xref: /openbmc/u-boot/drivers/dfu/dfu.c (revision 9e414032)
1 /*
2  * dfu.c -- DFU back-end routines
3  *
4  * Copyright (C) 2012 Samsung Electronics
5  * author: Lukasz Majewski <l.majewski@samsung.com>
6  *
7  * SPDX-License-Identifier:	GPL-2.0+
8  */
9 
10 #include <common.h>
11 #include <errno.h>
12 #include <malloc.h>
13 #include <mmc.h>
14 #include <fat.h>
15 #include <dfu.h>
16 #include <linux/list.h>
17 #include <linux/compiler.h>
18 
19 static bool dfu_reset_request;
20 static LIST_HEAD(dfu_list);
21 static int dfu_alt_num;
22 
23 bool dfu_reset(void)
24 {
25 	return dfu_reset_request;
26 }
27 
28 void dfu_trigger_reset()
29 {
30 	dfu_reset_request = true;
31 }
32 
33 static int dfu_find_alt_num(const char *s)
34 {
35 	int i = 0;
36 
37 	for (; *s; s++)
38 		if (*s == ';')
39 			i++;
40 
41 	return ++i;
42 }
43 
44 int dfu_init_env_entities(char *interface, int dev)
45 {
46 	const char *str_env;
47 	char *env_bkp;
48 	int ret;
49 
50 	str_env = getenv("dfu_alt_info");
51 	if (!str_env) {
52 		error("\"dfu_alt_info\" env variable not defined!\n");
53 		return -EINVAL;
54 	}
55 
56 	env_bkp = strdup(str_env);
57 	ret = dfu_config_entities(env_bkp, interface, dev);
58 	if (ret) {
59 		error("DFU entities configuration failed!\n");
60 		return ret;
61 	}
62 
63 	free(env_bkp);
64 	return 0;
65 }
66 
67 static unsigned char *dfu_buf;
68 static unsigned long dfu_buf_size = CONFIG_SYS_DFU_DATA_BUF_SIZE;
69 
70 unsigned char *dfu_free_buf(void)
71 {
72 	free(dfu_buf);
73 	dfu_buf = NULL;
74 	return dfu_buf;
75 }
76 
77 unsigned long dfu_get_buf_size(void)
78 {
79 	return dfu_buf_size;
80 }
81 
82 unsigned char *dfu_get_buf(void)
83 {
84 	char *s;
85 
86 	if (dfu_buf != NULL)
87 		return dfu_buf;
88 
89 	s = getenv("dfu_bufsiz");
90 	dfu_buf_size = s ? (unsigned long)simple_strtol(s, NULL, 16) :
91 			CONFIG_SYS_DFU_DATA_BUF_SIZE;
92 
93 	dfu_buf = memalign(CONFIG_SYS_CACHELINE_SIZE, dfu_buf_size);
94 	if (dfu_buf == NULL)
95 		printf("%s: Could not memalign 0x%lx bytes\n",
96 		       __func__, dfu_buf_size);
97 
98 	return dfu_buf;
99 }
100 
101 static int dfu_write_buffer_drain(struct dfu_entity *dfu)
102 {
103 	long w_size;
104 	int ret;
105 
106 	/* flush size? */
107 	w_size = dfu->i_buf - dfu->i_buf_start;
108 	if (w_size == 0)
109 		return 0;
110 
111 	/* update CRC32 */
112 	dfu->crc = crc32(dfu->crc, dfu->i_buf_start, w_size);
113 
114 	ret = dfu->write_medium(dfu, dfu->offset, dfu->i_buf_start, &w_size);
115 	if (ret)
116 		debug("%s: Write error!\n", __func__);
117 
118 	/* point back */
119 	dfu->i_buf = dfu->i_buf_start;
120 
121 	/* update offset */
122 	dfu->offset += w_size;
123 
124 	puts("#");
125 
126 	return ret;
127 }
128 
129 int dfu_write(struct dfu_entity *dfu, void *buf, int size, int blk_seq_num)
130 {
131 	int ret = 0;
132 	int tret;
133 
