xref: /rk3399_rockchip-uboot/include/android_image.h (revision 39d40ad54eb2274a86419000e0e087673f86508a)
1 /* SPDX-License-Identifier: BSD-3-Clause */
2 /*
3  * This is from the Android Project,
4  * Repository: https://android.googlesource.com/platform/system/tools/mkbootimg
5  * File: include/bootimg/bootimg.h
6  * Commit: e55998a0f2b61b685d5eb4a486ca3a0c680b1a2f
7  *
8  * Copyright (C) 2007 The Android Open Source Project
9  */
10 
11 #ifndef _ANDROID_IMAGE_H_
12 #define _ANDROID_IMAGE_H_
13 
14 #define ANDROID_PARTITION_BOOT "boot"
15 #define ANDROID_PARTITION_VENDOR_BOOT "vendor_boot"
16 #define ANDROID_PARTITION_INIT_BOOT "init_boot"
17 #define ANDROID_PARTITION_MISC "misc"
18 #define ANDROID_PARTITION_OEM  "oem"
19 #define ANDROID_PARTITION_RESOURCE  "resource"
20 #define ANDROID_PARTITION_RECOVERY  "recovery"
21 #define ANDROID_PARTITION_SYSTEM "system"
22 #define ANDROID_PARTITION_VBMETA "vbmeta"
23 #define ANDROID_PARTITION_SUPER "super"
24 
25 #define ANDROID_ARG_SLOT_SUFFIX "androidboot.slot_suffix="
26 #define ANDROID_ARG_ROOT "root="
27 #define ANDROID_ARG_SERIALNO "androidboot.serialno="
28 #define ANDROID_VERIFY_STATE "androidboot.verifiedbootstate="
29 #ifdef CONFIG_ROCKCHIP_RESOURCE_IMAGE
30 #define ANDROID_ARG_FDT_FILENAME "rk-kernel.dtb"
31 #else
32 #define ANDROID_ARG_FDT_FILENAME "kernel.dtb"
33 #endif
34 #define ANDROID_IMAGE_DEFAULT_KERNEL_ADDR	0x10008000
35 
36 #define OEM_UNLOCK_ARG_SIZE 30
37 #define UUID_SIZE 37
38 
39 #define ANDR_BOOT_MAGIC "ANDROID!"
40 #define VENDOR_BOOT_MAGIC "VNDRBOOT"
41 #define ANDR_BOOT_MAGIC_SIZE 8
42 #define VENDOR_BOOT_MAGIC_SIZE 8
43 #define ANDR_BOOT_NAME_SIZE 16
44 #define VENDOR_BOOT_NAME_SIZE 16
45 #define ANDR_BOOT_ARGS_SIZE 512
46 #define ANDR_BOOT_EXTRA_ARGS_SIZE 1024
47 #define VENDOR_BOOT_ARGS_SIZE 2048
48 #define ANDR_BOOT_IMG_PAGE_SIZE 4096
49 #define ANDR_BOOT_IMG_HDR_SIZE (ANDR_BOOT_IMG_PAGE_SIZE)
50 #define TOTAL_BOOT_ARGS_SIZE (ANDR_BOOT_ARGS_SIZE + ANDR_BOOT_EXTRA_ARGS_SIZE + \
51                               VENDOR_BOOT_ARGS_SIZE + 1)
52 #define VENDOR_BOOT_HDRv3_SIZE	2112
53 #define VENDOR_BOOT_HDRv4_SIZE	2124
54 
55 #define VENDOR_RAMDISK_TYPE_NONE 0
56 #define VENDOR_RAMDISK_TYPE_PLATFORM 1
57 #define VENDOR_RAMDISK_TYPE_RECOVERY 2
58 #define VENDOR_RAMDISK_TYPE_DLKM 3
59 #define VENDOR_RAMDISK_NAME_SIZE 32
60 #define VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE 16
61 
62 /* defined by rockchip but not google, it's adjustable */
63 #define ANDROID_ADDITION_BOOTCONFIG_PARAMS_MAX_SIZE SZ_8K
64 
65 /*
66  * It is expected that callers would explicitly specify which version of the
67  * boot image header they need to use.
