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libctf: support addition of types to dicts read via ctf_open()
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1/* Implementation header.
2 Copyright (C) 2019-2024 Free Software Foundation, Inc.
3
4 This file is part of libctf.
5
6 libctf is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
10
11 This program is distributed in the hope that it will be useful, but
12 WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
14 See the GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; see the file COPYING. If not see
18 <http://www.gnu.org/licenses/>. */
19
20#ifndef _CTF_IMPL_H
21#define _CTF_IMPL_H
22
23#include "config.h"
24#include <errno.h>
25#include <sys/param.h>
26#include "ctf-decls.h"
27#include <ctf-api.h>
28#include "ctf-sha1.h"
29#include <sys/types.h>
30#include <stdlib.h>
31#include <stdarg.h>
32#include <stddef.h>
33#include <stdio.h>
34#include <stdint.h>
35#include <string.h>
36#include <limits.h>
37#include <ctype.h>
38#include <elf.h>
39#include <bfd.h>
40#include "hashtab.h"
41#include "ctf-intl.h"
42
43#ifdef __cplusplus
44extern "C"
45{
46#endif
47
48/* Tuning. */
49
50/* The proportion of symtypetab entries which must be pads before we consider it
51 worthwhile to emit a symtypetab section as an index. Indexes cost time to
52 look up, but save space all told. Do not set to 1, since this will cause
53 indexes to be eschewed completely, even in child dicts, at considerable space
54 cost. */
55#define CTF_INDEX_PAD_THRESHOLD .75
56
57/* Compiler attributes. */
58
59#if defined (__GNUC__)
60
61/* GCC. We assume that all compilers claiming to be GCC support sufficiently
62 many GCC attributes that the code below works. If some non-GCC compilers
63 masquerading as GCC in fact do not implement these attributes, version checks
64 may be required. */
65
66/* We use the _libctf_*_ pattern to avoid clashes with any future attribute
67 macros glibc may introduce, which have names of the pattern
68 __attribute_blah__. */
69
70#define _libctf_printflike_(string_index,first_to_check) \
71 __attribute__ ((__format__ (__printf__, (string_index), (first_to_check))))
72#define _libctf_unlikely_(x) __builtin_expect ((x), 0)
73#define _libctf_unused_ __attribute__ ((__unused__))
74#define _libctf_malloc_ __attribute__((__malloc__))
75#define _libctf_nonnull_(params) __attribute__((__nonnull__ params))
76
77#else
78
79#define _libctf_printflike_(string_index,first_to_check)
80#define _libctf_unlikely_(x) (x)
81#define _libctf_unused_
82#define _libctf_malloc_
83#define _libctf_nonnull_(params)
84#define __extension__
85
86#endif
87
88#if defined (ENABLE_LIBCTF_HASH_DEBUGGING) && !defined (NDEBUG)
89#include <assert.h>
90#define ctf_assert(fp, expr) (assert (expr), 1)
91#else
92#define ctf_assert(fp, expr) \
93 _libctf_unlikely_ (ctf_assert_internal (fp, __FILE__, __LINE__, \
94 #expr, !!(expr)))
95#endif
96
97/* libctf in-memory state. */
98
99typedef struct ctf_fixed_hash ctf_hash_t; /* Private to ctf-hash.c. */
100typedef struct ctf_dynhash ctf_dynhash_t; /* Private to ctf-hash.c. */
101typedef struct ctf_dynset ctf_dynset_t; /* Private to ctf-hash.c. */
102
103typedef struct ctf_strs
104{
105 const char *cts_strs; /* Base address of string table. */
106 size_t cts_len; /* Size of string table in bytes. */
107} ctf_strs_t;
108
109typedef struct ctf_strs_writable
110{
111 char *cts_strs; /* Base address of string table. */
112 size_t cts_len; /* Size of string table in bytes. */
113} ctf_strs_writable_t;
114
115typedef struct ctf_dmodel
116{
117 const char *ctd_name; /* Data model name. */
118 int ctd_code; /* Data model code. */
119 size_t ctd_pointer; /* Size of void * in bytes. */
120 size_t ctd_char; /* Size of char in bytes. */
121 size_t ctd_short; /* Size of short in bytes. */
122 size_t ctd_int; /* Size of int in bytes. */
123 size_t ctd_long; /* Size of long in bytes. */
124} ctf_dmodel_t;
125
126typedef struct ctf_lookup
127{
128 const char *ctl_prefix; /* String prefix for this lookup. */
129 size_t ctl_len; /* Length of prefix string in bytes. */
130 ctf_dynhash_t *ctl_hash; /* Pointer to hash table for lookup. */
131} ctf_lookup_t;
132
133typedef struct ctf_dictops
134{
135 uint32_t (*ctfo_get_kind) (uint32_t);
136 uint32_t (*ctfo_get_root) (uint32_t);
137 uint32_t (*ctfo_get_vlen) (uint32_t);
138 ssize_t (*ctfo_get_ctt_size) (const ctf_dict_t *, const ctf_type_t *,
139 ssize_t *, ssize_t *);
140 ssize_t (*ctfo_get_vbytes) (ctf_dict_t *, unsigned short, ssize_t, size_t);
141} ctf_dictops_t;
142
143typedef struct ctf_list
144{
