2 * QEMU Executable loader
4 * Copyright (c) 2006 Fabrice Bellard
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 * Gunzip functionality in this file is derived from u-boot:
26 * (C) Copyright 2008 Semihalf
28 * (C) Copyright 2000-2005
29 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
31 * This program is free software; you can redistribute it and/or
32 * modify it under the terms of the GNU General Public License as
33 * published by the Free Software Foundation; either version 2 of
34 * the License, or (at your option) any later version.
36 * This program is distributed in the hope that it will be useful,
37 * but WITHOUT ANY WARRANTY; without even the implied warranty of
38 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
39 * GNU General Public License for more details.
41 * You should have received a copy of the GNU General Public License along
42 * with this program; if not, see <http://www.gnu.org/licenses/>.
45 #include "qemu/osdep.h"
46 #include "qapi/error.h"
48 #include "disas/disas.h"
49 #include "monitor/monitor.h"
50 #include "sysemu/sysemu.h"
51 #include "uboot_image.h"
52 #include "hw/loader.h"
53 #include "hw/nvram/fw_cfg.h"
54 #include "exec/memory.h"
55 #include "exec/address-spaces.h"
56 #include "hw/boards.h"
57 #include "qemu/cutils.h"
61 static int roms_loaded
;
63 /* return the size or -1 if error */
64 int64_t get_image_size(const char *filename
)
68 fd
= open(filename
, O_RDONLY
| O_BINARY
);
71 size
= lseek(fd
, 0, SEEK_END
);
76 /* return the size or -1 if error */
77 /* deprecated, because caller does not specify buffer size! */
78 int load_image(const char *filename
, uint8_t *addr
)
81 fd
= open(filename
, O_RDONLY
| O_BINARY
);
84 size
= lseek(fd
, 0, SEEK_END
);
86 fprintf(stderr
, "file %-20s: get size error: %s\n",
87 filename
, strerror(errno
));
92 lseek(fd
, 0, SEEK_SET
);
93 if (read(fd
, addr
, size
) != size
) {
101 /* return the size or -1 if error */
102 ssize_t
load_image_size(const char *filename
, void *addr
, size_t size
)
107 fd
= open(filename
, O_RDONLY
| O_BINARY
);
112 actsize
= read(fd
, addr
, size
);
122 /* read()-like version */
123 ssize_t
read_targphys(const char *name
,
124 int fd
, hwaddr dst_addr
, size_t nbytes
)
129 buf
= g_malloc(nbytes
);
130 did
= read(fd
, buf
, nbytes
);
132 rom_add_blob_fixed("read", buf
, did
, dst_addr
);
137 int load_image_targphys(const char *filename
,
138 hwaddr addr
, uint64_t max_sz
)
140 return load_image_targphys_as(filename
, addr
, max_sz
, NULL
);
143 /* return the size or -1 if error */
144 int load_image_targphys_as(const char *filename
,
145 hwaddr addr
, uint64_t max_sz
, AddressSpace
*as
)
149 size
= get_image_size(filename
);
150 if (size
< 0 || size
> max_sz
) {
154 if (rom_add_file_fixed_as(filename
, addr
, -1, as
) < 0) {
161 int load_image_mr(const char *filename
, MemoryRegion
*mr
)
165 if (!memory_access_is_direct(mr
, false)) {
166 /* Can only load an image into RAM or ROM */
170 size
= get_image_size(filename
);
172 if (size
< 0 || size
> memory_region_size(mr
)) {
176 if (rom_add_file_mr(filename
, mr
, -1) < 0) {
183 void pstrcpy_targphys(const char *name
, hwaddr dest
, int buf_size
,
189 if (buf_size
<= 0) return;
190 nulp
= memchr(source
, 0, buf_size
);
192 rom_add_blob_fixed(name
, source
, (nulp
- source
) + 1, dest
);
194 rom_add_blob_fixed(name
, source
, buf_size
, dest
);
195 ptr
= rom_ptr(dest
+ buf_size
- 1, sizeof(*ptr
));
204 uint32_t a_info
; /* Use macros N_MAGIC, etc for access */
205 uint32_t a_text
; /* length of text, in bytes */
206 uint32_t a_data
; /* length of data, in bytes */
207 uint32_t a_bss
; /* length of uninitialized data area, in bytes */
208 uint32_t a_syms
; /* length of symbol table data in file, in bytes */
209 uint32_t a_entry
; /* start address */
210 uint32_t a_trsize
; /* length of relocation info for text, in bytes */
211 uint32_t a_drsize
