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83d290c5 1// SPDX-License-Identifier: GPL-2.0+
b97a2a0a
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2/*
3 * (C) Copyright 2008 Semihalf
4 *
5 * (C) Copyright 2000-2006
6 * Wolfgang Denk, DENX Software Engineering, [email protected].
b97a2a0a 7 */
ceaed2b1 8
b97a2a0a 9#ifndef USE_HOSTCC
5ad03eb3 10#include <common.h>
7b51b576 11#include <env.h>
5ad03eb3
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12#include <watchdog.h>
13
14#ifdef CONFIG_SHOW_BOOT_PROGRESS
15#include <status_led.h>
16#endif
17
2242f536 18#include <rtc.h>
2242f536 19
0c670fc1 20#include <gzip.h>
5dfb5213 21#include <image.h>
0eb25b61 22#include <mapmem.h>
5dfb5213 23
aa34fbc0 24#if IMAGE_ENABLE_FIT || IMAGE_ENABLE_OF_LIBFDT
b08c8c48 25#include <linux/libfdt.h>
fff888a1 26#include <fdt_support.h>
62afc601
MS
27#include <fpga.h>
28#include <xilinx.h>
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29#endif
30
20a14a42 31#include <u-boot/md5.h>
2b9912e6 32#include <u-boot/sha1.h>
1221ce45 33#include <linux/errno.h>
35e7b0f1 34#include <asm/io.h>
c8779648 35
2090854c
JW
36#include <bzlib.h>
37#include <linux/lzo.h>
38#include <lzma/LzmaTypes.h>
39#include <lzma/LzmaDec.h>
40#include <lzma/LzmaTools.h>
41
b6b0fe64 42#ifdef CONFIG_CMD_BDI
54841ab5 43extern int do_bdinfo(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[]);
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44#endif
45
46DECLARE_GLOBAL_DATA_PTR;
8a5ea3e6 47
c76c93a3 48#if CONFIG_IS_ENABLED(LEGACY_IMAGE_FORMAT)
712fbcf3 49static const image_header_t *image_get_ramdisk(ulong rd_addr, uint8_t arch,
d985c849 50 int verify);
21d29f7f 51#endif
b97a2a0a 52#else
5ad03eb3 53#include "mkimage.h"
20a14a42 54#include <u-boot/md5.h>
5dfb5213 55#include <time.h>
b97a2a0a 56#include <image.h>
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HS
57
58#ifndef __maybe_unused
59# define __maybe_unused /* unimplemented */
60#endif
5dfb5213 61#endif /* !USE_HOSTCC*/
b97a2a0a 62
0ccff500 63#include <u-boot/crc.h>
5b20d141 64#include <imximage.h>
0ccff500 65
13d06981
SG
66#ifndef CONFIG_SYS_BARGSIZE
67#define CONFIG_SYS_BARGSIZE 512
68#endif
69
7edb186f 70static const table_entry_t uimage_arch[] = {
30495bff 71 { IH_ARCH_INVALID, "invalid", "Invalid ARCH", },
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72 { IH_ARCH_ALPHA, "alpha", "Alpha", },
73 { IH_ARCH_ARM, "arm", "ARM", },
74 { IH_ARCH_I386, "x86", "Intel x86", },
75 { IH_ARCH_IA64, "ia64", "IA64", },
76 { IH_ARCH_M68K, "m68k", "M68K", },
77 { IH_ARCH_MICROBLAZE, "microblaze", "MicroBlaze", },
78 { IH_ARCH_MIPS, "mips", "MIPS", },
79 { IH_ARCH_MIPS64, "mips64", "MIPS 64 Bit", },
570abb0a 80 { IH_ARCH_NIOS2, "nios2", "NIOS II", },
e419e12d 81 { IH_ARCH_PPC, "powerpc", "PowerPC", },
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82 { IH_ARCH_PPC, "ppc", "PowerPC", },
83 { IH_ARCH_S390, "s390", "IBM S390", },
84 { IH_ARCH_SH, "sh", "SuperH", },
85 { IH_ARCH_SPARC, "sparc", "SPARC", },
86 { IH_ARCH_SPARC64, "sparc64", "SPARC 64 Bit", },
87 { IH_ARCH_BLACKFIN, "blackfin", "Blackfin", },
88 { IH_ARCH_AVR32, "avr32", "AVR32", },
64d61461 89 { IH_ARCH_NDS32, "nds32", "NDS32", },
3ddcaccd 90 { IH_ARCH_OPENRISC, "or1k", "OpenRISC 1000",},
35e7b0f1 91 { IH_ARCH_SANDBOX, "sandbox", "Sandbox", },
0ae76531 92 { IH_ARCH_ARM64, "arm64", "AArch64", },
bc5d5428 93 { IH_ARCH_ARC, "arc", "ARC", },
5bda35cf 94 { IH_ARCH_X86_64, "x86_64", "AMD x86_64", },
de5e5cea 95 { IH_ARCH_XTENSA, "xtensa", "Xtensa", },
86aa65a0 96 { IH_ARCH_RISCV, "riscv", "RISC-V", },
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97 { -1, "", "", },
98};
99
7edb186f 100static const table_entry_t uimage_os[] = {
30495bff 101 { IH_OS_INVALID, "invalid", "Invalid OS", },
4914af12 102 { IH_OS_ARM_TRUSTED_FIRMWARE, "arm-trusted-firmware", "ARM Trusted Firmware" },
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103 { IH_OS_LINUX, "linux", "Linux", },
104#if defined(CONFIG_LYNXKDI) || defined(USE_HOSTCC)
105 { IH_OS_LYNXOS, "lynxos", "LynxOS", },
106#endif
107 { IH_OS_NETBSD, "netbsd", "NetBSD", },
3df61957 108 { IH_OS_OSE, "ose", "Enea OSE", },
04d41409 109 { IH_OS_PLAN9, "plan9", "Plan 9", },
570abb0a 110 { IH_OS_RTEMS, "rtems", "RTEMS", },
45b55712 111 { IH_OS_TEE, "tee", "Trusted Execution Environment" },
570abb0a 112 { IH_OS_U_BOOT, "u-boot", "U-Boot", },
68b15e83 113 { IH_OS_VXWORKS, "vxworks", "VxWorks", },
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114#if defined(CONFIG_CMD_ELF) || defined(USE_HOSTCC)
115 { IH_OS_QNX, "qnx", "QNX", },
570abb0a 116#endif
f5ed9e39
PT
117#if defined(CONFIG_INTEGRITY) || defined(USE_HOSTCC)
118 { IH_OS_INTEGRITY,"integrity", "INTEGRITY", },
119#endif
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120#ifdef USE_HOSTCC
121 { IH_OS_4_4BSD, "4_4bsd", "4_4BSD", },
122 { IH_OS_DELL, "dell", "Dell", },
123 { IH_OS_ESIX, "esix", "Esix", },
124 { IH_OS_FREEBSD, "freebsd", "FreeBSD", },
125 { IH_OS_IRIX, "irix", "Irix", },
126 { IH_OS_NCR, "ncr", "NCR", },
127 { IH_OS_OPENBSD, "openbsd", "OpenBSD", },
128 { IH_OS_PSOS, "psos", "pSOS", },
129 { IH_OS_SCO, "sco", "SCO", },
130 { IH_OS_SOLARIS, "solaris", "Solaris", },
131 { IH_OS_SVR4, "svr4", "SVR4", },
132#endif
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MV
133#if defined(CONFIG_BOOTM_OPENRTOS) || defined(USE_HOSTCC)
134 { IH_OS_OPENRTOS, "openrtos", "OpenRTOS", },
135#endif
5e30e45c 136 { IH_OS_OPENSBI, "opensbi", "RISC-V OpenSBI", },
67ddd955 137
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138 { -1, "", "", },
139};
140
7edb186f 141static const table_entry_t uimage_type[] = {
4962e38e 142 { IH_TYPE_AISIMAGE, "aisimage", "Davinci AIS image",},
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143 { IH_TYPE_FILESYSTEM, "filesystem", "Filesystem Image", },
144 { IH_TYPE_FIRMWARE, "firmware", "Firmware", },
3decb14a 145 { IH_TYPE_FLATDT, "flat_dt", "Flat Device Tree", },
bf411ea9 146 { IH_TYPE_GPIMAGE, "gpimage", "TI Keystone SPL Image",},
570abb0a 147 { IH_TYPE_KERNEL, "kernel", "Kernel Image", },
b9b50e89 148 { IH_TYPE_KERNEL_NOLOAD, "kernel_noload", "Kernel Image (no loading done)", },
4962e38e
SB
149 { IH_TYPE_KWBIMAGE, "kwbimage", "Kirkwood Boot Image",},
150 { IH_TYPE_IMXIMAGE, "imximage", "Freescale i.MX Boot Image",},
a2b96ece 151 { IH_TYPE_IMX8IMAGE, "imx8image", "NXP i.MX8 Boot Image",},
6609c266 152 { IH_TYPE_IMX8MIMAGE, "imx8mimage", "NXP i.MX8M Boot Image",},
30495bff 153 { IH_TYPE_INVALID, "invalid", "Invalid Image", },
570abb0a 154 { IH_TYPE_MULTI, "multi", "Multi-File Image", },
4962e38e 155 { IH_TYPE_OMAPIMAGE, "omapimage", "TI OMAP SPL With GP CH",},
5d898a00 156 { IH_TYPE_PBLIMAGE, "pblimage", "Freescale PBL Boot Image",},
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157 { IH_TYPE_RAMDISK, "ramdisk", "RAMDisk Image", },
158 { IH_TYPE_SCRIPT, "script", "Script", },
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159 { IH_TYPE_SOCFPGAIMAGE, "socfpgaimage", "Altera SoCFPGA CV/AV preloader",},
160 { IH_TYPE_SOCFPGAIMAGE_V1, "socfpgaimage_v1", "Altera SoCFPGA A10 preloader",},
570abb0a 161 { IH_TYPE_STANDALONE, "standalone", "Standalone Program", },
7816f2cf 162 { IH_TYPE_UBLIMAGE, "ublimage", "Davinci UBL image",},
bce88370 163 { IH_TYPE_MXSIMAGE, "mxsimage", "Freescale MXS Boot Image",},
7b1a4117 164 { IH_TYPE_ATMELIMAGE, "atmelimage", "ATMEL ROM-Boot Image",},
90268b87 165 { IH_TYPE_X86_SETUP, "x86_setup", "x86 setup.bin", },
39f520bb 166 { IH_TYPE_LPC32XXIMAGE, "lpc32xximage", "LPC32XX Boot Image", },
a131c1f4 167 { IH_TYPE_RKIMAGE, "rkimage", "Rockchip Boot Image" },
