xref: /rk3399_rockchip-uboot/common/android_bootloader.c (revision 79283ba6e7dc3f688061585818d9476fc95e4067)
1 /*
2  * Copyright (C) 2016 The Android Open Source Project
3  *
4  * SPDX-License-Identifier: BSD-2-Clause
5  */
6 
7 #include <android_bootloader.h>
8 #include <android_bootloader_message.h>
9 #include <android_avb/avb_slot_verify.h>
10 #include <android_avb/avb_ops_user.h>
11 #include <android_avb/rk_avb_ops_user.h>
12 #include <android_image.h>
13 #include <android_ab.h>
14 #include <bootm.h>
15 #include <asm/arch/hotkey.h>
16 #include <cli.h>
17 #include <common.h>
18 #include <dt_table.h>
19 #include <image-android-dt.h>
20 #include <malloc.h>
21 #include <mp_boot.h>
22 #include <fdt_support.h>
23 #include <fs.h>
24 #include <boot_rkimg.h>
25 #include <attestation_key.h>
26 #include <keymaster.h>
27 #include <linux/libfdt_env.h>
28 #include <optee_include/OpteeClientInterface.h>
29 #include <bidram.h>
30 #include <console.h>
31 #include <sysmem.h>
32 
33 DECLARE_GLOBAL_DATA_PTR;
34 
35 int android_bootloader_message_load(
36 	struct blk_desc *dev_desc,
37 	const disk_partition_t *part_info,
38 	struct android_bootloader_message *message)
39 {
40 	ulong message_blocks = sizeof(struct android_bootloader_message) /
41 			       part_info->blksz;
42 	if (message_blocks > part_info->size) {
43 		printf("misc partition too small.\n");
44 		return -1;
45 	}
46 
47 	if (blk_dread(dev_desc, part_info->start + android_bcb_msg_sector_offset(),
48 		      message_blocks, message) != message_blocks) {
49 		printf("Could not read from misc partition\n");
50 		return -1;
51 	}
52 	debug("ANDROID: Loaded BCB, %lu blocks.\n", message_blocks);
53 	return 0;
54 }
55 
56 static int android_bootloader_message_write(
57 	struct blk_desc *dev_desc,
58 	const disk_partition_t *part_info,
59 	struct android_bootloader_message *message)
60 {
61 	ulong message_blocks = sizeof(struct android_bootloader_message) /
62 			       part_info->blksz;
63 
64 	if (message_blocks > part_info->size) {
65 		printf("misc partition too small.\n");
66 		return -1;
67 	}
68 
69 	if (blk_dwrite(dev_desc, part_info->start + android_bcb_msg_sector_offset(),
70 		       message_blocks, message) != message_blocks) {
71 		printf("Could not write to misc partition\n");
72 		return -1;
73 	}
74 	debug("ANDROID: Wrote new BCB, %lu blocks.\n", message_blocks);
75 	return 0;
76 }
77 
78 static enum android_boot_mode android_bootloader_load_and_clear_mode(
79 	struct blk_desc *dev_desc,
80 	const disk_partition_t *misc_part_info)
81 {
82 	struct android_bootloader_message bcb;
83 
84 #ifdef CONFIG_FASTBOOT
85 	char *bootloader_str;
86 
87 	/* Check for message from bootloader stored in RAM from a previous boot.
88 	 */
89 	bootloader_str = (char *)CONFIG_FASTBOOT_BUF_ADDR;
90 	if (!strcmp("reboot-bootloader", bootloader_str)) {
91 		bootloader_str[0] = '\0';
92 		return ANDROID_BOOT_MODE_BOOTLOADER;
93 	}
94 #endif
95 
96 	/* Check and update the BCB message if needed. */
97 	if (android_bootloader_message_load(dev_desc, misc_part_info, &bcb) <
98 	    0) {
99 		printf("WARNING: Unable to load the BCB.\n");
100 		return ANDROID_BOOT_MODE_NORMAL;
101 	}
102 
103 	if (!strcmp("bootonce-bootloader", bcb.command)) {
104 		/* Erase the message in the BCB since this value should be used
105 		 * only once.
106 		 */
107 		memset(bcb.command, 0, sizeof(bcb.command));
108 		android_bootloader_message_write(dev_desc, misc_part_info,
109 						 &bcb);
110 		return ANDROID_BOOT_MODE_BOOTLOADER;
111 	}
112 
113 	if (!strcmp("boot-recovery", bcb.command))
114 		return ANDROID_BOOT_MODE_RECOVERY;
115 
116 	if (!strcmp("boot-fastboot", bcb.command))
117 		return ANDROID_BOOT_MODE_RECOVERY;
118 
119 	return ANDROID_BOOT_MODE_NORMAL;
120 }
121 
122 int android_bcb_write(char *cmd)
123 {
124 	struct android_bootloader_message message = {0};
125 	disk_partition_t part_info;
126 	struct blk_desc *dev_desc;
127 	int ret;
128 
129 	if (!cmd)
130 		return -ENOMEM;
131 
132 	if (strlen(cmd) >= 32)
133 		return -ENOMEM;
134 
135 	dev_desc = rockchip_get_bootdev();
136 	if (!dev_desc) {
137 		printf("%s: dev_desc is NULL!\n", __func__);
138 		return -ENODEV;
139 	}
140 
141 	ret = part_get_info_by_name(dev_desc, ANDROID_PARTITION_MISC, &part_info);
142 	if (ret < 0) {
143 		printf("%s: Could not found misc partition, just run recovery\n",
144 		       __func__);
145 		return -ENODEV;
146 	}
147 
148 	strcpy(message.command, cmd);
149 	return android_bootloader_message_write(dev_desc, &part_info, &message);
150 }
151 
152 /**
153  * Return the reboot reason string for the passed boot mode.
154  *
155  * @param mode	The Android Boot mode.
156  * @return a pointer to the reboot reason string for mode.
