1 /* This module handles expression trees.
2 Copyright (C) 1991-2015 Free Software Foundation, Inc.
3 Written by Steve Chamberlain of Cygnus Support <sac@cygnus.com>.
5 This file is part of the GNU Binutils.
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
23 /* This module is in charge of working out the contents of expressions.
25 It has to keep track of the relative/absness of a symbol etc. This
26 is done by keeping all values in a struct (an etree_value_type)
27 which contains a value, a section to which it is relative and a
41 #include "libiberty.h"
42 #include "safe-ctype.h"
44 static void exp_fold_tree_1 (etree_type
*);
45 static bfd_vma
align_n (bfd_vma
, bfd_vma
);
47 segment_type
*segments
;
49 struct ldexp_control expld
;
51 /* This structure records symbols for which we need to keep track of
52 definedness for use in the DEFINED () test. */
54 struct definedness_hash_entry
56 struct bfd_hash_entry root
;
57 unsigned int by_object
: 1;
58 unsigned int by_script
: 1;
59 unsigned int iteration
: 1;
62 static struct bfd_hash_table definedness_table
;
64 /* Print the string representation of the given token. Surround it
65 with spaces if INFIX_P is TRUE. */
68 exp_print_token (token_code_type code
, int infix_p
)
95 { LOG2CEIL
, "LOG2CEIL" },
103 { SECTIONS
, "SECTIONS" },
104 { SIZEOF_HEADERS
, "SIZEOF_HEADERS" },
105 { MEMORY
, "MEMORY" },
106 { DEFINED
, "DEFINED" },
107 { TARGET_K
, "TARGET" },
108 { SEARCH_DIR
, "SEARCH_DIR" },
112 { ALIGNOF
, "ALIGNOF" },
113 { SIZEOF
, "SIZEOF" },
115 { LOADADDR
, "LOADADDR" },
116 { CONSTANT
, "CONSTANT" },
117 { ABSOLUTE
, "ABSOLUTE" },
120 { ASSERT_K
, "ASSERT" },
121 { REL
, "relocatable" },
122 { DATA_SEGMENT_ALIGN
, "DATA_SEGMENT_ALIGN" },
123 { DATA_SEGMENT_RELRO_END
, "DATA_SEGMENT_RELRO_END" },
124 { DATA_SEGMENT_END
, "DATA_SEGMENT_END" },
125 { ORIGIN
, "ORIGIN" },
126 { LENGTH
, "LENGTH" },
127 { SEGMENT_START
, "SEGMENT_START" }
131 for (idx
= 0; idx
< ARRAY_SIZE (table
); idx
++)
132 if (table
[idx
].code
== code
)
136 fputc (' ', config
.map_file
);
138 if (idx
< ARRAY_SIZE (table
))
139 fputs (table
[idx
].name
, config
.map_file
);
141 fputc (code
, config
.map_file
);
143 fprintf (config
.map_file
, "<code %d>", code
);
146 fputc (' ', config
.map_file
);
152 bfd_vma value
= expld
.result
.value
;
154 bfd_boolean round_up
= FALSE
;
159 /* If more than one bit is set in the value we will need to round up. */
160 if ((value
> 1) && (value
& 1))
167 expld
.result
.section
= NULL
;
168 expld
.result
.value
= result
;
174 if (expld
.result
.section
!= NULL
)
175 expld
.result
.value
+= expld
.result
.section
->vma
;
176 expld
.result
.section
= bfd_abs_section_ptr
;
180 new_abs (bfd_vma value
)
182 expld
.result
.valid_p
= TRUE
;
183 expld
.result
.section
= bfd_abs_section_ptr
;
184 expld
.result
.value
= value
;
185 expld
.result
.str
= NULL
;
189 exp_intop (bfd_vma value
)
191 etree_type
*new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->value
));
192 new_e
->type
.node_code
= INT
;
193 new_e
->type
.filename
= ldlex_filename ();
194 new_e
->type
.lineno
= lineno
;
195 new_e
->value
.value
= value
;
196 new_e
->value
.str
= NULL
;
197 new_e
->type
.node_class
= etree_value
;
202 exp_bigintop (bfd_vma value
, char *str
)
204 etree_type
*new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->value
));
205 new_e
->type
.node_code
= INT
;
206 new_e
->type
.filename
= ldlex_filename ();
207 new_e
->type
.lineno
= lineno
;
208 new_e
->value
.value
= value
;
209 new_e
->value
.str
= str
;
210 new_e
->type
.node_class
= etree_value
;
214 /* Build an expression representing an unnamed relocatable value. */
217 exp_relop (asection
*section
, bfd_vma value
)
219 etree_type
*new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->rel
));
220 new_e
->type
.node_code
= REL
;
221 new_e
->type
.filename
= ldlex_filename ();
222 new_e
->type
.lineno
= lineno
;
223 new_e
->type
.node_class
= etree_rel
;
224 new_e
->rel
.section
= section
;
225 new_e
->rel
.value
= value
;
230 new_number (bfd_vma value
)
232 expld
.result
.valid_p
= TRUE
;
233 expld
.result
.value
= value
;
234 expld
.result
.str
= NULL
;
235 expld
.result
.section
= NULL
;
239 new_rel (bfd_vma value
, asection
*section
)
241 expld
.result
.valid_p
= TRUE
;
242 expld
.result
.value
= value
;
243 expld
.result
.str
= NULL
;
244 expld
.result
.section
= section
;
248 new_rel_from_abs (bfd_vma value
)
250 asection
*s
= expld
.section
;
252 if (s
== bfd_abs_section_ptr
&& expld
.phase
== lang_final_phase_enum
)
253 s
= section_for_dot ();
254 expld
.result
.valid_p
= TRUE
;
255 expld
.result
.value
= value
- s
->vma
;
256 expld
.result
.str
= NULL
;
257 expld
.result
.section
= s
;
260 /* New-function for the definedness hash table. */
262 static struct bfd_hash_entry
*
263 definedness_newfunc (struct bfd_hash_entry
*entry
,
264 struct bfd_hash_table
*table ATTRIBUTE_UNUSED
,
265 const char *name ATTRIBUTE_UNUSED
)
267 struct definedness_hash_entry
*ret
= (struct definedness_hash_entry
*) entry
;
270 ret
= (struct definedness_hash_entry
*)
271 bfd_hash_allocate (table
, sizeof (struct definedness_hash_entry
));
274 einfo (_("%P%F: bfd_hash_allocate failed creating symbol %s\n"), name
);
282 /* Called during processing of linker script script expressions.
