_block * lto_create_simple_input_block (
704 1.1 mrg struct lto_file_decl_data *,
705 1.1 mrg enum lto_section_type, const char **, size_t *);
706 1.1 mrg extern void
707 1.1 mrg lto_destroy_simple_input_block (struct lto_file_decl_data *,
708 1.1 mrg enum lto_section_type,
709 1.1 mrg struct lto_input_block *, const char *, size_t);
710 1.1 mrg extern void lto_set_in_hooks (struct lto_file_decl_data **,
711 1.1 mrg lto_get_section_data_f *,
712 1.1 mrg lto_free_section_data_f *);
713 1.1 mrg extern struct lto_file_decl_data **lto_get_file_decl_data (void);
714 1.1 mrg extern const char *lto_get_section_data (struct lto_file_decl_data *,
715 1.1 mrg enum lto_section_type,
716 1.1 mrg const char *, size_t *);
717 1.1 mrg extern void lto_free_section_data (struct lto_file_decl_data *,
718 1.1 mrg enum lto_section_type,
719 1.1 mrg const char *, const char *, size_t);
720 1.1 mrg extern htab_t lto_create_renaming_table (void);
721 1.1 mrg extern void lto_record_renamed_decl (struct lto_file_decl_data *,
722 1.1 mrg const char *, const char *);
723 1.1 mrg extern const char *lto_get_decl_name_mapping (struct lto_file_decl_data *,
724 1.1 mrg const char *);
725 1.1 mrg extern struct lto_in_decl_state *lto_new_in_decl_state (void);
726 1.1 mrg extern void lto_delete_in_decl_state (struct lto_in_decl_state *);
727 1.1 mrg extern hashval_t lto_hash_in_decl_state (const void *);
728 1.1 mrg extern int lto_eq_in_decl_state (const void *, const void *);
729 1.1 mrg extern struct lto_in_decl_state *lto_get_function_in_decl_state (
730 1.1 mrg struct lto_file_decl_data *, tree);
731 1.1.1.2 mrg extern void lto_section_overrun (struct lto_input_block *) ATTRIBUTE_NORETURN;
732 1.1.1.2 mrg extern void lto_value_range_error (const char *,
733 1.1.1.2 mrg HOST_WIDE_INT, HOST_WIDE_INT,
734 1.1.1.2 mrg HOST_WIDE_INT) ATTRIBUTE_NORETURN;
735 1.1 mrg
736 1.1 mrg /* In lto-section-out.c */
737 1.1 mrg extern hashval_t lto_hash_decl_slot_node (const void *);
738 1.1 mrg extern int lto_eq_decl_slot_node (const void *, const void *);
739 1.1 mrg extern hashval_t lto_hash_type_slot_node (const void *);
740 1.1 mrg extern int lto_eq_type_slot_node (const void *, const void *);
741 1.1 mrg extern void lto_begin_section (const char *, bool);
742 1.1 mrg extern void lto_end_section (void);
743 1.1 mrg extern void lto_write_stream (struct lto_output_stream *);
744 1.1 mrg extern void lto_output_data_stream (struct lto_output_stream *, const void *,
745 1.1 mrg size_t);
746 1.1 mrg extern bool lto_output_decl_index (struct lto_output_stream *,
747 1.1 mrg struct lto_tree_ref_encoder *,
748 1.1 mrg tree, unsigned int *);
749 1.1 mrg extern void lto_output_field_decl_index (struct lto_out_decl_state *,
750 1.1 mrg struct lto_output_stream *, tree);
751 1.1 mrg extern void lto_output_fn_decl_index (struct lto_out_decl_state *,
752 1.1 mrg struct lto_output_stream *, tree);
753 1.1 mrg extern void lto_output_namespace_decl_index (struct lto_out_decl_state *,
754 1.1 mrg struct lto_output_stream *, tree);
