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5fe141fd
FB
1/*
2 * QEMU Executable loader
5fafdf24 3 *
5fe141fd 4 * Copyright (c) 2006 Fabrice Bellard
5fafdf24 5 *
5fe141fd
FB
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:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
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
22 * THE SOFTWARE.
5a123577
AL
23 *
24 * Gunzip functionality in this file is derived from u-boot:
25 *
26 * (C) Copyright 2008 Semihalf
27 *
28 * (C) Copyright 2000-2005
29 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
30 *
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.
35 *
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.
40 *
fad6cb1a 41 * You should have received a copy of the GNU General Public License along
8167ee88 42 * with this program; if not, see <http://www.gnu.org/licenses/>.
5fe141fd 43 */
5a123577 44
83c9f4ca 45#include "hw/hw.h"
76cad711 46#include "disas/disas.h"
83c9089e 47#include "monitor/monitor.h"
9c17d615 48#include "sysemu/sysemu.h"
47b43a1f 49#include "uboot_image.h"
83c9f4ca 50#include "hw/loader.h"
0d09e41a 51#include "hw/nvram/fw_cfg.h"
022c62cb
PB
52#include "exec/memory.h"
53#include "exec/address-spaces.h"
5fe141fd 54
5a123577
AL
55#include <zlib.h>
56
ac41881b 57bool option_rom_has_mr = false;
98bc3ab0 58bool rom_file_has_mr = true;
04920fc0 59
97fe84f5
PB
60static int roms_loaded;
61
5fe141fd
FB
62/* return the size or -1 if error */
63int get_image_size(const char *filename)
64{
65 int fd, size;
66 fd = open(filename, O_RDONLY | O_BINARY);
67 if (fd < 0)
68 return -1;
69 size = lseek(fd, 0, SEEK_END);
70 close(fd);
71 return size;
72}
73
74/* return the size or -1 if error */
293f78bc 75/* deprecated, because caller does not specify buffer size! */
5fe141fd
FB
76int load_image(const char *filename, uint8_t *addr)
77{
78 int fd, size;
79 fd = open(filename, O_RDONLY | O_BINARY);
80 if (fd < 0)
81 return -1;
82 size = lseek(fd, 0, SEEK_END);
ddd2eab7
GA
83 if (size == -1) {
84 fprintf(stderr, "file %-20s: get size error: %s\n",
85 filename, strerror(errno));
86 close(fd);
87 return -1;
88 }
89
5fe141fd
FB
90 lseek(fd, 0, SEEK_SET);
91 if (read(fd, addr, size) != size) {
92 close(fd);
93 return -1;
94 }
95 close(fd);
96 return size;
97}
98
ea87616d
BH
99/* return the size or -1 if error */
100ssize_t load_image_size(const char *filename, void *addr, size_t size)
101{
102 int fd;
103 ssize_t actsize;
104
105 fd = open(filename, O_RDONLY | O_BINARY);
106 if (fd < 0) {
107 return -1;
108 }
109
110 actsize = read(fd, addr, size);
111 if (actsize < 0) {
112 close(fd);
113 return -1;
114 }
115 close(fd);
116
117 return actsize;
118}
119
293f78bc 120/* read()-like version */
725e14e9 121ssize_t read_targphys(const char *name,
a8170e5e 122 int fd, hwaddr dst_addr, size_t nbytes)
293f78bc 123{
45a50b16 124 uint8_t *buf;
725e14e9 125 ssize_t did;
45a50b16 126
7267c094 127 buf = g_malloc(nbytes);
45a50b16
GH
128 did = read(fd, buf, nbytes);
129 if (did > 0)
130 rom_add_blob_fixed("read", buf, did, dst_addr);
7267c094 131 g_free(buf);
45a50b16 132 return did;
293f78bc
BS
133}
134
135/* return the size or -1 if error */
136int load_image_targphys(const char *filename,
a8170e5e 137 hwaddr addr, uint64_t max_sz)
293f78bc 138{
45a50b16 139 int size;
293f78bc 140
45a50b16 141 size = get_image_size(filename);
17df768c
BH
142 if (size > max_sz) {
143 return -1;
144 }
145 if (size > 0) {
2e55e842 146 rom_add_file_fixed(filename, addr, -1);
17df768c 147 }
45a50b16 148 return size;
293f78bc
BS
149}
150
a8170e5e 151void pstrcpy_targphys(const char *name, hwaddr dest, int buf_size,
293f78bc
BS
152 const char *source)
153{
293f78bc 154 const char *nulp;
3c178e72 155 char *ptr;
293f78bc
BS
156
