1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (c) 2011 The Chromium OS Authors. All rights reserved.
4  */
5 
6 #include <common.h>
7 #include <cbfs.h>
8 #include <log.h>
9 #include <malloc.h>
10 #include <asm/byteorder.h>
11 
12 /* Offset of master header from the start of a coreboot ROM */
13 #define MASTER_HDR_OFFSET	0x38
14 
15 static const u32 good_magic = 0x4f524243;
16 static const u8 good_file_magic[] = "LARCHIVE";
17 
18 /**
19  * struct cbfs_priv - Private data for this driver
20  *
21  * @initialised: true if this CBFS has been inited
22  * @start: Start position of CBFS in memory, typically memory-mapped SPI flash
23  * @header: Header read from the CBFS, byte-swapped so U-Boot can access it
24  * @file_cache: List of file headers read from CBFS
25  * @result: Success/error result
26  */
27 struct cbfs_priv {
28 	bool initialized;
29 	void *start;
30 	struct cbfs_header header;
31 	struct cbfs_cachenode *file_cache;
32 	enum cbfs_result result;
33 };
34 
35 static struct cbfs_priv cbfs_s;
36 
file_cbfs_error(void)37 const char *file_cbfs_error(void)
38 {
39 	switch (cbfs_s.result) {
40 	case CBFS_SUCCESS:
41 		return "Success";
42 	case CBFS_NOT_INITIALIZED:
43 		return "CBFS not initialized";
44 	case CBFS_BAD_HEADER:
45 		return "Bad CBFS header";
46 	case CBFS_BAD_FILE:
47 		return "Bad CBFS file";
48 	case CBFS_FILE_NOT_FOUND:
49 		return "File not found";
50 	default:
51 		return "Unknown";
52 	}
53 }
54 
cbfs_get_result(void)55 enum cbfs_result cbfs_get_result(void)
56 {
57 	return cbfs_s.result;
58 }
59 
60 /* Do endian conversion on the CBFS header structure. */
swap_header(struct cbfs_header * dest,struct cbfs_header * src)61 static void swap_header(struct cbfs_header *dest, struct cbfs_header *src)
62 {
63 	dest->magic = be32_to_cpu(src->magic);
64 	dest->version = be32_to_cpu(src->version);
65 	dest->rom_size = be32_to_cpu(src->rom_size);
66 	dest->boot_block_size = be32_to_cpu(src->boot_block_size);
67 	dest->align = be32_to_cpu(src->align);
68 	dest->offset = be32_to_cpu(src->offset);
69 }
70 
71 /* Do endian conversion on a CBFS file header. */
swap_file_header(struct cbfs_fileheader * dest,const struct cbfs_fileheader * src)72 static void swap_file_header(struct cbfs_fileheader *dest,
73 			     const struct cbfs_fileheader *src)
74 {
75 	memcpy(&dest->magic, &src->magic, sizeof(dest->magic));
76 	dest->len = be32_to_cpu(src->len);
77 	dest->type = be32_to_cpu(src->type);
78 	dest->attributes_offset = be32_to_cpu(src->attributes_offset);
79 	dest->offset = be32_to_cpu(src->offset);
80 }
81 
82 /*
83  * Given a starting position in memory, scan forward, bounded by a size, and
84  * find the next valid CBFS file. No memory is allocated by this function. The
85  * caller is responsible for allocating space for the new file structure.
86  *
87  * @param start		The location in memory to start from.
88  * @param size		The size of the memory region to search.
89  * @param align		The alignment boundaries to check on.
90  * @param new_node	A pointer to the file structure to load.
91  * @param used		A pointer to the count of of bytes scanned through,
92  *			including the file if one is found.
93  *
94  * @return 0 if a file is found, -ENOENT if one isn't, -EBADF if a bad header
95  *	is found.