68  */
69 typedef struct andr_img_hdr andr_img_hdr;
70 
71 /* The bootloader expects the structure of andr_img_hdr with header
72  * version 0 to be as follows: */
73 struct andr_img_hdr {
74     /* Must be ANDR_BOOT_MAGIC. */
75     char magic[ANDR_BOOT_MAGIC_SIZE];
76 
77     u32 kernel_size; /* size in bytes */
78     u32 kernel_addr; /* physical load addr */
79 
80     u32 ramdisk_size; /* size in bytes */
81     u32 ramdisk_addr; /* physical load addr */
82 
83     u32 second_size; /* size in bytes */
84     u32 second_addr; /* physical load addr */
85 
86     u32 tags_addr; /* physical addr for kernel tags */
87     u32 page_size; /* flash page size we assume */
88 
89     /* Version of the boot image header. */
90     u32 header_version;
91 
92     /* Operating system version and security patch level.
93      * For version "A.B.C" and patch level "Y-M-D":
94      *   (7 bits for each of A, B, C; 7 bits for (Y-2000), 4 bits for M)
95      *   os_version = A[31:25] B[24:18] C[17:11] (Y-2000)[10:4] M[3:0] */
96     u32 os_version;
97 
98     char name[ANDR_BOOT_NAME_SIZE]; /* asciiz product name */
99 
100     char cmdline[ANDR_BOOT_ARGS_SIZE];
101 
102     u32 id[8]; /* timestamp / checksum / sha1 / etc */
103 
104     /* Supplemental command line data; kept here to maintain
105      * binary compatibility with older versions of mkbootimg. */
106     char extra_cmdline[ANDR_BOOT_EXTRA_ARGS_SIZE];
107 
108     /* Fields in boot_img_hdr_v1(Android-9) and newer. */
109     u32 recovery_dtbo_size;   /* size in bytes for recovery DTBO/ACPIO image */
110     u64 recovery_dtbo_offset; /* offset to recovery dtbo/acpio in boot image */
111     u32 header_size;
112 
113     /* Fields in boot_img_hdr_v2(Android-10) and newer. */
114     u32 dtb_size; /* size in bytes for DTB image */
115     u64 dtb_addr; /* physical load address for DTB image */
116 
117     /*
118      * [Rockchip compatibility Android v3]
119      *
120      * boot_img_hdr_v3(Android-11) is not compatible with boot_img_hdr_v012,
121      * we have to partly merge fields from boot_img_hdr_v34 and vendor_boot_img_hdr_v34
122      * into this structure to compatible with boot_img_hdr_v012.
123      */
124     u32 vendor_ramdisk_size; /* size in bytes */
125     u32 vendor_page_size;
126     u32 vendor_header_version;
127     u32 vendor_header_size;
128 
129     /*
130      * [Rockchip compatibility Android v4]
131      *
132      * boot_img_hdr_v4(Android-12) is not compatible with boot_img_hdr_v012,
133      * we have to partly merge fields from boot_img_hdr_v34 and vendor_boot_img_hdr_v34
134      * into this structure to compatible with boot_img_hdr_v012.
135      */
136     u32 vendor_ramdisk_table_size;
137     u32 vendor_ramdisk_table_entry_num;
138     u32 vendor_ramdisk_table_entry_size;
139     u32 vendor_bootconfig_size; /* size in bytes for bootconfig image */
140 
141     void *init_boot_buf;
142     void *vendor_boot_buf;
143 
144     /*
145      * Don't define 'char total_cmdline[TOTAL_BOOT_ARGS_SIZE]' to avoid
146      * this structrue is over size than page_size.
147      */
148     char *total_cmdline;
149 } __attribute__((packed));
150 
151 struct boot_img_hdr_v34 {
152     /* Must be ANDR_BOOT_MAGIC. */
153     uint8_t magic[ANDR_BOOT_MAGIC_SIZE];
154 
155     uint32_t kernel_size; /* size in bytes */
156     uint32_t ramdisk_size; /* size in bytes */
157 
158     /* Operating system version and security patch level.