145 struct ctf_list *l_prev; /* Previous pointer or tail pointer. */
146 struct ctf_list *l_next; /* Next pointer or head pointer. */
147} ctf_list_t;
148
149typedef enum
150 {
151 CTF_PREC_BASE,
152 CTF_PREC_POINTER,
153 CTF_PREC_ARRAY,
154 CTF_PREC_FUNCTION,
155 CTF_PREC_MAX
156 } ctf_decl_prec_t;
157
158typedef struct ctf_decl_node
159{
160 ctf_list_t cd_list; /* Linked list pointers. */
161 ctf_id_t cd_type; /* Type identifier. */
162 uint32_t cd_kind; /* Type kind. */
163 uint32_t cd_n; /* Type dimension if array. */
164} ctf_decl_node_t;
165
166typedef struct ctf_decl
167{
168 ctf_list_t cd_nodes[CTF_PREC_MAX]; /* Declaration node stacks. */
169 int cd_order[CTF_PREC_MAX]; /* Storage order of decls. */
170 ctf_decl_prec_t cd_qualp; /* Qualifier precision. */
171 ctf_decl_prec_t cd_ordp; /* Ordered precision. */
172 char *cd_buf; /* Buffer for output. */
173 int cd_err; /* Saved error value. */
174 int cd_enomem; /* Nonzero if OOM during printing. */
175} ctf_decl_t;
176
177typedef struct ctf_dtdef
178{
179 ctf_list_t dtd_list; /* List forward/back pointers. */
180 ctf_id_t dtd_type; /* Type identifier for this definition. */
181 ctf_type_t dtd_data; /* Type node, including name. */
182 size_t dtd_vlen_alloc; /* Total vlen space allocated. */
183 unsigned char *dtd_vlen; /* Variable-length data for this type. */
184} ctf_dtdef_t;
185
186typedef struct ctf_dvdef
187{
188 ctf_list_t dvd_list; /* List forward/back pointers. */
189 char *dvd_name; /* Name associated with variable. */
190 ctf_id_t dvd_type; /* Type of variable. */
191 unsigned long dvd_snapshots; /* Snapshot count when inserted. */
192} ctf_dvdef_t;
193
194typedef struct ctf_err_warning
195{
196 ctf_list_t cew_list; /* List forward/back pointers. */
197 int cew_is_warning; /* 1 if warning, 0 if error. */
198 char *cew_text; /* Error/warning text. */
199} ctf_err_warning_t;
200
201/* Atoms associate strings with a list of the CTF items that reference that
202 string, so that ctf_update() can instantiate all the strings using the
203 ctf_str_atoms and then reassociate them with the real string later.
204
205 Strings can be interned into ctf_str_atom without having refs associated
206 with them, for values that are returned to callers, etc. Items are only
207 removed from this table on ctf_close(), but on every ctf_update(), all the
208 csa_refs in all entries are purged. */
209
210typedef struct ctf_str_atom
211{
212 const char *csa_str; /* Backpointer to string (hash key). */
213 ctf_list_t csa_refs; /* This string's refs. */
214 uint32_t csa_offset; /* Strtab offset, if any. */
215 uint32_t csa_external_offset; /* External strtab offset, if any. */
216 unsigned long csa_snapshot_id; /* Snapshot ID at time of creation. */
217} ctf_str_atom_t;
218
219/* The refs of a single string in the atoms table. */
220
221typedef struct ctf_str_atom_ref
222{
223 ctf_list_t caf_list; /* List forward/back pointers. */
224 uint32_t *caf_ref; /* A single ref to this string. */
225} ctf_str_atom_ref_t;
226
227/* A single linker-provided symbol, during symbol addition, possibly before we
228 have been given external strtab refs. */
229typedef struct ctf_in_flight_dynsym
230{
231 ctf_list_t cid_list; /* List forward/back pointers. */
232 ctf_link_sym_t cid_sym; /* The linker-known symbol. */
233} ctf_in_flight_dynsym_t;
234
235/* The structure used as the key in a ctf_link_type_mapping. The value is a
236 type index, not a type ID. */
237
238typedef struct ctf_link_type_key
239{
240 ctf_dict_t *cltk_fp;
241 ctf_id_t cltk_idx;
242} ctf_link_type_key_t;
243
244/* The structure used as the key in a cd_id_to_dict_t on 32-bit platforms. */
245typedef struct ctf_type_id_key
246{
247 int ctii_input_num;
248 ctf_id_t ctii_type;
249} ctf_type_id_key_t;
250
251/* Deduplicator state.
252
253 The dedup state below uses three terms consistently. A "hash" is a
254 ctf_dynhash_t; a "hash value" is the hash value of a type as returned by
255 ctf_dedup_hash_type; a "global type ID" or "global ID" is a packed-together
256 reference to a single ctf_dict_t (by array index in an array of inputs) and
257 ctf_id_t, i.e. a single instance of some hash value in some input.
258
259 The deduplication algorithm takes a bunch of inputs and yields a single
260 shared "output" and possibly many outputs corresponding to individual inputs
261 that still contain types after sharing of unconflicted types. Almost all
262 deduplicator state is stored in the struct ctf_dedup in the output, though a
263 (very) few things are stored in inputs for simplicity's sake, usually if they
264 are linking together things within the scope of a single TU.