283 For symbols assigned in a linker script, return a struct describing
284 where the symbol is defined relative to the current expression,
285 otherwise return NULL. */
287 static struct definedness_hash_entry
*
288 symbol_defined (const char *name
)
290 return ((struct definedness_hash_entry
*)
291 bfd_hash_lookup (&definedness_table
, name
, FALSE
, FALSE
));
294 /* Update the definedness state of NAME. Return FALSE if script symbol
295 is multiply defining a strong symbol in an object. */
298 update_definedness (const char *name
, struct bfd_link_hash_entry
*h
)
301 struct definedness_hash_entry
*defentry
302 = (struct definedness_hash_entry
*)
303 bfd_hash_lookup (&definedness_table
, name
, TRUE
, FALSE
);
305 if (defentry
== NULL
)
306 einfo (_("%P%F: bfd_hash_lookup failed creating symbol %s\n"), name
);
308 /* If the symbol was already defined, and not by a script, then it
309 must be defined by an object file or by the linker target code. */
311 if (!defentry
->by_script
312 && (h
->type
== bfd_link_hash_defined
313 || h
->type
== bfd_link_hash_defweak
314 || h
->type
== bfd_link_hash_common
))
316 defentry
->by_object
= 1;
317 if (h
->type
== bfd_link_hash_defined
318 && h
->u
.def
.section
->output_section
!= NULL
323 defentry
->by_script
= 1;
324 defentry
->iteration
= lang_statement_iteration
;
329 fold_unary (etree_type
*tree
)
331 exp_fold_tree_1 (tree
->unary
.child
);
332 if (expld
.result
.valid_p
)
334 switch (tree
->type
.node_code
)
337 if (expld
.phase
!= lang_first_phase_enum
)
338 new_rel_from_abs (align_n (expld
.dot
, expld
.result
.value
));
340 expld
.result
.valid_p
= FALSE
;
352 expld
.result
.value
= ~expld
.result
.value
;
356 expld
.result
.value
= !expld
.result
.value
;
360 expld
.result
.value
= -expld
.result
.value
;
364 /* Return next place aligned to value. */
365 if (expld
.phase
!= lang_first_phase_enum
)
368 expld
.result
.value
= align_n (expld
.dot
, expld
.result
.value
);
371 expld
.result
.valid_p
= FALSE
;
374 case DATA_SEGMENT_END
:
375 if (expld
.phase
== lang_first_phase_enum
376 || expld
.section
!= bfd_abs_section_ptr
)
378 expld
.result
.valid_p
= FALSE
;
380 else if (expld
.dataseg
.phase
== exp_dataseg_align_seen
381 || expld
.dataseg
.phase
== exp_dataseg_relro_seen
)
383 expld
.dataseg
.phase
= exp_dataseg_end_seen
;
384 expld
.dataseg
.end
= expld
.result
.value
;
386 else if (expld
.dataseg
.phase
== exp_dataseg_done
387 || expld
.dataseg
.phase
== exp_dataseg_adjust
388 || expld
.dataseg
.phase
== exp_dataseg_relro_adjust
)
393 expld
.result
.valid_p
= FALSE
;
404 fold_binary (etree_type
*tree
)
406 etree_value_type lhs
;
407 exp_fold_tree_1 (tree
->binary
.lhs
);
409 /* The SEGMENT_START operator is special because its first
410 operand is a string, not the name of a symbol. Note that the
411 operands have been swapped, so binary.lhs is second (default)
412 operand, binary.rhs is first operand. */
413 if (expld
.result
.valid_p
&& tree
->type
.node_code
== SEGMENT_START
)
415 const char *segment_name
;
418 /* Check to see if the user has overridden the default
420 segment_name
= tree
->binary
.rhs
->name
.name
;
421 for (seg
= segments
; seg
; seg
= seg
->next
)
422 if (strcmp (seg
->name
, segment_name
) == 0)
425 && config
.magic_demand_paged
426 && (seg
->value
% config
.maxpagesize
) != 0)
427 einfo (_("%P: warning: address of `%s' isn't multiple of maximum page size\n"),
430 new_rel_from_abs (seg
->value
);
437 exp_fold_tree_1 (tree
->binary
.rhs
);
438 expld
.result
.valid_p
&= lhs
.valid_p
;
440 if (expld
.result
.valid_p
)
442 if (lhs
.section
!= expld
.result
.section
)
444 /* If the values are from different sections, and neither is
445 just a number, make both the source arguments absolute. */
446 if (expld
.result
.section
!= NULL
447 && lhs
.section
!= NULL
)
450 lhs
.value
+= lhs
.section
->vma
;
451 lhs
.section
= bfd_abs_section_ptr
;
454 /* If the rhs is just a number, keep the lhs section. */
455 else if (expld
.result
.section
== NULL
)
457 expld
.result
.section
= lhs
.section
;
458 /* Make this NULL so that we know one of the operands
459 was just a number, for later tests. */
463 /* At this point we know that both operands have the same
464 section, or at least one of them is a plain number. */
466 switch (tree
->type
.node_code
)
468 /* Arithmetic operators, bitwise AND, bitwise OR and XOR
469 keep the section of one of their operands only when the
470 other operand is a plain number. Losing the section when
471 operating on two symbols, ie. a result of a plain number,
472 is required for subtraction and XOR. It's justifiable
473 for the other operations on the grounds that adding,
474 multiplying etc. two section relative values does not
475 really make sense unless they are just treated as
