1 /* ----------------------------------------------------------------------- *
3 * Copyright 1996-2013 The NASM Authors - All Rights Reserved
4 * See the file AUTHORS included with the NASM distribution for
5 * the specific copyright holders.
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following
11 * * Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * * Redistributions in binary form must reproduce the above
14 * copyright notice, this list of conditions and the following
15 * disclaimer in the documentation and/or other materials provided
16 * with the distribution.
18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
19 * CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
20 * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
21 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
22 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
23 * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
24 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
25 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
29 * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
30 * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 * ----------------------------------------------------------------------- */
35 * outbin.c output routines for the Netwide Assembler to produce
36 * flat-form binary files
39 /* This is the extended version of NASM's original binary output
40 * format. It is backward compatible with the original BIN format,
41 * and contains support for multiple sections and advanced section
46 * - Users can create an arbitrary number of sections; they are not
47 * limited to just ".text", ".data", and ".bss".
49 * - Sections can be either progbits or nobits type.
51 * - You can specify that they be aligned at a certian boundary
52 * following the previous section ("align="), or positioned at an
53 * arbitrary byte-granular location ("start=").
55 * - You can specify a "virtual" start address for a section, which
56 * will be used for the calculation for all address references
57 * with respect to that section ("vstart=").
59 * - The ORG directive, as well as the section/segment directive
60 * arguments ("align=", "start=", "vstart="), can take a critical
61 * expression as their value. For example: "align=(1 << 12)".
63 * - You can generate map files using the 'map' directive.
67 /* Uncomment the following define if you want sections to adapt
68 * their progbits/nobits state depending on what type of
69 * instructions are issued, rather than defaulting to progbits.
70 * Note that this behavior violates the specification.
72 #define ABIN_SMART_ADAPT
90 #include "output/outform.h"
91 #include "output/outlib.h"
95 static FILE *rf
= NULL
;
96 static void (*do_output
)(void);
98 /* Section flags keep track of which attributes the user has defined. */
99 #define START_DEFINED 0x001
100 #define ALIGN_DEFINED 0x002
101 #define FOLLOWS_DEFINED 0x004
102 #define VSTART_DEFINED 0x008
103 #define VALIGN_DEFINED 0x010
104 #define VFOLLOWS_DEFINED 0x020
105 #define TYPE_DEFINED 0x040
106 #define TYPE_PROGBITS 0x080
107 #define TYPE_NOBITS 0x100
109 /* This struct is used to keep track of symbols for map-file generation. */
110 static struct bin_label
{
112 struct bin_label
*next
;
113 } *no_seg_labels
, **nsl_tail
;
115 static struct Section
{
117 struct SAA
*contents
;
118 int64_t length
; /* section length in bytes */
120 /* Section attributes */
121 int flags
; /* see flag definitions above */
122 uint64_t align
; /* section alignment */
123 uint64_t valign
; /* notional section alignment */
124 uint64_t start
; /* section start address */
125 uint64_t vstart
; /* section virtual start address */
126 char *follows
; /* the section that this one will follow */
127 char *vfollows
; /* the section that this one will notionally follow */
128 int32_t start_index
; /* NASM section id for non-relocated version */
129 int32_t vstart_index
; /* the NASM section id */
131 struct bin_label
*labels
; /* linked-list of label handles for map output. */
132 struct bin_label
**labels_end
; /* Holds address of end of labels list. */
133 struct Section
*prev
; /* Points to previous section (implicit follows). */
134 struct Section
*next
; /* This links sections with a defined start address. */
136 /* The extended bin format allows for sections to have a "virtual"
137 * start address. This is accomplished by creating two sections:
138 * one beginning at the Load Memory Address and the other beginning
139 * at the Virtual Memory Address. The LMA section is only used to
140 * define the section.<section_name>.start label, but there isn't
141 * any other good way for us to handle that label.
144 } *sections
, *last_section
;
146 static struct Reloc
{
152 struct Section
*target
;
153 } *relocs
, **reloctail
;
155 static uint64_t origin
;
156 static int origin_defined
;
158 /* Stuff we need for map-file generation. */
160 #define MAP_SUMMARY 2
161 #define MAP_SECTIONS 4
162 #define MAP_SYMBOLS 8
163 static int map_control
= 0;
164 static char *infile
, *outfile
;
166 extern macros_t bin_stdmac
[];
168 static void add_reloc(struct Section
*s
, int32_t bytes
, int32_t secref
,
173 r
= *reloctail
= nasm_malloc(sizeof(struct Reloc
));
174 reloctail
= &r
->next
;
183 static struct Section
*find_section_by_name(const char *name
)
187 list_for_each(s
, sections
)
188 if (!strcmp(s
->name
, name
))
193 static struct Section
*find_section_by_index(int32_t index
)
197 list_for_each(s
, sections
)
198 if ((index
== s
->vstart_index
) || (index
== s
->start_index
))
203 static struct Section
*create_section(char *name
)
205 struct Section
*s
= nasm_zalloc(sizeof(*s
));
207 s
->prev
= last_section
;
208 s
->name
= nasm_strdup(name
);
209 s
->labels_end
= &(s
->labels
);
210 s
->contents
= saa_init(1L);
212 /* Register our sections with NASM. */
213 s
->vstart_index
= seg_alloc();
214 s
->start_index
= seg_alloc();
216 /* FIXME: Append to a tail, we need some helper */
217 last_section
->next
= s
;
223 static void bin_cleanup(int debuginfo
)
225 struct Section
*g
, **gp
;
226 struct Section
*gs
= NULL
, **gsp
;
227 struct Section
*s
, **sp
;
228 struct Section
*nobits
= NULL
, **nt
;
229 struct Section
*last_progbits
;
235 (void)debuginfo
; /* placate optimizers */
238 nasm_error(ERR_DEBUG
,
239 "bin_cleanup: Sections were initially referenced in this order:\n");
240 for (h
= 0, s
= sections
; s
; h
++, s
= s
->next
)
241 fprintf(stdout
, "%i. %s\n", h
, s
->name
);
244 /* Assembly has completed, so now we need to generate the output file.