157  */
158 static const char *android_boot_mode_str(enum android_boot_mode mode)
159 {
160 	switch (mode) {
161 	case ANDROID_BOOT_MODE_NORMAL:
162 		return "(none)";
163 	case ANDROID_BOOT_MODE_RECOVERY:
164 		return "recovery";
165 	case ANDROID_BOOT_MODE_BOOTLOADER:
166 		return "bootloader";
167 	}
168 	return NULL;
169 }
170 
171 static int android_bootloader_boot_bootloader(void)
172 {
173 	const char *fastboot_cmd = env_get("fastbootcmd");
174 
175 	if (fastboot_cmd == NULL) {
176 		printf("fastboot_cmd is null, run default fastboot_cmd!\n");
177 		fastboot_cmd = "fastboot usb 0";
178 	}
179 
180 	return run_command(fastboot_cmd, CMD_FLAG_ENV);
181 }
182 
183 #ifdef CONFIG_SUPPORT_OEM_DTB
184 static int android_bootloader_get_fdt(const char *part_name,
185 		const char *load_file_name)
186 {
187 	struct blk_desc *dev_desc;
188 	disk_partition_t part_info;
189 	char *fdt_addr = NULL;
190 	char dev_part[3] = {0};
191 	loff_t bytes = 0;
192 	loff_t pos = 0;
193 	loff_t len_read;
194 	unsigned long addr = 0;
195 	int part_num = -1;
196 	int ret;
197 
198 	dev_desc = rockchip_get_bootdev();
199 	if (!dev_desc) {
200 		printf("%s: dev_desc is NULL!\n", __func__);
201 		return -1;
202 	}
203 
204 	part_num = part_get_info_by_name(dev_desc, part_name, &part_info);
205 	if (part_num < 0) {
206 		printf("ANDROID: Could not find partition \"%s\"\n", part_name);
207 		return -1;
208 	}
209 
210 	snprintf(dev_part, ARRAY_SIZE(dev_part), ":%x", part_num);
211 	if (fs_set_blk_dev_with_part(dev_desc, part_num))
212 		return -1;
213 
214 	fdt_addr = env_get("fdt_addr_r");
215 	if (!fdt_addr) {
216 		printf("ANDROID: No Found FDT Load Address.\n");
217 		return -1;
218 	}
219 	addr = simple_strtoul(fdt_addr, NULL, 16);
220 
221 	ret = fs_read(load_file_name, addr, pos, bytes, &len_read);
222 	if (ret < 0)
223 		return -1;
224 
225 	return 0;
226 }
227 #endif
228 
229 /*
230  *   Test on RK3308 AARCH64 mode (Cortex A35 816 MHZ) boot with eMMC:
231  *
232  *   |-------------------------------------------------------------------|
233  *   | Format    |  Size(Byte) | Ratio | Decomp time(ms) | Boot time(ms) |
234  *   |-------------------------------------------------------------------|
235  *   | Image     | 7720968     |       |                 |     488       |
236  *   |-------------------------------------------------------------------|
237  *   | Image.lz4 | 4119448     | 53%   |       59        |     455       |
238  *   |-------------------------------------------------------------------|
239  *   | Image.lzo | 3858322     | 49%   |       141       |     536       |
240  *   |-------------------------------------------------------------------|
241  *   | Image.gz  | 3529108     | 45%   |       222       |     609       |
242  *   |-------------------------------------------------------------------|
243  *   | Image.bz2 | 3295914     | 42%   |       2940      |               |
244  *   |-------------------------------------------------------------------|
245  *   | Image.lzma| 2683750     | 34%   |                 |               |
246  *   |-------------------------------------------------------------------|
247  */
248 static int sysmem_alloc_uncomp_kernel(ulong andr_hdr,
249 				      ulong uncomp_kaddr, u32 comp)
250 {
251 	struct andr_img_hdr *hdr = (struct andr_img_hdr *)andr_hdr;
252 	ulong ksize, kaddr;
253 
254 	if (comp != IH_COMP_NONE) {
255 		/* Release compressed sysmem */
256 		kaddr = env_get_hex("kernel_addr_c", 0);
257 		if (!kaddr)
258 			kaddr = env_get_hex("kernel_addr_r", 0);
259 		kaddr -= hdr->page_size;
260 		if (sysmem_free((phys_addr_t)kaddr))
261 			return -EINVAL;
262 #ifdef CONFIG_SKIP_RELOCATE_UBOOT
263 		sysmem_free(CONFIG_SYS_TEXT_BASE);
264 #endif
265 		/*
266 		 * Use smaller Ratio to get larger estimated uncompress
267 		 * kernel size.
268 		 */
269 		if (comp == IH_COMP_ZIMAGE)
270 			ksize = hdr->kernel_size * 100 / 45;
271 		else if (comp == IH_COMP_LZ4)
272 			ksize = hdr->kernel_size * 100 / 50;
273 		else if (comp == IH_COMP_LZO)
274 			ksize = hdr->kernel_size * 100 / 45;
275 		else if (comp == IH_COMP_GZIP)
276 			ksize = hdr->kernel_size * 100 / 40;
277 		else if (comp == IH_COMP_BZIP2)
278 			ksize = hdr->kernel_size * 100 / 40;
279 		else if (comp == IH_COMP_LZMA)
280 			ksize = hdr->kernel_size * 100 / 30;
281 		else
282 			ksize = hdr->kernel_size;
283 
284 		kaddr = uncomp_kaddr;
285 		ksize = ALIGN(ksize, 512);
286 		if (!sysmem_alloc_base(MEM_UNCOMP_KERNEL,
287 				       (phys_addr_t)kaddr, ksize))
288 			return -ENOMEM;
289 	}
290 
291 	return 0;
292 }
293 
294 int android_bootloader_boot_kernel(unsigned long kernel_address)
295 {
296 	char *kernel_addr_r = env_get("kernel_addr_r");
297 	char *kernel_addr_c = env_get("kernel_addr_c");
298 	char *fdt_addr = env_get("fdt_addr_r");
299 	char kernel_addr_str[12];
300 	char comp_str[32] = {0};
301 	ulong comp_type;
302 	const char *comp_name[] = {
303 		[IH_COMP_NONE]  = "IMAGE",
304 		[IH_COMP_GZIP]  = "GZIP",
305 		[IH_COMP_BZIP2] = "BZIP2",
306 		[IH_COMP_LZMA]  = "LZMA",
307 		[IH_COMP_LZO]   = "LZO",
308 		[IH_COMP_LZ4]   = "LZ4",
309 		[IH_COMP_ZIMAGE]= "ZIMAGE",
310 	};
311 	char *bootm_args[] = {
312 		kernel_addr_str, kernel_addr_str, fdt_addr, NULL };
313 
314 	comp_type = env_get_ulong("os_comp", 10, 0);
315 	sprintf(kernel_addr_str, "0x%08lx", kernel_address);
316 
317 	if (comp_type != IH_COMP_NONE) {
318 		if (comp_type == IH_COMP_ZIMAGE &&
319 		    kernel_addr_r && !kernel_addr_c) {
320 			kernel_addr_c = kernel_addr_r;
321 			kernel_addr_r = __stringify(CONFIG_SYS_SDRAM_BASE);
322 		}
323 		snprintf(comp_str, 32, "%s%s%s",
324 			 "(Uncompress to ", kernel_addr_r, ")");
325 	}
326 
327 	printf("Booting %s kernel at %s%s with fdt at %s...\n\n\n",
328 	       comp_name[comp_type],
329 	       comp_type != IH_COMP_NONE ? kernel_addr_c : kernel_addr_r,
330 	       comp_str, fdt_addr);
331 
332 	hotkey_run(HK_SYSMEM);
333 
334 	/*
335 	 * Check whether there is enough space for uncompress kernel,
336 	 * Actually, here only gives a sysmem warning message when failed
337 	 * but never return -1.
338 	 */
339 	if (sysmem_alloc_uncomp_kernel(kernel_address,
340 				       simple_strtoul(kernel_addr_r, NULL, 16),
341 				       comp_type))
342 		return -1;
343 
344 	return do_bootm_states(NULL, 0, ARRAY_SIZE(bootm_args), bootm_args,
345 		BOOTM_STATE_START |
346 		BOOTM_STATE_FINDOS | BOOTM_STATE_FINDOTHER |
347 		BOOTM_STATE_LOADOS |
348 #ifdef CONFIG_SYS_BOOT_RAMDISK_HIGH
349 		BOOTM_STATE_RAMDISK |
350 #endif
351 		BOOTM_STATE_OS_PREP | BOOTM_STATE_OS_FAKE_GO |
352 		BOOTM_STATE_OS_GO, &images, 1);
353 }
354 
355 static char *strjoin(const char **chunks, char separator)
356 {
357 	int len, joined_len = 0;
358 	char *ret, *current;
359 	const char **p;
360 
361 	for (p = chunks; *p; p++)
362 		joined_len += strlen(*p) + 1;
363 
364 	if (!joined_len) {
365 		ret = malloc(1);
366 		if (ret)
367 			ret[0] = '\0';
368 		return ret;
369 	}
370 
371 	ret = malloc(joined_len);
372 	current = ret;
373 	if (!ret)
374 		return ret;
375 
376 	for (p = chunks; *p; p++) {
377 		len = strlen(*p);
378 		memcpy(current, *p, len);
379 		current += len;
380 		*current = separator;
381 		current++;
382 	}
383 	/* Replace the last separator by a \0. */
384 	current[-1] = '\0';
385 	return ret;
386 }
387 
388 /** android_assemble_cmdline - Assemble the command line to pass to the kernel
389  * @return a newly allocated string
390  */
391 char *android_assemble_cmdline(const char *slot_suffix,
392 				      const char *extra_args)
393 {
394 	const char *cmdline_chunks[16];
395 	const char **current_chunk = cmdline_chunks;
396 	char *env_cmdline, *cmdline, *rootdev_input, *serialno;
397 	char *allocated_suffix = NULL;
398 	char *allocated_serialno = NULL;
399 	char *allocated_rootdev = NULL;
400 	unsigned long rootdev_len;
401 
402 	env_cmdline = env_get("bootargs");
403 	if (env_cmdline)
404 		*(current_chunk++) = env_cmdline;
405 
406 	/* The |slot_suffix| needs to be passed to the kernel to know what
407 	 * slot to boot from.