477 The same argument could be made for many expressions
478 involving one symbol and a number. For example,
479 "1 << x" and "100 / x" probably should not be given the
480 section of x. The trouble is that if we fuss about such
481 things the rules become complex and it is onerous to
482 document ld expression evaluation. */
485 expld.result.value = lhs.value y expld.result.value; \
486 if (expld.result.section == lhs.section) \
487 expld.result.section = NULL; \
490 /* Comparison operators, logical AND, and logical OR always
491 return a plain number. */
494 expld.result.value = lhs.value y expld.result.value; \
495 expld.result.section = NULL; \
516 if (expld
.result
.value
!= 0)
517 expld
.result
.value
= ((bfd_signed_vma
) lhs
.value
518 % (bfd_signed_vma
) expld
.result
.value
);
519 else if (expld
.phase
!= lang_mark_phase_enum
)
520 einfo (_("%F%S %% by zero\n"), tree
->binary
.rhs
);
521 if (expld
.result
.section
== lhs
.section
)
522 expld
.result
.section
= NULL
;
526 if (expld
.result
.value
!= 0)
527 expld
.result
.value
= ((bfd_signed_vma
) lhs
.value
528 / (bfd_signed_vma
) expld
.result
.value
);
529 else if (expld
.phase
!= lang_mark_phase_enum
)
530 einfo (_("%F%S / by zero\n"), tree
->binary
.rhs
);
531 if (expld
.result
.section
== lhs
.section
)
532 expld
.result
.section
= NULL
;
536 if (lhs
.value
> expld
.result
.value
)
537 expld
.result
.value
= lhs
.value
;
541 if (lhs
.value
< expld
.result
.value
)
542 expld
.result
.value
= lhs
.value
;
546 expld
.result
.value
= align_n (lhs
.value
, expld
.result
.value
);
549 case DATA_SEGMENT_ALIGN
:
550 expld
.dataseg
.relro
= exp_dataseg_relro_start
;
551 if (expld
.phase
== lang_first_phase_enum
552 || expld
.section
!= bfd_abs_section_ptr
)
553 expld
.result
.valid_p
= FALSE
;
556 bfd_vma maxpage
= lhs
.value
;
557 bfd_vma commonpage
= expld
.result
.value
;
559 expld
.result
.value
= align_n (expld
.dot
, maxpage
);
560 if (expld
.dataseg
.phase
== exp_dataseg_relro_adjust
)
561 expld
.result
.value
= expld
.dataseg
.base
;
562 else if (expld
.dataseg
.phase
== exp_dataseg_adjust
)
564 if (commonpage
< maxpage
)
565 expld
.result
.value
+= ((expld
.dot
+ commonpage
- 1)
566 & (maxpage
- commonpage
));
570 expld
.result
.value
+= expld
.dot
& (maxpage
- 1);
571 if (expld
.dataseg
.phase
== exp_dataseg_done
)
575 else if (expld
.dataseg
.phase
== exp_dataseg_none
)
577 expld
.dataseg
.phase
= exp_dataseg_align_seen
;
578 expld
.dataseg
.min_base
= expld
.dot
;
579 expld
.dataseg
.base
= expld
.result
.value
;
580 expld
.dataseg
.pagesize
= commonpage
;
581 expld
.dataseg
.maxpagesize
= maxpage
;
582 expld
.dataseg
.relro_end
= 0;
585 expld
.result
.valid_p
= FALSE
;
590 case DATA_SEGMENT_RELRO_END
:
591 expld
.dataseg
.relro
= exp_dataseg_relro_end
;
592 if (expld
.phase
== lang_first_phase_enum
593 || expld
.section
!= bfd_abs_section_ptr
)
594 expld
.result
.valid_p
= FALSE
;
595 else if (expld
.dataseg
.phase
== exp_dataseg_align_seen
596 || expld
.dataseg
.phase
== exp_dataseg_adjust
597 || expld
.dataseg
.phase
== exp_dataseg_relro_adjust
598 || expld
.dataseg
.phase
== exp_dataseg_done
)
600 if (expld
.dataseg
.phase
== exp_dataseg_align_seen
601 || expld
.dataseg
.phase
== exp_dataseg_relro_adjust
)
602 expld
.dataseg
.relro_end
= lhs
.value
+ expld
.result
.value
;
604 if (expld
.dataseg
.phase
== exp_dataseg_relro_adjust
605 && (expld
.dataseg
.relro_end
606 & (expld
.dataseg
.pagesize
- 1)))
608 expld
.dataseg
.relro_end
+= expld
.dataseg
.pagesize
- 1;
609 expld
.dataseg
.relro_end
&= ~(expld
.dataseg
.pagesize
- 1);
610 expld
.result
.value
= (expld
.dataseg
.relro_end
611 - expld
.result
.value
);
614 expld
.result
.value
= lhs
.value
;
616 if (expld
.dataseg
.phase
== exp_dataseg_align_seen
)
617 expld
.dataseg
.phase
= exp_dataseg_relro_seen
;
620 expld
.result
.valid_p
= FALSE
;
630 fold_trinary (etree_type
*tree
)
632 exp_fold_tree_1 (tree
->trinary
.cond
);
633 if (expld
.result
.valid_p
)
634 exp_fold_tree_1 (expld
.result
.value
636 : tree
->trinary
.rhs
);
640 fold_name (etree_type
*tree
)
642 memset (&expld
.result
, 0, sizeof (expld
.result
));
644 switch (tree
->type
.node_code
)
647 if (expld
.phase
!= lang_first_phase_enum
)
649 bfd_vma hdr_size
= 0;
650 /* Don't find the real header size if only marking sections;
651 The bfd function may cache incorrect data. */
652 if (expld
.phase
!= lang_mark_phase_enum
)
653 hdr_size
= bfd_sizeof_headers (link_info
.output_bfd
, &link_info
);
654 new_number (hdr_size
);
659 if (expld
.phase
!= lang_first_phase_enum
)
661 struct bfd_link_hash_entry
*h
;
662 struct definedness_hash_entry
*def
;
664 h
= bfd_wrapped_link_hash_lookup (link_info
.output_bfd
,
668 new_number (h
!= NULL
669 && (h
->type
== bfd_link_hash_defined
670 || h
->type
== bfd_link_hash_defweak
671 || h