157 if (buf_size <= 0) return;
158 nulp = memchr(source, 0, buf_size);
159 if (nulp) {
3c178e72 160 rom_add_blob_fixed(name, source, (nulp - source) + 1, dest);
293f78bc 161 } else {
3c178e72
GH
162 rom_add_blob_fixed(name, source, buf_size, dest);
163 ptr = rom_ptr(dest + buf_size - 1);
164 *ptr = 0;
293f78bc
BS
165 }
166}
167
5fe141fd
FB
168/* A.OUT loader */
169
170struct exec
171{
172 uint32_t a_info; /* Use macros N_MAGIC, etc for access */
173 uint32_t a_text; /* length of text, in bytes */
174 uint32_t a_data; /* length of data, in bytes */
175 uint32_t a_bss; /* length of uninitialized data area, in bytes */
176 uint32_t a_syms; /* length of symbol table data in file, in bytes */
177 uint32_t a_entry; /* start address */
178 uint32_t a_trsize; /* length of relocation info for text, in bytes */
179 uint32_t a_drsize; /* length of relocation info for data, in bytes */
180};
181
5fe141fd
FB
182static void bswap_ahdr(struct exec *e)
183{
184 bswap32s(&e->a_info);
185 bswap32s(&e->a_text);
186 bswap32s(&e->a_data);
187 bswap32s(&e->a_bss);
188 bswap32s(&e->a_syms);
189 bswap32s(&e->a_entry);
190 bswap32s(&e->a_trsize);
191 bswap32s(&e->a_drsize);
192}
5fe141fd
FB
193
194#define N_MAGIC(exec) ((exec).a_info & 0xffff)
195#define OMAGIC 0407
196#define NMAGIC 0410
197#define ZMAGIC 0413
198#define QMAGIC 0314
199#define _N_HDROFF(x) (1024 - sizeof (struct exec))
200#define N_TXTOFF(x) \
201 (N_MAGIC(x) == ZMAGIC ? _N_HDROFF((x)) + sizeof (struct exec) : \
202 (N_MAGIC(x) == QMAGIC ? 0 : sizeof (struct exec)))
ca20cf32
BS
203#define N_TXTADDR(x, target_page_size) (N_MAGIC(x) == QMAGIC ? target_page_size : 0)
204#define _N_SEGMENT_ROUND(x, target_page_size) (((x) + target_page_size - 1) & ~(target_page_size - 1))
5fe141fd 205
ca20cf32 206#define _N_TXTENDADDR(x, target_page_size) (N_TXTADDR(x, target_page_size)+(x).a_text)
5fe141fd 207
ca20cf32
BS
208#define N_DATADDR(x, target_page_size) \
209 (N_MAGIC(x)==OMAGIC? (_N_TXTENDADDR(x, target_page_size)) \
210 : (_N_SEGMENT_ROUND (_N_TXTENDADDR(x, target_page_size), target_page_size)))
5fe141fd
FB
211
212
a8170e5e
AK
213int load_aout(const char *filename, hwaddr addr, int max_sz,
214 int bswap_needed, hwaddr target_page_size)
5fe141fd 215{
725e14e9
MA
216 int fd;
217 ssize_t size, ret;
5fe141fd
FB
218 struct exec e;
219 uint32_t magic;
220
221 fd = open(filename, O_RDONLY | O_BINARY);
222 if (fd < 0)
223 return -1;
224
225 size = read(fd, &e, sizeof(e));
226 if (size < 0)
227 goto fail;
228
ca20cf32
BS
229 if (bswap_needed) {
230 bswap_ahdr(&e);
231 }
5fe141fd
FB
232
233 magic = N_MAGIC(e);
234 switch (magic) {
235 case ZMAGIC:
236 case QMAGIC:
237 case OMAGIC:
293f78bc
BS
238 if (e.a_text + e.a_data > max_sz)
239 goto fail;
5fe141fd 240 lseek(fd, N_TXTOFF(e), SEEK_SET);
45a50b16 241 size = read_targphys(filename, fd, addr, e.a_text + e.a_data);
5fe141fd
FB
242 if (size < 0)
243 goto fail;
244 break;
245 case NMAGIC:
ca20cf32 246 if (N_DATADDR(e, target_page_size) + e.a_data > max_sz)
293f78bc 247 goto fail;
5fe141fd 248 lseek(fd, N_TXTOFF(e), SEEK_SET);
45a50b16 249 size = read_targphys(filename, fd, addr, e.a_text);
5fe141fd
FB
250 if (size < 0)
251 goto fail;
45a50b16 252 ret = read_targphys(filename, fd, addr + N_DATADDR(e, target_page_size),
ca20cf32 253 e.a_data);
5fe141fd
FB
254 if (ret < 0)
255 goto fail;
256 size += ret;
257 break;
258 default:
259 goto fail;
260 }
261 close(fd);
262 return size;
263 fail:
264 close(fd);
265 return -1;
266}
267
268/* ELF loader */
269
270static void *load_at(int fd, int offset, int size)
271{
272 void *ptr;
273 if (lseek(fd, offset, SEEK_SET) < 0)
274 return NULL;
7267c094 275 ptr = g_malloc(size);
5fe141fd 276 if (read(fd, ptr, size) != size) {
7267c094 277 g_free(ptr);
5fe141fd
FB
