xref: /netbsd-src/external/gpl3/gdb/dist/libctf/ctf-link.c (revision 835080d5e678e165a8c64b1ec4e616adde88537c)
1 /* CTF linking.
2    Copyright (C) 2019-2022 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 #include <ctf-impl.h>
21 #include <string.h>
22 
23 #if defined (PIC)
24 #pragma weak ctf_open
25 #endif
26 
27 /* CTF linking consists of adding CTF archives full of content to be merged into
28    this one to the current file (which must be writable) by calling
29    ctf_link_add_ctf.  Once this is done, a call to ctf_link will merge the type
30    tables together, generating new CTF files as needed, with this one as a
31    parent, to contain types from the inputs which conflict.  ctf_link_add_strtab
32    takes a callback which provides string/offset pairs to be added to the
33    external symbol table and deduplicated from all CTF string tables in the
34    output link; ctf_link_shuffle_syms takes a callback which provides symtab
35    entries in ascending order, and shuffles the function and data sections to
36    match; and ctf_link_write emits a CTF file (if there are no conflicts
37    requiring per-compilation-unit sub-CTF files) or CTF archives (otherwise) and
38    returns it, suitable for addition in the .ctf section of the output.  */
39 
40 /* Return the name of the compilation unit this CTF dict or its parent applies
41    to, or a non-null string otherwise: prefer the parent.  Used in debugging
42    output.  Sometimes used for outputs too.  */
43 const char *
44 ctf_link_input_name (ctf_dict_t *fp)
45 {
46   if (fp->ctf_parent && fp->ctf_parent->ctf_cuname)
47     return fp->ctf_parent->ctf_cuname;
48   else if (fp->ctf_cuname)
49     return fp->ctf_cuname;
50   else
51     return "(unnamed)";
52 }
53 
54 /* Return the cuname of a dict, or the string "unnamed-CU" if none.  */
55 
56 static const char *
57 ctf_unnamed_cuname (ctf_dict_t *fp)
58 {
59   const char *cuname = ctf_cuname (fp);
60 
61   if (!cuname)
62     cuname = "unnamed-CU";
63 
64   return cuname;
65 }
66 
67 /* The linker inputs look like this.  clin_fp is used for short-circuited
68    CU-mapped links that can entirely avoid the first link phase in some
69    situations in favour of just passing on the contained ctf_dict_t: it is
70    always the sole ctf_dict_t inside the corresponding clin_arc.  If set, it
71    gets assigned directly to the final link inputs and freed from there, so it
72    never gets explicitly freed in the ctf_link_input.  */
73 typedef struct ctf_link_input
74 {
75   char *clin_filename;
76   ctf_archive_t *clin_arc;
77   ctf_dict_t *clin_fp;
78   int n;
79 } ctf_link_input_t;
80 
81 static void
82 ctf_link_input_close (void *input)
83 {
84   ctf_link_input_t *i = (ctf_link_input_t *) input;
85   if (i->clin_arc)
86     ctf_arc_close (i->clin_arc);
87   free (i->clin_filename);
88   free (i);
89 }
90 
91 /* Like ctf_link_add_ctf, below, but with no error-checking, so it can be called
92    in the middle of an ongoing link.  */
93 static int
94 ctf_link_add_ctf_internal (ctf_dict_t *fp, ctf_archive_t *ctf,
95 			   ctf_dict_t *fp_input, const char *name)
96 {
97   int existing = 0;
98   ctf_link_input_t *input;
99   char *filename, *keyname;
100 
101   /* Existing: return it, or (if a different dict with the same name
102      is already there) make up a new unique name.  Always use the actual name
103      for the filename, because that needs to be ctf_open()ed.  */
104 
105   if ((input = ctf_dynhash_lookup (fp->ctf_link_inputs, name)) != NULL)
106     {
107       if ((fp_input != NULL && (input->clin_fp == fp_input))
108 	  || (ctf != NULL && (input->clin_arc == ctf)))
109 	return 0;
110       existing = 1;
111     }
112 
113   if ((filename = strdup (name)) == NULL)
114     goto oom;
115 
116   if ((input = calloc (1, sizeof (ctf_link_input_t))) == NULL)
117     goto oom1;
118 
119   input->clin_arc = ctf;
120   input->clin_fp = fp_input;
121   input->clin_filename = filename;
122   input->n = ctf_dynhash_elements (fp->ctf_link_inputs);
123 
124   if (existing)
125     {
126       if (asprintf (&keyname, "%s#%li", name, (long int)
127 		    ctf_dynhash_elements (fp->ctf_link_inputs)) < 0)
128 	goto oom2;
129     }
130   else if ((keyname = strdup (name)) == NULL)
131     goto oom2;
132 
133   if (ctf_dynhash_insert (fp->ctf_link_inputs, keyname, input) < 0)
134     goto oom3;
135 
136   return 0;
137 
138  oom3:
139   free (keyname);
140  oom2:
141   free (input);
142  oom1:
143   free (filename);
144  oom:
145   return ctf_set_errno (fp, ENOMEM);
146 }
147 
148 /* Add a file, memory buffer, or unopened file (by name) to a link.
149 
150    You can call this with:
151 
152     CTF and NAME: link the passed ctf_archive_t, with the given NAME.
153     NAME alone: open NAME as a CTF file when needed.
154     BUF and NAME: open the BUF (of length N) as CTF, with the given NAME.  (Not
155     yet implemented.)
156 
157     Passed in CTF args are owned by the dictionary and will be freed by it.
158     The BUF arg is *not* owned by the dictionary, and the user should not free
159     its referent until the link is done.
160 
161     The order of calls to this function influences the order of types in the
162     final link output, but otherwise is not important.
163 
164     Repeated additions of the same NAME have no effect; repeated additions of
165     different dicts with the same NAME add all the dicts with unique NAMEs
166     derived from NAME.
167 
168     Private for now, but may in time become public once support for BUF is
169     implemented.  */
170 
171 static int
172 ctf_link_add (ctf_dict_t *fp, ctf_archive_t *ctf, const char *name,
173 	      void *buf _libctf_unused_, size_t n _libctf_unused_)
174 {
175   if (buf)
176     return (ctf_set_errno (fp, ECTF_NOTYET));
177 
178   if (!((ctf && name && !buf)
179 	|| (name && !buf && !ctf)
180 	|| (buf && name && !ctf)))
181     return (ctf_set_errno (fp, EINVAL));
182 
183   /* We can only lazily open files if libctf.so is in use rather than
184      libctf-nobfd.so.  This is a little tricky: in shared libraries, we can use
185      a weak symbol so that -lctf -lctf-nobfd works, but in static libraries we
186      must distinguish between the two libraries explicitly.  */
187 
188 #if defined (PIC)
189   if (!buf && !ctf && name && !ctf_open)
190     return (ctf_set_errno (fp, ECTF_NEEDSBFD));
191 #elif NOBFD
192   if (!buf && !ctf && name)
193     return (ctf_set_errno (fp, ECTF_NEEDSBFD));
194 #endif
195 
196   if (fp->ctf_link_outputs)
197     return (ctf_set_errno (fp, ECTF_LINKADDEDLATE));
198   if (fp->ctf_link_inputs == NULL)
199     fp->ctf_link_inputs = ctf_dynhash_create (ctf_hash_string,
200 					      ctf_hash_eq_string, free,
201 					      ctf_link_input_close);
202 
203   if (fp->ctf_link_inputs == NULL)
204     return (ctf_set_errno (fp, ENOMEM));
205 
206   return ctf_link_add_ctf_internal (fp, ctf, NULL, name);
207 }
208 
209 /* Add an opened CTF archive or unopened file (by name) to a link.
210    If CTF is NULL and NAME is non-null, an unopened file is meant:
211    otherwise, the specified archive is assumed to have the given NAME.
212 
213     Passed in CTF args are owned by the dictionary and will be freed by it.
214 
215     The order of calls to this function influences the order of types in the
216     final link output, but otherwise is not important.  */
217 
218 int
219 ctf_link_add_ctf (ctf_dict_t *fp, ctf_archive_t *ctf, const char *name)
220 {
221   return ctf_link_add (fp, ctf, name, NULL, 0);
222 }
223 
224 /* Lazily open a CTF archive for linking, if not already open.