96  */
file_cbfs_next_file(struct cbfs_priv * priv,void * start,int size,int align,struct cbfs_cachenode * new_node,int * used)97 static int file_cbfs_next_file(struct cbfs_priv *priv, void *start, int size,
98 			       int align, struct cbfs_cachenode *new_node,
99 			       int *used)
100 {
101 	struct cbfs_fileheader header;
102 
103 	*used = 0;
104 
105 	while (size >= align) {
106 		const struct cbfs_fileheader *file_header = start;
107 		u32 name_len;
108 		u32 step;
109 
110 		/* Check if there's a file here. */
111 		if (memcmp(good_file_magic, &file_header->magic,
112 			   sizeof(file_header->magic))) {
113 			*used += align;
114 			size -= align;
115 			start += align;
116 			continue;
117 		}
118 
119 		swap_file_header(&header, file_header);
120 		if (header.offset < sizeof(struct cbfs_fileheader)) {
121 			priv->result = CBFS_BAD_FILE;
122 			return -EBADF;
123 		}
124 		new_node->next = NULL;
125 		new_node->type = header.type;
126 		new_node->data = start + header.offset;
127 		new_node->data_length = header.len;
128 		name_len = header.offset - sizeof(struct cbfs_fileheader);
129 		new_node->name = (char *)file_header +
130 				sizeof(struct cbfs_fileheader);
131 		new_node->name_length = name_len;
132 		new_node->attributes_offset = header.attributes_offset;
133 
134 		step = header.len;
135 		if (step % align)
136 			step = step + align - step % align;
137 
138 		*used += step;
139 		return 0;
140 	}
141 
142 	return -ENOENT;
143 }
144 
145 /* Look through a CBFS instance and copy file metadata into regular memory. */
file_cbfs_fill_cache(struct cbfs_priv * priv,int size,int align)146 static int file_cbfs_fill_cache(struct cbfs_priv *priv, int size, int align)
147 {
148 	struct cbfs_cachenode *cache_node;
149 	struct cbfs_cachenode *new_node;
150 	struct cbfs_cachenode **cache_tail = &priv->file_cache;
151 	void *start;
152 
153 	/* Clear out old information. */
154 	cache_node = priv->file_cache;
155 	while (cache_node) {
156 		struct cbfs_cachenode *old_node = cache_node;
157 		cache_node = cache_node->next;
158 		free(old_node);
159 	}
160 	priv->file_cache = NULL;
161 
162 	start = priv->start;
163 	while (size >= align) {
164 		int used;
165 		int ret;
166 
167 		new_node = (struct cbfs_cachenode *)
168 				malloc(sizeof(struct cbfs_cachenode));
169 		if (!new_node)
170 			return -ENOMEM;
171 		ret = file_cbfs_next_file(priv, start, size, align, new_node,
172 					  &used);
173 
174 		if (ret < 0) {
175 			free(new_node);
176 			if (ret == -ENOENT)
177 				break;
178 			return ret;
179 		}
180 		*cache_tail = new_node;
181 		cache_tail = &new_node->next;
182 
183 		size -= used;
184 		start += used;
185 	}
186 	priv->result = CBFS_SUCCESS;
187 
188 	return 0;
189 }
190 
191 /**
192  * load_header() - Load the CBFS header
193  *
194  * Get the CBFS header out of the ROM and do endian conversion.
195  *
196  * @priv: Private data, which is inited by this function
197  * @addr: Address of CBFS header in memory-mapped SPI flash
198  * @return 0 if OK, -ENXIO if the header is bad
199  */
load_header(struct cbfs_priv * priv,ulong addr)200 static int load_header(struct cbfs_priv *priv, ulong addr)
201 {
202 	struct cbfs_header *header = &priv->header;
203 	struct cbfs_header *header_in_rom;
204 
205 	memset(priv, '\0', sizeof(*priv));
206 	header_in_rom = (struct cbfs_header *)addr;
207 	swap_header(header, header_in_rom);
208 
209 	if (header->magic != good_magic || header->offset >
210 			header->rom_size - header->boot_block_size) {