265
266 Flushed at the end of every ctf_dedup run. */
267
268typedef struct ctf_dedup
269{
270 /* The CTF linker flags in force for this dedup run. */
271 int cd_link_flags;
272
273 /* On 32-bit platforms only, a hash of global type IDs, in the form of
274 a ctf_link_type_id_key_t. */
275 ctf_dynhash_t *cd_id_to_dict_t;
276
277 /* Atoms tables of decorated names: maps undecorated name to decorated name.
278 (The actual allocations are in the CTF dict for the former and the real
279 atoms table for the latter). Uses the same namespaces as ctf_lookups,
280 below, but has no need for null-termination. */
281 ctf_dynhash_t *cd_decorated_names[4];
282
283 /* Map type names to a hash from type hash value -> number of times each value
284 has appeared. */
285 ctf_dynhash_t *cd_name_counts;
286
287 /* Map global type IDs to type hash values. Used to determine if types are
288 already hashed without having to recompute their hash values again, and to
289 link types together at later stages. Forwards that are peeked through to
290 structs and unions are not represented in here, so lookups that might be
291 such a type (in practice, all lookups) must go via cd_replaced_types first
292 to take this into account. Discarded before each rehashing. */
293 ctf_dynhash_t *cd_type_hashes;
294
295 /* Maps from the names of structs/unions/enums to a a single GID which is the
296 only appearance of that type in any input: if it appears in more than one
297 input, a value which is a GID with an input_num of -1 appears. Used in
298 share-duplicated link mode link modes to determine whether structs/unions
299 can be cited from multiple TUs. Only populated in that link mode. */
300 ctf_dynhash_t *cd_struct_origin;
301
302 /* Maps type hash values to a set of hash values of the types that cite them:
303 i.e., pointing backwards up the type graph. Used for recursive conflict
304 marking. Citations from tagged structures, unions, and forwards do not
305 appear in this graph. */
306 ctf_dynhash_t *cd_citers;
307
308 /* Maps type hash values to input global type IDs. The value is a set (a
309 hash) of global type IDs. Discarded before each rehashing. The result of
310 the ctf_dedup function. */
311 ctf_dynhash_t *cd_output_mapping;
312
313 /* A map giving the GID of the first appearance of each type for each type
314 hash value. */
315 ctf_dynhash_t *cd_output_first_gid;
316
317 /* Used to ensure that we never try to map a single type ID to more than one
318 hash. */
319 ctf_dynhash_t *cd_output_mapping_guard;
320
321 /* Maps the global type IDs of structures in input TUs whose members still
322 need emission to the global type ID of the already-emitted target type
323 (which has no members yet) in the appropriate target. Uniquely, the latter
324 ID represents a *target* ID (i.e. the cd_output_mapping of some specified
325 input): we encode the shared (parent) dict with an ID of -1. */
326 ctf_dynhash_t *cd_emission_struct_members;
327
328 /* A set (a hash) of hash values of conflicting types. */
329 ctf_dynset_t *cd_conflicting_types;
330
331 /* A hash mapping fp *'s of inputs to their input_nums. Used only by
332 functions outside the core ctf_dedup / ctf_dedup_emit machinery which do
333 not take an inputs array. */
334 ctf_dynhash_t *cd_input_nums;
335
336 /* Maps type hashes to ctf_id_t's in this dictionary. Populated only at
337 emission time, in the dictionary where emission is taking place. */
338 ctf_dynhash_t *cd_output_emission_hashes;
339
340 /* Maps the decorated names of conflicted cross-TU forwards that were forcibly
341 emitted in this TU to their emitted ctf_id_ts. Populated only at emission
342 time, in the dictionary where emission is taking place. */
343 ctf_dynhash_t *cd_output_emission_conflicted_forwards;
344
345 /* Points to the output counterpart of this input dictionary, at emission
346 time. */
347 ctf_dict_t *cd_output;
348} ctf_dedup_t;
349
350/* The ctf_dict is the structure used to represent a CTF dictionary to library
351 clients, who see it only as an opaque pointer. Modifications can therefore
352 be made freely to this structure without regard to client versioning. The
353 ctf_dict_t typedef appears in <ctf-api.h> and declares a forward tag.
354 (A ctf_file_t typedef also appears there, for historical reasons.)