755 1.1 mrg extern void lto_output_var_decl_index (struct lto_out_decl_state *,
756 1.1 mrg struct lto_output_stream *, tree);
757 1.1 mrg extern void lto_output_type_decl_index (struct lto_out_decl_state *,
758 1.1 mrg struct lto_output_stream *, tree);
759 1.1 mrg extern void lto_output_type_ref_index (struct lto_out_decl_state *,
760 1.1 mrg struct lto_output_stream *, tree);
761 1.1 mrg extern struct lto_simple_output_block *lto_create_simple_output_block (
762 1.1 mrg enum lto_section_type);
763 1.1 mrg extern void lto_destroy_simple_output_block (struct lto_simple_output_block *);
764 1.1 mrg extern struct lto_out_decl_state *lto_new_out_decl_state (void);
765 1.1 mrg extern void lto_delete_out_decl_state (struct lto_out_decl_state *);
766 1.1 mrg extern struct lto_out_decl_state *lto_get_out_decl_state (void);
767 1.1 mrg extern void lto_push_out_decl_state (struct lto_out_decl_state *);
768 1.1 mrg extern struct lto_out_decl_state *lto_pop_out_decl_state (void);
769 1.1 mrg extern void lto_record_function_out_decl_state (tree,
770 1.1 mrg struct lto_out_decl_state *);
771 1.1.1.2 mrg extern void lto_append_block (struct lto_output_stream *);
772 1.1 mrg
773 1.1 mrg
774 1.1 mrg /* In lto-streamer.c. */
775 1.1 mrg extern const char *lto_tag_name (enum LTO_tags);
776 1.1 mrg extern bitmap lto_bitmap_alloc (void);
777 1.1 mrg extern void lto_bitmap_free (bitmap);
778 1.1.1.2 mrg extern char *lto_get_section_name (int, const char *, struct lto_file_decl_data *);
779 1.1.1.2 mrg extern void print_lto_report (const char *);
780 1.1 mrg extern void lto_streamer_init (void);
781 1.1 mrg extern bool gate_lto_out (void);
782 1.1 mrg #ifdef LTO_STREAMER_DEBUG
783 1.1 mrg extern void lto_orig_address_map (tree, intptr_t);
784 1.1 mrg extern intptr_t lto_orig_address_get (tree);
785 1.1 mrg extern void lto_orig_address_remove (tree);
786 1.1 mrg #endif
787 1.1 mrg extern void lto_check_version (int, int);
788 1.1.1.2 mrg extern void lto_streamer_hooks_init (void);
789 1.1 mrg
790 1.1 mrg /* In lto-streamer-in.c */
791 1.1 mrg extern void lto_input_cgraph (struct lto_file_decl_data *, const char *);
792 1.1.1.2 mrg extern void lto_reader_init (void);
793 1.1 mrg extern void lto_input_function_body (struct lto_file_decl_data *, tree,
794 1.1 mrg const char *);
795 1.1 mrg extern void lto_input_constructors_and_inits (struct lto_file_decl_data *,
796 1.1 mrg const char *);
797 1.1.1.2 mrg extern void lto_input_toplevel_asms (struct lto_file_decl_data *, int);
798 1.1 mrg extern struct data_in *lto_data_in_create (struct lto_file_decl_data *,
799 1.1 mrg const char *, unsigned,
800 1.1.1.2 mrg vec<ld_plugin_symbol_resolution_t> );
801 1.1 mrg extern void lto_data_in_delete (struct data_in *);
802 1.1.1.2 mrg extern void lto_input_data_block (struct lto_input_block *, void *, size_t);
803 1.1.1.2 mrg location_t lto_input_location (struct bitpack_d *, struct data_in *);
804 1.1.1.2 mrg tree lto_input_tree_ref (struct lto_input_block *, struct data_in *,
805 1.1.1.2 mrg struct function *, enum LTO_tags);
806 1.1.1.2 mrg void lto_tag_check_set (enum LTO_tags, int, ...);