278 return NULL;
279 }
280 return ptr;
281}
282
3efa9a67 283#ifdef ELF_CLASS
284#undef ELF_CLASS
285#endif
5fe141fd
FB
286
287#define ELF_CLASS ELFCLASS32
288#include "elf.h"
289
290#define SZ 32
291#define elf_word uint32_t
82790064 292#define elf_sword int32_t
5fe141fd 293#define bswapSZs bswap32s
83c9f4ca 294#include "hw/elf_ops.h"
5fe141fd
FB
295
296#undef elfhdr
297#undef elf_phdr
298#undef elf_shdr
299#undef elf_sym
5dce07e1 300#undef elf_rela
5fe141fd
FB
301#undef elf_note
302#undef elf_word
82790064 303#undef elf_sword
5fe141fd
FB
304#undef bswapSZs
305#undef SZ
306#define elfhdr elf64_hdr
307#define elf_phdr elf64_phdr
308#define elf_note elf64_note
309#define elf_shdr elf64_shdr
310#define elf_sym elf64_sym
5dce07e1 311#define elf_rela elf64_rela
5fe141fd 312#define elf_word uint64_t
82790064 313#define elf_sword int64_t
5fe141fd
FB
314#define bswapSZs bswap64s
315#define SZ 64
83c9f4ca 316#include "hw/elf_ops.h"
5fe141fd 317
18674b26
AK
318const char *load_elf_strerror(int error)
319{
320 switch (error) {
321 case 0:
322 return "No error";
323 case ELF_LOAD_FAILED:
324 return "Failed to load ELF";
325 case ELF_LOAD_NOT_ELF:
326 return "The image is not ELF";
327 case ELF_LOAD_WRONG_ARCH:
328 return "The image is from incompatible architecture";
329 case ELF_LOAD_WRONG_ENDIAN:
330 return "The image has incorrect endianness";
331 default:
332 return "Unknown error";
333 }
334}
335
5fe141fd 336/* return < 0 if error, otherwise the number of bytes loaded in memory */
409dbce5
AJ
337int load_elf(const char *filename, uint64_t (*translate_fn)(void *, uint64_t),
338 void *translate_opaque, uint64_t *pentry, uint64_t *lowaddr,
339 uint64_t *highaddr, int big_endian, int elf_machine, int clear_lsb)
5fe141fd 340{
18674b26 341 int fd, data_order, target_data_order, must_swab, ret = ELF_LOAD_FAILED;
5fe141fd
FB
342 uint8_t e_ident[EI_NIDENT];
343
699e4642 344 fd = open(filename, O_RDONLY | O_BINARY);
5fe141fd
FB
345 if (fd < 0) {
346 perror(filename);
347 return -1;
348 }
349 if (read(fd, e_ident, sizeof(e_ident)) != sizeof(e_ident))
350 goto fail;
351 if (e_ident[0] != ELFMAG0 ||
352 e_ident[1] != ELFMAG1 ||
353 e_ident[2] != ELFMAG2 ||
18674b26
AK
354 e_ident[3] != ELFMAG3) {
355 ret = ELF_LOAD_NOT_ELF;
5fe141fd 356 goto fail;
18674b26 357 }
e2542fe2 358#ifdef HOST_WORDS_BIGENDIAN
5fe141fd
FB
359 data_order = ELFDATA2MSB;
360#else
361 data_order = ELFDATA2LSB;
362#endif
363 must_swab = data_order != e_ident[EI_DATA];
ca20cf32
BS
364 if (big_endian) {
365 target_data_order = ELFDATA2MSB;
366 } else {
367 target_data_order = ELFDATA2LSB;
368 }
9042c0e2 369
cedf9a6f 370 if (target_data_order != e_ident[EI_DATA]) {
18674b26 371 ret = ELF_LOAD_WRONG_ENDIAN;
cedf9a6f
BS
372 goto fail;
373 }
9042c0e2 374
5fe141fd
FB
375 lseek(fd, 0, SEEK_SET);
376 if (e_ident[EI_CLASS] == ELFCLASS64) {
409dbce5
AJ
377 ret = load_elf64(filename, fd, translate_fn, translate_opaque, must_swab,
378 pentry, lowaddr, highaddr, elf_machine, clear_lsb);
5fe141fd 379 } else {
409dbce5
AJ
380 ret = load_elf32(filename, fd, translate_fn, translate_opaque, must_swab,
381 pentry, lowaddr, highaddr, elf_machine, clear_lsb);
5fe141fd
FB
382 }
383
5fe141fd
FB
384 fail:
385 close(fd);
18674b26 386 return ret;
5fe141fd 387}
1c7b3754 388
c227f099 389static void bswap_uboot_header(uboot_image_header_t *hdr)
1c7b3754 390{
e2542fe2 391#ifndef HOST_WORDS_BIGENDIAN
1c7b3754
PB
392 bswap32s(&hdr->ih_magic);
393 bswap32s(&hdr->ih_hcrc);
394 bswap32s(&hdr->ih_time);
395 bswap32s(&hdr->ih_size);
396 bswap32s(&hdr->ih_load);
397 bswap32s(&hdr->ih_ep);
398 bswap32s(&hdr->ih_dcrc);
399#endif
400}
401
5a123577
AL
402
403#define ZALLOC_ALIGNMENT 16
404
405static void *zalloc(void *x, unsigned items, unsigned size)
406{