225 
226    Returns the number of files contained within the opened archive (0 for none),
227    or -1 on error, as usual.  */
228 static ssize_t
229 ctf_link_lazy_open (ctf_dict_t *fp, ctf_link_input_t *input)
230 {
231   size_t count;
232   int err;
233 
234   if (input->clin_arc)
235     return ctf_archive_count (input->clin_arc);
236 
237   if (input->clin_fp)
238     return 1;
239 
240   /* See ctf_link_add_ctf.  */
241 #if defined (PIC) || !NOBFD
242   input->clin_arc = ctf_open (input->clin_filename, NULL, &err);
243 #else
244   ctf_err_warn (fp, 0, ECTF_NEEDSBFD, _("cannot open %s lazily"),
245 		input->clin_filename);
246   ctf_set_errno (fp, ECTF_NEEDSBFD);
247   return -1;
248 #endif
249 
250   /* Having no CTF sections is not an error.  We just don't need to do
251      anything.  */
252 
253   if (!input->clin_arc)
254     {
255       if (err == ECTF_NOCTFDATA)
256 	return 0;
257 
258       ctf_err_warn (fp, 0, err, _("opening CTF %s failed"),
259 		    input->clin_filename);
260       ctf_set_errno (fp, err);
261       return -1;
262     }
263 
264   if ((count = ctf_archive_count (input->clin_arc)) == 0)
265     ctf_arc_close (input->clin_arc);
266 
267   return (ssize_t) count;
268 }
269 
270 /* Find a non-clashing unique name for a per-CU output dict, to prevent distinct
271    members corresponding to inputs with identical cunames from overwriting each
272    other.  The name should be something like NAME.  */
273 
274 static char *
275 ctf_new_per_cu_name (ctf_dict_t *fp, const char *name)
276 {
277   char *dynname;
278   long int i = 0;
279 
280   if ((dynname = strdup (name)) == NULL)
281     return NULL;
282 
283   while ((ctf_dynhash_lookup (fp->ctf_link_outputs, dynname)) != NULL)
284     {
285       free (dynname);
286       if (asprintf (&dynname, "%s#%li", name, i++) < 0)
287 	return NULL;
288     }
289 
290   return dynname;
291 }
292 
293 /* Return a per-CU output CTF dictionary suitable for the given INPUT or CU,
294    creating and interning it if need be.  */
295 
296 static ctf_dict_t *
297 ctf_create_per_cu (ctf_dict_t *fp, ctf_dict_t *input, const char *cu_name)
298 {
299   ctf_dict_t *cu_fp;
300   const char *ctf_name = NULL;
301   char *dynname = NULL;
302 
303   /* Already has a per-CU mapping?  Just return it.  */
304 
305   if (input && input->ctf_link_in_out)
306     return input->ctf_link_in_out;
307 
308   /* Check the mapping table and translate the per-CU name we use
309      accordingly.  */
310 
311   if (cu_name == NULL)
312     cu_name = ctf_unnamed_cuname (input);
313 
314   if (fp->ctf_link_in_cu_mapping)
315     {
316       if ((ctf_name = ctf_dynhash_lookup (fp->ctf_link_in_cu_mapping,
317 					  cu_name)) == NULL)
318 	ctf_name = cu_name;
319     }
320 
321   if (ctf_name == NULL)
322     ctf_name = cu_name;
323 
324   /* Look up the per-CU dict.  If we don't know of one, or it is for
325      a different input CU which just happens to have the same name,
326      create a new one.  */
327 
328   if ((cu_fp = ctf_dynhash_lookup (fp->ctf_link_outputs, ctf_name)) == NULL
329       || cu_fp->ctf_link_in_out != fp)
330     {
331       int err;
332 
333       if ((cu_fp = ctf_create (&err)) == NULL)
334 	{
335 	  ctf_err_warn (fp, 0, err, _("cannot create per-CU CTF archive for "
336 				      "input CU %s"), cu_name);
337 	  ctf_set_errno (fp, err);
338 	  return NULL;
339 	}
340 
341       ctf_import_unref (cu_fp, fp);
342 
343       if ((dynname = ctf_new_per_cu_name (fp, ctf_name)) == NULL)
344 	goto oom;
345 
346       ctf_cuname_set (cu_fp, cu_name);
347 
348       ctf_parent_name_set (cu_fp, _CTF_SECTION);
349       cu_fp->ctf_link_in_out = fp;
350       fp->ctf_link_in_out = cu_fp;
351 
352       if (ctf_dynhash_insert (fp->ctf_link_outputs, dynname, cu_fp) < 0)
353 	goto oom;
354     }
355   return cu_fp;
356 
357  oom:
358   free (dynname);
359   ctf_dict_close (cu_fp);
360   ctf_set_errno (fp, ENOMEM);
361   return NULL;
362 }
363 
364 /* Add a mapping directing that the CU named FROM should have its
365    conflicting/non-duplicate types (depending on link mode) go into a dict
366    named TO.  Many FROMs can share a TO.
367 
368    We forcibly add a dict named TO in every case, even though it may well
369    wind up empty, because clients that use this facility usually expect to find
370    every TO dict present, even if empty, and malfunction otherwise.  */
371 
372 int
373 ctf_link_add_cu_mapping (ctf_dict_t *fp, const char *from, const char *to)
374 {
375   int err;
376   char *f = NULL, *t = NULL;
377   ctf_dynhash_t *one_out;
378 
379   /* Mappings cannot be set up if per-CU output dicts already exist.  */
380   if (fp->ctf_link_outputs && ctf_dynhash_elements (fp->ctf_link_outputs) != 0)
381       return (ctf_set_errno (fp, ECTF_LINKADDEDLATE));
382 
383   if (fp->ctf_link_in_cu_mapping == NULL)
384     fp->ctf_link_in_cu_mapping = ctf_dynhash_create (ctf_hash_string,
385 						     ctf_hash_eq_string, free,
386 						     free);
387   if (fp->ctf_link_in_cu_mapping == NULL)
388     goto oom;
389 
390   if (fp->ctf_link_out_cu_mapping == NULL)
391     fp->ctf_link_out_cu_mapping = ctf_dynhash_create (ctf_hash_string,
392 						      ctf_hash_eq_string, free,
393 						      (ctf_hash_free_fun)
394 						      ctf_dynhash_destroy);
395   if (fp->ctf_link_out_cu_mapping == NULL)
396     goto oom;
397 
398   f = strdup (from);
399   t = strdup (to);
400   if (!f || !t)
401     goto oom;
402 
403   /* Track both in a list from FROM to TO and in a list from TO to a list of
404      FROM.  The former is used to create TUs with the mapped-to name at need:
405      the latter is used in deduplicating links to pull in all input CUs
406      corresponding to a single output CU.  */
407 
408   if ((err = ctf_dynhash_insert (fp->ctf_link_in_cu_mapping, f, t)) < 0)
409     {
410       ctf_set_errno (fp, err);
411       goto oom_noerrno;
412     }
413 
414   /* f and t are now owned by the in_cu_mapping: reallocate them.  */
415   f = strdup (from);
416   t = strdup (to);
417   if (!f || !t)
418     goto oom;
419 
420   if ((one_out = ctf_dynhash_lookup (fp->ctf_link_out_cu_mapping, t)) == NULL)
421     {
422       if ((one_out = ctf_dynhash_create (ctf_hash_string, ctf_hash_eq_string,
423 					 free, NULL)) == NULL)
424 	goto oom;
425       if ((err = ctf_dynhash_insert (fp->ctf_link_out_cu_mapping,
426 				     t, one_out)) < 0)
427 	{
428 	  ctf_dynhash_destroy (one_out);
429 	  ctf_set_errno (fp, err);
430 	  goto oom_noerrno;
431 	}
432     }
433   else
434     {
435       free (t);
436       t = NULL;
437     }
438 
439   if (ctf_dynhash_insert (one_out, f, NULL) < 0)
440     {
441       ctf_set_errno (fp, err);
442       goto oom_noerrno;
443     }
444 
445   return 0;
446 
447  oom:
448   ctf_set_errno (fp, errno);
449  oom_noerrno:
450   free (f);
451   free (t);
452   return -1;
453 }
454 
455 /* Set a function which is called to transform the names of archive members.
456    This is useful for applying regular transformations to many names, where
457    ctf_link_add_cu_mapping applies arbitrarily irregular changes to single
458    names.  The member name changer is applied at ctf_link_write time, so it
459    cannot conflate multiple CUs into one the way ctf_link_add_cu_mapping can.
460    The changer function accepts a name and should return a new
461    dynamically-allocated name, or NULL if the name should be left unchanged.  */
462 void
463 ctf_link_set_memb_name_changer (ctf_dict_t *fp,
464 				ctf_link_memb_name_changer_f *changer,
465 				void *arg)
466 {
467   fp->ctf_link_memb_name_changer = changer;
468   fp->ctf_link_memb_name_changer_arg = arg;
469 }
470 
471 /* Set a function which is used to filter out unwanted variables from the link.  */
472 int
473 ctf_link_set_variable_filter (ctf_dict_t *fp, ctf_link_variable_filter_f *filter,
474 			      void *arg)
475 {
476   fp->ctf_link_variable_filter = filter;
477   fp->ctf_link_variable_filter_arg = arg;
478   return 0;
479 }
480 
481 /* Check if we can safely add a variable with the given type to this dict.  */
482 
483 static int
484 check_variable (const char *name, ctf_dict_t *fp, ctf_id_t type,
485 		ctf_dvdef_t **out_dvd)
486 {
487   ctf_dvdef_t *dvd;
488 
489   dvd = ctf_dynhash_lookup (fp->ctf_dvhash, name);
490   *out_dvd = dvd;
491   if (!dvd)
492     return 1;
493 
