1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * (C) Copyright 2010
4  * Texas Instruments, <www.ti.com>
5  *
6  * Aneesh V <aneesh@ti.com>
7  */
8 #include <common.h>
9 #include <dm.h>
10 #include <log.h>
11 #include <part.h>
12 #include <spl.h>
13 #include <linux/compiler.h>
14 #include <errno.h>
15 #include <asm/u-boot.h>
16 #include <errno.h>
17 #include <mmc.h>
18 #include <image.h>
19 
mmc_load_legacy(struct spl_image_info * spl_image,struct mmc * mmc,ulong sector,struct image_header * header)20 static int mmc_load_legacy(struct spl_image_info *spl_image, struct mmc *mmc,
21 			   ulong sector, struct image_header *header)
22 {
23 	u32 image_offset_sectors;
24 	u32 image_size_sectors;
25 	unsigned long count;
26 	u32 image_offset;
27 	int ret;
28 
29 	ret = spl_parse_image_header(spl_image, header);
30 	if (ret)
31 		return ret;
32 
33 	/* convert offset to sectors - round down */
34 	image_offset_sectors = spl_image->offset / mmc->read_bl_len;
35 	/* calculate remaining offset */
36 	image_offset = spl_image->offset % mmc->read_bl_len;
37 
38 	/* convert size to sectors - round up */
39 	image_size_sectors = (spl_image->size + mmc->read_bl_len - 1) /
40 			     mmc->read_bl_len;
41 
42 	/* Read the header too to avoid extra memcpy */
43 	count = blk_dread(mmc_get_blk_desc(mmc),
44 			  sector + image_offset_sectors,
45 			  image_size_sectors,
46 			  (void *)(ulong)spl_image->load_addr);
47 	debug("read %x sectors to %lx\n", image_size_sectors,
48 	      spl_image->load_addr);
49 	if (count != image_size_sectors)
50 		return -EIO;
51 
52 	if (image_offset)
53 		memmove((void *)(ulong)spl_image->load_addr,
54 			(void *)(ulong)spl_image->load_addr + image_offset,
55 			spl_image->size);
56 
57 	return 0;
58 }
59 
h_spl_load_read(struct spl_load_info * load,ulong sector,ulong count,void * buf)60 static ulong h_spl_load_read(struct spl_load_info *load, ulong sector,
61 			     ulong count, void *buf)
62 {
63 	struct mmc *mmc = load->dev;
64 
65 	return blk_dread(mmc_get_blk_desc(mmc), sector, count, buf);
66 }
67 
spl_mmc_raw_uboot_offset(int part)68 static __maybe_unused unsigned long spl_mmc_raw_uboot_offset(int part)
69 {
70 #if IS_ENABLED(CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_SECTOR)
71 	if (part == 0)
72 		return CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_DATA_PART_OFFSET;
73 #endif
74 
75 	return 0;
76 }
77 
78 static __maybe_unused
mmc_load_image_raw_sector(struct spl_image_info * spl_image,struct mmc * mmc,unsigned long sector)79 int mmc_load_image_raw_sector(struct spl_image_info *spl_image,
80 			      struct mmc *mmc, unsigned long sector)
81 {
82 	unsigned long count;
83 	struct image_header *header;
84 	struct blk_desc *bd = mmc_get_blk_desc(mmc);
85 	int ret = 0;
86 
87 	header = spl_get_load_buffer(-sizeof(*header), bd->blksz);
88 
89 	/* read image header to find the image size & load address */
90 	count = blk_dread(bd, sector, 1, header);
91 	debug("hdr read sector %lx, count=%lu\n", sector, count);
92 	if (count == 0) {
93 		ret = -EIO;
94 		goto end;
95 	}
96 
97 	if (IS_ENABLED(CONFIG_SPL_LOAD_FIT) &&
98 	    image_get_magic(header) == FDT_MAGIC) {
99 		struct spl_load_info load;
100 
101 		debug("Found FIT\n");
102 		load.dev = mmc;
103 		load.priv = NULL;
104 		load.filename = NULL;
105 		load.bl_len = mmc->read_bl_len;
106 		load.read = h_spl_load_read;
107 		ret = spl_load_simple_fit(spl_image, &load, sector, header);
108 	} else if (IS_ENABLED(CONFIG_SPL_LOAD_IMX_CONTAINER)) {
109 		struct spl_load_info load;
110 
111 		load.dev = mmc;
112 		load.priv = NULL;
113 		load.filename = NULL;
114 		load.bl_len = mmc->read_bl_len;