408 	 */
409 #ifdef CONFIG_ANDROID_AB
410 	if (slot_suffix) {
411 		allocated_suffix = malloc(strlen(ANDROID_ARG_SLOT_SUFFIX) +
412 					  strlen(slot_suffix) + 1);
413 		memset(allocated_suffix, 0, strlen(ANDROID_ARG_SLOT_SUFFIX)
414 		       + strlen(slot_suffix) + 1);
415 		strcpy(allocated_suffix, ANDROID_ARG_SLOT_SUFFIX);
416 		strcat(allocated_suffix, slot_suffix);
417 		*(current_chunk++) = allocated_suffix;
418 	}
419 #endif
420 	serialno = env_get("serial#");
421 	if (serialno) {
422 		allocated_serialno = malloc(strlen(ANDROID_ARG_SERIALNO) +
423 					  strlen(serialno) + 1);
424 		memset(allocated_serialno, 0, strlen(ANDROID_ARG_SERIALNO) +
425 				strlen(serialno) + 1);
426 		strcpy(allocated_serialno, ANDROID_ARG_SERIALNO);
427 		strcat(allocated_serialno, serialno);
428 		*(current_chunk++) = allocated_serialno;
429 	}
430 
431 	rootdev_input = env_get("android_rootdev");
432 	if (rootdev_input) {
433 		rootdev_len = strlen(ANDROID_ARG_ROOT) + CONFIG_SYS_CBSIZE + 1;
434 		allocated_rootdev = malloc(rootdev_len);
435 		strcpy(allocated_rootdev, ANDROID_ARG_ROOT);
436 		cli_simple_process_macros(rootdev_input,
437 					  allocated_rootdev +
438 					  strlen(ANDROID_ARG_ROOT));
439 		/* Make sure that the string is null-terminated since the
440 		 * previous could not copy to the end of the input string if it
441 		 * is too big.
442 		 */
443 		allocated_rootdev[rootdev_len - 1] = '\0';
444 		*(current_chunk++) = allocated_rootdev;
445 	}
446 
447 	if (extra_args)
448 		*(current_chunk++) = extra_args;
449 
450 	*(current_chunk++) = NULL;
451 	cmdline = strjoin(cmdline_chunks, ' ');
452 	free(allocated_suffix);
453 	free(allocated_rootdev);
454 	return cmdline;
455 }
456 
457 #ifdef CONFIG_ANDROID_AVB
458 static void slot_set_unbootable(AvbABSlotData* slot)
459 {
460 	slot->priority = 0;
461 	slot->tries_remaining = 0;
462 	slot->successful_boot = 0;
463 }
464 
465 static char *join_str(const char *a, const char *b)
466 {
467 	size_t len = strlen(a) + strlen(b) + 1 /* null term */;
468 	char *ret = (char *)malloc(len);
469 
470 	if (!ret) {
471 		debug("failed to alloc %zu\n", len);
472 		return NULL;
473 	}
474 	strcpy(ret, a);
475 	strcat(ret, b);
476 
477 	return ret;
478 }
479 
480 static size_t get_partition_size(AvbOps *ops, char *name,
481 				 const char *slot_suffix)
482 {
483 	char *partition_name = join_str(name, slot_suffix);
484 	uint64_t size = 0;
485 	AvbIOResult res;
486 
487 	if (partition_name == NULL)
488 		goto bail;
489 
490 	res = ops->get_size_of_partition(ops, partition_name, &size);
491 	if (res != AVB_IO_RESULT_OK && res != AVB_IO_RESULT_ERROR_NO_SUCH_PARTITION)
492 		size = 0;
493 bail:
494 	if (partition_name)
495 		free(partition_name);
496 
497 	return size;
498 }
499 
500 static struct AvbOpsData preload_user_data;
501 
502 static int avb_image_distribute_prepare(AvbSlotVerifyData *slot_data,
503 					AvbOps *ops, char *slot_suffix)
504 {
505 	struct AvbOpsData *data = (struct AvbOpsData *)(ops->user_data);
506 	size_t vendor_boot_size;
507 	size_t init_boot_size;
508 	size_t resource_size;
509 	size_t boot_size;
510 	void *image_buf;
511 
512 	boot_size = max(get_partition_size(ops, ANDROID_PARTITION_BOOT, slot_suffix),
513 		get_partition_size(ops, ANDROID_PARTITION_RECOVERY, slot_suffix));
514 	init_boot_size = get_partition_size(ops,
515 				ANDROID_PARTITION_INIT_BOOT, slot_suffix);
516 	vendor_boot_size = get_partition_size(ops,
517 				ANDROID_PARTITION_VENDOR_BOOT, slot_suffix);
518 	resource_size = get_partition_size(ops,
519 				ANDROID_PARTITION_RESOURCE, slot_suffix);
520 	image_buf = sysmem_alloc(MEM_AVB_ANDROID,
521 				 boot_size + init_boot_size +
522 				 vendor_boot_size + resource_size);
523 	if (!image_buf) {
524 		printf("avb: sysmem alloc failed\n");
525 		return -ENOMEM;
526 	}
527 
528 	/* layout: | boot/recovery | vendor_boot | init_boot | resource | */
529 	data->slot_suffix = slot_suffix;
530 	data->boot.addr = image_buf;
531 	data->boot.size = 0;
532 	data->vendor_boot.addr = data->boot.addr + boot_size;
533 	data->vendor_boot.size = 0;
534 	data->init_boot.addr = data->vendor_boot.addr + vendor_boot_size;
535 	data->init_boot.size = 0;
536 	data->resource.addr = data->init_boot.addr + init_boot_size;
537 	data->resource.size = 0;
538 
539 	return 0;
540 }
541 
542 static int avb_image_distribute_finish(AvbSlotVerifyData *slot_data,
543 				       AvbSlotVerifyFlags flags,
544 				       ulong *load_address)
545 {
546 	struct andr_img_hdr *hdr;
547 	ulong load_addr = *load_address;
548 	void *vendor_boot_hdr = NULL;
549 	void *init_boot_hdr = NULL;
550 	void *boot_hdr = NULL;
551 	char *part_name;
552 	int i, ret;
553 
554 	for (i = 0; i < slot_data->num_loaded_partitions; i++) {
555 		part_name = slot_data->loaded_partitions[i].partition_name;
556 		if (!strncmp(ANDROID_PARTITION_BOOT, part_name, 4) ||
557 		    !strncmp(ANDROID_PARTITION_RECOVERY, part_name, 8)) {
558 			boot_hdr = slot_data->loaded_partitions[i].data;
559 		} else if (!strncmp(ANDROID_PARTITION_INIT_BOOT, part_name, 9)) {
560 			init_boot_hdr = slot_data->loaded_partitions[i].data;
561 		} else if (!strncmp(ANDROID_PARTITION_VENDOR_BOOT, part_name, 11)) {
562 			vendor_boot_hdr = slot_data->loaded_partitions[i].data;
563 		}
564 	}
565 
566 	/*
567 	 *		populate boot_img_hdr_v34
568 	 *
569 	 * If allow verification error: the images are loaded by
570 	 * ops->get_preloaded_partition() which auto populates
571 	 * boot_img_hdr_v34.