494   if (dvd->dvd_type != type)
495     {
496       /* Variable here.  Wrong type: cannot add.  Just skip it, because there is
497 	 no way to express this in CTF.  Don't even warn: this case is too
498 	 common.  (This might be the parent, in which case we'll try adding in
499 	 the child first, and only then give up.)  */
500       ctf_dprintf ("Inexpressible duplicate variable %s skipped.\n", name);
501     }
502 
503   return 0;				      /* Already exists.  */
504 }
505 
506 /* Link one variable named NAME of type TYPE found in IN_FP into FP.  */
507 
508 static int
509 ctf_link_one_variable (ctf_dict_t *fp, ctf_dict_t *in_fp, const char *name,
510 		       ctf_id_t type, int cu_mapped)
511 {
512   ctf_dict_t *per_cu_out_fp;
513   ctf_id_t dst_type = 0;
514   ctf_dvdef_t *dvd;
515 
516   /* See if this variable is filtered out.  */
517 
518   if (fp->ctf_link_variable_filter)
519     {
520       void *farg = fp->ctf_link_variable_filter_arg;
521       if (fp->ctf_link_variable_filter (in_fp, name, type, farg))
522 	return 0;
523     }
524 
525   /* If this type is mapped to a type in the parent dict, we want to try to add
526      to that first: if it reports a duplicate, or if the type is in a child
527      already, add straight to the child.  */
528 
529   if ((dst_type = ctf_dedup_type_mapping (fp, in_fp, type)) == CTF_ERR)
530     return -1;					/* errno is set for us.  */
531 
532   if (dst_type != 0)
533     {
534       if (!ctf_assert (fp, ctf_type_isparent (fp, dst_type)))
535 	return -1;				/* errno is set for us.  */
536 
537       if (check_variable (name, fp, dst_type, &dvd))
538 	{
539 	  /* No variable here: we can add it.  */
540 	  if (ctf_add_variable (fp, name, dst_type) < 0)
541 	    return -1; 				/* errno is set for us.  */
542 	  return 0;
543 	}
544 
545       /* Already present?  Nothing to do.  */
546       if (dvd && dvd->dvd_type == dst_type)
547 	return 0;
548     }
549 
550   /* Can't add to the parent due to a name clash, or because it references a
551      type only present in the child.  Try adding to the child, creating if need
552      be.  If we can't do that, skip it.  Don't add to a child if we're doing a
553      CU-mapped link, since that has only one output.  */
554 
555   if (cu_mapped)
556     {
557       ctf_dprintf ("Variable %s in input file %s depends on a type %lx hidden "
558 		   "due to conflicts: skipped.\n", name,
559 		   ctf_unnamed_cuname (in_fp), type);
560       return 0;
561     }
562 
563   if ((per_cu_out_fp = ctf_create_per_cu (fp, in_fp, NULL)) == NULL)
564     return -1;					/* errno is set for us.  */
565 
566   /* If the type was not found, check for it in the child too.  */
567   if (dst_type == 0)
568     {
569       if ((dst_type = ctf_dedup_type_mapping (per_cu_out_fp,
570 					      in_fp, type)) == CTF_ERR)
571 	return -1;				/* errno is set for us.   */
572 
573       if (dst_type == 0)
574 	{
575 	  ctf_err_warn (fp, 1, 0, _("type %lx for variable %s in input file %s "
576 				    "not found: skipped"), type, name,
577 			ctf_unnamed_cuname (in_fp));
578 	  /* Do not terminate the link: just skip the variable.  */
579 	  return 0;
580 	}
581     }
582 
583   if (check_variable (name, per_cu_out_fp, dst_type, &dvd))
584     if (ctf_add_variable (per_cu_out_fp, name, dst_type) < 0)
585       return (ctf_set_errno (fp, ctf_errno (per_cu_out_fp)));
586   return 0;
587 }
588 
589 typedef struct link_sort_inputs_cb_arg
590 {
591   int is_cu_mapped;
592   ctf_dict_t *fp;
593 } link_sort_inputs_cb_arg_t;
594 
595 /* Sort the inputs by N (the link order).  For CU-mapped links, this is a
596    mapping of input to output name, not a mapping of input name to input
597    ctf_link_input_t: compensate accordingly.  */
598 static int
599 ctf_link_sort_inputs (const ctf_next_hkv_t *one, const ctf_next_hkv_t *two,
600 		      void *arg)
601 {
602   ctf_link_input_t *input_1;
603   ctf_link_input_t *input_2;
604   link_sort_inputs_cb_arg_t *cu_mapped = (link_sort_inputs_cb_arg_t *) arg;
605 
606   if (!cu_mapped || !cu_mapped->is_cu_mapped)
607     {
608       input_1 = (ctf_link_input_t *) one->hkv_value;
609       input_2 = (ctf_link_input_t *) two->hkv_value;
610     }
611   else
612     {
613       const char *name_1 = (const char *) one->hkv_key;
614       const char *name_2 = (const char *) two->hkv_key;
615 
616       input_1 = ctf_dynhash_lookup (cu_mapped->fp->ctf_link_inputs, name_1);
617       input_2 = ctf_dynhash_lookup (cu_mapped->fp->ctf_link_inputs, name_2);
618 
619       /* There is no guarantee that CU-mappings actually have corresponding
620 	 inputs: the relative ordering in that case is unimportant.  */
621       if (!input_1)
622 	return -1;
623       if (!input_2)
624 	return 1;
625     }
626 
627   if (input_1->n < input_2->n)
628     return -1;
629   else if (input_1->n > input_2->n)
630     return 1;
631   else
632     return 0;
633 }
634 
635 /* Count the number of input dicts in the ctf_link_inputs, or that subset of the
636    ctf_link_inputs given by CU_NAMES if set.  Return the number of input dicts,
637    and optionally the name and ctf_link_input_t of the single input archive if
638    only one exists (no matter how many dicts it contains).  */
639 static ssize_t
640 ctf_link_deduplicating_count_inputs (ctf_dict_t *fp, ctf_dynhash_t *cu_names,
641 				     ctf_link_input_t **only_one_input)
642 {
643   ctf_dynhash_t *inputs = fp->ctf_link_inputs;
644   ctf_next_t *i = NULL;
645   void *name, *input;
646   ctf_link_input_t *one_input = NULL;
647   const char *one_name = NULL;
648   ssize_t count = 0, narcs = 0;
649   int err;
650 
651   if (cu_names)
652     inputs = cu_names;
653 
654   while ((err = ctf_dynhash_next (inputs, &i, &name, &input)) == 0)
655     {
656       ssize_t one_count;
657 
658       one_name = (const char *) name;
659       /* If we are processing CU names, get the real input.  */
660       if (cu_names)
661 	one_input = ctf_dynhash_lookup (fp->ctf_link_inputs, one_name);
662       else
663 	one_input = (ctf_link_input_t *) input;
664 
665       if (!one_input)
666 	continue;
667 
668       one_count = ctf_link_lazy_open (fp, one_input);
669 
670       if (one_count < 0)
671 	{
672 	  ctf_next_destroy (i);
673 	  return -1;				/* errno is set for us.  */
674 	}
675 
676       count += one_count;
677       narcs++;
678     }
679   if (err != ECTF_NEXT_END)
680     {
681       ctf_err_warn (fp, 0, err, _("iteration error counting deduplicating "
682 				  "CTF link inputs"));
683       ctf_set_errno (fp, err);
684       return -1;
685     }
686 
687   if (!count)
688     return 0;
689 
690   if (narcs == 1)
691     {
692       if (only_one_input)
693 	*only_one_input = one_input;
694     }
695   else if (only_one_input)
696     *only_one_input = NULL;
697 
698   return count;
699 }
700 
701 /* Allocate and populate an inputs array big enough for a given set of inputs:
702    either a specific set of CU names (those from that set found in the
703    ctf_link_inputs), or the entire ctf_link_inputs (if cu_names is not set).
704    The number of inputs (from ctf_link_deduplicating_count_inputs, above) is
705    passed in NINPUTS: an array of uint32_t containing parent pointers
706    (corresponding to those members of the inputs that have parents) is allocated
707    and returned in PARENTS.
708 
709    The inputs are *archives*, not files: the archive can have multiple members
710    if it is the result of a previous incremental link.  We want to add every one
711    in turn, including the shared parent.  (The dedup machinery knows that a type
712    used by a single dictionary and its parent should not be shared in
713    CTF_LINK_SHARE_DUPLICATED mode.)
714 
715    If no inputs exist that correspond to these CUs, return NULL with the errno
716    set to ECTF_NOCTFDATA.  */
717 static ctf_dict_t **
718 ctf_link_deduplicating_open_inputs (ctf_dict_t *fp, ctf_dynhash_t *cu_names,
719 				    ssize_t ninputs, uint32_t **parents)
720 {
721   ctf_dynhash_t *inputs = fp->ctf_link_inputs;
722   ctf_next_t *i = NULL;
723   void *name, *input;
724   link_sort_inputs_cb_arg_t sort_arg;
725   ctf_dict_t **dedup_inputs = NULL;
726   ctf_dict_t **walk;
727   uint32_t *parents_ = NULL;
728   int err;
729 
730   if (cu_names)
731     inputs = cu_names;
732 
733   if ((dedup_inputs = calloc (ninputs, sizeof (ctf_dict_t *))) == NULL)
