xref: /rk3399_rockchip-uboot/common/image-fit.c (revision 4fe117be426fd5b06f929f8bde3bf3ef6be089a1)
1 /*
2  * Copyright (c) 2013, Google Inc.
3  *
4  * (C) Copyright 2008 Semihalf
5  *
6  * (C) Copyright 2000-2006
7  * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
8  *
9  * SPDX-License-Identifier:	GPL-2.0+
10  */
11 
12 #ifdef USE_HOSTCC
13 #include "mkimage.h"
14 #include <time.h>
15 #else
16 #include <linux/compiler.h>
17 #include <linux/kconfig.h>
18 #include <common.h>
19 #include <errno.h>
20 #include <mapmem.h>
21 #include <asm/io.h>
22 #include <malloc.h>
23 #include <crypto.h>
24 
25 DECLARE_GLOBAL_DATA_PTR;
26 #endif /* !USE_HOSTCC*/
27 
28 #include <image.h>
29 #include <bootstage.h>
30 #include <u-boot/crc.h>
31 #include <u-boot/md5.h>
32 #include <u-boot/sha1.h>
33 #include <u-boot/sha256.h>
34 
35 #define __round_mask(x, y) ((__typeof__(x))((y)-1))
36 #define round_up(x, y) ((((x)-1) | __round_mask(x, y))+1)
37 
38 /*****************************************************************************/
39 /* New uImage format routines */
40 /*****************************************************************************/
41 #ifndef USE_HOSTCC
42 static int fit_parse_spec(const char *spec, char sepc, ulong addr_curr,
43 		ulong *addr, const char **name)
44 {
45 	const char *sep;
46 
47 	*addr = addr_curr;
48 	*name = NULL;
49 
50 	sep = strchr(spec, sepc);
51 	if (sep) {
52 		if (sep - spec > 0)
53 			*addr = simple_strtoul(spec, NULL, 16);
54 
55 		*name = sep + 1;
56 		return 1;
57 	}
58 
59 	return 0;
60 }
61 
62 /**
63  * fit_parse_conf - parse FIT configuration spec
64  * @spec: input string, containing configuration spec
65  * @add_curr: current image address (to be used as a possible default)
66  * @addr: pointer to a ulong variable, will hold FIT image address of a given
67  * configuration
68  * @conf_name double pointer to a char, will hold pointer to a configuration
69  * unit name
70  *
71  * fit_parse_conf() expects configuration spec in the form of [<addr>]#<conf>,
72  * where <addr> is a FIT image address that contains configuration
73  * with a <conf> unit name.
74  *
75  * Address part is optional, and if omitted default add_curr will
76  * be used instead.
77  *
78  * returns:
79  *     1 if spec is a valid configuration string,
80  *     addr and conf_name are set accordingly
81  *     0 otherwise
82  */
83 int fit_parse_conf(const char *spec, ulong addr_curr,
84 		ulong *addr, const char **conf_name)
85 {
86 	return fit_parse_spec(spec, '#', addr_curr, addr, conf_name);
87 }
88 
89 /**
90  * fit_parse_subimage - parse FIT subimage spec
91  * @spec: input string, containing subimage spec
92  * @add_curr: current image address (to be used as a possible default)
93  * @addr: pointer to a ulong variable, will hold FIT image address of a given
94  * subimage
95  * @image_name: double pointer to a char, will hold pointer to a subimage name
96  *
97  * fit_parse_subimage() expects subimage spec in the form of
98  * [<addr>]:<subimage>, where <addr> is a FIT image address that contains
99  * subimage with a <subimg> unit name.
100  *
101  * Address part is optional, and if omitted default add_curr will
102  * be used instead.
103  *
104  * returns:
105  *     1 if spec is a valid subimage string,
106  *     addr and image_name are set accordingly
107  *     0 otherwise
108  */
109 int fit_parse_subimage(const char *spec, ulong addr_curr,
110 		ulong *addr, const char **image_name)
111 {
112 	return fit_parse_spec(spec, ':', addr_curr, addr, image_name);
113 }
114 #endif /* !USE_HOSTCC */
115 
116 static void fit_get_debug(const void *fit, int noffset,
117 		char *prop_name, int err)
118 {
119 	debug("Can't get '%s' property from FIT 0x%08lx, node: offset %d, name %s (%s)\n",
120 	      prop_name, (ulong)fit, noffset, fit_get_name(fit, noffset, NULL),
121 	      fdt_strerror(err));
122 }
123 
124 /**
125  * fit_get_subimage_count - get component (sub-image) count
126  * @fit: pointer to the FIT format image header
127  * @images_noffset: offset of images node
128  *
129  * returns:
130  *     number of image components
131  */
132 int fit_get_subimage_count(const void *fit, int images_noffset)
133 {
134 	int noffset;
135 	int ndepth;
136 	int count = 0;
137 
138 	/* Process its subnodes, print out component images details */
139 	for (ndepth = 0, count = 0,
140 		noffset = fdt_next_node(fit, images_noffset, &ndepth);
141 	     (noffset >= 0) && (ndepth > 0);
142 	     noffset = fdt_next_node(fit, noffset, &ndepth)) {
143 		if (ndepth == 1) {
144 			count++;
145 		}
146 	}
147 
148 	return count;
149 }
150 
151 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_FIT_SPL_PRINT)
152 /**
153  * fit_print_contents - prints out the contents of the FIT format image
154  * @fit: pointer to the FIT format image header
155  * @p: pointer to prefix string
156  *
157  * fit_print_contents() formats a multi line FIT image contents description.
158  * The routine prints out FIT image properties (root node level) followed by
159  * the details of each component image.
160  *
161  * returns:
162  *     no returned results
163  */
164 void fit_print_contents(const void *fit)
165 {
166 	char *desc;
167 	char *uname;
168 	int images_noffset;
169 	int confs_noffset;
170 	int noffset;
171 	int ndepth;
172 	int count = 0;
173 	int ret;
174 	const char *p;
175 	time_t timestamp;
176 
177 	/* Indent string is defined in header image.h */
178 	p = IMAGE_INDENT_STRING;
179 
180 	/* Root node properties */
181 	ret = fit_get_desc(fit, 0, &desc);
182 	printf("%sFIT description: ", p);
183 	if (ret)
184 		printf("unavailable\n");
185 	else
186 		printf("%s\n", desc);
187 
188 	if (IMAGE_ENABLE_TIMESTAMP) {
189 		ret = fit_get_timestamp(fit, 0, &timestamp);
190 		printf("%sCreated:         ", p);
191 		if (ret)
192 			printf("unavailable\n");
193 		else
194 			genimg_print_time(timestamp);
195 	}
196 
197 	/* Find images parent node offset */
198 	images_noffset = fdt_path_offset(fit, FIT_IMAGES_PATH);
199 	if (images_noffset < 0) {
200 		printf("Can't find images parent node '%s' (%s)\n",
201 		       FIT_IMAGES_PATH, fdt_strerror(images_noffset));
202 		return;
203 	}
204 
205 	/* Process its subnodes, print out component images details */
206 	for (ndepth = 0, count = 0,
207 		noffset = fdt_next_node(fit, images_noffset, &ndepth);
208 	     (noffset >= 0) && (ndepth > 0);
209 	     noffset = fdt_next_node(fit, noffset, &ndepth)) {
210 		if (ndepth == 1) {
211 			/*
212 			 * Direct child node of the images parent node,
213 			 * i.e. component image node.
214 			 */
215 			printf("%s Image %u (%s)\n", p, count++,
216 			       fit_get_name(fit, noffset, NULL));
217 
218 			fit_image_print(fit, noffset, p);
219 		}
220 	}
221 
222 	/* Find configurations parent node offset */
223 	confs_noffset = fdt_path_offset(fit, FIT_CONFS_PATH);
224 	if (confs_noffset < 0) {
225 		debug("Can't get configurations parent node '%s' (%s)\n",
226 		      FIT_CONFS_PATH, fdt_strerror(confs_noffset));
227 		return;
228 	}
229 
230 	/* get default configuration unit name from default property */
231 	uname = (char *)fdt_getprop(fit, noffset, FIT_DEFAULT_PROP, NULL);
232 	if (uname)
233 		printf("%s Default Configuration: '%s'\n", p, uname);
234 
235 	/* Process its subnodes, print out configurations details */
236 	for (ndepth = 0, count = 0,
237 		noffset = fdt_next_node(fit, confs_noffset, &ndepth);
238 	     (noffset >= 0) && (ndepth > 0);
239 	     noffset = fdt_next_node(fit, noffset, &ndepth)) {
240 		if (ndepth == 1) {
241 			/*
242 			 * Direct child node of the configurations parent node,
243 			 * i.e. configuration node.
244 			 */
245 			printf("%s Configuration %u (%s)\n", p, count++,
246 			       fit_get_name(fit, noffset, NULL));
247 
248 			fit_conf_print(fit, noffset, p);
249 		}
250 	}
251 }
252 
253 /**
254  * fit_image_print_data() - prints out the hash node details
255  * @fit: pointer to the FIT format image header
256  * @noffset: offset of the hash node
257  * @p: pointer to prefix string
258  * @type: Type of information to print ("hash" or "sign")
259  *
260  * fit_image_print_data() lists properties for the processed hash node
261  *
262  * This function avoid using puts() since it prints a newline on the host
263  * but does not in U-Boot.
264  *
265  * returns:
266  *     no returned results
267  */
268 static void fit_image_print_data(const void *fit, int noffset, const char *p,
269 				 const char *type)
270 {
271 	const char *keyname;
272 	uint8_t *value;
273 	int value_len;
274 	char *algo;
275 	int required;
276 	int ret, i;
277 
278 	debug("%s  %s node:    '%s'\n", p, type,
279 	      fit_get_name(fit, noffset, NULL));
280 	printf("%s  %s algo:    ", p, type);
281 	if (fit_image_hash_get_algo(fit, noffset, &algo)) {
282 		printf("invalid/unsupported\n");
283 		return;
284 	}
285 	printf("%s", algo);
286 	keyname = fdt_getprop(fit, noffset, "key-name-hint", NULL);
287 	required = fdt_getprop(fit, noffset, "required", NULL) != NULL;
288 	if (keyname)
289 		printf(":%s", keyname);
290 	if (required)
291 		printf(" (required)");
292 	printf("\n");
293 
294 	ret = fit_image_hash_get_value(fit, noffset, &value,
295 					&value_len);
296 	printf("%s  %s value:   ", p, type);
297 	if (ret) {
298 		printf("unavailable\n");
299 	} else {
300 		for (i = 0; i < value_len; i++)
301 			printf("%02x", value[i]);
302 		printf("\n");
303 	}
304 
305 	debug("%s  %s len:     %d\n", p, type, value_len);
306 
307 	/* Signatures have a time stamp */
308 	if (IMAGE_ENABLE_TIMESTAMP && keyname) {
309 		time_t timestamp;
310 
311 		printf("%s  Timestamp:    ", p);
312 		if (fit_get_timestamp(fit, noffset, &timestamp))
313 			printf("unavailable\n");
314 		else
315 			genimg_print_time(timestamp);
316 	}
317 }
318 
319 /**
320  * fit_image_print_verification_data() - prints out the hash/signature details
321  * @fit: pointer to the FIT format image header
322  * @noffset: offset of the hash or signature node
323  * @p: pointer to prefix string
324  *
325  * This lists properties for the processed hash node
326  *
327  * returns:
328  *     no returned results
329  */
330 static void fit_image_print_verification_data(const void *fit, int noffset,
331 				       const char *p)
332 {
333 	const char *name;
334 
335 	/*
336 	 * Check subnode name, must be equal to "hash" or "signature".