807 1.1.1.2 mrg void lto_init_eh (void);
808 1.1.1.2 mrg tree lto_input_tree (struct lto_input_block *, struct data_in *);
809 1.1 mrg
810 1.1 mrg
811 1.1 mrg /* In lto-streamer-out.c */
812 1.1 mrg extern void lto_register_decl_definition (tree, struct lto_file_decl_data *);
813 1.1 mrg extern struct output_block *create_output_block (enum lto_section_type);
814 1.1 mrg extern void destroy_output_block (struct output_block *);
815 1.1.1.2 mrg extern void lto_output_tree (struct output_block *, tree, bool, bool);
816 1.1.1.2 mrg extern void lto_output_toplevel_asms (void);
817 1.1 mrg extern void produce_asm (struct output_block *ob, tree fn);
818 1.1.1.2 mrg void lto_output_decl_state_streams (struct output_block *,
819 1.1.1.2 mrg struct lto_out_decl_state *);
820 1.1.1.2 mrg void lto_output_decl_state_refs (struct output_block *,
821 1.1.1.2 mrg struct lto_output_stream *,
822 1.1.1.2 mrg struct lto_out_decl_state *);
823 1.1.1.2 mrg void lto_output_location (struct output_block *, struct bitpack_d *, location_t);
824 1.1 mrg
825 1.1 mrg
826 1.1 mrg /* In lto-cgraph.c */
827 1.1.1.2 mrg lto_symtab_encoder_t lto_symtab_encoder_new (bool);
828 1.1.1.2 mrg int lto_symtab_encoder_encode (lto_symtab_encoder_t, symtab_node);
829 1.1.1.2 mrg void lto_symtab_encoder_delete (lto_symtab_encoder_t);
830 1.1.1.2 mrg bool lto_symtab_encoder_delete_node (lto_symtab_encoder_t, symtab_node);
831 1.1.1.2 mrg bool lto_symtab_encoder_encode_body_p (lto_symtab_encoder_t,
832 1.1.1.2 mrg struct cgraph_node *);
833 1.1.1.2 mrg bool lto_symtab_encoder_in_partition_p (lto_symtab_encoder_t,
834 1.1.1.2 mrg symtab_node);
835 1.1.1.2 mrg void lto_set_symtab_encoder_in_partition (lto_symtab_encoder_t,
836 1.1.1.2 mrg symtab_node);
837 1.1.1.2 mrg
838 1.1.1.2 mrg bool lto_symtab_encoder_encode_initializer_p (lto_symtab_encoder_t,
839 1.1.1.2 mrg struct varpool_node *);
840 1.1.1.2 mrg void output_symtab (void);
841 1.1.1.2 mrg void input_symtab (void);
842 1.1.1.2 mrg bool referenced_from_other_partition_p (struct ipa_ref_list *,
843 1.1.1.2 mrg lto_symtab_encoder_t);
844 1.1.1.2 mrg bool reachable_from_other_partition_p (struct cgraph_node *,
845 1.1.1.2 mrg lto_symtab_encoder_t);
846 1.1.1.2 mrg bool referenced_from_this_partition_p (struct ipa_ref_list *,
847 1.1.1.2 mrg lto_symtab_encoder_t);
848 1.1.1.2 mrg bool reachable_from_this_partition_p (struct cgraph_node *,
849 1.1.1.2 mrg lto_symtab_encoder_t);
850 1.1.1.2 mrg lto_symtab_encoder_t compute_ltrans_boundary (lto_symtab_encoder_t encoder);
851 1.1 mrg
852 1.1 mrg
853 1.1 mrg /* In lto-symtab.c. */
854 1.1 mrg extern void lto_symtab_merge_decls (void);
855 1.1 mrg extern void lto_symtab_merge_cgraph_nodes (void);
856 1.1 mrg extern tree lto_symtab_prevailing_decl (tree decl);
857 1.1.1.2 mrg extern GTY(()) vec<tree, va_gc> *lto_global_var_decls;
858 1.1 mrg
859 1.1 mrg
860 1.1 mrg /* In lto-opts.c. */
861 1.1 mrg extern void lto_write_options (void);
862 1.1 mrg
863 1.1 mrg
864 1.1 mrg /* Statistics gathered during LTO, WPA and LTRANS. */