734     goto oom;
735 
736   if ((parents_ = calloc (ninputs, sizeof (uint32_t))) == NULL)
737     goto oom;
738 
739   walk = dedup_inputs;
740 
741   /* Counting done: push every input into the array, in the order they were
742      passed to ctf_link_add_ctf (and ultimately ld).  */
743 
744   sort_arg.is_cu_mapped = (cu_names != NULL);
745   sort_arg.fp = fp;
746 
747   while ((err = ctf_dynhash_next_sorted (inputs, &i, &name, &input,
748 					 ctf_link_sort_inputs, &sort_arg)) == 0)
749     {
750       const char *one_name = (const char *) name;
751       ctf_link_input_t *one_input;
752       ctf_dict_t *one_fp;
753       ctf_dict_t *parent_fp = NULL;
754       uint32_t parent_i;
755       ctf_next_t *j = NULL;
756 
757       /* If we are processing CU names, get the real input.  All the inputs
758 	 will have been opened, if they contained any CTF at all.  */
759       if (cu_names)
760 	one_input = ctf_dynhash_lookup (fp->ctf_link_inputs, one_name);
761       else
762 	one_input = (ctf_link_input_t *) input;
763 
764       if (!one_input || (!one_input->clin_arc && !one_input->clin_fp))
765 	continue;
766 
767       /* Short-circuit: if clin_fp is set, just use it.   */
768       if (one_input->clin_fp)
769 	{
770 	  parents_[walk - dedup_inputs] = walk - dedup_inputs;
771 	  *walk = one_input->clin_fp;
772 	  walk++;
773 	  continue;
774 	}
775 
776       /* Get and insert the parent archive (if any), if this archive has
777 	 multiple members.  We assume, as elsewhere, that the parent is named
778 	 _CTF_SECTION.  */
779 
780       if ((parent_fp = ctf_dict_open (one_input->clin_arc, _CTF_SECTION,
781 				      &err)) == NULL)
782 	{
783 	  if (err != ECTF_NOMEMBNAM)
784 	    {
785 	      ctf_next_destroy (i);
786 	      ctf_set_errno (fp, err);
787 	      goto err;
788 	    }
789 	}
790       else
791 	{
792 	  *walk = parent_fp;
793 	  parent_i = walk - dedup_inputs;
794 	  walk++;
795 	}
796 
797       /* We disregard the input archive name: either it is the parent (which we
798 	 already have), or we want to put everything into one TU sharing the
799 	 cuname anyway (if this is a CU-mapped link), or this is the final phase
800 	 of a relink with CU-mapping off (i.e. ld -r) in which case the cuname
801 	 is correctly set regardless.  */
802       while ((one_fp = ctf_archive_next (one_input->clin_arc, &j, NULL,
803 					 1, &err)) != NULL)
804 	{
805 	  if (one_fp->ctf_flags & LCTF_CHILD)
806 	    {
807 	      /* The contents of the parents array for elements not
808 		 corresponding to children is undefined.  If there is no parent
809 		 (itself a sign of a likely linker bug or corrupt input), we set
810 		 it to itself.  */
811 
812 	      ctf_import (one_fp, parent_fp);
813 	      if (parent_fp)
814 		parents_[walk - dedup_inputs] = parent_i;
815 	      else
816 		parents_[walk - dedup_inputs] = walk - dedup_inputs;
817 	    }
818 	  *walk = one_fp;
819 	  walk++;
820 	}
821       if (err != ECTF_NEXT_END)
822 	{
823 	  ctf_next_destroy (i);
824 	  goto iterr;
825 	}
826     }
827   if (err != ECTF_NEXT_END)
828     goto iterr;
829 
830   *parents = parents_;
831 
832   return dedup_inputs;
833 
834  oom:
835   err = ENOMEM;
836 
837  iterr:
838   ctf_set_errno (fp, err);
839 
840  err:
841   free (dedup_inputs);
842   free (parents_);
843   ctf_err_warn (fp, 0, 0, _("error in deduplicating CTF link "
844 			    "input allocation"));
845   return NULL;
846 }
847 
848 /* Close INPUTS that have already been linked, first the passed array, and then
849    that subset of the ctf_link_inputs archives they came from cited by the
850    CU_NAMES.  If CU_NAMES is not specified, close all the ctf_link_inputs in one
851    go, leaving it empty.  */
852 static int
853 ctf_link_deduplicating_close_inputs (ctf_dict_t *fp, ctf_dynhash_t *cu_names,
854 				     ctf_dict_t **inputs, ssize_t ninputs)
855 {
856   ctf_next_t *it = NULL;
857   void *name;
858   int err;
859   ssize_t i;
860 
861   /* This is the inverse of ctf_link_deduplicating_open_inputs: so first, close
862      all the individual input dicts, opened by the archive iterator.  */
863   for (i = 0; i < ninputs; i++)
864     ctf_dict_close (inputs[i]);
865 
866   /* Now close the archives they are part of.  */
867   if (cu_names)
868     {
869       while ((err = ctf_dynhash_next (cu_names, &it, &name, NULL)) == 0)
870 	{
871 	  /* Remove the input from the linker inputs, if it exists, which also
872 	     closes it.  */
873 
874 	  ctf_dynhash_remove (fp->ctf_link_inputs, (const char *) name);
875 	}
876       if (err != ECTF_NEXT_END)
877 	{
878 	  ctf_err_warn (fp, 0, err, _("iteration error in deduplicating link "
879 				      "input freeing"));
880 	  ctf_set_errno (fp, err);
881 	}
882     }
883   else
884     ctf_dynhash_empty (fp->ctf_link_inputs);
885 
886   return 0;
887 }
888 
889 /* Do a deduplicating link of all variables in the inputs.
890 
891    Also, if we are not omitting the variable section, integrate all symbols from
892    the symtypetabs into the variable section too.  (Duplication with the
893    symtypetab section in the output will be eliminated at serialization time.)  */
894 
895 static int
896 ctf_link_deduplicating_variables (ctf_dict_t *fp, ctf_dict_t **inputs,
897 				  size_t ninputs, int cu_mapped)
898 {
899   size_t i;
900 
901   for (i = 0; i < ninputs; i++)
902     {
903       ctf_next_t *it = NULL;
904       ctf_id_t type;
905       const char *name;
906 
907       /* First the variables on the inputs.  */
908 
909       while ((type = ctf_variable_next (inputs[i], &it, &name)) != CTF_ERR)
910 	{
911 	  if (ctf_link_one_variable (fp, inputs[i], name, type, cu_mapped) < 0)
912 	    {
913 	      ctf_next_destroy (it);
914 	      return -1;			/* errno is set for us.  */
915 	    }
916 	}
917       if (ctf_errno (inputs[i]) != ECTF_NEXT_END)
918 	return ctf_set_errno (fp, ctf_errno (inputs[i]));
919 
920       /* Next the symbols.  We integrate data symbols even though the compiler
921 	 is currently doing the same, to allow the compiler to stop in
922 	 future.  */
923 
924       while ((type = ctf_symbol_next (inputs[i], &it, &name, 0)) != CTF_ERR)
925 	{
926 	  if (ctf_link_one_variable (fp, inputs[i], name, type, 1) < 0)
927 	    {
928 	      ctf_next_destroy (it);
929 	      return -1;			/* errno is set for us.  */
930 	    }
931 	}
932       if (ctf_errno (inputs[i]) != ECTF_NEXT_END)
933 	return ctf_set_errno (fp, ctf_errno (inputs[i]));
934 
935       /* Finally the function symbols.  */
936 
937       while ((type = ctf_symbol_next (inputs[i], &it, &name, 1)) != CTF_ERR)
938 	{
939 	  if (ctf_link_one_variable (fp, inputs[i], name, type, 1) < 0)
940 	    {
941 	      ctf_next_destroy (it);
942 	      return -1;			/* errno is set for us.  */
943 	    }
944 	}
945       if (ctf_errno (inputs[i]) != ECTF_NEXT_END)
946 	return ctf_set_errno (fp, ctf_errno (inputs[i]));
947     }
948   return 0;
949 }
950 
951 /* Check for symbol conflicts during linking.  Three possibilities: already
952    exists, conflicting, or nonexistent.  We don't have a dvd structure we can
953    use as a flag like check_variable does, so we use a tristate return
954    value instead: -1: conflicting; 1: nonexistent: 0: already exists.  */
955 
956 static int
957 check_sym (ctf_dict_t *fp, const char *name, ctf_id_t type, int functions)
958 {
959   ctf_dynhash_t *thishash = functions ? fp->ctf_funchash : fp->ctf_objthash;
960   ctf_dynhash_t *thathash = functions ? fp->ctf_objthash : fp->ctf_funchash;
961   void *value;
962 
963   /* Wrong type (function when object is wanted, etc).  */
964   if (ctf_dynhash_lookup_kv (thathash, name, NULL, NULL))
965     return -1;
966 
967   /* Not present at all yet.  */
968   if (!ctf_dynhash_lookup_kv (thishash, name, NULL, &value))
969     return 1;
970 
971   /* Already present.  */
972   if ((ctf_id_t) (uintptr_t) value == type)
973     return 0;
974 
975   /* Wrong type.  */
976   return -1;
977 }
978 
979 /* Do a deduplicating link of one symtypetab (function info or data object) in
980    one input dict.  */
981 
982 static int
983 ctf_link_deduplicating_one_symtypetab (ctf_dict_t *fp, ctf_dict_t *input,
984 				       int cu_mapped, int functions)
985 {
986   ctf_next_t *it = NULL;
987   const char *name;
988   ctf_id_t type;
989 