->type
== bfd_link_hash_common
)
672 && ((def
= symbol_defined (tree
->name
.name
)) == NULL
674 || def
->iteration
== (lang_statement_iteration
& 1)));
679 if (expld
.assign_name
!= NULL
680 && strcmp (expld
.assign_name
, tree
->name
.name
) == 0)
682 /* Self-assignment is only allowed for absolute symbols
683 defined in a linker script. */
684 struct bfd_link_hash_entry
*h
;
685 struct definedness_hash_entry
*def
;
687 h
= bfd_wrapped_link_hash_lookup (link_info
.output_bfd
,
692 && (h
->type
== bfd_link_hash_defined
693 || h
->type
== bfd_link_hash_defweak
)
694 && h
->u
.def
.section
== bfd_abs_section_ptr
695 && (def
= symbol_defined (tree
->name
.name
)) != NULL
696 && def
->iteration
== (lang_statement_iteration
& 1)))
697 expld
.assign_name
= NULL
;
699 if (expld
.phase
== lang_first_phase_enum
)
701 else if (tree
->name
.name
[0] == '.' && tree
->name
.name
[1] == 0)
702 new_rel_from_abs (expld
.dot
);
705 struct bfd_link_hash_entry
*h
;
707 h
= bfd_wrapped_link_hash_lookup (link_info
.output_bfd
,
712 einfo (_("%P%F: bfd_link_hash_lookup failed: %E\n"));
713 else if (h
->type
== bfd_link_hash_defined
714 || h
->type
== bfd_link_hash_defweak
)
716 asection
*output_section
;
718 output_section
= h
->u
.def
.section
->output_section
;
719 if (output_section
== NULL
)
721 if (expld
.phase
== lang_mark_phase_enum
)
722 new_rel (h
->u
.def
.value
, h
->u
.def
.section
);
724 einfo (_("%X%S: unresolvable symbol `%s'"
725 " referenced in expression\n"),
726 tree
, tree
->name
.name
);
728 else if (output_section
== bfd_abs_section_ptr
729 && (expld
.section
!= bfd_abs_section_ptr
730 || config
.sane_expr
))
731 new_number (h
->u
.def
.value
+ h
->u
.def
.section
->output_offset
);
733 new_rel (h
->u
.def
.value
+ h
->u
.def
.section
->output_offset
,
736 else if (expld
.phase
== lang_final_phase_enum
737 || (expld
.phase
!= lang_mark_phase_enum
738 && expld
.assigning_to_dot
))
739 einfo (_("%F%S: undefined symbol `%s'"
740 " referenced in expression\n"),
741 tree
, tree
->name
.name
);
742 else if (h
->type
== bfd_link_hash_new
)
744 h
->type
= bfd_link_hash_undefined
;
745 h
->u
.undef
.abfd
= NULL
;
746 if (h
->u
.undef
.next
== NULL
&& h
!= link_info
.hash
->undefs_tail
)
747 bfd_link_add_undef (link_info
.hash
, h
);
753 if (expld
.phase
!= lang_first_phase_enum
)
755 lang_output_section_statement_type
*os
;
757 os
= lang_output_section_find (tree
->name
.name
);
760 if (expld
.phase
== lang_final_phase_enum
)
761 einfo (_("%F%S: undefined section `%s'"
762 " referenced in expression\n"),
763 tree
, tree
->name
.name
);
765 else if (os
->processed_vma
)
766 new_rel (0, os
->bfd_section
);
771 if (expld
.phase
!= lang_first_phase_enum
)
773 lang_output_section_statement_type
*os
;
775 os
= lang_output_section_find (tree
->name
.name
);
778 if (expld
.phase
== lang_final_phase_enum
)
779 einfo (_("%F%S: undefined section `%s'"
780 " referenced in expression\n"),
781 tree
, tree
->name
.name
);
783 else if (os
->processed_lma
)
785 if (os
->load_base
== NULL
)
786 new_abs (os
->bfd_section
->lma
);
789 exp_fold_tree_1 (os
->load_base
);
790 if (expld
.result
.valid_p
)
799 if (expld
.phase
!= lang_first_phase_enum
)
801 lang_output_section_statement_type
*os
;
803 os
= lang_output_section_find (tree
->name
.name
);
806 if (expld
.phase
== lang_final_phase_enum
)
807 einfo (_("%F%S: undefined section `%s'"
808 " referenced in expression\n"),
809 tree
, tree
->name
.name
);
812 else if (os
->bfd_section
!= NULL
)
816 if (tree
->type
.node_code
== SIZEOF
)
817 val
= (os
->bfd_section
->size
818 / bfd_octets_per_byte (link_info
.output_bfd
));
820 val
= (bfd_vma
)1 << os
->bfd_section
->alignment_power
;
831 if (expld
.phase
!= lang_first_phase_enum
)
833 lang_memory_region_type
*mem
;
835 mem
= lang_memory_region_lookup (tree
->name
.name
, FALSE
);
837 new_number (mem
->length
);
839 einfo (_("%F%S: undefined MEMORY region `%s'"
840 " referenced in expression\n"),
841 tree
, tree
->name
.name
);
847 if (expld
.phase
!= lang_first_phase_enum
)
849 lang_memory_region_type
*mem
;
851 mem
= lang_memory_region_lookup (tree
->name
.name
, FALSE
);
853 new_rel_from_abs (mem
->origin
);
855 einfo (_("%F%S: undefined MEMORY region `%s'"
856 " referenced in expression\n"),
857 tree
, tree
->name
.name
);
862 if (strcmp (tree
->name
.name
, "MAXPAGESIZE") == 0)
863 new_number (config
.maxpagesize
);
864 else if (strcmp (tree
->name
.name
, "COMMONPAGESIZE") == 0)
865 new_number (config
.commonpagesize
);
867 einfo (_("%F%S: unknown constant `%s' referenced in expression\n"),
868 tree
, tree
->name
.name
);
877 /* Return true if TREE is '.'. */
880 is_dot (const etree_type
*tree
)
882 return (tree
->type
.node_class
== etree_name
883 && tree
->type
.node_code
== NAME
884 && tree
->name
.name
[0] == '.'
