1 /* SPDX-License-Identifier: GPL-2.0+ */
3 * (C) Copyright 2008 Semihalf
5 * (C) Copyright 2000-2005
6 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
7 ********************************************************************
8 * NOTE: This header file defines an interface to U-Boot. Including
9 * this (unmodified) header file in another file is considered normal
10 * use of U-Boot, and does *not* fall under the heading of "derived
12 ********************************************************************
19 #include <asm/byteorder.h>
22 /* Define this to avoid #ifdefs later on */
27 #include <sys/types.h>
29 /* new uImage format support enabled on host */
30 #define IMAGE_ENABLE_FIT 1
31 #define IMAGE_ENABLE_OF_LIBFDT 1
32 #define CONFIG_FIT_VERBOSE 1 /* enable fit_format_{error,warning}() */
33 #define CONFIG_FIT_ENABLE_RSASSA_PSS_SUPPORT 1
34 #define CONFIG_FIT_ENABLE_SHA256_SUPPORT
35 #define CONFIG_FIT_ENABLE_SHA384_SUPPORT
36 #define CONFIG_FIT_ENABLE_SHA512_SUPPORT
42 #define IMAGE_ENABLE_IGNORE 0
43 #define IMAGE_INDENT_STRING ""
48 #include <asm/u-boot.h>
51 /* Take notice of the 'ignore' property for hashes */
52 #define IMAGE_ENABLE_IGNORE 1
53 #define IMAGE_INDENT_STRING " "
55 #define IMAGE_ENABLE_FIT CONFIG_IS_ENABLED(FIT)
56 #define IMAGE_ENABLE_OF_LIBFDT CONFIG_IS_ENABLED(OF_LIBFDT)
58 #endif /* USE_HOSTCC */
62 #include <linux/libfdt.h>
63 #include <fdt_support.h>
64 # ifdef CONFIG_SPL_BUILD
65 # ifdef CONFIG_SPL_CRC32_SUPPORT
66 # define IMAGE_ENABLE_CRC32 1
68 # ifdef CONFIG_SPL_MD5_SUPPORT
69 # define IMAGE_ENABLE_MD5 1
71 # ifdef CONFIG_SPL_SHA1_SUPPORT
72 # define IMAGE_ENABLE_SHA1 1
75 # define IMAGE_ENABLE_CRC32 1
76 # define IMAGE_ENABLE_MD5 1
77 # define IMAGE_ENABLE_SHA1 1
80 #ifndef IMAGE_ENABLE_CRC32
81 #define IMAGE_ENABLE_CRC32 0
84 #ifndef IMAGE_ENABLE_MD5
85 #define IMAGE_ENABLE_MD5 0
88 #ifndef IMAGE_ENABLE_SHA1
89 #define IMAGE_ENABLE_SHA1 0
92 #if defined(CONFIG_FIT_ENABLE_SHA256_SUPPORT) || \
93 defined(CONFIG_SPL_SHA256_SUPPORT)
94 #define IMAGE_ENABLE_SHA256 1
96 #define IMAGE_ENABLE_SHA256 0
99 #if defined(CONFIG_FIT_ENABLE_SHA384_SUPPORT) || \
100 defined(CONFIG_SPL_SHA384_SUPPORT)
101 #define IMAGE_ENABLE_SHA384 1
103 #define IMAGE_ENABLE_SHA384 0
106 #if defined(CONFIG_FIT_ENABLE_SHA512_SUPPORT) || \
107 defined(CONFIG_SPL_SHA512_SUPPORT)
108 #define IMAGE_ENABLE_SHA512 1
110 #define IMAGE_ENABLE_SHA512 0
113 #endif /* IMAGE_ENABLE_FIT */
115 #ifdef CONFIG_SYS_BOOT_GET_CMDLINE
116 # define IMAGE_BOOT_GET_CMDLINE 1
118 # define IMAGE_BOOT_GET_CMDLINE 0
121 #ifdef CONFIG_OF_BOARD_SETUP
122 # define IMAGE_OF_BOARD_SETUP 1
124 # define IMAGE_OF_BOARD_SETUP 0
127 #ifdef CONFIG_OF_SYSTEM_SETUP
128 # define IMAGE_OF_SYSTEM_SETUP 1
130 # define IMAGE_OF_SYSTEM_SETUP 0
133 extern ulong image_load_addr; /* Default Load Address */
134 extern ulong image_save_addr; /* Default Save Address */
135 extern ulong image_save_size; /* Default Save Size */
147 * Operating System Codes
149 * The following are exposed to uImage header.
150 * New IDs *MUST* be appended at the end of the list and *NEVER*
151 * inserted for backward compatibility.
154 IH_OS_INVALID = 0, /* Invalid OS */
155 IH_OS_OPENBSD, /* OpenBSD */
156 IH_OS_NETBSD, /* NetBSD */
157 IH_OS_FREEBSD, /* FreeBSD */
158 IH_OS_4_4BSD, /* 4.4BSD */
159 IH_OS_LINUX, /* Linux */
160 IH_OS_SVR4, /* SVR4 */
161 IH_OS_ESIX, /* Esix */
162 IH_OS_SOLARIS, /* Solaris */
163 IH_OS_IRIX, /* Irix */
165 IH_OS_DELL, /* Dell */
167 IH_OS_LYNXOS, /* LynxOS */
168 IH_OS_VXWORKS, /* VxWorks */
169 IH_OS_PSOS, /* pSOS */
171 IH_OS_U_BOOT, /* Firmware */
172 IH_OS_RTEMS, /* RTEMS */
173 IH_OS_ARTOS, /* ARTOS */
174 IH_OS_UNITY, /* Unity OS */
175 IH_OS_INTEGRITY, /* INTEGRITY */
177 IH_OS_PLAN9, /* Plan 9 */
178 IH_OS_OPENRTOS, /* OpenRTOS */
179 IH_OS_ARM_TRUSTED_FIRMWARE, /* ARM Trusted Firmware */
180 IH_OS_TEE, /* Trusted Execution Environment */
181 IH_OS_OPENSBI, /* RISC-V OpenSBI */
182 IH_OS_EFI, /* EFI Firmware (e.g. GRUB2) */
188 * CPU Architecture Codes (supported by Linux)
190 * The following are exposed to uImage header.
191 * New IDs *MUST* be appended at the end of the list and *NEVER*
192 * inserted for backward compatibility.
195 IH_ARCH_INVALID = 0, /* Invalid CPU */
196 IH_ARCH_ALPHA, /* Alpha */
197 IH_ARCH_ARM, /* ARM */
198 IH_ARCH_I386, /* Intel x86 */
199 IH_ARCH_IA64, /* IA64 */
200 IH_ARCH_MIPS, /* MIPS */
201 IH_ARCH_MIPS64, /* MIPS 64 Bit */
202 IH_ARCH_PPC, /* PowerPC */
203 IH_ARCH_S390, /* IBM S390 */
204 IH_ARCH_SH, /* SuperH */
205 IH_ARCH_SPARC, /* Sparc */
206 IH_ARCH_SPARC64, /* Sparc 64 Bit */
207 IH_ARCH_M68K, /* M68K */
208 IH_ARCH_NIOS, /* Nios-32 */
209 IH_ARCH_MICROBLAZE, /* MicroBlaze */
210 IH_ARCH_NIOS2, /* Nios-II */
211 IH_ARCH_BLACKFIN, /* Blackfin */
212 IH_ARCH_AVR32, /* AVR32 */
213 IH_ARCH_ST200, /* STMicroelectronics ST200 */
214 IH_ARCH_SANDBOX, /* Sandbox architecture (test only) */
215 IH_ARCH_NDS32, /* ANDES Technology - NDS32 */
216 IH_ARCH_OPENRISC, /* OpenRISC 1000 */
217 IH_ARCH_ARM64, /* ARM64 */
218 IH_ARCH_ARC, /* Synopsys DesignWare ARC */
219 IH_ARCH_X86_64, /* AMD x86_64, Intel and Via */
220 IH_ARCH_XTENSA, /* Xtensa */
221 IH_ARCH_RISCV, /* RISC-V */
229 * "Standalone Programs" are directly runnable in the environment
230 * provided by U-Boot; it is expected that (if they behave
231 * well) you can continue to work in U-Boot after return from
232 * the Standalone Program.
