1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (C) 2016 Google, Inc
4  * Written by Simon Glass <sjg@chromium.org>
5  */
6 
7 #include <common.h>
8 #include <errno.h>
9 #include <fpga.h>
10 #include <gzip.h>
11 #include <image.h>
12 #include <log.h>
13 #include <malloc.h>
14 #include <spl.h>
15 #include <sysinfo.h>
16 #include <asm/cache.h>
17 #include <asm/global_data.h>
18 #include <linux/libfdt.h>
19 
20 DECLARE_GLOBAL_DATA_PTR;
21 
22 #ifndef CONFIG_SPL_LOAD_FIT_APPLY_OVERLAY_BUF_SZ
23 #define CONFIG_SPL_LOAD_FIT_APPLY_OVERLAY_BUF_SZ (64 * 1024)
24 #endif
25 
26 #ifndef CONFIG_SYS_BOOTM_LEN
27 #define CONFIG_SYS_BOOTM_LEN	(64 << 20)
28 #endif
29 
30 struct spl_fit_info {
31 	const void *fit;	/* Pointer to a valid FIT blob */
32 	size_t ext_data_offset;	/* Offset to FIT external data (end of FIT) */
33 	int images_node;	/* FDT offset to "/images" node */
34 	int conf_node;		/* FDT offset to selected configuration node */
35 };
36 
board_spl_fit_post_load(const void * fit)37 __weak void board_spl_fit_post_load(const void *fit)
38 {
39 }
40 
board_spl_fit_size_align(ulong size)41 __weak ulong board_spl_fit_size_align(ulong size)
42 {
43 	return size;
44 }
45 
find_node_from_desc(const void * fit,int node,const char * str)46 static int find_node_from_desc(const void *fit, int node, const char *str)
47 {
48 	int child;
49 
50 	if (node < 0)
51 		return -EINVAL;
52 
53 	/* iterate the FIT nodes and find a matching description */
54 	for (child = fdt_first_subnode(fit, node); child >= 0;
55 	     child = fdt_next_subnode(fit, child)) {
56 		int len;
57 		const char *desc = fdt_getprop(fit, child, "description", &len);
58 
59 		if (!desc)
60 			continue;
61 
62 		if (!strcmp(desc, str))
63 			return child;
64 	}
65 
66 	return -ENOENT;
67 }
68 
69 /**
70  * spl_fit_get_image_name(): By using the matching configuration subnode,
71  * retrieve the name of an image, specified by a property name and an index
72  * into that.
73  * @fit:	Pointer to the FDT blob.
74  * @images:	Offset of the /images subnode.
75  * @type:	Name of the property within the configuration subnode.
76  * @index:	Index into the list of strings in this property.
77  * @outname:	Name of the image
78  *
79  * Return:	0 on success, or a negative error number
80  */
spl_fit_get_image_name(const struct spl_fit_info * ctx,const char * type,int index,const char ** outname)81 static int spl_fit_get_image_name(const struct spl_fit_info *ctx,
82 				  const char *type, int index,
83 				  const char **outname)
84 {
85 	struct udevice *sysinfo;
86 	const char *name, *str;
87 	__maybe_unused int node;
88 	int len, i;
89 	bool found = true;
90 
91 	name = fdt_getprop(ctx->fit, ctx->conf_node, type, &len);
92 	if (!name) {
93 		debug("cannot find property '%s': %d\n", type, len);
94 		return -EINVAL;
95 	}
96 
97 	str = name;
98 	for (i = 0; i < index; i++) {
99 		str = strchr(str, '\0') + 1;
100 		if (!str || (str - name >= len)) {
101 			found = false;
102 			break;
103 		}
104 	}
105 
106 	if (!found && CONFIG_IS_ENABLED(SYSINFO) && !sysinfo_get(&sysinfo)) {
107 		int rc;
108 		/*
109 		 * no string in the property for this index. Check if the
110 		 * sysinfo-level code can supply one.
111 		 */
112 		rc = sysinfo_get_fit_loadable(sysinfo, index - i - 1, type,
113 					      &str);
114 		if (rc && rc != -ENOENT)
115 			return rc;
116 
117 		if (!rc) {
118 			/*
119 			 * The sysinfo provided a name for a loadable.