337 	 * Multiple hash/signature nodes require unique unit node
338 	 * names, e.g. hash@1, hash@2, signature@1, signature@2, etc.
339 	 */
340 	name = fit_get_name(fit, noffset, NULL);
341 	if (!strncmp(name, FIT_HASH_NODENAME, strlen(FIT_HASH_NODENAME))) {
342 		fit_image_print_data(fit, noffset, p, "Hash");
343 	} else if (!strncmp(name, FIT_SIG_NODENAME,
344 				strlen(FIT_SIG_NODENAME))) {
345 		fit_image_print_data(fit, noffset, p, "Sign");
346 	}
347 }
348 
349 /**
350  * fit_image_print - prints out the FIT component image details
351  * @fit: pointer to the FIT format image header
352  * @image_noffset: offset of the component image node
353  * @p: pointer to prefix string
354  *
355  * fit_image_print() lists all mandatory properties for the processed component
356  * image. If present, hash nodes are printed out as well. Load
357  * address for images of type firmware is also printed out. Since the load
358  * address is not mandatory for firmware images, it will be output as
359  * "unavailable" when not present.
360  *
361  * returns:
362  *     no returned results
363  */
364 void fit_image_print(const void *fit, int image_noffset, const char *p)
365 {
366 	char *desc;
367 	uint8_t type, arch, os, comp;
368 	size_t size;
369 	ulong load, entry;
370 	const void *data;
371 	int noffset;
372 	int ndepth;
373 	int ret;
374 
375 	/* Mandatory properties */
376 	ret = fit_get_desc(fit, image_noffset, &desc);
377 	printf("%s  Description:  ", p);
378 	if (ret)
379 		printf("unavailable\n");
380 	else
381 		printf("%s\n", desc);
382 
383 	if (IMAGE_ENABLE_TIMESTAMP) {
384 		time_t timestamp;
385 
386 		ret = fit_get_timestamp(fit, 0, &timestamp);
387 		printf("%s  Created:      ", p);
388 		if (ret)
389 			printf("unavailable\n");
390 		else
391 			genimg_print_time(timestamp);
392 	}
393 
394 	fit_image_get_type(fit, image_noffset, &type);
395 	printf("%s  Type:         %s\n", p, genimg_get_type_name(type));
396 
397 	fit_image_get_comp(fit, image_noffset, &comp);
398 	printf("%s  Compression:  %s\n", p, genimg_get_comp_name(comp));
399 
400 	ret = fit_image_get_data(fit, image_noffset, &data, &size);
401 
402 #ifndef USE_HOSTCC
403 	printf("%s  Data Start:   ", p);
404 	if (ret) {
405 		printf("unavailable\n");
406 	} else {
407 		void *vdata = (void *)data;
408 
409 		printf("0x%08lx\n", (ulong)map_to_sysmem(vdata));
410 	}
411 #endif
412 
413 	printf("%s  Data Size:    ", p);
414 	if (ret)
415 		printf("unavailable\n");
416 	else
417 		genimg_print_size(size);
418 
419 	/* Remaining, type dependent properties */
420 	if ((type == IH_TYPE_KERNEL) || (type == IH_TYPE_STANDALONE) ||
421 	    (type == IH_TYPE_RAMDISK) || (type == IH_TYPE_FIRMWARE) ||
422 	    (type == IH_TYPE_FLATDT)) {
423 		fit_image_get_arch(fit, image_noffset, &arch);
424 		printf("%s  Architecture: %s\n", p, genimg_get_arch_name(arch));
425 	}
426 
427 	if ((type == IH_TYPE_KERNEL) || (type == IH_TYPE_RAMDISK)) {
428 		fit_image_get_os(fit, image_noffset, &os);
429 		printf("%s  OS:           %s\n", p, genimg_get_os_name(os));
430 	}
431 
432 	if ((type == IH_TYPE_KERNEL) || (type == IH_TYPE_STANDALONE) ||
433 	    (type == IH_TYPE_FIRMWARE) || (type == IH_TYPE_RAMDISK) ||
434 	    (type == IH_TYPE_FPGA)) {
435 		ret = fit_image_get_load(fit, image_noffset, &load);
436 		printf("%s  Load Address: ", p);
437 		if (ret)
438 			printf("unavailable\n");
439 		else
440 			printf("0x%08lx\n", load);
441 	}
442 
443 	/* optional load address for FDT */
444 	if (type == IH_TYPE_FLATDT && !fit_image_get_load(fit, image_noffset, &load))
445 		printf("%s  Load Address: 0x%08lx\n", p, load);
446 
447 	if ((type == IH_TYPE_KERNEL) || (type == IH_TYPE_STANDALONE) ||
448 	    (type == IH_TYPE_RAMDISK)) {
449 		ret = fit_image_get_entry(fit, image_noffset, &entry);
450 		printf("%s  Entry Point:  ", p);
451 		if (ret)
452 			printf("unavailable\n");
453 		else
454 			printf("0x%08lx\n", entry);
455 	}
456 
457 	/* Process all hash subnodes of the component image node */
458 	for (ndepth = 0, noffset = fdt_next_node(fit, image_noffset, &ndepth);
459 	     (noffset >= 0) && (ndepth > 0);
460 	     noffset = fdt_next_node(fit, noffset, &ndepth)) {
461 		if (ndepth == 1) {
462 			/* Direct child node of the component image node */
463 			fit_image_print_verification_data(fit, noffset, p);
464 		}
465 	}
466 }
467 
468 #endif /* !defined(CONFIG_SPL_BUILD) || defined(CONFIG_FIT_SPL_PRINT) */
469 
470 /**
471  * fit_get_desc - get node description property
472  * @fit: pointer to the FIT format image header
473  * @noffset: node offset
474  * @desc: double pointer to the char, will hold pointer to the description
475  *
476  * fit_get_desc() reads description property from a given node, if
477  * description is found pointer to it is returned in third call argument.
478  *
479  * returns:
480  *     0, on success
481  *     -1, on failure
482  */
483 int fit_get_desc(const void *fit, int noffset, char **desc)
484 {
485 	int len;
486 
487 	*desc = (char *)fdt_getprop(fit, noffset, FIT_DESC_PROP, &len);
488 	if (*desc == NULL) {
489 		fit_get_debug(fit, noffset, FIT_DESC_PROP, len);
490 		return -1;
491 	}
492 
493 	return 0;
494 }
495 
496 /**
497  * fit_get_timestamp - get node timestamp property
498  * @fit: pointer to the FIT format image header
499  * @noffset: node offset
500  * @timestamp: pointer to the time_t, will hold read timestamp
501  *
502  * fit_get_timestamp() reads timestamp property from given node, if timestamp
503  * is found and has a correct size its value is returned in third call
504  * argument.
505  *
506  * returns:
507  *     0, on success
508  *     -1, on property read failure
509  *     -2, on wrong timestamp size
510  */
511 int fit_get_timestamp(const void *fit, int noffset, time_t *timestamp)
512 {
513 	int len;
514 	const void *data;
515 
516 	data = fdt_getprop(fit, noffset, FIT_TIMESTAMP_PROP, &len);
517 	if (data == NULL) {
518 		fit_get_debug(fit, noffset, FIT_TIMESTAMP_PROP, len);
519 		return -1;
520 	}
521 	if (len != sizeof(uint32_t)) {
522 		debug("FIT timestamp with incorrect size of (%u)\n", len);
523 		return -2;
524 	}
525 
526 	*timestamp = uimage_to_cpu(*((uint32_t *)data));
527 	return 0;
528 }
529 
530 /**
531  * fit_get_totalsize - get node totalsize property.
532  *
533  * @fit: pointer to the FIT image header
534  * @totalsize: holds the /totalsize property
535  *
536  * returns:
537  *     0, on success
538  *     -ENOENT if the property could not be found
539  */
540 int fit_get_totalsize(const void *fit, int *totalsize)
541 {
542 	const fdt32_t *val;
543 
544 	val = fdt_getprop(fit, 0, FIT_TOTALSIZE_PROP, NULL);
545 	if (!val)
546 		return -ENOENT;
547 
548 	*totalsize = fdt32_to_cpu(*val);
549 
550 	return 0;
551 }
552 
553 /**
554  * fit_image_get_node - get node offset for component image of a given unit name
555  * @fit: pointer to the FIT format image header
556  * @image_uname: component image node unit name
557  *
558  * fit_image_get_node() finds a component image (within the '/images'
559  * node) of a provided unit name. If image is found its node offset is
560  * returned to the caller.
561  *
562  * returns:
563  *     image node offset when found (>=0)
564  *     negative number on failure (FDT_ERR_* code)
565  */
566 int fit_image_get_node(const void *fit, const char *image_uname)
567 {
568 	int noffset, images_noffset;
569 
570 	images_noffset = fdt_path_offset(fit, FIT_IMAGES_PATH);
571 	if (images_noffset < 0) {
572 		debug("Can't find images parent node '%s' (%s)\n",
573 		      FIT_IMAGES_PATH, fdt_strerror(images_noffset));
574 		return images_noffset;
575 	}
576 
577 	noffset = fdt_subnode_offset(fit, images_noffset, image_uname);
578 	if (noffset < 0) {
579 		debug("Can't get node offset for image unit name: '%s' (%s)\n",
580 		      image_uname, fdt_strerror(noffset));
581 	}
582 
583 	return noffset;
584 }
585 
586 /**
587  * fit_image_get_os - get os id for a given component image node
588  * @fit: pointer to the FIT format image header
589  * @noffset: component image node offset
590  * @os: pointer to the uint8_t, will hold os numeric id
591  *
592  * fit_image_get_os() finds os property in a given component image node.
593  * If the property is found, its (string) value is translated to the numeric
594  * id which is returned to the caller.
595  *
596  * returns:
597  *     0, on success
598  *     -1, on failure
599  */
600 int fit_image_get_os(const void *fit, int noffset, uint8_t *os)
601 {
602 	int len;
603 	const void *data;
604 
605 	/* Get OS name from property data */
606 	data = fdt_getprop(fit, noffset, FIT_OS_PROP, &len);
607 	if (data == NULL) {
608 		fit_get_debug(fit, noffset, FIT_OS_PROP, len);
609 		*os = -1;
610 		return -1;
611 	}
612 
613 	/* Translate OS name to id */
614 	*os = genimg_get_os_id(data);
615 	return 0;
616 }
617 
618 /**
619  * fit_image_get_arch - get arch id for a given component image node
620  * @fit: pointer to the FIT format image header
621  * @noffset: component image node offset
622  * @arch: pointer to the uint8_t, will hold arch numeric id
623  *
624  * fit_image_get_arch() finds arch property in a given component image node.