572 	 *
573 	 * If not allow verification error: the images are full loaded
574 	 * by ops->read_from_partition() which doesn't populate
575 	 * boot_img_hdr_v34, we need to fix it here for bootm and
576 	 */
577 
578 	hdr = boot_hdr;
579 	if (hdr->header_version >= 3 &&
580 	    !(flags & AVB_SLOT_VERIFY_FLAGS_ALLOW_VERIFICATION_ERROR)) {
581 		hdr = malloc(sizeof(struct andr_img_hdr));
582 		if (!hdr)
583 			return -ENOMEM;
584 
585 		ret = populate_boot_info(boot_hdr, vendor_boot_hdr,
586 					 init_boot_hdr, hdr, true);
587 		if (ret < 0) {
588 			printf("avb: populate boot info failed, ret=%d\n", ret);
589 			return ret;
590 		}
591 		memcpy(boot_hdr, hdr, sizeof(*hdr));
592 	}
593 
594 	/* distribute ! */
595 	load_addr -= hdr->page_size;
596 	if (android_image_memcpy_separate(boot_hdr, &load_addr)) {
597 		printf("Failed to separate copy android image\n");
598 		return AVB_SLOT_VERIFY_RESULT_ERROR_IO;
599 	}
600 
601 	*load_address = load_addr;
602 
603 	return 0;
604 }
605 
606 int android_image_verify_resource(const char *boot_part, ulong *resc_buf)
607 {
608 	const char *requested_partitions[] = {
609 		NULL,
610 		NULL,
611 	};
612 	struct AvbOpsData *data;
613 	uint8_t unlocked = true;
614 	AvbOps *ops;
615 	AvbSlotVerifyFlags flags;
616 	AvbSlotVerifyData *slot_data = {NULL};
617 	AvbSlotVerifyResult verify_result;
618 	char slot_suffix[3] = {0};
619 	char *part_name;
620 	void *image_buf = NULL;
621 	int retry_no_vbmeta_partition = 1;
622 	int i, ret;
623 
624 	ops = avb_ops_user_new();
625 	if (ops == NULL) {
626 		printf("avb_ops_user_new() failed!\n");
627 		return -AVB_SLOT_VERIFY_RESULT_ERROR_OOM;
628 	}
629 
630 	if (ops->read_is_device_unlocked(ops, (bool *)&unlocked) != AVB_IO_RESULT_OK)
631 		printf("Error determining whether device is unlocked.\n");
632 
633 	printf("Device is: %s\n", (unlocked & LOCK_MASK)? "UNLOCKED" : "LOCKED");
634 
635 	if (unlocked & LOCK_MASK) {
636 		*resc_buf = 0;
637 		return 0;
638 	}
639 
640 	flags = AVB_SLOT_VERIFY_FLAGS_NONE;
641 	if (strcmp(boot_part, ANDROID_PARTITION_RECOVERY) == 0)
642 		flags |= AVB_SLOT_VERIFY_FLAGS_NO_VBMETA_PARTITION;
643 
644 #ifdef CONFIG_ANDROID_AB
645 	part_name = strdup(boot_part);
646 	*(part_name + strlen(boot_part) - 2) = '\0';
647 	requested_partitions[0] = part_name;
648 
649 	ret = rk_avb_get_current_slot(slot_suffix);
650 	if (ret) {
651 		printf("Failed to get slot suffix, ret=%d\n", ret);
652 		return ret;
653 	}
654 #else
655 	requested_partitions[0] = boot_part;
656 #endif
657 	data = (struct AvbOpsData *)(ops->user_data);
658 	ret = avb_image_distribute_prepare(slot_data, ops, slot_suffix);
659 	if (ret) {
660 		printf("avb image distribute prepare failed %d\n", ret);
661 		return ret;
662 	}
663 
664 retry_verify:
665 	verify_result =
666 	avb_slot_verify(ops,
667 			requested_partitions,
668 			slot_suffix,
669 			flags,
670 			AVB_HASHTREE_ERROR_MODE_RESTART,
671 			&slot_data);
672 	if (verify_result != AVB_SLOT_VERIFY_RESULT_OK &&
673 	    verify_result != AVB_SLOT_VERIFY_RESULT_ERROR_PUBLIC_KEY_REJECTED) {
674 		if (retry_no_vbmeta_partition && strcmp(boot_part, ANDROID_PARTITION_RECOVERY) == 0) {
675 			printf("Verify recovery with vbmeta.\n");
676 			flags &= ~AVB_SLOT_VERIFY_FLAGS_NO_VBMETA_PARTITION;
677 			retry_no_vbmeta_partition = 0;
678 			goto retry_verify;
679 		}
680 	}
681 
682 	if (verify_result != AVB_SLOT_VERIFY_RESULT_OK || !slot_data) {
683 		sysmem_free((ulong)data->boot.addr);
684 		return verify_result;
685 	}
686 
687 	for (i = 0; i < slot_data->num_loaded_partitions; i++) {
688 		part_name = slot_data->loaded_partitions[i].partition_name;
689 		if (!strncmp(ANDROID_PARTITION_RESOURCE, part_name, 8)) {
690 			image_buf = slot_data->loaded_partitions[i].data;
691 			break;
692 		} else if (!strncmp(ANDROID_PARTITION_BOOT, part_name, 4) ||
693 			   !strncmp(ANDROID_PARTITION_RECOVERY, part_name, 8)) {
694 			struct andr_img_hdr *hdr;
695 
696 			hdr = (void *)slot_data->loaded_partitions[i].data;
697 			if (android_image_check_header(hdr))
698 				continue;
699 
700 			if (hdr->header_version <= 2) {
701 				image_buf = (void *)hdr + hdr->page_size +
702 					ALIGN(hdr->kernel_size, hdr->page_size) +
703 					ALIGN(hdr->ramdisk_size, hdr->page_size);
704 				break;
705 			}
706 		}
707 	}
708 
709 	if (image_buf) {
710 		memcpy((char *)&preload_user_data, (char *)data, sizeof(*data));
711 		*resc_buf = (ulong)image_buf;
712 	}
713 
714 	return 0;
715 }
716 
717 /*
718  *		AVB Policy.
719  *
720  * == avb with unlock:
721  * Don't process hash verify.
722  * Go pre-loaded path: Loading vendor_boot and init_boot
723  * directly to where they should be, while loading the
724  * boot/recovery. The boot message tells like:
725  * ···
726  * preloaded: distribute image from 'boot_a'
727  * preloaded: distribute image from 'init_boot_a'
728  * preloaded: distribute image from 'vendor_boot_a'
729  * ···
730  *
731  * == avb with lock:
732  * Process hash verify.
733  * Go pre-loaded path: Loading full vendor_boot, init_boot and
734  * boot/recovery one by one to verify, and distributing them to
735  * where they should be by memcpy at last.