120 			 * Try to match it against the description properties
121 			 * first. If no matching node is found, use it as a
122 			 * node name.
123 			 */
124 			int node;
125 			int images = fdt_path_offset(ctx->fit, FIT_IMAGES_PATH);
126 
127 			node = find_node_from_desc(ctx->fit, images, str);
128 			if (node > 0)
129 				str = fdt_get_name(ctx->fit, node, NULL);
130 
131 			found = true;
132 		}
133 	}
134 
135 	if (!found) {
136 		debug("no string for index %d\n", index);
137 		return -E2BIG;
138 	}
139 
140 	*outname = str;
141 	return 0;
142 }
143 
144 /**
145  * spl_fit_get_image_node(): By using the matching configuration subnode,
146  * retrieve the name of an image, specified by a property name and an index
147  * into that.
148  * @fit:	Pointer to the FDT blob.
149  * @images:	Offset of the /images subnode.
150  * @type:	Name of the property within the configuration subnode.
151  * @index:	Index into the list of strings in this property.
152  *
153  * Return:	the node offset of the respective image node or a negative
154  *		error number.
155  */
spl_fit_get_image_node(const struct spl_fit_info * ctx,const char * type,int index)156 static int spl_fit_get_image_node(const struct spl_fit_info *ctx,
157 				  const char *type, int index)
158 {
159 	const char *str;
160 	int err;
161 	int node;
162 
163 	err = spl_fit_get_image_name(ctx, type, index, &str);
164 	if (err)
165 		return err;
166 
167 	debug("%s: '%s'\n", type, str);
168 
169 	node = fdt_subnode_offset(ctx->fit, ctx->images_node, str);
170 	if (node < 0) {
171 		pr_err("cannot find image node '%s': %d\n", str, node);
172 		return -EINVAL;
173 	}
174 
175 	return node;
176 }
177 
get_aligned_image_offset(struct spl_load_info * info,int offset)178 static int get_aligned_image_offset(struct spl_load_info *info, int offset)
179 {
180 	/*
181 	 * If it is a FS read, get the first address before offset which is
182 	 * aligned to ARCH_DMA_MINALIGN. If it is raw read return the
183 	 * block number to which offset belongs.
184 	 */
185 	if (info->filename)
186 		return offset & ~(ARCH_DMA_MINALIGN - 1);
187 
188 	return offset / info->bl_len;
189 }
190 
get_aligned_image_overhead(struct spl_load_info * info,int offset)191 static int get_aligned_image_overhead(struct spl_load_info *info, int offset)
192 {
193 	/*
194 	 * If it is a FS read, get the difference between the offset and
195 	 * the first address before offset which is aligned to
196 	 * ARCH_DMA_MINALIGN. If it is raw read return the offset within the
197 	 * block.
198 	 */
199 	if (info->filename)
200 		return offset & (ARCH_DMA_MINALIGN - 1);
201 
202 	return offset % info->bl_len;
203 }
204 
get_aligned_image_size(struct spl_load_info * info,int data_size,int offset)205 static int get_aligned_image_size(struct spl_load_info *info, int data_size,
206 				  int offset)
207 {
208 	data_size = data_size + get_aligned_image_overhead(info, offset);
209 
210 	if (info->filename)
211 		return data_size;
212 
213 	return (data_size + info->bl_len - 1) / info->bl_len;
214 }
215 
216 /**
217  * spl_load_fit_image(): load the image described in a certain FIT node
218  * @info:	points to information about the device to load data from
219  * @sector:	the start sector of the FIT image on the device
220  * @ctx:	points to the FIT context structure
221  * @node:	offset of the DT node describing the image to load (relative
222  *		to @fit)
223  * @image_info:	will be filled with information about the loaded image
224  *		If the FIT node does not contain a "load" (address) property,
225  *		the image gets loaded to the address pointed to by the
226  *		load_addr member in this struct.
227  *
228  * Return:	0 on success or a negative error number.
