1 /*
2 * Copyright (c) 2015-2023, Renesas Electronics Corporation. All rights reserved.
3 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
7 #include <errno.h>
8 #include <stdint.h>
9 #include <string.h>
10
11 #include <arch_helpers.h>
12 #include <common/bl_common.h>
13 #include <common/debug.h>
14 #include <drivers/auth/auth_mod.h>
15 #include <drivers/io/io_driver.h>
16 #include <drivers/io/io_storage.h>
17 #include <lib/mmio.h>
18 #include <plat/common/platform.h>
19 #include <tools_share/firmware_image_package.h>
20 #include <tools_share/uuid.h>
21
22 #include "io_rcar.h"
23 #include "io_common.h"
24 #include "io_private.h"
25 #include <platform_def.h>
26
27 extern int32_t plat_get_drv_source(uint32_t id, uintptr_t *dev,
28 uintptr_t *image_spec);
29
30 static int32_t rcar_dev_open(const uintptr_t dev_spec __attribute__ ((unused)),
31 io_dev_info_t **dev_info);
32 static int32_t rcar_dev_close(io_dev_info_t *dev_info);
33
34 typedef struct {
35 const int32_t name;
36 const uint32_t offset;
37 const uint32_t attr;
38 } plat_rcar_name_offset_t;
39
40 typedef struct {
41 /*
42 * Put position above the struct to allow {0} on static init.
43 * It is a workaround for a known bug in GCC
44 * http://gcc.gnu.org/bugzilla/show_bug.cgi?id=53119
45 */
46 uint32_t position;
47 uint32_t no_load;
48 uintptr_t offset;
49 uint32_t size;
50 uintptr_t dst;
51 uintptr_t partition; /* for eMMC */
52 /* RCAR_EMMC_PARTITION_BOOT_0 */
53 /* RCAR_EMMC_PARTITION_BOOT_1 */
54 /* RCAR_EMMC_PARTITION_USER */
55 } file_state_t;
56
57 #define RCAR_GET_FLASH_ADR(a, b) ((uint32_t)((0x40000U * (a)) + (b)))
58 #define RCAR_ATTR_SET_CALCADDR(a) ((a) & 0xF)
59 #define RCAR_ATTR_SET_ISNOLOAD(a) (((a) & 0x1) << 16U)
60 #define RCAR_ATTR_SET_CERTOFF(a) (((a) & 0xF) << 8U)
61 #define RCAR_ATTR_SET_ALL(a, b, c) ((uint32_t)(RCAR_ATTR_SET_CALCADDR(a) |\
62 RCAR_ATTR_SET_ISNOLOAD(b) |\
63 RCAR_ATTR_SET_CERTOFF(c)))
64
65 #define RCAR_ATTR_GET_CALCADDR(a) ((a) & 0xFU)
66 #define RCAR_ATTR_GET_ISNOLOAD(a) (((a) >> 16) & 0x1U)
67 #define RCAR_ATTR_GET_CERTOFF(a) ((uint32_t)(((a) >> 8) & 0xFU))
68
69 #define RCAR_MAX_BL3X_IMAGE (8U)
70 #define RCAR_SECTOR6_CERT_OFFSET (0x400U)
71 #define RCAR_SDRAM_certESS (0x43F00000U)
72 #define RCAR_CERT_SIZE (0x800U)
73 #define RCAR_CERT_INFO_SIZE_OFFSET (0x264U)
74 #define RCAR_CERT_INFO_DST_OFFSET (0x154U)
75 #define RCAR_CERT_INFO_SIZE_OFFSET1 (0x364U)
76 #define RCAR_CERT_INFO_DST_OFFSET1 (0x1D4U)
77 #define RCAR_CERT_INFO_SIZE_OFFSET2 (0x464U)
78 #define RCAR_CERT_INFO_DST_OFFSET2 (0x254U)
79 #define RCAR_CERT_LOAD (1U)
80
81 #define RCAR_FLASH_CERT_HEADER RCAR_GET_FLASH_ADR(6U, 0U)
82 #define RCAR_EMMC_CERT_HEADER (0x00030000U)
83
84 #define RCAR_COUNT_LOAD_BL33 (2U)
85 #define RCAR_COUNT_LOAD_BL33X (3U)
86
87 #define CHECK_IMAGE_AREA_CNT (7U)
88 #define BOOT_BL2_ADDR (0xE6304000U)
89 #define BOOT_BL2_LENGTH (0x19000U)
90
91 typedef struct {
92 uintptr_t dest;