736  *
737  * The three images share a large memory buffer that allocated
738  * by sysmem_alloc(), it locate at high memory address that
739  * just lower than SP bottom. The boot message tells like:
740  * ···
741  * preloaded: full image from 'boot_a' at 0xe47f90c0 - 0xe7a4b0c0
742  * preloaded: full image from 'init_boot_a' at 0xeaff90c0 - 0xeb2950c0
743  * preloaded: full image from 'vendor_boot_a' at 0xe87f90c0 - 0xe9f6e0c0
744  * ···
745  */
746 static AvbSlotVerifyResult android_slot_verify(char *boot_partname,
747 			       unsigned long *android_load_address,
748 			       char *slot_suffix)
749 {
750 	const char *requested_partitions[] = {
751 		boot_partname,
752 		NULL,
753 		NULL,
754 		NULL,
755 	};
756 	struct AvbOpsData *data;
757 	struct blk_desc *dev_desc;
758 	struct andr_img_hdr *hdr;
759 	disk_partition_t part_info;
760 	uint8_t unlocked = true;
761 	AvbOps *ops;
762 	AvbSlotVerifyFlags flags;
763 	AvbSlotVerifyData *slot_data = {NULL};
764 	AvbSlotVerifyResult verify_result;
765 	AvbABData ab_data, ab_data_orig;
766 	size_t slot_index_to_boot = 0;
767 	char verify_state[38] = {0};
768 	char can_boot = 1;
769 	char retry_no_vbmeta_partition = 1;
770 	unsigned long load_address = *android_load_address;
771 	int ret;
772 
773 	dev_desc = rockchip_get_bootdev();
774 	if (!dev_desc)
775 		return AVB_IO_RESULT_ERROR_IO;
776 
777 	if (part_get_info_by_name(dev_desc, boot_partname, &part_info) < 0) {
778 		printf("Could not find \"%s\" partition\n", boot_partname);
779 		return AVB_IO_RESULT_ERROR_NO_SUCH_PARTITION;
780 	}
781 
782 	hdr = populate_andr_img_hdr(dev_desc, &part_info);
783 	if (!hdr) {
784 		printf("No valid android hdr\n");
785 		return AVB_IO_RESULT_ERROR_NO_SUCH_VALUE;
786 	}
787 
788 	if (hdr->header_version >= 4) {
789 		requested_partitions[1] = ANDROID_PARTITION_VENDOR_BOOT;
790 		if (((hdr->os_version >> 25) & 0x7f) >= 13)
791 			requested_partitions[2] = ANDROID_PARTITION_INIT_BOOT;
792 	}
793 
794 	ops = avb_ops_user_new();
795 	if (ops == NULL) {
796 		printf("avb_ops_user_new() failed!\n");
797 		return AVB_SLOT_VERIFY_RESULT_ERROR_OOM;
798 	}
799 
800 	if (ops->read_is_device_unlocked(ops, (bool *)&unlocked) != AVB_IO_RESULT_OK)
801 		printf("Error determining whether device is unlocked.\n");
802 
803 	printf("read_is_device_unlocked() ops returned that device is %s\n",
804 	       (unlocked & LOCK_MASK)? "UNLOCKED" : "LOCKED");
805 
806 	flags = AVB_SLOT_VERIFY_FLAGS_NONE;
807 	if (unlocked & LOCK_MASK)
808 		flags |= AVB_SLOT_VERIFY_FLAGS_ALLOW_VERIFICATION_ERROR;
809 
810 	if (load_metadata(ops->ab_ops, &ab_data, &ab_data_orig)) {
811 		printf("Can not load metadata\n");
812 		return AVB_SLOT_VERIFY_RESULT_ERROR_IO;
813 	}
814 
815 	if (!strncmp(slot_suffix, "_a", 2))
816 		slot_index_to_boot = 0;
817 	else if (!strncmp(slot_suffix, "_b", 2))
818 		slot_index_to_boot = 1;
819 	else
820 		slot_index_to_boot = 0;
821 
822 	if (strcmp(boot_partname, ANDROID_PARTITION_RECOVERY) == 0)
823 		flags |= AVB_SLOT_VERIFY_FLAGS_NO_VBMETA_PARTITION;
824 
825 #ifdef CONFIG_MP_BOOT
826 	preload_user_data.boot.addr = (void *)mpb_post(1);
827 	preload_user_data.boot.size = (size_t)mpb_post(2);
828 #endif
829 
830 	/*
831 	 * Handle the case: "avb lock + (vbus = 0) + recovery key pressed".
832 	 * Check whether required boot_partname is same as preload boot_partition.
833 	 */
834 	if (preload_user_data.boot_partition && strcmp(preload_user_data.boot_partition, boot_partname))
835 		preload_user_data.boot.addr = NULL;
836 
837 	/* use preload one if available */
838 	if (preload_user_data.boot.addr) {
839 		data = (struct AvbOpsData *)(ops->user_data);
840 
841 		data->slot_suffix = slot_suffix;
842 		data->boot = preload_user_data.boot;
843 		data->vendor_boot = preload_user_data.vendor_boot;
844 		data->init_boot = preload_user_data.init_boot;
845 		data->resource = preload_user_data.resource;
846 	} else {
847 		ret = avb_image_distribute_prepare(slot_data, ops, slot_suffix);
848 		if (ret < 0) {
849 			printf("avb image distribute prepare failed %d\n", ret);
850 			return AVB_SLOT_VERIFY_RESULT_ERROR_OOM;
851 		}
852 	}
853 
854 retry_verify:
855 	verify_result =
856 	avb_slot_verify(ops,
857 			requested_partitions,
858 			slot_suffix,
859 			flags,
860 			AVB_HASHTREE_ERROR_MODE_RESTART,
861 			&slot_data);
862 	if (verify_result != AVB_SLOT_VERIFY_RESULT_OK &&
863 	    verify_result != AVB_SLOT_VERIFY_RESULT_ERROR_PUBLIC_KEY_REJECTED) {
864 		if (retry_no_vbmeta_partition && strcmp(boot_partname, ANDROID_PARTITION_RECOVERY) == 0) {
865 			printf("Verify recovery with vbmeta.\n");
866 			flags &= ~AVB_SLOT_VERIFY_FLAGS_NO_VBMETA_PARTITION;
867 			retry_no_vbmeta_partition = 0;
868 			goto retry_verify;
869 		}
870 	}
871 
872 	strcat(verify_state, ANDROID_VERIFY_STATE);
873 	switch (verify_result) {
874 	case AVB_SLOT_VERIFY_RESULT_OK:
875 		if (unlocked & LOCK_MASK)
876 			strcat(verify_state, "orange");
877 		else
878 			strcat(verify_state, "green");
879 		break;
880 	case AVB_SLOT_VERIFY_RESULT_ERROR_PUBLIC_KEY_REJECTED:
881 		if (unlocked & LOCK_MASK)
882 			strcat(verify_state, "orange");
883 		else
884 			strcat(verify_state, "yellow");
885 		break;
886 	case AVB_SLOT_VERIFY_RESULT_ERROR_OOM:
887 	case AVB_SLOT_VERIFY_RESULT_ERROR_IO:
888 	case AVB_SLOT_VERIFY_RESULT_ERROR_INVALID_METADATA:
889 	case AVB_SLOT_VERIFY_RESULT_ERROR_UNSUPPORTED_VERSION:
890 	case AVB_SLOT_VERIFY_RESULT_ERROR_VERIFICATION:
891 	case AVB_SLOT_VERIFY_RESULT_ERROR_ROLLBACK_INDEX:
892 	default:
893 		if (unlocked & LOCK_MASK)
894 			strcat(verify_state, "orange");
895 		else
896 			strcat(verify_state, "red");
897 		break;
898 	}
899 
900 	if (!slot_data) {
901 		can_boot = 0;
902 		goto out;
903 	}
904 
905 	if (verify_result == AVB_SLOT_VERIFY_RESULT_OK ||
906 	    verify_result == AVB_SLOT_VERIFY_RESULT_ERROR_PUBLIC_KEY_REJECTED ||
907 	    (unlocked & LOCK_MASK)) {
908 		int len = 0;
909 		char *bootargs, *newbootargs;
910 #ifdef CONFIG_ANDROID_AVB_ROLLBACK_INDEX