159      * For version "A.B.C" and patch level "Y-M-D":
160      *   (7 bits for each of A, B, C; 7 bits for (Y-2000), 4 bits for M)
161      *   os_version = A[31:25] B[24:18] C[17:11] (Y-2000)[10:4] M[3:0] */
162     uint32_t os_version;
163 
164     uint32_t header_size;
165 
166     uint32_t reserved[4];
167 
168     uint32_t header_version;
169 
170     uint8_t cmdline[ANDR_BOOT_ARGS_SIZE + ANDR_BOOT_EXTRA_ARGS_SIZE];
171 } __attribute__((packed));
172 
173 struct vendor_boot_img_hdr_v34 {
174     /* Must be VENDOR_BOOT_MAGIC. */
175     uint8_t magic[VENDOR_BOOT_MAGIC_SIZE];
176 
177     /* Version of the vendor boot image header. */
178     uint32_t header_version;
179 
180     uint32_t page_size; /* flash page size we assume */
181 
182     uint32_t kernel_addr; /* physical load addr */
183     uint32_t ramdisk_addr; /* physical load addr */
184 
185     uint32_t vendor_ramdisk_size; /* size in bytes */
186 
187     uint8_t cmdline[VENDOR_BOOT_ARGS_SIZE];
188 
189     uint32_t tags_addr; /* physical addr for kernel tags (if required) */
190     uint8_t name[VENDOR_BOOT_NAME_SIZE]; /* asciiz product name */
191 
192     uint32_t header_size;
193 
194     uint32_t dtb_size; /* size in bytes for DTB image */
195     uint64_t dtb_addr; /* physical load address for DTB image */
196 
197     /* new for v4 */
198     uint32_t vendor_ramdisk_table_size; /* size in bytes for the vendor ramdisk table */
199     uint32_t vendor_ramdisk_table_entry_num; /* number of entries in the vendor ramdisk table */
200     uint32_t vendor_ramdisk_table_entry_size;
201     uint32_t vendor_bootconfig_size; /* size in bytes for bootconfig image */
202 } __attribute__((packed));
203 
204 struct vendor_ramdisk_table_entry_v4 {
205     uint32_t ramdisk_size; /* size in bytes for the ramdisk image */
206     uint32_t ramdisk_offset; /* offset to the ramdisk image in vendor ramdisk section */
207     uint32_t ramdisk_type; /* type of the ramdisk */
208     uint8_t ramdisk_name[VENDOR_RAMDISK_NAME_SIZE]; /* asciiz ramdisk name */
209 
210     // Hardware identifiers describing the board, soc or platform which this
211     // ramdisk is intended to be loaded on.
212     uint32_t board_id[VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE];
213 } __attribute__((packed));
214 
215 /* When the boot image header has a version of 4, the structure of the boot
216  * image is the same as version 3:
217  *
218  * +---------------------+
219  * | boot header         | 4096 bytes
220  * +---------------------+
221  * | kernel              | m pages
222  * +---------------------+
223  * | ramdisk             | n pages
224  * +---------------------+
225  *
226  * m = (kernel_size + 4096 - 1) / 4096
227  * n = (ramdisk_size + 4096 - 1) / 4096
228  *
229  * Note that in version 4 of the boot image header, page size is fixed at 4096
230  * bytes.