245 * Step 1: Separate progbits and nobits sections into separate lists.
246 * Step 2: Sort the progbits sections into their output order.
247 * Step 3: Compute start addresses for all progbits sections.
248 * Step 4: Compute vstart addresses for all sections.
249 * Step 5: Apply relocations.
250 * Step 6: Write the sections' data to the output file.
251 * Step 7: Generate the map file.
252 * Step 8: Release all allocated memory.
255 /* To do: Smart section-type adaptation could leave some empty sections
256 * without a defined type (progbits/nobits). Won't fix now since this
257 * feature will be disabled. */
259 /* Step 1: Split progbits and nobits sections into separate lists. */
262 /* Move nobits sections into a separate list. Also pre-process nobits
263 * sections' attributes. */
264 for (sp
= §ions
->next
, s
= sections
->next
; s
; s
= *sp
) { /* Skip progbits sections. */
265 if (s
->flags
& TYPE_PROGBITS
) {
269 /* Do some special pre-processing on nobits sections' attributes. */
270 if (s
->flags
& (START_DEFINED
| ALIGN_DEFINED
| FOLLOWS_DEFINED
)) { /* Check for a mixture of real and virtual section attributes. */
271 if (s
->flags
& (VSTART_DEFINED
| VALIGN_DEFINED
|
273 nasm_error(ERR_FATAL
|ERR_NOFILE
,
274 "cannot mix real and virtual attributes"
275 " in nobits section (%s)", s
->name
);
276 /* Real and virtual attributes mean the same thing for nobits sections. */
277 if (s
->flags
& START_DEFINED
) {
278 s
->vstart
= s
->start
;
279 s
->flags
|= VSTART_DEFINED
;
281 if (s
->flags
& ALIGN_DEFINED
) {
282 s
->valign
= s
->align
;
283 s
->flags
|= VALIGN_DEFINED
;
285 if (s
->flags
& FOLLOWS_DEFINED
) {
286 s
->vfollows
= s
->follows
;
287 s
->flags
|= VFOLLOWS_DEFINED
;
288 s
->flags
&= ~FOLLOWS_DEFINED
;
291 /* Every section must have a start address. */
292 if (s
->flags
& VSTART_DEFINED
) {
293 s
->start
= s
->vstart
;
294 s
->flags
|= START_DEFINED
;
296 /* Move the section into the nobits list. */
303 /* Step 2: Sort the progbits sections into their output order. */
305 /* In Step 2 we move around sections in groups. A group
306 * begins with a section (group leader) that has a user-
307 * defined start address or follows section. The remainder
308 * of the group is made up of the sections that implicitly
309 * follow the group leader (i.e., they were defined after
310 * the group leader and were not given an explicit start
311 * address or follows section by the user). */
313 /* For anyone attempting to read this code:
314 * g (group) points to a group of sections, the first one of which has
315 * a user-defined start address or follows section.
316 * gp (g previous) holds the location of the pointer to g.
317 * gs (g scan) is a temp variable that we use to scan to the end of the group.
318 * gsp (gs previous) holds the location of the pointer to gs.
319 * nt (nobits tail) points to the nobits section-list tail.
322 /* Link all 'follows' groups to their proper position. To do
323 * this we need to know three things: the start of the group
324 * to relocate (g), the section it is following (s), and the
325 * end of the group we're relocating (gs). */
326 for (gp
= §ions
, g
= sections
; g
; g
= gs
) { /* Find the next follows group that is out of place (g). */
327 if (!(g
->flags
& FOLLOWS_DEFINED
)) {
329 if ((g
->next
->flags
& FOLLOWS_DEFINED
) &&
330 strcmp(g
->name
, g
->next
->follows
))
339 /* Find the section that this group follows (s). */
340 for (sp
= §ions
, s
= sections
;
341 s
&& strcmp(s
->name
, g
->follows
);
342 sp
= &s
->next
, s
= s
->next
) ;
344 nasm_error(ERR_FATAL
|ERR_NOFILE
, "section %s follows an invalid or"
345 " unknown section (%s)", g
->name
, g
->follows
);
346 if (s
->next
&& (s
->next
->flags
& FOLLOWS_DEFINED
) &&
347 !strcmp(s
->name
, s
->next
->follows
))
348 nasm_error(ERR_FATAL
|ERR_NOFILE
, "sections %s and %s can't both follow"
349 " section %s", g
->name
, s
->next
->name
, s
->name
);
350 /* Find the end of the current follows group (gs). */
351 for (gsp
= &g
->next
, gs
= g
->next
;
352 gs
&& (gs
!= s
) && !(gs
->flags
& START_DEFINED
);
353 gsp
= &gs
->next
, gs
= gs
->next
) {
354 if (gs
->next
&& (gs
->next
->flags
& FOLLOWS_DEFINED
) &&
355 strcmp(gs
->name
, gs
->next
->follows
)) {
361 /* Re-link the group after its follows section. */
367 /* Link all 'start' groups to their proper position. Once
368 * again we need to know g, s, and gs (see above). The main
369 * difference is we already know g since we sort by moving
370 * groups from the 'unsorted' list into a 'sorted' list (g
371 * will always be the first section in the unsorted list). */
372 for (g
= sections
, sections
= NULL
; g
; g
= gs
) { /* Find the section that we will insert this group before (s). */
373 for (sp
= §ions
, s
= sections
; s
; sp
= &s
->next
, s
= s
->next
)
374 if ((s
->flags
& START_DEFINED
) && (g
->start
< s
->start
))
376 /* Find the end of the group (gs). */
377 for (gs
= g
->next
, gsp
= &g
->next
;
378 gs
&& !(gs
->flags
& START_DEFINED
);
379 gsp
= &gs
->next
, gs
= gs
->next
) ;
380 /* Re-link the group before the target section. */
385 /* Step 3: Compute start addresses for all progbits sections. */
387 /* Make sure we have an origin and a start address for the first section. */
388 if (origin_defined
) {
389 if (sections
->flags
& START_DEFINED
) {
390 /* Make sure this section doesn't begin before the origin. */
391 if (sections
->start
< origin
)
392 nasm_error(ERR_FATAL
|ERR_NOFILE
, "section %s begins"
393 " before program origin", sections
->name
);
394 } else if (sections
->flags
& ALIGN_DEFINED
) {
395 sections
->start
= ALIGN(origin
, sections
->align
);
397 sections
->start
= origin
;
400 if (!(sections
->flags
& START_DEFINED
))
402 origin
= sections
->start
;
404 sections
->flags
|= START_DEFINED
;
406 /* Make sure each section has an explicit start address. If it
407 * doesn't, then compute one based its alignment and the end of
408 * the previous section. */
409 for (pend
= sections
->start
, g
= s
= sections
; g
; g
= g
->next
) { /* Find the next section that could cause an overlap situation
410 * (has a defined start address, and is not zero length). */
413 s
&& ((s
->length
== 0) || !(s
->flags
& START_DEFINED
));
415 /* Compute the start address of this section, if necessary. */
416 if (!(g
->flags
& START_DEFINED
)) { /* Default to an alignment of 4 if unspecified. */
417 if (!(g
->flags
& ALIGN_DEFINED
)) {
419 g
->flags
|= ALIGN_DEFINED
;
421 /* Set the section start address. */
422 g
->start
= ALIGN(pend
, g
->align
);
423 g
->flags
|= START_DEFINED
;
425 /* Ugly special case for progbits sections' virtual attributes:
426 * If there is a defined valign, but no vstart and no vfollows, then
427 * we valign after the previous progbits section. This case doesn't
428 * really make much sense for progbits sections with a defined start
429 * address, but it is possible and we must do *something*.