990   while ((type = ctf_symbol_next (input, &it, &name, functions)) != CTF_ERR)
991     {
992       ctf_id_t dst_type;
993       ctf_dict_t *per_cu_out_fp;
994       int sym;
995 
996       /* Look in the parent first.  */
997 
998       if ((dst_type = ctf_dedup_type_mapping (fp, input, type)) == CTF_ERR)
999 	return -1;				/* errno is set for us.  */
1000 
1001       if (dst_type != 0)
1002 	{
1003 	  if (!ctf_assert (fp, ctf_type_isparent (fp, dst_type)))
1004 	    return -1;				/* errno is set for us.  */
1005 
1006 	  sym = check_sym (fp, name, dst_type, functions);
1007 
1008 	  /* Already present: next symbol.  */
1009 	  if (sym == 0)
1010 	    continue;
1011 	  /* Not present: add it.  */
1012 	  else if (sym > 0)
1013 	    {
1014 	      if (ctf_add_funcobjt_sym (fp, functions,
1015 					name, dst_type) < 0)
1016 		return -1; 			/* errno is set for us.  */
1017 	      continue;
1018 	    }
1019 	}
1020 
1021       /* Can't add to the parent due to a name clash (most unlikely), or because
1022 	 it references a type only present in the child.  Try adding to the
1023 	 child, creating if need be.  If we can't do that, skip it.  Don't add
1024 	 to a child if we're doing a CU-mapped link, since that has only one
1025 	 output.  */
1026       if (cu_mapped)
1027 	{
1028 	  ctf_dprintf ("Symbol %s in input file %s depends on a type %lx "
1029 		       "hidden due to conflicts: skipped.\n", name,
1030 		       ctf_unnamed_cuname (input), type);
1031 	  continue;
1032 	}
1033 
1034       if ((per_cu_out_fp = ctf_create_per_cu (fp, input, NULL)) == NULL)
1035 	return -1;				/* errno is set for us.  */
1036 
1037       /* If the type was not found, check for it in the child too.  */
1038       if (dst_type == 0)
1039 	{
1040 	  if ((dst_type = ctf_dedup_type_mapping (per_cu_out_fp,
1041 						  input, type)) == CTF_ERR)
1042 	    return -1;				/* errno is set for us.  */
1043 
1044 	  if (dst_type == 0)
1045 	    {
1046 	      ctf_err_warn (fp, 1, 0,
1047 			    _("type %lx for symbol %s in input file %s "
1048 			      "not found: skipped"), type, name,
1049 			    ctf_unnamed_cuname (input));
1050 	      continue;
1051 	    }
1052 	}
1053 
1054       sym = check_sym (per_cu_out_fp, name, dst_type, functions);
1055 
1056       /* Already present: next symbol.  */
1057       if (sym == 0)
1058 	continue;
1059       /* Not present: add it.  */
1060       else if (sym > 0)
1061 	{
1062 	  if (ctf_add_funcobjt_sym (per_cu_out_fp, functions,
1063 				    name, dst_type) < 0)
1064 	    return -1;				/* errno is set for us.  */
1065 	}
1066       else
1067 	{
1068 	  /* Perhaps this should be an assertion failure.  */
1069 	  ctf_err_warn (fp, 0, ECTF_DUPLICATE,
1070 			_("symbol %s in input file %s found conflicting "
1071 			  "even when trying in per-CU dict."), name,
1072 			ctf_unnamed_cuname (input));
1073 	  return (ctf_set_errno (fp, ECTF_DUPLICATE));
1074 	}
1075     }
1076   if (ctf_errno (input) != ECTF_NEXT_END)
1077     {
1078       ctf_set_errno (fp, ctf_errno (input));
1079       ctf_err_warn (fp, 0, ctf_errno (input),
1080 		    functions ? _("iterating over function symbols") :
1081 		    _("iterating over data symbols"));
1082       return -1;
1083     }
1084 
1085   return 0;
1086 }
1087 
1088 /* Do a deduplicating link of the function info and data objects
1089    in the inputs.  */
1090 static int
1091 ctf_link_deduplicating_syms (ctf_dict_t *fp, ctf_dict_t **inputs,
1092 			     size_t ninputs, int cu_mapped)
1093 {
1094   size_t i;
1095 
1096   for (i = 0; i < ninputs; i++)
1097     {
1098       if (ctf_link_deduplicating_one_symtypetab (fp, inputs[i],
1099 						 cu_mapped, 0) < 0)
1100 	return -1;				/* errno is set for us.  */
1101 
1102       if (ctf_link_deduplicating_one_symtypetab (fp, inputs[i],
1103 						 cu_mapped, 1) < 0)
1104 	return -1;				/* errno is set for us.  */
1105     }
1106 
1107   return 0;
1108 }
1109 
1110 /* Do the per-CU part of a deduplicating link.  */
1111 static int
1112 ctf_link_deduplicating_per_cu (ctf_dict_t *fp)
1113 {
1114   ctf_next_t *i = NULL;
1115   int err;
1116   void *out_cu;
1117   void *in_cus;
1118 
1119   /* Links with a per-CU mapping in force get a first pass of deduplication,
1120      dedupping the inputs for a given CU mapping into the output for that
1121      mapping.  The outputs from this process get fed back into the final pass
1122      that is carried out even for non-CU links.  */
1123 
1124   while ((err = ctf_dynhash_next (fp->ctf_link_out_cu_mapping, &i, &out_cu,
1125 				  &in_cus)) == 0)
1126     {
1127       const char *out_name = (const char *) out_cu;
1128       ctf_dynhash_t *in = (ctf_dynhash_t *) in_cus;
1129       ctf_dict_t *out = NULL;
1130       ctf_dict_t **inputs;
1131       ctf_dict_t **outputs;
1132       ctf_archive_t *in_arc;
1133       ssize_t ninputs;
1134       ctf_link_input_t *only_input;
1135       uint32_t noutputs;
1136       uint32_t *parents;
1137 
1138       if ((ninputs = ctf_link_deduplicating_count_inputs (fp, in,
1139 							  &only_input)) == -1)
1140 	goto err_open_inputs;
1141 
1142       /* CU mapping with no inputs?  Skip.  */
1143       if (ninputs == 0)
1144 	continue;
1145 
1146       if (labs ((long int) ninputs) > 0xfffffffe)
1147 	{
1148 	  ctf_err_warn (fp, 0, EFBIG, _("too many inputs in deduplicating "
1149 					"link: %li"), (long int) ninputs);
1150 	  ctf_set_errno (fp, EFBIG);
1151 	  goto err_open_inputs;
1152 	}
1153 
1154       /* Short-circuit: a cu-mapped link with only one input archive with
1155 	 unconflicting contents is a do-nothing, and we can just leave the input
1156 	 in place: we do have to change the cuname, though, so we unwrap it,
1157 	 change the cuname, then stuff it back in the linker input again, via
1158 	 the clin_fp short-circuit member.  ctf_link_deduplicating_open_inputs
1159 	 will spot this member and jam it straight into the next link phase,
1160 	 ignoring the corresponding archive.  */
1161       if (only_input && ninputs == 1)
1162 	{
1163 	  ctf_next_t *ai = NULL;
1164 	  int err;
1165 
1166 	  /* We can abuse an archive iterator to get the only member cheaply, no
1167 	     matter what its name.  */
1168 	  only_input->clin_fp = ctf_archive_next (only_input->clin_arc,
1169 						  &ai, NULL, 0, &err);
1170 	  if (!only_input->clin_fp)
1171 	    {
1172 	      ctf_err_warn (fp, 0, err, _("cannot open archive %s in "
1173 					  "CU-mapped CTF link"),
1174 			    only_input->clin_filename);
1175 	      ctf_set_errno (fp, err);
1176 	      goto err_open_inputs;
1177 	    }
1178 	  ctf_next_destroy (ai);
1179 
1180 	  if (strcmp (only_input->clin_filename, out_name) != 0)
1181 	    {
1182 	      /* Renaming. We need to add a new input, then null out the
1183 		 clin_arc and clin_fp of the old one to stop it being
1184 		 auto-closed on removal.  The new input needs its cuname changed
1185 		 to out_name, which is doable only because the cuname is a
1186 		 dynamic property which can be changed even in readonly
1187 		 dicts. */
1188 
1189 	      ctf_cuname_set (only_input->clin_fp, out_name);
1190 	      if (ctf_link_add_ctf_internal (fp, only_input->clin_arc,
1191 					     only_input->clin_fp,
1192 					     out_name) < 0)
1193 		{
1194 		  ctf_err_warn (fp, 0, 0, _("cannot add intermediate files "
1195 					    "to link"));
1196 		  goto err_open_inputs;
1197 		}
1198 	      only_input->clin_arc = NULL;
1199 	      only_input->clin_fp = NULL;
1200 	      ctf_dynhash_remove (fp->ctf_link_inputs,
1201 				  only_input->clin_filename);
1202 	    }
1203 	  continue;
1204 	}
1205 
1206       /* This is a real CU many-to-one mapping: we must dedup the inputs into
1207 	 a new output to be used in the final link phase.  */
1208 
1209       if ((inputs = ctf_link_deduplicating_open_inputs (fp, in, ninputs,
1210 							&parents)) == NULL)
1211 	{
1212 	  ctf_next_destroy (i);
1213 	  goto err_inputs;
1214 	}
1215 
1216       if ((out = ctf_create (&err)) == NULL)
1217 	{
1218 	  ctf_err_warn (fp, 0, err, _("cannot create per-CU CTF archive "
1219 				      "for %s"),
1220 			out_name);
1221 	  ctf_set_errno (fp, err);
1222 	  goto err_inputs;
1223 	}
1224 
1225       /* Share the atoms table to reduce memory usage.  */
1226       out->ctf_dedup_atoms = fp->ctf_dedup_atoms_alloc;
1227 
1228       /* No ctf_imports at this stage: this per-CU dictionary has no parents.