407 void *p;
408
409 size *= items;
410 size = (size + ZALLOC_ALIGNMENT - 1) & ~(ZALLOC_ALIGNMENT - 1);
411
7267c094 412 p = g_malloc(size);
5a123577
AL
413
414 return (p);
415}
416
d084eab6 417static void zfree(void *x, void *addr)
5a123577 418{
7267c094 419 g_free(addr);
5a123577
AL
420}
421
422
423#define HEAD_CRC 2
424#define EXTRA_FIELD 4
425#define ORIG_NAME 8
426#define COMMENT 0x10
427#define RESERVED 0xe0
428
429#define DEFLATED 8
430
5025d542 431/* This is the usual maximum in uboot, so if a uImage overflows this, it would
5a123577 432 * overflow on real hardware too. */
5025d542 433#define UBOOT_MAX_GUNZIP_BYTES (64 << 20)
5a123577
AL
434
435static ssize_t gunzip(void *dst, size_t dstlen, uint8_t *src,
436 size_t srclen)
437{
438 z_stream s;
439 ssize_t dstbytes;
440 int r, i, flags;
441
442 /* skip header */
443 i = 10;
444 flags = src[3];
445 if (src[2] != DEFLATED || (flags & RESERVED) != 0) {
446 puts ("Error: Bad gzipped data\n");
447 return -1;
448 }
449 if ((flags & EXTRA_FIELD) != 0)
450 i = 12 + src[10] + (src[11] << 8);
451 if ((flags & ORIG_NAME) != 0)
452 while (src[i++] != 0)
453 ;
454 if ((flags & COMMENT) != 0)
455 while (src[i++] != 0)
456 ;
457 if ((flags & HEAD_CRC) != 0)
458 i += 2;
459 if (i >= srclen) {
460 puts ("Error: gunzip out of data in header\n");
461 return -1;
462 }
463
464 s.zalloc = zalloc;
d084eab6 465 s.zfree = zfree;
5a123577
AL
466
467 r = inflateInit2(&s, -MAX_WBITS);
468 if (r != Z_OK) {
469 printf ("Error: inflateInit2() returned %d\n", r);
470 return (-1);
471 }
472 s.next_in = src + i;
473 s.avail_in = srclen - i;
474 s.next_out = dst;
475 s.avail_out = dstlen;
476 r = inflate(&s, Z_FINISH);
477 if (r != Z_OK && r != Z_STREAM_END) {
478 printf ("Error: inflate() returned %d\n", r);
479 return -1;
480 }
481 dstbytes = s.next_out - (unsigned char *) dst;
482 inflateEnd(&s);
483
484 return dstbytes;
485}
486
1c7b3754 487/* Load a U-Boot image. */
84aee0de 488static int load_uboot_image(const char *filename, hwaddr *ep, hwaddr *loadaddr,
25bda50a
MF
489 int *is_linux, uint8_t image_type,
490 uint64_t (*translate_fn)(void *, uint64_t),
491 void *translate_opaque)
1c7b3754 492{
1c7b3754
PB
493 int fd;
494 int size;
84aee0de 495 hwaddr address;
c227f099
AL
496 uboot_image_header_t h;
497 uboot_image_header_t *hdr = &h;
1c7b3754 498 uint8_t *data = NULL;
265ca29a 499 int ret = -1;
84aee0de 500 int do_uncompress = 0;
1c7b3754
PB
501
502 fd = open(filename, O_RDONLY | O_BINARY);
503 if (fd < 0)
504 return -1;
505
c227f099 506 size = read(fd, hdr, sizeof(uboot_image_header_t));
1c7b3754 507 if (size < 0)
265ca29a 508 goto out;
1c7b3754
PB
509
510 bswap_uboot_header(hdr);
511
512 if (hdr->ih_magic != IH_MAGIC)
265ca29a 513 goto out;
1c7b3754 514
84aee0de
SB
515 if (hdr->ih_type != image_type) {
516 fprintf(stderr, "Wrong image type %d, expected %d\n", hdr->ih_type,
517 image_type);
265ca29a 518 goto out;
1c7b3754
PB
519 }
520
84aee0de
SB
521 /* TODO: Implement other image types. */
522 switch (hdr->ih_type) {
523 case IH_TYPE_KERNEL:
524 address = hdr->ih_load;
25bda50a
MF
525 if (translate_fn) {
526 address = translate_fn(translate_opaque, address);
527 }
84aee0de
SB
528 if (loadaddr) {
529 *loadaddr = hdr->ih_load;
530 }
531
532 switch (hdr->ih_comp) {
533 case IH_COMP_NONE:
534 break;
535 case IH_COMP_GZIP:
536 do_uncompress = 1;
537 break;
538 default:
539 fprintf(stderr,
540 "Unable to load u-boot images with compression type %d\n",
541 hdr->ih_comp);
542 goto out;
543 }
544
545 if (ep) {
546 *ep = hdr->ih_ep;
547 }
548
549 /* TODO: Check CPU type. */
550 if (is_linux) {
551 if (hdr->ih_os == IH_OS_LINUX) {
552 *is_linux = 1;
553 } else {
554 *is_linux = 0;
555 }
556 }
557
558 break;
559 case IH_TYPE_RAMDISK:
560 address = *loadaddr;