229  */
spl_load_fit_image(struct spl_load_info * info,ulong sector,const struct spl_fit_info * ctx,int node,struct spl_image_info * image_info)230 static int spl_load_fit_image(struct spl_load_info *info, ulong sector,
231 			      const struct spl_fit_info *ctx, int node,
232 			      struct spl_image_info *image_info)
233 {
234 	int offset;
235 	size_t length;
236 	int len;
237 	ulong size;
238 	ulong load_addr, load_ptr;
239 	void *src;
240 	ulong overhead;
241 	int nr_sectors;
242 	int align_len = ARCH_DMA_MINALIGN - 1;
243 	uint8_t image_comp = -1, type = -1;
244 	const void *data;
245 	const void *fit = ctx->fit;
246 	bool external_data = false;
247 
248 	if (IS_ENABLED(CONFIG_SPL_FPGA) ||
249 	    (IS_ENABLED(CONFIG_SPL_OS_BOOT) && IS_ENABLED(CONFIG_SPL_GZIP))) {
250 		if (fit_image_get_type(fit, node, &type))
251 			puts("Cannot get image type.\n");
252 		else
253 			debug("%s ", genimg_get_type_name(type));
254 	}
255 
256 	if (IS_ENABLED(CONFIG_SPL_GZIP)) {
257 		fit_image_get_comp(fit, node, &image_comp);
258 		debug("%s ", genimg_get_comp_name(image_comp));
259 	}
260 
261 	if (fit_image_get_load(fit, node, &load_addr))
262 		load_addr = image_info->load_addr;
263 
264 	if (!fit_image_get_data_position(fit, node, &offset)) {
265 		external_data = true;
266 	} else if (!fit_image_get_data_offset(fit, node, &offset)) {
267 		offset += ctx->ext_data_offset;
268 		external_data = true;
269 	}
270 
271 	if (external_data) {
272 		/* External data */
273 		if (fit_image_get_data_size(fit, node, &len))
274 			return -ENOENT;
275 
276 		load_ptr = (load_addr + align_len) & ~align_len;
277 		length = len;
278 
279 		overhead = get_aligned_image_overhead(info, offset);
280 		nr_sectors = get_aligned_image_size(info, length, offset);
281 
282 		if (info->read(info,
283 			       sector + get_aligned_image_offset(info, offset),
284 			       nr_sectors, (void *)load_ptr) != nr_sectors)
285 			return -EIO;
286 
287 		debug("External data: dst=%lx, offset=%x, size=%lx\n",
288 		      load_ptr, offset, (unsigned long)length);
289 		src = (void *)load_ptr + overhead;
290 	} else {
291 		/* Embedded data */
292 		if (fit_image_get_data(fit, node, &data, &length)) {
293 			puts("Cannot get image data/size\n");
294 			return -ENOENT;
295 		}
296 		debug("Embedded data: dst=%lx, size=%lx\n", load_addr,
297 		      (unsigned long)length);
298 		src = (void *)data;
299 	}
300 
301 	if (CONFIG_IS_ENABLED(FIT_SIGNATURE)) {
302 		printf("## Checking hash(es) for Image %s ... ",
303 		       fit_get_name(fit, node, NULL));
304 		if (!fit_image_verify_with_data(fit, node, src, length))
305 			return -EPERM;
306 		puts("OK\n");
307 	}
308 
309 	if (CONFIG_IS_ENABLED(FIT_IMAGE_POST_PROCESS))
310 		board_fit_image_post_process(&src, &length);
311 
312 	if (IS_ENABLED(CONFIG_SPL_GZIP) && image_comp == IH_COMP_GZIP) {
313 		size = length;
314 		if (gunzip((void *)load_addr, CONFIG_SYS_BOOTM_LEN,
315 			   src, &size)) {
316 			puts("Uncompressing error\n");
317 			return -EIO;
318 		}
319 		length = size;
320 	} else {
321 		memcpy((void *)load_addr, src, length);
322 	}
323 
324 	if (image_info) {
325 		ulong entry_point;
326 
327 		image_info->load_addr = load_addr;
328 		image_info->size = length;
329 
330 		if (!fit_image_get_entry(fit, node, &entry_point))
331 			image_info->entry_point = entry_point;
332 		else
333 			image_info->entry_point = FDT_ERROR;
334 	}
335 
336 	return 0;
337 }
338 
os_takes_devicetree(uint8_t os)339 static bool os_takes_devicetree(uint8_t os)
340 {
341 	switch (os) {
342 	case IH_OS_U_BOOT:
343 		return true;
344 	case IH_OS_LINUX:
345 		return IS_ENABLED(CONFIG_SPL_OS_BOOT);
346 	default:
347 		return false;
348 	}
349 }
350 
spl_fit_append_fdt(struct spl_image_info * spl_image,struct spl_load_info * info,ulong sector,const struct spl_fit_info * ctx)351 static int spl_fit_append_fdt(struct spl_image_info *spl_image,
352 			      struct spl_load_info *info, ulong sector,
353 			      const struct spl_fit_info *ctx)
354 {
355 	struct spl_image_info image_info;
356 	int node, ret = 0, index = 0;
357 
358 	/*
359 	 * Use the address following the image as target address for the
360 	 * device tree.