911 		if (rk_avb_update_stored_rollback_indexes_for_slot(ops, slot_data))
912 			printf("Fail to update the rollback indexes.\n");
913 #endif
914 		if (slot_data->cmdline) {
915 			debug("Kernel command line: %s\n", slot_data->cmdline);
916 			len += strlen(slot_data->cmdline);
917 		}
918 
919 		bootargs = env_get("bootargs");
920 		if (bootargs)
921 			len += strlen(bootargs);
922 
923 		newbootargs = malloc(len + 2);
924 
925 		if (!newbootargs) {
926 			puts("Error: malloc in android_slot_verify failed!\n");
927 			return AVB_SLOT_VERIFY_RESULT_ERROR_OOM;
928 		}
929 		*newbootargs = '\0';
930 
931 		if (bootargs) {
932 			strcpy(newbootargs, bootargs);
933 			strcat(newbootargs, " ");
934 		}
935 		if (slot_data->cmdline)
936 			strcat(newbootargs, slot_data->cmdline);
937 		env_set("bootargs", newbootargs);
938 
939 		/* if need, distribute full image to where they should be */
940 		ret = avb_image_distribute_finish(slot_data, flags, &load_address);
941 		if (ret) {
942 			printf("avb image distribute finish failed %d\n", ret);
943 			return ret;
944 		}
945 		*android_load_address = load_address;
946 	} else {
947 		slot_set_unbootable(&ab_data.slots[slot_index_to_boot]);
948 	}
949 
950 out:
951 	env_update("bootargs", verify_state);
952 	if (save_metadata_if_changed(ops->ab_ops, &ab_data, &ab_data_orig)) {
953 		printf("Can not save metadata\n");
954 		verify_result = AVB_SLOT_VERIFY_RESULT_ERROR_IO;
955 	}
956 
957 	if (slot_data != NULL)
958 		avb_slot_verify_data_free(slot_data);
959 
960 	if ((unlocked & LOCK_MASK) && can_boot)
961 		return 0;
962 	else
963 		return verify_result;
964 }
965 #endif
966 
967 #if defined(CONFIG_OF_LIBFDT_OVERLAY)
968 
969 /*
970  * Default return index 0.
971  */
972 __weak int board_select_fdt_index(ulong dt_table_hdr)
973 {
974 /*
975  * User can use "dt_for_each_entry(entry, hdr, idx)" to iterate
976  * over all dt entry of DT image and pick up which they want.
977  *
978  * Example:
979  *	struct dt_table_entry *entry;
980  *	int index;
981  *
982  *	dt_for_each_entry(entry, dt_table_hdr, index) {
983  *
984  *		.... (use entry)
985  *	}
986  *
987  *	return index;
988  */
989 	return 0;
990 }
991 
992 static int android_get_dtbo(ulong *fdt_dtbo,
993 			    const struct andr_img_hdr *hdr,
994 			    int *index, const char *part_dtbo)
995 {
996 	struct dt_table_header *dt_hdr = NULL;
997 	struct blk_desc *dev_desc;
998 	disk_partition_t part_info;
999 	u32 blk_offset, blk_cnt;
1000 	void *buf;
1001 	ulong e_addr;
1002 	u32 e_size;
1003 	int e_idx;
1004 	int ret;
1005 
1006 	/* Get partition info */
1007 	dev_desc = rockchip_get_bootdev();
1008 	if (!dev_desc)
1009 		return -ENODEV;
1010 
1011 	ret = part_get_info_by_name(dev_desc, part_dtbo, &part_info);
1012 	if (ret < 0) {
1013 		printf("No %s partition, ret=%d\n", part_dtbo, ret);
1014 		return ret;
1015 	}
1016 
1017 	/* Check dt table header */
1018 	if (!strcmp(part_dtbo, PART_RECOVERY))
1019 		blk_offset = part_info.start +
1020 			     (hdr->recovery_dtbo_offset / part_info.blksz);
1021 	else
1022 		blk_offset = part_info.start;
1023 
1024 	dt_hdr = memalign(ARCH_DMA_MINALIGN, part_info.blksz);
1025 	if (!dt_hdr)
1026 		return -ENOMEM;
1027 
1028 	ret = blk_dread(dev_desc, blk_offset, 1, dt_hdr);
1029 	if (ret != 1)
1030 		goto out1;
1031 
1032 	if (!android_dt_check_header((ulong)dt_hdr)) {
1033 		printf("DTBO: invalid dt table header: 0x%x\n", dt_hdr->magic);
1034 		ret = -EINVAL;
1035 		goto out1;
1036 	}
1037 
1038 #ifdef DEBUG
1039 	android_dt_print_contents((ulong)dt_hdr);
1040 #endif
1041 
1042 	blk_cnt = DIV_ROUND_UP(fdt32_to_cpu(dt_hdr->total_size),
1043 			       part_info.blksz);
1044 	/* Read all DT Image */
1045 	buf = memalign(ARCH_DMA_MINALIGN, part_info.blksz * blk_cnt);
1046 	if (!buf) {
1047 		ret = -ENOMEM;
1048 		goto out1;
1049 	}
1050 
1051 	ret = blk_dread(dev_desc, blk_offset, blk_cnt, buf);
1052 	if (ret != blk_cnt)
1053 		goto out2;
1054 
1055 	e_idx = board_select_fdt_index((ulong)buf);
1056 	if (e_idx < 0) {
1057 		printf("%s: failed to select board fdt index\n", __func__);
1058 		ret = -EINVAL;
1059 		goto out2;
1060 	}
1061 
1062 	ret = android_dt_get_fdt_by_index((ulong)buf, e_idx, &e_addr, &e_size);
1063 	if (!ret) {
1064 		printf("%s: failed to get fdt, index=%d\n", __func__, e_idx);
1065 		ret = -EINVAL;
1066 		goto out2;
1067 	}
1068 
1069 	if (fdt_dtbo)
1070 		*fdt_dtbo = e_addr;
1071 	if (index)
1072 		*index = e_idx;
1073 
1074 	free(dt_hdr);
1075 	debug("ANDROID: Loading dt entry to 0x%lx size 0x%x idx %d from \"%s\" part\n",
1076 	      e_addr, e_size, e_idx, part_dtbo);
1077 
1078 	return 0;
1079 
1080 out2:
1081 	free(buf);
1082 out1:
1083 	free(dt_hdr);
1084 
1085 	return ret;
1086 }
1087 
1088 int android_fdt_overlay_apply(void *fdt_addr)
1089 {
1090 	struct andr_img_hdr *hdr;
1091 	struct blk_desc *dev_desc;
1092 	const char *part_boot = PART_BOOT;
1093 	disk_partition_t part_info;
1094 	char *fdt_backup;
1095 	char *part_dtbo = PART_DTBO;
1096 	char buf[32] = {0};
1097 	ulong fdt_dtbo = -1;
1098 	u32 totalsize;
1099 	int index = -1;
1100 	int ret;
1101 
1102 	if (rockchip_get_boot_mode() == BOOT_MODE_RECOVERY) {
1103 #ifdef CONFIG_ANDROID_AB
1104 		bool can_find_recovery;
1105 
1106 		can_find_recovery = ab_can_find_recovery_part();
1107 		part_boot = can_find_recovery ? PART_RECOVERY : PART_BOOT;
1108 		part_dtbo = can_find_recovery ? PART_RECOVERY : PART_DTBO;
1109 #else
1110 		part_boot = PART_RECOVERY;
1111 		part_dtbo = PART_RECOVERY;
1112 #endif
1113 	}
1114 
1115 	dev_desc = rockchip_get_bootdev();
1116 	if (!dev_desc)
1117 		return -ENODEV;
1118 
1119 	ret = part_get_info_by_name(dev_desc, part_boot, &part_info);
1120 	if (ret < 0)
1121 		return ret;
1122 
1123 	hdr = populate_andr_img_hdr(dev_desc, &part_info);
1124 	if (!hdr)
1125 		return -EINVAL;
1126 #ifdef DEBUG
1127 	android_print_contents(hdr);
1128 #endif
1129 
1130 	/*
1131 	 * Google requires a/b system mandory from Android Header v3 for
1132 	 * google authentication, that means there is not recovery.