355
356 NOTE: ctf_serialize requires that everything inside of ctf_dict either be an
357 immediate value, a pointer to dynamically allocated data *outside* of the
358 ctf_dict itself, a pointer to statically allocated data, or specially handled
359 in ctf_serialize. If you add a pointer to ctf_dict that points to something
360 within the ctf_dict itself, you must make corresponding changes to
361 ctf_serialize. */
362
363struct ctf_dict
364{
365 const ctf_dictops_t *ctf_dictops; /* Version-specific dict operations. */
366 struct ctf_header *ctf_header; /* The header from this CTF dict. */
367 unsigned char ctf_openflags; /* Flags the dict had when opened. */
368 ctf_sect_t ctf_data; /* CTF data from object file. */
369 ctf_sect_t ctf_symtab; /* Symbol table from object file. */
370 ctf_sect_t ctf_strtab; /* String table from object file. */
371 int ctf_symsect_little_endian; /* Endianness of the ctf_symtab. */
372 ctf_dynhash_t *ctf_symhash_func; /* (partial) hash, symsect name -> idx. */
373 ctf_dynhash_t *ctf_symhash_objt; /* ditto, for object symbols. */
374 size_t ctf_symhash_latest; /* Amount of symsect scanned so far. */
375 ctf_dynhash_t *ctf_prov_strtab; /* Maps provisional-strtab offsets
376 to names. */
377 ctf_dynhash_t *ctf_syn_ext_strtab; /* Maps ext-strtab offsets to names. */
378 void *ctf_data_mmapped; /* CTF data we mmapped, to free later. */
379 size_t ctf_data_mmapped_len; /* Length of CTF data we mmapped. */
380 ctf_dynhash_t *ctf_structs; /* Hash table of struct types. */
381 ctf_dynhash_t *ctf_unions; /* Hash table of union types. */
382 ctf_dynhash_t *ctf_enums; /* Hash table of enum types. */
383 ctf_dynhash_t *ctf_names; /* Hash table of remaining type names. */
384 ctf_lookup_t ctf_lookups[5]; /* Pointers to nametabs for name lookup. */
385 ctf_strs_t ctf_str[2]; /* Array of string table base and bounds. */
386 ctf_dynhash_t *ctf_str_atoms; /* Hash table of ctf_str_atoms_t. */
387 ctf_dynset_t *ctf_str_pending_ref; /* Locations awaiting ref addition. */
388 uint64_t ctf_str_num_refs; /* Number of refs to cts_str_atoms. */
389 uint32_t ctf_str_prov_offset; /* Latest provisional offset assigned so far. */
390 unsigned char *ctf_base; /* CTF file pointer. */
391 unsigned char *ctf_dynbase; /* Freeable CTF file pointer. */
392 unsigned char *ctf_buf; /* Uncompressed CTF data buffer. */
393 size_t ctf_size; /* Size of CTF header + uncompressed data. */
394 uint32_t *ctf_sxlate; /* Translation table for unindexed symtypetab
395 entries. */
396 unsigned long ctf_nsyms; /* Number of entries in symtab xlate table. */
397 uint32_t *ctf_txlate; /* Translation table for type IDs. */
398 uint32_t *ctf_ptrtab; /* Translation table for pointer-to lookups. */
399 size_t ctf_ptrtab_len; /* Num types storable in ptrtab currently. */
400 uint32_t *ctf_pptrtab; /* Parent types pointed to by child dicts. */
401 size_t ctf_pptrtab_len; /* Num types storable in pptrtab currently. */
402 uint32_t ctf_pptrtab_typemax; /* Max child type when pptrtab last updated. */
403 uint32_t *ctf_funcidx_names; /* Name of each function symbol in symtypetab
404 (if indexed). */
405 uint32_t *ctf_objtidx_names; /* Likewise, for object symbols. */
406 size_t ctf_nfuncidx; /* Number of funcidx entries. */
407 uint32_t *ctf_funcidx_sxlate; /* Offsets into funcinfo for a given funcidx. */
408 uint32_t *ctf_objtidx_sxlate; /* Likewise, for ctf_objtidx. */
409 size_t ctf_nobjtidx; /* Number of objtidx entries. */
410 ctf_dynhash_t *ctf_objthash; /* Dynamic: name -> type ID. */
411 ctf_dynhash_t *ctf_funchash; /* Dynamic: name -> CTF_K_FUNCTION type ID. */
412
413 /* The next three are linker-derived state found in ctf_link targets only. */
414
415 ctf_dynhash_t *ctf_dynsyms; /* Symbol info from ctf_link_shuffle_syms. */
416 ctf_link_sym_t **ctf_dynsymidx; /* Indexes ctf_dynsyms by symidx. */
417 uint32_t ctf_dynsymmax; /* Maximum ctf_dynsym index. */
418 ctf_list_t ctf_in_flight_dynsyms; /* Dynsyms during accumulation. */
419 struct ctf_varent *ctf_vars; /* Sorted variable->type mapping. */
420 unsigned long ctf_nvars; /* Number of variables in ctf_vars. */
421 unsigned long ctf_typemax; /* Maximum valid type ID number. */
422 unsigned long ctf_stypes; /* Number of static (non-dynamic) types. */
423 const ctf_dmodel_t *ctf_dmodel; /* Data model pointer (see above). */
424 const char *ctf_cuname; /* Compilation unit name (if any). */
425 char *ctf_dyncuname; /* Dynamically allocated name of CU. */
426 struct ctf_dict *ctf_parent; /* Parent CTF dict (if any). */
427 int ctf_parent_unreffed; /* Parent set by ctf_import_unref? */
428 const char *ctf_parlabel; /* Label in parent dict (if any). */
429 const char *ctf_parname; /* Basename of parent (if any). */
430 char *ctf_dynparname; /* Dynamically allocated name of parent. */
431 uint32_t ctf_parmax; /* Highest type ID of a parent type. */
432 uint32_t ctf_refcnt; /* Reference count (for parent links). */
433 uint32_t ctf_flags; /* Libctf flags (see below). */
434 int ctf_errno; /* Error code for most recent error. */
435 int ctf_version; /* CTF data version. */
436 ctf_dynhash_t *ctf_dthash; /* Hash of dynamic type definitions. */
437 ctf_list_t ctf_dtdefs; /* List of dynamic type definitions. */
438 ctf_dynhash_t *ctf_dvhash; /* Hash of dynamic variable mappings. */
439 ctf_list_t ctf_dvdefs; /* List of dynamic variable definitions. */
440 unsigned long ctf_dtoldid; /* Oldest id that has been committed. */
441 unsigned long ctf_snapshots; /* ctf_snapshot() plus ctf_update() count. */
442 unsigned long ctf_snapshot_lu; /* ctf_snapshot() call count at last update. */
443 ctf_archive_t *ctf_archive; /* Archive this ctf_dict_t came from. */
444 ctf_list_t ctf_errs_warnings; /* CTF errors and warnings. */
445 ctf_dynhash_t *ctf_link_inputs; /* Inputs to this link. */
446 ctf_dynhash_t *ctf_link_outputs; /* Additional outputs from this link. */
447
448 /* If a link input CU, points at the corresponding per-CU output (if any);
449 if an output, points at the input (if any). */
450 ctf_dict_t *ctf_link_in_out;
451
452 /* Map input types to output types for ctf_add_type. Key is a
453 ctf_link_type_key_t: value is a type ID. */
454 ctf_dynhash_t *ctf_link_type_mapping;
455
456 /* Map input CU names to output CTF dict names: populated in the top-level
457 output dict.