625  * If the property is found, its (string) value is translated to the numeric
626  * id which is returned to the caller.
627  *
628  * returns:
629  *     0, on success
630  *     -1, on failure
631  */
632 int fit_image_get_arch(const void *fit, int noffset, uint8_t *arch)
633 {
634 	int len;
635 	const void *data;
636 
637 	/* Get architecture name from property data */
638 	data = fdt_getprop(fit, noffset, FIT_ARCH_PROP, &len);
639 	if (data == NULL) {
640 		fit_get_debug(fit, noffset, FIT_ARCH_PROP, len);
641 		*arch = -1;
642 		return -1;
643 	}
644 
645 	/* Translate architecture name to id */
646 	*arch = genimg_get_arch_id(data);
647 	return 0;
648 }
649 
650 /**
651  * fit_image_get_type - get type id for a given component image node
652  * @fit: pointer to the FIT format image header
653  * @noffset: component image node offset
654  * @type: pointer to the uint8_t, will hold type numeric id
655  *
656  * fit_image_get_type() finds type property in a given component image node.
657  * If the property is found, its (string) value is translated to the numeric
658  * id which is returned to the caller.
659  *
660  * returns:
661  *     0, on success
662  *     -1, on failure
663  */
664 int fit_image_get_type(const void *fit, int noffset, uint8_t *type)
665 {
666 	int len;
667 	const void *data;
668 
669 	/* Get image type name from property data */
670 	data = fdt_getprop(fit, noffset, FIT_TYPE_PROP, &len);
671 	if (data == NULL) {
672 		fit_get_debug(fit, noffset, FIT_TYPE_PROP, len);
673 		*type = -1;
674 		return -1;
675 	}
676 
677 	/* Translate image type name to id */
678 	*type = genimg_get_type_id(data);
679 	return 0;
680 }
681 
682 /**
683  * fit_image_get_comp - get comp id for a given component image node
684  * @fit: pointer to the FIT format image header
685  * @noffset: component image node offset
686  * @comp: pointer to the uint8_t, will hold comp numeric id
687  *
688  * fit_image_get_comp() finds comp property in a given component image node.
689  * If the property is found, its (string) value is translated to the numeric
690  * id which is returned to the caller.
691  *
692  * returns:
693  *     0, on success
694  *     -1, on failure
695  */
696 int fit_image_get_comp(const void *fit, int noffset, uint8_t *comp)
697 {
698 	int len;
699 	const void *data;
700 
701 	/* Get compression name from property data */
702 	data = fdt_getprop(fit, noffset, FIT_COMP_PROP, &len);
703 	if (data == NULL) {
704 		fit_get_debug(fit, noffset, FIT_COMP_PROP, len);
705 		*comp = -1;
706 		return -1;
707 	}
708 
709 	/* Translate compression name to id */
710 	*comp = genimg_get_comp_id(data);
711 	return 0;
712 }
713 
714 static int fit_image_get_address(const void *fit, int noffset, char *name,
715 			  ulong *load)
716 {
717 	int len, cell_len;
718 	const fdt32_t *cell;
719 	uint64_t load64 = 0;
720 
721 	cell = fdt_getprop(fit, noffset, name, &len);
722 	if (cell == NULL) {
723 		fit_get_debug(fit, noffset, name, len);
724 		return -1;
725 	}
726 
727 	if (len > sizeof(ulong)) {
728 		printf("Unsupported %s address size\n", name);
729 		return -1;
730 	}
731 
732 	cell_len = len >> 2;
733 	/* Use load64 to avoid compiling warning for 32-bit target */
734 	while (cell_len--) {
735 		load64 = (load64 << 32) | uimage_to_cpu(*cell);
736 		cell++;
737 	}
738 	*load = (ulong)load64;
739 
740 	return 0;
741 }
742 
743 static int fit_image_set_address(const void *fit, int noffset, char *name,
744 				 ulong addr)
745 {
746 	int len, cell_len;
747 	const fdt32_t *cell;
748 
749 	cell = fdt_getprop(fit, noffset, name, &len);
750 	if (cell == NULL) {
751 		fit_get_debug(fit, noffset, name, len);
752 		return -1;
753 	}
754 
755 	if (len > sizeof(ulong)) {
756 		printf("Unsupported %s address size\n", name);
757 		return -1;
758 	}
759 
760 	cell_len = len >> 2;
761 	/* Use load64 to avoid compiling warning for 32-bit target */
762 	while (cell_len--) {
763 		*(fdt32_t *)cell = cpu_to_uimage(addr >> (32 * cell_len));
764 		cell++;
765 	}
766 
767 	return 0;
768 }
769 
770 /**
771  * fit_image_get_load() - get load addr property for given component image node
772  * @fit: pointer to the FIT format image header
773  * @noffset: component image node offset
774  * @load: pointer to the uint32_t, will hold load address
775  *
776  * fit_image_get_load() finds load address property in a given component
777  * image node. If the property is found, its value is returned to the caller.
778  *
779  * returns:
780  *     0, on success
781  *     -1, on failure
782  */
783 int fit_image_get_load(const void *fit, int noffset, ulong *load)
784 {
785 	return fit_image_get_address(fit, noffset, FIT_LOAD_PROP, load);
786 }
787 
788 /**
789  * fit_image_set_load() - set load addr property for given component image node
790  * @fit: pointer to the FIT format image header
791  * @noffset: component image node offset
792  * @load: uint32_t value, will hold load address
793  *
794  * fit_image_set_load() finds and set load address property in a given component
795  * image node. If the property is found, its value is returned to the caller.
796  *
797  * returns:
798  *     0, on success
799  *     -1, on failure
800  */
801 int fit_image_set_load(const void *fit, int noffset, ulong load)
802 {
803 	return fit_image_set_address(fit, noffset, FIT_LOAD_PROP, load);
804 }
805 
806 /**
807  * fit_image_get_entry() - get entry point address property
808  * @fit: pointer to the FIT format image header
809  * @noffset: component image node offset
810  * @entry: pointer to the uint32_t, will hold entry point address
811  *
812  * This gets the entry point address property for a given component image
813  * node.
814  *
815  * fit_image_get_entry() finds entry point address property in a given
816  * component image node.  If the property is found, its value is returned
817  * to the caller.
818  *
819  * returns:
820  *     0, on success
821  *     -1, on failure
822  */
823 int fit_image_get_entry(const void *fit, int noffset, ulong *entry)
824 {
825 	return fit_image_get_address(fit, noffset, FIT_ENTRY_PROP, entry);
826 }
827 
828 /**
829  * fit_image_set_entry() - set entry point address property
830  * @fit: pointer to the FIT format image header
831  * @noffset: component image node offset
832  * @entry: uint32_t value, will hold entry point address
833  *
834  * This sets the entry point address property for a given component image
835  * node.
836  *
837  * fit_image_set_entry() finds and set entry point address property in a given
838  * component image node.  If the property is found, its value is returned
839  * to the caller.
840  *
841  * returns:
842  *     0, on success
843  *     -1, on failure
844  */
845 int fit_image_set_entry(const void *fit, int noffset, ulong entry)
846 {
847 	return fit_image_set_address(fit, noffset, FIT_ENTRY_PROP, entry);
848 }
849 
850 /**
851  * fit_image_get_data - get data property and its size for a given component image node
852  * @fit: pointer to the FIT format image header
853  * @noffset: component image node offset
854  * @data: double pointer to void, will hold data property's data address
855  * @size: pointer to size_t, will hold data property's data size
856  *
857  * fit_image_get_data() finds data property in a given component image node.
858  * If the property is found its data start address and size are returned to
859  * the caller.
860  *
861  * returns:
862  *     0, on success
863  *     -1, on failure
864  */
865 int fit_image_get_data(const void *fit, int noffset,
866 		const void **data, size_t *size)
867 {
868 	ulong data_off = 0;
869 	ulong data_pos = 0;
870 	int len;
871 
872 	/* data */
873 	*data = fdt_getprop(fit, noffset, FIT_DATA_PROP, &len);
874 	if (*data) {
875 		*size = len;
876 		return 0;
877 	}
878 
879 	/* data-size */
880 	if (fit_image_get_data_size(fit, noffset, &len))
881 		return -ENOENT;
882 
883 	/* data-offset */
884 	if (!fit_image_get_data_offset(fit, noffset, (int *)&data_off)) {
885 		data_off += (ulong)fit + FIT_ALIGN(fdt_totalsize(fit));
886 		*data = (void *)data_off;
887 		*size = len;
888 		return 0;
889 	}
890 
891 	/* data-position */
892 	if (!fit_image_get_data_position(fit, noffset, (int *)&data_pos)) {
893 		*data = (void *)(data_pos + (ulong)fit);
894 		*size = len;
895 		return 0;
896 	}
897 
898 	*size = 0;
899 	return -1;
900 }
901 
902 /**
903  * Get 'data-offset' property from a given image node.
904  *
905  * @fit: pointer to the FIT image header
906  * @noffset: component image node offset
907  * @data_offset: holds the data-offset property
908  *
909  * returns:
910  *     0, on success
911  *     -ENOENT if the property could not be found
912  */
913 int fit_image_get_data_offset(const void *fit, int noffset, int *data_offset)
914 {
915 	const fdt32_t *val;
916 
917 	val = fdt_getprop(fit, noffset, FIT_DATA_OFFSET_PROP, NULL);
918 	if (!val)
919 		return -ENOENT;
920 
921 	*data_offset = fdt32_to_cpu(*val);
922 
923 	return 0;
924 }
925 
926 /**
927  * Get 'data-position' property from a given image node.
928  *
929  * @fit: pointer to the FIT image header
930  * @noffset: component image node offset
931  * @data_position: holds the data-position property
932  *
933  * returns:
934  *     0, on success
935  *     -ENOENT if the property could not be found
936  */
937 int fit_image_get_data_position(const void *fit, int noffset,
938 				int *data_position)
939 {
940 	const fdt32_t *val;
941 
942 	val = fdt_getprop(fit, noffset, FIT_DATA_POSITION_PROP, NULL);
943 	if (!val)
944 		return -ENOENT;
945 
946 	*data_position = fdt32_to_cpu(*val);
947 
948 	return 0;
949 }
950 
951 /**
952  * Get 'data-size' property from a given image node.
953  *
954  * @fit: pointer to the FIT image header
955  * @noffset: component image node offset
956  * @data_size: holds the data-size property
957  *
958  * returns:
959  *     0, on success
960  *     -ENOENT if the property could not be found
961  */
962 int fit_image_get_data_size(const void *fit, int noffset, int *data_size)
963 {
964 	const fdt32_t *val;
965 
966 	val = fdt_getprop(fit, noffset, FIT_DATA_SIZE_PROP, NULL);
967 	if (!val)
968 		return -ENOENT;
969 
970 	*data_size = fdt32_to_cpu(*val);
971 
972 	return 0;
973 }
974 
975 /**
976  * Get 'rollback-index' property from a given image node.