1229 	 Parent/child deduplication happens in the link's final pass.  However,
1230 	 the cuname *is* important, as it is propagated into the final
1231 	 dictionary.  */
1232       ctf_cuname_set (out, out_name);
1233 
1234       if (ctf_dedup (out, inputs, ninputs, parents, 1) < 0)
1235 	{
1236 	  ctf_set_errno (fp, ctf_errno (out));
1237 	  ctf_err_warn (fp, 0, 0, _("CU-mapped deduplication failed for %s"),
1238 			out_name);
1239 	  goto err_inputs;
1240 	}
1241 
1242       if ((outputs = ctf_dedup_emit (out, inputs, ninputs, parents,
1243 				     &noutputs, 1)) == NULL)
1244 	{
1245 	  ctf_set_errno (fp, ctf_errno (out));
1246 	  ctf_err_warn (fp, 0, 0, _("CU-mapped deduplicating link type emission "
1247 				     "failed for %s"), out_name);
1248 	  goto err_inputs;
1249 	}
1250       if (!ctf_assert (fp, noutputs == 1))
1251 	{
1252 	  size_t j;
1253 	  for (j = 1; j < noutputs; j++)
1254 	    ctf_dict_close (outputs[j]);
1255 	  goto err_inputs_outputs;
1256 	}
1257 
1258       if (!(fp->ctf_link_flags & CTF_LINK_OMIT_VARIABLES_SECTION)
1259 	  && ctf_link_deduplicating_variables (out, inputs, ninputs, 1) < 0)
1260 	{
1261 	  ctf_set_errno (fp, ctf_errno (out));
1262 	  ctf_err_warn (fp, 0, 0, _("CU-mapped deduplicating link variable "
1263 				    "emission failed for %s"), out_name);
1264 	  goto err_inputs_outputs;
1265 	}
1266 
1267       ctf_dedup_fini (out, outputs, noutputs);
1268 
1269       /* For now, we omit symbol section linking for CU-mapped links, until it
1270 	 is clear how to unify the symbol table across such links.  (Perhaps we
1271 	 should emit an unconditionally indexed symtab, like the compiler
1272 	 does.)  */
1273 
1274       if (ctf_link_deduplicating_close_inputs (fp, in, inputs, ninputs) < 0)
1275 	{
1276 	  free (inputs);
1277 	  free (parents);
1278 	  goto err_outputs;
1279 	}
1280       free (inputs);
1281       free (parents);
1282 
1283       /* Splice any errors or warnings created during this link back into the
1284 	 dict that the caller knows about.  */
1285       ctf_list_splice (&fp->ctf_errs_warnings, &outputs[0]->ctf_errs_warnings);
1286 
1287       /* This output now becomes an input to the next link phase, with a name
1288 	 equal to the CU name.  We have to wrap it in an archive wrapper
1289 	 first.  */
1290 
1291       if ((in_arc = ctf_new_archive_internal (0, 0, NULL, outputs[0], NULL,
1292 					      NULL, &err)) == NULL)
1293 	{
1294 	  ctf_set_errno (fp, err);
1295 	  goto err_outputs;
1296 	}
1297 
1298       if (ctf_link_add_ctf_internal (fp, in_arc, NULL,
1299 				     ctf_cuname (outputs[0])) < 0)
1300 	{
1301 	  ctf_err_warn (fp, 0, 0, _("cannot add intermediate files to link"));
1302 	  goto err_outputs;
1303 	}
1304 
1305       ctf_dict_close (out);
1306       free (outputs);
1307       continue;
1308 
1309     err_inputs_outputs:
1310       ctf_list_splice (&fp->ctf_errs_warnings, &outputs[0]->ctf_errs_warnings);
1311       ctf_dict_close (outputs[0]);
1312       free (outputs);
1313     err_inputs:
1314       ctf_link_deduplicating_close_inputs (fp, in, inputs, ninputs);
1315       ctf_dict_close (out);
1316       free (inputs);
1317       free (parents);
1318     err_open_inputs:
1319       ctf_next_destroy (i);
1320       return -1;
1321 
1322     err_outputs:
1323       ctf_list_splice (&fp->ctf_errs_warnings, &outputs[0]->ctf_errs_warnings);
1324       ctf_dict_close (outputs[0]);
1325       free (outputs);
1326       ctf_next_destroy (i);
1327       return -1;				/* Errno is set for us.  */
1328     }
1329   if (err != ECTF_NEXT_END)
1330     {
1331       ctf_err_warn (fp, 0, err, _("iteration error in CU-mapped deduplicating "
1332 				  "link"));
1333       return ctf_set_errno (fp, err);
1334     }
1335 
1336   return 0;
1337 }
1338 
1339 /* Empty all the ctf_link_outputs.  */
1340 static int
1341 ctf_link_empty_outputs (ctf_dict_t *fp)
1342 {
1343   ctf_next_t *i = NULL;
1344   void *v;
1345   int err;
1346 
1347   ctf_dynhash_empty (fp->ctf_link_outputs);
1348 
1349   while ((err = ctf_dynhash_next (fp->ctf_link_inputs, &i, NULL, &v)) == 0)
1350     {
1351       ctf_dict_t *in = (ctf_dict_t *) v;
1352       in->ctf_link_in_out = NULL;
1353     }
1354   if (err != ECTF_NEXT_END)
1355     {
1356       fp->ctf_flags &= ~LCTF_LINKING;
1357       ctf_err_warn (fp, 1, err, _("iteration error removing old outputs"));
1358       ctf_set_errno (fp, err);
1359       return -1;
1360     }
1361   return 0;
1362 }
1363 
1364 /* Do a deduplicating link using the ctf-dedup machinery.  */
1365 static void
1366 ctf_link_deduplicating (ctf_dict_t *fp)
1367 {
1368   size_t i;
1369   ctf_dict_t **inputs, **outputs = NULL;
1370   ssize_t ninputs;
1371   uint32_t noutputs;
1372   uint32_t *parents;
1373 
1374   if (ctf_dedup_atoms_init (fp) < 0)
1375     {
1376       ctf_err_warn (fp, 0, 0, _("allocating CTF dedup atoms table"));
1377       return;					/* Errno is set for us.  */
1378     }
1379 
1380   if (fp->ctf_link_out_cu_mapping
1381       && (ctf_link_deduplicating_per_cu (fp) < 0))
1382     return;					/* Errno is set for us.  */
1383 
1384   if ((ninputs = ctf_link_deduplicating_count_inputs (fp, NULL, NULL)) < 0)
1385     return;					/* Errno is set for us.  */
1386 
1387   if ((inputs = ctf_link_deduplicating_open_inputs (fp, NULL, ninputs,
1388 						    &parents)) == NULL)
1389     return;					/* Errno is set for us.  */
1390 
1391   if (ninputs == 1 && ctf_cuname (inputs[0]) != NULL)
1392     ctf_cuname_set (fp, ctf_cuname (inputs[0]));
1393 
1394   if (ctf_dedup (fp, inputs, ninputs, parents, 0) < 0)
1395     {
1396       ctf_err_warn (fp, 0, 0, _("deduplication failed for %s"),
1397 		    ctf_link_input_name (fp));
1398       goto err;
1399     }
1400 
1401   if ((outputs = ctf_dedup_emit (fp, inputs, ninputs, parents, &noutputs,
1402 				 0)) == NULL)
1403     {
1404       ctf_err_warn (fp, 0, 0, _("deduplicating link type emission failed "
1405 				"for %s"), ctf_link_input_name (fp));
1406       goto err;
1407     }
1408 
1409   if (!ctf_assert (fp, outputs[0] == fp))
1410     {
1411       for (i = 1; i < noutputs; i++)
1412 	ctf_dict_close (outputs[i]);
1413       goto err;
1414     }
1415 
1416   for (i = 0; i < noutputs; i++)
1417     {
1418       char *dynname;
1419 
1420       /* We already have access to this one.  Close the duplicate.  */
1421       if (i == 0)
1422 	{
1423 	  ctf_dict_close (outputs[0]);
1424 	  continue;
1425 	}
1426 
1427       if ((dynname = ctf_new_per_cu_name (fp, ctf_cuname (outputs[i]))) == NULL)
1428 	goto oom_one_output;
1429 
1430       if (ctf_dynhash_insert (fp->ctf_link_outputs, dynname, outputs[i]) < 0)
1431 	goto oom_one_output;
1432 
1433       continue;
1434 
1435     oom_one_output:
1436       ctf_set_errno (fp, ENOMEM);
1437       ctf_err_warn (fp, 0, 0, _("out of memory allocating link outputs"));
1438       free (dynname);
1439 
1440       for (; i < noutputs; i++)
1441 	ctf_dict_close (outputs[i]);
1442       goto err;
1443     }
1444 
1445   if (!(fp->ctf_link_flags & CTF_LINK_OMIT_VARIABLES_SECTION)
1446       && ctf_link_deduplicating_variables (fp, inputs, ninputs, 0) < 0)
1447     {
1448       ctf_err_warn (fp, 0, 0, _("deduplicating link variable emission failed for "
1449 				"%s"), ctf_link_input_name (fp));
1450       goto err_clean_outputs;
1451     }
1452 
1453   if (ctf_link_deduplicating_syms (fp, inputs, ninputs, 0) < 0)
1454     {
1455       ctf_err_warn (fp, 0, 0, _("deduplicating link symbol emission failed for "
1456 				"%s"), ctf_link_input_name (fp));
1457       goto err_clean_outputs;
1458     }
1459 
1460   ctf_dedup_fini (fp, outputs, noutputs);
1461 
1462   /* Now close all the inputs, including per-CU intermediates.  */
1463 
1464   if (ctf_link_deduplicating_close_inputs (fp, NULL, inputs, ninputs) < 0)
1465     return;					/* errno is set for us.  */
1466 
1467   ninputs = 0;					/* Prevent double-close.  */
1468   ctf_set_errno (fp, 0);
1469 
1470   /* Fall through.  */
1471 
1472  err:
1473   for (i = 0; i < (size_t) ninputs; i++)
1474     ctf_dict_close (inputs[i]);
1475   free (inputs);
1476   free (parents);
1477   free (outputs);
1478   return;
1479 
1480  err_clean_outputs:
1481   ctf_link_empty_outputs (fp);
1482   goto err;
1483 }
1484 
1485 /* Merge types and variable sections in all dicts added to the link together.
1486    The result of any previous link is discarded.  */
1487 int
1488 ctf_link (ctf_dict_t *fp, int flags)
1489 {
1490   int err;
1491 
1492   fp->ctf_link_flags = flags;
1493 
1494   if (fp->ctf_link_inputs == NULL)
1495     return 0;					/* Nothing to do. */
1496 
1497   if (fp->ctf_link_outputs != NULL)
1498     ctf_link_empty_outputs (fp);
1499   else
1500     fp->ctf_link_outputs = ctf_dynhash_create (ctf_hash_string,
1501 					       ctf_hash_eq_string, free,
1502 					       (ctf_hash_free_fun)
1503 					       ctf_dict_close);
1504 
1505   if (fp->ctf_link_outputs == NULL)
1506     return ctf_set_errno (fp, ENOMEM);
1507 
1508   /* Create empty CUs if requested.  We do not currently claim that multiple
1509      links in succession with CTF_LINK_EMPTY_CU_MAPPINGS set in some calls and
1510      not set in others will do anything especially sensible.  */
1511 
1512   fp->ctf_flags |= LCTF_LINKING;
1513   if (fp->ctf_link_out_cu_mapping && (flags & CTF_LINK_EMPTY_CU_MAPPINGS))
1514     {
1515       ctf_next_t *i = NULL;
1516       void *k;
1517 
1518       while ((err = ctf_dynhash_next (fp->ctf_link_out_cu_mapping, &i, &k,
1519 				      NULL)) == 0)
1520 	{
1521 	  const char *to = (const char *) k;
1522 	  if (ctf_create_per_cu (fp, NULL, to) == NULL)
1523 	    {
1524 	      fp->ctf_flags &= ~LCTF_LINKING;
1525 	      ctf_next_destroy (i);
1526 	      return -1;			/* Errno is set for us.  */
1527 	    }
1528 	}
1529       if (err != ECTF_NEXT_END)
1530 	{
1531 	  fp->ctf_flags &= ~LCTF_LINKING;
1532 	  ctf_err_warn (fp, 1, err, _("iteration error creating empty CUs"));
1533 	  ctf_set_errno (fp, err);
1534 	  return -1;
1535 	}
1536     }
1537 
1538   ctf_link_deduplicating (fp);
1539 
1540   fp->ctf_flags &= ~LCTF_LINKING;
1541   if ((ctf_errno (fp) != 0) && (ctf_errno (fp) != ECTF_NOCTFDATA))
1542     return -1;
1543   return 0;
1544 }
1545 
1546 typedef struct ctf_link_out_string_cb_arg
1547 {
1548   const char *str;
1549   uint32_t offset;
1550   int err;
1551 } ctf_link_out_string_cb_arg_t;
1552 
1553 /* Intern a string in the string table of an output per-CU CTF file.  */
1554 static void
1555 ctf_link_intern_extern_string (void *key _libctf_unused_, void *value,
1556 			       void *arg_)
1557 {
1558   ctf_dict_t *fp = (ctf_dict_t *) value;
1559   ctf_link_out_string_cb_arg_t *arg = (ctf_link_out_string_cb_arg_t *) arg_;
1560 
1561   fp->ctf_flags |= LCTF_DIRTY;
1562   if (!ctf_str_add_external (fp, arg->str, arg->offset))
1563     arg->err = ENOMEM;
1564 }
1565 
1566 /* Repeatedly call ADD_STRING to acquire strings from the external string table,
1567    adding them to the atoms table for this CU and all subsidiary CUs.