134 	debug("%s: name: %s buf: 0x%p size: 0x%x p_num: 0x%x offset: 0x%llx bufoffset: 0x%x\n",
135 	      __func__, dfu->name, buf, size, blk_seq_num, dfu->offset,
136 	      dfu->i_buf - dfu->i_buf_start);
137 
138 	if (!dfu->inited) {
139 		/* initial state */
140 		dfu->crc = 0;
141 		dfu->offset = 0;
142 		dfu->bad_skip = 0;
143 		dfu->i_blk_seq_num = 0;
144 		dfu->i_buf_start = dfu_get_buf();
145 		if (dfu->i_buf_start == NULL)
146 			return -ENOMEM;
147 		dfu->i_buf_end = dfu_get_buf() + dfu_buf_size;
148 		dfu->i_buf = dfu->i_buf_start;
149 
150 		dfu->inited = 1;
151 	}
152 
153 	if (dfu->i_blk_seq_num != blk_seq_num) {
154 		printf("%s: Wrong sequence number! [%d] [%d]\n",
155 		       __func__, dfu->i_blk_seq_num, blk_seq_num);
156 		return -1;
157 	}
158 
159 	/* DFU 1.1 standard says:
160 	 * The wBlockNum field is a block sequence number. It increments each
161 	 * time a block is transferred, wrapping to zero from 65,535. It is used
162 	 * to provide useful context to the DFU loader in the device."
163 	 *
164 	 * This means that it's a 16 bit counter that roll-overs at
165 	 * 0xffff -> 0x0000. By having a typical 4K transfer block
166 	 * we roll-over at exactly 256MB. Not very fun to debug.
167 	 *
168 	 * Handling rollover, and having an inited variable,
169 	 * makes things work.
170 	 */
171 
172 	/* handle rollover */
173 	dfu->i_blk_seq_num = (dfu->i_blk_seq_num + 1) & 0xffff;
174 
175 	/* flush buffer if overflow */
176 	if ((dfu->i_buf + size) > dfu->i_buf_end) {
177 		tret = dfu_write_buffer_drain(dfu);
178 		if (ret == 0)
179 			ret = tret;
180 	}
181 
182 	/* we should be in buffer now (if not then size too large) */
183 	if ((dfu->i_buf + size) > dfu->i_buf_end) {
184 		error("Buffer overflow! (0x%p + 0x%x > 0x%p)\n", dfu->i_buf,
185 		      size, dfu->i_buf_end);
186 		return -1;
187 	}
188 
189 	memcpy(dfu->i_buf, buf, size);
190 	dfu->i_buf += size;
191 
192 	/* if end or if buffer full flush */
193 	if (size == 0 || (dfu->i_buf + size) > dfu->i_buf_end) {
194 		tret = dfu_write_buffer_drain(dfu);
195 		if (ret == 0)
196 			ret = tret;
197 	}
198 
199 	/* end? */
200 	if (size == 0) {
201 		/* Now try and flush to the medium if needed. */
202 		if (dfu->flush_medium)
203 			ret = dfu->flush_medium(dfu);
204 		printf("\nDFU complete CRC32: 0x%08x\n", dfu->crc);
205 
206 		/* clear everything */
207 		dfu_free_buf();
208 		dfu->crc = 0;
209 		dfu->offset = 0;
210 		dfu->i_blk_seq_num = 0;
211 		dfu->i_buf_start = dfu_buf;
212 		dfu->i_buf_end = dfu_buf;
213 		dfu->i_buf = dfu->i_buf_start;
214 
215 		dfu->inited = 0;
216 
217 	}
218 
219 	return ret = 0 ? size : ret;
220 }
221 
222 static int dfu_read_buffer_fill(struct dfu_entity *dfu, void *buf, int size)
223 {
224 	long chunk;
225 	int ret, readn;
226 
227 	readn = 0;
228 	while (size > 0) {
229 		/* get chunk that can be read */
230 		chunk = min(size, dfu->b_left);