93 uintptr_t length;
94 } addr_loaded_t;
95
96 static addr_loaded_t addr_loaded[CHECK_IMAGE_AREA_CNT] = {
97 [0] = {BOOT_BL2_ADDR, BOOT_BL2_LENGTH},
98 [1] = {BL31_BASE, RCAR_TRUSTED_SRAM_SIZE},
99 #ifndef SPD_NONE
100 [2] = {BL32_BASE, BL32_SIZE}
101 #endif
102 };
103
104 #ifndef SPD_NONE
105 static uint32_t addr_loaded_cnt = 3;
106 #else
107 static uint32_t addr_loaded_cnt = 2;
108 #endif
109
110 static const plat_rcar_name_offset_t name_offset[] = {
111 {BL31_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(0, 0, 0)},
112
113 /* BL3-2 is optional in the platform */
114 {BL32_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(1, 0, 1)},
115 {BL33_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(2, 0, 2)},
116 {BL332_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(3, 0, 3)},
117 {BL333_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(4, 0, 4)},
118 {BL334_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(5, 0, 5)},
119 {BL335_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(6, 0, 6)},
120 {BL336_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(7, 0, 7)},
121 {BL337_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(8, 0, 8)},
122 {BL338_IMAGE_ID, 0U, RCAR_ATTR_SET_ALL(9, 0, 9)},
123 };
124
125 #if TRUSTED_BOARD_BOOT
126 static const plat_rcar_name_offset_t cert_offset[] = {
127 /* Certificates */
128 {TRUSTED_KEY_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 0)},
129 {SOC_FW_KEY_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 0)},
130 {TRUSTED_OS_FW_KEY_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 0)},
131 {NON_TRUSTED_FW_KEY_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 0)},
132 {SOC_FW_CONTENT_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 0)},
133 {TRUSTED_OS_FW_CONTENT_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 1)},
134 {NON_TRUSTED_FW_CONTENT_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 2)},
135 {BL332_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 3)},
136 {BL333_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 4)},
137 {BL334_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 5)},
138 {BL335_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 6)},
139 {BL336_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 7)},
140 {BL337_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 8)},
141 {BL338_CERT_ID, 0U, RCAR_ATTR_SET_ALL(0, 1, 9)},
142 };
143 #endif /* TRUSTED_BOARD_BOOT */
144
145 static file_state_t current_file = { 0 };
146
147 static uintptr_t rcar_handle, rcar_spec;
148 static uint64_t rcar_image_header[RCAR_MAX_BL3X_IMAGE + 2U] = { 0U };
149 static uint64_t rcar_image_header_prttn[RCAR_MAX_BL3X_IMAGE + 2U] = { 0U };
150 static uint64_t rcar_image_number = { 0U };
151 static uint32_t rcar_cert_load = { 0U };
152 #if (RCAR_RPC_HYPERFLASH_ABLOADER == 1)
153 static uint32_t rcar_image_offset = 0U;
154 #endif
155