885 && tree
->name
.name
[1] == 0);
888 /* Return true if TREE is a constant equal to VAL. */
891 is_value (const etree_type
*tree
, bfd_vma val
)
893 return (tree
->type
.node_class
== etree_value
894 && tree
->value
.value
== val
);
897 /* Return true if TREE is an absolute symbol equal to VAL defined in
901 is_sym_value (const etree_type
*tree
, bfd_vma val
)
903 struct bfd_link_hash_entry
*h
;
904 struct definedness_hash_entry
*def
;
906 return (tree
->type
.node_class
== etree_name
907 && tree
->type
.node_code
== NAME
908 && (def
= symbol_defined (tree
->name
.name
)) != NULL
910 && def
->iteration
== (lang_statement_iteration
& 1)
911 && (h
= bfd_wrapped_link_hash_lookup (link_info
.output_bfd
,
914 FALSE
, FALSE
, TRUE
)) != NULL
915 && h
->type
== bfd_link_hash_defined
916 && h
->u
.def
.section
== bfd_abs_section_ptr
917 && h
->u
.def
.value
== val
);
920 /* Return true if TREE is ". != 0". */
923 is_dot_ne_0 (const etree_type
*tree
)
925 return (tree
->type
.node_class
== etree_binary
926 && tree
->type
.node_code
== NE
927 && is_dot (tree
->binary
.lhs
)
928 && is_value (tree
->binary
.rhs
, 0));
931 /* Return true if TREE is ". = . + 0" or ". = . + sym" where sym is an
932 absolute constant with value 0 defined in a linker script. */
935 is_dot_plus_0 (const etree_type
*tree
)
937 return (tree
->type
.node_class
== etree_binary
938 && tree
->type
.node_code
== '+'
939 && is_dot (tree
->binary
.lhs
)
940 && (is_value (tree
->binary
.rhs
, 0)
941 || is_sym_value (tree
->binary
.rhs
, 0)));
944 /* Return true if TREE is "ALIGN (. != 0 ? some_expression : 1)". */
947 is_align_conditional (const etree_type
*tree
)
949 if (tree
->type
.node_class
== etree_unary
950 && tree
->type
.node_code
== ALIGN_K
)
952 tree
= tree
->unary
.child
;
953 return (tree
->type
.node_class
== etree_trinary
954 && is_dot_ne_0 (tree
->trinary
.cond
)
955 && is_value (tree
->trinary
.rhs
, 1));
961 exp_fold_tree_1 (etree_type
*tree
)
965 memset (&expld
.result
, 0, sizeof (expld
.result
));
969 switch (tree
->type
.node_class
)
972 if (expld
.section
== bfd_abs_section_ptr
973 && !config
.sane_expr
)
974 new_abs (tree
->value
.value
);
976 new_number (tree
->value
.value
);
977 expld
.result
.str
= tree
->value
.str
;
981 if (expld
.phase
!= lang_first_phase_enum
)
983 asection
*output_section
= tree
->rel
.section
->output_section
;
984 new_rel (tree
->rel
.value
+ tree
->rel
.section
->output_offset
,
988 memset (&expld
.result
, 0, sizeof (expld
.result
));
992 exp_fold_tree_1 (tree
->assert_s
.child
);
993 if (expld
.phase
== lang_final_phase_enum
&& !expld
.result
.value
)
994 einfo ("%X%P: %s\n", tree
->assert_s
.message
);
1006 fold_trinary (tree
);
1011 case etree_provided
:
1012 if (tree
->assign
.dst
[0] == '.' && tree
->assign
.dst
[1] == 0)
1014 if (tree
->type
.node_class
!= etree_assign
)
1015 einfo (_("%F%S can not PROVIDE assignment to"
1016 " location counter\n"), tree
);
1017 if (expld
.phase
!= lang_first_phase_enum
)
1019 /* Notify the folder that this is an assignment to dot. */
1020 expld
.assigning_to_dot
= TRUE
;
1021 exp_fold_tree_1 (tree
->assign
.src
);
1022 expld
.assigning_to_dot
= FALSE
;
1024 /* If we are assigning to dot inside an output section
1025 arrange to keep the section, except for certain
1026 expressions that evaluate to zero. We ignore . = 0,
1027 . = . + 0, and . = ALIGN (. != 0 ? expr : 1). */
1028 if (expld
.phase
== lang_mark_phase_enum
1029 && expld
.section
!= bfd_abs_section_ptr
1030 && !(expld
.result
.valid_p
1031 && expld
.result
.value
== 0
1032 && (is_value (tree
->assign
.src
, 0)
1033 || is_sym_value (tree
->assign
.src
, 0)
1034 || is_dot_plus_0 (tree
->assign
.src
)
1035 || is_align_conditional (tree
->assign
.src
))))
1036 expld
.section
->flags
|= SEC_KEEP
;
1038 if (!expld
.result
.valid_p
)
1040 if (expld
.phase
!= lang_mark_phase_enum
)
1041 einfo (_("%F%S invalid assignment to"
1042 " location counter\n"), tree
);
1044 else if (expld
.dotp
== NULL
)
1045 einfo (_("%F%S assignment to location counter"
1046 " invalid outside of SECTIONS\n"), tree
);