977  *
978  * @fit: pointer to the FIT image header
979  * @noffset: component image node offset
980  * @index: holds the rollback-index property
981  *
982  * returns:
983  *     0, on success
984  *     -ENOENT if the property could not be found
985  */
986 int fit_image_get_rollback_index(const void *fit, int noffset, uint32_t *index)
987 {
988 	const fdt32_t *val;
989 
990 	val = fdt_getprop(fit, noffset, FIT_ROLLBACK_PROP, NULL);
991 	if (!val)
992 		return -ENOENT;
993 
994 	*index = fdt32_to_cpu(*val);
995 
996 	return 0;
997 }
998 
999 /**
1000  * fit_image_hash_get_algo - get hash algorithm name
1001  * @fit: pointer to the FIT format image header
1002  * @noffset: hash node offset
1003  * @algo: double pointer to char, will hold pointer to the algorithm name
1004  *
1005  * fit_image_hash_get_algo() finds hash algorithm property in a given hash node.
1006  * If the property is found its data start address is returned to the caller.
1007  *
1008  * returns:
1009  *     0, on success
1010  *     -1, on failure
1011  */
1012 int fit_image_hash_get_algo(const void *fit, int noffset, char **algo)
1013 {
1014 	int len;
1015 
1016 	*algo = (char *)fdt_getprop(fit, noffset, FIT_ALGO_PROP, &len);
1017 	if (*algo == NULL) {
1018 		fit_get_debug(fit, noffset, FIT_ALGO_PROP, len);
1019 		return -1;
1020 	}
1021 
1022 	return 0;
1023 }
1024 
1025 /**
1026  * fit_image_hash_get_value - get hash value and length
1027  * @fit: pointer to the FIT format image header
1028  * @noffset: hash node offset
1029  * @value: double pointer to uint8_t, will hold address of a hash value data
1030  * @value_len: pointer to an int, will hold hash data length
1031  *
1032  * fit_image_hash_get_value() finds hash value property in a given hash node.
1033  * If the property is found its data start address and size are returned to
1034  * the caller.
1035  *
1036  * returns:
1037  *     0, on success
1038  *     -1, on failure
1039  */
1040 int fit_image_hash_get_value(const void *fit, int noffset, uint8_t **value,
1041 				int *value_len)
1042 {
1043 	int len;
1044 
1045 	*value = (uint8_t *)fdt_getprop(fit, noffset, FIT_VALUE_PROP, &len);
1046 	if (*value == NULL) {
1047 		fit_get_debug(fit, noffset, FIT_VALUE_PROP, len);
1048 		*value_len = 0;
1049 		return -1;
1050 	}
1051 
1052 	*value_len = len;
1053 	return 0;
1054 }
1055 
1056 /**
1057  * fit_image_hash_get_ignore - get hash ignore flag
1058  * @fit: pointer to the FIT format image header
1059  * @noffset: hash node offset
1060  * @ignore: pointer to an int, will hold hash ignore flag
1061  *
1062  * fit_image_hash_get_ignore() finds hash ignore property in a given hash node.
1063  * If the property is found and non-zero, the hash algorithm is not verified by
1064  * u-boot automatically.
1065  *
1066  * returns:
1067  *     0, on ignore not found
1068  *     value, on ignore found
1069  */
1070 static int fit_image_hash_get_ignore(const void *fit, int noffset, int *ignore)
1071 {
1072 	int len;
1073 	int *value;
1074 
1075 	value = (int *)fdt_getprop(fit, noffset, FIT_IGNORE_PROP, &len);
1076 	if (value == NULL || len != sizeof(int))
1077 		*ignore = 0;
1078 	else
1079 		*ignore = *value;
1080 
1081 	return 0;
1082 }
1083 
1084 ulong fit_get_end(const void *fit)
1085 {
1086 	return map_to_sysmem((void *)(fit + fdt_totalsize(fit)));
1087 }
1088 
1089 /**
1090  * fit_set_timestamp - set node timestamp property
1091  * @fit: pointer to the FIT format image header
1092  * @noffset: node offset
1093  * @timestamp: timestamp value to be set
1094  *
1095  * fit_set_timestamp() attempts to set timestamp property in the requested
1096  * node and returns operation status to the caller.
1097  *
1098  * returns:
1099  *     0, on success
1100  *     -ENOSPC if no space in device tree, -1 for other error
1101  */
1102 int fit_set_timestamp(void *fit, int noffset, time_t timestamp)
1103 {
1104 	uint32_t t;
1105 	int ret;
1106 
1107 	t = cpu_to_uimage(timestamp);
1108 	ret = fdt_setprop(fit, noffset, FIT_TIMESTAMP_PROP, &t,
1109 				sizeof(uint32_t));
1110 	if (ret) {
1111 		debug("Can't set '%s' property for '%s' node (%s)\n",
1112 		      FIT_TIMESTAMP_PROP, fit_get_name(fit, noffset, NULL),
1113 		      fdt_strerror(ret));
1114 		return ret == -FDT_ERR_NOSPACE ? -ENOSPC : -1;
1115 	}
1116 
1117 	return 0;
1118 }
1119 
1120 int fit_set_totalsize(void *fit, int noffset, int totalsize)
1121 {
1122 	uint32_t t;
1123 	int ret;
1124 
1125 	t = cpu_to_uimage(totalsize);
1126 	ret = fdt_setprop(fit, noffset, FIT_TOTALSIZE_PROP, &t,
1127 				sizeof(uint32_t));
1128 	if (ret)
1129 		return ret == -FDT_ERR_NOSPACE ? -ENOSPC : -1;
1130 
1131 	return 0;
1132 }
1133 
1134 /**
1135  * calculate_hash - calculate and return hash for provided input data
1136  * @data: pointer to the input data
1137  * @data_len: data length
1138  * @algo: requested hash algorithm
1139  * @value: pointer to the char, will hold hash value data (caller must
1140  * allocate enough free space)
1141  * value_len: length of the calculated hash
1142  *
1143  * calculate_hash() computes input data hash according to the requested
1144  * algorithm.
1145  * Resulting hash value is placed in caller provided 'value' buffer, length
1146  * of the calculated hash is returned via value_len pointer argument.
1147  *
1148  * returns:
1149  *     0, on success
1150  *    -1, when algo is unsupported
1151  */
1152 int calculate_hash_software(const void *data, int data_len,
1153 			    const char *algo, uint8_t *value,
1154 			    int *value_len)
1155 {
1156 	if (IMAGE_ENABLE_CRC32 && strcmp(algo, "crc32") == 0) {
1157 		*((uint32_t *)value) = crc32_wd(0, data, data_len,
1158 							CHUNKSZ_CRC32);
1159 		*((uint32_t *)value) = cpu_to_uimage(*((uint32_t *)value));
1160 		*value_len = 4;
1161 	} else if (IMAGE_ENABLE_SHA1 && strcmp(algo, "sha1") == 0) {
1162 		sha1_csum_wd((unsigned char *)data, data_len,
1163 			     (unsigned char *)value, CHUNKSZ_SHA1);
1164 		*value_len = 20;
1165 	} else if (IMAGE_ENABLE_SHA256 && strcmp(algo, "sha256") == 0) {
1166 		sha256_csum_wd((unsigned char *)data, data_len,
1167 			       (unsigned char *)value, CHUNKSZ_SHA256);
1168 		*value_len = SHA256_SUM_LEN;
1169 	} else if (IMAGE_ENABLE_MD5 && strcmp(algo, "md5") == 0) {
1170 		md5_wd((unsigned char *)data, data_len, value, CHUNKSZ_MD5);
1171 		*value_len = 16;
1172 	} else {
1173 		debug("Unsupported hash alogrithm\n");
1174 		return -1;
1175 	}
1176 	return 0;
1177 }
1178 
1179 #ifdef USE_HOSTCC
1180 int calculate_hash(const void *data, int data_len, const char *algo,
1181 		   uint8_t *value, int *value_len)
1182 {
1183 	return calculate_hash_software(data, data_len, algo, value, value_len);
1184 }
1185 #else
1186 #if CONFIG_IS_ENABLED(FIT_HW_CRYPTO)
1187 static int crypto_csum(u32 cap, const char *data, int len, u8 *output)
1188 {
1189 	struct udevice *dev;
1190 	sha_context csha_ctx;
1191 
1192 	dev = crypto_get_device(cap);
1193 	if (!dev) {
1194 		printf("Can't find expected crypto device\n");
1195 		return -ENODEV;
1196 	}
1197 
1198 	csha_ctx.algo = cap;
1199 	csha_ctx.length = len;
1200 
1201 	return crypto_sha_csum(dev, &csha_ctx, (char *)data, len, output);
1202 }
1203 
1204 int calculate_hash(const void *data, int data_len, const char *algo,
1205 		   uint8_t *value, int *value_len)
1206 {
1207 	if (IMAGE_ENABLE_CRC32 && strcmp(algo, "crc32") == 0) {
1208 		*((uint32_t *)value) = crc32_wd(0, data, data_len,
1209 							CHUNKSZ_CRC32);
1210 		*((uint32_t *)value) = cpu_to_uimage(*((uint32_t *)value));
1211 		*value_len = 4;
1212 	} else if (IMAGE_ENABLE_SHA1 && strcmp(algo, "sha1") == 0) {
1213 		crypto_csum(CRYPTO_SHA1, data, data_len, value);
1214 		*value_len = 20;
1215 	} else if (IMAGE_ENABLE_SHA256 && strcmp(algo, "sha256") == 0) {
1216 		crypto_csum(CRYPTO_SHA256, data, data_len, value);
1217 		*value_len = SHA256_SUM_LEN;
1218 	} else if (IMAGE_ENABLE_MD5 && strcmp(algo, "md5") == 0) {
1219 		crypto_csum(CRYPTO_MD5, data, data_len, value);
1220 		*value_len = 16;
1221 	} else {
1222 		debug("Unsupported hash alogrithm\n");
1223 		return -1;
1224 	}
1225 	return 0;
1226 }
1227 #else
1228 int calculate_hash(const void *data, int data_len, const char *algo,
1229 		   uint8_t *value, int *value_len)
1230 {
1231 	return calculate_hash_software(data, data_len, algo, value, value_len);
1232 }
1233 #endif
1234 #endif
1235 
1236 int fit_image_check_hash(const void *fit, int noffset, const void *data,
1237 			 size_t size, char **err_msgp)
1238 {
1239 	uint8_t value[FIT_MAX_HASH_LEN];
1240 	int value_len;
1241 	char *algo;
1242 	uint8_t *fit_value;
1243 	int fit_value_len;
1244 	int ignore;
1245 
1246 	*err_msgp = NULL;
1247 
1248 	if (fit_image_hash_get_algo(fit, noffset, &algo)) {
1249 		*err_msgp = "Can't get hash algo property";
1250 		return -1;
1251 	}
1252 	printf("%s", algo);
1253 
1254 	if (IMAGE_ENABLE_IGNORE) {
1255 		fit_image_hash_get_ignore(fit, noffset, &ignore);
1256 		if (ignore) {
1257 			printf("-skipped ");
1258 			return 0;
1259 		}
1260 	}
1261 
1262 	if (fit_image_hash_get_value(fit, noffset, &fit_value,
1263 				     &fit_value_len)) {
1264 		*err_msgp = "Can't get hash value property";
1265 		return -1;
1266 	}
1267 
1268 	if (calculate_hash(data, size, algo, value, &value_len)) {
1269 		*err_msgp = "Unsupported hash algorithm";
1270 		return -1;
1271 	}
1272 
1273 	if (value_len != fit_value_len) {
1274 		*err_msgp = "Bad hash value len";
1275 		return -1;
1276 	} else if (memcmp(value, fit_value, value_len) != 0) {
1277 		*err_msgp = "Bad hash value";
1278 		return -1;
1279 	}
1280 
1281 	return 0;
1282 }
1283 
1284 int fit_image_verify_with_data(const void *fit, int image_noffset,
1285 			       const void *data, size_t size)
1286 {
1287 	int		noffset = 0;
1288 	char		*err_msg = "";
1289 	int verify_all = 1;
1290 	int ret;
1291 
1292 	/* Verify all required signatures */
1293 	if (IMAGE_ENABLE_VERIFY &&
1294 	    fit_image_verify_required_sigs(fit, image_noffset, data, size,
1295 					   gd_fdt_blob(), &verify_all)) {
1296 		err_msg = "Unable to verify required signature";
1297 		goto error;
1298 	}
1299 
1300 	/* Process all hash subnodes of the component image node */
1301 	fdt_for_each_subnode(noffset, fit, image_noffset) {
1302 		const char *name = fit_get_name(fit, noffset, NULL);
1303 
1304 		/*
1305 		 * Check subnode name, must be equal to "hash".