115 		load.read = h_spl_load_read;
116 
117 		ret = spl_load_imx_container(spl_image, &load, sector);
118 	} else {
119 		ret = mmc_load_legacy(spl_image, mmc, sector, header);
120 	}
121 
122 end:
123 	if (ret) {
124 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
125 		puts("mmc_load_image_raw_sector: mmc block read error\n");
126 #endif
127 		return -1;
128 	}
129 
130 	return 0;
131 }
132 
spl_mmc_get_device_index(u32 boot_device)133 static int spl_mmc_get_device_index(u32 boot_device)
134 {
135 	switch (boot_device) {
136 	case BOOT_DEVICE_MMC1:
137 		return 0;
138 	case BOOT_DEVICE_MMC2:
139 	case BOOT_DEVICE_MMC2_2:
140 		return 1;
141 	}
142 
143 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
144 	printf("spl: unsupported mmc boot device.\n");
145 #endif
146 
147 	return -ENODEV;
148 }
149 
spl_mmc_find_device(struct mmc ** mmcp,u32 boot_device)150 static int spl_mmc_find_device(struct mmc **mmcp, u32 boot_device)
151 {
152 	int err, mmc_dev;
153 
154 	mmc_dev = spl_mmc_get_device_index(boot_device);
155 	if (mmc_dev < 0)
156 		return mmc_dev;
157 
158 #if CONFIG_IS_ENABLED(DM_MMC)
159 	err = mmc_init_device(mmc_dev);
160 #else
161 	err = mmc_initialize(NULL);
162 #endif /* DM_MMC */
163 	if (err) {
164 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
165 		printf("spl: could not initialize mmc. error: %d\n", err);
166 #endif
167 		return err;
168 	}
169 	*mmcp = find_mmc_device(mmc_dev);
170 	err = *mmcp ? 0 : -ENODEV;
171 	if (err) {
172 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
173 		printf("spl: could not find mmc device %d. error: %d\n",
174 		       mmc_dev, err);
175 #endif
176 		return err;
177 	}
178 
179 	return 0;
180 }
181 
182 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_PARTITION
mmc_load_image_raw_partition(struct spl_image_info * spl_image,struct mmc * mmc,int partition,unsigned long sector)183 static int mmc_load_image_raw_partition(struct spl_image_info *spl_image,
184 					struct mmc *mmc, int partition,
185 					unsigned long sector)
186 {
187 	struct disk_partition info;
188 	int err;
189 
190 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_PARTITION_TYPE
191 	int type_part;
192 	/* Only support MBR so DOS_ENTRY_NUMBERS */
193 	for (type_part = 1; type_part <= DOS_ENTRY_NUMBERS; type_part++) {
194 		err = part_get_info(mmc_get_blk_desc(mmc), type_part, &info);
195 		if (err)
196 			continue;
197 		if (info.sys_ind ==
198 			CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_PARTITION_TYPE) {
199 			partition = type_part;
200 			break;
201 		}
202 	}
203 #endif
204 
205 	err = part_get_info(mmc_get_blk_desc(mmc), partition, &info);
206 	if (err) {
207 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
208 		puts("spl: partition error\n");
209 #endif
210 		return -1;
211 	}
212 
213 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_SECTOR
214 	return mmc_load_image_raw_sector(spl_image, mmc, info.start + sector);
215 #else
216 	return mmc_load_image_raw_sector(spl_image, mmc, info.start);
217 #endif
218 }
219 #endif
220 
221 #ifdef CONFIG_SPL_OS_BOOT
mmc_load_image_raw_os(struct spl_image_info * spl_image,struct mmc * mmc)222 static int mmc_load_image_raw_os(struct spl_image_info *spl_image,
223 				 struct mmc *mmc)
224 {
225 	int ret;
226 
227 #if defined(CONFIG_SYS_MMCSD_RAW_MODE_ARGS_SECTOR)
228 	unsigned long count;
229 
230 	count = blk_dread(mmc_get_blk_desc(mmc),
231 		CONFIG_SYS_MMCSD_RAW_MODE_ARGS_SECTOR,
232 		CONFIG_SYS_MMCSD_RAW_MODE_ARGS_SECTORS,
233 		(void *) CONFIG_SYS_SPL_ARGS_ADDR);
234 	if (count != CONFIG_SYS_MMCSD_RAW_MODE_ARGS_SECTORS) {
235 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