f9a3c278 168 { IH_TYPE_RKSD, "rksd", "Rockchip SD Boot Image" },
10b84fe1 169 { IH_TYPE_RKSPI, "rkspi", "Rockchip SPI Boot Image" },
ed0c2c0a 170 { IH_TYPE_VYBRIDIMAGE, "vybridimage", "Vybrid Boot Image", },
66eef1e7 171 { IH_TYPE_ZYNQIMAGE, "zynqimage", "Xilinx Zynq Boot Image" },
d9b58b30 172 { IH_TYPE_ZYNQMPIMAGE, "zynqmpimage", "Xilinx ZynqMP Boot Image" },
6915dcf3 173 { IH_TYPE_ZYNQMPBIF, "zynqmpbif", "Xilinx ZynqMP Boot Image (bif)" },
ed0cea7c 174 { IH_TYPE_FPGA, "fpga", "FPGA Image" },
7e719ee7 175 { IH_TYPE_TEE, "tee", "Trusted Execution Environment Image",},
d21bd69b 176 { IH_TYPE_FIRMWARE_IVT, "firmware_ivt", "Firmware with HABv4 IVT" },
6442c964 177 { IH_TYPE_PMMC, "pmmc", "TI Power Management Micro-Controller Firmware",},
81260e33 178 { IH_TYPE_STM32IMAGE, "stm32image", "STMicroelectronics STM32 Image" },
3b975a14 179 { IH_TYPE_MTKIMAGE, "mtk_image", "MediaTek BootROM loadable Image" },
e7fabe75 180 { IH_TYPE_COPRO, "copro", "Coprocessor Image"},
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181 { -1, "", "", },
182};
183
7edb186f 184static const table_entry_t uimage_comp[] = {
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185 { IH_COMP_NONE, "none", "uncompressed", },
186 { IH_COMP_BZIP2, "bzip2", "bzip2 compressed", },
187 { IH_COMP_GZIP, "gzip", "gzip compressed", },
fc9c1727 188 { IH_COMP_LZMA, "lzma", "lzma compressed", },
20dde48b 189 { IH_COMP_LZO, "lzo", "lzo compressed", },
027b728d 190 { IH_COMP_LZ4, "lz4", "lz4 compressed", },
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191 { -1, "", "", },
192};
193
56d7ab74
SG
194struct table_info {
195 const char *desc;
196 int count;
197 const table_entry_t *table;
198};
199
200static const struct table_info table_info[IH_COUNT] = {
201 { "architecture", IH_ARCH_COUNT, uimage_arch },
202 { "compression", IH_COMP_COUNT, uimage_comp },
203 { "operating system", IH_OS_COUNT, uimage_os },
204 { "image type", IH_TYPE_COUNT, uimage_type },
205};
206
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207/*****************************************************************************/
208/* Legacy format routines */
209/*****************************************************************************/
712fbcf3 210int image_check_hcrc(const image_header_t *hdr)
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211{
212 ulong hcrc;
712fbcf3 213 ulong len = image_get_header_size();
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214 image_header_t header;
215
216 /* Copy header so we can blank CRC field for re-calculation */
712fbcf3
SW
217 memmove(&header, (char *)hdr, image_get_header_size());
218 image_set_hcrc(&header, 0);
b97a2a0a 219
712fbcf3 220 hcrc = crc32(0, (unsigned char *)&header, len);
b97a2a0a 221
712fbcf3 222 return (hcrc == image_get_hcrc(hdr));
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223}
224
712fbcf3 225int image_check_dcrc(const image_header_t *hdr)
b97a2a0a 226{
712fbcf3
SW
227 ulong data = image_get_data(hdr);
228 ulong len = image_get_data_size(hdr);
229 ulong dcrc = crc32_wd(0, (unsigned char *)data, len, CHUNKSZ_CRC32);
b97a2a0a 230
712fbcf3 231 return (dcrc == image_get_dcrc(hdr));
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232}
233
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234/**
235 * image_multi_count - get component (sub-image) count
236 * @hdr: pointer to the header of the multi component image
237 *
238 * image_multi_count() returns number of components in a multi
239 * component image.
240 *
241 * Note: no checking of the image type is done, caller must pass
242 * a valid multi component image.
243 *
244 * returns:
245 * number of components
246 */
712fbcf3 247ulong image_multi_count(const image_header_t *hdr)
f13e7b2e
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248{
249 ulong i, count = 0;
df6f1b89 250 uint32_t *size;
f13e7b2e
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251
252 /* get start of the image payload, which in case of multi
253 * component images that points to a table of component sizes */
712fbcf3 254 size = (uint32_t *)image_get_data(hdr);
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255
256 /* count non empty slots */
257 for (i = 0; size[i]; ++i)
258 count++;
259
260 return count;
261}
262
263/**
264 * image_multi_getimg - get component data address and size
265 * @hdr: pointer to the header of the multi component image
266 * @idx: index of the requested component
267 * @data: pointer to a ulong variable, will hold component data address
268 * @len: pointer to a ulong variable, will hold component size
269 *
270 * image_multi_getimg() returns size and data address for the requested
271 * component in a multi component image.
272 *
273 * Note: no checking of the image type is done, caller must pass
274 * a valid multi component image.
275 *
276 * returns:
277 * data address and size of the component, if idx is valid
278 * 0 in data and len, if idx is out of range
279 */
712fbcf3 280void image_multi_getimg(const image_header_t *hdr, ulong idx,
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281 ulong *data, ulong *len)
282{
283 int i;
df6f1b89 284 uint32_t *size;
02b9b224 285 ulong offset, count, img_data;
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286
287 /* get number of component */
712fbcf3 288 count = image_multi_count(hdr);
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289
290 /* get start of the image payload, which in case of multi
291 * component images that points to a table of component sizes */
712fbcf3 292 size = (uint32_t *)image_get_data(hdr);
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293
294 /* get address of the proper component data start, which means
295 * skipping sizes table (add 1 for last, null entry) */
712fbcf3 296 img_data = image_get_data(hdr) + (count + 1) * sizeof(uint32_t);
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297
298 if (idx < count) {
712fbcf3 299 *len = uimage_to_cpu(size[idx]);
f13e7b2e 300 offset = 0;
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301
302 /* go over all indices preceding requested component idx */
303 for (i = 0; i < idx; i++) {
02b9b224 304 /* add up i-th component size, rounding up to 4 bytes */
712fbcf3 305 offset += (uimage_to_cpu(size[i]) + 3) & ~3 ;
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306 }
307
308 /* calculate idx-th component data address */
02b9b224 309 *data = img_data + offset;
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310 } else {
311 *len = 0;
312 *data = 0;
313 }
314}
42b73e8e 315
712fbcf3 316static void image_print_type(const image_header_t *hdr)
9a4daad0 317{
80402f34 318 const char __maybe_unused *os, *arch, *type, *comp;
9a4daad0 319
712fbcf3
SW
320 os = genimg_get_os_name(image_get_os(hdr));
321 arch = genimg_get_arch_name(image_get_arch(hdr));
322 type = genimg_get_type_name(image_get_type(hdr));
323 comp = genimg_get_comp_name(image_get_comp(hdr));
9a4daad0 324
712fbcf3 325 printf("%s %s %s (%s)\n", arch, os, type, comp);
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326}
327
5dfb5213 328/**
edbed247 329 * image_print_contents - prints out the contents of the legacy format image
3a2003f6 330 * @ptr: pointer to the legacy format image header
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331 * @p: pointer to prefix string
332 *
edbed247 333 * image_print_contents() formats a multi line legacy image contents description.
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334 * The routine prints out all header fields followed by the size/offset data
335 * for MULTI/SCRIPT images.