; /* length of relocation info for data, in bytes */
214 static void bswap_ahdr(struct exec
*e
)
216 bswap32s(&e
->a_info
);
217 bswap32s(&e
->a_text
);
218 bswap32s(&e
->a_data
);
220 bswap32s(&e
->a_syms
);
221 bswap32s(&e
->a_entry
);
222 bswap32s(&e
->a_trsize
);
223 bswap32s(&e
->a_drsize
);
226 #define N_MAGIC(exec) ((exec).a_info & 0xffff)
231 #define _N_HDROFF(x) (1024 - sizeof (struct exec))
232 #define N_TXTOFF(x) \
233 (N_MAGIC(x) == ZMAGIC ? _N_HDROFF((x)) + sizeof (struct exec) : \
234 (N_MAGIC(x) == QMAGIC ? 0 : sizeof (struct exec)))
235 #define N_TXTADDR(x, target_page_size) (N_MAGIC(x) == QMAGIC ? target_page_size : 0)
236 #define _N_SEGMENT_ROUND(x, target_page_size) (((x) + target_page_size - 1) & ~(target_page_size - 1))
238 #define _N_TXTENDADDR(x, target_page_size) (N_TXTADDR(x, target_page_size)+(x).a_text)
240 #define N_DATADDR(x, target_page_size) \
241 (N_MAGIC(x)==OMAGIC? (_N_TXTENDADDR(x, target_page_size)) \
242 : (_N_SEGMENT_ROUND (_N_TXTENDADDR(x, target_page_size), target_page_size)))
245 int load_aout(const char *filename
, hwaddr addr
, int max_sz
,
246 int bswap_needed
, hwaddr target_page_size
)
253 fd
= open(filename
, O_RDONLY
| O_BINARY
);
257 size
= read(fd
, &e
, sizeof(e
));
270 if (e
.a_text
+ e
.a_data
> max_sz
)
272 lseek(fd
, N_TXTOFF(e
), SEEK_SET
);
273 size
= read_targphys(filename
, fd
, addr
, e
.a_text
+ e
.a_data
);
278 if (N_DATADDR(e
, target_page_size
) + e
.a_data
> max_sz
)
280 lseek(fd
, N_TXTOFF(e
), SEEK_SET
);
281 size
= read_targphys(filename
, fd
, addr
, e
.a_text
);
284 ret
= read_targphys(filename
, fd
, addr
+ N_DATADDR(e
, target_page_size
),
302 static void *load_at(int fd
, off_t offset
, size_t size
)
305 if (lseek(fd
, offset
, SEEK_SET
) < 0)
307 ptr
= g_malloc(size
);
308 if (read(fd
, ptr
, size
) != size
) {
319 #define ELF_CLASS ELFCLASS32
323 #define elf_word uint32_t
324 #define elf_sword int32_t
325 #define bswapSZs bswap32s
326 #include "hw/elf_ops.h"
338 #define elfhdr elf64_hdr
339 #define elf_phdr elf64_phdr
340 #define elf_note elf64_note
341 #define elf_shdr elf64_shdr
342 #define elf_sym elf64_sym
343 #define elf_rela elf64_rela
344 #define elf_word uint64_t
345 #define elf_sword int64_t
346 #define bswapSZs bswap64s
348 #include "hw/elf_ops.h"
350 const char *load_elf_strerror(int error
)
355 case ELF_LOAD_FAILED
:
356 return "Failed to load ELF";
357 case ELF_LOAD_NOT_ELF
:
358 return "The image is not ELF";
359 case ELF_LOAD_WRONG_ARCH
:
360 return "The image is from incompatible architecture";
361 case ELF_LOAD_WRONG_ENDIAN
:
362 return "The image has incorrect endianness";
364 return "Unknown error";
368 void load_elf_hdr(const char *filename
, void *hdr
, bool *is64
, Error
**errp
)
371 uint8_t e_ident_local
[EI_NIDENT
];
373 size_t hdr_size
, off
;
381 fd
= open(filename
, O_RDONLY
| O_BINARY
);
383 error_setg_errno(errp
, errno
, "Failed to open file: %s", filename
);
386 if (read(fd
, hdr
, EI_NIDENT
) != EI_NIDENT
) {
387 error_setg_errno(errp
, errno
, "Failed to read file: %s", filename
);
390 if (e_ident
[0] != ELFMAG0
||
391 e_ident
[1] != ELFMAG1
||
392 e_ident
[2] != ELFMAG2
||
393 e_ident
[3] != ELFMAG3
) {
394 error_setg(errp
, "Bad ELF magic");
398 is64l
= e_ident
[EI_CLASS
] == ELFCLASS64
;
399 hdr_size
= is64l
? sizeof(Elf64_Ehdr
) : sizeof(Elf32_Ehdr
);
405 while (hdr
!= e_ident_local
&& off
< hdr_size
) {
406 size_t br
= read(fd
, hdr
+ off
, hdr_size
- off
);
409 error_setg(errp
, "File too short: %s", filename
);
412 error_setg_errno(errp
, errno
, "Failed to read file: %s",
423 /* return < 0 if error, otherwise the number of bytes loaded in memory */
424 int load_elf(const char *filename
, uint64_t (*translate_fn
)(void *, uint64_t),
425 void *translate_opaque
, uint64_t *pentry
, uint64_t *lowaddr
,
426 uint64_t *highaddr
, int big_endian
, int elf_machine
,
427 int clear_lsb
, int data_swab
)
429 return load_elf_as(filename
, translate_fn