458
459 Key and value are dynamically-allocated strings. */
460 ctf_dynhash_t *ctf_link_in_cu_mapping;
461
462 /* Map output CTF dict names to input CU names: populated in the top-level
463 output dict. A hash of string to hash (set) of strings. Key and
464 individual value members are shared with ctf_link_in_cu_mapping. */
465 ctf_dynhash_t *ctf_link_out_cu_mapping;
466
467 /* CTF linker flags. Set on the parent output dict (the one passed to
468 ctf_link). Only respected when LCTF_LINKING set in ctf_flags. */
469 int ctf_link_flags;
470
471 /* Allow the caller to change the name of link archive members. */
472 ctf_link_memb_name_changer_f *ctf_link_memb_name_changer;
473 void *ctf_link_memb_name_changer_arg; /* Argument for it. */
474
475 /* Allow the caller to filter out variables they don't care about. */
476 ctf_link_variable_filter_f *ctf_link_variable_filter;
477 void *ctf_link_variable_filter_arg; /* Argument for it. */
478
479 ctf_dynhash_t *ctf_add_processing; /* Types ctf_add_type is working on now. */
480
481 /* Atoms table for dedup string storage. All strings in the ctf_dedup_t are
482 stored here. Only the _alloc copy is allocated or freed: the
483 ctf_dedup_atoms may be pointed to some other CTF dict, to share its atoms.
484 We keep the atoms table outside the ctf_dedup so that atoms can be
485 preserved across multiple similar links, such as when doing cu-mapped
486 links. */
487 ctf_dynset_t *ctf_dedup_atoms;
488 ctf_dynset_t *ctf_dedup_atoms_alloc;
489
490 ctf_dedup_t ctf_dedup; /* Deduplicator state. */
491
492 char *ctf_tmp_typeslice; /* Storage for slicing up type names. */
493 size_t ctf_tmp_typeslicelen; /* Size of the typeslice. */
494 void *ctf_specific; /* Data for ctf_get/setspecific(). */
495};
496
497/* An abstraction over both a ctf_dict_t and a ctf_archive_t. */
498
499struct ctf_archive_internal
500{
501 int ctfi_is_archive;
502 int ctfi_unmap_on_close;
503 ctf_dict_t *ctfi_dict;
504 struct ctf_archive *ctfi_archive;
505 ctf_dynhash_t *ctfi_dicts; /* Dicts we have opened and cached. */
506 ctf_dict_t *ctfi_crossdict_cache; /* Cross-dict caching. */
507 ctf_dict_t **ctfi_symdicts; /* Array of index -> ctf_dict_t *. */
508 ctf_dynhash_t *ctfi_symnamedicts; /* Hash of name -> ctf_dict_t *. */
509 ctf_sect_t ctfi_symsect;
510 int ctfi_symsect_little_endian; /* -1 for unknown / do not set. */
511 ctf_sect_t ctfi_strsect;
512 int ctfi_free_symsect;
513 int ctfi_free_strsect;
514 void *ctfi_data;
515 bfd *ctfi_abfd; /* Optional source of section data. */
516 void (*ctfi_bfd_close) (struct ctf_archive_internal *);
517};
518
519/* Iterator state for the *_next() functions. */
520
521/* A single hash key/value pair. */
522typedef struct ctf_next_hkv
523{
524 void *hkv_key;
525 void *hkv_value;
526} ctf_next_hkv_t;
527
528struct ctf_next
529{
530 void (*ctn_iter_fun) (void);
531 ctf_id_t ctn_type;
532 ssize_t ctn_size;
533 ssize_t ctn_increment;
534 const ctf_type_t *ctn_tp;
535 uint32_t ctn_n;
536
537 /* Some iterators contain other iterators, in addition to their other
538 state. */
539 ctf_next_t *ctn_next;
540
541 /* We can save space on this side of things by noting that a dictionary is
542 either dynamic or not, as a whole, and a given iterator can only iterate
543 over one kind of thing at once: so we can overlap the DTD and non-DTD
544 members, and the structure, variable and enum members, etc. */
545 union
546 {
547 unsigned char *ctn_vlen;
548 const ctf_enum_t *ctn_en;
549 const ctf_dvdef_t *ctn_dvd;
550 ctf_next_hkv_t *ctn_sorted_hkv;
551 void **ctn_hash_slot;
552 } u;
553
554 /* This union is of various sorts of dict we can iterate over:
555 currently dictionaries and archives, dynhashes, and dynsets. */
556 union
557 {
558 const ctf_dict_t *ctn_fp;
559 const ctf_archive_t *ctn_arc;
560 const ctf_dynhash_t *ctn_h;
561 const ctf_dynset_t *ctn_s;
562 } cu;
563};
564
565/* Return x rounded up to an alignment boundary.