233 * "OS Kernel Images" are usually images of some Embedded OS which
234 * will take over control completely. Usually these programs
235 * will install their own set of exception handlers, device
236 * drivers, set up the MMU, etc. - this means, that you cannot
237 * expect to re-enter U-Boot except by resetting the CPU.
238 * "RAMDisk Images" are more or less just data blocks, and their
239 * parameters (address, size) are passed to an OS kernel that is
241 * "Multi-File Images" contain several images, typically an OS
242 * (Linux) kernel image and one or more data images like
243 * RAMDisks. This construct is useful for instance when you want
244 * to boot over the network using BOOTP etc., where the boot
245 * server provides just a single image file, but you want to get
246 * for instance an OS kernel and a RAMDisk image.
248 * "Multi-File Images" start with a list of image sizes, each
249 * image size (in bytes) specified by an "uint32_t" in network
250 * byte order. This list is terminated by an "(uint32_t)0".
251 * Immediately after the terminating 0 follow the images, one by
252 * one, all aligned on "uint32_t" boundaries (size rounded up to
253 * a multiple of 4 bytes - except for the last file).
255 * "Firmware Images" are binary images containing firmware (like
256 * U-Boot or FPGA images) which usually will be programmed to
259 * "Script files" are command sequences that will be executed by
260 * U-Boot's command interpreter; this feature is especially
261 * useful when you configure U-Boot to use a real shell (hush)
262 * as command interpreter (=> Shell Scripts).
264 * The following are exposed to uImage header.
265 * New IDs *MUST* be appended at the end of the list and *NEVER*
266 * inserted for backward compatibility.
270 IH_TYPE_INVALID = 0, /* Invalid Image */
271 IH_TYPE_STANDALONE, /* Standalone Program */
272 IH_TYPE_KERNEL, /* OS Kernel Image */
273 IH_TYPE_RAMDISK, /* RAMDisk Image */
274 IH_TYPE_MULTI, /* Multi-File Image */
275 IH_TYPE_FIRMWARE, /* Firmware Image */
276 IH_TYPE_SCRIPT, /* Script file */
277 IH_TYPE_FILESYSTEM, /* Filesystem Image (any type) */
278 IH_TYPE_FLATDT, /* Binary Flat Device Tree Blob */
279 IH_TYPE_KWBIMAGE, /* Kirkwood Boot Image */
280 IH_TYPE_IMXIMAGE, /* Freescale IMXBoot Image */
281 IH_TYPE_UBLIMAGE, /* Davinci UBL Image */
282 IH_TYPE_OMAPIMAGE, /* TI OMAP Config Header Image */
283 IH_TYPE_AISIMAGE, /* TI Davinci AIS Image */
284 /* OS Kernel Image, can run from any load address */
285 IH_TYPE_KERNEL_NOLOAD,
286 IH_TYPE_PBLIMAGE, /* Freescale PBL Boot Image */
287 IH_TYPE_MXSIMAGE, /* Freescale MXSBoot Image */
288 IH_TYPE_GPIMAGE, /* TI Keystone GPHeader Image */
289 IH_TYPE_ATMELIMAGE, /* ATMEL ROM bootable Image */
290 IH_TYPE_SOCFPGAIMAGE, /* Altera SOCFPGA CV/AV Preloader */
291 IH_TYPE_X86_SETUP, /* x86 setup.bin Image */
292 IH_TYPE_LPC32XXIMAGE, /* x86 setup.bin Image */
293 IH_TYPE_LOADABLE, /* A list of typeless images */
294 IH_TYPE_RKIMAGE, /* Rockchip Boot Image */
295 IH_TYPE_RKSD, /* Rockchip SD card */
296 IH_TYPE_RKSPI, /* Rockchip SPI image */
297 IH_TYPE_ZYNQIMAGE, /* Xilinx Zynq Boot Image */
298 IH_TYPE_ZYNQMPIMAGE, /* Xilinx ZynqMP Boot Image */
299 IH_TYPE_ZYNQMPBIF, /* Xilinx ZynqMP Boot Image (bif) */
300 IH_TYPE_FPGA, /* FPGA Image */
301 IH_TYPE_VYBRIDIMAGE, /* VYBRID .vyb Image */
302 IH_TYPE_TEE, /* Trusted Execution Environment OS Image */
303 IH_TYPE_FIRMWARE_IVT, /* Firmware Image with HABv4 IVT */
304 IH_TYPE_PMMC, /* TI Power Management Micro-Controller Firmware */
305 IH_TYPE_STM32IMAGE, /* STMicroelectronics STM32 Image */
306 IH_TYPE_SOCFPGAIMAGE_V1, /* Altera SOCFPGA A10 Preloader */
307 IH_TYPE_MTKIMAGE, /* MediaTek BootROM loadable Image */
308 IH_TYPE_IMX8MIMAGE, /* Freescale IMX8MBoot Image */
309 IH_TYPE_IMX8IMAGE, /* Freescale IMX8Boot Image */
310 IH_TYPE_COPRO, /* Coprocessor Image for remoteproc*/
312 IH_TYPE_COUNT, /* Number of image types */
318 * The following are exposed to uImage header.
319 * New IDs *MUST* be appended at the end of the list and *NEVER*
320 * inserted for backward compatibility.
323 IH_COMP_NONE = 0, /* No Compression Used */
324 IH_COMP_GZIP, /* gzip Compression Used */
325 IH_COMP_BZIP2, /* bzip2 Compression Used */
326 IH_COMP_LZMA, /* lzma Compression Used */
327 IH_COMP_LZO, /* lzo Compression Used */
328 IH_COMP_LZ4, /* lz4 Compression Used */
329 IH_COMP_ZSTD, /* zstd Compression Used */
334 #define LZ4F_MAGIC 0x184D2204 /* LZ4 Magic Number */
335 #define IH_MAGIC 0x27051956 /* Image Magic Number */
336 #define IH_NMLEN 32 /* Image Name Length */
338 /* Reused from common.h */
339 #define ROUND(a, b) (((a) + (b) - 1) & ~((b) - 1))
342 * Legacy format image header,
343 * all data in network byte order (aka natural aka bigendian).
345 typedef struct image_header {
346 uint32_t ih_magic; /* Image Header Magic Number */
347 uint32_t ih_hcrc; /* Image Header CRC Checksum */
348 uint32_t ih_time; /* Image Creation Timestamp */
349 uint32_t ih_size; /* Image Data Size */
350 uint32_t ih_load; /* Data Load Address */
351 uint32_t ih_ep; /* Entry Point Address */
352 uint32_t ih_dcrc; /* Image Data CRC Checksum */
353 uint8_t ih_os; /* Operating System */
354 uint8_t ih_arch; /* CPU architecture */
355 uint8_t ih_type; /* Image Type */
356 uint8_t ih_comp; /* Compression Type */
357 uint8_t ih_name[IH_NMLEN]; /* Image Name */
360 typedef struct image_info {
361 ulong start, end; /* start/end of blob */
362 ulong image_start, image_len; /* start of image within blob, len of image */
363 ulong load; /* load addr for the image */
364 uint8_t comp, type, os; /* compression, type of image, os type */
365 uint8_t arch; /* CPU architecture */
369 * Legacy and FIT format headers used by do_bootm() and do_bootm_<os>()
372 typedef struct bootm_headers {
374 * Legacy os image header, if it is a multi component image
375 * then boot_get_ramdisk() and get_fdt() will attempt to get
376 * data from second and third component accordingly.