, translate_opaque
, pentry
,
430 lowaddr
, highaddr
, big_endian
, elf_machine
, clear_lsb
,
434 /* return < 0 if error, otherwise the number of bytes loaded in memory */
435 int load_elf_as(const char *filename
,
436 uint64_t (*translate_fn
)(void *, uint64_t),
437 void *translate_opaque
, uint64_t *pentry
, uint64_t *lowaddr
,
438 uint64_t *highaddr
, int big_endian
, int elf_machine
,
439 int clear_lsb
, int data_swab
, AddressSpace
*as
)
441 return load_elf_ram(filename
, translate_fn
, translate_opaque
,
442 pentry
, lowaddr
, highaddr
, big_endian
, elf_machine
,
443 clear_lsb
, data_swab
, as
, true);
446 /* return < 0 if error, otherwise the number of bytes loaded in memory */
447 int load_elf_ram(const char *filename
,
448 uint64_t (*translate_fn
)(void *, uint64_t),
449 void *translate_opaque
, uint64_t *pentry
, uint64_t *lowaddr
,
450 uint64_t *highaddr
, int big_endian
, int elf_machine
,
451 int clear_lsb
, int data_swab
, AddressSpace
*as
,
454 return load_elf_ram_sym(filename
, translate_fn
, translate_opaque
,
455 pentry
, lowaddr
, highaddr
, big_endian
,
456 elf_machine
, clear_lsb
, data_swab
, as
,
460 /* return < 0 if error, otherwise the number of bytes loaded in memory */
461 int load_elf_ram_sym(const char *filename
,
462 uint64_t (*translate_fn
)(void *, uint64_t),
463 void *translate_opaque
, uint64_t *pentry
,
464 uint64_t *lowaddr
, uint64_t *highaddr
, int big_endian
,
465 int elf_machine
, int clear_lsb
, int data_swab
,
466 AddressSpace
*as
, bool load_rom
, symbol_fn_t sym_cb
)
468 int fd
, data_order
, target_data_order
, must_swab
, ret
= ELF_LOAD_FAILED
;
469 uint8_t e_ident
[EI_NIDENT
];
471 fd
= open(filename
, O_RDONLY
| O_BINARY
);
476 if (read(fd
, e_ident
, sizeof(e_ident
)) != sizeof(e_ident
))
478 if (e_ident
[0] != ELFMAG0
||
479 e_ident
[1] != ELFMAG1
||
480 e_ident
[2] != ELFMAG2
||
481 e_ident
[3] != ELFMAG3
) {
482 ret
= ELF_LOAD_NOT_ELF
;
485 #ifdef HOST_WORDS_BIGENDIAN
486 data_order
= ELFDATA2MSB
;
488 data_order
= ELFDATA2LSB
;
490 must_swab
= data_order
!= e_ident
[EI_DATA
];
492 target_data_order
= ELFDATA2MSB
;
494 target_data_order
= ELFDATA2LSB
;
497 if (target_data_order
!= e_ident
[EI_DATA
]) {
498 ret
= ELF_LOAD_WRONG_ENDIAN
;
502 lseek(fd
, 0, SEEK_SET
);
503 if (e_ident
[EI_CLASS
] == ELFCLASS64
) {
504 ret
= load_elf64(filename
, fd
, translate_fn
, translate_opaque
, must_swab
,
505 pentry
, lowaddr
, highaddr
, elf_machine
, clear_lsb
,
506 data_swab
, as
, load_rom
, sym_cb
);
508 ret
= load_elf32(filename
, fd
, translate_fn
, translate_opaque
, must_swab
,
509 pentry
, lowaddr
, highaddr
, elf_machine
, clear_lsb
,
510 data_swab
, as
, load_rom
, sym_cb
);
518 static void bswap_uboot_header(uboot_image_header_t
*hdr
)
520 #ifndef HOST_WORDS_BIGENDIAN
521 bswap32s(&hdr
->ih_magic
);
522 bswap32s(&hdr
->ih_hcrc
);
523 bswap32s(&hdr
->ih_time
);
524 bswap32s(&hdr
->ih_size
);
525 bswap32s(&hdr
->ih_load
);
526 bswap32s(&hdr
->ih_ep
);
527 bswap32s(&hdr
->ih_dcrc
);
532 #define ZALLOC_ALIGNMENT 16
534 static void *zalloc(void *x
, unsigned items
, unsigned size
)
539 size
= (size
+ ZALLOC_ALIGNMENT
- 1) & ~(ZALLOC_ALIGNMENT
- 1);
546 static void zfree(void *x
, void *addr
)
553 #define EXTRA_FIELD 4
556 #define RESERVED 0xe0
560 ssize_t
gunzip(void *dst
, size_t dstlen
, uint8_t *src
, size_t srclen
)
569 if (src
[2] != DEFLATED
|| (flags
& RESERVED
) != 0) {
570 puts ("Error: Bad gzipped data\n");
573 if ((flags
& EXTRA_FIELD
) != 0)
574 i
= 12 + src
[10] + (src
[11] << 8);
575 if ((flags
& ORIG_NAME
) != 0)
576 while (src
[i
++] != 0)
578 if ((flags
& COMMENT
) != 0)
579 while (src
[i
++] != 0)
581 if ((flags
& HEAD_CRC
) != 0)
584 puts ("Error: gunzip out of data in header\n");
591 r
= inflateInit2(&s
, -MAX_WBITS
);
593 printf ("Error: inflateInit2() returned %d\n", r
);
597 s
.avail_in
= srclen
- i
;
599 s
.avail_out
= dstlen
;
600 r
= inflate(&s
, Z_FINISH
);