5a123577
AL
561 break;
562 default:
84aee0de 563 fprintf(stderr, "Unsupported u-boot image type %d\n", hdr->ih_type);
265ca29a 564 goto out;
1c7b3754
PB
565 }
566
7267c094 567 data = g_malloc(hdr->ih_size);
1c7b3754
PB
568
569 if (read(fd, data, hdr->ih_size) != hdr->ih_size) {
570 fprintf(stderr, "Error reading file\n");
265ca29a 571 goto out;
1c7b3754
PB
572 }
573
84aee0de 574 if (do_uncompress) {
5a123577
AL
575 uint8_t *compressed_data;
576 size_t max_bytes;
577 ssize_t bytes;
578
579 compressed_data = data;
580 max_bytes = UBOOT_MAX_GUNZIP_BYTES;
7267c094 581 data = g_malloc(max_bytes);
5a123577
AL
582
583 bytes = gunzip(data, max_bytes, compressed_data, hdr->ih_size);
7267c094 584 g_free(compressed_data);
5a123577
AL
585 if (bytes < 0) {
586 fprintf(stderr, "Unable to decompress gzipped image!\n");
587 goto out;
588 }
589 hdr->ih_size = bytes;
590 }
591
84aee0de 592 rom_add_blob_fixed(filename, data, hdr->ih_size, address);
21cafd08 593
265ca29a 594 ret = hdr->ih_size;
1c7b3754 595
265ca29a 596out:
1c7b3754 597 if (data)
7267c094 598 g_free(data);
1c7b3754 599 close(fd);
265ca29a 600 return ret;
1c7b3754 601}
45a50b16 602
84aee0de 603int load_uimage(const char *filename, hwaddr *ep, hwaddr *loadaddr,
25bda50a
MF
604 int *is_linux,
605 uint64_t (*translate_fn)(void *, uint64_t),
606 void *translate_opaque)
84aee0de 607{
25bda50a
MF
608 return load_uboot_image(filename, ep, loadaddr, is_linux, IH_TYPE_KERNEL,
609 translate_fn, translate_opaque);
84aee0de
SB
610}
611
612/* Load a ramdisk. */
613int load_ramdisk(const char *filename, hwaddr addr, uint64_t max_sz)
614{
25bda50a
MF
615 return load_uboot_image(filename, NULL, &addr, NULL, IH_TYPE_RAMDISK,
616 NULL, NULL);
84aee0de
SB
617}
618
7d48a0f7
LE
619/* Load a gzip-compressed kernel to a dynamically allocated buffer. */
620int load_image_gzipped_buffer(const char *filename, uint64_t max_sz,
621 uint8_t **buffer)
235e74af
RJ
622{
623 uint8_t *compressed_data = NULL;
624 uint8_t *data = NULL;
625 gsize len;
626 ssize_t bytes;
627 int ret = -1;
628
629 if (!g_file_get_contents(filename, (char **) &compressed_data, &len,
630 NULL)) {
631 goto out;
632 }
633
634 /* Is it a gzip-compressed file? */
635 if (len < 2 ||
636 compressed_data[0] != 0x1f ||
637 compressed_data[1] != 0x8b) {
638 goto out;
639 }
640
641 if (max_sz > LOAD_IMAGE_MAX_GUNZIP_BYTES) {
642 max_sz = LOAD_IMAGE_MAX_GUNZIP_BYTES;
643 }
644
645 data = g_malloc(max_sz);
646 bytes = gunzip(data, max_sz, compressed_data, len);
647 if (bytes < 0) {
648 fprintf(stderr, "%s: unable to decompress gzipped kernel file\n",
649 filename);
650 goto out;
651 }
652
7d48a0f7
LE
653 /* trim to actual size and return to caller */
654 *buffer = g_realloc(data, bytes);
235e74af 655 ret = bytes;
7d48a0f7
LE
656 /* ownership has been transferred to caller */
657 data = NULL;
235e74af
RJ
658
659 out:
660 g_free(compressed_data);
661 g_free(data);
662 return ret;
663}
664
7d48a0f7
LE
665/* Load a gzip-compressed kernel. */
666int load_image_gzipped(const char *filename, hwaddr addr, uint64_t max_sz)
667{
668 int bytes;
669 uint8_t *data;
670
671 bytes = load_image_gzipped_buffer(filename, max_sz, &data);
672 if (bytes != -1) {
673 rom_add_blob_fixed(filename, data, bytes, addr);
674 g_free(data);
675 }
676 return bytes;
677}
678
45a50b16
GH
679/*
680 * Functions for reboot-persistent memory regions.
681 * - used for vga bios and option roms.
682 * - also linux kernel (-kernel / -initrd).
683 */
684
685typedef struct Rom Rom;
686
687struct Rom {
688 char *name;
689 char *path;
d60fa42e
FC
690
691 /* datasize is the amount of memory allocated in "data". If datasize is less
692 * than romsize, it means that the area from datasize to romsize is filled
693 * with zeros.