430 * Not-so-ugly special case:
431 * If a progbits section has no virtual attributes, we set the
432 * vstart equal to the start address. */
433 if (!(g
->flags
& (VSTART_DEFINED
| VFOLLOWS_DEFINED
))) {
434 if (g
->flags
& VALIGN_DEFINED
)
435 g
->vstart
= ALIGN(pend
, g
->valign
);
437 g
->vstart
= g
->start
;
438 g
->flags
|= VSTART_DEFINED
;
440 /* Ignore zero-length sections. */
443 /* Compute the span of this section. */
444 pend
= g
->start
+ g
->length
;
445 /* Check for section overlap. */
447 if (s
->start
< origin
)
448 nasm_error(ERR_FATAL
|ERR_NOFILE
, "section %s beings before program origin",
450 if (g
->start
> s
->start
)
451 nasm_error(ERR_FATAL
|ERR_NOFILE
, "sections %s ~ %s and %s overlap!",
452 gs
->name
, g
->name
, s
->name
);
454 nasm_error(ERR_FATAL
|ERR_NOFILE
, "sections %s and %s overlap!",
457 /* Remember this section as the latest >0 length section. */
461 /* Step 4: Compute vstart addresses for all sections. */
463 /* Attach the nobits sections to the end of the progbits sections. */
464 for (s
= sections
; s
->next
; s
= s
->next
) ;
468 * Scan for sections that don't have a vstart address. If we find
469 * one we'll attempt to compute its vstart. If we can't compute
470 * the vstart, we leave it alone and come back to it in a
471 * subsequent scan. We continue scanning and re-scanning until
472 * we've gone one full cycle without computing any vstarts.
474 do { /* Do one full scan of the sections list. */
475 for (h
= 0, g
= sections
; g
; g
= g
->next
) {
476 if (g
->flags
& VSTART_DEFINED
)
478 /* Find the section that this one virtually follows. */
479 if (g
->flags
& VFOLLOWS_DEFINED
) {
480 for (s
= sections
; s
&& strcmp(g
->vfollows
, s
->name
);
483 nasm_error(ERR_FATAL
|ERR_NOFILE
,
484 "section %s vfollows unknown section (%s)",
485 g
->name
, g
->vfollows
);
486 } else if (g
->prev
!= NULL
)
487 for (s
= sections
; s
&& (s
!= g
->prev
); s
= s
->next
) ;
488 /* The .bss section is the only one with prev = NULL.
489 In this case we implicitly follow the last progbits
494 /* If the section we're following has a vstart, we can proceed. */
495 if (s
->flags
& VSTART_DEFINED
) { /* Default to virtual alignment of four. */
496 if (!(g
->flags
& VALIGN_DEFINED
)) {
498 g
->flags
|= VALIGN_DEFINED
;
500 /* Compute the vstart address. */
501 g
->vstart
= ALIGN(s
->vstart
+ s
->length
, g
->valign
);
502 g
->flags
|= VSTART_DEFINED
;
504 /* Start and vstart mean the same thing for nobits sections. */
505 if (g
->flags
& TYPE_NOBITS
)
506 g
->start
= g
->vstart
;
511 /* Now check for any circular vfollows references, which will manifest
512 * themselves as sections without a defined vstart. */
513 for (h
= 0, s
= sections
; s
; s
= s
->next
) {
514 if (!(s
->flags
& VSTART_DEFINED
)) { /* Non-fatal errors after assembly has completed are generally a
515 * no-no, but we'll throw a fatal one eventually so it's ok. */
516 nasm_error(ERR_NONFATAL
, "cannot compute vstart for section %s",
522 nasm_error(ERR_FATAL
|ERR_NOFILE
, "circular vfollows path detected");
525 nasm_error(ERR_DEBUG
,
526 "bin_cleanup: Confirm final section order for output file:\n");
527 for (h
= 0, s
= sections
; s
&& (s
->flags
& TYPE_PROGBITS
);
529 fprintf(stdout
, "%i. %s\n", h
, s
->name
);
532 /* Step 5: Apply relocations. */
534 /* Prepare the sections for relocating. */
535 list_for_each(s
, sections
)
536 saa_rewind(s
->contents
);
537 /* Apply relocations. */
538 list_for_each(r
, relocs
) {
539 uint8_t *p
, mydata
[8];
543 nasm_assert(r
->bytes
<= 8);
545 memset(mydata
, 0, sizeof(mydata
));
547 saa_fread(r
->target
->contents
, r
->posn
, mydata
, r
->bytes
);
550 for (b
= r
->bytes
- 1; b
>= 0; b
--)
551 l
= (l
<< 8) + mydata
[b
];
553 s
= find_section_by_index(r
->secref
);
555 if (r
->secref
== s
->start_index
)
560 s
= find_section_by_index(r
->secrel
);
562 if (r
->secrel
== s
->start_index
)
568 WRITEADDR(p
, l
, r
->bytes
);
569 saa_fwrite(r
->target
->contents
, r
->posn
, mydata
, r
->bytes
);
572 /* Step 6: Write the section data to the output file. */
575 /* Step 7: Generate the map file. */
578 static const char not_defined
[] = "not defined";
580 /* Display input and output file names. */
581 fprintf(rf
, "\n- NASM Map file ");
584 fprintf(rf
, "\n\nSource file: %s\nOutput file: %s\n\n",
587 if (map_control
& MAP_ORIGIN
) { /* Display program origin. */
588 fprintf(rf
, "-- Program origin ");