378 image_header_t *legacy_hdr_os; /* image header pointer */
379 image_header_t legacy_hdr_os_copy; /* header copy */
380 ulong legacy_hdr_valid;
383 const char *fit_uname_cfg; /* configuration node unit name */
385 void *fit_hdr_os; /* os FIT image header */
386 const char *fit_uname_os; /* os subimage node unit name */
387 int fit_noffset_os; /* os subimage node offset */
389 void *fit_hdr_rd; /* init ramdisk FIT image header */
390 const char *fit_uname_rd; /* init ramdisk subimage node unit name */
391 int fit_noffset_rd; /* init ramdisk subimage node offset */
393 void *fit_hdr_fdt; /* FDT blob FIT image header */
394 const char *fit_uname_fdt; /* FDT blob subimage node unit name */
395 int fit_noffset_fdt;/* FDT blob subimage node offset */
397 void *fit_hdr_setup; /* x86 setup FIT image header */
398 const char *fit_uname_setup; /* x86 setup subimage node name */
399 int fit_noffset_setup;/* x86 setup subimage node offset */
403 image_info_t os; /* os image info */
404 ulong ep; /* entry point of OS */
406 ulong rd_start, rd_end;/* ramdisk start/end */
408 char *ft_addr; /* flat dev tree address */
409 ulong ft_len; /* length of flat device tree */
418 int verify; /* env_get("verify")[0] != 'n' */
420 #define BOOTM_STATE_START (0x00000001)
421 #define BOOTM_STATE_FINDOS (0x00000002)
422 #define BOOTM_STATE_FINDOTHER (0x00000004)
423 #define BOOTM_STATE_LOADOS (0x00000008)
424 #define BOOTM_STATE_RAMDISK (0x00000010)
425 #define BOOTM_STATE_FDT (0x00000020)
426 #define BOOTM_STATE_OS_CMDLINE (0x00000040)
427 #define BOOTM_STATE_OS_BD_T (0x00000080)
428 #define BOOTM_STATE_OS_PREP (0x00000100)
429 #define BOOTM_STATE_OS_FAKE_GO (0x00000200) /* 'Almost' run the OS */
430 #define BOOTM_STATE_OS_GO (0x00000400)
434 struct lmb lmb; /* for memory mgmt */
438 extern bootm_headers_t images;
441 * Some systems (for example LWMON) have very short watchdog periods;
442 * we must make sure to split long operations like memmove() or
443 * checksum calculations into reasonable chunks.
446 #define CHUNKSZ (64 * 1024)
449 #ifndef CHUNKSZ_CRC32
450 #define CHUNKSZ_CRC32 (64 * 1024)
454 #define CHUNKSZ_MD5 (64 * 1024)
458 #define CHUNKSZ_SHA1 (64 * 1024)
461 #define uimage_to_cpu(x) be32_to_cpu(x)
462 #define cpu_to_uimage(x) cpu_to_be32(x)
465 * Translation table for entries of a specific type; used by
466 * get_table_entry_id() and get_table_entry_name().
468 typedef struct table_entry {
470 char *sname; /* short (input) name to find table entry */
471 char *lname; /* long (output) name to print for messages */
475 * Compression type and magic number mapping table.
477 struct comp_magic_map {
480 unsigned char magic[2];
484 * get_table_entry_id() scans the translation table trying to find an
485 * entry that matches the given short name. If a matching entry is
486 * found, it's id is returned to the caller.
488 int get_table_entry_id(const table_entry_t *table,
489 const char *table_name, const char *name);
491 * get_table_entry_name() scans the translation table trying to find
492 * an entry that matches the given id. If a matching entry is found,
493 * its long name is returned to the caller.
495 char *get_table_entry_name(const table_entry_t *table, char *msg, int id);
497 const char *genimg_get_os_name(uint8_t os);
500 * genimg_get_os_short_name() - get the short name for an OS
502 * @param os OS (IH_OS_...)
503 * @return OS short name, or "unknown" if unknown
505 const char *genimg_get_os_short_name(uint8_t comp);
507 const char *genimg_get_arch_name(uint8_t arch);
510 * genimg_get_arch_short_name() - get the short name for an architecture
512 * @param arch Architecture type (IH_ARCH_...)
513 * @return architecture short name, or "unknown" if unknown
515 const char *genimg_get_arch_short_name(uint8_t arch);
517 const char *genimg_get_type_name(uint8_t type);
520 * genimg_get_type_short_name() - get the short name for an image type
522 * @param type Image type (IH_TYPE_...)
523 * @return image short name, or "unknown" if unknown
525 const char *genimg_get_type_short_name(uint8_t type);
527 const char *genimg_get_comp_name(uint8_t comp);
530 * genimg_get_comp_short_name() - get the short name for a compression method
532 * @param comp compression method (IH_COMP_...)
533 * @return compression method short name, or "unknown" if unknown
535 const char *genimg_get_comp_short_name(uint8_t comp);
538 * genimg_get_cat_name() - Get the name of an item in a category
540 * @category: Category of item
542 * @return name of item, or "Unknown ..." if unknown
544 const char *genimg_get_cat_name(enum ih_category category, uint id);
547 * genimg_get_cat_short_name() - Get the short name of an item in a category
549 * @category: Category of item
551 * @return short name of item, or "Unknown ..." if unknown
553 const char *genimg_get_cat_short_name(enum ih_category category, uint id);
556 * genimg_get_cat_count() - Get the number of items in a category
558 * @category: Category to check
559 * @return the number of items in the category (IH_xxx_COUNT)
561 int genimg_get_cat_count(enum ih_category category);
564 * genimg_get_cat_desc() - Get the description of a category
566 * @category: Category to check
567 * @return the description of a category, e.g. "architecture". This
568 * effectively converts the enum to a string.