211 		priv->result = CBFS_BAD_HEADER;
212 		return -ENXIO;
213 	}
214 
215 	return 0;
216 }
217 
218 /**
219  * file_cbfs_load_header() - Get the CBFS header out of the ROM, given the end
220  *
221  * @priv: Private data, which is inited by this function
222  * @end_of_rom: Address of the last byte of the ROM (typically 0xffffffff)
223  * @return 0 if OK, -ENXIO if the header is bad
224  */
file_cbfs_load_header(struct cbfs_priv * priv,ulong end_of_rom)225 static int file_cbfs_load_header(struct cbfs_priv *priv, ulong end_of_rom)
226 {
227 	int offset = *(u32 *)(end_of_rom - 3);
228 	int ret;
229 
230 	ret = load_header(priv, end_of_rom + offset + 1);
231 	if (ret)
232 		return ret;
233 	priv->start = (void *)(end_of_rom + 1 - priv->header.rom_size);
234 
235 	return 0;
236 }
237 
238 /**
239  * cbfs_load_header_ptr() - Get the CBFS header out of the ROM, given the base
240  *
241  * @priv: Private data, which is inited by this function
242  * @base: Address of the first byte of the ROM (e.g. 0xff000000)
243  * @return 0 if OK, -ENXIO if the header is bad
244  */
cbfs_load_header_ptr(struct cbfs_priv * priv,ulong base)245 static int cbfs_load_header_ptr(struct cbfs_priv *priv, ulong base)
246 {
247 	int ret;
248 
249 	ret = load_header(priv, base + MASTER_HDR_OFFSET);
250 	if (ret)
251 		return ret;
252 	priv->start = (void *)base;
253 
254 	return 0;
255 }
256 
cbfs_init(struct cbfs_priv * priv,ulong end_of_rom)257 static int cbfs_init(struct cbfs_priv *priv, ulong end_of_rom)
258 {
259 	int ret;
260 
261 	ret = file_cbfs_load_header(priv, end_of_rom);
262 	if (ret)
263 		return ret;
264 
265 	ret = file_cbfs_fill_cache(priv, priv->header.rom_size,
266 				   priv->header.align);
267 	if (ret)
268 		return ret;
269 	priv->initialized = true;
270 
271 	return 0;
272 }
273 
file_cbfs_init(ulong end_of_rom)274 int file_cbfs_init(ulong end_of_rom)
275 {
276 	return cbfs_init(&cbfs_s, end_of_rom);
277 }
278 
cbfs_init_mem(ulong base,struct cbfs_priv ** privp)279 int cbfs_init_mem(ulong base, struct cbfs_priv **privp)
280 {
281 	struct cbfs_priv priv_s, *priv = &priv_s;
282 	int ret;
283 
284 	/*
285 	 * Use a local variable to start with until we know that the CBFS is
286 	 * valid.
287 	 */
288 	ret = cbfs_load_header_ptr(priv, base);
289 	if (ret)
290 		return ret;
291 
292 	ret = file_cbfs_fill_cache(priv, priv->header.rom_size,
293 				   priv->header.align);
294 	if (ret)
295 		return log_msg_ret("fill", ret);
296 
297 	priv->initialized = true;
298 	priv = malloc(sizeof(priv_s));
299 	if (!priv)
300 		return -ENOMEM;
301 	memcpy(priv, &priv_s, sizeof(priv_s));
302 	*privp = priv;
303 
304 	return 0;
305 }
306 
file_cbfs_get_header(void)307 const struct cbfs_header *file_cbfs_get_header(void)
308 {
309 	struct cbfs_priv *priv = &cbfs_s;
310 
311 	if (priv->initialized) {
312 		priv->result = CBFS_SUCCESS;
313 		return &priv->header;
314 	} else {
315 		priv->result = CBFS_NOT_INITIALIZED;
316 		return NULL;
317 	}
318 }
319 
file_cbfs_get_first(void)320 const struct cbfs_cachenode *file_cbfs_get_first(void)
321 {
322 	struct cbfs_priv *priv = &cbfs_s;
323 
324 	if (!priv->initialized) {
325 		priv->result = CBFS_NOT_INITIALIZED;
326 		return NULL;
327 	} else {
328 		priv->result = CBFS_SUCCESS;
329 		return priv->file_cache;
330 	}
331 }
332 
file_cbfs_get_next(const struct cbfs_cachenode ** file)333 void file_cbfs_get_next(const struct cbfs_cachenode **file)
334 {
335 	struct cbfs_priv *priv = &cbfs_s;
336 
337 	if (!priv->initialized) {