1306 		 * Multiple hash nodes require unique unit node
1307 		 * names, e.g. hash@1, hash@2, etc.
1308 		 */
1309 		if (!strncmp(name, FIT_HASH_NODENAME,
1310 			     strlen(FIT_HASH_NODENAME))) {
1311 			if (fit_image_check_hash(fit, noffset, data, size,
1312 						 &err_msg))
1313 				goto error;
1314 			puts("+ ");
1315 		} else if (IMAGE_ENABLE_VERIFY && verify_all &&
1316 				!strncmp(name, FIT_SIG_NODENAME,
1317 					strlen(FIT_SIG_NODENAME))) {
1318 			ret = fit_image_check_sig(fit, noffset, data,
1319 							size, -1, &err_msg);
1320 
1321 			/*
1322 			 * Show an indication on failure, but do not return
1323 			 * an error. Only keys marked 'required' can cause
1324 			 * an image validation failure. See the call to
1325 			 * fit_image_verify_required_sigs() above.
1326 			 */
1327 			if (ret)
1328 				puts("- ");
1329 			else
1330 				puts("+ ");
1331 		}
1332 	}
1333 
1334 	if (noffset == -FDT_ERR_TRUNCATED || noffset == -FDT_ERR_BADSTRUCTURE) {
1335 		err_msg = "Corrupted or truncated tree";
1336 		goto error;
1337 	}
1338 
1339 	return 1; /* success */
1340 
1341 error:
1342 	printf(" error!\n%s for '%s' hash node in '%s' image node\n",
1343 	       err_msg, fit_get_name(fit, noffset, NULL),
1344 	       fit_get_name(fit, image_noffset, NULL));
1345 	return 0;
1346 }
1347 
1348 /**
1349  * fit_image_verify - verify data integrity
1350  * @fit: pointer to the FIT format image header
1351  * @image_noffset: component image node offset
1352  *
1353  * fit_image_verify() goes over component image hash nodes,
1354  * re-calculates each data hash and compares with the value stored in hash
1355  * node.
1356  *
1357  * returns:
1358  *     1, if all hashes are valid
1359  *     0, otherwise (or on error)
1360  */
1361 int fit_image_verify(const void *fit, int image_noffset)
1362 {
1363 	const void	*data;
1364 	size_t		size;
1365 	int		noffset = 0;
1366 	char		*err_msg = "";
1367 
1368 	/* Get image data and data length */
1369 	if (fit_image_get_data(fit, image_noffset, &data, &size)) {
1370 		err_msg = "Can't get image data/size";
1371 		printf("error!\n%s for '%s' hash node in '%s' image node\n",
1372 		       err_msg, fit_get_name(fit, noffset, NULL),
1373 		       fit_get_name(fit, image_noffset, NULL));
1374 		return 0;
1375 	}
1376 
1377 	return fit_image_verify_with_data(fit, image_noffset, data, size);
1378 }
1379 
1380 /**
1381  * fit_all_image_verify - verify data integrity for all images
1382  * @fit: pointer to the FIT format image header
1383  *
1384  * fit_all_image_verify() goes over all images in the FIT and
1385  * for every images checks if all it's hashes are valid.
1386  *
1387  * returns:
1388  *     1, if all hashes of all images are valid
1389  *     0, otherwise (or on error)
1390  */
1391 int fit_all_image_verify(const void *fit)
1392 {
1393 	int images_noffset;
1394 	int noffset;
1395 	int ndepth;
1396 	int count;
1397 
1398 	/* Find images parent node offset */
1399 	images_noffset = fdt_path_offset(fit, FIT_IMAGES_PATH);
1400 	if (images_noffset < 0) {
1401 		printf("Can't find images parent node '%s' (%s)\n",
1402 		       FIT_IMAGES_PATH, fdt_strerror(images_noffset));
1403 		return 0;
1404 	}
1405 
1406 	/* Process all image subnodes, check hashes for each */
1407 	printf("## Checking hash(es) for FIT Image at %08lx ...\n",
1408 	       (ulong)fit);
1409 	for (ndepth = 0, count = 0,
1410 	     noffset = fdt_next_node(fit, images_noffset, &ndepth);
1411 			(noffset >= 0) && (ndepth > 0);
1412 			noffset = fdt_next_node(fit, noffset, &ndepth)) {
1413 		if (ndepth == 1) {
1414 			/*
1415 			 * Direct child node of the images parent node,
1416 			 * i.e. component image node.
1417 			 */
1418 			printf("   Hash(es) for Image %u (%s): ", count,
1419 			       fit_get_name(fit, noffset, NULL));
1420 			count++;
1421 
1422 			if (!fit_image_verify(fit, noffset))
1423 				return 0;
1424 			printf("\n");
1425 		}
1426 	}
1427 	return 1;
1428 }
1429 
1430 /**
1431  * fit_image_check_os - check whether image node is of a given os type
1432  * @fit: pointer to the FIT format image header
1433  * @noffset: component image node offset
1434  * @os: requested image os
1435  *
1436  * fit_image_check_os() reads image os property and compares its numeric
1437  * id with the requested os. Comparison result is returned to the caller.
1438  *
1439  * returns:
1440  *     1 if image is of given os type
1441  *     0 otherwise (or on error)
1442  */
1443 int fit_image_check_os(const void *fit, int noffset, uint8_t os)
1444 {
1445 	uint8_t image_os;
1446 
1447 	if (fit_image_get_os(fit, noffset, &image_os))
1448 		return 0;
1449 	return (os == image_os);
1450 }
1451 
1452 /**
1453  * fit_image_check_arch - check whether image node is of a given arch
1454  * @fit: pointer to the FIT format image header
1455  * @noffset: component image node offset
1456  * @arch: requested imagearch
1457  *
1458  * fit_image_check_arch() reads image arch property and compares its numeric
1459  * id with the requested arch. Comparison result is returned to the caller.
1460  *
1461  * returns:
1462  *     1 if image is of given arch
1463  *     0 otherwise (or on error)
1464  */
1465 int fit_image_check_arch(const void *fit, int noffset, uint8_t arch)
1466 {
1467 	uint8_t image_arch;
1468 	int aarch32_support = 0;
1469 
1470 #ifdef CONFIG_ARM64_SUPPORT_AARCH32
1471 	aarch32_support = 1;
1472 #endif
1473 
1474 	if (fit_image_get_arch(fit, noffset, &image_arch))
1475 		return 0;
1476 	return (arch == image_arch) ||
1477 		(arch == IH_ARCH_I386 && image_arch == IH_ARCH_X86_64) ||
1478 		(arch == IH_ARCH_ARM64 && image_arch == IH_ARCH_ARM &&
1479 		 aarch32_support);
1480 }
1481 
1482 /**
1483  * fit_image_check_type - check whether image node is of a given type
1484  * @fit: pointer to the FIT format image header
1485  * @noffset: component image node offset
1486  * @type: requested image type
1487  *
1488  * fit_image_check_type() reads image type property and compares its numeric
1489  * id with the requested type. Comparison result is returned to the caller.
1490  *
1491  * returns:
1492  *     1 if image is of given type
1493  *     0 otherwise (or on error)
1494  */
1495 int fit_image_check_type(const void *fit, int noffset, uint8_t type)
1496 {
1497 	uint8_t image_type;
1498 
1499 	if (fit_image_get_type(fit, noffset, &image_type))
1500 		return 0;
1501 	return (type == image_type);
1502 }
1503 
1504 /**
1505  * fit_image_check_comp - check whether image node uses given compression
1506  * @fit: pointer to the FIT format image header
1507  * @noffset: component image node offset
1508  * @comp: requested image compression type
1509  *
1510  * fit_image_check_comp() reads image compression property and compares its
1511  * numeric id with the requested compression type. Comparison result is
1512  * returned to the caller.
1513  *
1514  * returns:
1515  *     1 if image uses requested compression
1516  *     0 otherwise (or on error)
1517  */
1518 int fit_image_check_comp(const void *fit, int noffset, uint8_t comp)
1519 {
1520 	uint8_t image_comp;
1521 
1522 	if (fit_image_get_comp(fit, noffset, &image_comp))
1523 		return 0;
1524 	return (comp == image_comp);
1525 }
1526 
1527 /**
1528  * fit_check_format - sanity check FIT image format
1529  * @fit: pointer to the FIT format image header
1530  *
1531  * fit_check_format() runs a basic sanity FIT image verification.
1532  * Routine checks for mandatory properties, nodes, etc.