570 const char *genimg_get_cat_desc(enum ih_category category);
573 * genimg_cat_has_id() - Check whether a category has an item
575 * @category: Category to check
577 * @return true or false as to whether a category has an item
579 bool genimg_cat_has_id(enum ih_category category, uint id);
581 int genimg_get_os_id(const char *name);
582 int genimg_get_arch_id(const char *name);
583 int genimg_get_type_id(const char *name);
584 int genimg_get_comp_id(const char *name);
585 void genimg_print_size(uint32_t size);
587 #if defined(CONFIG_TIMESTAMP) || defined(CONFIG_CMD_DATE) || \
589 #define IMAGE_ENABLE_TIMESTAMP 1
591 #define IMAGE_ENABLE_TIMESTAMP 0
593 void genimg_print_time(time_t timestamp);
595 /* What to do with a image load address ('load = <> 'in the FIT) */
597 FIT_LOAD_IGNORED, /* Ignore load address */
598 FIT_LOAD_OPTIONAL, /* Can be provided, but optional */
599 FIT_LOAD_OPTIONAL_NON_ZERO, /* Optional, a value of 0 is ignored */
600 FIT_LOAD_REQUIRED, /* Must be provided */
603 int boot_get_setup(bootm_headers_t *images, uint8_t arch, ulong *setup_start,
607 /* Image format types, returned by _get_format() routine */
608 #define IMAGE_FORMAT_INVALID 0x00
609 #if defined(CONFIG_LEGACY_IMAGE_FORMAT)
610 #define IMAGE_FORMAT_LEGACY 0x01 /* legacy image_header based format */
612 #define IMAGE_FORMAT_FIT 0x02 /* new, libfdt based format */
613 #define IMAGE_FORMAT_ANDROID 0x03 /* Android boot image */
615 ulong genimg_get_kernel_addr_fit(char * const img_addr,
616 const char **fit_uname_config,
617 const char **fit_uname_kernel);
618 ulong genimg_get_kernel_addr(char * const img_addr);
619 int genimg_get_format(const void *img_addr);
620 int genimg_has_config(bootm_headers_t *images);
622 int boot_get_fpga(int argc, char *const argv[], bootm_headers_t *images,
623 uint8_t arch, const ulong *ld_start, ulong * const ld_len);
624 int boot_get_ramdisk(int argc, char *const argv[], bootm_headers_t *images,
625 uint8_t arch, ulong *rd_start, ulong *rd_end);
628 * boot_get_loadable - routine to load a list of binaries to memory
629 * @argc: Ignored Argument
630 * @argv: Ignored Argument
631 * @images: pointer to the bootm images structure
632 * @arch: expected architecture for the image
633 * @ld_start: Ignored Argument
634 * @ld_len: Ignored Argument
636 * boot_get_loadable() will take the given FIT configuration, and look
637 * for a field named "loadables". Loadables, is a list of elements in
638 * the FIT given as strings. exe:
639 * loadables = "linux_kernel", "fdt-2";
640 * this function will attempt to parse each string, and load the
641 * corresponding element from the FIT into memory. Once placed,
642 * no aditional actions are taken.
645 * 0, if only valid images or no images are found
646 * error code, if an error occurs during fit_image_load
648 int boot_get_loadable(int argc, char *const argv[], bootm_headers_t *images,
649 uint8_t arch, const ulong *ld_start, ulong *const ld_len);
650 #endif /* !USE_HOSTCC */
652 int boot_get_setup_fit(bootm_headers_t *images, uint8_t arch,
653 ulong *setup_start, ulong *setup_len);
656 * boot_get_fdt_fit() - load a DTB from a FIT file (applying overlays)
658 * This deals with all aspects of loading an DTB from a FIT.
659 * The correct base image based on configuration will be selected, and
660 * then any overlays specified will be applied (as present in fit_uname_configp).
662 * @param images Boot images structure
663 * @param addr Address of FIT in memory
664 * @param fit_unamep On entry this is the requested image name
665 * (e.g. "kernel") or NULL to use the default. On exit
666 * points to the selected image name
667 * @param fit_uname_configp On entry this is the requested configuration
668 * name (e.g. "conf-1") or NULL to use the default. On
669 * exit points to the selected configuration name.
670 * @param arch Expected architecture (IH_ARCH_...)
671 * @param datap Returns address of loaded image
672 * @param lenp Returns length of loaded image
674 * @return node offset of base image, or -ve error code on error
676 int boot_get_fdt_fit(bootm_headers_t *images, ulong addr,
677 const char **fit_unamep, const char **fit_uname_configp,
678 int arch, ulong *datap, ulong *lenp);
681 * fit_image_load() - load an image from a FIT
683 * This deals with all aspects of loading an image from a FIT, including
684 * selecting the right image based on configuration, verifying it, printing
685 * out progress messages, checking the type/arch/os and optionally copying it
686 * to the right load address.
688 * The property to look up is defined by image_type.
690 * @param images Boot images structure
691 * @param addr Address of FIT in memory
692 * @param fit_unamep On entry this is the requested image name
693 * (e.g. "kernel") or NULL to use the default. On exit
694 * points to the selected image name
695 * @param fit_uname_configp On entry this is the requested configuration
696 * name (e.g. "conf-1") or NULL to use the default. On
697 * exit points to the selected configuration name.
698 * @param arch Expected architecture (IH_ARCH_...)
699 * @param image_type Required image type (IH_TYPE_...). If this is
700 * IH_TYPE_KERNEL then we allow IH_TYPE_KERNEL_NOLOAD
702 * @param bootstage_id ID of starting bootstage to use for progress updates.
703 * This will be added to the BOOTSTAGE_SUB values when
704 * calling bootstage_mark()
705 * @param load_op Decribes what to do with the load address
706 * @param datap Returns address of loaded image
707 * @param lenp Returns length of loaded image
708 * @return node offset of image, or -ve error code on error
710 int fit_image_load(bootm_headers_t *images, ulong addr,
711 const char **fit_unamep, const char **fit_uname_configp,
712 int arch, int image_type, int bootstage_id,
713 enum fit_load_op load_op, ulong *datap, ulong *lenp);
716 * image_source_script() - Execute a script
718 * Executes a U-Boot script at a particular address in memory. The script should
719 * have a header (FIT or legacy) with the script type (IH_TYPE_SCRIPT).
721 * @addr: Address of script
722 * @fit_uname: FIT subimage name
723 * @return result code (enum command_ret_t)
725 int image_source_script(ulong addr, const char *fit_uname);
729 * fit_get_node_from_config() - Look up an image a FIT by type
731 * This looks in the selected conf- node (images->fit_uname_cfg) for a
732 * particular image type (e.g. "kernel") and then finds the image that is
735 * For example, for something like:
748 * the function will return the node offset of the kernel@1 node, assuming
749 * that conf-1 is the chosen configuration.
751 * @param images Boot images structure
752 * @param prop_name Property name to look up (FIT_..._PROP)
753 * @param addr Address of FIT in memory
755 int fit_get_node_from_config(bootm_headers_t *images, const char *prop_name,
758 int boot_get_fdt(int flag, int argc, char *const argv[], uint8_t arch,
759 bootm_headers_t *images,
760 char **of_flat_tree, ulong *of_size);
761 void boot_fdt_add_mem_rsv_regions(struct lmb *lmb, void *fdt_blob);
762 int boot_relocate_fdt(struct lmb *lmb, char **of_flat_tree, ulong *of_size);
764 int boot_ramdisk_high(struct lmb *lmb, ulong rd_data, ulong rd_len,
765 ulong *initrd_start, ulong *initrd_end);
766 int boot_get_cmdline(struct lmb *lmb, ulong *cmd_start, ulong *cmd_end);
767 #ifdef CONFIG_SYS_BOOT_GET_KBD
768 int boot_get_kbd(struct lmb *lmb, struct bd_info **kbd);
769 #endif /* CONFIG_SYS_BOOT_GET_KBD */
770 #endif /* !USE_HOSTCC */
772 /*******************************************************************/
773 /* Legacy format specific code (prefixed with image_) */
774 /*******************************************************************/
775 static inline uint32_t image_get_header_size(void)
777 return (sizeof(image_header_t));
780 #define image_get_hdr_l(f) \
781 static inline uint32_t image_get_##f(const image_header_t *hdr) \
783 return uimage_to_cpu(hdr->ih_##f); \
785 image_get_hdr_l(magic) /* image_get_magic */
786 image_get_hdr_l(hcrc) /* image_get_hcrc */
787 image_get_hdr_l(time) /* image_get_time */
788 image_get_hdr_l(size) /* image_get_size */
789 image_get_hdr_l(load) /* image_get_load */
790 image_get_hdr_l(ep) /* image_get_ep */
791 image_get_hdr_l(dcrc) /* image_get_dcrc */
793 #define image_get_hdr_b(f) \
794 static inline uint8_t image_get_##f(const image_header_t *hdr) \
796 return hdr->ih_##f; \
798 image_get_hdr_b(os) /* image_get_os */
799 image_get_hdr_b(arch) /* image_get_arch */
800 image_get_hdr_b(type) /* image_get_type */
801 image_get_hdr_b(comp) /* image_get_comp */
803 static inline char *image_get_name(const image_header_t *hdr)
805 return (char *)hdr->ih_name;
808 static inline uint32_t image_get_data_size(const image_header_t *hdr)
810 return image_get_size(hdr);
814 * image_get_data - get image payload start address
817 * image_get_data() returns address of the image payload. For single
818 * component images it is image data start. For multi component
819 * images it points to the null terminated table of sub-images sizes.