338 		priv->result = CBFS_NOT_INITIALIZED;
339 		*file = NULL;
340 		return;
341 	}
342 
343 	if (*file)
344 		*file = (*file)->next;
345 	priv->result = CBFS_SUCCESS;
346 }
347 
cbfs_find_file(struct cbfs_priv * priv,const char * name)348 const struct cbfs_cachenode *cbfs_find_file(struct cbfs_priv *priv,
349 					    const char *name)
350 {
351 	struct cbfs_cachenode *cache_node = priv->file_cache;
352 
353 	if (!priv->initialized) {
354 		priv->result = CBFS_NOT_INITIALIZED;
355 		return NULL;
356 	}
357 
358 	while (cache_node) {
359 		if (!strcmp(name, cache_node->name))
360 			break;
361 		cache_node = cache_node->next;
362 	}
363 	if (!cache_node)
364 		priv->result = CBFS_FILE_NOT_FOUND;
365 	else
366 		priv->result = CBFS_SUCCESS;
367 
368 	return cache_node;
369 }
370 
file_cbfs_find(const char * name)371 const struct cbfs_cachenode *file_cbfs_find(const char *name)
372 {
373 	return cbfs_find_file(&cbfs_s, name);
374 }
375 
find_uncached(struct cbfs_priv * priv,const char * name,void * start,struct cbfs_cachenode * node)376 static int find_uncached(struct cbfs_priv *priv, const char *name, void *start,
377 			 struct cbfs_cachenode *node)
378 {
379 	int size = priv->header.rom_size;
380 	int align = priv->header.align;
381 
382 	while (size >= align) {
383 		int used;
384 		int ret;
385 
386 		ret = file_cbfs_next_file(priv, start, size, align, node,
387 					  &used);
388 		if (ret == -ENOENT)
389 			break;
390 		else if (ret)
391 			return ret;
392 		if (!strcmp(name, node->name))
393 			return 0;
394 
395 		size -= used;
396 		start += used;
397 	}
398 	priv->result = CBFS_FILE_NOT_FOUND;
399 
400 	return -ENOENT;
401 }
402 
file_cbfs_find_uncached(ulong end_of_rom,const char * name,struct cbfs_cachenode * node)403 int file_cbfs_find_uncached(ulong end_of_rom, const char *name,
404 			    struct cbfs_cachenode *node)
405 {
406 	struct cbfs_priv priv;
407 	void *start;
408 	int ret;
409 
410 	ret = file_cbfs_load_header(&priv, end_of_rom);
411 	if (ret)
412 		return ret;
413 	start = priv.start;
414 
415 	return find_uncached(&priv, name, start, node);
416 }
417 
file_cbfs_find_uncached_base(ulong base,const char * name,struct cbfs_cachenode * node)418 int file_cbfs_find_uncached_base(ulong base, const char *name,
419 				 struct cbfs_cachenode *node)
420 {
421 	struct cbfs_priv priv;
422 	int ret;
423 
424 	ret = cbfs_load_header_ptr(&priv, base);
425 	if (ret)
426 		return ret;
427 
428 	return find_uncached(&priv, name, (void *)base, node);
429 }
430 
file_cbfs_name(const struct cbfs_cachenode * file)431 const char *file_cbfs_name(const struct cbfs_cachenode *file)
432 {
433 	cbfs_s.result = CBFS_SUCCESS;
434 
435 	return file->name;
436 }
437 
file_cbfs_size(const struct cbfs_cachenode * file)438 u32 file_cbfs_size(const struct cbfs_cachenode *file)
439 {
440 	cbfs_s.result = CBFS_SUCCESS;
441 
442 	return file->data_length;
443 }
444 
file_cbfs_type(const struct cbfs_cachenode * file)445 u32 file_cbfs_type(const struct cbfs_cachenode *file)
446 {
447 	cbfs_s.result = CBFS_SUCCESS;
448 
449 	return file->type;
450 }
451 
file_cbfs_read(const struct cbfs_cachenode * file,void * buffer,unsigned long maxsize)452 long file_cbfs_read(const struct cbfs_cachenode *file, void *buffer,
453 		    unsigned long maxsize)
454 {
455 	u32 size;
456 
457 	size = file->data_length;
458 	if (maxsize && size > maxsize)
459 		size = maxsize;
460 
461 	memcpy(buffer, file->data, size);
462 	cbfs_s.result = CBFS_SUCCESS;
463 
464 	return size;
465 }
466