1533  *
1534  * returns:
1535  *     1, on success
1536  *     0, on failure
1537  */
1538 int fit_check_format(const void *fit)
1539 {
1540 	/* mandatory / node 'description' property */
1541 	if (fdt_getprop(fit, 0, FIT_DESC_PROP, NULL) == NULL) {
1542 		debug("Wrong FIT format: no description\n");
1543 		return 0;
1544 	}
1545 
1546 	if (IMAGE_ENABLE_TIMESTAMP) {
1547 		/* mandatory / node 'timestamp' property */
1548 		if (fdt_getprop(fit, 0, FIT_TIMESTAMP_PROP, NULL) == NULL) {
1549 			debug("Wrong FIT format: no timestamp\n");
1550 			return 0;
1551 		}
1552 	}
1553 
1554 	/* mandatory subimages parent '/images' node */
1555 	if (fdt_path_offset(fit, FIT_IMAGES_PATH) < 0) {
1556 		debug("Wrong FIT format: no images parent node\n");
1557 		return 0;
1558 	}
1559 
1560 	return 1;
1561 }
1562 
1563 
1564 /**
1565  * fit_conf_find_compat
1566  * @fit: pointer to the FIT format image header
1567  * @fdt: pointer to the device tree to compare against
1568  *
1569  * fit_conf_find_compat() attempts to find the configuration whose fdt is the
1570  * most compatible with the passed in device tree.
1571  *
1572  * Example:
1573  *
1574  * / o image-tree
1575  *   |-o images
1576  *   | |-o fdt@1
1577  *   | |-o fdt@2
1578  *   |
1579  *   |-o configurations
1580  *     |-o config@1
1581  *     | |-fdt = fdt@1
1582  *     |
1583  *     |-o config@2
1584  *       |-fdt = fdt@2
1585  *
1586  * / o U-Boot fdt
1587  *   |-compatible = "foo,bar", "bim,bam"
1588  *
1589  * / o kernel fdt1
1590  *   |-compatible = "foo,bar",
1591  *
1592  * / o kernel fdt2
1593  *   |-compatible = "bim,bam", "baz,biz"
1594  *
1595  * Configuration 1 would be picked because the first string in U-Boot's
1596  * compatible list, "foo,bar", matches a compatible string in the root of fdt1.
1597  * "bim,bam" in fdt2 matches the second string which isn't as good as fdt1.
1598  *
1599  * returns:
1600  *     offset to the configuration to use if one was found
1601  *     -1 otherwise
1602  */
1603 int fit_conf_find_compat(const void *fit, const void *fdt)
1604 {
1605 	int ndepth = 0;
1606 	int noffset, confs_noffset, images_noffset;
1607 	const void *fdt_compat;
1608 	int fdt_compat_len;
1609 	int best_match_offset = 0;
1610 	int best_match_pos = 0;
1611 
1612 	confs_noffset = fdt_path_offset(fit, FIT_CONFS_PATH);
1613 	images_noffset = fdt_path_offset(fit, FIT_IMAGES_PATH);
1614 	if (confs_noffset < 0 || images_noffset < 0) {
1615 		debug("Can't find configurations or images nodes.\n");
1616 		return -1;
1617 	}
1618 
1619 	fdt_compat = fdt_getprop(fdt, 0, "compatible", &fdt_compat_len);
1620 	if (!fdt_compat) {
1621 		debug("Fdt for comparison has no \"compatible\" property.\n");
1622 		return -1;
1623 	}
1624 
1625 	/*
1626 	 * Loop over the configurations in the FIT image.
1627 	 */
1628 	for (noffset = fdt_next_node(fit, confs_noffset, &ndepth);
1629 			(noffset >= 0) && (ndepth > 0);
1630 			noffset = fdt_next_node(fit, noffset, &ndepth)) {
1631 		const void *kfdt;
1632 		const char *kfdt_name;
1633 		int kfdt_noffset;
1634 		const char *cur_fdt_compat;
1635 		int len;
1636 		size_t size;
1637 		int i;
1638 
1639 		if (ndepth > 1)
1640 			continue;
1641 
1642 		kfdt_name = fdt_getprop(fit, noffset, "fdt", &len);
1643 		if (!kfdt_name) {
1644 			debug("No fdt property found.\n");
1645 			continue;
1646 		}
1647 		kfdt_noffset = fdt_subnode_offset(fit, images_noffset,
1648 						  kfdt_name);
1649 		if (kfdt_noffset < 0) {
1650 			debug("No image node named \"%s\" found.\n",
1651 			      kfdt_name);
1652 			continue;
1653 		}
1654 		/*
1655 		 * Get a pointer to this configuration's fdt.
1656 		 */
1657 		if (fit_image_get_data(fit, kfdt_noffset, &kfdt, &size)) {
1658 			debug("Failed to get fdt \"%s\".\n", kfdt_name);
1659 			continue;
1660 		}
1661 
1662 		len = fdt_compat_len;
1663 		cur_fdt_compat = fdt_compat;
1664 		/*
1665 		 * Look for a match for each U-Boot compatibility string in
1666 		 * turn in this configuration's fdt.
1667 		 */
1668 		for (i = 0; len > 0 &&
1669 		     (!best_match_offset || best_match_pos > i); i++) {
1670 			int cur_len = strlen(cur_fdt_compat) + 1;
1671 
1672 			if (!fdt_node_check_compatible(kfdt, 0,
1673 						       cur_fdt_compat)) {
1674 				best_match_offset = noffset;
1675 				best_match_pos = i;
1676 				break;
1677 			}
1678 			len -= cur_len;
1679 			cur_fdt_compat += cur_len;
1680 		}
1681 	}
1682 	if (!best_match_offset) {
1683 		debug("No match found.\n");
1684 		return -1;
1685 	}
1686 
1687 	return best_match_offset;
1688 }
1689 
1690 /**
1691  * fit_conf_get_node - get node offset for configuration of a given unit name
1692  * @fit: pointer to the FIT format image header
1693  * @conf_uname: configuration node unit name
1694  *
1695  * fit_conf_get_node() finds a configuration (within the '/configurations'
1696  * parent node) of a provided unit name. If configuration is found its node
1697  * offset is returned to the caller.
1698  *
1699  * When NULL is provided in second argument fit_conf_get_node() will search
1700  * for a default configuration node instead. Default configuration node unit
1701  * name is retrieved from FIT_DEFAULT_PROP property of the '/configurations'
1702  * node.
1703  *
1704  * returns:
1705  *     configuration node offset when found (>=0)
1706  *     negative number on failure (FDT_ERR_* code)
1707  */
1708 int fit_conf_get_node(const void *fit, const char *conf_uname)
1709 {
1710 	int noffset, confs_noffset;
1711 	int len;
1712 	const char *s;
1713 	char *conf_uname_copy = NULL;
1714 
1715 	confs_noffset = fdt_path_offset(fit, FIT_CONFS_PATH);
1716 	if (confs_noffset < 0) {
1717 		debug("Can't find configurations parent node '%s' (%s)\n",
1718 		      FIT_CONFS_PATH, fdt_strerror(confs_noffset));
1719 		return confs_noffset;
1720 	}
1721 
1722 	if (conf_uname == NULL) {
1723 		/* get configuration unit name from the default property */
1724 		debug("No configuration specified, trying default...\n");
1725 		conf_uname = (char *)fdt_getprop(fit, confs_noffset,
1726 						 FIT_DEFAULT_PROP, &len);
1727 		if (conf_uname == NULL) {
1728 			fit_get_debug(fit, confs_noffset, FIT_DEFAULT_PROP,
1729 				      len);
1730 			return len;
1731 		}
1732 		debug("Found default configuration: '%s'\n", conf_uname);
1733 	}
1734 
1735 	s = strchr(conf_uname, '#');
1736 	if (s) {
1737 		len = s - conf_uname;
1738 		conf_uname_copy = malloc(len + 1);
1739 		if (!conf_uname_copy) {
1740 			debug("Can't allocate uname copy: '%s'\n",
1741 					conf_uname);
1742 			return -ENOMEM;
1743 		}
1744 		memcpy(conf_uname_copy, conf_uname, len);
1745 		conf_uname_copy[len] = '\0';
1746 		conf_uname = conf_uname_copy;
1747 	}
1748 
1749 	noffset = fdt_subnode_offset(fit, confs_noffset, conf_uname);
1750 	if (noffset < 0) {
1751 		debug("Can't get node offset for configuration unit name: '%s' (%s)\n",
1752 		      conf_uname, fdt_strerror(noffset));
1753 	}
1754 
1755 	if (conf_uname_copy)
1756 		free(conf_uname_copy);
1757 
1758 	return noffset;
1759 }
1760 
1761 int fit_conf_get_prop_node_count(const void *fit, int noffset,
1762 		const char *prop_name)
1763 {
1764 	return fdt_stringlist_count(fit, noffset, prop_name);
1765 }
1766 
1767 int fit_conf_get_prop_node_index(const void *fit, int noffset,
1768 		const char *prop_name, int index)
1769 {
1770 	const char *uname;
1771 	int len;
1772 
1773 	/* get kernel image unit name from configuration kernel property */
1774 	uname = fdt_stringlist_get(fit, noffset, prop_name, index, &len);
1775 	if (uname == NULL)
1776 		return len;
1777 
1778 	return fit_image_get_node(fit, uname);
1779 }
1780 
1781 int fit_conf_get_prop_node(const void *fit, int noffset,
1782 		const char *prop_name)
1783 {
1784 	return fit_conf_get_prop_node_index(fit, noffset, prop_name, 0);
1785 }
1786 
1787 /**
1788  * fit_conf_print - prints out the FIT configuration details
1789  * @fit: pointer to the FIT format image header
1790  * @noffset: offset of the configuration node
1791  * @p: pointer to prefix string
1792  *
1793  * fit_conf_print() lists all mandatory properties for the processed
1794  * configuration node.