336 *
337 * returns:
338 * no returned results
339 */
712fbcf3 340void image_print_contents(const void *ptr)
9a4daad0 341{
3a2003f6 342 const image_header_t *hdr = (const image_header_t *)ptr;
80402f34 343 const char __maybe_unused *p;
edbed247 344
1fe7d938 345 p = IMAGE_INDENT_STRING;
712fbcf3 346 printf("%sImage Name: %.*s\n", p, IH_NMLEN, image_get_name(hdr));
859e92b7
SG
347 if (IMAGE_ENABLE_TIMESTAMP) {
348 printf("%sCreated: ", p);
349 genimg_print_time((time_t)image_get_time(hdr));
350 }
712fbcf3
SW
351 printf("%sImage Type: ", p);
352 image_print_type(hdr);
353 printf("%sData Size: ", p);
354 genimg_print_size(image_get_data_size(hdr));
355 printf("%sLoad Address: %08x\n", p, image_get_load(hdr));
356 printf("%sEntry Point: %08x\n", p, image_get_ep(hdr));
357
358 if (image_check_type(hdr, IH_TYPE_MULTI) ||
359 image_check_type(hdr, IH_TYPE_SCRIPT)) {
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360 int i;
361 ulong data, len;
712fbcf3 362 ulong count = image_multi_count(hdr);
9a4daad0 363
712fbcf3 364 printf("%sContents:\n", p);
9a4daad0 365 for (i = 0; i < count; i++) {
712fbcf3 366 image_multi_getimg(hdr, i, &data, &len);
570abb0a 367
712fbcf3
SW
368 printf("%s Image %d: ", p, i);
369 genimg_print_size(len);
570abb0a 370
712fbcf3 371 if (image_check_type(hdr, IH_TYPE_SCRIPT) && i > 0) {
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372 /*
373 * the user may need to know offsets
374 * if planning to do something with
375 * multiple files
376 */
712fbcf3 377 printf("%s Offset = 0x%08lx\n", p, data);
570abb0a 378 }
9a4daad0 379 }
d21bd69b
SE
380 } else if (image_check_type(hdr, IH_TYPE_FIRMWARE_IVT)) {
381 printf("HAB Blocks: 0x%08x 0x0000 0x%08x\n",
5b20d141
BML
382 image_get_load(hdr) - image_get_header_size(),
383 (int)(image_get_size(hdr) + image_get_header_size()
384 + sizeof(flash_header_v2_t) - 0x2060));
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385 }
386}
387
2090854c
JW
388/**
389 * print_decomp_msg() - Print a suitable decompression/loading message
390 *
391 * @type: OS type (IH_OS_...)
392 * @comp_type: Compression type being used (IH_COMP_...)
393 * @is_xip: true if the load address matches the image start
394 */
395static void print_decomp_msg(int comp_type, int type, bool is_xip)
396{
397 const char *name = genimg_get_type_name(type);
398
399 if (comp_type == IH_COMP_NONE)
400 printf(" %s %s\n", is_xip ? "XIP" : "Loading", name);
401 else
402 printf(" Uncompressing %s\n", name);
403}
404
405int image_decomp(int comp, ulong load, ulong image_start, int type,
406 void *load_buf, void *image_buf, ulong image_len,
407 uint unc_len, ulong *load_end)
408{
409 int ret = 0;
410
411 *load_end = load;
412 print_decomp_msg(comp, type, load == image_start);
413
414 /*
415 * Load the image to the right place, decompressing if needed. After
416 * this, image_len will be set to the number of uncompressed bytes
417 * loaded, ret will be non-zero on error.
418 */
419 switch (comp) {
420 case IH_COMP_NONE:
421 if (load == image_start)
422 break;
423 if (image_len <= unc_len)
424 memmove_wd(load_buf, image_buf, image_len, CHUNKSZ);
425 else
426 ret = -ENOSPC;
427 break;
428#ifdef CONFIG_GZIP
429 case IH_COMP_GZIP: {
430 ret = gunzip(load_buf, unc_len, image_buf, &image_len);
431 break;
432 }
433#endif /* CONFIG_GZIP */
434#ifdef CONFIG_BZIP2
435 case IH_COMP_BZIP2: {
436 uint size = unc_len;
437
438 /*
439 * If we've got less than 4 MB of malloc() space,
440 * use slower decompression algorithm which requires
441 * at most 2300 KB of memory.
442 */
443 ret = BZ2_bzBuffToBuffDecompress(load_buf, &size,
444 image_buf, image_len,
445 CONFIG_SYS_MALLOC_LEN < (4096 * 1024), 0);
446 image_len = size;
447 break;
448 }
449#endif /* CONFIG_BZIP2 */
450#ifdef CONFIG_LZMA
451 case IH_COMP_LZMA: {
452 SizeT lzma_len = unc_len;
453
454 ret = lzmaBuffToBuffDecompress(load_buf, &lzma_len,
455 image_buf, image_len);
456 image_len = lzma_len;
457 break;
458 }
459#endif /* CONFIG_LZMA */
460#ifdef CONFIG_LZO
461 case IH_COMP_LZO: {
462 size_t size = unc_len;
463
464 ret = lzop_decompress(image_buf, image_len, load_buf, &size);
465 image_len = size;
466 break;
467 }
468#endif /* CONFIG_LZO */
469#ifdef CONFIG_LZ4
470 case IH_COMP_LZ4: {
471 size_t size = unc_len;
472
473 ret = ulz4fn(image_buf, image_len, load_buf, &size);
474 image_len = size;
475 break;
476 }
477#endif /* CONFIG_LZ4 */
478 default:
479 printf("Unimplemented compression type %d\n", comp);
480 return -ENOSYS;
481 }
482
483 *load_end = load + image_len;
484
485 return ret;
486}
487
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488
489#ifndef USE_HOSTCC
c76c93a3 490#if CONFIG_IS_ENABLED(LEGACY_IMAGE_FORMAT)
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491/**
492 * image_get_ramdisk - get and verify ramdisk image
9a4daad0
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493 * @rd_addr: ramdisk image start address
494 * @arch: expected ramdisk architecture
495 * @verify: checksum verification flag
496 *
497 * image_get_ramdisk() returns a pointer to the verified ramdisk image
498 * header. Routine receives image start address and expected architecture
499 * flag. Verification done covers data and header integrity and os/type/arch
500 * fields checking.
501 *
9a4daad0
MB
502 * returns:
503 * pointer to a ramdisk image header, if image was found and valid
504 * otherwise, return NULL
505 */
712fbcf3 506static const image_header_t *image_get_ramdisk(ulong rd_addr, uint8_t arch,
d985c849 507 int verify)
9a4daad0 508{
3a2003f6 509 const image_header_t *rd_hdr = (const image_header_t *)rd_addr;
9a4daad0 510
712fbcf3
SW
511 if (!image_check_magic(rd_hdr)) {
512 puts("Bad Magic Number\n");
770605e4 513 bootstage_error(BOOTSTAGE_ID_RD_MAGIC);
9a4daad0
MB
514 return NULL;
515 }
516
712fbcf3
SW
517 if (!image_check_hcrc(rd_hdr)) {
518 puts("Bad Header Checksum\n");
770605e4 519 bootstage_error(BOOTSTAGE_ID_RD_HDR_CHECKSUM);
9a4daad0
MB
520 return NULL;
521 }
522
770605e4 523 bootstage_mark(BOOTSTAGE_ID_RD_MAGIC);
712fbcf3 524 image_print_contents(rd_hdr);
9a4daad0
MB
525
526 if (verify) {
527 puts(" Verifying Checksum ... ");
712fbcf3
SW
528 if (!image_check_dcrc(rd_hdr)) {
529 puts("Bad Data CRC\n");
770605e4 530 bootstage_error(BOOTSTAGE_ID_RD_CHECKSUM);
9a4daad0
MB
531 return NULL;
532 }
533 puts("OK\n");
534 }
535
770605e4 536 bootstage_mark(BOOTSTAGE_ID_RD_HDR_CHECKSUM);
9a4daad0 537
712fbcf3
SW
538 if (!image_check_os(rd_hdr, IH_OS_LINUX) ||
539 !image_check_arch(rd_hdr, arch) ||
540 !image_check_type(rd_hdr, IH_TYPE_RAMDISK)) {
541 printf("No Linux %s Ramdisk Image\n",
9a4daad0 542 genimg_get_arch_name(arch));
770605e4 543 bootstage_error(BOOTSTAGE_ID_RAMDISK);
9a4daad0
MB
544 return NULL;
545 }
546
547 return rd_hdr;
548}
21d29f7f 549#endif
570abb0a 550#endif /* !USE_HOSTCC */
9a4daad0
MB
551
552/*****************************************************************************/