591 fprintf(rf
, "\n\n%08"PRIX64
"\n\n", origin
);
593 /* Display sections summary. */
594 if (map_control
& MAP_SUMMARY
) {
595 fprintf(rf
, "-- Sections (summary) ");
598 fprintf(rf
, "\n\nVstart Start Stop "
599 "Length Class Name\n");
600 list_for_each(s
, sections
) {
601 fprintf(rf
, "%16"PRIX64
" %16"PRIX64
" %16"PRIX64
" %08"PRIX64
" ",
602 s
->vstart
, s
->start
, s
->start
+ s
->length
,
604 if (s
->flags
& TYPE_PROGBITS
)
605 fprintf(rf
, "progbits ");
607 fprintf(rf
, "nobits ");
608 fprintf(rf
, "%s\n", s
->name
);
612 /* Display detailed section information. */
613 if (map_control
& MAP_SECTIONS
) {
614 fprintf(rf
, "-- Sections (detailed) ");
618 list_for_each(s
, sections
) {
619 fprintf(rf
, "---- Section %s ", s
->name
);
620 for (h
= 65 - strlen(s
->name
); h
; h
--)
622 fprintf(rf
, "\n\nclass: ");
623 if (s
->flags
& TYPE_PROGBITS
)
624 fprintf(rf
, "progbits");
626 fprintf(rf
, "nobits");
627 fprintf(rf
, "\nlength: %16"PRIX64
"\nstart: %16"PRIX64
""
628 "\nalign: ", s
->length
, s
->start
);
629 if (s
->flags
& ALIGN_DEFINED
)
630 fprintf(rf
, "%16"PRIX64
"", s
->align
);
632 fputs(not_defined
, rf
);
633 fprintf(rf
, "\nfollows: ");
634 if (s
->flags
& FOLLOWS_DEFINED
)
635 fprintf(rf
, "%s", s
->follows
);
637 fputs(not_defined
, rf
);
638 fprintf(rf
, "\nvstart: %16"PRIX64
"\nvalign: ", s
->vstart
);
639 if (s
->flags
& VALIGN_DEFINED
)
640 fprintf(rf
, "%16"PRIX64
"", s
->valign
);
642 fputs(not_defined
, rf
);
643 fprintf(rf
, "\nvfollows: ");
644 if (s
->flags
& VFOLLOWS_DEFINED
)
645 fprintf(rf
, "%s", s
->vfollows
);
647 fputs(not_defined
, rf
);
651 /* Display symbols information. */
652 if (map_control
& MAP_SYMBOLS
) {
656 fprintf(rf
, "-- Symbols ");
661 fprintf(rf
, "---- No Section ");
664 fprintf(rf
, "\n\nValue Name\n");
665 list_for_each(l
, no_seg_labels
) {
666 lookup_label(l
->name
, &segment
, &offset
);
667 fprintf(rf
, "%08"PRIX64
" %s\n", offset
, l
->name
);
671 list_for_each(s
, sections
) {
673 fprintf(rf
, "---- Section %s ", s
->name
);
674 for (h
= 65 - strlen(s
->name
); h
; h
--)
676 fprintf(rf
, "\n\nReal Virtual Name\n");
677 list_for_each(l
, s
->labels
) {
678 lookup_label(l
->name
, &segment
, &offset
);
679 fprintf(rf
, "%16"PRIX64
" %16"PRIX64
" %s\n",
680 s
->start
+ offset
, s
->vstart
+ offset
,
689 /* Close the report file. */
690 if (map_control
&& (rf
!= stdout
) && (rf
!= stderr
))
693 /* Step 8: Release all allocated memory. */
695 /* Free sections, label pointer structs, etc.. */
699 saa_free(s
->contents
);
701 if (s
->flags
& FOLLOWS_DEFINED
)
702 nasm_free(s
->follows
);
703 if (s
->flags
& VFOLLOWS_DEFINED
)
704 nasm_free(s
->vfollows
);
713 /* Free no-section labels. */
714 while (no_seg_labels
) {
716 no_seg_labels
= l
->next
;
720 /* Free relocation structures. */
728 static void bin_out(int32_t segto
, const void *data
,
729 enum out_type type
, uint64_t size
,
730 int32_t segment
, int32_t wrt
)
732 uint8_t *p
, mydata
[8];
736 wrt
= NO_SEG
; /* continue to do _something_ */
737 nasm_error(ERR_NONFATAL
, "WRT not supported by binary output format");
740 /* Handle absolute-assembly (structure definitions). */
741 if (segto
== NO_SEG
) {
742 if (type
!= OUT_RESERVE
)
743 nasm_error(ERR_NONFATAL
, "attempt to assemble code in"
744 " [ABSOLUTE] space");
748 /* Find the segment we are targeting. */
749 s
= find_section_by_index(segto
);
751 nasm_error(ERR_PANIC
, "code directed to nonexistent segment?");
753 /* "Smart" section-type adaptation code. */
754 if (!(s
->flags
& TYPE_DEFINED
)) {
755 if (type
== OUT_RESERVE
)
756 s
->flags
|= TYPE_DEFINED
| TYPE_NOBITS
;
758 s
->flags
|= TYPE_DEFINED
| TYPE_PROGBITS
;
761 if ((s
->flags
& TYPE_NOBITS
) && (type
!= OUT_RESERVE
))
762 nasm_error(ERR_WARNING
, "attempt to initialize memory in a"
763 " nobits section: ignored");
768 int asize
= abs((int)size
);
770 if (segment
!= NO_SEG
&& !find_section_by_index(segment
)) {
772 nasm_error(ERR_NONFATAL
, "binary output format does not support"
773 " segment base references");
775 nasm_error(ERR_NONFATAL
, "binary output format does not support"
776 " external references");
779 if (s
->flags
& TYPE_PROGBITS
) {
780 if (segment
!= NO_SEG
)
781 add_reloc(s
, asize
, segment
, -1L);
783 WRITEADDR(p
, *(int64_t *)data
, asize
);
784 saa_wbytes(s
->contents
, mydata
, asize
);
788 * Reassign size with sign dropped, we will need it
789 * for section length calculation.