694 */
45a50b16 695 size_t romsize;
d60fa42e
FC
696 size_t datasize;
697
45a50b16 698 uint8_t *data;
04920fc0 699 MemoryRegion *mr;
45a50b16 700 int isrom;
379526a4
GH
701 char *fw_dir;
702 char *fw_file;
45a50b16 703
a8170e5e 704 hwaddr addr;
45a50b16
GH
705 QTAILQ_ENTRY(Rom) next;
706};
707
8832cb80 708static FWCfgState *fw_cfg;
45a50b16
GH
709static QTAILQ_HEAD(, Rom) roms = QTAILQ_HEAD_INITIALIZER(roms);
710
711static void rom_insert(Rom *rom)
712{
713 Rom *item;
714
97fe84f5
PB
715 if (roms_loaded) {
716 hw_error ("ROM images must be loaded at startup\n");
717 }
718
45a50b16
GH
719 /* list is ordered by load address */
720 QTAILQ_FOREACH(item, &roms, next) {
632cf034 721 if (rom->addr >= item->addr)
45a50b16
GH
722 continue;
723 QTAILQ_INSERT_BEFORE(item, rom, next);
724 return;
725 }
726 QTAILQ_INSERT_TAIL(&roms, rom, next);
727}
728
a1666142
MT
729static void fw_cfg_resized(const char *id, uint64_t length, void *host)
730{
731 if (fw_cfg) {
732 fw_cfg_modify_file(fw_cfg, id + strlen("/rom@"), host, length);
733 }
734}
735
04920fc0
MT
736static void *rom_set_mr(Rom *rom, Object *owner, const char *name)
737{
738 void *data;
739
740 rom->mr = g_malloc(sizeof(*rom->mr));
a1666142
MT
741 memory_region_init_resizeable_ram(rom->mr, owner, name,
742 rom->datasize, rom->romsize,
743 fw_cfg_resized,
744 &error_abort);
04920fc0
MT
745 memory_region_set_readonly(rom->mr, true);
746 vmstate_register_ram_global(rom->mr);
747
748 data = memory_region_get_ram_ptr(rom->mr);
749 memcpy(data, rom->data, rom->datasize);
750
751 return data;
752}
753
bdb5ee30 754int rom_add_file(const char *file, const char *fw_dir,
ac41881b
MT
755 hwaddr addr, int32_t bootindex,
756 bool option_rom)
45a50b16
GH
757{
758 Rom *rom;
759 int rc, fd = -1;
2e55e842 760 char devpath[100];
45a50b16 761
7267c094
AL
762 rom = g_malloc0(sizeof(*rom));
763 rom->name = g_strdup(file);
45a50b16
GH
764 rom->path = qemu_find_file(QEMU_FILE_TYPE_BIOS, rom->name);
765 if (rom->path == NULL) {
7267c094 766 rom->path = g_strdup(file);
45a50b16
GH
767 }
768
cef290b8 769 fd = open(rom->path, O_RDONLY | O_BINARY);
45a50b16
GH
770 if (fd == -1) {
771 fprintf(stderr, "Could not open option rom '%s': %s\n",
772 rom->path, strerror(errno));
773 goto err;
774 }
775
bdb5ee30 776 if (fw_dir) {
7267c094
AL
777 rom->fw_dir = g_strdup(fw_dir);
778 rom->fw_file = g_strdup(file);
bdb5ee30 779 }
d60fa42e
FC
780 rom->addr = addr;
781 rom->romsize = lseek(fd, 0, SEEK_END);
ddd2eab7
GA
782 if (rom->romsize == -1) {
783 fprintf(stderr, "rom: file %-20s: get size error: %s\n",
784 rom->name, strerror(errno));
785 goto err;
786 }
787
d60fa42e
FC
788 rom->datasize = rom->romsize;
789 rom->data = g_malloc0(rom->datasize);
45a50b16 790 lseek(fd, 0, SEEK_SET);
d60fa42e
FC
791 rc = read(fd, rom->data, rom->datasize);
792 if (rc != rom->datasize) {
45a50b16 793 fprintf(stderr, "rom: file %-20s: read error: rc=%d (expected %zd)\n",
d60fa42e 794 rom->name, rc, rom->datasize);
45a50b16
GH
795 goto err;
796 }
797 close(fd);
798 rom_insert(rom);
de1f34cb
GN
799 if (rom->fw_file && fw_cfg) {
800 const char *basename;
35c12e60 801 char fw_file_name[FW_CFG_MAX_FILE_PATH];
04920fc0 802 void *data;
de1f34cb
GN
803
804 basename = strrchr(rom->fw_file, '/');
805 if (basename) {
806 basename++;
807 } else {
808 basename = rom->fw_file;
809 }
810 snprintf(fw_file_name, sizeof(fw_file_name), "%s/%s", rom->fw_dir,
811 basename);
2e55e842 812 snprintf(devpath, sizeof(devpath), "/rom@%s", fw_file_name);
04920fc0 813
ac41881b 814 if ((!option_rom || option_rom_has_mr) && rom_file_has_mr) {
04920fc0
MT
815 data = rom_set_mr(rom, OBJECT(fw_cfg), devpath);
816 } else {