822 * image payload data start address
824 static inline ulong image_get_data(const image_header_t *hdr)
826 return ((ulong)hdr + image_get_header_size());
829 static inline uint32_t image_get_image_size(const image_header_t *hdr)
831 return (image_get_size(hdr) + image_get_header_size());
833 static inline ulong image_get_image_end(const image_header_t *hdr)
835 return ((ulong)hdr + image_get_image_size(hdr));
838 #define image_set_hdr_l(f) \
839 static inline void image_set_##f(image_header_t *hdr, uint32_t val) \
841 hdr->ih_##f = cpu_to_uimage(val); \
843 image_set_hdr_l(magic) /* image_set_magic */
844 image_set_hdr_l(hcrc) /* image_set_hcrc */
845 image_set_hdr_l(time) /* image_set_time */
846 image_set_hdr_l(size) /* image_set_size */
847 image_set_hdr_l(load) /* image_set_load */
848 image_set_hdr_l(ep) /* image_set_ep */
849 image_set_hdr_l(dcrc) /* image_set_dcrc */
851 #define image_set_hdr_b(f) \
852 static inline void image_set_##f(image_header_t *hdr, uint8_t val) \
856 image_set_hdr_b(os) /* image_set_os */
857 image_set_hdr_b(arch) /* image_set_arch */
858 image_set_hdr_b(type) /* image_set_type */
859 image_set_hdr_b(comp) /* image_set_comp */
861 static inline void image_set_name(image_header_t *hdr, const char *name)
863 strncpy(image_get_name(hdr), name, IH_NMLEN);
866 int image_check_hcrc(const image_header_t *hdr);
867 int image_check_dcrc(const image_header_t *hdr);
869 ulong env_get_bootm_low(void);
870 phys_size_t env_get_bootm_size(void);
871 phys_size_t env_get_bootm_mapsize(void);
873 void memmove_wd(void *to, void *from, size_t len, ulong chunksz);
875 static inline int image_check_magic(const image_header_t *hdr)
877 return (image_get_magic(hdr) == IH_MAGIC);
879 static inline int image_check_type(const image_header_t *hdr, uint8_t type)
881 return (image_get_type(hdr) == type);
883 static inline int image_check_arch(const image_header_t *hdr, uint8_t arch)
885 return (image_get_arch(hdr) == arch) ||
886 (image_get_arch(hdr) == IH_ARCH_ARM && arch == IH_ARCH_ARM64);
888 static inline int image_check_os(const image_header_t *hdr, uint8_t os)
890 return (image_get_os(hdr) == os);
893 ulong image_multi_count(const image_header_t *hdr);
894 void image_multi_getimg(const image_header_t *hdr, ulong idx,
895 ulong *data, ulong *len);
897 void image_print_contents(const void *hdr);
900 static inline int image_check_target_arch(const image_header_t *hdr)
902 #ifndef IH_ARCH_DEFAULT
903 # error "please define IH_ARCH_DEFAULT in your arch asm/u-boot.h"
905 return image_check_arch(hdr, IH_ARCH_DEFAULT);
907 #endif /* USE_HOSTCC */
910 * image_decomp_type() - Find out compression type of an image
912 * @buf: Address in U-Boot memory where image is loaded.
913 * @len: Length of the compressed image.
914 * @return compression type or IH_COMP_NONE if not compressed.
916 * Note: Only following compression types are supported now.
917 * lzo, lzma, gzip, bzip2
919 int image_decomp_type(const unsigned char *buf, ulong len);
922 * image_decomp() - decompress an image
924 * @comp: Compression algorithm that is used (IH_COMP_...)
925 * @load: Destination load address in U-Boot memory
926 * @image_start Image start address (where we are decompressing from)
927 * @type: OS type (IH_OS_...)
928 * @load_bug: Place to decompress to
929 * @image_buf: Address to decompress from
930 * @image_len: Number of bytes in @image_buf to decompress
931 * @unc_len: Available space for decompression
932 * @return 0 if OK, -ve on error (BOOTM_ERR_...)
934 int image_decomp(int comp, ulong load, ulong image_start, int type,
935 void *load_buf, void *image_buf, ulong image_len,
936 uint unc_len, ulong *load_end);
939 * Set up properties in the FDT
941 * This sets up properties in the FDT that is to be passed to linux.
943 * @images: Images information
944 * @blob: FDT to update
945 * @of_size: Size of the FDT
946 * @lmb: Points to logical memory block structure
947 * @return 0 if ok, <0 on failure
949 int image_setup_libfdt(bootm_headers_t *images, void *blob,
950 int of_size, struct lmb *lmb);
953 * Set up the FDT to use for booting a kernel
955 * This performs ramdisk setup, sets up the FDT if required, and adds
956 * paramters to the FDT if libfdt is available.
958 * @param images Images information
959 * @return 0 if ok, <0 on failure
961 int image_setup_linux(bootm_headers_t *images);
964 * bootz_setup() - Extract stat and size of a Linux xImage
966 * @image: Address of image
967 * @start: Returns start address of image
968 * @end : Returns end address of image
969 * @return 0 if OK, 1 if the image was not recognised
971 int bootz_setup(ulong image, ulong *start, ulong *end);
974 * Return the correct start address and size of a Linux aarch64 Image.