796 if (s
->flags
& TYPE_PROGBITS
)
797 saa_wbytes(s
->contents
, data
, size
);
801 if (s
->flags
& TYPE_PROGBITS
) {
802 nasm_error(ERR_WARNING
, "uninitialized space declared in"
803 " %s section: zeroing", s
->name
);
804 saa_wbytes(s
->contents
, NULL
, size
);
813 int64_t addr
= *(int64_t *)data
- size
;
814 size
= realsize(type
, size
);
815 if (segment
!= NO_SEG
&& !find_section_by_index(segment
)) {
817 nasm_error(ERR_NONFATAL
, "binary output format does not support"
818 " segment base references");
820 nasm_error(ERR_NONFATAL
, "binary output format does not support"
821 " external references");
824 if (s
->flags
& TYPE_PROGBITS
) {
825 add_reloc(s
, size
, segment
, segto
);
827 WRITEADDR(p
, addr
- s
->length
, size
);
828 saa_wbytes(s
->contents
, mydata
, size
);
834 nasm_error(ERR_NONFATAL
, "unsupported relocation type %d\n", type
);
841 static void bin_deflabel(char *name
, int32_t segment
, int64_t offset
,
842 int is_global
, char *special
)
844 (void)segment
; /* Don't warn that this parameter is unused */
845 (void)offset
; /* Don't warn that this parameter is unused */
848 nasm_error(ERR_NONFATAL
, "binary format does not support any"
849 " special symbol types");
850 else if (name
[0] == '.' && name
[1] == '.' && name
[2] != '@')
851 nasm_error(ERR_NONFATAL
, "unrecognised special symbol `%s'", name
);
852 else if (is_global
== 2)
853 nasm_error(ERR_NONFATAL
, "binary output format does not support common"
857 struct bin_label
***ltp
;
859 /* Remember label definition so we can look it up later when
860 * creating the map file. */
861 s
= find_section_by_index(segment
);
863 ltp
= &(s
->labels_end
);
866 (**ltp
) = nasm_malloc(sizeof(struct bin_label
));
867 (**ltp
)->name
= name
;
868 (**ltp
)->next
= NULL
;
869 *ltp
= &((**ltp
)->next
);
874 /* These constants and the following function are used
875 * by bin_secname() to parse attribute assignments. */
877 enum { ATTRIB_START
, ATTRIB_ALIGN
, ATTRIB_FOLLOWS
,
878 ATTRIB_VSTART
, ATTRIB_VALIGN
, ATTRIB_VFOLLOWS
,
879 ATTRIB_NOBITS
, ATTRIB_PROGBITS
882 static int bin_read_attribute(char **line
, int *attribute
,
886 int attrib_name_size
;
887 struct tokenval tokval
;
890 /* Skip whitespace. */
891 while (**line
&& nasm_isspace(**line
))
896 /* Figure out what attribute we're reading. */
897 if (!nasm_strnicmp(*line
, "align=", 6)) {
898 *attribute
= ATTRIB_ALIGN
;
899 attrib_name_size
= 6;
901 if (!nasm_strnicmp(*line
, "start=", 6)) {
902 *attribute
= ATTRIB_START
;
903 attrib_name_size
= 6;
904 } else if (!nasm_strnicmp(*line
, "follows=", 8)) {
905 *attribute
= ATTRIB_FOLLOWS
;
908 } else if (!nasm_strnicmp(*line
, "vstart=", 7)) {
909 *attribute
= ATTRIB_VSTART
;
910 attrib_name_size
= 7;
911 } else if (!nasm_strnicmp(*line
, "valign=", 7)) {
912 *attribute
= ATTRIB_VALIGN
;
913 attrib_name_size
= 7;
914 } else if (!nasm_strnicmp(*line
, "vfollows=", 9)) {
915 *attribute
= ATTRIB_VFOLLOWS
;
918 } else if (!nasm_strnicmp(*line
, "nobits", 6) &&
919 (nasm_isspace((*line
)[6]) || ((*line
)[6] == '\0'))) {
920 *attribute
= ATTRIB_NOBITS
;
923 } else if (!nasm_strnicmp(*line
, "progbits", 8) &&
924 (nasm_isspace((*line
)[8]) || ((*line
)[8] == '\0'))) {
925 *attribute
= ATTRIB_PROGBITS
;
932 /* Find the end of the expression. */
933 if ((*line
)[attrib_name_size
] != '(') {
934 /* Single term (no parenthesis). */
935 exp
= *line
+= attrib_name_size
;
936 while (**line
&& !nasm_isspace(**line
))
946 /* Full expression (delimited by parenthesis) */
947 exp
= *line
+= attrib_name_size
+ 1;
949 (*line
) += strcspn(*line
, "()'\"");
960 if ((**line
== '"') || (**line
== '\'')) {
968 nasm_error(ERR_NONFATAL
,
969 "invalid syntax in `section' directive");
975 nasm_error(ERR_NONFATAL
, "expecting `)'");
979 *(*line
- 1) = '\0'; /* Terminate the expression. */
982 /* Check for no value given. */
984 nasm_error(ERR_WARNING
, "No value given to attribute in"
985 " `section' directive");
989 /* Read and evaluate the expression. */
992 tokval
.t_type
= TOKEN_INVALID
;
993 e
= evaluate(stdscan
, NULL
, &tokval
, NULL
, 1, nasm_error
, NULL
);
995 if (!is_really_simple(e
)) {
996 nasm_error(ERR_NONFATAL
, "section attribute value must be"
997 " a critical expression");
1001 nasm_error(ERR_NONFATAL
, "Invalid attribute value"
1002 " specified in `section' directive.");
1005 *value
= (uint64_t)reloc_value(e
);
1009 static void bin_sectalign(int32_t seg
, unsigned int value
)
1011 struct Section
*s
= find_section_by_index(seg
);
1013 if (!s
|| !is_power2(value
))
1016 if (value
> s
->align
)
1019 if (!(s
->flags
& ALIGN_DEFINED
))
1020 s
->flags
|= ALIGN_DEFINED
;
1023 static void bin_assign_attributes(struct Section
*sec
, char *astring
)
1025 int attribute
, check
;
1029 while (1) { /* Get the next attribute. */
1030 check
= bin_read_attribute(&astring
, &attribute
, &value
);
1031 /* Skip bad attribute. */
1034 /* Unknown section attribute, so skip it and warn the user. */