817 data = rom->data;
818 }
819
820 fw_cfg_add_file(fw_cfg, fw_file_name, data, rom->romsize);
2e55e842
GN
821 } else {
822 snprintf(devpath, sizeof(devpath), "/rom@" TARGET_FMT_plx, addr);
de1f34cb 823 }
2e55e842
GN
824
825 add_boot_device_path(bootindex, NULL, devpath);
45a50b16
GH
826 return 0;
827
828err:
829 if (fd != -1)
830 close(fd);
7267c094
AL
831 g_free(rom->data);
832 g_free(rom->path);
833 g_free(rom->name);
834 g_free(rom);
45a50b16
GH
835 return -1;
836}
837
ad5b88b1 838ram_addr_t rom_add_blob(const char *name, const void *blob, size_t len,
a1666142 839 size_t max_len, hwaddr addr, const char *fw_file_name,
48354cc5 840 FWCfgReadCallback fw_callback, void *callback_opaque)
45a50b16
GH
841{
842 Rom *rom;
ad5b88b1 843 ram_addr_t ret = RAM_ADDR_MAX;
45a50b16 844
d60fa42e
FC
845 rom = g_malloc0(sizeof(*rom));
846 rom->name = g_strdup(name);
847 rom->addr = addr;
a1666142 848 rom->romsize = max_len ? max_len : len;
d60fa42e
FC
849 rom->datasize = len;
850 rom->data = g_malloc0(rom->datasize);
45a50b16
GH
851 memcpy(rom->data, blob, len);
852 rom_insert(rom);
48354cc5
MT
853 if (fw_file_name && fw_cfg) {
854 char devpath[100];
ad5b88b1 855 void *data;
48354cc5
MT
856
857 snprintf(devpath, sizeof(devpath), "/rom@%s", fw_file_name);
858
98bc3ab0 859 if (rom_file_has_mr) {
48354cc5 860 data = rom_set_mr(rom, OBJECT(fw_cfg), devpath);
ad5b88b1 861 ret = memory_region_get_ram_addr(rom->mr);
48354cc5
MT
862 } else {
863 data = rom->data;
864 }
865
866 fw_cfg_add_file_callback(fw_cfg, fw_file_name,
867 fw_callback, callback_opaque,
a1666142 868 data, rom->datasize);
48354cc5 869 }
ad5b88b1 870 return ret;
45a50b16
GH
871}
872
d60fa42e
FC
873/* This function is specific for elf program because we don't need to allocate
874 * all the rom. We just allocate the first part and the rest is just zeros. This
875 * is why romsize and datasize are different. Also, this function seize the
876 * memory ownership of "data", so we don't have to allocate and copy the buffer.
877 */
878int rom_add_elf_program(const char *name, void *data, size_t datasize,
879 size_t romsize, hwaddr addr)
880{
881 Rom *rom;
882
883 rom = g_malloc0(sizeof(*rom));
884 rom->name = g_strdup(name);
885 rom->addr = addr;
886 rom->datasize = datasize;
887 rom->romsize = romsize;
888 rom->data = data;
889 rom_insert(rom);
890 return 0;
891}
892
de2aff17
GH
893int rom_add_vga(const char *file)
894{
ac41881b 895 return rom_add_file(file, "vgaroms", 0, -1, true);
de2aff17
GH
896}
897
2e55e842 898int rom_add_option(const char *file, int32_t bootindex)
de2aff17 899{
ac41881b 900 return rom_add_file(file, "genroms", 0, bootindex, true);
de2aff17
GH
901}
902
45a50b16
GH
903static void rom_reset(void *unused)
904{
905 Rom *rom;
906
907 QTAILQ_FOREACH(rom, &roms, next) {
e405a2ba
AK
908 if (rom->fw_file) {
909 continue;
910 }
bdb5ee30 911 if (rom->data == NULL) {
45a50b16 912 continue;
bdb5ee30 913 }
04920fc0
MT
914 if (rom->mr) {
915 void *host = memory_region_get_ram_ptr(rom->mr);
916 memcpy(host, rom->data, rom->datasize);
917 } else {
2a221651
EI
918 cpu_physical_memory_write_rom(&address_space_memory,
919 rom->addr, rom->data, rom->datasize);
04920fc0 920 }
45a50b16
GH
921 if (rom->isrom) {
922 /* rom needs to be written only once */
7267c094 923 g_free(rom->data);
45a50b16
GH
924 rom->data = NULL;
925 }
582b55a9
AG
926 /*
927 * The rom loader is really on the same level as firmware in the guest
928 * shadowing a ROM into RAM. Such a shadowing mechanism needs to ensure
929 * that the instruction cache for that new region is clear, so that the
930 * CPU definitely fetches its instructions from the just written data.