361 	 */
362 	image_info.load_addr = spl_image->load_addr + spl_image->size;
363 
364 	/* Figure out which device tree the board wants to use */
365 	node = spl_fit_get_image_node(ctx, FIT_FDT_PROP, index++);
366 	if (node < 0) {
367 		debug("%s: cannot find FDT node\n", __func__);
368 
369 		/*
370 		 * U-Boot did not find a device tree inside the FIT image. Use
371 		 * the U-Boot device tree instead.
372 		 */
373 		if (gd->fdt_blob)
374 			memcpy((void *)image_info.load_addr, gd->fdt_blob,
375 			       fdt_totalsize(gd->fdt_blob));
376 		else
377 			return node;
378 	} else {
379 		ret = spl_load_fit_image(info, sector, ctx, node,
380 					 &image_info);
381 		if (ret < 0)
382 			return ret;
383 	}
384 
385 	/* Make the load-address of the FDT available for the SPL framework */
386 	spl_image->fdt_addr = (void *)image_info.load_addr;
387 	if (CONFIG_IS_ENABLED(FIT_IMAGE_TINY))
388 		return 0;
389 
390 	if (CONFIG_IS_ENABLED(LOAD_FIT_APPLY_OVERLAY)) {
391 		void *tmpbuffer = NULL;
392 
393 		for (; ; index++) {
394 			node = spl_fit_get_image_node(ctx, FIT_FDT_PROP, index);
395 			if (node == -E2BIG) {
396 				debug("%s: No additional FDT node\n", __func__);
397 				break;
398 			} else if (node < 0) {
399 				debug("%s: unable to find FDT node %d\n",
400 				      __func__, index);
401 				continue;
402 			}
403 
404 			if (!tmpbuffer) {
405 				/*
406 				 * allocate memory to store the DT overlay
407 				 * before it is applied. It may not be used
408 				 * depending on how the overlay is stored, so
409 				 * don't fail yet if the allocation failed.