231 		/* consume */
232 		if (chunk > 0) {
233 			memcpy(buf, dfu->i_buf, chunk);
234 			dfu->crc = crc32(dfu->crc, buf, chunk);
235 			dfu->i_buf += chunk;
236 			dfu->b_left -= chunk;
237 			dfu->r_left -= chunk;
238 			size -= chunk;
239 			buf += chunk;
240 			readn += chunk;
241 		}
242 
243 		/* all done */
244 		if (size > 0) {
245 			/* no more to read */
246 			if (dfu->r_left == 0)
247 				break;
248 
249 			dfu->i_buf = dfu->i_buf_start;
250 			dfu->b_left = dfu->i_buf_end - dfu->i_buf_start;
251 
252 			/* got to read, but buffer is empty */
253 			if (dfu->b_left > dfu->r_left)
254 				dfu->b_left = dfu->r_left;
255 			ret = dfu->read_medium(dfu, dfu->offset, dfu->i_buf,
256 					&dfu->b_left);
257 			if (ret != 0) {
258 				debug("%s: Read error!\n", __func__);
259 				return ret;
260 			}
261 			dfu->offset += dfu->b_left;
262 			dfu->r_left -= dfu->b_left;
263 
264 			puts("#");
265 		}
266 	}
267 
268 	return readn;
269 }
270 
271 int dfu_read(struct dfu_entity *dfu, void *buf, int size, int blk_seq_num)
272 {
273 	int ret = 0;
274 
275 	debug("%s: name: %s buf: 0x%p size: 0x%x p_num: 0x%x i_buf: 0x%p\n",
276 	       __func__, dfu->name, buf, size, blk_seq_num, dfu->i_buf);
277 
278 	if (!dfu->inited) {
279 		dfu->i_buf_start = dfu_get_buf();
280 		if (dfu->i_buf_start == NULL)
281 			return -ENOMEM;
282 
283 		ret = dfu->read_medium(dfu, 0, dfu->i_buf_start, &dfu->r_left);
284 		if (ret != 0) {
285 			debug("%s: failed to get r_left\n", __func__);
286 			return ret;
287 		}
288 
289 		debug("%s: %s %ld [B]\n", __func__, dfu->name, dfu->r_left);
290 
291 		dfu->i_blk_seq_num = 0;
292 		dfu->crc = 0;
293 		dfu->offset = 0;
294 		dfu->i_buf_end = dfu_get_buf() + dfu_buf_size;
295 		dfu->i_buf = dfu->i_buf_start;
296 		dfu->b_left = min(dfu_buf_size, dfu->r_left);
297 
298 		dfu->bad_skip = 0;
299 
300 		dfu->inited = 1;
301 	}
302 
303 	if (dfu->i_blk_seq_num != blk_seq_num) {
304 		printf("%s: Wrong sequence number! [%d] [%d]\n",
305 		       __func__, dfu->i_blk_seq_num, blk_seq_num);
306 		return -1;
307 	}
308 	/* handle rollover */
309 	dfu->i_blk_seq_num = (dfu->i_blk_seq_num + 1) & 0xffff;
310 
311 	ret = dfu_read_buffer_fill(dfu, buf, size);
312 	if (ret < 0) {
313 		printf("%s: Failed to fill buffer\n", __func__);
314 		return -1;
315 	}
316 
317 	if (ret < size) {
318 		debug("%s: %s CRC32: 0x%x\n", __func__, dfu->name, dfu->crc);
319 		puts("\nUPLOAD ... done\nCtrl+C to exit ...\n");
320 
321 		dfu_free_buf();
322 		dfu->i_blk_seq_num = 0;
323 		dfu->crc = 0;
324 		dfu->offset = 0;
325 		dfu->i_buf_start = dfu_buf;
326 		dfu->i_buf_end = dfu_buf;
327 		dfu->i_buf = dfu->i_buf_start;
328 		dfu->b_left = 0;
329 
330 		dfu->bad_skip = 0;
331 
332 		dfu->inited = 0;
333 	}
334 
335 	return ret;
336 }
337 
338 static int dfu_fill_entity(struct dfu_entity *dfu, char *s, int alt,