601 if (r
!= Z_OK
&& r
!= Z_STREAM_END
) {
602 printf ("Error: inflate() returned %d\n", r
);
605 dstbytes
= s
.next_out
- (unsigned char *) dst
;
611 /* Load a U-Boot image. */
612 static int load_uboot_image(const char *filename
, hwaddr
*ep
, hwaddr
*loadaddr
,
613 int *is_linux
, uint8_t image_type
,
614 uint64_t (*translate_fn
)(void *, uint64_t),
615 void *translate_opaque
, AddressSpace
*as
)
620 uboot_image_header_t h
;
621 uboot_image_header_t
*hdr
= &h
;
622 uint8_t *data
= NULL
;
624 int do_uncompress
= 0;
626 fd
= open(filename
, O_RDONLY
| O_BINARY
);
630 size
= read(fd
, hdr
, sizeof(uboot_image_header_t
));
631 if (size
< sizeof(uboot_image_header_t
)) {
635 bswap_uboot_header(hdr
);
637 if (hdr
->ih_magic
!= IH_MAGIC
)
640 if (hdr
->ih_type
!= image_type
) {
641 fprintf(stderr
, "Wrong image type %d, expected %d\n", hdr
->ih_type
,
646 /* TODO: Implement other image types. */
647 switch (hdr
->ih_type
) {
649 address
= hdr
->ih_load
;
651 address
= translate_fn(translate_opaque
, address
);
654 *loadaddr
= hdr
->ih_load
;
657 switch (hdr
->ih_comp
) {
665 "Unable to load u-boot images with compression type %d\n",
674 /* TODO: Check CPU type. */
676 if (hdr
->ih_os
== IH_OS_LINUX
) {
684 case IH_TYPE_RAMDISK
:
688 fprintf(stderr
, "Unsupported u-boot image type %d\n", hdr
->ih_type
);
692 data
= g_malloc(hdr
->ih_size
);
694 if (read(fd
, data
, hdr
->ih_size
) != hdr
->ih_size
) {
695 fprintf(stderr
, "Error reading file\n");
700 uint8_t *compressed_data
;
704 compressed_data
= data
;
705 max_bytes
= UBOOT_MAX_GUNZIP_BYTES
;
706 data
= g_malloc(max_bytes
);
708 bytes
= gunzip(data
, max_bytes
, compressed_data
, hdr
->ih_size
);
709 g_free(compressed_data
);
711 fprintf(stderr
, "Unable to decompress gzipped image!\n");
714 hdr
->ih_size
= bytes
;
717 rom_add_blob_fixed_as(filename
, data
, hdr
->ih_size
, address
, as
);
727 int load_uimage(const char *filename
, hwaddr
*ep
, hwaddr
*loadaddr
,
729 uint64_t (*translate_fn
)(void *, uint64_t),
730 void *translate_opaque
)
732 return load_uboot_image(filename
, ep
, loadaddr
, is_linux
, IH_TYPE_KERNEL
,
733 translate_fn
, translate_opaque
, NULL
);
736 int load_uimage_as(const char *filename
, hwaddr
*ep
, hwaddr
*loadaddr
,
738 uint64_t (*translate_fn
)(void *, uint64_t),
739 void *translate_opaque
, AddressSpace
*as
)
741 return load_uboot_image(filename
, ep
, loadaddr
, is_linux
, IH_TYPE_KERNEL
,
742 translate_fn
, translate_opaque
, as
);
745 /* Load a ramdisk. */
746 int load_ramdisk(const char *filename
, hwaddr addr
, uint64_t max_sz
)
748 return load_ramdisk_as(filename
, addr
, max_sz
, NULL
);
751 int load_ramdisk_as(const char *filename
, hwaddr addr
, uint64_t max_sz
,
754 return load_uboot_image(filename
, NULL
, &addr
, NULL
, IH_TYPE_RAMDISK
,
758 /* Load a gzip-compressed kernel to a dynamically allocated buffer. */
759 int load_image_gzipped_buffer(const char *filename
, uint64_t max_sz
,
762 uint8_t *compressed_data
= NULL
;
763 uint8_t *data
= NULL
;
768 if (!g_file_get_contents(filename
, (char **) &compressed_data
, &len
,
773 /* Is it a gzip-compressed file? */
775 compressed_data
[0] != 0x1f ||
776 compressed_data
[1] != 0x8b) {
780 if (max_sz
> LOAD_IMAGE_MAX_GUNZIP_BYTES
) {
781 max_sz
= LOAD_IMAGE_MAX_GUNZIP_BYTES
;
784 data
= g_malloc(max_sz
);
785 bytes
= gunzip(data
, max_sz
, compressed_data
, len
);
787 fprintf(stderr
, "%s: unable to decompress gzipped kernel file\n",
792 /* trim to actual size and return to caller */
793 *buffer
= g_realloc(data
, bytes
);
795 /* ownership has been transferred to caller */
799 g_free(compressed_data
);
804 /* Load a gzip-compressed kernel. */
805 int load_image_gzipped(const char *filename
, hwaddr addr
, uint64_t max_sz
)
810 bytes
= load_image_gzipped_buffer(filename
, max_sz
, &data
);
812 rom_add_blob_fixed(filename
, data
, bytes
, addr
);
819 * Functions for reboot-persistent memory regions.