553/* Shared dual-format routines */
554/*****************************************************************************/
570abb0a 555#ifndef USE_HOSTCC
1cf0a8b2
JH
556ulong load_addr = CONFIG_SYS_LOAD_ADDR; /* Default Load Address */
557ulong save_addr; /* Default Save Address */
558ulong save_size; /* Default Save Size (in bytes) */
559
560static int on_loadaddr(const char *name, const char *value, enum env_op op,
561 int flags)
562{
563 switch (op) {
564 case env_op_create:
565 case env_op_overwrite:
566 load_addr = simple_strtoul(value, NULL, 16);
567 break;
568 default:
569 break;
570 }
571
572 return 0;
573}
574U_BOOT_ENV_CALLBACK(loadaddr, on_loadaddr);
575
723806cc 576ulong env_get_bootm_low(void)
9a4daad0 577{
00caae6d 578 char *s = env_get("bootm_low");
9a4daad0 579 if (s) {
712fbcf3 580 ulong tmp = simple_strtoul(s, NULL, 16);
9a4daad0
MB
581 return tmp;
582 }
583
6d0f6bcf
JCPV
584#if defined(CONFIG_SYS_SDRAM_BASE)
585 return CONFIG_SYS_SDRAM_BASE;
a750ded4 586#elif defined(CONFIG_ARM) || defined(CONFIG_MICROBLAZE)
afe45c87 587 return gd->bd->bi_dram[0].start;
9a4daad0
MB
588#else
589 return 0;
590#endif
591}
592
723806cc 593phys_size_t env_get_bootm_size(void)
9a4daad0 594{
0cb389dd
MY
595 phys_size_t tmp, size;
596 phys_addr_t start;
00caae6d 597 char *s = env_get("bootm_size");
9a4daad0 598 if (s) {
712fbcf3 599 tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
9a4daad0
MB
600 return tmp;
601 }
0cb389dd 602
a750ded4
MS
603#if (defined(CONFIG_ARM) || defined(CONFIG_MICROBLAZE)) && \
604 defined(CONFIG_NR_DRAM_BANKS)
0cb389dd
MY
605 start = gd->bd->bi_dram[0].start;
606 size = gd->bd->bi_dram[0].size;
607#else
608 start = gd->bd->bi_memstart;
609 size = gd->bd->bi_memsize;
610#endif
611
00caae6d 612 s = env_get("bootm_low");
c519facc 613 if (s)
712fbcf3 614 tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
c519facc 615 else
0cb389dd 616 tmp = start;
9a4daad0 617
0cb389dd 618 return size - (tmp - start);
9a4daad0
MB
619}
620
723806cc 621phys_size_t env_get_bootm_mapsize(void)
c3624e6e
GL
622{
623 phys_size_t tmp;
00caae6d 624 char *s = env_get("bootm_mapsize");
c3624e6e 625 if (s) {
712fbcf3 626 tmp = (phys_size_t)simple_strtoull(s, NULL, 16);
c3624e6e
GL
627 return tmp;
628 }
629
630#if defined(CONFIG_SYS_BOOTMAPSZ)
631 return CONFIG_SYS_BOOTMAPSZ;
632#else
723806cc 633 return env_get_bootm_size();
c3624e6e
GL
634#endif
635}
636
712fbcf3 637void memmove_wd(void *to, void *from, size_t len, ulong chunksz)
9a4daad0 638{
54fa2c5b
LJ
639 if (to == from)
640 return;
641
9a4daad0 642#if defined(CONFIG_HW_WATCHDOG) || defined(CONFIG_WATCHDOG)
22cfddc2
SZ
643 if (to > from) {
644 from += len;
645 to += len;
646 }
9a4daad0
MB
647 while (len > 0) {
648 size_t tail = (len > chunksz) ? chunksz : len;
712fbcf3 649 WATCHDOG_RESET();
22cfddc2
SZ
650 if (to > from) {
651 to -= tail;
652 from -= tail;
653 }
712fbcf3 654 memmove(to, from, tail);
22cfddc2
SZ
655 if (to < from) {
656 to += tail;
657 from += tail;
658 }
9a4daad0
MB
659 len -= tail;
660 }
661#else /* !(CONFIG_HW_WATCHDOG || CONFIG_WATCHDOG) */
712fbcf3 662 memmove(to, from, len);
9a4daad0
MB
663#endif /* CONFIG_HW_WATCHDOG || CONFIG_WATCHDOG */
664}
2090854c
JW
665#else /* USE_HOSTCC */
666void memmove_wd(void *to, void *from, size_t len, ulong chunksz)
667{
668 memmove(to, from, len);
669}
570abb0a 670#endif /* !USE_HOSTCC */
9a4daad0 671
712fbcf3 672void genimg_print_size(uint32_t size)
42b73e8e 673{
570abb0a 674#ifndef USE_HOSTCC
712fbcf3
SW
675 printf("%d Bytes = ", size);
676 print_size(size, "\n");
570abb0a 677#else
cec85d4e 678 printf("%d Bytes = %.2f KiB = %.2f MiB\n",
570abb0a
MB
679 size, (double)size / 1.024e3,
680 (double)size / 1.048576e6);
42b73e8e 681#endif
570abb0a
MB
682}
683
859e92b7
SG
684#if IMAGE_ENABLE_TIMESTAMP
685void genimg_print_time(time_t timestamp)
570abb0a
MB
686{
687#ifndef USE_HOSTCC
688 struct rtc_time tm;
689
9f9276c3 690 rtc_to_tm(timestamp, &tm);
712fbcf3 691 printf("%4d-%02d-%02d %2d:%02d:%02d UTC\n",
570abb0a
MB
692 tm.tm_year, tm.tm_mon, tm.tm_mday,
693 tm.tm_hour, tm.tm_min, tm.tm_sec);
694#else
712fbcf3 695 printf("%s", ctime(&timestamp));
42b73e8e 696#endif
570abb0a 697}
859e92b7 698#endif
42b73e8e 699
5b9d44df
SG
700const table_entry_t *get_table_entry(const table_entry_t *table, int id)
701{
702 for (; table->id >= 0; ++table) {
703 if (table->id == id)
704 return table;
705 }
706 return NULL;
707}
708
1426220b
SG
709static const char *unknown_msg(enum ih_category category)
710{
ae3de0d8 711 static const char unknown_str[] = "Unknown ";
1426220b
SG
712 static char msg[30];
713
ae3de0d8
SG
714 strcpy(msg, unknown_str);
715 strncat(msg, table_info[category].desc,
716 sizeof(msg) - sizeof(unknown_str));
1426220b
SG
717
718 return msg;
719}
720
721/**
722 * get_cat_table_entry_name - translate entry id to long name
723 * @category: category to look up (enum ih_category)
724 * @id: entry id to be translated
725 *
726 * This will scan the translation table trying to find the entry that matches
727 * the given id.
728 *
729 * @retur long entry name if translation succeeds; error string on failure
730 */
731const char *genimg_get_cat_name(enum ih_category category, uint id)
732{
733 const table_entry_t *entry;
734
735 entry = get_table_entry(table_info[category].table, id);
736 if (!entry)
737 return unknown_msg(category);
738#if defined(USE_HOSTCC) || !defined(CONFIG_NEEDS_MANUAL_RELOC)
739 return entry->lname;
740#else
741 return entry->lname + gd->reloc_off;
742#endif
743}
744
745/**
746 * get_cat_table_entry_short_name - translate entry id to short name
747 * @category: category to look up (enum ih_category)
748 * @id: entry id to be translated
749 *
750 * This will scan the translation table trying to find the entry that matches
751 * the given id.
752 *
753 * @retur short entry name if translation succeeds; error string on failure
754 */
755const char *genimg_get_cat_short_name(enum ih_category category, uint id)
756{
757 const table_entry_t *entry;
758
759 entry = get_table_entry(table_info[category].table, id);
760 if (!entry)
761 return unknown_msg(category);
762#if defined(USE_HOSTCC) || !defined(CONFIG_NEEDS_MANUAL_RELOC)
763 return entry->sname;
764#else
765 return entry->sname + gd->reloc_off;
766#endif
767}
768
769int genimg_get_cat_count(enum ih_category category)
770{
771 return table_info[category].count;
772}
773
774const char *genimg_get_cat_desc(enum ih_category category)
775{
776 return table_info[category].desc;
777}
778
570abb0a
MB
779/**
780 * get_table_entry_name - translate entry id to long name
781 * @table: pointer to a translation table for entries of a specific type
782 * @msg: message to be returned when translation fails
783 * @id: entry id to be translated
784 *
785 * get_table_entry_name() will go over translation table trying to find
786 * entry that matches given id. If matching entry is found, its long
787 * name is returned to the caller.