1048 /* After allocation, assignment to dot should not be
1049 done inside an output section since allocation adds a
1050 padding statement that effectively duplicates the
1052 else if (expld
.phase
<= lang_allocating_phase_enum
1053 || expld
.section
== bfd_abs_section_ptr
)
1057 nextdot
= expld
.result
.value
;
1058 if (expld
.result
.section
!= NULL
)
1059 nextdot
+= expld
.result
.section
->vma
;
1061 nextdot
+= expld
.section
->vma
;
1062 if (nextdot
< expld
.dot
1063 && expld
.section
!= bfd_abs_section_ptr
)
1064 einfo (_("%F%S cannot move location counter backwards"
1065 " (from %V to %V)\n"),
1066 tree
, expld
.dot
, nextdot
);
1069 expld
.dot
= nextdot
;
1070 *expld
.dotp
= nextdot
;
1075 memset (&expld
.result
, 0, sizeof (expld
.result
));
1079 struct bfd_link_hash_entry
*h
= NULL
;
1081 if (tree
->type
.node_class
== etree_provide
)
1083 h
= bfd_link_hash_lookup (link_info
.hash
, tree
->assign
.dst
,
1084 FALSE
, FALSE
, TRUE
);
1086 || !(h
->type
== bfd_link_hash_new
1087 || h
->type
== bfd_link_hash_undefined
1090 /* Do nothing. The symbol was never referenced, or
1091 was defined in some object file. Undefined weak
1092 symbols stay undefined. */
1097 expld
.assign_name
= tree
->assign
.dst
;
1098 exp_fold_tree_1 (tree
->assign
.src
);
1099 /* expld.assign_name remaining equal to tree->assign.dst
1100 below indicates the evaluation of tree->assign.src did
1101 not use the value of tree->assign.dst. We don't allow
1102 self assignment until the final phase for two reasons:
1103 1) Expressions are evaluated multiple times. With
1104 relaxation, the number of times may vary.
1105 2) Section relative symbol values cannot be correctly
1106 converted to absolute values, as is required by many
1107 expressions, until final section sizing is complete. */
1108 if ((expld
.result
.valid_p
1109 && (expld
.phase
== lang_final_phase_enum
1110 || expld
.assign_name
!= NULL
))
1111 || (expld
.phase
<= lang_mark_phase_enum
1112 && tree
->type
.node_class
== etree_assign
1113 && tree
->assign
.defsym
))
1117 h
= bfd_link_hash_lookup (link_info
.hash
, tree
->assign
.dst
,
1120 einfo (_("%P%F:%s: hash creation failed\n"),
1124 if (expld
.result
.section
== NULL
)
1125 expld
.result
.section
= expld
.section
;
1126 if (!update_definedness (tree
->assign
.dst
, h
) && 0)
1128 /* Symbol was already defined. For now this error
1129 is disabled because it causes failures in the ld
1130 testsuite: ld-elf/var1, ld-scripts/defined5, and
1131 ld-scripts/pr14962. Some of these no doubt
1132 reflect scripts used in the wild. */
1133 (*link_info
.callbacks
->multiple_definition
)
1134 (&link_info
, h
, link_info
.output_bfd
,
1135 expld
.result
.section
, expld
.result
.value
);
1137 h
->type
= bfd_link_hash_defined
;
1138 h
->u
.def
.value
= expld
.result
.value
;
1139 h
->u
.def
.section
= expld
.result
.section
;
1140 if (tree
->type
.node_class
== etree_provide
)
1141 tree
->type
.node_class
= etree_provided
;
1143 /* Copy the symbol type if this is a simple assignment of
1144 one symbol to another. This could be more general
1145 (e.g. a ?: operator with NAMEs in each branch). */
1146 if (tree
->assign
.src
->type
.node_class
== etree_name
)
1148 struct bfd_link_hash_entry
*hsrc
;
1150 hsrc
= bfd_link_hash_lookup (link_info
.hash
,
1151 tree
->assign
.src
->name
.name
,
1152 FALSE
, FALSE
, TRUE
);
1154 bfd_copy_link_hash_symbol_type (link_info
.output_bfd
, h
,
1158 else if (expld
.phase
== lang_final_phase_enum
)
1160 h
= bfd_link_hash_lookup (link_info
.hash
, tree
->assign
.dst
,
1161 FALSE
, FALSE
, TRUE
);
1163 && h
->type
== bfd_link_hash_new
)
1164 h
->type
= bfd_link_hash_undefined
;
1166 expld
.assign_name
= NULL
;
1176 memset (&expld
.result
, 0, sizeof (expld
.result
));
1182 exp_fold_tree (etree_type
*tree
, asection
*current_section
, bfd_vma
*dotp
)
1186 expld
.section
= current_section
;
1187 exp_fold_tree_1 (tree
);
1191 exp_fold_tree_no_dot (etree_type
*tree
)
1195 expld
.section
= bfd_abs_section_ptr
;
1196 exp_fold_tree_1 (tree
);
1200 exp_binop (int code
, etree_type
*lhs
, etree_type
*rhs
)
1202 etree_type value
, *new_e
;