865 1.1 mrg extern struct lto_stats_d lto_stats;
866 1.1 mrg
867 1.1 mrg /* Section names corresponding to the values of enum lto_section_type. */
868 1.1 mrg extern const char *lto_section_name[];
869 1.1 mrg
870 1.1 mrg /* Holds all the out decl states of functions output so far in the
871 1.1 mrg current output file. */
872 1.1.1.2 mrg extern vec<lto_out_decl_state_ptr> lto_function_decl_states;
873 1.1 mrg
874 1.1 mrg /* Return true if LTO tag TAG corresponds to a tree code. */
875 1.1 mrg static inline bool
876 1.1 mrg lto_tag_is_tree_code_p (enum LTO_tags tag)
877 1.1 mrg {
878 1.1.1.2 mrg return tag > LTO_null && (unsigned) tag <= MAX_TREE_CODES;
879 1.1 mrg }
880 1.1 mrg
881 1.1 mrg
882 1.1 mrg /* Return true if LTO tag TAG corresponds to a gimple code. */
883 1.1 mrg static inline bool
884 1.1 mrg lto_tag_is_gimple_code_p (enum LTO_tags tag)
885 1.1 mrg {
886 1.1 mrg return (unsigned) tag >= NUM_TREE_CODES + 1
887 1.1 mrg && (unsigned) tag < 1 + NUM_TREE_CODES + LAST_AND_UNUSED_GIMPLE_CODE;
888 1.1 mrg }
889 1.1 mrg
890 1.1 mrg
891 1.1 mrg /* Return the LTO tag corresponding to gimple code CODE. See enum
892 1.1 mrg LTO_tags for details on the conversion. */
893 1.1 mrg static inline enum LTO_tags
894 1.1 mrg lto_gimple_code_to_tag (enum gimple_code code)
895 1.1 mrg {
896 1.1 mrg return (enum LTO_tags) ((unsigned) code + NUM_TREE_CODES + 1);
897 1.1 mrg }
898 1.1 mrg
899 1.1 mrg
900 1.1 mrg /* Return the GIMPLE code corresponding to TAG. See enum LTO_tags for
901 1.1 mrg details on the conversion. */
902 1.1 mrg static inline enum gimple_code
903 1.1 mrg lto_tag_to_gimple_code (enum LTO_tags tag)
904 1.1 mrg {
905 1.1 mrg gcc_assert (lto_tag_is_gimple_code_p (tag));
906 1.1 mrg return (enum gimple_code) ((unsigned) tag - NUM_TREE_CODES - 1);
907 1.1 mrg }
908 1.1 mrg
909 1.1 mrg
910 1.1 mrg /* Return the LTO tag corresponding to tree code CODE. See enum
911 1.1 mrg LTO_tags for details on the conversion. */
912 1.1 mrg static inline enum LTO_tags
913 1.1 mrg lto_tree_code_to_tag (enum tree_code code)
914 1.1 mrg {
915 1.1 mrg return (enum LTO_tags) ((unsigned) code + 1);
916 1.1 mrg }
917 1.1 mrg
918 1.1 mrg
919 1.1 mrg /* Return the tree code corresponding to TAG. See enum LTO_tags for
920 1.1 mrg details on the conversion. */
921 1.1 mrg static inline enum tree_code
922 1.1 mrg lto_tag_to_tree_code (enum LTO_tags tag)
923 1.1 mrg {
924 1.1 mrg gcc_assert (lto_tag_is_tree_code_p (tag));
925 1.1 mrg return (enum tree_code) ((unsigned) tag - 1);
926 1.1 mrg }
927 1.1 mrg
928 1.1.1.2 mrg /* Check that tag ACTUAL == EXPECTED. */
929 1.1 mrg static inline void
930 1.1.1.2 mrg lto_tag_check (enum LTO_tags actual, enum LTO_tags expected)
931 1.1 mrg {
932 1.1.1.2 mrg if (actual != expected)
933 1.1.1.2 mrg internal_error ("bytecode stream: expected tag %s instead of %s",
934 1.1.1.2 mrg lto_tag_name (expected), lto_tag_name (actual));
935 1.1 mrg }
936 1.1 mrg
937 1.1.1.2 mrg /* Check that tag ACTUAL is in the range [TAG1, TAG2]. */
938 1.1.1.2 mrg static inline void