931 */
932 cpu_flush_icache_range(rom->addr, rom->datasize);
45a50b16
GH
933 }
934}
935
936int rom_load_all(void)
937{
a8170e5e 938 hwaddr addr = 0;
dcc5cd33 939 MemoryRegionSection section;
45a50b16
GH
940 Rom *rom;
941
942 QTAILQ_FOREACH(rom, &roms, next) {
e405a2ba
AK
943 if (rom->fw_file) {
944 continue;
945 }
632cf034
GH
946 if (addr > rom->addr) {
947 fprintf(stderr, "rom: requested regions overlap "
948 "(rom %s. free=0x" TARGET_FMT_plx
949 ", addr=0x" TARGET_FMT_plx ")\n",
950 rom->name, addr, rom->addr);
951 return -1;
45a50b16 952 }
632cf034 953 addr = rom->addr;
45a50b16 954 addr += rom->romsize;
dcc5cd33 955 section = memory_region_find(get_system_memory(), rom->addr, 1);
052e87b0 956 rom->isrom = int128_nz(section.size) && memory_region_is_rom(section.mr);
dfde4e6e 957 memory_region_unref(section.mr);
45a50b16
GH
958 }
959 qemu_register_reset(rom_reset, NULL);
45a50b16
GH
960 return 0;
961}
962
d916b464
MT
963void rom_load_done(void)
964{
965 roms_loaded = 1;
966}
967
a88b362c 968void rom_set_fw(FWCfgState *f)
379526a4 969{
8832cb80 970 fw_cfg = f;
379526a4
GH
971}
972
a8170e5e 973static Rom *find_rom(hwaddr addr)
3c178e72
GH
974{
975 Rom *rom;
976
977 QTAILQ_FOREACH(rom, &roms, next) {
f21a59c2
AJ
978 if (rom->fw_file) {
979 continue;
980 }
04920fc0
MT
981 if (rom->mr) {
982 continue;
983 }
bdb5ee30 984 if (rom->addr > addr) {
3c178e72 985 continue;
bdb5ee30
GH
986 }
987 if (rom->addr + rom->romsize < addr) {
3c178e72 988 continue;
bdb5ee30 989 }
3c178e72
GH
990 return rom;
991 }
992 return NULL;
993}
994
935effc2
KW
995/*
996 * Copies memory from registered ROMs to dest. Any memory that is contained in
997 * a ROM between addr and addr + size is copied. Note that this can involve
998 * multiple ROMs, which need not start at addr and need not end at addr + size.
999 */
a8170e5e 1000int rom_copy(uint8_t *dest, hwaddr addr, size_t size)
235f86ef 1001{
a8170e5e 1002 hwaddr end = addr + size;
235f86ef
AG
1003 uint8_t *s, *d = dest;
1004 size_t l = 0;
1005 Rom *rom;
1006
1007 QTAILQ_FOREACH(rom, &roms, next) {
f21a59c2
AJ
1008 if (rom->fw_file) {
1009 continue;
1010 }
04920fc0
MT
1011 if (rom->mr) {
1012 continue;
1013 }
bdb5ee30 1014 if (rom->addr + rom->romsize < addr) {
632cf034 1015 continue;
bdb5ee30
GH
1016 }
1017 if (rom->addr > end) {
235f86ef 1018 break;
bdb5ee30 1019 }
235f86ef 1020
632cf034 1021 d = dest + (rom->addr - addr);
235f86ef 1022 s = rom->data;
d60fa42e 1023 l = rom->datasize;
235f86ef 1024
235f86ef
AG
1025 if ((d + l) > (dest + size)) {
1026 l = dest - d;
1027 }
1028
0dd5ce38
MB
1029 if (l > 0) {
1030 memcpy(d, s, l);
1031 }
d60fa42e
FC
1032
1033 if (rom->romsize > rom->datasize) {
1034 /* If datasize is less than romsize, it means that we didn't
1035 * allocate all the ROM because the trailing data are only zeros.
1036 */
1037
1038 d += l;
1039 l = rom->romsize - rom->datasize;
1040
1041 if ((d + l) > (dest + size)) {
1042 /* Rom size doesn't fit in the destination area. Adjust to avoid
1043 * overflow.
1044 */
1045 l = dest - d;
1046 }
1047
1048 if (l > 0) {
1049 memset(d, 0x0, l);
1050 }
1051 }
235f86ef
AG
1052 }
1053
1054 return (d + l) - dest;
1055}
1056
a8170e5e 1057void *rom_ptr(hwaddr addr)
3c178e72
GH
1058{
1059 Rom *rom;
1060
1061 rom = find_rom(addr);
1062 if (!rom || !rom->data)
1063 return NULL;
632cf034 1064 return rom->data + (addr - rom->addr);
3c178e72
GH
1065}
1066
1ce6be24 1067void hmp_info_roms(Monitor *mon, const QDict *qdict)
45a50b16
GH
1068{
1069 Rom *rom;
1070
1071 QTAILQ_FOREACH(rom, &roms, next) {
04920fc0
MT
1072 if (rom->mr) {
1073 monitor_printf(mon, "%s"
1074 " size=0x%06zx name=\"%s\"\n",
401cf7fd 1075 memory_region_name(rom->mr),
04920fc0
MT
1076 rom->romsize,
1077 rom->name);
1078 } else if (!rom->fw_file) {
632cf034 1079 monitor_printf(mon, "addr=" TARGET_FMT_plx
b2bedb21 1080 " size=0x%06zx mem=%s name=\"%s\"\n",
632cf034
GH
1081 rom->addr, rom->romsize,
1082 rom->isrom ? "rom" : "ram",
1083 rom->name);
1084 } else {
bdb5ee30 1085 monitor_printf(mon, "fw=%s/%s"
b2bedb21 1086 " size=0x%06zx name=\"%s\"\n",
bdb5ee30 1087 rom->fw_dir,
632cf034
GH
1088 rom->fw_file,
1089 rom->romsize,
1090 rom->name);
1091 }
45a50b16
GH
1092 }
1093}