1133 	 *
1134 	 * But for the products that don't care about google authentication,
1135 	 * it's not mandory to use a/b system. So that we use the solution:
1136 	 * boot.img(v3+) with recovery(v2).
1137 	 *
1138 	 * [recovery_dtbo fields]
1139 	 *	recovery.img with boot_img_hdr_v1,2:  supported
1140 	 *	recovery.img with boot_img_hdr_v0,3+: illegal
1141 	 */
1142 	if ((hdr->header_version == 0) ||
1143 	    (hdr->header_version >= 3 && !strcmp(part_boot, PART_RECOVERY)))
1144 		goto out;
1145 
1146 	ret = android_get_dtbo(&fdt_dtbo, (void *)hdr, &index, part_dtbo);
1147 	if (!ret) {
1148 		phys_size_t fdt_size;
1149 
1150 		/* Must incease size before overlay */
1151 		fdt_size = fdt_totalsize((void *)fdt_addr) +
1152 				fdt_totalsize((void *)fdt_dtbo);
1153 		if (sysmem_free((phys_addr_t)fdt_addr))
1154 			goto out;
1155 
1156 		if (!sysmem_alloc_base(MEM_FDT_DTBO,
1157 				       (phys_addr_t)fdt_addr,
1158 					fdt_size + CONFIG_SYS_FDT_PAD))
1159 			goto out;
1160 		/*
1161 		 * Backup main fdt in case of being destroyed by
1162 		 * fdt_overlay_apply() when it overlys failed.
1163 		 */
1164 		totalsize = fdt_totalsize(fdt_addr);
1165 		fdt_backup = malloc(totalsize);
1166 		if (!fdt_backup)
1167 			goto out;
1168 
1169 		memcpy(fdt_backup, fdt_addr, totalsize);
1170 		fdt_increase_size(fdt_addr, fdt_totalsize((void *)fdt_dtbo));
1171 		ret = fdt_overlay_apply(fdt_addr, (void *)fdt_dtbo);
1172 		if (!ret) {
1173 			snprintf(buf, 32, "%s%d", "androidboot.dtbo_idx=", index);
1174 			env_update("bootargs", buf);
1175 			printf("ANDROID: fdt overlay OK\n");
1176 		} else {
1177 			memcpy(fdt_addr, fdt_backup, totalsize);
1178 			printf("ANDROID: fdt overlay failed, ret=%d\n", ret);
1179 		}
1180 
1181 		free(fdt_backup);
1182 	}
1183 
1184 out:
1185 	free(hdr);
1186 
1187 	return 0;
1188 }
1189 #endif
1190 
1191 int android_image_load_by_partname(struct blk_desc *dev_desc,
1192 				   const char *boot_partname,
1193 				   unsigned long *load_address)
1194 {
1195 	disk_partition_t boot_part;
1196 	int ret, part_num;
1197 
1198 	part_num = part_get_info_by_name(dev_desc, boot_partname, &boot_part);
1199 	if (part_num < 0) {
1200 		printf("%s: Can't find part: %s\n", __func__, boot_partname);
1201 		return -1;
1202 	}
1203 	debug("ANDROID: Loading kernel from \"%s\", partition %d.\n",
1204 	      boot_part.name, part_num);
1205 
1206 	ret = android_image_load(dev_desc, &boot_part, *load_address, -1UL);
1207 	if (ret < 0) {
1208 		debug("%s: %s part load fail, ret=%d\n",
1209 		      __func__, boot_part.name, ret);
1210 		return ret;
1211 	}
1212 	*load_address = ret;
1213 
1214 	return 0;
1215 }
1216 
1217 int android_bootloader_boot_flow(struct blk_desc *dev_desc,
1218 				 unsigned long load_address)
1219 {
1220 	enum android_boot_mode mode = ANDROID_BOOT_MODE_NORMAL;
1221 	disk_partition_t misc_part_info;
1222 	int part_num;
1223 	char *command_line;
1224 	char slot_suffix[3] = {0};
1225 	const char *mode_cmdline = NULL;
1226 	char *boot_partname = ANDROID_PARTITION_BOOT;
1227 
1228 	/*
1229 	 * 1. Load MISC partition and determine the boot mode
1230 	 *   clear its value for the next boot if needed.
1231 	 */
1232 	part_num = part_get_info_by_name(dev_desc, ANDROID_PARTITION_MISC,
1233 					 &misc_part_info);
1234 	if (part_num < 0) {
1235 		printf("Could not find misc partition\n");
1236 	} else {
1237 #ifdef CONFIG_ANDROID_KEYMASTER_CA
1238 		/* load attestation key from misc partition. */
1239 		load_attestation_key(dev_desc, &misc_part_info);
1240 #endif
1241 
1242 		mode = android_bootloader_load_and_clear_mode(dev_desc,
1243 							      &misc_part_info);
1244 #ifdef CONFIG_RKIMG_BOOTLOADER
1245 		if (mode == ANDROID_BOOT_MODE_NORMAL) {
1246 			if (rockchip_get_boot_mode() == BOOT_MODE_RECOVERY)
1247 				mode = ANDROID_BOOT_MODE_RECOVERY;
1248 		}
1249 #endif
1250 	}
1251 
1252 	printf("ANDROID: reboot reason: \"%s\"\n", android_boot_mode_str(mode));
1253 #ifdef CONFIG_ANDROID_AB
1254 	/* Get current slot_suffix */
1255 	if (ab_get_slot_suffix(slot_suffix))
1256 		return -1;
1257 #endif
1258 	switch (mode) {
1259 	case ANDROID_BOOT_MODE_NORMAL:
1260 		/* In normal mode, we load the kernel from "boot" but append
1261 		 * "skip_initramfs" to the cmdline to make it ignore the
1262 		 * recovery initramfs in the boot partition.
1263 		 */
1264 #ifdef CONFIG_ANDROID_AB
1265 		/*  In A/B, the recovery image is built as boot.img, containing the
1266 		* recovery's ramdisk. Previously, bootloader used the skip_initramfs
1267 		* kernel command line parameter to decide which mode to boot into.
1268 		* For Android >=10 and with dynamic partition support, the bootloader
1269 		* MUST NOT pass skip_initramfs to the kernel command-line.
1270 		* Instead, bootloader should pass androidboot.force_normal_boot=1
1271 		* and then Android's first-stage init in ramdisk
1272 		* will skip recovery and boot normal Android.