1204 value
.type
.node_code
= code
;
1205 value
.type
.filename
= lhs
->type
.filename
;
1206 value
.type
.lineno
= lhs
->type
.lineno
;
1207 value
.binary
.lhs
= lhs
;
1208 value
.binary
.rhs
= rhs
;
1209 value
.type
.node_class
= etree_binary
;
1210 exp_fold_tree_no_dot (&value
);
1211 if (expld
.result
.valid_p
)
1212 return exp_intop (expld
.result
.value
);
1214 new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->binary
));
1215 memcpy (new_e
, &value
, sizeof (new_e
->binary
));
1220 exp_trinop (int code
, etree_type
*cond
, etree_type
*lhs
, etree_type
*rhs
)
1222 etree_type value
, *new_e
;
1224 value
.type
.node_code
= code
;
1225 value
.type
.filename
= cond
->type
.filename
;
1226 value
.type
.lineno
= cond
->type
.lineno
;
1227 value
.trinary
.lhs
= lhs
;
1228 value
.trinary
.cond
= cond
;
1229 value
.trinary
.rhs
= rhs
;
1230 value
.type
.node_class
= etree_trinary
;
1231 exp_fold_tree_no_dot (&value
);
1232 if (expld
.result
.valid_p
)
1233 return exp_intop (expld
.result
.value
);
1235 new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->trinary
));
1236 memcpy (new_e
, &value
, sizeof (new_e
->trinary
));
1241 exp_unop (int code
, etree_type
*child
)
1243 etree_type value
, *new_e
;
1245 value
.unary
.type
.node_code
= code
;
1246 value
.unary
.type
.filename
= child
->type
.filename
;
1247 value
.unary
.type
.lineno
= child
->type
.lineno
;
1248 value
.unary
.child
= child
;
1249 value
.unary
.type
.node_class
= etree_unary
;
1250 exp_fold_tree_no_dot (&value
);
1251 if (expld
.result
.valid_p
)
1252 return exp_intop (expld
.result
.value
);
1254 new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->unary
));
1255 memcpy (new_e
, &value
, sizeof (new_e
->unary
));
1260 exp_nameop (int code
, const char *name
)
1262 etree_type value
, *new_e
;
1264 value
.name
.type
.node_code
= code
;
1265 value
.name
.type
.filename
= ldlex_filename ();
1266 value
.name
.type
.lineno
= lineno
;
1267 value
.name
.name
= name
;
1268 value
.name
.type
.node_class
= etree_name
;
1270 exp_fold_tree_no_dot (&value
);
1271 if (expld
.result
.valid_p
)
1272 return exp_intop (expld
.result
.value
);
1274 new_e
= (etree_type
*) stat_alloc (sizeof (new_e
->name
));
1275 memcpy (new_e
, &value
, sizeof (new_e
->name
));
1281 exp_assop (const char *dst
,
1283 enum node_tree_enum
class,
1289 n
= (etree_type
*) stat_alloc (sizeof (n
->assign
));
1290 n
->assign
.type
.node_code
= '=';
1291 n
->assign
.type
.filename
= src
->type
.filename
;
1292 n
->assign
.type
.lineno
= src
->type
.lineno
;
1293 n
->assign
.type
.node_class
= class;
1294 n
->assign
.src
= src
;
1295 n
->assign
.dst
= dst
;
1296 n
->assign
.defsym
= defsym
;
1297 n
->assign
.hidden
= hidden
;
1301 /* Handle linker script assignments and HIDDEN. */
1304 exp_assign (const char *dst
, etree_type
*src
, bfd_boolean hidden
)
1306 return exp_assop (dst
, src
, etree_assign
, FALSE
, hidden
);
1309 /* Handle --defsym command-line option. */
1312 exp_defsym (const char *dst
, etree_type
*src
)
1314 return exp_assop (dst
, src
, etree_assign
, TRUE
, FALSE
);
1317 /* Handle PROVIDE. */
1320 exp_provide (const char *dst
, etree_type
*src
, bfd_boolean hidden
)
1322 return exp_assop (dst
, src
, etree_provide
, FALSE
, hidden
);
1325 /* Handle ASSERT. */
1328 exp_assert (etree_type
*exp
, const char *message
)
1332 n
= (etree_type
*) stat_alloc (sizeof (n
->assert_s
));
1333 n
->assert_s
.type
.node_code
= '!';
1334 n
->assert_s
.type
.filename
= exp
->type
.filename
;
1335 n
->assert_s
.type
.lineno
= exp
->type
.lineno
;
1336 n
->assert_s
.type
.node_class
= etree_assert
;
1337 n
->assert_s
.child
= exp
;
1338 n
->assert_s
.message
= message
;
1343 exp_print_tree (etree_type
*tree
)
1345 bfd_boolean function_like
;
1347 if (config
.map_file
== NULL
)
1348 config
.map_file
= stderr
;
1352 minfo ("NULL TREE\n");
1356 switch (tree
->type
.node_class
)
1359 minfo ("0x%v", tree
->value
.value
);
1362 if (tree
->rel
.section
->owner
!= NULL
)
1363 minfo ("%B:", tree
->rel
.section
->owner
);
1364 minfo ("%s+0x%v", tree
->rel
.section
->name
, tree
->rel
.value
);