231  *
232  * The structure of the vendor boot image version 4, which is required to be
233  * present when a version 4 boot image is used, is as follows:
234  *
235  * +------------------------+
236  * | vendor boot header     | o pages
237  * +------------------------+
238  * | vendor ramdisk section | p pages
239  * +------------------------+
240  * | dtb                    | q pages
241  * +------------------------+
242  * | vendor ramdisk table   | r pages
243  * +------------------------+
244  * | bootconfig             | s pages
245  * +------------------------+
246  *
247  * o = (2124 + page_size - 1) / page_size
248  * p = (vendor_ramdisk_size + page_size - 1) / page_size
249  * q = (dtb_size + page_size - 1) / page_size
250  * r = (vendor_ramdisk_table_size + page_size - 1) / page_size
251  * s = (vendor_bootconfig_size + page_size - 1) / page_size
252  *
253  * Note that in version 4 of the vendor boot image, multiple vendor ramdisks can
254  * be included in the vendor boot image. The bootloader can select a subset of
255  * ramdisks to load at runtime. To help the bootloader select the ramdisks, each
256  * ramdisk is tagged with a type tag and a set of hardware identifiers
257  * describing the board, soc or platform that this ramdisk is intended for.
258  *
259  * The vendor ramdisk section is consist of multiple ramdisk images concatenated
260  * one after another, and vendor_ramdisk_size is the size of the section, which
261  * is the total size of all the ramdisks included in the vendor boot image.
262  *
263  * The vendor ramdisk table holds the size, offset, type, name and hardware
264  * identifiers of each ramdisk. The type field denotes the type of its content.
265  * The hardware identifiers are specified in the board_id field in each table
266  * entry. The board_id field is consist of a vector of unsigned integer words,
267  * and the encoding scheme is defined by the hardware vendor.
268  *
269  * For the different type of ramdisks, there are:
270  *    - VENDOR_RAMDISK_TYPE_NONE indicates the value is unspecified.
271  *    - VENDOR_RAMDISK_TYPE_PLATFORM ramdisk contains platform specific bits.
272  *    - VENDOR_RAMDISK_TYPE_RECOVERY ramdisk contains recovery resources.
273  *    - VENDOR_RAMDISK_TYPE_DLKM ramdisk contains dynamic loadable kernel
274  *      modules.
275  *
276  * Version 4 of the vendor boot image also adds a bootconfig section to the end
277  * of the image. This section contains Boot Configuration parameters known at
278  * build time. The bootloader is responsible for placing this section directly
279  * after the boot image ramdisk, followed by the bootconfig trailer, before
280  * entering the kernel.
281  *
282  * 0. all entities in the boot image are 4096-byte aligned in flash, all
283  *    entities in the vendor boot image are page_size (determined by the vendor
284  *    and specified in the vendor boot image header) aligned in flash
285  * 1. kernel, ramdisk, and DTB are required (size != 0)
286  * 2. load the kernel and DTB at the specified physical address (kernel_addr,
287  *    dtb_addr)
288  * 3. load the vendor ramdisks at ramdisk_addr
289  * 4. load the generic ramdisk immediately following the vendor ramdisk in
290  *    memory
291  * 5. load the vendor bootconfig immediately following the generic ramdisk. Add
292  *    additional bootconfig parameters followed by the bootconfig trailer.
293  * 6. set up registers for kernel entry as required by your architecture
294  * 7. if the platform has a second stage bootloader jump to it (must be
295  *    contained outside boot and vendor boot partitions), otherwise
296  *    jump to kernel_addr
297  *
298  * When a boot header is of version 0, the structure of boot image is as
299  * follows:
300  *
301  * +-----------------+
302  * | boot header     | 1 page
303  * +-----------------+
304  * | kernel          | n pages
305  * +-----------------+
306  * | ramdisk         | m pages
307  * +-----------------+
308  * | second stage    | o pages
309  * +-----------------+
310  *
311  * n = (kernel_size + page_size - 1) / page_size
312  * m = (ramdisk_size + page_size - 1) / page_size
313  * o = (second_size + page_size - 1) / page_size
314  *
315  * 0. all entities are page_size aligned in flash
316  * 1. kernel and ramdisk are required (size != 0)
317  * 2. second is optional (second_size == 0 -> no second)
318  * 3. load each element (kernel, ramdisk, second) at
319  *    the specified physical address (kernel_addr, etc)
320  * 4. prepare tags at tag_addr.  kernel_args[] is
321  *    appended to the kernel commandline in the tags.