236 		puts("mmc_load_image_raw_os: mmc block read error\n");
237 #endif
238 		return -1;
239 	}
240 #endif	/* CONFIG_SYS_MMCSD_RAW_MODE_ARGS_SECTOR */
241 
242 	ret = mmc_load_image_raw_sector(spl_image, mmc,
243 		CONFIG_SYS_MMCSD_RAW_MODE_KERNEL_SECTOR);
244 	if (ret)
245 		return ret;
246 
247 	if (spl_image->os != IH_OS_LINUX && spl_image->os != IH_OS_TEE) {
248 		puts("Expected image is not found. Trying to start U-boot\n");
249 		return -ENOENT;
250 	}
251 
252 	return 0;
253 }
254 #else
spl_start_uboot(void)255 int spl_start_uboot(void)
256 {
257 	return 1;
258 }
mmc_load_image_raw_os(struct spl_image_info * spl_image,struct mmc * mmc)259 static int mmc_load_image_raw_os(struct spl_image_info *spl_image,
260 				 struct mmc *mmc)
261 {
262 	return -ENOSYS;
263 }
264 #endif
265 
266 #ifdef CONFIG_SYS_MMCSD_FS_BOOT_PARTITION
spl_mmc_do_fs_boot(struct spl_image_info * spl_image,struct mmc * mmc,const char * filename)267 static int spl_mmc_do_fs_boot(struct spl_image_info *spl_image, struct mmc *mmc,
268 			      const char *filename)
269 {
270 	int err = -ENOSYS;
271 
272 #ifdef CONFIG_SPL_FS_FAT
273 	if (!spl_start_uboot()) {
274 		err = spl_load_image_fat_os(spl_image, mmc_get_blk_desc(mmc),
275 			CONFIG_SYS_MMCSD_FS_BOOT_PARTITION);
276 		if (!err)
277 			return err;
278 	}
279 #ifdef CONFIG_SPL_FS_LOAD_PAYLOAD_NAME
280 	err = spl_load_image_fat(spl_image, mmc_get_blk_desc(mmc),
281 				 CONFIG_SYS_MMCSD_FS_BOOT_PARTITION,
282 				 filename);
283 	if (!err)
284 		return err;
285 #endif
286 #endif
287 #ifdef CONFIG_SPL_FS_EXT4
288 	if (!spl_start_uboot()) {
289 		err = spl_load_image_ext_os(spl_image, mmc_get_blk_desc(mmc),
290 			CONFIG_SYS_MMCSD_FS_BOOT_PARTITION);
291 		if (!err)
292 			return err;
293 	}
294 #ifdef CONFIG_SPL_FS_LOAD_PAYLOAD_NAME
295 	err = spl_load_image_ext(spl_image, mmc_get_blk_desc(mmc),
296 				 CONFIG_SYS_MMCSD_FS_BOOT_PARTITION,
297 				 filename);
298 	if (!err)
299 		return err;
300 #endif
301 #endif
302 
303 #if defined(CONFIG_SPL_FS_FAT) || defined(CONFIG_SPL_FS_EXT4)
304 	err = -ENOENT;
305 #endif
306 
307 	return err;
308 }
309 #else
spl_mmc_do_fs_boot(struct spl_image_info * spl_image,struct mmc * mmc,const char * filename)310 static int spl_mmc_do_fs_boot(struct spl_image_info *spl_image, struct mmc *mmc,
311 			      const char *filename)
312 {
313 	return -ENOSYS;
314 }
315 #endif
316 
spl_mmc_boot_mode(const u32 boot_device)317 u32 __weak spl_mmc_boot_mode(const u32 boot_device)
318 {
319 #if defined(CONFIG_SPL_FS_FAT) || defined(CONFIG_SPL_FS_EXT4)
320 	return MMCSD_MODE_FS;
321 #elif defined(CONFIG_SUPPORT_EMMC_BOOT)
322 	return MMCSD_MODE_EMMCBOOT;
323 #else
324 	return MMCSD_MODE_RAW;
325 #endif
326 }
327 
328 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_PARTITION
spl_mmc_boot_partition(const u32 boot_device)329 int __weak spl_mmc_boot_partition(const u32 boot_device)
330 {
331 	return CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_PARTITION;
332 }
333 #endif
334 
spl_mmc_get_uboot_raw_sector(struct mmc * mmc,unsigned long raw_sect)335 unsigned long __weak spl_mmc_get_uboot_raw_sector(struct mmc *mmc,
336 						  unsigned long raw_sect)
337 {
338 	return raw_sect;
339 }
340 
default_spl_mmc_emmc_boot_partition(struct mmc * mmc)341 int default_spl_mmc_emmc_boot_partition(struct mmc *mmc)
342 {
343 	int part;
344 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_EMMC_BOOT_PARTITION
345 	part = CONFIG_SYS_MMCSD_RAW_MODE_EMMC_BOOT_PARTITION;
346 #else
347 	/*
348 	 * We need to check what the partition is configured to.
349 	 * 1 and 2 match up to boot0 / boot1 and 7 is user data
350 	 * which is the first physical partition (0).