939 1.1.1.2 mrg lto_tag_check_range (enum LTO_tags actual, enum LTO_tags tag1,
940 1.1.1.2 mrg enum LTO_tags tag2)
941 1.1 mrg {
942 1.1.1.2 mrg if (actual < tag1 || actual > tag2)
943 1.1.1.2 mrg internal_error ("bytecode stream: tag %s is not in the expected range "
944 1.1.1.2 mrg "[%s, %s]",
945 1.1.1.2 mrg lto_tag_name (actual),
946 1.1.1.2 mrg lto_tag_name (tag1),
947 1.1.1.2 mrg lto_tag_name (tag2));
948 1.1 mrg }
949 1.1 mrg
950 1.1 mrg /* Initialize an lto_out_decl_buffer ENCODER. */
951 1.1 mrg static inline void
952 1.1 mrg lto_init_tree_ref_encoder (struct lto_tree_ref_encoder *encoder,
953 1.1 mrg htab_hash hash_fn, htab_eq eq_fn)
954 1.1 mrg {
955 1.1 mrg encoder->tree_hash_table = htab_create (37, hash_fn, eq_fn, free);
956 1.1 mrg encoder->next_index = 0;
957 1.1.1.2 mrg encoder->trees.create (0);
958 1.1 mrg }
959 1.1 mrg
960 1.1 mrg
961 1.1.1.2 mrg /* Destroy an lto_tree_ref_encoder ENCODER by freeing its contents. The
962 1.1 mrg memory used by ENCODER is not freed by this function. */
963 1.1 mrg static inline void
964 1.1 mrg lto_destroy_tree_ref_encoder (struct lto_tree_ref_encoder *encoder)
965 1.1 mrg {
966 1.1 mrg /* Hash table may be delete already. */
967 1.1 mrg if (encoder->tree_hash_table)
968 1.1 mrg htab_delete (encoder->tree_hash_table);
969 1.1.1.2 mrg encoder->trees.release ();
970 1.1 mrg }
971 1.1 mrg
972 1.1 mrg /* Return the number of trees encoded in ENCODER. */
973 1.1 mrg static inline unsigned int
974 1.1 mrg lto_tree_ref_encoder_size (struct lto_tree_ref_encoder *encoder)
975 1.1 mrg {
976 1.1.1.2 mrg return encoder->trees.length ();
977 1.1 mrg }
978 1.1 mrg
979 1.1 mrg /* Return the IDX-th tree in ENCODER. */
980 1.1 mrg static inline tree
981 1.1 mrg lto_tree_ref_encoder_get_tree (struct lto_tree_ref_encoder *encoder,
982 1.1 mrg unsigned int idx)
983 1.1 mrg {
984 1.1.1.2 mrg return encoder->trees[idx];
985 1.1 mrg }
986 1.1 mrg
987 1.1 mrg
988 1.1 mrg /* Return true if LABEL should be emitted in the global context. */
989 1.1 mrg static inline bool
990 1.1 mrg emit_label_in_global_context_p (tree label)
991 1.1 mrg {
992 1.1 mrg return DECL_NONLOCAL (label) || FORCED_LABEL (label);
993 1.1 mrg }
994 1.1 mrg
995 1.1.1.2 mrg /* Return number of encoded nodes in ENCODER. */
996 1.1.1.2 mrg static inline int
997 1.1.1.2 mrg lto_symtab_encoder_size (lto_symtab_encoder_t encoder)
998 1.1 mrg {
999 1.1.1.2 mrg return encoder->nodes.length ();
1000 1.1 mrg }
1001 1.1 mrg
1002 1.1.1.2 mrg /* Value used to represent failure of lto_symtab_encoder_lookup. */
1003 1.1.1.2 mrg #define LCC_NOT_FOUND (-1)
1004 1.1.1.2 mrg
1005 1.1.1.2 mrg /* Look up NODE in encoder. Return NODE's reference if it has been encoded
1006 1.1.1.2 mrg or LCC_NOT_FOUND if it is not there. */
1007 1.1.1.2 mrg
1008 1.1.1.2 mrg static inline int
1009 1.1.1.2 mrg lto_symtab_encoder_lookup (lto_symtab_encoder_t encoder,
1010 1.1.1.2 mrg symtab_node node)
1011 1.1.1.2 mrg {
1012 1.1.1.2 mrg void **slot = pointer_map_contains (encoder->map, node);
1013 1.1.1.2 mrg return (slot && *slot ? (size_t) *(slot) - 1 : LCC_NOT_FOUND);