1795  *
1796  * returns:
1797  *     no returned results
1798  */
1799 void fit_conf_print(const void *fit, int noffset, const char *p)
1800 {
1801 	char *desc;
1802 	const char *uname;
1803 	int ret;
1804 	int fdt_index, loadables_index;
1805 
1806 	/* Mandatory properties */
1807 	ret = fit_get_desc(fit, noffset, &desc);
1808 	printf("%s  Description:  ", p);
1809 	if (ret)
1810 		printf("unavailable\n");
1811 	else
1812 		printf("%s\n", desc);
1813 
1814 	uname = fdt_getprop(fit, noffset, FIT_KERNEL_PROP, NULL);
1815 	printf("%s  Kernel:       ", p);
1816 	if (uname == NULL)
1817 		printf("unavailable\n");
1818 	else
1819 		printf("%s\n", uname);
1820 
1821 	/* Optional properties */
1822 	uname = fdt_getprop(fit, noffset, FIT_RAMDISK_PROP, NULL);
1823 	if (uname)
1824 		printf("%s  Init Ramdisk: %s\n", p, uname);
1825 
1826 	uname = fdt_getprop(fit, noffset, FIT_FIRMWARE_PROP, NULL);
1827 	if (uname)
1828 		printf("%s  Firmware:     %s\n", p, uname);
1829 
1830 	for (fdt_index = 0;
1831 	     uname = fdt_stringlist_get(fit, noffset, FIT_FDT_PROP,
1832 					fdt_index, NULL), uname;
1833 	     fdt_index++) {
1834 
1835 		if (fdt_index == 0)
1836 			printf("%s  FDT:          ", p);
1837 		else
1838 			printf("%s                ", p);
1839 		printf("%s\n", uname);
1840 	}
1841 
1842 	uname = fdt_getprop(fit, noffset, FIT_FPGA_PROP, NULL);
1843 	if (uname)
1844 		printf("%s  FPGA:         %s\n", p, uname);
1845 
1846 	/* Print out all of the specified loadables */
1847 	for (loadables_index = 0;
1848 	     uname = fdt_stringlist_get(fit, noffset, FIT_LOADABLE_PROP,
1849 					loadables_index, NULL), uname;
1850 	     loadables_index++) {
1851 		if (loadables_index == 0) {
1852 			printf("%s  Loadables:    ", p);
1853 		} else {
1854 			printf("%s                ", p);
1855 		}
1856 		printf("%s\n", uname);
1857 	}
1858 }
1859 
1860 static int fit_image_select(const void *fit, int rd_noffset, int verify)
1861 {
1862 	fit_image_print(fit, rd_noffset, "   ");
1863 
1864 	if (verify) {
1865 		puts("   Verifying Hash Integrity ... ");
1866 		if (!fit_image_verify(fit, rd_noffset)) {
1867 			puts("Bad Data Hash\n");
1868 			return -EACCES;
1869 		}
1870 		puts("OK\n");
1871 	}
1872 
1873 	return 0;
1874 }
1875 
1876 int fit_get_node_from_config(bootm_headers_t *images, const char *prop_name,
1877 			ulong addr)
1878 {
1879 	int cfg_noffset;
1880 	void *fit_hdr;
1881 	int noffset;
1882 
1883 	debug("*  %s: using config '%s' from image at 0x%08lx\n",
1884 	      prop_name, images->fit_uname_cfg, addr);
1885 
1886 	/* Check whether configuration has this property defined */
1887 	fit_hdr = map_sysmem(addr, 0);
1888 	cfg_noffset = fit_conf_get_node(fit_hdr, images->fit_uname_cfg);
1889 	if (cfg_noffset < 0) {
1890 		debug("*  %s: no such config\n", prop_name);
1891 		return -EINVAL;
1892 	}
1893 
1894 	noffset = fit_conf_get_prop_node(fit_hdr, cfg_noffset, prop_name);
1895 	if (noffset < 0) {
1896 		debug("*  %s: no '%s' in config\n", prop_name, prop_name);
1897 		return -ENOENT;
1898 	}
1899 
1900 	return noffset;
1901 }
1902 
1903 /**
1904  * fit_get_image_type_property() - get property name for IH_TYPE_...
1905  *
1906  * @return the properly name where we expect to find the image in the
1907  * config node
1908  */
1909 static const char *fit_get_image_type_property(int type)
1910 {
1911 	/*
1912 	 * This is sort-of available in the uimage_type[] table in image.c
1913 	 * but we don't have access to the short name, and "fdt" is different
1914 	 * anyway. So let's just keep it here.
1915 	 */
1916 	switch (type) {
1917 	case IH_TYPE_FLATDT:
1918 		return FIT_FDT_PROP;
1919 	case IH_TYPE_KERNEL:
1920 		return FIT_KERNEL_PROP;
1921 	case IH_TYPE_RAMDISK:
1922 		return FIT_RAMDISK_PROP;
1923 	case IH_TYPE_FIRMWARE:
1924 		return FIT_FIRMWARE_PROP;
1925 	case IH_TYPE_X86_SETUP:
1926 		return FIT_SETUP_PROP;
1927 	case IH_TYPE_LOADABLE:
1928 		return FIT_LOADABLE_PROP;
1929 	case IH_TYPE_FPGA:
1930 		return FIT_FPGA_PROP;
1931 	case IH_TYPE_STANDALONE:
1932 		return FIT_STANDALONE_PROP;
1933 	}
1934 
1935 	return "unknown";
1936 }
1937 
1938 #ifndef USE_HOSTCC
1939 __weak int fit_board_verify_required_sigs(void)
1940 {
1941 	return 0;
1942 }
1943 #endif
1944 
1945 int fit_image_load_index(bootm_headers_t *images, ulong addr,
1946 			 const char **fit_unamep, const char **fit_uname_configp,
1947 			 int arch, int image_type, int image_index, int bootstage_id,
1948 			 enum fit_load_op load_op, ulong *datap, ulong *lenp)
1949 {
1950 	int cfg_noffset, noffset;
1951 	const char *fit_uname;
1952 	const char *fit_uname_config;
1953 	const char *fit_base_uname_config;
1954 	const void *fit;
1955 	const void *buf;
1956 	size_t size;
1957 	int type_ok, os_ok;
1958 	ulong load, data, len;
1959 	uint8_t os;
1960 #ifndef USE_HOSTCC
1961 	uint8_t os_arch;
1962 #endif
1963 	const char *prop_name;
1964 	int ret;
1965 
1966 	fit = map_sysmem(addr, 0);
1967 	fit_uname = fit_unamep ? *fit_unamep : NULL;
1968 	fit_uname_config = fit_uname_configp ? *fit_uname_configp : NULL;
1969 	fit_base_uname_config = NULL;
1970 	prop_name = fit_get_image_type_property(image_type);
1971 	printf("## Loading %s from FIT Image at %08lx ...\n", prop_name, addr);
1972 
1973 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_FORMAT);
1974 	if (!fit_check_format(fit)) {
1975 		printf("Bad FIT %s image format!\n", prop_name);
1976 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_FORMAT);
1977 		return -ENOEXEC;
1978 	}
1979 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_FORMAT_OK);
1980 	if (fit_uname) {
1981 		/* get FIT component image node offset */
1982 		bootstage_mark(bootstage_id + BOOTSTAGE_SUB_UNIT_NAME);
1983 		noffset = fit_image_get_node(fit, fit_uname);
1984 	} else {
1985 		/*
1986 		 * no image node unit name, try to get config
1987 		 * node first. If config unit node name is NULL
1988 		 * fit_conf_get_node() will try to find default config node
1989 		 */
1990 		bootstage_mark(bootstage_id + BOOTSTAGE_SUB_NO_UNIT_NAME);
1991 		if (IMAGE_ENABLE_BEST_MATCH && !fit_uname_config) {
1992 			cfg_noffset = fit_conf_find_compat(fit, gd_fdt_blob());
1993 		} else {
1994 			cfg_noffset = fit_conf_get_node(fit,
1995 							fit_uname_config);
1996 		}
1997 		if (cfg_noffset < 0) {
1998 			puts("Could not find configuration node\n");
1999 			bootstage_error(bootstage_id +
2000 					BOOTSTAGE_SUB_NO_UNIT_NAME);
2001 			return -ENOENT;
2002 		}
2003 		fit_base_uname_config = fdt_get_name(fit, cfg_noffset, NULL);
2004 		printf("   Using '%s' configuration\n", fit_base_uname_config);
2005 		if (image_type == IH_TYPE_KERNEL) {
2006 #ifndef USE_HOSTCC
2007 			/* If board required sigs, check self */
2008 			if (fit_board_verify_required_sigs() &&
2009 			    !IS_ENABLED(CONFIG_FIT_SIGNATURE)) {
2010 				printf("Verified-boot requires CONFIG_FIT_SIGNATURE enabled\n");
2011 				hang();
2012 			}
2013 #endif
2014 			/* Remember (and possibly verify) this config */
2015 			images->fit_uname_cfg = fit_base_uname_config;
2016 			if (IMAGE_ENABLE_VERIFY) {
2017 				puts("   Verifying Hash Integrity ... ");
2018 				if (fit_config_verify(fit, cfg_noffset)) {
2019 					puts("Bad Data Hash\n");
2020 					bootstage_error(bootstage_id +
2021 						BOOTSTAGE_SUB_HASH);
2022 					return -EACCES;
2023 				}
2024 				puts("OK\n");
2025 
2026 #ifdef CONFIG_FIT_ROLLBACK_PROTECT
2027 				uint32_t this_index, min_index;
2028 
2029 				puts("   Verifying Rollback-index ... ");
2030 				if (fit_rollback_index_verify(fit,
2031 						FIT_ROLLBACK_INDEX,
2032 						&this_index, &min_index)) {
2033 					puts("Failed to get index\n");
2034 					return ret;
2035 				} else if (this_index < min_index) {
2036 					printf("Reject index %d < %d(min)\n",
2037 					       this_index, min_index);
2038 					return -EINVAL;
2039 				}
2040 
2041 				printf("%d >= %d(min), OK\n", this_index, min_index);
2042 #endif
2043 			}
2044 			bootstage_mark(BOOTSTAGE_ID_FIT_CONFIG);
2045 		}
2046 
2047 		noffset = fit_conf_get_prop_node_index(fit, cfg_noffset,
2048 						       prop_name, image_index);
2049 		fit_uname = fit_get_name(fit, noffset, NULL);
2050 	}
2051 	if (noffset < 0) {
2052 		puts("Could not find subimage node\n");
2053 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_SUBNODE);
2054 		return -ENOENT;
2055 	}
2056 
2057 	printf("   Trying '%s' %s subimage\n", fit_uname, prop_name);
2058 
2059 	ret = fit_image_select(fit, noffset, images->verify);
2060 	if (ret) {
2061 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_HASH);
2062 		return ret;
2063 	}
2064 
2065 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_CHECK_ARCH);
2066 #if !defined(USE_HOSTCC) && !defined(CONFIG_SANDBOX)
2067 	if (!fit_image_check_target_arch(fit, noffset)) {
2068 		puts("Unsupported Architecture\n");
2069 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_CHECK_ARCH);
2070 		return -ENOEXEC;
2071 	}
2072 #endif
2073 
2074 #ifndef USE_HOSTCC
2075 	fit_image_get_arch(fit, noffset, &os_arch);
2076 	images->os.arch = os_arch;
2077 #endif
2078 
2079 	if (image_type == IH_TYPE_FLATDT &&
2080 	    !fit_image_check_comp(fit, noffset, IH_COMP_NONE)) {
2081 		puts("FDT image is compressed");
2082 		return -EPROTONOSUPPORT;