410 				 */
411 				tmpbuffer = malloc(CONFIG_SPL_LOAD_FIT_APPLY_OVERLAY_BUF_SZ);
412 				if (!tmpbuffer)
413 					debug("%s: unable to allocate space for overlays\n",
414 					      __func__);
415 			}
416 			image_info.load_addr = (ulong)tmpbuffer;
417 			ret = spl_load_fit_image(info, sector, ctx,
418 						 node, &image_info);
419 			if (ret < 0)
420 				break;
421 
422 			/* Make room in FDT for changes from the overlay */
423 			ret = fdt_increase_size(spl_image->fdt_addr,
424 						image_info.size);
425 			if (ret < 0)
426 				break;
427 
428 			ret = fdt_overlay_apply_verbose(spl_image->fdt_addr,
429 							(void *)image_info.load_addr);
430 			if (ret) {
431 				pr_err("failed to apply DT overlay %s\n",
432 				       fit_get_name(ctx->fit, node, NULL));
433 				break;
434 			}
435 
436 			debug("%s: DT overlay %s applied\n", __func__,
437 			      fit_get_name(ctx->fit, node, NULL));
438 		}
439 		free(tmpbuffer);
440 		if (ret)
441 			return ret;
442 	}
443 	/* Try to make space, so we can inject details on the loadables */
444 	ret = fdt_shrink_to_minimum(spl_image->fdt_addr, 8192);
445 	if (ret < 0)
446 		return ret;
447 
448 	return ret;
449 }
450 
spl_fit_record_loadable(const struct spl_fit_info * ctx,int index,void * blob,struct spl_image_info * image)451 static int spl_fit_record_loadable(const struct spl_fit_info *ctx, int index,
452 				   void *blob, struct spl_image_info *image)
453 {
454 	int ret = 0;
455 	const char *name;
456 	int node;
457 
458 	if (CONFIG_IS_ENABLED(FIT_IMAGE_TINY))
459 		return 0;
460 
461 	ret = spl_fit_get_image_name(ctx, "loadables", index, &name);
462 	if (ret < 0)
463 		return ret;
464 
465 	node = spl_fit_get_image_node(ctx, "loadables", index);
466 
467 	ret = fdt_record_loadable(blob, index, name, image->load_addr,
468 				  image->size, image->entry_point,
469 				  fdt_getprop(ctx->fit, node, "type", NULL),
470 				  fdt_getprop(ctx->fit, node, "os", NULL));
471 	return ret;
472 }
473 
spl_fit_image_get_os(const void * fit,int noffset,uint8_t * os)474 static int spl_fit_image_get_os(const void *fit, int noffset, uint8_t *os)
475 {
476 	if (!CONFIG_IS_ENABLED(FIT_IMAGE_TINY) || CONFIG_IS_ENABLED(OS_BOOT))
477 		return fit_image_get_os(fit, noffset, os);
478 
479 	const char *name = fdt_getprop(fit, noffset, FIT_OS_PROP, NULL);
480 	if (!name)
481 		return -ENOENT;
482 
483 	/*
484 	 * We don't care what the type of the image actually is,
485 	 * only whether or not it is U-Boot. This saves some
486 	 * space by omitting the large table of OS types.
487 	 */
488 	if (!strcmp(name, "u-boot"))
489 		*os = IH_OS_U_BOOT;
490 	else
491 		*os = IH_OS_INVALID;
492 
493 	return 0;
494 }
495 
496 /*
497  * The purpose of the FIT load buffer is to provide a memory location that is
498  * independent of the load address of any FIT component.
499  */
spl_get_fit_load_buffer(size_t size)500 static void *spl_get_fit_load_buffer(size_t size)
501 {
502 	void *buf;
503 
504 	buf = malloc(size);
505 	if (!buf) {
506 		pr_err("Could not get FIT buffer of %lu bytes\n", (ulong)size);
507 		pr_err("\tcheck CONFIG_SYS_SPL_MALLOC_SIZE\n");
508 		buf = spl_get_load_buffer(0, size);
509 	}
510 	return buf;
511 }
512 
513 /*
514  * Weak default function to allow customizing SPL fit loading for load-only
515  * use cases by allowing to skip the parsing/processing of the FIT contents
516  * (so that this can be done separately in a more customized fashion)
517  */
spl_load_simple_fit_skip_processing(void)518 __weak bool spl_load_simple_fit_skip_processing(void)
519 {
520 	return false;
521 }
522 
spl_simple_fit_read(struct spl_fit_info * ctx,struct spl_load_info * info,ulong sector,const void * fit_header)523 static int spl_simple_fit_read(struct spl_fit_info *ctx,
524 			       struct spl_load_info *info, ulong sector,
525 			       const void *fit_header)
526 {
527 	unsigned long count, size;
528 	int sectors;
529 	void *buf;
530 
531 	/*
532 	 * For FIT with external data, figure out where the external images
533 	 * start. This is the base for the data-offset properties in each
534 	 * image.
535 	 */
536 	size = ALIGN(fdt_totalsize(fit_header), 4);
537 	size = board_spl_fit_size_align(size);
538 	ctx->ext_data_offset = ALIGN(size, 4);
539 
540 	/*
541 	 * So far we only have one block of data from the FIT. Read the entire
542 	 * thing, including that first block.
543 	 *
544 	 * For FIT with data embedded, data is loaded as part of FIT image.