339 			   char *interface, int num)
340 {
341 	char *st;
342 
343 	debug("%s: %s interface: %s num: %d\n", __func__, s, interface, num);
344 	st = strsep(&s, " ");
345 	strcpy(dfu->name, st);
346 
347 	dfu->dev_num = num;
348 	dfu->alt = alt;
349 
350 	/* Specific for mmc device */
351 	if (strcmp(interface, "mmc") == 0) {
352 		if (dfu_fill_entity_mmc(dfu, s))
353 			return -1;
354 	} else if (strcmp(interface, "nand") == 0) {
355 		if (dfu_fill_entity_nand(dfu, s))
356 			return -1;
357 	} else if (strcmp(interface, "ram") == 0) {
358 		if (dfu_fill_entity_ram(dfu, s))
359 			return -1;
360 	} else {
361 		printf("%s: Device %s not (yet) supported!\n",
362 		       __func__,  interface);
363 		return -1;
364 	}
365 
366 	return 0;
367 }
368 
369 void dfu_free_entities(void)
370 {
371 	struct dfu_entity *dfu, *p, *t = NULL;
372 
373 	list_for_each_entry_safe_reverse(dfu, p, &dfu_list, list) {
374 		list_del(&dfu->list);
375 		t = dfu;
376 	}
377 	if (t)
378 		free(t);
379 	INIT_LIST_HEAD(&dfu_list);
380 }
381 
382 int dfu_config_entities(char *env, char *interface, int num)
383 {
384 	struct dfu_entity *dfu;
385 	int i, ret;
386 	char *s;
387 
388 	dfu_alt_num = dfu_find_alt_num(env);
389 	debug("%s: dfu_alt_num=%d\n", __func__, dfu_alt_num);
390 
391 	dfu = calloc(sizeof(*dfu), dfu_alt_num);
392 	if (!dfu)
393 		return -1;
394 	for (i = 0; i < dfu_alt_num; i++) {
395 
396 		s = strsep(&env, ";");
397 		ret = dfu_fill_entity(&dfu[i], s, i, interface, num);
398 		if (ret)
399 			return -1;
400 
401 		list_add_tail(&dfu[i].list, &dfu_list);
402 	}
403 
404 	return 0;
405 }
406 
407 const char *dfu_get_dev_type(enum dfu_device_type t)
408 {
409 	const char *dev_t[] = {NULL, "eMMC", "OneNAND", "NAND", "RAM" };
410 	return dev_t[t];
411 }
412 
413 const char *dfu_get_layout(enum dfu_layout l)
414 {
415 	const char *dfu_layout[] = {NULL, "RAW_ADDR", "FAT", "EXT2",
416 					   "EXT3", "EXT4", "RAM_ADDR" };
417 	return dfu_layout[l];
418 }
419 
420 void dfu_show_entities(void)
421 {
422 	struct dfu_entity *dfu;
423 
424 	puts("DFU alt settings list:\n");
425 
426 	list_for_each_entry(dfu, &dfu_list, list) {
427 		printf("dev: %s alt: %d name: %s layout: %s\n",
428 		       dfu_get_dev_type(dfu->dev_type), dfu->alt,
429 		       dfu->name, dfu_get_layout(dfu->layout));
430 	}
431 }
432 
433 int dfu_get_alt_number(void)
434 {
435 	return dfu_alt_num;
436 }
437 
438 struct dfu_entity *dfu_get_entity(int alt)
439 {
440 	struct dfu_entity *dfu;
441 
442 	list_for_each_entry(dfu, &dfu_list, list) {
443 		if (dfu->alt == alt)
444 			return dfu;
445 	}
446 
447 	return NULL;
448 }
449 
450 int dfu_get_alt(char *name)
451 {
452 	struct dfu_entity *dfu;
453 
454 	list_for_each_entry(dfu, &dfu_list, list) {
455 		if (!strncmp(dfu->name, name, strlen(dfu->name)))
456 			return dfu->alt;
457 	}
458 
459 	return -ENODEV;
460 }
461