976 * @image: Address of image
977 * @start: Returns start address of image
978 * @size : Returns size image
979 * @force_reloc: Ignore image->ep field, always place image to RAM start
980 * @return 0 if OK, 1 if the image was not recognised
982 int booti_setup(ulong image, ulong *relocated_addr, ulong *size,
985 /*******************************************************************/
986 /* New uImage format specific code (prefixed with fit_) */
987 /*******************************************************************/
989 #define FIT_IMAGES_PATH "/images"
990 #define FIT_CONFS_PATH "/configurations"
992 /* hash/signature/key node */
993 #define FIT_HASH_NODENAME "hash"
994 #define FIT_ALGO_PROP "algo"
995 #define FIT_VALUE_PROP "value"
996 #define FIT_IGNORE_PROP "uboot-ignore"
997 #define FIT_SIG_NODENAME "signature"
998 #define FIT_KEY_REQUIRED "required"
999 #define FIT_KEY_HINT "key-name-hint"
1002 #define FIT_CIPHER_NODENAME "cipher"
1003 #define FIT_ALGO_PROP "algo"
1006 #define FIT_DATA_PROP "data"
1007 #define FIT_DATA_POSITION_PROP "data-position"
1008 #define FIT_DATA_OFFSET_PROP "data-offset"
1009 #define FIT_DATA_SIZE_PROP "data-size"
1010 #define FIT_TIMESTAMP_PROP "timestamp"
1011 #define FIT_DESC_PROP "description"
1012 #define FIT_ARCH_PROP "arch"
1013 #define FIT_TYPE_PROP "type"
1014 #define FIT_OS_PROP "os"
1015 #define FIT_COMP_PROP "compression"
1016 #define FIT_ENTRY_PROP "entry"
1017 #define FIT_LOAD_PROP "load"
1019 /* configuration node */
1020 #define FIT_KERNEL_PROP "kernel"
1021 #define FIT_RAMDISK_PROP "ramdisk"
1022 #define FIT_FDT_PROP "fdt"
1023 #define FIT_LOADABLE_PROP "loadables"
1024 #define FIT_DEFAULT_PROP "default"
1025 #define FIT_SETUP_PROP "setup"
1026 #define FIT_FPGA_PROP "fpga"
1027 #define FIT_FIRMWARE_PROP "firmware"
1028 #define FIT_STANDALONE_PROP "standalone"
1030 #define FIT_MAX_HASH_LEN HASH_MAX_DIGEST_SIZE
1032 #if IMAGE_ENABLE_FIT
1033 /* cmdline argument format parsing */
1034 int fit_parse_conf(const char *spec, ulong addr_curr,
1035 ulong *addr, const char **conf_name);
1036 int fit_parse_subimage(const char *spec, ulong addr_curr,
1037 ulong *addr, const char **image_name);
1039 int fit_get_subimage_count(const void *fit, int images_noffset);
1040 void fit_print_contents(const void *fit);
1041 void fit_image_print(const void *fit, int noffset, const char *p);
1044 * fit_get_end - get FIT image size
1045 * @fit: pointer to the FIT format image header
1048 * size of the FIT image (blob) in memory
1050 static inline ulong fit_get_size(const void *fit)
1052 return fdt_totalsize(fit);
1056 * fit_get_end - get FIT image end
1057 * @fit: pointer to the FIT format image header
1060 * end address of the FIT image (blob) in memory
1062 ulong fit_get_end(const void *fit);
1065 * fit_get_name - get FIT node name
1066 * @fit: pointer to the FIT format image header
1070 * pointer to node name, on success
1072 static inline const char *fit_get_name(const void *fit_hdr,
1073 int noffset, int *len)
1075 return fdt_get_name(fit_hdr, noffset, len);
1078 int fit_get_desc(const void *fit, int noffset, char **desc);
1079 int fit_get_timestamp(const void *fit, int noffset, time_t *timestamp);
1081 int fit_image_get_node(const void *fit, const char *image_uname);
1082 int fit_image_get_os(const void *fit, int noffset, uint8_t *os);
1083 int fit_image_get_arch(const void *fit, int noffset, uint8_t *arch);
1084 int fit_image_get_type(const void *fit, int noffset, uint8_t *type);
1085 int fit_image_get_comp(const void *fit, int noffset, uint8_t *comp);
1086 int fit_image_get_load(const void *fit, int noffset, ulong *load);
1087 int fit_image_get_entry(const void *fit, int noffset, ulong *entry);
1088 int fit_image_get_data(const void *fit, int noffset,
1089 const void **data, size_t *size);
1090 int fit_image_get_data_offset(const void *fit, int noffset, int *data_offset);
1091 int fit_image_get_data_position(const void *fit, int noffset,
1092 int *data_position);
1093 int fit_image_get_data_size(const void *fit, int noffset, int *data_size);
1094 int fit_image_get_data_size_unciphered(const void *fit, int noffset,
1096 int fit_image_get_data_and_size(const void *fit, int noffset,
1097 const void **data, size_t *size);
1099 int fit_image_hash_get_algo(const void *fit, int noffset, char **algo);
1100 int fit_image_hash_get_value(const void *fit, int noffset, uint8_t **value,
1103 int fit_set_timestamp(void *fit, int noffset, time_t timestamp);
1105 int fit_cipher_data(const char *keydir, void *keydest, void *fit,
1106 const char *comment, int require_keys,
1107 const char *engine_id, const char *cmdname);
1110 * fit_add_verification_data() - add verification data to FIT image nodes
1112 * @keydir: Directory containing keys
1113 * @kwydest: FDT blob to write public key information to
1114 * @fit: Pointer to the FIT format image header
1115 * @comment: Comment to add to signature nodes
1116 * @require_keys: Mark all keys as 'required'
1117 * @engine_id: Engine to use for signing
1118 * @cmdname: Command name used when reporting errors
1120 * Adds hash values for all component images in the FIT blob.
1121 * Hashes are calculated for all component images which have hash subnodes
1122 * with algorithm property set to one of the supported hash algorithms.
1124 * Also add signatures if signature nodes are present.
1128 * libfdt error code, on failure
1130 int fit_add_verification_data(const char *keydir, void *keydest, void *fit,
1131 const char *comment, int require_keys,
1132 const char *engine_id, const char *cmdname);
1134 int fit_image_verify_with_data(const void *fit, int image_noffset,
1135 const void *data, size_t size);
1136 int fit_image_verify(const void *fit, int noffset);
1137 int fit_config_verify(const void *fit, int conf_noffset);
1138 int fit_all_image_verify(const void *fit);
1139 int fit_config_decrypt(const void *fit, int conf_noffset);
1140 int fit_image_check_os(const void *fit, int noffset, uint8_t os);
1141 int fit_image_check_arch(const void *fit, int noffset, uint8_t arch);
1142 int fit_image_check_type(const void *fit, int noffset, uint8_t type);
1143 int fit_image_check_comp(const void *fit, int noffset, uint8_t comp);
1144 int fit_check_format(const void *fit);
1146 int fit_conf_find_compat(const void *fit, const void *fdt);
1149 * fit_conf_get_node - get node offset for configuration of a given unit name
1150 * @fit: pointer to the FIT format image header
1151 * @conf_uname: configuration node unit name (NULL to use default)
1153 * fit_conf_get_node() finds a configuration (within the '/configurations'
1154 * parent node) of a provided unit name. If configuration is found its node
1155 * offset is returned to the caller.