545 	 * For FIT with external data, data is not loaded in this step.
546 	 */
547 	sectors = get_aligned_image_size(info, size, 0);
548 	buf = spl_get_fit_load_buffer(sectors * info->bl_len);
549 
550 	count = info->read(info, sector, sectors, buf);
551 	ctx->fit = buf;
552 	debug("fit read sector %lx, sectors=%d, dst=%p, count=%lu, size=0x%lx\n",
553 	      sector, sectors, buf, count, size);
554 
555 	return (count == 0) ? -EIO : 0;
556 }
557 
spl_simple_fit_parse(struct spl_fit_info * ctx)558 static int spl_simple_fit_parse(struct spl_fit_info *ctx)
559 {
560 	/* Find the correct subnode under "/configurations" */
561 	ctx->conf_node = fit_find_config_node(ctx->fit);
562 	if (ctx->conf_node < 0)
563 		return -EINVAL;
564 
565 	if (IS_ENABLED(CONFIG_SPL_FIT_SIGNATURE)) {
566 		printf("## Checking hash(es) for config %s ... ",
567 		       fit_get_name(ctx->fit, ctx->conf_node, NULL));
568 		if (fit_config_verify(ctx->fit, ctx->conf_node))
569 			return -EPERM;
570 		puts("OK\n");
571 	}
572 
573 	/* find the node holding the images information */
574 	ctx->images_node = fdt_path_offset(ctx->fit, FIT_IMAGES_PATH);
575 	if (ctx->images_node < 0) {
576 		debug("%s: Cannot find /images node: %d\n", __func__,
577 		      ctx->images_node);
578 		return -EINVAL;
579 	}
580 
581 	return 0;
582 }
583 
spl_load_simple_fit(struct spl_image_info * spl_image,struct spl_load_info * info,ulong sector,void * fit)584 int spl_load_simple_fit(struct spl_image_info *spl_image,
585 			struct spl_load_info *info, ulong sector, void *fit)
586 {
587 	struct spl_image_info image_info;
588 	struct spl_fit_info ctx;
589 	int node = -1;
590 	int ret;
591 	int index = 0;
592 	int firmware_node;
593 
594 	ret = spl_simple_fit_read(&ctx, info, sector, fit);
595 	if (ret < 0)
596 		return ret;
597 
598 	/* skip further processing if requested to enable load-only use cases */
599 	if (spl_load_simple_fit_skip_processing())
600 		return 0;
601 
602 	ret = spl_simple_fit_parse(&ctx);
603 	if (ret < 0)
604 		return ret;
605 
606 #ifdef CONFIG_SPL_FPGA
607 	node = spl_fit_get_image_node(&ctx, "fpga", 0);
608 	if (node >= 0) {
609 		/* Load the image and set up the spl_image structure */
610 		ret = spl_load_fit_image(info, sector, &ctx, node, spl_image);
611 		if (ret) {
612 			printf("%s: Cannot load the FPGA: %i\n", __func__, ret);
613 			return ret;
614 		}
615 
616 		debug("FPGA bitstream at: %x, size: %x\n",
617 		      (u32)spl_image->load_addr, spl_image->size);
618 
619 		ret = fpga_load(0, (const void *)spl_image->load_addr,
620 				spl_image->size, BIT_FULL);
621 		if (ret) {
622 			printf("%s: Cannot load the image to the FPGA\n",
623 			       __func__);
624 			return ret;
625 		}
626 
627 		puts("FPGA image loaded from FIT\n");
628 		node = -1;
629 	}
630 #endif
631 
632 	/*
633 	 * Find the U-Boot image using the following search order:
634 	 *   - start at 'firmware' (e.g. an ARM Trusted Firmware)
635 	 *   - fall back 'kernel' (e.g. a Falcon-mode OS boot
636 	 *   - fall back to using the first 'loadables' entry
637 	 */
638 	if (node < 0)
639 		node = spl_fit_get_image_node(&ctx, FIT_FIRMWARE_PROP, 0);
640 
641 	if (node < 0 && IS_ENABLED(CONFIG_SPL_OS_BOOT))
642 		node = spl_fit_get_image_node(&ctx, FIT_KERNEL_PROP, 0);
643 
644 	if (node < 0) {
645 		debug("could not find firmware image, trying loadables...\n");
646 		node = spl_fit_get_image_node(&ctx, "loadables", 0);
647 		/*
648 		 * If we pick the U-Boot image from "loadables", start at
649 		 * the second image when later loading additional images.
