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
26 #include "uboot_image.h"
28 /* return the size or -1 if error */
29 int get_image_size(const char *filename
)
32 fd
= open(filename
, O_RDONLY
| O_BINARY
);
35 size
= lseek(fd
, 0, SEEK_END
);
40 /* return the size or -1 if error */
41 int load_image(const char *filename
, uint8_t *addr
)
44 fd
= open(filename
, O_RDONLY
| O_BINARY
);
47 size
= lseek(fd
, 0, SEEK_END
);
48 lseek(fd
, 0, SEEK_SET
);
49 if (read(fd
, addr
, size
) != size
) {
61 uint32_t a_info
; /* Use macros N_MAGIC, etc for access */
62 uint32_t a_text
; /* length of text, in bytes */
63 uint32_t a_data
; /* length of data, in bytes */
64 uint32_t a_bss
; /* length of uninitialized data area, in bytes */
65 uint32_t a_syms
; /* length of symbol table data in file, in bytes */
66 uint32_t a_entry
; /* start address */
67 uint32_t a_trsize
; /* length of relocation info for text, in bytes */
68 uint32_t a_drsize
; /* length of relocation info for data, in bytes */
72 static void bswap_ahdr(struct exec
*e
)
79 bswap32s(&e
->a_entry
);
80 bswap32s(&e
->a_trsize
);
81 bswap32s(&e
->a_drsize
);
84 #define bswap_ahdr(x) do { } while (0)
87 #define N_MAGIC(exec) ((exec).a_info & 0xffff)
92 #define _N_HDROFF(x) (1024 - sizeof (struct exec))
94 (N_MAGIC(x) == ZMAGIC ? _N_HDROFF((x)) + sizeof (struct exec) : \
95 (N_MAGIC(x) == QMAGIC ? 0 : sizeof (struct exec)))
96 #define N_TXTADDR(x) (N_MAGIC(x) == QMAGIC ? TARGET_PAGE_SIZE : 0)
97 #define N_DATOFF(x) (N_TXTOFF(x) + (x).a_text)
98 #define _N_SEGMENT_ROUND(x) (((x) + TARGET_PAGE_SIZE - 1) & ~(TARGET_PAGE_SIZE - 1))
100 #define _N_TXTENDADDR(x) (N_TXTADDR(x)+(x).a_text)
102 #define N_DATADDR(x) \
103 (N_MAGIC(x)==OMAGIC? (_N_TXTENDADDR(x)) \
104 : (_N_SEGMENT_ROUND (_N_TXTENDADDR(x))))
107 int load_aout(const char *filename
, uint8_t *addr
)
113 fd
= open(filename
, O_RDONLY
| O_BINARY
);
117 size
= read(fd
, &e
, sizeof(e
));
128 lseek(fd
, N_TXTOFF(e
), SEEK_SET
);
129 size
= read(fd
, addr
, e
.a_text
+ e
.a_data
);
134 lseek(fd
, N_TXTOFF(e
), SEEK_SET
);
135 size
= read(fd
, addr
, e
.a_text
);
138 ret
= read(fd
, addr
+ N_DATADDR(e
), e
.a_data
);
155 static void *load_at(int fd
, int offset
, int size
)
158 if (lseek(fd
, offset
, SEEK_SET
) < 0)
160 ptr
= qemu_malloc(size
);
163 if (read(fd
, ptr
, size
) != size
) {
171 #define ELF_CLASS ELFCLASS32
175 #define elf_word uint32_t
176 #define bswapSZs bswap32s
187 #define elfhdr elf64_hdr
188 #define elf_phdr elf64_phdr
189 #define elf_note elf64_note
190 #define elf_shdr elf64_shdr
191 #define elf_sym elf64_sym
192 #define elf_word uint64_t
193 #define bswapSZs bswap64s
197 /* return < 0 if error, otherwise the number of bytes loaded in memory */
198 int load_elf(const char *filename
, int64_t virt_to_phys_addend
,
201 int fd
, data_order
, host_data_order
, must_swab
, ret
;
202 uint8_t e_ident
[EI_NIDENT
];
204 fd
= open(filename
, O_RDONLY
| O_BINARY
);
209 if (read(fd
, e_ident
, sizeof(e_ident
)) != sizeof(e_ident
))
211 if (e_ident
[0] != ELFMAG0
||
212 e_ident
[1] != ELFMAG1
||
213 e_ident
[2] != ELFMAG2
||
214 e_ident
[3] != ELFMAG3
)
216 #ifdef WORDS_BIGENDIAN
217 data_order
= ELFDATA2MSB
;
219 data_order
= ELFDATA2LSB
;
221 must_swab
= data_order
!= e_ident
[EI_DATA
];
223 #ifdef TARGET_WORDS_BIGENDIAN
224 host_data_order
= ELFDATA2MSB
;
226 host_data_order
= ELFDATA2LSB
;
228 if (host_data_order
!= e_ident
[EI_DATA
])
231 lseek(fd
, 0, SEEK_SET
);
232 if (e_ident
[EI_CLASS
] == ELFCLASS64
) {
233 ret
= load_elf64(fd
, virt_to_phys_addend
, must_swab
, pentry
);
235 ret
= load_elf32(fd
, virt_to_phys_addend
, must_swab
, pentry
);
246 static void bswap_uboot_header(uboot_image_header_t
*hdr
)
248 #ifndef WORDS_BIGENDIAN
249 bswap32s(&hdr
->ih_magic
);
250 bswap32s(&hdr
->ih_hcrc
);
251 bswap32s(&hdr
->ih_time
);
252 bswap32s(&hdr
->ih_size
);
253 bswap32s(&hdr
->ih_load
);
254 bswap32s(&hdr
->ih_ep
);
255 bswap32s(&hdr
->ih_dcrc
);
259 /* Load a U-Boot image. */
260 int load_uboot(const char *filename
, target_ulong
*ep
, int *is_linux
)
265 uboot_image_header_t h
;
266 uboot_image_header_t
*hdr
= &h
;
267 uint8_t *data
= NULL
;
269 fd
= open(filename
, O_RDONLY
| O_BINARY
);
273 size
= read(fd
, hdr
, sizeof(uboot_image_header_t
));
277 bswap_uboot_header(hdr
);
279 if (hdr
->ih_magic
!= IH_MAGIC
)
282 /* TODO: Implement Multi-File images. */
283 if (hdr
->ih_type
== IH_TYPE_MULTI
) {
284 fprintf(stderr
, "Unable to load multi-file u-boot images\n");
288 /* TODO: Implement compressed images. */
289 if (hdr
->ih_comp
!= IH_COMP_NONE
) {
290 fprintf(stderr
, "Unable to load compressed u-boot images\n");
294 /* TODO: Check CPU type. */
296 if (hdr
->ih_type
== IH_TYPE_KERNEL
&& hdr
->ih_os
== IH_OS_LINUX
)
303 data
= qemu_malloc(hdr
->ih_size
);
307 if (read(fd
, data
, hdr
->ih_size
) != hdr
->ih_size
) {
308 fprintf(stderr
, "Error reading file\n");
312 cpu_physical_memory_write_rom(hdr
->ih_load
, data
, hdr
->ih_size
);