820 * - used for vga bios and option roms.
821 * - also linux kernel (-kernel / -initrd).
824 typedef struct Rom Rom
;
830 /* datasize is the amount of memory allocated in "data". If datasize is less
831 * than romsize, it means that the area from datasize to romsize is filled
847 QTAILQ_ENTRY(Rom
) next
;
850 static FWCfgState
*fw_cfg
;
851 static QTAILQ_HEAD(, Rom
) roms
= QTAILQ_HEAD_INITIALIZER(roms
);
853 /* rom->data must be heap-allocated (do not use with rom_add_elf_program()) */
854 static void rom_free(Rom
*rom
)
860 g_free(rom
->fw_file
);
864 static inline bool rom_order_compare(Rom
*rom
, Rom
*item
)
866 return ((uintptr_t)(void *)rom
->as
> (uintptr_t)(void *)item
->as
) ||
867 (rom
->as
== item
->as
&& rom
->addr
>= item
->addr
);
870 static void rom_insert(Rom
*rom
)
875 hw_error ("ROM images must be loaded at startup\n");
878 /* The user didn't specify an address space, this is the default */
880 rom
->as
= &address_space_memory
;
883 rom
->committed
= false;
885 /* List is ordered by load address in the same address space */
886 QTAILQ_FOREACH(item
, &roms
, next
) {
887 if (rom_order_compare(rom
, item
)) {
890 QTAILQ_INSERT_BEFORE(item
, rom
, next
);
893 QTAILQ_INSERT_TAIL(&roms
, rom
, next
);
896 static void fw_cfg_resized(const char *id
, uint64_t length
, void *host
)
899 fw_cfg_modify_file(fw_cfg
, id
+ strlen("/rom@"), host
, length
);
903 static void *rom_set_mr(Rom
*rom
, Object
*owner
, const char *name
, bool ro
)
907 rom
->mr
= g_malloc(sizeof(*rom
->mr
));
908 memory_region_init_resizeable_ram(rom
->mr
, owner
, name
,
909 rom
->datasize
, rom
->romsize
,
912 memory_region_set_readonly(rom
->mr
, ro
);
913 vmstate_register_ram_global(rom
->mr
);
915 data
= memory_region_get_ram_ptr(rom
->mr
);
916 memcpy(data
, rom
->data
, rom
->datasize
);
921 int rom_add_file(const char *file
, const char *fw_dir
,
922 hwaddr addr
, int32_t bootindex
,
923 bool option_rom
, MemoryRegion
*mr
,
926 MachineClass
*mc
= MACHINE_GET_CLASS(qdev_get_machine());
932 fprintf(stderr
, "Specifying an Address Space and Memory Region is " \
933 "not valid when loading a rom\n");
934 /* We haven't allocated anything so we don't need any cleanup */
938 rom
= g_malloc0(sizeof(*rom
));
939 rom
->name
= g_strdup(file
);
940 rom
->path
= qemu_find_file(QEMU_FILE_TYPE_BIOS
, rom
->name
);
942 if (rom
->path
== NULL
) {
943 rom
->path
= g_strdup(file
);
946 fd
= open(rom
->path
, O_RDONLY
| O_BINARY
);
948 fprintf(stderr
, "Could not open option rom '%s': %s\n",
949 rom
->path
, strerror(errno
));
954 rom
->fw_dir
= g_strdup(fw_dir
);
955 rom
->fw_file
= g_strdup(file
);
958 rom
->romsize
= lseek(fd
, 0, SEEK_END
);
959 if (rom
->romsize
== -1) {
960 fprintf(stderr
, "rom: file %-20s: get size error: %s\n",
961 rom
->name
, strerror(errno
));
965 rom
->datasize
= rom
->romsize
;
966 rom
->data
= g_malloc0(rom
->datasize
);
967 lseek(fd
, 0, SEEK_SET
);
968 rc
= read(fd
, rom
->data
, rom
->datasize
);
969 if (rc
!= rom
->datasize
) {
970 fprintf(stderr
, "rom: file %-20s: read error: rc=%d (expected %zd)\n",
971 rom
->name
, rc
, rom
->datasize
);
976 if (rom
->fw_file
&& fw_cfg
) {
977 const char *basename
;
978 char fw_file_name
[FW_CFG_MAX_FILE_PATH
];
981 basename
= strrchr(rom
->fw_file
, '/');
985 basename
= rom
->fw_file
;
987 snprintf(fw_file_name
, sizeof(fw_file_name
), "%s/%s", rom
->fw_dir
,
989 snprintf(devpath
, sizeof(devpath
), "/rom@%s", fw_file_name
);
991 if ((!option_rom
|| mc
->option_rom_has_mr
) && mc
->rom_file_has_mr
) {
992 data
= rom_set_mr(rom
, OBJECT(fw_cfg
), devpath
, true);
997 fw_cfg_add_file(fw_cfg
, fw_file_name
, data
, rom
->romsize
);
1001 snprintf(devpath
, sizeof(devpath
), "/rom@%s", file
);
1003 snprintf(devpath
, sizeof(devpath
), "/rom@" TARGET_FMT_plx
, addr
);
1007 add_boot_device_path(bootindex
, NULL
, devpath
);
1018 MemoryRegion
*rom_add_blob(const char *name
, const void *blob
, size_t len
,
1019 size_t max_len
, hwaddr addr
, const char *fw_file_name
,
1020 FWCfgCallback fw_callback
, void *callback_opaque