1367 fputs (tree
->assign
.dst
, config
.map_file
);
1368 exp_print_token (tree
->type
.node_code
, TRUE
);
1369 exp_print_tree (tree
->assign
.src
);
1372 case etree_provided
:
1373 fprintf (config
.map_file
, "PROVIDE (%s, ", tree
->assign
.dst
);
1374 exp_print_tree (tree
->assign
.src
);
1375 fputc (')', config
.map_file
);
1378 function_like
= FALSE
;
1379 switch (tree
->type
.node_code
)
1384 case DATA_SEGMENT_ALIGN
:
1385 case DATA_SEGMENT_RELRO_END
:
1386 function_like
= TRUE
;
1389 /* Special handling because arguments are in reverse order and
1390 the segment name is quoted. */
1391 exp_print_token (tree
->type
.node_code
, FALSE
);
1392 fputs (" (\"", config
.map_file
);
1393 exp_print_tree (tree
->binary
.rhs
);
1394 fputs ("\", ", config
.map_file
);
1395 exp_print_tree (tree
->binary
.lhs
);
1396 fputc (')', config
.map_file
);
1401 exp_print_token (tree
->type
.node_code
, FALSE
);
1402 fputc (' ', config
.map_file
);
1404 fputc ('(', config
.map_file
);
1405 exp_print_tree (tree
->binary
.lhs
);
1407 fprintf (config
.map_file
, ", ");
1409 exp_print_token (tree
->type
.node_code
, TRUE
);
1410 exp_print_tree (tree
->binary
.rhs
);
1411 fputc (')', config
.map_file
);
1414 exp_print_tree (tree
->trinary
.cond
);
1415 fputc ('?', config
.map_file
);
1416 exp_print_tree (tree
->trinary
.lhs
);
1417 fputc (':', config
.map_file
);
1418 exp_print_tree (tree
->trinary
.rhs
);
1421 exp_print_token (tree
->unary
.type
.node_code
, FALSE
);
1422 if (tree
->unary
.child
)
1424 fprintf (config
.map_file
, " (");
1425 exp_print_tree (tree
->unary
.child
);
1426 fputc (')', config
.map_file
);
1431 fprintf (config
.map_file
, "ASSERT (");
1432 exp_print_tree (tree
->assert_s
.child
);
1433 fprintf (config
.map_file
, ", %s)", tree
->assert_s
.message
);
1437 if (tree
->type
.node_code
== NAME
)
1438 fputs (tree
->name
.name
, config
.map_file
);
1441 exp_print_token (tree
->type
.node_code
, FALSE
);
1442 if (tree
->name
.name
)
1443 fprintf (config
.map_file
, " (%s)", tree
->name
.name
);
1453 exp_get_vma (etree_type
*tree
, bfd_vma def
, char *name
)
1457 exp_fold_tree_no_dot (tree
);
1458 if (expld
.result
.valid_p
)
1459 return expld
.result
.value
;
1460 else if (name
!= NULL
&& expld
.phase
!= lang_mark_phase_enum
)
1461 einfo (_("%F%S: nonconstant expression for %s\n"),
1468 exp_get_value_int (etree_type
*tree
, int def
, char *name
)
1470 return exp_get_vma (tree
, def
, name
);
1474 exp_get_fill (etree_type
*tree
, fill_type
*def
, char *name
)
1483 exp_fold_tree_no_dot (tree
);
1484 if (!expld
.result
.valid_p
)
1486 if (name
!= NULL
&& expld
.phase
!= lang_mark_phase_enum
)
1487 einfo (_("%F%S: nonconstant expression for %s\n"),
1492 if (expld
.result
.str
!= NULL
&& (len
= strlen (expld
.result
.str
)) != 0)
1496 fill
= (fill_type
*) xmalloc ((len
+ 1) / 2 + sizeof (*fill
) - 1);
1497 fill
->size
= (len
+ 1) / 2;
1499 s
= (unsigned char *) expld
.result
.str
;
1507 digit
= (digit
- 'A' + '0' + 10) & 0xf;
1521 fill
= (fill_type
*) xmalloc (4 + sizeof (*fill
) - 1);
1522 val
= expld
.result
.value
;
1523 fill
->data
[0] = (val
>> 24) & 0xff;
1524 fill
->data
[1] = (val
>> 16) & 0xff;
1525 fill
->data
[2] = (val
>> 8) & 0xff;
1526 fill
->data
[3] = (val
>> 0) & 0xff;
1533 exp_get_abs_int (etree_type
*tree
, int def
, char *name
)
1537 exp_fold_tree_no_dot (tree
);
1539 if (expld
.result
.valid_p
)
1541 if (expld
.result
.section
!= NULL
)
1542 expld
.result
.value
+= expld
.result
.section
->vma
;
1543 return expld
.result
.value
;
1545 else if (name
!= NULL
&& expld
.phase
!= lang_mark_phase_enum
)
1547 einfo (_("%F%S: nonconstant expression for %s\n"),
1555 align_n (bfd_vma value
, bfd_vma align
)
1560 value
= (value
+ align
- 1) / align
;
1561 return value
* align
;
1567 /* The value "13" is ad-hoc, somewhat related to the expected number of
1568 assignments in a linker script. */
1569 if (!bfd_hash_table_init_n (&definedness_table
,
1570 definedness_newfunc
,
1571 sizeof (struct definedness_hash_entry
),
1573 einfo (_("%P%F: can not create hash table: %E\n"));
1579 bfd_hash_table_free (&definedness_table
);