1014 1.1.1.2 mrg }
1015 1.1.1.2 mrg
1016 1.1.1.2 mrg /* Return true if iterator LSE points to nothing. */
1017 1.1 mrg static inline bool
1018 1.1.1.2 mrg lsei_end_p (lto_symtab_encoder_iterator lsei)
1019 1.1.1.2 mrg {
1020 1.1.1.2 mrg return lsei.index >= (unsigned)lto_symtab_encoder_size (lsei.encoder);
1021 1.1.1.2 mrg }
1022 1.1.1.2 mrg
1023 1.1.1.2 mrg /* Advance iterator LSE. */
1024 1.1.1.2 mrg static inline void
1025 1.1.1.2 mrg lsei_next (lto_symtab_encoder_iterator *lsei)
1026 1.1.1.2 mrg {
1027 1.1.1.2 mrg lsei->index++;
1028 1.1.1.2 mrg }
1029 1.1.1.2 mrg
1030 1.1.1.2 mrg /* Return the node pointed to by LSI. */
1031 1.1.1.2 mrg static inline symtab_node
1032 1.1.1.2 mrg lsei_node (lto_symtab_encoder_iterator lsei)
1033 1.1 mrg {
1034 1.1.1.2 mrg return lsei.encoder->nodes[lsei.index].node;
1035 1.1.1.2 mrg }
1036 1.1.1.2 mrg
1037 1.1.1.2 mrg /* Return the node pointed to by LSI. */
1038 1.1.1.2 mrg static inline struct cgraph_node *
1039 1.1.1.2 mrg lsei_cgraph_node (lto_symtab_encoder_iterator lsei)
1040 1.1.1.2 mrg {
1041 1.1.1.2 mrg return cgraph (lsei.encoder->nodes[lsei.index].node);
1042 1.1.1.2 mrg }
1043 1.1.1.2 mrg
1044 1.1.1.2 mrg /* Return the node pointed to by LSI. */
1045 1.1.1.2 mrg static inline struct varpool_node *
1046 1.1.1.2 mrg lsei_varpool_node (lto_symtab_encoder_iterator lsei)
1047 1.1.1.2 mrg {
1048 1.1.1.2 mrg return varpool (lsei.encoder->nodes[lsei.index].node);
1049 1.1.1.2 mrg }
1050 1.1.1.2 mrg
1051 1.1.1.2 mrg /* Return the cgraph node corresponding to REF using ENCODER. */
1052 1.1.1.2 mrg
1053 1.1.1.2 mrg static inline symtab_node
1054 1.1.1.2 mrg lto_symtab_encoder_deref (lto_symtab_encoder_t encoder, int ref)
1055 1.1.1.2 mrg {
1056 1.1.1.2 mrg if (ref == LCC_NOT_FOUND)
1057 1.1.1.2 mrg return NULL;
1058 1.1.1.2 mrg
1059 1.1.1.2 mrg return encoder->nodes[ref].node;
1060 1.1.1.2 mrg }
1061 1.1.1.2 mrg
1062 1.1.1.2 mrg /* Return an iterator to the first node in LSI. */
1063 1.1.1.2 mrg static inline lto_symtab_encoder_iterator
1064 1.1.1.2 mrg lsei_start (lto_symtab_encoder_t encoder)
1065 1.1.1.2 mrg {
1066 1.1.1.2 mrg lto_symtab_encoder_iterator lsei;
1067 1.1.1.2 mrg
1068 1.1.1.2 mrg lsei.encoder = encoder;
1069 1.1.1.2 mrg lsei.index = 0;
1070 1.1.1.2 mrg return lsei;
1071 1.1.1.2 mrg }
1072 1.1.1.2 mrg
1073 1.1.1.2 mrg /* Advance iterator LSE. */
1074 1.1.1.2 mrg static inline void
1075 1.1.1.2 mrg lsei_next_in_partition (lto_symtab_encoder_iterator *lsei)
1076 1.1.1.2 mrg {
1077 1.1.1.2 mrg lsei_next (lsei);
1078 1.1.1.2 mrg while (!lsei_end_p (*lsei)
1079 1.1.1.2 mrg && !lto_symtab_encoder_in_partition_p (lsei->encoder, lsei_node (*lsei)))
1080 1.1.1.2 mrg lsei_next (lsei);
1081 1.1.1.2 mrg }
1082 1.1.1.2 mrg
1083 1.1.1.2 mrg /* Return an iterator to the first node in LSI. */
1084 1.1.1.2 mrg static inline lto_symtab_encoder_iterator
1085 1.1.1.2 mrg lsei_start_in_partition (lto_symtab_encoder_t encoder)
1086 1.1.1.2 mrg {
1087 1.1.1.2 mrg lto_symtab_encoder_iterator lsei = lsei_start (encoder);
1088 1.1.1.2 mrg
1089 1.1.1.2 mrg if (lsei_end_p (lsei))