1157 * When NULL is provided in second argument fit_conf_get_node() will search
1158 * for a default configuration node instead. Default configuration node unit
1159 * name is retrieved from FIT_DEFAULT_PROP property of the '/configurations'
1163 * configuration node offset when found (>=0)
1164 * negative number on failure (FDT_ERR_* code)
1166 int fit_conf_get_node(const void *fit, const char *conf_uname);
1168 int fit_conf_get_prop_node_count(const void *fit, int noffset,
1169 const char *prop_name);
1170 int fit_conf_get_prop_node_index(const void *fit, int noffset,
1171 const char *prop_name, int index);
1174 * fit_conf_get_prop_node() - Get node refered to by a configuration
1175 * @fit: FIT to check
1176 * @noffset: Offset of conf@xxx node to check
1177 * @prop_name: Property to read from the conf node
1179 * The conf- nodes contain references to other nodes, using properties
1180 * like 'kernel = "kernel"'. Given such a property name (e.g. "kernel"),
1181 * return the offset of the node referred to (e.g. offset of node
1184 int fit_conf_get_prop_node(const void *fit, int noffset,
1185 const char *prop_name);
1187 int fit_check_ramdisk(const void *fit, int os_noffset,
1188 uint8_t arch, int verify);
1189 #endif /* IMAGE_ENABLE_FIT */
1191 int calculate_hash(const void *data, int data_len, const char *algo,
1192 uint8_t *value, int *value_len);
1195 * At present we only support signing on the host, and verification on the
1198 #if defined(USE_HOSTCC)
1199 # if defined(CONFIG_FIT_SIGNATURE)
1200 # define IMAGE_ENABLE_SIGN 1
1201 # define IMAGE_ENABLE_VERIFY 1
1202 # define FIT_IMAGE_ENABLE_VERIFY 1
1203 # include <openssl/evp.h>
1205 # define IMAGE_ENABLE_SIGN 0
1206 # define IMAGE_ENABLE_VERIFY 0
1207 # define FIT_IMAGE_ENABLE_VERIFY 0
1210 # define IMAGE_ENABLE_SIGN 0
1211 # define IMAGE_ENABLE_VERIFY CONFIG_IS_ENABLED(RSA_VERIFY)
1212 # define FIT_IMAGE_ENABLE_VERIFY CONFIG_IS_ENABLED(FIT_SIGNATURE)
1215 #if IMAGE_ENABLE_FIT
1217 void *image_get_host_blob(void);
1218 void image_set_host_blob(void *host_blob);
1219 # define gd_fdt_blob() image_get_host_blob()
1221 # define gd_fdt_blob() (gd->fdt_blob)
1224 #ifdef CONFIG_FIT_BEST_MATCH
1225 #define IMAGE_ENABLE_BEST_MATCH 1
1227 #define IMAGE_ENABLE_BEST_MATCH 0
1229 #endif /* IMAGE_ENABLE_FIT */
1231 /* Information passed to the signing routines */
1232 struct image_sign_info {
1233 const char *keydir; /* Directory conaining keys */
1234 const char *keyname; /* Name of key to use */
1235 void *fit; /* Pointer to FIT blob */
1236 int node_offset; /* Offset of signature node */
1237 const char *name; /* Algorithm name */
1238 struct checksum_algo *checksum; /* Checksum algorithm information */
1239 struct padding_algo *padding; /* Padding algorithm information */
1240 struct crypto_algo *crypto; /* Crypto algorithm information */
1241 const void *fdt_blob; /* FDT containing public keys */
1242 int required_keynode; /* Node offset of key to use: -1=any */
1243 const char *require_keys; /* Value for 'required' property */
1244 const char *engine_id; /* Engine to use for signing */
1246 * Note: the following two fields are always valid even w/o
1247 * RSA_VERIFY_WITH_PKEY in order to make sure this structure is
1248 * the same on target and host. Otherwise, vboot test may fail.
1250 const void *key; /* Pointer to public key in DER */
1251 int keylen; /* Length of public key */
1254 /* A part of an image, used for hashing */
1255 struct image_region {
1260 #if IMAGE_ENABLE_VERIFY
1261 # include <u-boot/rsa-checksum.h>
1263 struct checksum_algo {
1265 const int checksum_len;
1267 const uint8_t *der_prefix;
1268 #if IMAGE_ENABLE_SIGN
1269 const EVP_MD *(*calculate_sign)(void);
1271 int (*calculate)(const char *name,
1272 const struct image_region region[],
1273 int region_count, uint8_t *checksum);
1276 struct crypto_algo {
1277 const char *name; /* Name of algorithm */
1281 * sign() - calculate and return signature for given input data
1283 * @info: Specifies key and FIT information
1284 * @data: Pointer to the input data
1285 * @data_len: Data length
1286 * @sigp: Set to an allocated buffer holding the signature
1287 * @sig_len: Set to length of the calculated hash
1289 * This computes input data signature according to selected algorithm.
1290 * Resulting signature value is placed in an allocated buffer, the
1291 * pointer is returned as *sigp. The length of the calculated
1292 * signature is returned via the sig_len pointer argument. The caller
1293 * should free *sigp.
1295 * @return: 0, on success, -ve on error
1297 int (*sign)(struct image_sign_info *info,
1298 const struct image_region region[],
1299 int region_count, uint8_t **sigp, uint *sig_len);
1302 * add_verify_data() - Add verification information to FDT
1304 * Add public key information to the FDT node, suitable for
1305 * verification at run-time. The information added depends on the
1306 * algorithm being used.
1308 * @info: Specifies key and FIT information
1309 * @keydest: Destination FDT blob for public key data
1310 * @return: 0, on success, -ve on error
1312 int (*add_verify_data)(struct image_sign_info *info, void *keydest);
1315 * verify() - Verify a signature against some data
1317 * @info: Specifies key and FIT information
1318 * @data: Pointer to the input data
1319 * @data_len: Data length
1321 * @sig_len: Number of bytes in signature
1322 * @return 0 if verified, -ve on error
1324 int (*verify)(struct image_sign_info *info,
1325 const struct image_region region[], int region_count,
1326 uint8_t *sig, uint sig_len);
1329 struct padding_algo {
1331 int (*verify)(struct image_sign_info *info,
1332 uint8_t *pad, int pad_len,
1333 const uint8_t *hash, int hash_len);
1337 * image_get_checksum_algo() - Look up a checksum algorithm
1339 * @param full_name Name of algorithm in the form "checksum,crypto"
1340 * @return pointer to algorithm information, or NULL if not found
1342 struct checksum_algo *image_get_checksum_algo(const char *full_name);
1345 * image_get_crypto_algo() - Look up a cryptosystem algorithm
1347 * @param full_name Name of algorithm in the form "checksum,crypto"
1348 * @return pointer to algorithm information, or NULL if not found
1350 struct crypto_algo *image_get_crypto_algo(const char *full_name);
1353 * image_get_padding_algo() - Look up a padding algorithm
1355 * @param name Name of padding algorithm
1356 * @return pointer to algorithm information, or NULL if not found
1358 struct padding_algo *image_get_padding_algo(const char *name);
1360 #if IMAGE_ENABLE_FIT
1363 * fit_image_verify_required_sigs() - Verify signatures marked as 'required'
1365 * @fit: FIT to check
1366 * @image_noffset: Offset of image node to check
1367 * @data: Image data to check
1368 * @size: Size of image data
1369 * @sig_blob: FDT containing public keys
1370 * @no_sigsp: Returns 1 if no signatures were required, and
1371 * therefore nothing was checked. The caller may wish
1372 * to fall back to other mechanisms, or refuse to
1374 * @return 0 if all verified ok, <0 on error
1376 int fit_image_verify_required_sigs(const void *fit, int image_noffset,
1377 const char *data, size_t size, const void *sig_blob,
1381 * fit_image_check_sig() - Check a single image signature node
1383 * @fit: FIT to check
1384 * @noffset: Offset of signature node to check
1385 * @data: Image data to check
1386 * @size: Size of image data
1387 * @required_keynode: Offset in the control FDT of the required key node,
1388 * if any. If this is given, then the image wil not
1389 * pass verification unless that key is used. If this is
1390 * -1 then any signature will do.
1391 * @err_msgp: In the event of an error, this will be pointed to a
1392 * help error string to display to the user.
1393 * @return 0 if all verified ok, <0 on error
1395 int fit_image_check_sig(const void *fit, int noffset, const void *data,
1396 size_t size, int required_keynode, char **err_msgp);
1398 int fit_image_decrypt_data(const void *fit,
1399 int image_noffset, int cipher_noffset,
1400 const void *data, size_t size,
1401 void **data_unciphered, size_t *size_unciphered);
1404 * fit_region_make_list() - Make a list of regions to hash
1406 * Given a list of FIT regions (offset, size) provided by libfdt, create
1407 * a list of regions (void *, size) for use by the signature creationg
1408 * and verification code.