1568 
1569    If ctf_link is also called, it must be called first if you want the new CTF
1570    files ctf_link can create to get their strings dedupped against the ELF
1571    strtab properly.  */
1572 int
1573 ctf_link_add_strtab (ctf_dict_t *fp, ctf_link_strtab_string_f *add_string,
1574 		     void *arg)
1575 {
1576   const char *str;
1577   uint32_t offset;
1578   int err = 0;
1579 
1580   while ((str = add_string (&offset, arg)) != NULL)
1581     {
1582       ctf_link_out_string_cb_arg_t iter_arg = { str, offset, 0 };
1583 
1584       fp->ctf_flags |= LCTF_DIRTY;
1585       if (!ctf_str_add_external (fp, str, offset))
1586 	err = ENOMEM;
1587 
1588       ctf_dynhash_iter (fp->ctf_link_outputs, ctf_link_intern_extern_string,
1589 			&iter_arg);
1590       if (iter_arg.err)
1591 	err = iter_arg.err;
1592     }
1593 
1594   if (err)
1595     ctf_set_errno (fp, err);
1596 
1597   return -err;
1598 }
1599 
1600 /* Inform the ctf-link machinery of a new symbol in the target symbol table
1601    (which must be some symtab that is not usually stripped, and which
1602    is in agreement with ctf_bfdopen_ctfsect).  May be called either before or
1603    after ctf_link_add_strtab.  */
1604 int
1605 ctf_link_add_linker_symbol (ctf_dict_t *fp, ctf_link_sym_t *sym)
1606 {
1607   ctf_in_flight_dynsym_t *cid;
1608 
1609   /* Cheat a little: if there is already an ENOMEM error code recorded against
1610      this dict, we shouldn't even try to add symbols because there will be no
1611      memory to do so: probably we failed to add some previous symbol.  This
1612      makes out-of-memory exits 'sticky' across calls to this function, so the
1613      caller doesn't need to worry about error conditions.  */
1614 
1615   if (ctf_errno (fp) == ENOMEM)
1616     return -ENOMEM;				/* errno is set for us.  */
1617 
1618   if (ctf_symtab_skippable (sym))
1619     return 0;
1620 
1621   if (sym->st_type != STT_OBJECT && sym->st_type != STT_FUNC)
1622     return 0;
1623 
1624   /* Add the symbol to the in-flight list.  */
1625 
1626   if ((cid = malloc (sizeof (ctf_in_flight_dynsym_t))) == NULL)
1627     goto oom;
1628 
1629   cid->cid_sym = *sym;
1630   ctf_list_append (&fp->ctf_in_flight_dynsyms, cid);
1631 
1632   return 0;
1633 
1634  oom:
1635   ctf_dynhash_destroy (fp->ctf_dynsyms);
1636   fp->ctf_dynsyms = NULL;
1637   ctf_set_errno (fp, ENOMEM);
1638   return -ENOMEM;
1639 }
1640 
1641 /* Impose an ordering on symbols.  The ordering takes effect immediately, but
1642    since the ordering info does not include type IDs, lookups may return nothing
1643    until such IDs are added by calls to ctf_add_*_sym.  Must be called after
1644    ctf_link_add_strtab and ctf_link_add_linker_symbol.  */
1645 int
1646 ctf_link_shuffle_syms (ctf_dict_t *fp)
1647 {
1648   ctf_in_flight_dynsym_t *did, *nid;
1649   ctf_next_t *i = NULL;
1650   int err = ENOMEM;
1651   void *name_, *sym_;
1652 
1653   if (!fp->ctf_dynsyms)
1654     {
1655       fp->ctf_dynsyms = ctf_dynhash_create (ctf_hash_string,
1656 					    ctf_hash_eq_string,
1657 					    NULL, free);
1658       if (!fp->ctf_dynsyms)
1659 	{
1660 	  ctf_set_errno (fp, ENOMEM);
1661 	  return -ENOMEM;
1662 	}
1663     }
1664 
1665   /* Add all the symbols, excluding only those we already know are prohibited
1666      from appearing in symtypetabs.  */
1667 
1668   for (did = ctf_list_next (&fp->ctf_in_flight_dynsyms); did != NULL; did = nid)
1669     {
1670       ctf_link_sym_t *new_sym;
1671 
1672       nid = ctf_list_next (did);
1673       ctf_list_delete (&fp->ctf_in_flight_dynsyms, did);
1674 
1675       /* We might get a name or an external strtab offset.  The strtab offset is
1676 	 guaranteed resolvable at this point, so turn it into a string.  */
1677 
1678       if (did->cid_sym.st_name == NULL)
1679 	{
1680 	  uint32_t off = CTF_SET_STID (did->cid_sym.st_nameidx, CTF_STRTAB_1);
1681 
1682 	  did->cid_sym.st_name = ctf_strraw (fp, off);
1683 	  did->cid_sym.st_nameidx_set = 0;
1684 	  if (!ctf_assert (fp, did->cid_sym.st_name != NULL))
1685 	    return -ECTF_INTERNAL;		/* errno is set for us.  */
1686 	}
1687 
1688       /* The symbol might have turned out to be nameless, so we have to recheck
1689 	 for skippability here.  */
1690       if (!ctf_symtab_skippable (&did->cid_sym))
1691 	{
1692 	  ctf_dprintf ("symbol from linker: %s (%x)\n", did->cid_sym.st_name,
1693 		       did->cid_sym.st_symidx);
1694 
1695 	  if ((new_sym = malloc (sizeof (ctf_link_sym_t))) == NULL)
1696 	    goto local_oom;
1697 
1698 	  memcpy (new_sym, &did->cid_sym, sizeof (ctf_link_sym_t));
1699 	  if (ctf_dynhash_cinsert (fp->ctf_dynsyms, new_sym->st_name, new_sym) < 0)
1700 	    goto local_oom;
1701 
1702 	  if (fp->ctf_dynsymmax < new_sym->st_symidx)
1703 	    fp->ctf_dynsymmax = new_sym->st_symidx;
1704 	}
1705 
1706       free (did);
1707       continue;
1708 
1709     local_oom:
1710       free (did);
1711       free (new_sym);
1712       goto err;
1713     }
1714 
1715   /* If no symbols are reported, unwind what we have done and return.  This
1716      makes it a bit easier for the serializer to tell that no symbols have been
1717      reported and that it should look elsewhere for reported symbols.  */
1718   if (!ctf_dynhash_elements (fp->ctf_dynsyms))
1719     {
1720       ctf_dprintf ("No symbols: not a final link.\n");
1721       ctf_dynhash_destroy (fp->ctf_dynsyms);
1722       fp->ctf_dynsyms = NULL;
1723       return 0;
1724     }
1725 
1726   /* Construct a mapping from shndx to the symbol info.  */
1727   free (fp->ctf_dynsymidx);
1728   if ((fp->ctf_dynsymidx = calloc (fp->ctf_dynsymmax + 1,
1729 				   sizeof (ctf_link_sym_t *))) == NULL)
1730     goto err;
1731 
1732   while ((err = ctf_dynhash_next (fp->ctf_dynsyms, &i, &name_, &sym_)) == 0)
1733     {
1734       const char *name = (const char *) name;
1735       ctf_link_sym_t *symp = (ctf_link_sym_t *) sym_;
1736 
1737       if (!ctf_assert (fp, symp->st_symidx <= fp->ctf_dynsymmax))
1738 	{
1739 	  ctf_next_destroy (i);
1740 	  err = ctf_errno (fp);
1741 	  goto err;
1742 	}
1743       fp->ctf_dynsymidx[symp->st_symidx] = symp;
1744     }
1745   if (err != ECTF_NEXT_END)
1746     {
1747       ctf_err_warn (fp, 0, err, _("error iterating over shuffled symbols"));
1748       goto err;
1749     }
1750   return 0;
1751 
1752  err:
1753   /* Leave the in-flight symbols around: they'll be freed at
1754      dict close time regardless.  */
1755   ctf_dynhash_destroy (fp->ctf_dynsyms);
1756   fp->ctf_dynsyms = NULL;
1757   free (fp->ctf_dynsymidx);
1758   fp->ctf_dynsymidx = NULL;
1759   fp->ctf_dynsymmax = 0;
1760   ctf_set_errno (fp, err);
1761   return -err;
1762 }
1763 
1764 typedef struct ctf_name_list_accum_cb_arg
1765 {
1766   char **names;
1767   ctf_dict_t *fp;
1768   ctf_dict_t **files;
1769   size_t i;
1770   char **dynames;
1771   size_t ndynames;
1772 } ctf_name_list_accum_cb_arg_t;
1773 
1774 /* Accumulate the names and a count of the names in the link output hash.  */
1775 static void
1776 ctf_accumulate_archive_names (void *key, void *value, void *arg_)
1777 {
1778   const char *name = (const char *) key;
1779   ctf_dict_t *fp = (ctf_dict_t *) value;
1780   char **names;
1781   ctf_dict_t **files;
1782   ctf_name_list_accum_cb_arg_t *arg = (ctf_name_list_accum_cb_arg_t *) arg_;
1783 
1784   if ((names = realloc (arg->names, sizeof (char *) * ++(arg->i))) == NULL)
1785     {
1786       (arg->i)--;
1787       ctf_set_errno (arg->fp, ENOMEM);
1788       return;
1789     }
1790 
1791   if ((files = realloc (arg->files, sizeof (ctf_dict_t *) * arg->i)) == NULL)