2083 	}
2084 
2085 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_CHECK_ALL);
2086 	type_ok = fit_image_check_type(fit, noffset, image_type) ||
2087 		  fit_image_check_type(fit, noffset, IH_TYPE_FIRMWARE) ||
2088 		  (image_type == IH_TYPE_KERNEL &&
2089 		   fit_image_check_type(fit, noffset, IH_TYPE_KERNEL_NOLOAD));
2090 
2091 	os_ok = image_type == IH_TYPE_FLATDT ||
2092 		image_type == IH_TYPE_FPGA ||
2093 		fit_image_check_os(fit, noffset, IH_OS_LINUX) ||
2094 		fit_image_check_os(fit, noffset, IH_OS_ARM_TRUSTED_FIRMWARE) ||
2095 		fit_image_check_os(fit, noffset, IH_OS_OP_TEE) ||
2096 		fit_image_check_os(fit, noffset, IH_OS_U_BOOT) ||
2097 		fit_image_check_os(fit, noffset, IH_OS_OPENRTOS);
2098 
2099 	/*
2100 	 * If either of the checks fail, we should report an error, but
2101 	 * if the image type is coming from the "loadables" field, we
2102 	 * don't care what it is
2103 	 */
2104 	if ((!type_ok || !os_ok) && image_type != IH_TYPE_LOADABLE) {
2105 		fit_image_get_os(fit, noffset, &os);
2106 		printf("No %s %s %s Image\n",
2107 		       genimg_get_os_name(os),
2108 		       genimg_get_arch_name(arch),
2109 		       genimg_get_type_name(image_type));
2110 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_CHECK_ALL);
2111 		return -EIO;
2112 	}
2113 
2114 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_CHECK_ALL_OK);
2115 
2116 	/* get image data address and length */
2117 	if (fit_image_get_data(fit, noffset, &buf, &size)) {
2118 		printf("Could not find %s subimage data!\n", prop_name);
2119 		bootstage_error(bootstage_id + BOOTSTAGE_SUB_GET_DATA);
2120 		return -ENOENT;
2121 	}
2122 
2123 #if !defined(USE_HOSTCC) && defined(CONFIG_FIT_IMAGE_POST_PROCESS)
2124 	/* perform any post-processing on the image data */
2125 	board_fit_image_post_process((void **)&buf, &size);
2126 #endif
2127 
2128 	len = (ulong)size;
2129 
2130 	/* verify that image data is a proper FDT blob */
2131 	if (image_type == IH_TYPE_FLATDT && fdt_check_header(buf)) {
2132 		puts("Subimage data is not a FDT");
2133 		return -ENOEXEC;
2134 	}
2135 
2136 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_GET_DATA_OK);
2137 
2138 	/*
2139 	 * Work-around for eldk-4.2 which gives this warning if we try to
2140 	 * cast in the unmap_sysmem() call:
2141 	 * warning: initialization discards qualifiers from pointer target type
2142 	 */
2143 	{
2144 		void *vbuf = (void *)buf;
2145 
2146 		data = map_to_sysmem(vbuf);
2147 	}
2148 
2149 	if (load_op == FIT_LOAD_IGNORED) {
2150 		/* Don't load */
2151 	} else if (fit_image_get_load(fit, noffset, &load)) {
2152 		if (load_op == FIT_LOAD_REQUIRED) {
2153 			printf("Can't get %s subimage load address!\n",
2154 			       prop_name);
2155 			bootstage_error(bootstage_id + BOOTSTAGE_SUB_LOAD);
2156 			return -EBADF;
2157 		}
2158 	} else if (load_op != FIT_LOAD_OPTIONAL_NON_ZERO || load) {
2159 		ulong image_start, image_end;
2160 		ulong load_end;
2161 		void *dst;
2162 
2163 		/*
2164 		 * move image data to the load address,
2165 		 * make sure we don't overwrite initial image
2166 		 */
2167 		image_start = addr;
2168 		image_end = addr + fit_get_size(fit);
2169 
2170 		load_end = load + len;
2171 		if (image_type != IH_TYPE_KERNEL &&
2172 		    load < image_end && load_end > image_start) {
2173 			printf("Error: %s overwritten\n", prop_name);
2174 			return -EXDEV;
2175 		}
2176 
2177 		printf("   Loading %s from 0x%08lx to 0x%08lx\n",
2178 		       prop_name, data, load);
2179 
2180 		dst = map_sysmem(load, len);
2181 		memmove(dst, buf, len);
2182 		data = load;
2183 	}
2184 	bootstage_mark(bootstage_id + BOOTSTAGE_SUB_LOAD);
2185 
2186 	*datap = data;
2187 	*lenp = len;
2188 	if (fit_unamep)
2189 		*fit_unamep = (char *)fit_uname;
2190 	if (fit_uname_configp)
2191 		*fit_uname_configp = (char *)(fit_uname_config ? :
2192 					      fit_base_uname_config);
2193 
2194 	return noffset;
2195 }
2196 
2197 int fit_image_load(bootm_headers_t *images, ulong addr,
2198 		   const char **fit_unamep, const char **fit_uname_configp,
2199 		   int arch, int image_type, int bootstage_id,
2200 		   enum fit_load_op load_op, ulong *datap, ulong *lenp)
2201 {
2202 	return fit_image_load_index(images, addr,fit_unamep, fit_uname_configp,
2203 				    arch, image_type, 0, bootstage_id,
2204 				    load_op, datap, lenp);
2205 }
2206 
2207 int boot_get_setup_fit(bootm_headers_t *images, uint8_t arch,
2208 			ulong *setup_start, ulong *setup_len)
2209 {
2210 	int noffset;
2211 	ulong addr;
2212 	ulong len;
2213 	int ret;
2214 
2215 	addr = map_to_sysmem(images->fit_hdr_os);
2216 	noffset = fit_get_node_from_config(images, FIT_SETUP_PROP, addr);
2217 	if (noffset < 0)
2218 		return noffset;
2219 
2220 	ret = fit_image_load(images, addr, NULL, NULL, arch,
2221 			     IH_TYPE_X86_SETUP, BOOTSTAGE_ID_FIT_SETUP_START,
2222 			     FIT_LOAD_REQUIRED, setup_start, &len);
2223 
2224 	return ret;
2225 }
2226 
2227 #ifndef USE_HOSTCC
2228 int boot_get_fdt_fit(bootm_headers_t *images, ulong addr,
2229 		   const char **fit_unamep, const char **fit_uname_configp,
2230 		   int arch, ulong *datap, ulong *lenp)
2231 {
2232 	int fdt_noffset, cfg_noffset, count;
2233 	const void *fit;
2234 	const char *fit_uname = NULL;
2235 	const char *fit_uname_config = NULL;
2236 	char *fit_uname_config_copy = NULL;
2237 	char *next_config = NULL;
2238 	ulong load, len;
2239 #ifdef CONFIG_OF_LIBFDT_OVERLAY
2240 	ulong image_start, image_end;
2241 	ulong ovload, ovlen;
2242 	const char *uconfig;
2243 	const char *uname;
2244 	void *base, *ov;
2245 	int i, err, noffset, ov_noffset;
2246 #endif
2247 
2248 	fit_uname = fit_unamep ? *fit_unamep : NULL;
2249 
2250 	if (fit_uname_configp && *fit_uname_configp) {
2251 		fit_uname_config_copy = strdup(*fit_uname_configp);
2252 		if (!fit_uname_config_copy)
2253 			return -ENOMEM;
2254 
2255 		next_config = strchr(fit_uname_config_copy, '#');
2256 		if (next_config)
2257 			*next_config++ = '\0';
2258 		if (next_config - 1 > fit_uname_config_copy)
2259 			fit_uname_config = fit_uname_config_copy;
2260 	}
2261 
2262 	fdt_noffset = fit_image_load(images,
2263 		addr, &fit_uname, &fit_uname_config,
2264 		arch, IH_TYPE_FLATDT,
2265 		BOOTSTAGE_ID_FIT_FDT_START,
2266 		FIT_LOAD_OPTIONAL, &load, &len);
2267 
2268 	if (fdt_noffset < 0)
2269 		goto out;
2270 
2271 	debug("fit_uname=%s, fit_uname_config=%s\n",
2272 			fit_uname ? fit_uname : "<NULL>",
2273 			fit_uname_config ? fit_uname_config : "<NULL>");
2274 
2275 	fit = map_sysmem(addr, 0);
2276 
2277 	cfg_noffset = fit_conf_get_node(fit, fit_uname_config);
2278 
2279 	/* single blob, or error just return as well */
2280 	count = fit_conf_get_prop_node_count(fit, cfg_noffset, FIT_FDT_PROP);
2281 	if (count <= 1 && !next_config)
2282 		goto out;
2283 
2284 	/* we need to apply overlays */
2285 
2286 #ifdef CONFIG_OF_LIBFDT_OVERLAY
2287 	image_start = addr;
2288 	image_end = addr + fit_get_size(fit);
2289 	/* verify that relocation took place by load address not being in fit */
2290 	if (load >= image_start && load < image_end) {
2291 		/* check is simplified; fit load checks for overlaps */
2292 		printf("Overlayed FDT requires relocation\n");
2293 		fdt_noffset = -EBADF;
2294 		goto out;
2295 	}
2296 
2297 	base = map_sysmem(load, len);
2298 
2299 	/* apply extra configs in FIT first, followed by args */
2300 	for (i = 1; ; i++) {
2301 		if (i < count) {
2302 			noffset = fit_conf_get_prop_node_index(fit, cfg_noffset,
2303 							       FIT_FDT_PROP, i);
2304 			uname = fit_get_name(fit, noffset, NULL);
2305 			uconfig = NULL;
2306 		} else {
2307 			if (!next_config)
2308 				break;
2309 			uconfig = next_config;
2310 			next_config = strchr(next_config, '#');
2311 			if (next_config)
2312 				*next_config++ = '\0';
2313 			uname = NULL;
2314 		}
2315 
2316 		debug("%d: using uname=%s uconfig=%s\n", i, uname, uconfig);
2317 
2318 		ov_noffset = fit_image_load(images,
2319 			addr, &uname, &uconfig,
2320 			arch, IH_TYPE_FLATDT,
2321 			BOOTSTAGE_ID_FIT_FDT_START,
2322 			FIT_LOAD_REQUIRED, &ovload, &ovlen);
2323 		if (ov_noffset < 0) {
2324 			printf("load of %s failed\n", uname);
2325 			continue;
2326 		}
2327 		debug("%s loaded at 0x%08lx len=0x%08lx\n",
2328 				uname, ovload, ovlen);
2329 		ov = map_sysmem(ovload, ovlen);
2330 
2331 		base = map_sysmem(load, len + ovlen);
2332 		err = fdt_open_into(base, base, len + ovlen);
2333 		if (err < 0) {
2334 			printf("failed on fdt_open_into\n");
2335 			fdt_noffset = err;
2336 			goto out;
2337 		}
2338 		/* the verbose method prints out messages on error */
2339 		err = fdt_overlay_apply_verbose(base, ov);
2340 		if (err < 0) {
2341 			fdt_noffset = err;
2342 			goto out;
2343 		}
2344 		fdt_pack(base);
2345 		len = fdt_totalsize(base);
2346 	}
2347 #else
2348 	printf("config with overlays but CONFIG_OF_LIBFDT_OVERLAY not set\n");
2349 	fdt_noffset = -EBADF;
2350 #endif
2351 
2352 out:
2353 	if (datap)
2354 		*datap = load;
2355 	if (lenp)
2356 		*lenp = len;
2357 	if (fit_unamep)
2358 		*fit_unamep = fit_uname;
2359 	if (fit_uname_configp)
2360 		*fit_uname_configp = fit_uname_config;
2361 
2362 	if (fit_uname_config_copy)
2363 		free(fit_uname_config_copy);
2364 	return fdt_noffset;
2365 }
2366 #endif
2367