,
1021 AddressSpace
*as
, bool read_only
)
1023 MachineClass
*mc
= MACHINE_GET_CLASS(qdev_get_machine());
1025 MemoryRegion
*mr
= NULL
;
1027 rom
= g_malloc0(sizeof(*rom
));
1028 rom
->name
= g_strdup(name
);
1031 rom
->romsize
= max_len
? max_len
: len
;
1032 rom
->datasize
= len
;
1033 rom
->data
= g_malloc0(rom
->datasize
);
1034 memcpy(rom
->data
, blob
, len
);
1036 if (fw_file_name
&& fw_cfg
) {
1041 snprintf(devpath
, sizeof(devpath
), "/rom@%s", fw_file_name
);
1043 snprintf(devpath
, sizeof(devpath
), "/ram@%s", fw_file_name
);
1046 if (mc
->rom_file_has_mr
) {
1047 data
= rom_set_mr(rom
, OBJECT(fw_cfg
), devpath
, read_only
);
1053 fw_cfg_add_file_callback(fw_cfg
, fw_file_name
,
1054 fw_callback
, NULL
, callback_opaque
,
1055 data
, rom
->datasize
, read_only
);
1060 /* This function is specific for elf program because we don't need to allocate
1061 * all the rom. We just allocate the first part and the rest is just zeros. This
1062 * is why romsize and datasize are different. Also, this function seize the
1063 * memory ownership of "data", so we don't have to allocate and copy the buffer.
1065 int rom_add_elf_program(const char *name
, void *data
, size_t datasize
,
1066 size_t romsize
, hwaddr addr
, AddressSpace
*as
)
1070 rom
= g_malloc0(sizeof(*rom
));
1071 rom
->name
= g_strdup(name
);
1073 rom
->datasize
= datasize
;
1074 rom
->romsize
= romsize
;
1081 int rom_add_vga(const char *file
)
1083 return rom_add_file(file
, "vgaroms", 0, -1, true, NULL
, NULL
);
1086 int rom_add_option(const char *file
, int32_t bootindex
)
1088 return rom_add_file(file
, "genroms", 0, bootindex
, true, NULL
, NULL
);
1091 static void rom_reset(void *unused
)
1095 QTAILQ_FOREACH(rom
, &roms
, next
) {
1099 if (rom
->data
== NULL
) {
1103 void *host
= memory_region_get_ram_ptr(rom
->mr
);
1104 memcpy(host
, rom
->data
, rom
->datasize
);
1106 cpu_physical_memory_write_rom(rom
->as
, rom
->addr
, rom
->data
,
1110 /* rom needs to be written only once */
1115 * The rom loader is really on the same level as firmware in the guest
1116 * shadowing a ROM into RAM. Such a shadowing mechanism needs to ensure
1117 * that the instruction cache for that new region is clear, so that the
1118 * CPU definitely fetches its instructions from the just written data.
1120 cpu_flush_icache_range(rom
->addr
, rom
->datasize
);
1124 int rom_check_and_register_reset(void)
1127 MemoryRegionSection section
;
1129 AddressSpace
*as
= NULL
;
1131 QTAILQ_FOREACH(rom
, &roms
, next
) {
1136 if ((addr
> rom
->addr
) && (as
== rom
->as
)) {
1137 fprintf(stderr
, "rom: requested regions overlap "
1138 "(rom %s. free=0x" TARGET_FMT_plx
1139 ", addr=0x" TARGET_FMT_plx
")\n",
1140 rom
->name
, addr
, rom
->addr
);
1144 addr
+= rom
->romsize
;
1147 section
= memory_region_find(rom
->mr
? rom
->mr
: get_system_memory(),
1149 rom
->isrom
= int128_nz(section
.size
) && memory_region_is_rom(section
.mr
);
1150 memory_region_unref(section
.mr
);
1152 qemu_register_reset(rom_reset
, NULL
);
1157 void rom_set_fw(FWCfgState
*f
)
1162 void rom_set_order_override(int order
)
1166 fw_cfg_set_order_override(fw_cfg
, order
);
1169 void rom_reset_order_override(void)
1173 fw_cfg_reset_order_override(fw_cfg
);
1176 void rom_transaction_begin(void)
1180 /* Ignore ROMs added without the transaction API */
1181 QTAILQ_FOREACH(rom
, &roms
, next
) {
1182 rom
->committed
= true;
1186 void rom_transaction_end(bool commit
)
1191 QTAILQ_FOREACH_SAFE(rom
, &roms
, next
, tmp
) {
1192 if (rom
->committed
) {
1196 rom
->committed
= true;
1198 QTAILQ_REMOVE(&roms
, rom
, next
);
1204 static Rom
*find_rom(hwaddr addr
, size_t size
)
1208 QTAILQ_FOREACH(rom
, &roms
, next
) {
1215 if (rom
->addr
> addr
) {
1218 if (rom
->addr
+ rom
->romsize
< addr
+ size
) {
1227 * Copies memory from registered ROMs to dest. Any memory that is contained in
1228 * a ROM between addr and addr + size is copied. Note that this can involve
1229 * multiple ROMs, which need not start at addr and need not end at addr + size.