1792     {
1793       (arg->i)--;
1794       ctf_set_errno (arg->fp, ENOMEM);
1795       return;
1796     }
1797 
1798   /* Allow the caller to get in and modify the name at the last minute.  If the
1799      caller *does* modify the name, we have to stash away the new name the
1800      caller returned so we can free it later on.  (The original name is the key
1801      of the ctf_link_outputs hash and is freed by the dynhash machinery.)  */
1802 
1803   if (fp->ctf_link_memb_name_changer)
1804     {
1805       char **dynames;
1806       char *dyname;
1807       void *nc_arg = fp->ctf_link_memb_name_changer_arg;
1808 
1809       dyname = fp->ctf_link_memb_name_changer (fp, name, nc_arg);
1810 
1811       if (dyname != NULL)
1812 	{
1813 	  if ((dynames = realloc (arg->dynames,
1814 				  sizeof (char *) * ++(arg->ndynames))) == NULL)
1815 	    {
1816 	      (arg->ndynames)--;
1817 	      ctf_set_errno (arg->fp, ENOMEM);
1818 	      return;
1819 	    }
1820 	    arg->dynames = dynames;
1821 	    name = (const char *) dyname;
1822 	}
1823     }
1824 
1825   arg->names = names;
1826   arg->names[(arg->i) - 1] = (char *) name;
1827   arg->files = files;
1828   arg->files[(arg->i) - 1] = fp;
1829 }
1830 
1831 /* Change the name of the parent CTF section, if the name transformer has got to
1832    it.  */
1833 static void
1834 ctf_change_parent_name (void *key _libctf_unused_, void *value, void *arg)
1835 {
1836   ctf_dict_t *fp = (ctf_dict_t *) value;
1837   const char *name = (const char *) arg;
1838 
1839   ctf_parent_name_set (fp, name);
1840 }
1841 
1842 /* Warn if we may suffer information loss because the CTF input files are too
1843    old.  Usually we provide complete backward compatibility, but compiler
1844    changes etc which never hit a release may have a flag in the header that
1845    simply prevents those changes from being used.  */
1846 static void
1847 ctf_link_warn_outdated_inputs (ctf_dict_t *fp)
1848 {
1849   ctf_next_t *i = NULL;
1850   void *name_;
1851   void *ifp_;
1852   int err;
1853 
1854   while ((err = ctf_dynhash_next (fp->ctf_link_inputs, &i, &name_, &ifp_)) == 0)
1855     {
1856       const char *name = (const char *) name_;
1857       ctf_dict_t *ifp = (ctf_dict_t *) ifp_;
1858 
1859       if (!(ifp->ctf_header->cth_flags & CTF_F_NEWFUNCINFO)
1860 	  && (ifp->ctf_header->cth_varoff - ifp->ctf_header->cth_funcoff) > 0)
1861 	ctf_err_warn (ifp, 1, 0, _("linker input %s has CTF func info but uses "
1862 				   "an old, unreleased func info format: "
1863 				   "this func info section will be dropped."),
1864 		      name);
1865     }
1866   if (err != ECTF_NEXT_END)
1867     ctf_err_warn (fp, 0, err, _("error checking for outdated inputs"));
1868 }
1869 
1870 /* Write out a CTF archive (if there are per-CU CTF files) or a CTF file
1871    (otherwise) into a new dynamically-allocated string, and return it.
1872    Members with sizes above THRESHOLD are compressed.  */
1873 unsigned char *
1874 ctf_link_write (ctf_dict_t *fp, size_t *size, size_t threshold)
1875 {
1876   ctf_name_list_accum_cb_arg_t arg;
1877   char **names;
1878   char *transformed_name = NULL;
1879   ctf_dict_t **files;
1880   FILE *f = NULL;
1881   size_t i;
1882   int err;
1883   long fsize;
1884   const char *errloc;
1885   unsigned char *buf = NULL;
1886 
1887   memset (&arg, 0, sizeof (ctf_name_list_accum_cb_arg_t));
1888   arg.fp = fp;
1889   fp->ctf_flags |= LCTF_LINKING;
1890 
1891   ctf_link_warn_outdated_inputs (fp);
1892 
1893   if (fp->ctf_link_outputs)
1894     {
1895       ctf_dynhash_iter (fp->ctf_link_outputs, ctf_accumulate_archive_names, &arg);
1896       if (ctf_errno (fp) < 0)
1897 	{
1898 	  errloc = "hash creation";
1899 	  goto err;
1900 	}
1901     }
1902 
1903   /* No extra outputs? Just write a simple ctf_dict_t.  */
1904   if (arg.i == 0)
1905     {
1906       unsigned char *ret = ctf_write_mem (fp, size, threshold);
1907       fp->ctf_flags &= ~LCTF_LINKING;
1908       return ret;
1909     }
1910 
1911   /* Writing an archive.  Stick ourselves (the shared repository, parent of all
1912      other archives) on the front of it with the default name.  */
1913   if ((names = realloc (arg.names, sizeof (char *) * (arg.i + 1))) == NULL)
1914     {
1915       errloc = "name reallocation";
1916       goto err_no;
1917     }
1918   arg.names = names;
1919   memmove (&(arg.names[1]), arg.names, sizeof (char *) * (arg.i));
1920 
1921   arg.names[0] = (char *) _CTF_SECTION;
1922   if (fp->ctf_link_memb_name_changer)
1923     {
1924       void *nc_arg = fp->ctf_link_memb_name_changer_arg;
1925 
1926       transformed_name = fp->ctf_link_memb_name_changer (fp, _CTF_SECTION,
1927 							 nc_arg);
1928 
1929       if (transformed_name != NULL)
1930 	{
1931 	  arg.names[0] = transformed_name;
1932 	  ctf_dynhash_iter (fp->ctf_link_outputs, ctf_change_parent_name,
1933 			    transformed_name);
1934 	}
1935     }
1936 
1937   /* Propagate the link flags to all the dicts in this link.  */
1938   for (i = 0; i < arg.i; i++)
1939     {
1940       arg.files[i]->ctf_link_flags = fp->ctf_link_flags;
1941       arg.files[i]->ctf_flags |= LCTF_LINKING;
1942     }
1943 
1944   if ((files = realloc (arg.files,
1945 			sizeof (struct ctf_dict *) * (arg.i + 1))) == NULL)
1946     {
1947       errloc = "ctf_dict reallocation";
1948       goto err_no;
1949     }
1950   arg.files = files;
1951   memmove (&(arg.files[1]), arg.files, sizeof (ctf_dict_t *) * (arg.i));
1952   arg.files[0] = fp;
1953 
1954   if ((f = tmpfile ()) == NULL)
1955     {
1956       errloc = "tempfile creation";
1957       goto err_no;
1958     }
1959 
1960   if ((err = ctf_arc_write_fd (fileno (f), arg.files, arg.i + 1,
1961 			       (const char **) arg.names,
1962 			       threshold)) < 0)
1963     {
1964       errloc = "archive writing";
1965       ctf_set_errno (fp, err);
1966       goto err;
1967     }
1968 
1969   if (fseek (f, 0, SEEK_END) < 0)
1970     {
1971       errloc = "seeking to end";
1972       goto err_no;
1973     }
1974 
1975   if ((fsize = ftell (f)) < 0)
1976     {
1977       errloc = "filesize determination";
1978       goto err_no;
1979     }
1980 
1981   if (fseek (f, 0, SEEK_SET) < 0)
1982     {
1983       errloc = "filepos resetting";
1984       goto err_no;
1985     }
1986 
1987   if ((buf = malloc (fsize)) == NULL)
1988     {
1989       errloc = "CTF archive buffer allocation";
1990       goto err_no;
1991     }
1992 
1993   while (!feof (f) && fread (buf, fsize, 1, f) == 0)
1994     if (ferror (f))
1995       {
1996 	errloc = "reading archive from temporary file";
1997 	goto err_no;
1998       }
1999 
2000   *size = fsize;
2001   free (arg.names);
2002   free (arg.files);
2003   free (transformed_name);
2004   if (arg.ndynames)
2005     {
2006       size_t i;
2007       for (i = 0; i < arg.ndynames; i++)
2008 	free (arg.dynames[i]);
2009       free (arg.dynames);
2010     }
2011   fclose (f);
2012   return buf;
2013 
2014  err_no:
2015   ctf_set_errno (fp, errno);
2016 
2017   /* Turn off the is-linking flag on all the dicts in this link.  */
2018   for (i = 0; i < arg.i; i++)
2019     arg.files[i]->ctf_flags &= ~LCTF_LINKING;
2020  err:
2021   free (buf);
2022   if (f)
2023     fclose (f);
2024   free (arg.names);
2025   free (arg.files);
2026   free (transformed_name);
2027   if (arg.ndynames)
2028     {
2029       size_t i;
2030       for (i = 0; i < arg.ndynames; i++)
2031 	free (arg.dynames[i]);
2032       free (arg.dynames);
2033     }
2034   ctf_err_warn (fp, 0, 0, _("cannot write archive in link: %s failure"),
2035 		errloc);
2036   return NULL;
2037 }
2038