788 *
789 * returns:
790 * long entry name if translation succeeds
791 * msg otherwise
792 */
7edb186f 793char *get_table_entry_name(const table_entry_t *table, char *msg, int id)
570abb0a 794{
5b9d44df
SG
795 table = get_table_entry(table, id);
796 if (!table)
797 return msg;
2e5167cc 798#if defined(USE_HOSTCC) || !defined(CONFIG_NEEDS_MANUAL_RELOC)
5b9d44df 799 return table->lname;
e3d1ac7b 800#else
5b9d44df 801 return table->lname + gd->reloc_off;
e3d1ac7b 802#endif
570abb0a 803}
42b73e8e 804
712fbcf3 805const char *genimg_get_os_name(uint8_t os)
570abb0a 806{
712fbcf3 807 return (get_table_entry_name(uimage_os, "Unknown OS", os));
42b73e8e
MB
808}
809
712fbcf3 810const char *genimg_get_arch_name(uint8_t arch)
42b73e8e 811{
712fbcf3
SW
812 return (get_table_entry_name(uimage_arch, "Unknown Architecture",
813 arch));
570abb0a 814}
42b73e8e 815
712fbcf3 816const char *genimg_get_type_name(uint8_t type)
570abb0a 817{
712fbcf3 818 return (get_table_entry_name(uimage_type, "Unknown Image", type));
570abb0a 819}
42b73e8e 820
cef2e514 821static const char *genimg_get_short_name(const table_entry_t *table, int val)
5b9d44df 822{
cef2e514 823 table = get_table_entry(table, val);
5b9d44df
SG
824 if (!table)
825 return "unknown";
826#if defined(USE_HOSTCC) || !defined(CONFIG_NEEDS_MANUAL_RELOC)
827 return table->sname;
828#else
829 return table->sname + gd->reloc_off;
830#endif
831}
832
cef2e514
SG
833const char *genimg_get_type_short_name(uint8_t type)
834{
835 return genimg_get_short_name(uimage_type, type);
836}
837
712fbcf3 838const char *genimg_get_comp_name(uint8_t comp)
570abb0a 839{
712fbcf3
SW
840 return (get_table_entry_name(uimage_comp, "Unknown Compression",
841 comp));
42b73e8e
MB
842}
843
cef2e514
SG
844const char *genimg_get_comp_short_name(uint8_t comp)
845{
846 return genimg_get_short_name(uimage_comp, comp);
847}
848
849const char *genimg_get_os_short_name(uint8_t os)
850{
851 return genimg_get_short_name(uimage_os, os);
852}
853
854const char *genimg_get_arch_short_name(uint8_t arch)
855{
856 return genimg_get_short_name(uimage_arch, arch);
857}
858
570abb0a
MB
859/**
860 * get_table_entry_id - translate short entry name to id
861 * @table: pointer to a translation table for entries of a specific type
862 * @table_name: to be used in case of error
863 * @name: entry short name to be translated
864 *
865 * get_table_entry_id() will go over translation table trying to find
866 * entry that matches given short name. If matching entry is found,
867 * its id returned to the caller.
868 *
869 * returns:
870 * entry id if translation succeeds
871 * -1 otherwise
872 */
7edb186f 873int get_table_entry_id(const table_entry_t *table,
570abb0a 874 const char *table_name, const char *name)
42b73e8e 875{
7edb186f 876 const table_entry_t *t;
42b73e8e 877
570abb0a 878 for (t = table; t->id >= 0; ++t) {
2e5167cc 879#ifdef CONFIG_NEEDS_MANUAL_RELOC
5b9d44df 880 if (t->sname && strcasecmp(t->sname + gd->reloc_off, name) == 0)
2e5167cc 881#else
5b9d44df 882 if (t->sname && strcasecmp(t->sname, name) == 0)
521af04d 883#endif
570abb0a
MB
884 return (t->id);
885 }
712fbcf3 886 debug("Invalid %s Type: %s\n", table_name, name);
5b9d44df
SG
887
888 return -1;
570abb0a
MB
889}
890
712fbcf3 891int genimg_get_os_id(const char *name)
570abb0a 892{
712fbcf3 893 return (get_table_entry_id(uimage_os, "OS", name));
570abb0a
MB
894}
895
712fbcf3 896int genimg_get_arch_id(const char *name)
570abb0a 897{
712fbcf3 898 return (get_table_entry_id(uimage_arch, "CPU", name));
42b73e8e 899}
5ad03eb3 900
712fbcf3 901int genimg_get_type_id(const char *name)
570abb0a 902{
712fbcf3 903 return (get_table_entry_id(uimage_type, "Image", name));
570abb0a
MB
904}
905
712fbcf3 906int genimg_get_comp_id(const char *name)
570abb0a 907{
712fbcf3 908 return (get_table_entry_id(uimage_comp, "Compression", name));
570abb0a
MB
909}
910
911#ifndef USE_HOSTCC
0f64140b 912/**
6c454fed
BW
913 * genimg_get_kernel_addr_fit - get the real kernel address and return 2
914 * FIT strings
0f64140b 915 * @img_addr: a string might contain real image address
6c454fed
BW
916 * @fit_uname_config: double pointer to a char, will hold pointer to a
917 * configuration unit name
918 * @fit_uname_kernel: double pointer to a char, will hold pointer to a subimage
919 * name
0f64140b 920 *
6c454fed 921 * genimg_get_kernel_addr_fit get the real kernel start address from a string
0f64140b
BW
922 * which is normally the first argv of bootm/bootz
923 *
924 * returns:
925 * kernel start address
926 */
6c454fed
BW
927ulong genimg_get_kernel_addr_fit(char * const img_addr,
928 const char **fit_uname_config,
929 const char **fit_uname_kernel)
0f64140b 930{
0f64140b
BW
931 ulong kernel_addr;
932
933 /* find out kernel image address */
934 if (!img_addr) {
935 kernel_addr = load_addr;
936 debug("* kernel: default image load address = 0x%08lx\n",
937 load_addr);
73223f0e 938#if CONFIG_IS_ENABLED(FIT)
0f64140b 939 } else if (fit_parse_conf(img_addr, load_addr, &kernel_addr,
6c454fed 940 fit_uname_config)) {
0f64140b 941 debug("* kernel: config '%s' from image at 0x%08lx\n",
6c454fed 942 *fit_uname_config, kernel_addr);
0f64140b 943 } else if (fit_parse_subimage(img_addr, load_addr, &kernel_addr,
6c454fed 944 fit_uname_kernel)) {
0f64140b 945 debug("* kernel: subimage '%s' from image at 0x%08lx\n",
6c454fed 946 *fit_uname_kernel, kernel_addr);
0f64140b
BW
947#endif
948 } else {
949 kernel_addr = simple_strtoul(img_addr, NULL, 16);
950 debug("* kernel: cmdline image address = 0x%08lx\n",
951 kernel_addr);
952 }
953
954 return kernel_addr;
955}
956
6c454fed
BW
957/**
958 * genimg_get_kernel_addr() is the simple version of
959 * genimg_get_kernel_addr_fit(). It ignores those return FIT strings
960 */
961ulong genimg_get_kernel_addr(char * const img_addr)
962{
963 const char *fit_uname_config = NULL;
964 const char *fit_uname_kernel = NULL;
965
966 return genimg_get_kernel_addr_fit(img_addr, &fit_uname_config,
967 &fit_uname_kernel);
968}
969
fff888a1 970/**
9a4daad0 971 * genimg_get_format - get image format type
fff888a1
MB
972 * @img_addr: image start address
973 *
9a4daad0 974 * genimg_get_format() checks whether provided address points to a valid
fff888a1
MB
975 * legacy or FIT image.
976 *
4efbe9db
MB
977 * New uImage format and FDT blob are based on a libfdt. FDT blob
978 * may be passed directly or embedded in a FIT image. In both situations
9a4daad0 979 * genimg_get_format() must be able to dectect libfdt header.
4efbe9db 980 *
fff888a1
MB
981 * returns:
982 * image format type or IMAGE_FORMAT_INVALID if no image is present
983 */
35e7b0f1 984int genimg_get_format(const void *img_addr)
fff888a1 985{
c76c93a3 986#if CONFIG_IS_ENABLED(LEGACY_IMAGE_FORMAT)
3a2003f6 987 const image_header_t *hdr;
fff888a1 988
3a2003f6 989 hdr = (const image_header_t *)img_addr;
fff888a1 990 if (image_check_magic(hdr))
21d29f7f
HS
991 return IMAGE_FORMAT_LEGACY;
992#endif
aa34fbc0 993#if IMAGE_ENABLE_FIT || IMAGE_ENABLE_OF_LIBFDT
21d29f7f
HS
994 if (fdt_check_header(img_addr) == 0)
995 return IMAGE_FORMAT_FIT;
9ace3fc8
SS
996#endif
997#ifdef CONFIG_ANDROID_BOOT_IMAGE
21d29f7f
HS
998 if (android_image_check_header(img_addr) == 0)
999 return IMAGE_FORMAT_ANDROID;
fff888a1
MB
1000#endif
1001
21d29f7f 1002 return IMAGE_FORMAT_INVALID;
fff888a1
MB
1003}
1004
f773bea8
MB
1005/**
1006 * fit_has_config - check if there is a valid FIT configuration
1007 * @images: pointer to the bootm command headers structure
1008 *
1009 * fit_has_config() checks if there is a FIT configuration in use
1010 * (if FTI support is present).
1011 *
1012 * returns:
1013 * 0, no FIT support or no configuration found
1014 * 1, configuration found
1015 */
712fbcf3 1016int genimg_has_config(bootm_headers_t *images)
f773bea8 1017{
73223f0e 1018#if IMAGE_ENABLE_FIT
f773bea8
MB
1019 if (images->fit_uname_cfg)
1020 return 1;
1021#endif
1022 return 0;
1023}
1024
5ad03eb3 1025/**
9a4daad0 1026 * boot_get_ramdisk - main ramdisk handling routine
5ad03eb3
MB
1027 * @argc: command argument count
1028 * @argv: command argument list
8a5ea3e6 1029 * @images: pointer to the bootm images structure
5ad03eb3
MB
1030 * @arch: expected ramdisk architecture
1031 * @rd_start: pointer to a ulong variable, will hold ramdisk start address
1032 * @rd_end: pointer to a ulong variable, will hold ramdisk end
1033 *
9a4daad0 1034 * boot_get_ramdisk() is responsible for finding a valid ramdisk image.
5ad03eb3
MB
1035 * Curently supported are the following ramdisk sources:
1036 * - multicomponent kernel/ramdisk image,
1037 * - commandline provided address of decicated ramdisk image.