650 		 */
651 		index = 1;
652 	}
653 	if (node < 0) {
654 		debug("%s: Cannot find u-boot image node: %d\n",
655 		      __func__, node);
656 		return -1;
657 	}
658 
659 	/* Load the image and set up the spl_image structure */
660 	ret = spl_load_fit_image(info, sector, &ctx, node, spl_image);
661 	if (ret)
662 		return ret;
663 
664 	/*
665 	 * For backward compatibility, we treat the first node that is
666 	 * as a U-Boot image, if no OS-type has been declared.
667 	 */
668 	if (!spl_fit_image_get_os(ctx.fit, node, &spl_image->os))
669 		debug("Image OS is %s\n", genimg_get_os_name(spl_image->os));
670 	else if (!IS_ENABLED(CONFIG_SPL_OS_BOOT))
671 		spl_image->os = IH_OS_U_BOOT;
672 
673 	/*
674 	 * Booting a next-stage U-Boot may require us to append the FDT.
675 	 * We allow this to fail, as the U-Boot image might embed its FDT.
676 	 */
677 	if (os_takes_devicetree(spl_image->os)) {
678 		ret = spl_fit_append_fdt(spl_image, info, sector, &ctx);
679 		if (ret < 0 && spl_image->os != IH_OS_U_BOOT)
680 			return ret;
681 	}
682 
683 	firmware_node = node;
684 	/* Now check if there are more images for us to load */
685 	for (; ; index++) {
686 		uint8_t os_type = IH_OS_INVALID;
687 
688 		node = spl_fit_get_image_node(&ctx, "loadables", index);
689 		if (node < 0)
690 			break;
691 
692 		/*
693 		 * if the firmware is also a loadable, skip it because
694 		 * it already has been loaded. This is typically the case with
695 		 * u-boot.img generated by mkimage.
696 		 */
697 		if (firmware_node == node)
698 			continue;
699 
700 		ret = spl_load_fit_image(info, sector, &ctx, node, &image_info);
701 		if (ret < 0) {
702 			printf("%s: can't load image loadables index %d (ret = %d)\n",
703 			       __func__, index, ret);
704 			return ret;
705 		}
706 
707 		if (!spl_fit_image_get_os(ctx.fit, node, &os_type))
708 			debug("Loadable is %s\n", genimg_get_os_name(os_type));
709 
710 		if (os_takes_devicetree(os_type)) {
711 			spl_fit_append_fdt(&image_info, info, sector, &ctx);
712 			spl_image->fdt_addr = image_info.fdt_addr;
713 		}
714 
715 		/*
716 		 * If the "firmware" image did not provide an entry point,
717 		 * use the first valid entry point from the loadables.
718 		 */
719 		if (spl_image->entry_point == FDT_ERROR &&
720 		    image_info.entry_point != FDT_ERROR)
721 			spl_image->entry_point = image_info.entry_point;
722 
723 		/* Record our loadables into the FDT */
724 		if (spl_image->fdt_addr)
725 			spl_fit_record_loadable(&ctx, index,
726 						spl_image->fdt_addr,
727 						&image_info);
728 	}
729 
730 	/*
731 	 * If a platform does not provide CONFIG_SYS_UBOOT_START, U-Boot's
732 	 * Makefile will set it to 0 and it will end up as the entry point
733 	 * here. What it actually means is: use the load address.
734 	 */
735 	if (spl_image->entry_point == FDT_ERROR || spl_image->entry_point == 0)
736 		spl_image->entry_point = spl_image->load_addr;
737 
738 	spl_image->flags |= SPL_FIT_FOUND;
739 
740 	if (IS_ENABLED(CONFIG_IMX_HAB))
741 		board_spl_fit_post_load(ctx.fit);
742 
743 	return 0;
744 }
745