1037 break; /* End of line. */
1040 while (*astring
&& !nasm_isspace(*astring
))
1046 nasm_error(ERR_WARNING
, "ignoring unknown section attribute:"
1052 switch (attribute
) { /* Handle nobits attribute. */
1054 if ((sec
->flags
& TYPE_DEFINED
)
1055 && (sec
->flags
& TYPE_PROGBITS
))
1056 nasm_error(ERR_NONFATAL
,
1057 "attempt to change section type"
1058 " from progbits to nobits");
1060 sec
->flags
|= TYPE_DEFINED
| TYPE_NOBITS
;
1063 /* Handle progbits attribute. */
1064 case ATTRIB_PROGBITS
:
1065 if ((sec
->flags
& TYPE_DEFINED
) && (sec
->flags
& TYPE_NOBITS
))
1066 nasm_error(ERR_NONFATAL
, "attempt to change section type"
1067 " from nobits to progbits");
1069 sec
->flags
|= TYPE_DEFINED
| TYPE_PROGBITS
;
1072 /* Handle align attribute. */
1074 if (!value
|| ((value
- 1) & value
)) {
1075 nasm_error(ERR_NONFATAL
,
1076 "argument to `align' is not a power of two");
1079 * Alignment is already satisfied if
1080 * the previous align value is greater
1082 if ((sec
->flags
& ALIGN_DEFINED
) && (value
< sec
->align
))
1085 /* Don't allow a conflicting align value. */
1086 if ((sec
->flags
& START_DEFINED
) && (sec
->start
& (value
- 1))) {
1087 nasm_error(ERR_NONFATAL
,
1088 "`align' value conflicts with section start address");
1091 sec
->flags
|= ALIGN_DEFINED
;
1096 /* Handle valign attribute. */
1098 if (!value
|| ((value
- 1) & value
))
1099 nasm_error(ERR_NONFATAL
, "argument to `valign' is not a"
1101 else { /* Alignment is already satisfied if the previous
1102 * align value is greater. */
1103 if ((sec
->flags
& VALIGN_DEFINED
) && (value
< sec
->valign
))
1104 value
= sec
->valign
;
1106 /* Don't allow a conflicting valign value. */
1107 if ((sec
->flags
& VSTART_DEFINED
)
1108 && (sec
->vstart
& (value
- 1)))
1109 nasm_error(ERR_NONFATAL
,
1110 "`valign' value conflicts "
1111 "with `vstart' address");
1113 sec
->valign
= value
;
1114 sec
->flags
|= VALIGN_DEFINED
;
1119 /* Handle start attribute. */
1121 if (sec
->flags
& FOLLOWS_DEFINED
)
1122 nasm_error(ERR_NONFATAL
, "cannot combine `start' and `follows'"
1123 " section attributes");
1124 else if ((sec
->flags
& START_DEFINED
) && (value
!= sec
->start
))
1125 nasm_error(ERR_NONFATAL
, "section start address redefined");
1128 sec
->flags
|= START_DEFINED
;
1129 if (sec
->flags
& ALIGN_DEFINED
) {
1130 if (sec
->start
& (sec
->align
- 1))
1131 nasm_error(ERR_NONFATAL
, "`start' address conflicts"
1132 " with section alignment");
1133 sec
->flags
^= ALIGN_DEFINED
;
1138 /* Handle vstart attribute. */
1140 if (sec
->flags
& VFOLLOWS_DEFINED
)
1141 nasm_error(ERR_NONFATAL
,
1142 "cannot combine `vstart' and `vfollows'"
1143 " section attributes");
1144 else if ((sec
->flags
& VSTART_DEFINED
)
1145 && (value
!= sec
->vstart
))
1146 nasm_error(ERR_NONFATAL
,
1147 "section virtual start address"
1148 " (vstart) redefined");
1150 sec
->vstart
= value
;
1151 sec
->flags
|= VSTART_DEFINED
;
1152 if (sec
->flags
& VALIGN_DEFINED
) {
1153 if (sec
->vstart
& (sec
->valign
- 1))
1154 nasm_error(ERR_NONFATAL
, "`vstart' address conflicts"
1155 " with `valign' value");
1156 sec
->flags
^= VALIGN_DEFINED
;
1161 /* Handle follows attribute. */
1162 case ATTRIB_FOLLOWS
:
1164 astring
+= strcspn(astring
, " \t");
1166 nasm_error(ERR_NONFATAL
, "expecting section name for `follows'"
1169 *(astring
++) = '\0';
1170 if (sec
->flags
& START_DEFINED
)
1171 nasm_error(ERR_NONFATAL
,
1172 "cannot combine `start' and `follows'"
1173 " section attributes");
1174 sec
->follows
= nasm_strdup(p
);
1175 sec
->flags
|= FOLLOWS_DEFINED
;
1179 /* Handle vfollows attribute. */
1180 case ATTRIB_VFOLLOWS
:
1181 if (sec
->flags
& VSTART_DEFINED
)
1182 nasm_error(ERR_NONFATAL
,
1183 "cannot combine `vstart' and `vfollows'"
1184 " section attributes");
1187 astring
+= strcspn(astring
, " \t");
1189 nasm_error(ERR_NONFATAL
,
1190 "expecting section name for `vfollows'"
1193 *(astring
++) = '\0';
1194 sec
->vfollows
= nasm_strdup(p
);
1195 sec
->flags
|= VFOLLOWS_DEFINED
;
1203 static void bin_define_section_labels(void)
1205 static int labels_defined
= 0;
1206 struct Section
*sec
;
1212 list_for_each(sec
, sections
) {
1213 base_len
= strlen(sec
->name
) + 8;
1214 label_name
= nasm_malloc(base_len
+ 8);
1215 strcpy(label_name
, "section.");
1216 strcpy(label_name
+ 8, sec
->name
);
1218 /* section.<name>.start */
1219 strcpy(label_name
+ base_len
, ".start");
1220 define_label(label_name
, sec
->start_index
, 0L, NULL
, 0, 0);
1222 /* section.<name>.vstart */
1223 strcpy(label_name
+ base_len
, ".vstart");
1224 define_label(label_name
, sec
->vstart_index
, 0L, NULL
, 0, 0);
1226 nasm_free(label_name
);
1231 static int32_t bin_secname(char *name
, int pass
, int *bits
)
1234 struct Section
*sec
;
1236 /* bin_secname is called with *name = NULL at the start of each
1237 * pass. Use this opportunity to establish the default section
1238 * (default is BITS-16 ".text" segment).