1038 *
1039 * returns:
d985c849 1040 * 0, if ramdisk image was found and valid, or skiped
5ad03eb3
MB
1041 * rd_start and rd_end are set to ramdisk start/end addresses if
1042 * ramdisk image is found and valid
d985c849 1043 *
ea86b9e6 1044 * 1, if ramdisk image is found but corrupted, or invalid
5ad03eb3 1045 * rd_start and rd_end are set to 0 if no ramdisk exists
5ad03eb3 1046 */
712fbcf3 1047int boot_get_ramdisk(int argc, char * const argv[], bootm_headers_t *images,
d985c849 1048 uint8_t arch, ulong *rd_start, ulong *rd_end)
5ad03eb3 1049{
d5934ad7 1050 ulong rd_addr, rd_load;
5ad03eb3 1051 ulong rd_data, rd_len;
c76c93a3 1052#if CONFIG_IS_ENABLED(LEGACY_IMAGE_FORMAT)
3a2003f6 1053 const image_header_t *rd_hdr;
21d29f7f 1054#endif
35e7b0f1 1055 void *buf;
57d40ab7 1056#ifdef CONFIG_SUPPORT_RAW_INITRD
017e1f3f 1057 char *end;
57d40ab7 1058#endif
73223f0e 1059#if IMAGE_ENABLE_FIT
f320a4d8 1060 const char *fit_uname_config = images->fit_uname_cfg;
d5934ad7
MB
1061 const char *fit_uname_ramdisk = NULL;
1062 ulong default_addr;
c8779648 1063 int rd_noffset;
d5934ad7 1064#endif
983c72f4 1065 const char *select = NULL;
5ad03eb3 1066
c8779648
MB
1067 *rd_start = 0;
1068 *rd_end = 0;
1069
1fec3c5d
TR
1070#ifdef CONFIG_ANDROID_BOOT_IMAGE
1071 /*
1072 * Look for an Android boot image.
1073 */
1074 buf = map_sysmem(images->os.start, 0);
c139b5ff 1075 if (buf && genimg_get_format(buf) == IMAGE_FORMAT_ANDROID)
5e218862 1076 select = (argc == 0) ? env_get("loadaddr") : argv[0];
1fec3c5d
TR
1077#endif
1078
983c72f4
SG
1079 if (argc >= 2)
1080 select = argv[1];
2dd46328 1081
d5934ad7
MB
1082 /*
1083 * Look for a '-' which indicates to ignore the
1084 * ramdisk argument
1085 */
983c72f4 1086 if (select && strcmp(select, "-") == 0) {
712fbcf3 1087 debug("## Skipping init Ramdisk\n");
d5934ad7 1088 rd_len = rd_data = 0;
983c72f4 1089 } else if (select || genimg_has_config(images)) {
73223f0e 1090#if IMAGE_ENABLE_FIT
983c72f4 1091 if (select) {
f773bea8
MB
1092 /*
1093 * If the init ramdisk comes from the FIT image and
1094 * the FIT image address is omitted in the command
1095 * line argument, try to use os FIT image address or
1096 * default load address.
1097 */
1098 if (images->fit_uname_os)
1099 default_addr = (ulong)images->fit_hdr_os;
1100 else
1101 default_addr = load_addr;
1102
983c72f4
SG
1103 if (fit_parse_conf(select, default_addr,
1104 &rd_addr, &fit_uname_config)) {
712fbcf3
SW
1105 debug("* ramdisk: config '%s' from image at "
1106 "0x%08lx\n",
f773bea8 1107 fit_uname_config, rd_addr);
983c72f4 1108 } else if (fit_parse_subimage(select, default_addr,
f773bea8 1109 &rd_addr, &fit_uname_ramdisk)) {
712fbcf3
SW
1110 debug("* ramdisk: subimage '%s' from image at "
1111 "0x%08lx\n",
f773bea8
MB
1112 fit_uname_ramdisk, rd_addr);
1113 } else
d5934ad7 1114#endif
f773bea8 1115 {
983c72f4 1116 rd_addr = simple_strtoul(select, NULL, 16);
712fbcf3
SW
1117 debug("* ramdisk: cmdline image address = "
1118 "0x%08lx\n",
f773bea8
MB
1119 rd_addr);
1120 }
73223f0e 1121#if IMAGE_ENABLE_FIT
f773bea8
MB
1122 } else {
1123 /* use FIT configuration provided in first bootm
a51ec63b
SG
1124 * command argument. If the property is not defined,
1125 * quit silently.
f773bea8 1126 */
35e7b0f1 1127 rd_addr = map_to_sysmem(images->fit_hdr_os);
a51ec63b
SG
1128 rd_noffset = fit_get_node_from_config(images,
1129 FIT_RAMDISK_PROP, rd_addr);
bd86ef11 1130 if (rd_noffset == -ENOENT)
41266c9b 1131 return 0;
a51ec63b
SG
1132 else if (rd_noffset < 0)
1133 return 1;
d5934ad7 1134 }
f773bea8 1135#endif
d5934ad7 1136
d5934ad7
MB
1137 /*
1138 * Check if there is an initrd image at the
1139 * address provided in the second bootm argument
1140 * check image type, for FIT images get FIT node.
1141 */
35e7b0f1
SG
1142 buf = map_sysmem(rd_addr, 0);
1143 switch (genimg_get_format(buf)) {
c76c93a3 1144#if CONFIG_IS_ENABLED(LEGACY_IMAGE_FORMAT)
d5934ad7 1145 case IMAGE_FORMAT_LEGACY:
712fbcf3 1146 printf("## Loading init Ramdisk from Legacy "
c8779648 1147 "Image at %08lx ...\n", rd_addr);
5ad03eb3 1148
770605e4 1149 bootstage_mark(BOOTSTAGE_ID_CHECK_RAMDISK);
712fbcf3 1150 rd_hdr = image_get_ramdisk(rd_addr, arch,
d985c849 1151 images->verify);
5ad03eb3 1152
c8779648 1153 if (rd_hdr == NULL)
274cea2b 1154 return 1;
274cea2b 1155
712fbcf3
SW
1156 rd_data = image_get_data(rd_hdr);
1157 rd_len = image_get_data_size(rd_hdr);
1158 rd_load = image_get_load(rd_hdr);
d5934ad7 1159 break;
21d29f7f 1160#endif
73223f0e 1161#if IMAGE_ENABLE_FIT
d5934ad7 1162 case IMAGE_FORMAT_FIT:
126cc864 1163 rd_noffset = fit_image_load(images,
a51ec63b 1164 rd_addr, &fit_uname_ramdisk,
f320a4d8 1165 &fit_uname_config, arch,
a51ec63b
SG
1166 IH_TYPE_RAMDISK,
1167 BOOTSTAGE_ID_FIT_RD_START,
fe20a81a
SG
1168 FIT_LOAD_OPTIONAL_NON_ZERO,
1169 &rd_data, &rd_len);
a51ec63b 1170 if (rd_noffset < 0)
c78fce69 1171 return 1;
c8779648 1172
a51ec63b 1173 images->fit_hdr_rd = map_sysmem(rd_addr, 0);
c8779648 1174 images->fit_uname_rd = fit_uname_ramdisk;
3dfe1101 1175 images->fit_noffset_rd = rd_noffset;
c8779648 1176 break;
2dd46328
RH
1177#endif
1178#ifdef CONFIG_ANDROID_BOOT_IMAGE
1179 case IMAGE_FORMAT_ANDROID:
1180 android_image_get_ramdisk((void *)images->os.start,
1181 &rd_data, &rd_len);
1182 break;
d5934ad7
MB
1183#endif
1184 default:
017e1f3f 1185#ifdef CONFIG_SUPPORT_RAW_INITRD
983c72f4
SG
1186 end = NULL;
1187 if (select)
1188 end = strchr(select, ':');
1189 if (end) {
017e1f3f
MV
1190 rd_len = simple_strtoul(++end, NULL, 16);
1191 rd_data = rd_addr;
1192 } else
1193#endif
1194 {
1195 puts("Wrong Ramdisk Image Format\n");
1196 rd_data = rd_len = rd_load = 0;
1197 return 1;
1198 }
d5934ad7 1199 }
d5934ad7 1200 } else if (images->legacy_hdr_valid &&
712fbcf3
SW
1201 image_check_type(&images->legacy_hdr_os_copy,
1202 IH_TYPE_MULTI)) {
1203
5ad03eb3 1204 /*
d5934ad7
MB
1205 * Now check if we have a legacy mult-component image,
1206 * get second entry data start address and len.