1231 int rom_copy(uint8_t *dest
, hwaddr addr
, size_t size
)
1233 hwaddr end
= addr
+ size
;
1234 uint8_t *s
, *d
= dest
;
1238 QTAILQ_FOREACH(rom
, &roms
, next
) {
1245 if (rom
->addr
+ rom
->romsize
< addr
) {
1248 if (rom
->addr
> end
) {
1252 d
= dest
+ (rom
->addr
- addr
);
1256 if ((d
+ l
) > (dest
+ size
)) {
1264 if (rom
->romsize
> rom
->datasize
) {
1265 /* If datasize is less than romsize, it means that we didn't
1266 * allocate all the ROM because the trailing data are only zeros.
1270 l
= rom
->romsize
- rom
->datasize
;
1272 if ((d
+ l
) > (dest
+ size
)) {
1273 /* Rom size doesn't fit in the destination area. Adjust to avoid
1285 return (d
+ l
) - dest
;
1288 void *rom_ptr(hwaddr addr
, size_t size
)
1292 rom
= find_rom(addr
, size
);
1293 if (!rom
|| !rom
->data
)
1295 return rom
->data
+ (addr
- rom
->addr
);
1298 void hmp_info_roms(Monitor
*mon
, const QDict
*qdict
)
1302 QTAILQ_FOREACH(rom
, &roms
, next
) {
1304 monitor_printf(mon
, "%s"
1305 " size=0x%06zx name=\"%s\"\n",
1306 memory_region_name(rom
->mr
),
1309 } else if (!rom
->fw_file
) {
1310 monitor_printf(mon
, "addr=" TARGET_FMT_plx
1311 " size=0x%06zx mem=%s name=\"%s\"\n",
1312 rom
->addr
, rom
->romsize
,
1313 rom
->isrom
? "rom" : "ram",
1316 monitor_printf(mon
, "fw=%s/%s"
1317 " size=0x%06zx name=\"%s\"\n",
1326 typedef enum HexRecord HexRecord
;
1330 EXT_SEG_ADDR_RECORD
,
1331 START_SEG_ADDR_RECORD
,
1332 EXT_LINEAR_ADDR_RECORD
,
1333 START_LINEAR_ADDR_RECORD
,
1336 /* Each record contains a 16-bit address which is combined with the upper 16
1337 * bits of the implicit "next address" to form a 32-bit address.
1339 #define NEXT_ADDR_MASK 0xffff0000
1341 #define DATA_FIELD_MAX_LEN 0xff
1342 #define LEN_EXCEPT_DATA 0x5
1343 /* 0x5 = sizeof(byte_count) + sizeof(address) + sizeof(record_type) +
1344 * sizeof(checksum) */
1348 uint8_t record_type
;
1349 uint8_t data
[DATA_FIELD_MAX_LEN
];
1353 /* return 0 or -1 if error */
1354 static bool parse_record(HexLine
*line
, uint8_t *our_checksum
, const uint8_t c
,
1355 uint32_t *index
, const bool in_process
)
1357 /* +-------+---------------+-------+---------------------+--------+
1358 * | byte | |record | | |
1359 * | count | address | type | data |checksum|
1360 * +-------+---------------+-------+---------------------+--------+
1362 * |1 byte | 2 bytes |1 byte | 0-255 bytes | 1 byte |
1365 uint32_t idx
= *index
;
1367 if (g_ascii_isspace(c
)) {
1370 if (!g_ascii_isxdigit(c
) || !in_process
) {
1373 value
= g_ascii_xdigit_value(c
);
1374 value
= (idx
& 0x1) ? (value
& 0xf) : (value
<< 4);
1376 line
->byte_count
|= value
;
1377 } else if (2 <= idx
&& idx
< 6) {
1378 line
->address
<<= 4;
1379 line
->address
+= g_ascii_xdigit_value(c
);
1380 } else if (6 <= idx
&& idx
< 8) {
1381 line
->record_type
|= value
;
1382 } else if (8 <= idx
&& idx
< 8 + 2 * line
->byte_count
) {
1383 line
->data
[(idx
- 8) >> 1] |= value
;
1384 } else if (8 + 2 * line
->byte_count
<= idx
&&
1385 idx
< 10 + 2 * line
->byte_count
) {
1386 line
->checksum
|= value
;
1390 *our_checksum
+= value
;
1396 const char *filename
;
1401 uint32_t next_address_to_write
;
1402 uint32_t current_address
;
1403 uint32_t current_rom_index
;
1404 uint32_t rom_start_address
;
1408 /* return size or -1 if error */
1409 static int handle_record_type(HexParser
*parser
)
1411 HexLine
*line
= &(parser
->line
);
1412 switch (line
->record_type
) {
1414 parser
->current_address
=
1415 (parser
->next_address_to_write
& NEXT_ADDR_MASK
) | line
->address
;
1416 /* verify this is a contiguous block of memory */