322  * 5. r0 = 0, r1 = MACHINE_TYPE, r2 = tags_addr
323  * 6. if second_size != 0: jump to second_addr
324  *    else: jump to kernel_addr
325  */
326 
327 /* When the boot image header has a version of 2, the structure of the boot
328  * image is as follows:
329  *
330  * +---------------------+
331  * | boot header         | 1 page
332  * +---------------------+
333  * | kernel              | n pages
334  * +---------------------+
335  * | ramdisk             | m pages
336  * +---------------------+
337  * | second stage        | o pages
338  * +---------------------+
339  * | recovery dtbo/acpio | p pages
340  * +---------------------+
341  * | dtb                 | q pages
342  * +---------------------+
343 
344  * n = (kernel_size + page_size - 1) / page_size
345  * m = (ramdisk_size + page_size - 1) / page_size
346  * o = (second_size + page_size - 1) / page_size
347  * p = (recovery_dtbo_size + page_size - 1) / page_size
348  * q = (dtb_size + page_size - 1) / page_size
349  *
350  * 0. all entities are page_size aligned in flash
351  * 1. kernel, ramdisk and DTB are required (size != 0)
352  * 2. recovery_dtbo/recovery_acpio is required for recovery.img in non-A/B
353  *    devices(recovery_dtbo_size != 0)
354  * 3. second is optional (second_size == 0 -> no second)
355  * 4. load each element (kernel, ramdisk, second, dtb) at
356  *    the specified physical address (kernel_addr, etc)
357  * 5. If booting to recovery mode in a non-A/B device, extract recovery
358  *    dtbo/acpio and apply the correct set of overlays on the base device tree
359  *    depending on the hardware/product revision.
360  * 6. prepare tags at tag_addr.  kernel_args[] is
361  *    appended to the kernel commandline in the tags.
362  * 7. r0 = 0, r1 = MACHINE_TYPE, r2 = tags_addr
363  * 8. if second_size != 0: jump to second_addr
364  *    else: jump to kernel_addr
365  */
366 
367 /* When the boot image header has a version of 3, the structure of the boot
368  * image is as follows:
369  *
370  * +---------------------+
371  * | boot header         | 4096 bytes
372  * +---------------------+
373  * | kernel              | m pages
374  * +---------------------+
375  * | ramdisk             | n pages
376  * +---------------------+
377  *
378  * m = (kernel_size + 4096 - 1) / 4096
379  * n = (ramdisk_size + 4096 - 1) / 4096
380  *
381  * Note that in version 3 of the boot image header, page size is fixed at 4096 bytes.
382  *
383  * The structure of the vendor boot image (introduced with version 3 and
384  * required to be present when a v3 boot image is used) is as follows:
385  *
386  * +---------------------+
387  * | vendor boot header  | o pages
388  * +---------------------+
389  * | vendor ramdisk      | p pages
390  * +---------------------+
391  * | dtb                 | q pages
392  * +---------------------+
393  *
394  * o = (2112 + page_size - 1) / page_size
395  * p = (vendor_ramdisk_size + page_size - 1) / page_size
396  * q = (dtb_size + page_size - 1) / page_size
397  *
398  * 0. all entities in the boot image are 4096-byte aligned in flash, all
399  *    entities in the vendor boot image are page_size (determined by the vendor
400  *    and specified in the vendor boot image header) aligned in flash
401  * 1. kernel, ramdisk, vendor ramdisk, and DTB are required (size != 0)
402  * 2. load the kernel and DTB at the specified physical address (kernel_addr,
403  *    dtb_addr)
404  * 3. load the vendor ramdisk at ramdisk_addr
405  * 4. load the generic ramdisk immediately following the vendor ramdisk in
406  *    memory
407  * 5. set up registers for kernel entry as required by your architecture
408  * 6. if the platform has a second stage bootloader jump to it (must be
409  *    contained outside boot and vendor boot partitions), otherwise
410  *    jump to kernel_addr
411  */
412 
413 #endif
414