566 eg, P2ROUNDUP(0x1234, 0x100) == 0x1300 (0x13*align)
567 eg, P2ROUNDUP(0x5600, 0x100) == 0x5600 (0x56*align) */
568#define P2ROUNDUP(x, align) (-(-(x) & -(align)))
569
570/* * If an offs is not aligned already then round it up and align it. */
571#define LCTF_ALIGN_OFFS(offs, align) ((offs + (align - 1)) & ~(align - 1))
572
573#define LCTF_TYPE_ISPARENT(fp, id) ((id) <= fp->ctf_parmax)
574#define LCTF_TYPE_ISCHILD(fp, id) ((id) > fp->ctf_parmax)
575#define LCTF_TYPE_TO_INDEX(fp, id) ((id) & (fp->ctf_parmax))
576#define LCTF_INDEX_TO_TYPE(fp, id, child) (child ? ((id) | (fp->ctf_parmax+1)) : \
577 (id))
578
579#define LCTF_INDEX_TO_TYPEPTR(fp, i) \
580 ((i > fp->ctf_stypes) ? \
581 &(ctf_dtd_lookup (fp, LCTF_INDEX_TO_TYPE \
582 (fp, i, fp->ctf_flags & LCTF_CHILD))->dtd_data) : \
583 (ctf_type_t *)((uintptr_t)(fp)->ctf_buf + (fp)->ctf_txlate[(i)]))
584
585#define LCTF_INFO_KIND(fp, info) ((fp)->ctf_dictops->ctfo_get_kind(info))
586#define LCTF_INFO_ISROOT(fp, info) ((fp)->ctf_dictops->ctfo_get_root(info))
587#define LCTF_INFO_VLEN(fp, info) ((fp)->ctf_dictops->ctfo_get_vlen(info))
588#define LCTF_VBYTES(fp, kind, size, vlen) \
589 ((fp)->ctf_dictops->ctfo_get_vbytes(fp, kind, size, vlen))
590
591#define LCTF_CHILD 0x0001 /* CTF dict is a child. */
592#define LCTF_DIRTY 0x0002 /* CTF dict has been modified. */
593#define LCTF_LINKING 0x0004 /* CTF link is underway: respect ctf_link_flags. */
594
595extern ctf_dynhash_t *ctf_name_table (ctf_dict_t *, int);
596extern const ctf_type_t *ctf_lookup_by_id (ctf_dict_t **, ctf_id_t);
597extern ctf_id_t ctf_lookup_variable_here (ctf_dict_t *fp, const char *name);
598extern ctf_id_t ctf_lookup_by_sym_or_name (ctf_dict_t *, unsigned long symidx,
599 const char *symname, int try_parent,
600 int is_function);
601extern ctf_id_t ctf_lookup_by_rawname (ctf_dict_t *, int, const char *);
602extern void ctf_set_ctl_hashes (ctf_dict_t *);
603extern ctf_id_t ctf_symbol_next_static (ctf_dict_t *, ctf_next_t **,
604 const char **, int);
605
606extern int ctf_symtab_skippable (ctf_link_sym_t *sym);
607extern int ctf_add_funcobjt_sym (ctf_dict_t *, int is_function,
608 const char *, ctf_id_t);
609
610extern ctf_dict_t *ctf_get_dict (ctf_dict_t *fp, ctf_id_t type);
611
612typedef unsigned int (*ctf_hash_fun) (const void *ptr);
613extern unsigned int ctf_hash_integer (const void *ptr);
614extern unsigned int ctf_hash_string (const void *ptr);
615extern unsigned int ctf_hash_type_key (const void *ptr);
616extern unsigned int ctf_hash_type_id_key (const void *ptr);
617
618typedef int (*ctf_hash_eq_fun) (const void *, const void *);
619extern int ctf_hash_eq_integer (const void *, const void *);
620extern int ctf_hash_eq_string (const void *, const void *);
621extern int ctf_hash_eq_type_key (const void *, const void *);
622extern int ctf_hash_eq_type_id_key (const void *, const void *);
623
624typedef void (*ctf_hash_free_fun) (void *);
625
626typedef void (*ctf_hash_iter_f) (void *key, void *value, void *arg);
627typedef int (*ctf_hash_iter_remove_f) (void *key, void *value, void *arg);
628typedef int (*ctf_hash_iter_find_f) (void *key, void *value, void *arg);
629typedef int (*ctf_hash_sort_f) (const ctf_next_hkv_t *, const ctf_next_hkv_t *,
630 void *arg);
631
632extern ctf_dynhash_t *ctf_dynhash_create (ctf_hash_fun, ctf_hash_eq_fun,
633 ctf_hash_free_fun, ctf_hash_free_fun);
634extern ctf_dynhash_t *ctf_dynhash_create_sized (unsigned long, ctf_hash_fun,
635 ctf_hash_eq_fun,
636 ctf_hash_free_fun,
637 ctf_hash_free_fun);
638
639extern int ctf_dynhash_insert (ctf_dynhash_t *, void *, void *);
640extern void ctf_dynhash_remove (ctf_dynhash_t *, const void *);
641extern size_t ctf_dynhash_elements (ctf_dynhash_t *);
642extern void ctf_dynhash_empty (ctf_dynhash_t *);