351 	 */
352 	part = (mmc->part_config >> 3) & PART_ACCESS_MASK;
353 	if (part == 7)
354 		part = 0;
355 #endif
356 	return part;
357 }
358 
spl_mmc_emmc_boot_partition(struct mmc * mmc)359 int __weak spl_mmc_emmc_boot_partition(struct mmc *mmc)
360 {
361 	return default_spl_mmc_emmc_boot_partition(mmc);
362 }
363 
spl_mmc_load(struct spl_image_info * spl_image,struct spl_boot_device * bootdev,const char * filename,int raw_part,unsigned long raw_sect)364 int spl_mmc_load(struct spl_image_info *spl_image,
365 		 struct spl_boot_device *bootdev,
366 		 const char *filename,
367 		 int raw_part,
368 		 unsigned long raw_sect)
369 {
370 	static struct mmc *mmc;
371 	u32 boot_mode;
372 	int err = 0;
373 	__maybe_unused int part = 0;
374 
375 	/* Perform peripheral init only once */
376 	if (!mmc) {
377 		err = spl_mmc_find_device(&mmc, bootdev->boot_device);
378 		if (err)
379 			return err;
380 
381 		err = mmc_init(mmc);
382 		if (err) {
383 			mmc = NULL;
384 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
385 			printf("spl: mmc init failed with error: %d\n", err);
386 #endif
387 			return err;
388 		}
389 	}
390 
391 	boot_mode = spl_mmc_boot_mode(bootdev->boot_device);
392 	err = -EINVAL;
393 	switch (boot_mode) {
394 	case MMCSD_MODE_EMMCBOOT:
395 		part = spl_mmc_emmc_boot_partition(mmc);
396 
397 		if (CONFIG_IS_ENABLED(MMC_TINY))
398 			err = mmc_switch_part(mmc, part);
399 		else
400 			err = blk_dselect_hwpart(mmc_get_blk_desc(mmc), part);
401 
402 		if (err) {
403 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
404 			puts("spl: mmc partition switch failed\n");
405 #endif
406 			return err;
407 		}
408 		/* Fall through */
409 	case MMCSD_MODE_RAW:
410 		debug("spl: mmc boot mode: raw\n");
411 
412 		if (!spl_start_uboot()) {
413 			err = mmc_load_image_raw_os(spl_image, mmc);
414 			if (!err)
415 				return err;
416 		}
417 
418 		raw_sect = spl_mmc_get_uboot_raw_sector(mmc, raw_sect);
419 
420 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_PARTITION
421 		err = mmc_load_image_raw_partition(spl_image, mmc, raw_part,
422 						   raw_sect);
423 		if (!err)
424 			return err;
425 #endif
426 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_USE_SECTOR
427 		err = mmc_load_image_raw_sector(spl_image, mmc,
428 				raw_sect + spl_mmc_raw_uboot_offset(part));
429 		if (!err)
430 			return err;
431 #endif
432 		/* If RAW mode fails, try FS mode. */
433 	case MMCSD_MODE_FS:
434 		debug("spl: mmc boot mode: fs\n");
435 
436 		err = spl_mmc_do_fs_boot(spl_image, mmc, filename);
437 		if (!err)
438 			return err;
439 
440 		break;
441 #ifdef CONFIG_SPL_LIBCOMMON_SUPPORT
442 	default:
443 		puts("spl: mmc: wrong boot mode\n");
444 #endif
445 	}
446 
447 	return err;
448 }
449 
spl_mmc_load_image(struct spl_image_info * spl_image,struct spl_boot_device * bootdev)450 int spl_mmc_load_image(struct spl_image_info *spl_image,
451 		       struct spl_boot_device *bootdev)
452 {
453 	return spl_mmc_load(spl_image, bootdev,
454 #ifdef CONFIG_SPL_FS_LOAD_PAYLOAD_NAME
455 			    CONFIG_SPL_FS_LOAD_PAYLOAD_NAME,
456 #else
457 			    NULL,
458 #endif
459 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_PARTITION
460 			    spl_mmc_boot_partition(bootdev->boot_device),
461 #else
462 			    0,
463 #endif
464 #ifdef CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_SECTOR
465 			    CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_SECTOR);
466 #else
467 			    0);
468 #endif
469 }
470 
471 SPL_LOAD_IMAGE_METHOD("MMC1", 0, BOOT_DEVICE_MMC1, spl_mmc_load_image);
472 SPL_LOAD_IMAGE_METHOD("MMC2", 0, BOOT_DEVICE_MMC2, spl_mmc_load_image);
473 SPL_LOAD_IMAGE_METHOD("MMC2_2", 0, BOOT_DEVICE_MMC2_2, spl_mmc_load_image);
474