1240 if (!name
) { /* Reset ORG and section attributes at the start of each pass. */
1242 list_for_each(sec
, sections
)
1243 sec
->flags
&= ~(START_DEFINED
| VSTART_DEFINED
|
1244 ALIGN_DEFINED
| VALIGN_DEFINED
);
1246 /* Define section start and vstart labels. */
1248 bin_define_section_labels();
1250 /* Establish the default (.text) section. */
1252 sec
= find_section_by_name(".text");
1253 sec
->flags
|= TYPE_DEFINED
| TYPE_PROGBITS
;
1254 return sec
->vstart_index
;
1257 /* Attempt to find the requested section. If it does not
1258 * exist, create it. */
1260 while (*p
&& !nasm_isspace(*p
))
1264 sec
= find_section_by_name(name
);
1266 sec
= create_section(name
);
1267 if (!strcmp(name
, ".data"))
1268 sec
->flags
|= TYPE_DEFINED
| TYPE_PROGBITS
;
1269 else if (!strcmp(name
, ".bss")) {
1270 sec
->flags
|= TYPE_DEFINED
| TYPE_NOBITS
;
1275 /* Handle attribute assignments. */
1277 bin_assign_attributes(sec
, p
);
1279 #ifndef ABIN_SMART_ADAPT
1280 /* The following line disables smart adaptation of
1281 * PROGBITS/NOBITS section types (it forces sections to
1282 * default to PROGBITS). */
1283 if ((pass
!= 1) && !(sec
->flags
& TYPE_DEFINED
))
1284 sec
->flags
|= TYPE_DEFINED
| TYPE_PROGBITS
;
1287 return sec
->vstart_index
;
1290 static int bin_directive(enum directives directive
, char *args
, int pass
)
1292 switch (directive
) {
1295 struct tokenval tokval
;
1301 tokval
.t_type
= TOKEN_INVALID
;
1302 e
= evaluate(stdscan
, NULL
, &tokval
, NULL
, 1, nasm_error
, NULL
);
1304 if (!is_really_simple(e
))
1305 nasm_error(ERR_NONFATAL
, "org value must be a critical"
1308 value
= reloc_value(e
);
1309 /* Check for ORG redefinition. */
1310 if (origin_defined
&& (value
!= origin
))
1311 nasm_error(ERR_NONFATAL
, "program origin redefined");
1318 nasm_error(ERR_NONFATAL
, "No or invalid offset specified"
1319 " in ORG directive.");
1324 /* The 'map' directive allows the user to generate section
1325 * and symbol information to stdout, stderr, or to a file. */
1330 args
+= strspn(args
, " \t");
1333 args
+= strcspn(args
, " \t");
1336 if (!nasm_stricmp(p
, "all"))
1338 MAP_ORIGIN
| MAP_SUMMARY
| MAP_SECTIONS
| MAP_SYMBOLS
;
1339 else if (!nasm_stricmp(p
, "brief"))
1340 map_control
|= MAP_ORIGIN
| MAP_SUMMARY
;
1341 else if (!nasm_stricmp(p
, "sections"))
1342 map_control
|= MAP_ORIGIN
| MAP_SUMMARY
| MAP_SECTIONS
;
1343 else if (!nasm_stricmp(p
, "segments"))
1344 map_control
|= MAP_ORIGIN
| MAP_SUMMARY
| MAP_SECTIONS
;
1345 else if (!nasm_stricmp(p
, "symbols"))
1346 map_control
|= MAP_SYMBOLS
;
1348 if (!nasm_stricmp(p
, "stdout"))
1350 else if (!nasm_stricmp(p
, "stderr"))
1352 else { /* Must be a filename. */
1353 rf
= fopen(p
, "wt");
1355 nasm_error(ERR_WARNING
, "unable to open map file `%s'",
1362 nasm_error(ERR_WARNING
, "map file already specified");
1364 if (map_control
== 0)
1365 map_control
|= MAP_ORIGIN
| MAP_SUMMARY
;
1375 static void bin_filename(char *inname
, char *outname
)
1377 standard_extension(inname
, outname
, "");
1382 static void ith_filename(char *inname
, char *outname
)
1384 standard_extension(inname
, outname
, ".ith");
1389 static void srec_filename(char *inname
, char *outname
)
1391 standard_extension(inname
, outname
, ".srec");
1396 static int32_t bin_segbase(int32_t segment
)
1401 static int bin_set_info(enum geninfo type
, char **val
)
1408 struct ofmt of_bin
, of_ith
, of_srec
;
1409 static void binfmt_init(void);
1410 static void do_output_bin(void);
1411 static void do_output_ith(void);
1412 static void do_output_srec(void);
1414 static void bin_init(void)
1416 do_output
= do_output_bin
;
1420 static void ith_init(void)
1422 do_output
= do_output_ith
;
1426 static void srec_init(void)
1428 do_output
= do_output_srec
;
1432 static void binfmt_init(void)
1435 reloctail
= &relocs
;
1437 no_seg_labels
= NULL
;
1438 nsl_tail
= &no_seg_labels
;
1440 /* Create default section (.text). */
1441 sections
= last_section
= nasm_zalloc(sizeof(struct Section
));
1442 last_section
->name