5ad03eb3 1207 */
770605e4 1208 bootstage_mark(BOOTSTAGE_ID_RAMDISK);
712fbcf3 1209 printf("## Loading init Ramdisk from multi component "
c8779648 1210 "Legacy Image at %08lx ...\n",
d5934ad7
MB
1211 (ulong)images->legacy_hdr_os);
1212
712fbcf3 1213 image_multi_getimg(images->legacy_hdr_os, 1, &rd_data, &rd_len);
2dd46328 1214 } else {
5ad03eb3
MB
1215 /*
1216 * no initrd image
1217 */
770605e4 1218 bootstage_mark(BOOTSTAGE_ID_NO_RAMDISK);
5ad03eb3
MB
1219 rd_len = rd_data = 0;
1220 }
1221
1222 if (!rd_data) {
712fbcf3 1223 debug("## No init Ramdisk\n");
5ad03eb3
MB
1224 } else {
1225 *rd_start = rd_data;
1226 *rd_end = rd_data + rd_len;
1227 }
712fbcf3 1228 debug(" ramdisk start = 0x%08lx, ramdisk end = 0x%08lx\n",
5ad03eb3 1229 *rd_start, *rd_end);
274cea2b
KG
1230
1231 return 0;
5ad03eb3 1232}
ceaed2b1 1233
fca43cc8 1234#ifdef CONFIG_SYS_BOOT_RAMDISK_HIGH
ceaed2b1 1235/**
9a4daad0 1236 * boot_ramdisk_high - relocate init ramdisk
e822d7fc 1237 * @lmb: pointer to lmb handle, will be used for memory mgmt
ceaed2b1
MB
1238 * @rd_data: ramdisk data start address
1239 * @rd_len: ramdisk data length
ceaed2b1
MB
1240 * @initrd_start: pointer to a ulong variable, will hold final init ramdisk
1241 * start address (after possible relocation)
1242 * @initrd_end: pointer to a ulong variable, will hold final init ramdisk
1243 * end address (after possible relocation)
1244 *
1bce2aeb 1245 * boot_ramdisk_high() takes a relocation hint from "initrd_high" environment
ceaed2b1
MB
1246 * variable and if requested ramdisk data is moved to a specified location.
1247 *
9a4daad0
MB
1248 * Initrd_start and initrd_end are set to final (after relocation) ramdisk
1249 * start/end addresses if ramdisk image start and len were provided,
1250 * otherwise set initrd_start and initrd_end set to zeros.
1251 *
ceaed2b1 1252 * returns:
9a4daad0
MB
1253 * 0 - success
1254 * -1 - failure
ceaed2b1 1255 */
712fbcf3 1256int boot_ramdisk_high(struct lmb *lmb, ulong rd_data, ulong rd_len,
e822d7fc 1257 ulong *initrd_start, ulong *initrd_end)
ceaed2b1
MB
1258{
1259 char *s;
1260 ulong initrd_high;
1261 int initrd_copy_to_ram = 1;
1262
00caae6d
SG
1263 s = env_get("initrd_high");
1264 if (s) {
ceaed2b1
MB
1265 /* a value of "no" or a similar string will act like 0,
1266 * turning the "load high" feature off. This is intentional.
1267 */
712fbcf3 1268 initrd_high = simple_strtoul(s, NULL, 16);
ceaed2b1
MB
1269 if (initrd_high == ~0)
1270 initrd_copy_to_ram = 0;
1271 } else {
723806cc 1272 initrd_high = env_get_bootm_mapsize() + env_get_bootm_low();
ceaed2b1
MB
1273 }
1274
95d449ad 1275
712fbcf3 1276 debug("## initrd_high = 0x%08lx, copy_to_ram = %d\n",
ceaed2b1
MB
1277 initrd_high, initrd_copy_to_ram);
1278
1279 if (rd_data) {
1280 if (!initrd_copy_to_ram) { /* zero-copy ramdisk support */
712fbcf3 1281 debug(" in-place initrd\n");
ceaed2b1
MB
1282 *initrd_start = rd_data;
1283 *initrd_end = rd_data + rd_len;
e822d7fc 1284 lmb_reserve(lmb, rd_data, rd_len);
ceaed2b1 1285 } else {
e822d7fc 1286 if (initrd_high)
712fbcf3
SW
1287 *initrd_start = (ulong)lmb_alloc_base(lmb,
1288 rd_len, 0x1000, initrd_high);
e822d7fc 1289 else
712fbcf3
SW
1290 *initrd_start = (ulong)lmb_alloc(lmb, rd_len,
1291 0x1000);
e822d7fc
KG
1292
1293 if (*initrd_start == 0) {
712fbcf3 1294 puts("ramdisk - allocation error\n");
e822d7fc 1295 goto error;
ceaed2b1 1296 }
770605e4 1297 bootstage_mark(BOOTSTAGE_ID_COPY_RAMDISK);
ceaed2b1
MB
1298
1299 *initrd_end = *initrd_start + rd_len;
712fbcf3 1300 printf(" Loading Ramdisk to %08lx, end %08lx ... ",
ceaed2b1
MB
1301 *initrd_start, *initrd_end);
1302
712fbcf3 1303 memmove_wd((void *)*initrd_start,
ceaed2b1
MB
1304 (void *)rd_data, rd_len, CHUNKSZ);
1305
3b200110
KG
1306#ifdef CONFIG_MP
1307 /*
1308 * Ensure the image is flushed to memory to handle
1309 * AMP boot scenarios in which we might not be
1310 * HW cache coherent
1311 */
1a1e7072
HS
1312 flush_cache((unsigned long)*initrd_start,
1313 ALIGN(rd_len, ARCH_DMA_MINALIGN));
3b200110 1314#endif
712fbcf3 1315 puts("OK\n");
ceaed2b1
MB
1316 }
1317 } else {
1318 *initrd_start = 0;
1319 *initrd_end = 0;
1320 }
712fbcf3 1321 debug(" ramdisk load start = 0x%08lx, ramdisk load end = 0x%08lx\n",
ceaed2b1 1322 *initrd_start, *initrd_end);
9a4daad0 1323
e822d7fc 1324 return 0;
b6b0fe64 1325
e822d7fc
KG
1326error:
1327 return -1;
b6b0fe64 1328}
fca43cc8 1329#endif /* CONFIG_SYS_BOOT_RAMDISK_HIGH */
b6b0fe64 1330
90268b87
SG
1331int boot_get_setup(bootm_headers_t *images, uint8_t arch,
1332 ulong *setup_start, ulong *setup_len)
1333{
73223f0e 1334#if IMAGE_ENABLE_FIT
90268b87
SG
1335 return boot_get_setup_fit(images, arch, setup_start, setup_len);
1336#else
1337 return -ENOENT;
1338#endif
1339}
1340
73223f0e 1341#if IMAGE_ENABLE_FIT
8b93a92f 1342#if defined(CONFIG_FPGA)
62afc601
MS
1343int boot_get_fpga(int argc, char * const argv[], bootm_headers_t *images,
1344 uint8_t arch, const ulong *ld_start, ulong * const ld_len)
1345{
1346 ulong tmp_img_addr, img_data, img_len;
1347 void *buf;
1348 int conf_noffset;
1349 int fit_img_result;
b02e4044 1350 const char *uname, *name;
62afc601
MS
1351 int err;
1352 int devnum = 0; /* TODO support multi fpga platforms */
62afc601
MS
1353
1354 /* Check to see if the images struct has a FIT configuration */
1355 if (!genimg_has_config(images)) {
1356 debug("## FIT configuration was not specified\n");
1357 return 0;
1358 }
1359
1360 /*
1361 * Obtain the os FIT header from the images struct
62afc601
MS
1362 */
1363 tmp_img_addr = map_to_sysmem(images->fit_hdr_os);
62afc601
MS
1364 buf = map_sysmem(tmp_img_addr, 0);
1365 /*
1366 * Check image type. For FIT images get FIT node
1367 * and attempt to locate a generic binary.
1368 */
1369 switch (genimg_get_format(buf)) {
1370 case IMAGE_FORMAT_FIT:
1371 conf_noffset = fit_conf_get_node(buf, images->fit_uname_cfg);
1372
b02e4044
SG
1373 uname = fdt_stringlist_get(buf, conf_noffset, FIT_FPGA_PROP, 0,
1374 NULL);
1375 if (!uname) {
62afc601
MS
1376 debug("## FPGA image is not specified\n");
1377 return 0;
1378 }
1379 fit_img_result = fit_image_load(images,
1380 tmp_img_addr,
1381 (const char **)&uname,
1382 &(images->fit_uname_cfg),
1383 arch,
1384 IH_TYPE_FPGA,
1385 BOOTSTAGE_ID_FPGA_INIT,
1386 FIT_LOAD_OPTIONAL_NON_ZERO,
1387 &img_data, &img_len);
1388
1389 debug("FPGA image (%s) loaded to 0x%lx/size 0x%lx\n",
1390 uname, img_data, img_len);
1391
1392 if (fit_img_result < 0) {
1393 /* Something went wrong! */
1394 return fit_img_result;
1395 }
1396
8b93a92f 1397 if (!fpga_is_partial_data(devnum, img_len)) {
62afc601
MS
1398 name = "full";
1399 err = fpga_loadbitstream(devnum, (char *)img_data,
1400 img_len, BIT_FULL);
1401 if (err)
1402 err = fpga_load(devnum, (const void *)img_data,
1403 img_len, BIT_FULL);
1404 } else {
1405 name = "partial";
1406 err = fpga_loadbitstream(devnum, (char *)img_data,
1407 img_len, BIT_PARTIAL);
1408 if (err)
1409 err = fpga_load(devnum, (const void *)img_data,
1410 img_len, BIT_PARTIAL);
1411 }
1412
62afc601 1413 if (err)
611a9428
MS
1414 return err;
1415
1416 printf(" Programming %s bitstream... OK\n", name);
62afc601
MS
1417 break;
1418 default:
1419 printf("The given image format is not supported (corrupt?)\n");
1420 return 1;
1421 }
1422
1423 return 0;
1424}
1425#endif
1426
d7be5092
AD
1427static void fit_loadable_process(uint8_t img_type,
1428 ulong img_data,
1429 ulong img_len)
1430{
1431 int i;
1432 const unsigned int count =
1433 ll_entry_count(struct fit_loadable_tbl, fit_loadable);
1434 struct fit_loadable_tbl *fit_loadable_handler =
1435 ll_entry_start(struct fit_loadable_tbl, fit_loadable);
1436 /* For each loadable handler */
1437 for (i = 0; i < count; i++, fit_loadable_handler++)
1438 /* matching this type */
1439 if (fit_loadable_handler->type == img_type)
1440 /* call that handler with this image data */
1441 fit_loadable_handler->handler(img_data, img_len);
1442}
1443
84a07dbf
KA
1444int boot_get_loadable(int argc, char * const argv[], bootm_headers_t *images,
1445 uint8_t arch, const ulong *ld_start, ulong * const ld_len)
1446{
1447 /*
1448 * These variables are used to hold the current image location
1449 * in system memory.