643extern int ctf_dynhash_insert_type (ctf_dict_t *, ctf_dynhash_t *, uint32_t, uint32_t);
644extern ctf_id_t ctf_dynhash_lookup_type (ctf_dynhash_t *, const char *);
645extern void *ctf_dynhash_lookup (ctf_dynhash_t *, const void *);
646extern int ctf_dynhash_lookup_kv (ctf_dynhash_t *, const void *key,
647 const void **orig_key, void **value);
648extern void ctf_dynhash_destroy (ctf_dynhash_t *);
649extern void ctf_dynhash_iter (ctf_dynhash_t *, ctf_hash_iter_f, void *);
650extern void ctf_dynhash_iter_remove (ctf_dynhash_t *, ctf_hash_iter_remove_f,
651 void *);
652extern void *ctf_dynhash_iter_find (ctf_dynhash_t *, ctf_hash_iter_find_f,
653 void *);
654extern int ctf_dynhash_sort_by_name (const ctf_next_hkv_t *,
655 const ctf_next_hkv_t *,
656 void * _libctf_unused_);
657extern int ctf_dynhash_next (ctf_dynhash_t *, ctf_next_t **,
658 void **key, void **value);
659extern int ctf_dynhash_next_sorted (ctf_dynhash_t *, ctf_next_t **,
660 void **key, void **value, ctf_hash_sort_f,
661 void *);
662
663extern ctf_dynset_t *ctf_dynset_create (htab_hash, htab_eq, ctf_hash_free_fun);
664extern int ctf_dynset_insert (ctf_dynset_t *, void *);
665extern void ctf_dynset_remove (ctf_dynset_t *, const void *);
666extern void ctf_dynset_destroy (ctf_dynset_t *);
667extern void *ctf_dynset_lookup (ctf_dynset_t *, const void *);
668extern size_t ctf_dynset_elements (ctf_dynset_t *);
669extern int ctf_dynset_exists (ctf_dynset_t *, const void *key,
670 const void **orig_key);
671extern int ctf_dynset_next (ctf_dynset_t *, ctf_next_t **, void **key);
672extern void *ctf_dynset_lookup_any (ctf_dynset_t *);
673
674extern void ctf_sha1_init (ctf_sha1_t *);
675extern void ctf_sha1_add (ctf_sha1_t *, const void *, size_t);
676extern char *ctf_sha1_fini (ctf_sha1_t *, char *);
677
678#define ctf_list_prev(elem) ((void *)(((ctf_list_t *)(elem))->l_prev))
679#define ctf_list_next(elem) ((void *)(((ctf_list_t *)(elem))->l_next))
680
681extern void ctf_list_append (ctf_list_t *, void *);
682extern void ctf_list_prepend (ctf_list_t *, void *);
683extern void ctf_list_delete (ctf_list_t *, void *);
684extern void ctf_list_splice (ctf_list_t *, ctf_list_t *);
685extern int ctf_list_empty_p (ctf_list_t *lp);
686
687extern int ctf_dtd_insert (ctf_dict_t *, ctf_dtdef_t *, int flag, int kind);
688extern void ctf_dtd_delete (ctf_dict_t *, ctf_dtdef_t *);
689extern ctf_dtdef_t *ctf_dtd_lookup (const ctf_dict_t *, ctf_id_t);
690extern ctf_dtdef_t *ctf_dynamic_type (const ctf_dict_t *, ctf_id_t);
691
692extern int ctf_dvd_insert (ctf_dict_t *, ctf_dvdef_t *);
693extern void ctf_dvd_delete (ctf_dict_t *, ctf_dvdef_t *);
694extern ctf_dvdef_t *ctf_dvd_lookup (const ctf_dict_t *, const char *);
695
696extern ctf_id_t ctf_add_encoded (ctf_dict_t *, uint32_t, const char *,
697 const ctf_encoding_t *, uint32_t kind);
698extern ctf_id_t ctf_add_reftype (ctf_dict_t *, uint32_t, ctf_id_t,
699 uint32_t kind);
700extern int ctf_add_variable_forced (ctf_dict_t *, const char *, ctf_id_t);
701extern int ctf_add_funcobjt_sym_forced (ctf_dict_t *, int is_function,
702 const char *, ctf_id_t);
703
704extern int ctf_dedup_atoms_init (ctf_dict_t *);
705extern int ctf_dedup (ctf_dict_t *, ctf_dict_t **, uint32_t ninputs,
706 uint32_t *parents, int cu_mapped);
707extern void ctf_dedup_fini (ctf_dict_t *, ctf_dict_t **, uint32_t);
708extern ctf_dict_t **ctf_dedup_emit (ctf_dict_t *, ctf_dict_t **,
709 uint32_t ninputs, uint32_t *parents,
710 uint32_t *noutputs, int cu_mapped);
711extern ctf_id_t ctf_dedup_type_mapping (ctf_dict_t *fp, ctf_dict_t *src_fp,
712 ctf_id_t src_type);
713
714extern void ctf_decl_init (ctf_decl_t *);
715extern void ctf_decl_fini (ctf_decl_t *);
716extern void ctf_decl_push (ctf_decl_t *, ctf_dict_t *, ctf_id_t);
717
718_libctf_printflike_ (2, 3)