= nasm_strdup(".text");
1443 last_section
->contents
= saa_init(1L);
1444 last_section
->flags
= TYPE_DEFINED
| TYPE_PROGBITS
;
1445 last_section
->labels_end
= &(last_section
->labels
);
1446 last_section
->start_index
= seg_alloc();
1447 last_section
->vstart_index
= seg_alloc();
1450 /* Generate binary file output */
1451 static void do_output_bin(void)
1454 uint64_t addr
= origin
;
1456 /* Write the progbits sections to the output file. */
1457 list_for_each(s
, sections
) {
1458 /* Skip non-progbits sections */
1459 if (!(s
->flags
& TYPE_PROGBITS
))
1461 /* Skip zero-length sections */
1465 /* Pad the space between sections. */
1466 nasm_assert(addr
<= s
->start
);
1467 fwritezero(s
->start
- addr
, ofile
);
1469 /* Write the section to the output file. */
1470 saa_fpwrite(s
->contents
, ofile
);
1472 /* Keep track of the current file position */
1473 addr
= s
->start
+ s
->length
;
1477 /* Generate Intel hex file output */
1478 static void write_ith_record(unsigned int len
, uint16_t addr
,
1479 uint8_t type
, void *data
)
1481 char buf
[1+2+4+2+255*2+2+2];
1483 uint8_t csum
, *dptr
= data
;
1486 nasm_assert(len
<= 255);
1488 csum
= len
+ addr
+ (addr
>> 8) + type
;
1489 for (i
= 0; i
< len
; i
++)
1493 p
+= sprintf(p
, ":%02X%04X%02X", len
, addr
, type
);
1494 for (i
= 0; i
< len
; i
++)
1495 p
+= sprintf(p
, "%02X", dptr
[i
]);
1496 p
+= sprintf(p
, "%02X\n", csum
);
1498 nasm_write(buf
, p
-buf
, ofile
);
1501 static void do_output_ith(void)
1505 uint64_t addr
, hiaddr
, hilba
;
1509 /* Write the progbits sections to the output file. */
1511 list_for_each(s
, sections
) {
1512 /* Skip non-progbits sections */
1513 if (!(s
->flags
& TYPE_PROGBITS
))
1515 /* Skip zero-length sections */
1521 saa_rewind(s
->contents
);
1524 hiaddr
= addr
>> 16;
1525 if (hiaddr
!= hilba
) {
1526 buf
[0] = hiaddr
>> 8;
1528 write_ith_record(2, 0, 4, buf
);
1532 chunk
= 32 - (addr
& 31);
1536 saa_rnbytes(s
->contents
, buf
, chunk
);
1537 write_ith_record(chunk
, (uint16_t)addr
, 0, buf
);
1544 /* Write closing record */
1545 write_ith_record(0, 0, 1, NULL
);
1548 /* Generate Motorola S-records */
1549 static void write_srecord(unsigned int len
, unsigned int alen
,
1550 uint32_t addr
, uint8_t type
, void *data
)
1552 char buf
[2+2+8+255*2+2+2];
1554 uint8_t csum
, *dptr
= data
;
1557 nasm_assert(len
<= 255);
1573 csum
= (len
+alen
+1) + addr
+ (addr
>> 8) + (addr
>> 16) + (addr
>> 24);
1574 for (i
= 0; i
< len
; i
++)
1578 p
+= sprintf(p
, "S%c%02X%0*X", type
, len
+alen
+1, alen
*2, addr
);
1579 for (i
= 0; i
< len
; i
++)
1580 p
+= sprintf(p
, "%02X", dptr
[i
]);
1581 p
+= sprintf(p
, "%02X\n", csum
);
1583 nasm_write(buf
, p
-buf
, ofile
);
1586 static void do_output_srec(void)
1590 uint64_t addr
, maxaddr
;
1597 list_for_each(s
, sections
) {
1598 /* Skip non-progbits sections */
1599 if (!(s
->flags
& TYPE_PROGBITS
))
1601 /* Skip zero-length sections */
1605 addr
= s
->start
+ s
->length
- 1;
1610 if (maxaddr
<= 0xffff) {
1612 dtype
= '1'; /* S1 = 16-bit data */
1613 etype
= '9'; /* S9 = 16-bit end */
1614 } else if (maxaddr
<= 0xffffff) {
1616 dtype
= '2'; /* S2 = 24-bit data */
1617 etype
= '8'; /* S8 = 24-bit end */
1620 dtype
= '3'; /* S3 = 32-bit data */
1621 etype
= '7'; /* S7 = 32-bit end */
1624 /* Write head record */
1625 write_srecord(0, 2, 0, '0', NULL
);
1627 /* Write the progbits sections to the output file. */
1628 list_for_each(s
, sections
) {
1629 /* Skip non-progbits sections */
1630 if (!(s
->flags
& TYPE_PROGBITS
))
1632 /* Skip zero-length sections */
1638 saa_rewind(s
->contents
);
1641 chunk
= 32 - (addr
& 31);
1645 saa_rnbytes(s
->contents
, buf
, chunk
);
1646 write_srecord(chunk
, alen
, (uint32_t)addr
, dtype
, buf
);
1653 /* Write closing record */
1654 write_srecord(0, alen
, 0, etype
, NULL
);
1658 struct ofmt of_bin
= {
1659 "flat-form binary files (e.g. DOS .COM, .SYS)",
1678 struct ofmt of_ith
= {
1698 struct ofmt of_srec
= {
1699 "Motorola S-records",
1718 #endif /* #ifdef OF_BIN */