1450 */
1451 ulong tmp_img_addr;
1452 /*
1453 * These two variables are requirements for fit_image_load, but
1454 * their values are not used
1455 */
1456 ulong img_data, img_len;
1457 void *buf;
1458 int loadables_index;
1459 int conf_noffset;
1460 int fit_img_result;
b02e4044 1461 const char *uname;
d7be5092 1462 uint8_t img_type;
84a07dbf
KA
1463
1464 /* Check to see if the images struct has a FIT configuration */
1465 if (!genimg_has_config(images)) {
1466 debug("## FIT configuration was not specified\n");
1467 return 0;
1468 }
1469
1470 /*
1471 * Obtain the os FIT header from the images struct
84a07dbf
KA
1472 */
1473 tmp_img_addr = map_to_sysmem(images->fit_hdr_os);
84a07dbf
KA
1474 buf = map_sysmem(tmp_img_addr, 0);
1475 /*
1476 * Check image type. For FIT images get FIT node
1477 * and attempt to locate a generic binary.
1478 */
1479 switch (genimg_get_format(buf)) {
1480 case IMAGE_FORMAT_FIT:
1481 conf_noffset = fit_conf_get_node(buf, images->fit_uname_cfg);
1482
1483 for (loadables_index = 0;
b02e4044
SG
1484 uname = fdt_stringlist_get(buf, conf_noffset,
1485 FIT_LOADABLE_PROP, loadables_index,
1486 NULL), uname;
84a07dbf
KA
1487 loadables_index++)
1488 {
1489 fit_img_result = fit_image_load(images,
1490 tmp_img_addr,
b02e4044 1491 &uname,
84a07dbf
KA
1492 &(images->fit_uname_cfg), arch,
1493 IH_TYPE_LOADABLE,
1494 BOOTSTAGE_ID_FIT_LOADABLE_START,
1495 FIT_LOAD_OPTIONAL_NON_ZERO,
1496 &img_data, &img_len);
1497 if (fit_img_result < 0) {
1498 /* Something went wrong! */
1499 return fit_img_result;
1500 }
d7be5092
AD
1501
1502 fit_img_result = fit_image_get_node(buf, uname);
1503 if (fit_img_result < 0) {
1504 /* Something went wrong! */
1505 return fit_img_result;
1506 }
1507 fit_img_result = fit_image_get_type(buf,
1508 fit_img_result,
1509 &img_type);
1510 if (fit_img_result < 0) {
1511 /* Something went wrong! */
1512 return fit_img_result;
1513 }
1514
1515 fit_loadable_process(img_type, img_data, img_len);
84a07dbf
KA
1516 }
1517 break;
1518 default:
1519 printf("The given image format is not supported (corrupt?)\n");
1520 return 1;
1521 }
1522
1523 return 0;
1524}
1525#endif
1526
fca43cc8 1527#ifdef CONFIG_SYS_BOOT_GET_CMDLINE
b6b0fe64 1528/**
9a4daad0 1529 * boot_get_cmdline - allocate and initialize kernel cmdline
e822d7fc 1530 * @lmb: pointer to lmb handle, will be used for memory mgmt
b6b0fe64
MB
1531 * @cmd_start: pointer to a ulong variable, will hold cmdline start
1532 * @cmd_end: pointer to a ulong variable, will hold cmdline end
1533 *
9a4daad0 1534 * boot_get_cmdline() allocates space for kernel command line below
919d25c9 1535 * BOOTMAPSZ + env_get_bootm_low() address. If "bootargs" U-Boot environment
b6b0fe64
MB
1536 * variable is present its contents is copied to allocated kernel
1537 * command line.
1538 *
1539 * returns:
e822d7fc
KG
1540 * 0 - success
1541 * -1 - failure
b6b0fe64 1542 */
712fbcf3 1543int boot_get_cmdline(struct lmb *lmb, ulong *cmd_start, ulong *cmd_end)
b6b0fe64
MB
1544{
1545 char *cmdline;
1546 char *s;
1547
6d0f6bcf 1548 cmdline = (char *)(ulong)lmb_alloc_base(lmb, CONFIG_SYS_BARGSIZE, 0xf,
723806cc 1549 env_get_bootm_mapsize() + env_get_bootm_low());
e822d7fc
KG
1550
1551 if (cmdline == NULL)
1552 return -1;
b6b0fe64 1553
00caae6d
SG
1554 s = env_get("bootargs");
1555 if (!s)
b6b0fe64
MB
1556 s = "";
1557
1558 strcpy(cmdline, s);
1559
1560 *cmd_start = (ulong) & cmdline[0];
1561 *cmd_end = *cmd_start + strlen(cmdline);
1562
712fbcf3 1563 debug("## cmdline at 0x%08lx ... 0x%08lx\n", *cmd_start, *cmd_end);
b6b0fe64 1564
e822d7fc 1565 return 0;
b6b0fe64 1566}
fca43cc8 1567#endif /* CONFIG_SYS_BOOT_GET_CMDLINE */
b6b0fe64 1568
fca43cc8 1569#ifdef CONFIG_SYS_BOOT_GET_KBD
b6b0fe64 1570/**
9a4daad0 1571 * boot_get_kbd - allocate and initialize kernel copy of board info
e822d7fc 1572 * @lmb: pointer to lmb handle, will be used for memory mgmt
b6b0fe64
MB
1573 * @kbd: double pointer to board info data
1574 *
9a4daad0 1575 * boot_get_kbd() allocates space for kernel copy of board info data below
723806cc 1576 * BOOTMAPSZ + env_get_bootm_low() address and kernel board info is initialized
590d3cac 1577 * with the current u-boot board info data.
b6b0fe64
MB
1578 *
1579 * returns:
e822d7fc
KG
1580 * 0 - success
1581 * -1 - failure
b6b0fe64 1582 */
712fbcf3 1583int boot_get_kbd(struct lmb *lmb, bd_t **kbd)
b6b0fe64 1584{
391fd93a 1585 *kbd = (bd_t *)(ulong)lmb_alloc_base(lmb, sizeof(bd_t), 0xf,
723806cc 1586 env_get_bootm_mapsize() + env_get_bootm_low());
e822d7fc
KG
1587 if (*kbd == NULL)
1588 return -1;
1589
b6b0fe64
MB
1590 **kbd = *(gd->bd);
1591
712fbcf3 1592 debug("## kernel board info at 0x%08lx\n", (ulong)*kbd);
b6b0fe64
MB
1593
1594#if defined(DEBUG) && defined(CONFIG_CMD_BDI)
1595 do_bdinfo(NULL, 0, 0, NULL);
1596#endif
1597
e822d7fc 1598 return 0;
ceaed2b1 1599}
fca43cc8 1600#endif /* CONFIG_SYS_BOOT_GET_KBD */
13d06981
SG
1601
1602#ifdef CONFIG_LMB
1603int image_setup_linux(bootm_headers_t *images)
1604{
1605 ulong of_size = images->ft_len;
1606 char **of_flat_tree = &images->ft_addr;
13d06981 1607 struct lmb *lmb = &images->lmb;
13d06981
SG
1608 int ret;
1609
1610 if (IMAGE_ENABLE_OF_LIBFDT)
1611 boot_fdt_add_mem_rsv_regions(lmb, *of_flat_tree);
1612
1613 if (IMAGE_BOOT_GET_CMDLINE) {
1614 ret = boot_get_cmdline(lmb, &images->cmdline_start,
1615 &images->cmdline_end);
1616 if (ret) {
1617 puts("ERROR with allocation of cmdline\n");
1618 return ret;
1619 }
1620 }
13d06981
SG
1621
1622 if (IMAGE_ENABLE_OF_LIBFDT) {
1623 ret = boot_relocate_fdt(lmb, of_flat_tree, &of_size);
1624 if (ret)
1625 return ret;
1626 }
1627
1628 if (IMAGE_ENABLE_OF_LIBFDT && of_size) {
1629 ret = image_setup_libfdt(images, *of_flat_tree, of_size, lmb);
1630 if (ret)
1631 return ret;
1632 }
1633
1634 return 0;
1635}
1636#endif /* CONFIG_LMB */
5dfb5213 1637#endif /* !USE_HOSTCC */
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