1090 1.1.1.2 mrg return lsei;
1091 1.1.1.2 mrg if (!lto_symtab_encoder_in_partition_p (encoder, lsei_node (lsei)))
1092 1.1.1.2 mrg lsei_next_in_partition (&lsei);
1093 1.1.1.2 mrg
1094 1.1.1.2 mrg return lsei;
1095 1.1.1.2 mrg }
1096 1.1.1.2 mrg
1097 1.1.1.2 mrg /* Advance iterator LSE. */
1098 1.1.1.2 mrg static inline void
1099 1.1.1.2 mrg lsei_next_function_in_partition (lto_symtab_encoder_iterator *lsei)
1100 1.1.1.2 mrg {
1101 1.1.1.2 mrg lsei_next (lsei);
1102 1.1.1.2 mrg while (!lsei_end_p (*lsei)
1103 1.1.1.2 mrg && (!is_a <cgraph_node> (lsei_node (*lsei))
1104 1.1.1.2 mrg || !lto_symtab_encoder_in_partition_p (lsei->encoder, lsei_node (*lsei))))
1105 1.1.1.2 mrg lsei_next (lsei);
1106 1.1.1.2 mrg }
1107 1.1.1.2 mrg
1108 1.1.1.2 mrg /* Return an iterator to the first node in LSI. */
1109 1.1.1.2 mrg static inline lto_symtab_encoder_iterator
1110 1.1.1.2 mrg lsei_start_function_in_partition (lto_symtab_encoder_t encoder)
1111 1.1.1.2 mrg {
1112 1.1.1.2 mrg lto_symtab_encoder_iterator lsei = lsei_start (encoder);
1113 1.1.1.2 mrg
1114 1.1.1.2 mrg if (lsei_end_p (lsei))
1115 1.1.1.2 mrg return lsei;
1116 1.1.1.2 mrg if (!is_a <cgraph_node> (lsei_node (lsei))
1117 1.1.1.2 mrg || !lto_symtab_encoder_in_partition_p (encoder, lsei_node (lsei)))
1118 1.1.1.2 mrg lsei_next_function_in_partition (&lsei);
1119 1.1.1.2 mrg
1120 1.1.1.2 mrg return lsei;
1121 1.1.1.2 mrg }
1122 1.1.1.2 mrg
1123 1.1.1.2 mrg /* Advance iterator LSE. */
1124 1.1.1.2 mrg static inline void
1125 1.1.1.2 mrg lsei_next_variable_in_partition (lto_symtab_encoder_iterator *lsei)
1126 1.1.1.2 mrg {
1127 1.1.1.2 mrg lsei_next (lsei);
1128 1.1.1.2 mrg while (!lsei_end_p (*lsei)
1129 1.1.1.2 mrg && (!is_a <varpool_node> (lsei_node (*lsei))
1130 1.1.1.2 mrg || !lto_symtab_encoder_in_partition_p (lsei->encoder, lsei_node (*lsei))))
1131 1.1.1.2 mrg lsei_next (lsei);
1132 1.1.1.2 mrg }
1133 1.1.1.2 mrg
1134 1.1.1.2 mrg /* Return an iterator to the first node in LSI. */
1135 1.1.1.2 mrg static inline lto_symtab_encoder_iterator
1136 1.1.1.2 mrg lsei_start_variable_in_partition (lto_symtab_encoder_t encoder)
1137 1.1.1.2 mrg {
1138 1.1.1.2 mrg lto_symtab_encoder_iterator lsei = lsei_start (encoder);
1139 1.1.1.2 mrg
1140 1.1.1.2 mrg if (lsei_end_p (lsei))
1141 1.1.1.2 mrg return lsei;
1142 1.1.1.2 mrg if (!is_a <varpool_node> (lsei_node (lsei))
1143 1.1.1.2 mrg || !lto_symtab_encoder_in_partition_p (encoder, lsei_node (lsei)))
1144 1.1.1.2 mrg lsei_next_variable_in_partition (&lsei);
1145 1.1 mrg
1146 1.1.1.2 mrg return lsei;
1147 1.1 mrg }
1148 1.1 mrg
1149 1.1 mrg DEFINE_DECL_STREAM_FUNCS (TYPE, type)
1150 1.1 mrg DEFINE_DECL_STREAM_FUNCS (FIELD_DECL, field_decl)
1151 1.1 mrg DEFINE_DECL_STREAM_FUNCS (FN_DECL, fn_decl)
1152 1.1 mrg DEFINE_DECL_STREAM_FUNCS (VAR_DECL, var_decl)
1153 1.1 mrg DEFINE_DECL_STREAM_FUNCS (TYPE_DECL, type_decl)
1154 1.1 mrg DEFINE_DECL_STREAM_FUNCS (NAMESPACE_DECL, namespace_decl)
1155 1.1 mrg DEFINE_DECL_STREAM_FUNCS (LABEL_DECL, label_decl)
1156 1.1 mrg
1157 1.1 mrg #endif /* GCC_LTO_STREAMER_H */
1158