1417 if (parser
->current_address
!= parser
->next_address_to_write
) {
1418 if (parser
->current_rom_index
!= 0) {
1419 rom_add_blob_fixed_as(parser
->filename
, parser
->bin_buf
,
1420 parser
->current_rom_index
,
1421 parser
->rom_start_address
, parser
->as
);
1423 parser
->rom_start_address
= parser
->current_address
;
1424 parser
->current_rom_index
= 0;
1427 /* copy from line buffer to output bin_buf */
1428 memcpy(parser
->bin_buf
+ parser
->current_rom_index
, line
->data
,
1430 parser
->current_rom_index
+= line
->byte_count
;
1431 parser
->total_size
+= line
->byte_count
;
1432 /* save next address to write */
1433 parser
->next_address_to_write
=
1434 parser
->current_address
+ line
->byte_count
;
1438 if (parser
->current_rom_index
!= 0) {
1439 rom_add_blob_fixed_as(parser
->filename
, parser
->bin_buf
,
1440 parser
->current_rom_index
,
1441 parser
->rom_start_address
, parser
->as
);
1443 return parser
->total_size
;
1444 case EXT_SEG_ADDR_RECORD
:
1445 case EXT_LINEAR_ADDR_RECORD
:
1446 if (line
->byte_count
!= 2 && line
->address
!= 0) {
1450 if (parser
->current_rom_index
!= 0) {
1451 rom_add_blob_fixed_as(parser
->filename
, parser
->bin_buf
,
1452 parser
->current_rom_index
,
1453 parser
->rom_start_address
, parser
->as
);
1456 /* save next address to write,
1457 * in case of non-contiguous block of memory */
1458 parser
->next_address_to_write
= (line
->data
[0] << 12) |
1459 (line
->data
[1] << 4);
1460 if (line
->record_type
== EXT_LINEAR_ADDR_RECORD
) {
1461 parser
->next_address_to_write
<<= 12;
1464 parser
->rom_start_address
= parser
->next_address_to_write
;
1465 parser
->current_rom_index
= 0;
1468 case START_SEG_ADDR_RECORD
:
1469 if (line
->byte_count
!= 4 && line
->address
!= 0) {
1473 /* x86 16-bit CS:IP segmented addressing */
1474 *(parser
->start_addr
) = (((line
->data
[0] << 8) | line
->data
[1]) << 4) +
1475 ((line
->data
[2] << 8) | line
->data
[3]);
1478 case START_LINEAR_ADDR_RECORD
:
1479 if (line
->byte_count
!= 4 && line
->address
!= 0) {
1483 *(parser
->start_addr
) = ldl_be_p(line
->data
);
1490 return parser
->total_size
;
1493 /* return size or -1 if error */
1494 static int parse_hex_blob(const char *filename
, hwaddr
*addr
, uint8_t *hex_blob
,
1495 size_t hex_blob_size
, AddressSpace
*as
)
1497 bool in_process
= false; /* avoid re-enter and
1498 * check whether record begin with ':' */
1499 uint8_t *end
= hex_blob
+ hex_blob_size
;
1500 uint8_t our_checksum
= 0;
1501 uint32_t record_index
= 0;
1502 HexParser parser
= {
1503 .filename
= filename
,
1504 .bin_buf
= g_malloc(hex_blob_size
),
1509 rom_transaction_begin();
1511 for (; hex_blob
< end
; ++hex_blob
) {
1512 switch (*hex_blob
) {
1520 if ((LEN_EXCEPT_DATA
+ parser
.line
.byte_count
) * 2 !=
1522 our_checksum
!= 0) {
1523 parser
.total_size
= -1;
1527 if (handle_record_type(&parser
) == -1) {
1528 parser
.total_size
= -1;
1533 /* start of a new record. */
1535 memset(&parser
.line
, 0, sizeof(HexLine
));
1540 /* decoding lines */
1542 if (!parse_record(&parser
.line
, &our_checksum
, *hex_blob
,
1543 &record_index
, in_process
)) {
1544 parser
.total_size
= -1;
1552 g_free(parser
.bin_buf
);
1553 rom_transaction_end(parser
.total_size
!= -1);
1554 return parser
.total_size
;
1557 /* return size or -1 if error */
1558 int load_targphys_hex_as(const char *filename
, hwaddr
*entry
, AddressSpace
*as
)
1560 gsize hex_blob_size
;
1564 if (!g_file_get_contents(filename
, &hex_blob
, &hex_blob_size
, NULL
)) {
1568 total_size
= parse_hex_blob(filename
, entry
, (uint8_t *)hex_blob
,