719extern void ctf_decl_sprintf (ctf_decl_t *, const char *, ...);
720extern char *ctf_decl_buf (ctf_decl_t *cd);
721
722extern const char *ctf_strptr (ctf_dict_t *, uint32_t);
723extern const char *ctf_strraw (ctf_dict_t *, uint32_t);
724extern const char *ctf_strraw_explicit (ctf_dict_t *, uint32_t,
725 ctf_strs_t *);
726extern const char *ctf_strptr_validate (ctf_dict_t *, uint32_t);
727extern int ctf_str_create_atoms (ctf_dict_t *);
728extern void ctf_str_free_atoms (ctf_dict_t *);
729extern uint32_t ctf_str_add (ctf_dict_t *, const char *);
730extern uint32_t ctf_str_add_ref (ctf_dict_t *, const char *, uint32_t *ref);
731extern uint32_t ctf_str_add_pending (ctf_dict_t *, const char *, uint32_t *);
732extern int ctf_str_move_pending (ctf_dict_t *, uint32_t *, ptrdiff_t);
733extern int ctf_str_add_external (ctf_dict_t *, const char *, uint32_t offset);
734extern void ctf_str_remove_ref (ctf_dict_t *, const char *, uint32_t *ref);
735extern void ctf_str_rollback (ctf_dict_t *, ctf_snapshot_id_t);
736extern void ctf_str_purge_refs (ctf_dict_t *);
737extern ctf_strs_writable_t ctf_str_write_strtab (ctf_dict_t *);
738
739extern struct ctf_archive_internal *
740ctf_new_archive_internal (int is_archive, int unmap_on_close,
741 struct ctf_archive *, ctf_dict_t *,
742 const ctf_sect_t *symsect,
743 const ctf_sect_t *strsect, int *errp);
744extern struct ctf_archive *ctf_arc_open_internal (const char *, int *);
745extern void ctf_arc_close_internal (struct ctf_archive *);
746extern const ctf_preamble_t *ctf_arc_bufpreamble (const ctf_sect_t *);
747extern void *ctf_set_open_errno (int *, int);
748extern void ctf_flip_header (ctf_header_t *);
749extern int ctf_flip (ctf_dict_t *, ctf_header_t *, unsigned char *, int);
750
751extern ctf_dict_t *ctf_simple_open_internal (const char *, size_t, const char *,
752 size_t, size_t,
753 const char *, size_t,
754 ctf_dynhash_t *, int *);
755extern ctf_dict_t *ctf_bufopen_internal (const ctf_sect_t *, const ctf_sect_t *,
756 const ctf_sect_t *, ctf_dynhash_t *,
757 int *);
758extern int ctf_import_unref (ctf_dict_t *fp, ctf_dict_t *pfp);
759extern int ctf_serialize (ctf_dict_t *);
760
761_libctf_malloc_
762extern void *ctf_mmap (size_t length, size_t offset, int fd);
763extern void ctf_munmap (void *, size_t);
764extern ssize_t ctf_pread (int fd, void *buf, ssize_t count, off_t offset);
765
766extern void *ctf_realloc (ctf_dict_t *, void *, size_t);
767extern char *ctf_str_append (char *, const char *);
768extern char *ctf_str_append_noerr (char *, const char *);
769
770extern ctf_id_t ctf_type_resolve_unsliced (ctf_dict_t *, ctf_id_t);
771extern int ctf_type_kind_unsliced (ctf_dict_t *, ctf_id_t);
772
773_libctf_printflike_ (1, 2)
774extern void ctf_dprintf (const char *, ...);
775extern void libctf_init_debug (void);
776
777_libctf_printflike_ (4, 5)
778extern void ctf_err_warn (ctf_dict_t *, int is_warning, int err,
779 const char *, ...);
780extern void ctf_err_warn_to_open (ctf_dict_t *);
781extern void ctf_assert_fail_internal (ctf_dict_t *, const char *,
782 size_t, const char *);
783extern const char *ctf_link_input_name (ctf_dict_t *);
784
785extern ctf_link_sym_t *ctf_elf32_to_link_sym (ctf_dict_t *fp, ctf_link_sym_t *dst,
786 const Elf32_Sym *src, uint32_t symidx);
787extern ctf_link_sym_t *ctf_elf64_to_link_sym (ctf_dict_t *fp, ctf_link_sym_t *dst,
788 const Elf64_Sym *src, uint32_t symidx);
789
790/* Variables, all underscore-prepended. */
791
792extern const char _CTF_SECTION[]; /* name of CTF ELF section */
793extern const char _CTF_NULLSTR[]; /* empty string */
794
795extern int _libctf_version; /* library client version */
796extern int _libctf_debug; /* debugging messages enabled */
797
798#include "ctf-inlines.h"
799
800#ifdef __cplusplus
801}
802#endif
803
804#endif /* _CTF_IMPL_H */