1410 * @fit: FIT image to process
1411 * @fdt_regions: Regions as returned by libfdt
1412 * @count: Number of regions returned by libfdt
1413 * @region: Place to put list of regions (NULL to allocate it)
1414 * @return pointer to list of regions, or NULL if out of memory
1416 struct image_region *fit_region_make_list(const void *fit,
1417 struct fdt_region *fdt_regions, int count,
1418 struct image_region *region);
1420 static inline int fit_image_check_target_arch(const void *fdt, int node)
1423 return fit_image_check_arch(fdt, node, IH_ARCH_DEFAULT);
1430 * At present we only support ciphering on the host, and unciphering on the
1433 #if defined(USE_HOSTCC)
1434 # if defined(CONFIG_FIT_CIPHER)
1435 # define IMAGE_ENABLE_ENCRYPT 1
1436 # define IMAGE_ENABLE_DECRYPT 1
1437 # include <openssl/evp.h>
1439 # define IMAGE_ENABLE_ENCRYPT 0
1440 # define IMAGE_ENABLE_DECRYPT 0
1443 # define IMAGE_ENABLE_ENCRYPT 0
1444 # define IMAGE_ENABLE_DECRYPT CONFIG_IS_ENABLED(FIT_CIPHER)
1447 /* Information passed to the ciphering routines */
1448 struct image_cipher_info {
1449 const char *keydir; /* Directory containing keys */
1450 const char *keyname; /* Name of key to use */
1451 const char *ivname; /* Name of IV to use */
1452 const void *fit; /* Pointer to FIT blob */
1453 int node_noffset; /* Offset of the cipher node */
1454 const char *name; /* Algorithm name */
1455 struct cipher_algo *cipher; /* Cipher algorithm information */
1456 const void *fdt_blob; /* FDT containing key and IV */
1457 const void *key; /* Value of the key */
1458 const void *iv; /* Value of the IV */
1459 size_t size_unciphered; /* Size of the unciphered data */
1462 struct cipher_algo {
1463 const char *name; /* Name of algorithm */
1464 int key_len; /* Length of the key */
1465 int iv_len; /* Length of the IV */
1467 #if IMAGE_ENABLE_ENCRYPT
1468 const EVP_CIPHER * (*calculate_type)(void);
1471 int (*encrypt)(struct image_cipher_info *info,
1472 const unsigned char *data, int data_len,
1473 unsigned char **cipher, int *cipher_len);
1475 int (*add_cipher_data)(struct image_cipher_info *info,
1476 void *keydest, void *fit, int node_noffset);
1478 int (*decrypt)(struct image_cipher_info *info,
1479 const void *cipher, size_t cipher_len,
1480 void **data, size_t *data_len);
1483 int fit_image_cipher_get_algo(const void *fit, int noffset, char **algo);
1485 struct cipher_algo *image_get_cipher_algo(const char *full_name);
1487 #ifdef CONFIG_FIT_VERBOSE
1488 #define fit_unsupported(msg) printf("! %s:%d " \
1489 "FIT images not supported for '%s'\n", \
1490 __FILE__, __LINE__, (msg))
1492 #define fit_unsupported_reset(msg) printf("! %s:%d " \
1493 "FIT images not supported for '%s' " \
1494 "- must reset board to recover!\n", \
1495 __FILE__, __LINE__, (msg))
1497 #define fit_unsupported(msg)
1498 #define fit_unsupported_reset(msg)
1499 #endif /* CONFIG_FIT_VERBOSE */
1500 #endif /* CONFIG_FIT */
1502 #if !defined(USE_HOSTCC)
1503 #if defined(CONFIG_ANDROID_BOOT_IMAGE)
1504 struct andr_img_hdr;
1505 int android_image_check_header(const struct andr_img_hdr *hdr);
1506 int android_image_get_kernel(const struct andr_img_hdr *hdr, int verify,
1507 ulong *os_data, ulong *os_len);
1508 int android_image_get_ramdisk(const struct andr_img_hdr *hdr,
1509 ulong *rd_data, ulong *rd_len);
1510 int android_image_get_second(const struct andr_img_hdr *hdr,
1511 ulong *second_data, ulong *second_len);
1512 bool android_image_get_dtbo(ulong hdr_addr, ulong *addr, u32 *size);
1513 bool android_image_get_dtb_by_index(ulong hdr_addr, u32 index, ulong *addr,
1515 ulong android_image_get_end(const struct andr_img_hdr *hdr);
1516 ulong android_image_get_kload(const struct andr_img_hdr *hdr);
1517 ulong android_image_get_kcomp(const struct andr_img_hdr *hdr);
1518 void android_print_contents(const struct andr_img_hdr *hdr);
1519 #if !defined(CONFIG_SPL_BUILD)
1520 bool android_image_print_dtb_contents(ulong hdr_addr);
1523 #endif /* CONFIG_ANDROID_BOOT_IMAGE */
1524 #endif /* !USE_HOSTCC */
1527 * board_fit_config_name_match() - Check for a matching board name
1529 * This is used when SPL loads a FIT containing multiple device tree files
1530 * and wants to work out which one to use. The description of each one is
1531 * passed to this function. The description comes from the 'description' field
1532 * in each (FDT) image node.
1534 * @name: Device tree description
1535 * @return 0 if this device tree should be used, non-zero to try the next
1537 int board_fit_config_name_match(const char *name);
1539 #if defined(CONFIG_SPL_FIT_IMAGE_POST_PROCESS) || \
1540 defined(CONFIG_FIT_IMAGE_POST_PROCESS)
1542 * board_fit_image_post_process() - Do any post-process on FIT binary data
1544 * This is used to do any sort of image manipulation, verification, decryption
1545 * etc. in a platform or board specific way. Obviously, anything done here would
1546 * need to be comprehended in how the images were prepared before being injected
1547 * into the FIT creation (i.e. the binary blobs would have been pre-processed
1548 * before being added to the FIT image).
1550 * @image: pointer to the image start pointer
1551 * @size: pointer to the image size
1552 * @return no return value (failure should be handled internally)
1554 void board_fit_image_post_process(void **p_image, size_t *p_size);
1555 #endif /* CONFIG_SPL_FIT_IMAGE_POST_PROCESS */
1557 #define FDT_ERROR ((ulong)(-1))
1559 ulong fdt_getprop_u32(const void *fdt, int node, const char *prop);
1562 * fit_find_config_node() - Find the node for the best DTB in a FIT image
1564 * A FIT image contains one or more DTBs. This function parses the
1565 * configurations described in the FIT images and returns the node of
1566 * the first matching DTB. To check if a DTB matches a board, this function
1567 * calls board_fit_config_name_match(). If no matching DTB is found, it returns
1568 * the node described by the default configuration if it exists.
1570 * @fdt: pointer to flat device tree
1571 * @return the node if found, -ve otherwise
1573 int fit_find_config_node(const void *fdt);
1576 * Mapping of image types to function handlers to be invoked on the associated
1579 * @type: Type of image, I.E. IH_TYPE_*
1580 * @handler: Function to call on loaded image
1582 struct fit_loadable_tbl {
1585 * handler() - Process a loaded image
1587 * @data: Pointer to start of loaded image data
1588 * @size: Size of loaded image data
1590 void (*handler)(ulong data, size_t size);
1594 * Define a FIT loadable image type handler
1596 * _type is a valid uimage_type ID as defined in the "Image Type" enum above
1597 * _handler is the handler function to call after this image type is loaded
1599 #define U_BOOT_FIT_LOADABLE_HANDLER(_type, _handler) \
1600 ll_entry_declare(struct fit_loadable_tbl, _function, fit_loadable) = { \
1602 .handler = _handler, \
1606 * fit_update - update storage with FIT image
1607 * @fit: Pointer to FIT image
1609 * Update firmware on storage using FIT image as input.
1610 * The storage area to be update will be identified by the name
1611 * in FIT and matching it to "dfu_alt_info" variable.
1613 * Return: 0 on success, non-zero otherwise
1615 int fit_update(const void *fit);
1617 #endif /* __IMAGE_H__ */