1273 		*/
1274 		if (ab_is_support_dynamic_partition(dev_desc)) {
1275 			mode_cmdline = "androidboot.force_normal_boot=1";
1276 		} else {
1277 			mode_cmdline = "skip_initramfs";
1278 		}
1279 #endif
1280 		break;
1281 	case ANDROID_BOOT_MODE_RECOVERY:
1282 		/*
1283 		 * In recovery mode, if have recovery partition, we still boot the
1284 		 * kernel from "recovery". If not, don't skip the initramfs so it
1285 		 * boots to recovery from image in partition "boot".
1286 		 */
1287 #ifdef CONFIG_ANDROID_AB
1288 		boot_partname = ab_can_find_recovery_part() ?
1289 			ANDROID_PARTITION_RECOVERY : ANDROID_PARTITION_BOOT;
1290 #else
1291 		boot_partname = ANDROID_PARTITION_RECOVERY;
1292 #endif
1293 		break;
1294 	case ANDROID_BOOT_MODE_BOOTLOADER:
1295 		/* Bootloader mode enters fastboot. If this operation fails we
1296 		 * simply return since we can't recover from this situation by
1297 		 * switching to another slot.
1298 		 */
1299 		return android_bootloader_boot_bootloader();
1300 	}
1301 
1302 #ifdef CONFIG_ANDROID_AVB
1303 	uint8_t vboot_flag = 0;
1304 	disk_partition_t vbmeta_part_info;
1305 
1306 #ifdef CONFIG_OPTEE_CLIENT
1307 	if (trusty_read_vbootkey_enable_flag(&vboot_flag)) {
1308 		printf("Can't read vboot flag\n");
1309 		return -1;
1310 	}
1311 #endif
1312 	if (vboot_flag) {
1313 		printf("Vboot=1, SecureBoot enabled, AVB verify\n");
1314 		if (android_slot_verify(boot_partname, &load_address,
1315 					slot_suffix)) {
1316 			printf("AVB verify failed\n");
1317 
1318 			return -1;
1319 		}
1320 	} else {
1321 		part_num = part_get_info_by_name(dev_desc,
1322 						 ANDROID_PARTITION_VBMETA,
1323 						 &vbmeta_part_info);
1324 		if (part_num < 0) {
1325 			printf("Not AVB images, AVB skip\n");
1326 			env_update("bootargs",
1327 				   "androidboot.verifiedbootstate=orange");
1328 			if (android_image_load_by_partname(dev_desc,
1329 							   boot_partname,
1330 							   &load_address)) {
1331 				printf("Android image load failed\n");
1332 				return -1;
1333 			}
1334 		} else {
1335 			printf("Vboot=0, AVB images, AVB verify\n");
1336 			if (android_slot_verify(boot_partname, &load_address,
1337 						slot_suffix)) {
1338 				printf("AVB verify failed\n");
1339 
1340 				return -1;
1341 			}
1342 		}
1343 	}
1344 #else
1345 	/*
1346 	 * 2. Load the boot/recovery from the desired "boot" partition.
1347 	 * Determine if this is an AOSP image.
1348 	 */
1349 	if (android_image_load_by_partname(dev_desc,
1350 					   boot_partname,
1351 					   &load_address)) {
1352 		printf("Android image load failed\n");
1353 		return -1;
1354 	}
1355 #endif
1356 
1357 	/* Set Android root variables. */
1358 	env_set_ulong("android_root_devnum", dev_desc->devnum);
1359 	env_set("android_slotsufix", slot_suffix);
1360 
1361 #ifdef CONFIG_FASTBOOT_OEM_UNLOCK
1362 	/* read oem unlock status and attach to bootargs */
1363 	uint8_t unlock = 0;
1364 	TEEC_Result result;
1365 	char oem_unlock[OEM_UNLOCK_ARG_SIZE] = {0};
1366 	result = trusty_read_oem_unlock(&unlock);
1367 	if (result) {
1368 		printf("read oem unlock status with error : 0x%x\n", result);
1369 	} else {
1370 		snprintf(oem_unlock, OEM_UNLOCK_ARG_SIZE, "androidboot.oem_unlocked=%d", unlock);
1371 		env_update("bootargs", oem_unlock);
1372 	}
1373 #endif
1374 
1375 	/* Assemble the command line */
1376 	command_line = android_assemble_cmdline(slot_suffix, mode_cmdline);
1377 	env_update("bootargs", command_line);
1378 
1379 	debug("ANDROID: bootargs: \"%s\"\n", command_line);
1380 
1381 #ifdef CONFIG_SUPPORT_OEM_DTB
1382 	if (android_bootloader_get_fdt(ANDROID_PARTITION_OEM,
1383 				       ANDROID_ARG_FDT_FILENAME)) {
1384 		printf("Can not get the fdt data from oem!\n");
1385 	}
1386 #endif
1387 #ifdef CONFIG_OPTEE_CLIENT
1388 	if (trusty_notify_optee_uboot_end())
1389 		printf("Close optee client failed!\n");
1390 #endif
1391 
1392 #ifdef CONFIG_AMP
1393 	return android_bootloader_boot_kernel(load_address);
1394 #else
1395 	android_bootloader_boot_kernel(load_address);
1396 
1397 	/* TODO: If the kernel doesn't boot mark the selected slot as bad. */
1398 	return -1;
1399 #endif
1400 }
1401 
1402 int android_avb_boot_flow(unsigned long kernel_address)
1403 {
1404 	struct blk_desc *dev_desc;
1405 	disk_partition_t boot_part_info;
1406 	int ret;
1407 
1408 	dev_desc = rockchip_get_bootdev();
1409 	if (!dev_desc) {
1410 		printf("%s: dev_desc is NULL!\n", __func__);
1411 		return -1;
1412 	}
1413 
1414 	/* Load the kernel from the desired "boot" partition. */
1415 	ret = part_get_info_by_name(dev_desc, ANDROID_PARTITION_BOOT,
1416 				    &boot_part_info);
1417 	if (ret < 0) {
1418 		printf("%s: failed to get boot part\n", __func__);
1419 		return ret;
1420 	}
1421 
1422 	ret = android_image_load(dev_desc, &boot_part_info,
1423 				 kernel_address, -1UL);
1424 	if (ret < 0) {
1425 		printf("Android avb boot failed, error %d.\n", ret);
1426 		return ret;
1427 	}
1428 
1429 	android_bootloader_boot_kernel(kernel_address);
1430 
1431 	/* TODO: If the kernel doesn't boot mark the selected slot as bad. */
1432 	return -1;
1433 }
1434 
1435 int android_boot_flow(unsigned long kernel_address)
1436 {
1437 	struct blk_desc *dev_desc;
1438 	disk_partition_t boot_part_info;
1439 	int ret;
1440 
1441 	dev_desc = rockchip_get_bootdev();
1442 	if (!dev_desc) {
1443 		printf("%s: dev_desc is NULL!\n", __func__);
1444 		return -1;
1445 	}
1446 	/* Load the kernel from the desired "boot" partition. */
1447 	ret = part_get_info_by_name(dev_desc, ANDROID_PARTITION_BOOT,
1448 				    &boot_part_info);
1449 	if (ret < 0) {
1450 		printf("%s: failed to get boot part\n", __func__);
1451 		return ret;
1452 	}
1453 
1454 	ret = android_image_load(dev_desc, &boot_part_info, kernel_address,
1455 				 -1UL);
1456 	if (ret < 0)
1457 		return ret;
1458 
1459 	android_bootloader_boot_kernel(kernel_address);
1460 
1461 	/* TODO: If the kernel doesn't boot mark the selected slot as bad. */
1462 	return -1;
1463 }
1464