device_type_rcar(void)156 static io_type_t device_type_rcar(void)
157 {
158 return IO_TYPE_FIRMWARE_IMAGE_PACKAGE;
159 }
160
rcar_get_certificate(const int32_t name,uint32_t * cert)161 int32_t rcar_get_certificate(const int32_t name, uint32_t *cert)
162 {
163 #if TRUSTED_BOARD_BOOT
164 int32_t i;
165
166 for (i = 0; i < ARRAY_SIZE(cert_offset); i++) {
167 if (name != cert_offset[i].name) {
168 continue;
169 }
170
171 *cert = RCAR_CERT_SIZE;
172 *cert *= RCAR_ATTR_GET_CERTOFF(cert_offset[i].attr);
173 *cert += RCAR_SDRAM_certESS;
174 return 0;
175 }
176 #endif
177 return -EINVAL;
178 }
179
180 #define MFISBTSTSR (0xE6260604U)
181 #define MFISBTSTSR_BOOT_PARTITION (0x00000010U)
182
file_to_offset(const int32_t name,uintptr_t * offset,uint32_t * cert,uint32_t * no_load,uintptr_t * partition)183 static int32_t file_to_offset(const int32_t name, uintptr_t *offset,
184 uint32_t *cert, uint32_t *no_load,
185 uintptr_t *partition)
186 {
187 uint32_t addr;
188 int32_t i;
189
190 for (i = 0; i < ARRAY_SIZE(name_offset); i++) {
191 if (name != name_offset[i].name) {
192 continue;
193 }
194
195 addr = RCAR_ATTR_GET_CALCADDR(name_offset[i].attr);
196 if (rcar_image_number + 2U < addr) {
197 continue;
198 }
199
200 *offset = rcar_image_header[addr];
201
202 #if (RCAR_RPC_HYPERFLASH_ABLOADER == 1)
203 *offset += rcar_image_offset;
204 #endif
205
206 *cert = RCAR_CERT_SIZE;
207 *cert *= RCAR_ATTR_GET_CERTOFF(name_offset[i].attr);
208 *cert += RCAR_SDRAM_certESS;
209 *no_load = RCAR_ATTR_GET_ISNOLOAD(name_offset[i].attr);
210 *partition = rcar_image_header_prttn[addr];
211 return IO_SUCCESS;
212 }
213
214 #if TRUSTED_BOARD_BOOT
215 for (i = 0; i < ARRAY_SIZE(cert_offset); i++) {
216 if (name != cert_offset[i].name) {
217 continue;
218 }
219
220 *no_load = RCAR_ATTR_GET_ISNOLOAD(cert_offset[i].attr);
221 *partition = 0U;
222 *offset = 0U;
223 *cert = 0U;
224 return IO_SUCCESS;
225 }
226 #endif
227 return -EINVAL;
228 }
229
230 #define RCAR_BOOT_KEY_CERT_NEW (0xE6300F00U)
231 #define RCAR_CERT_MAGIC_NUM (0xE291F358U)
232
rcar_read_certificate(uint64_t cert,uint32_t * len,uintptr_t * dst)233 void rcar_read_certificate(uint64_t cert, uint32_t *len, uintptr_t *dst)
234 {
235 uint32_t seed, val, info_1, info_2;
236 uintptr_t size, dsth, dstl;
237
238 cert &= 0xFFFFFFFFU;
239
240 seed = mmio_read_32(RCAR_BOOT_KEY_CERT_NEW);
241 val = mmio_read_32(RCAR_BOOT_KEY_CERT_NEW + 0xC);
242 info_1 = (val >> 18) & 0x3U;
243 val = mmio_read_32(cert + 0xC);
244 info_2 = (val >> 21) & 0x3;
245
246 if (seed == RCAR_CERT_MAGIC_NUM) {
247 if (info_1 != 1) {
248 ERROR("BL2: Cert is invalid.\n");
249 *dst = 0;
250 *len = 0;
251 return;
252 }
253
254 if (info_2 > 2) {
255 ERROR("BL2: Cert is invalid.\n");
256 *dst = 0;
257 *len = 0;
258 return;
259 }
260
261 switch (info_2) {
262 case 2:
263 size = cert + RCAR_CERT_INFO_SIZE_OFFSET2;
264 dstl = cert + RCAR_CERT_INFO_DST_OFFSET2;
265 break;
266 case 1:
267 size = cert + RCAR_CERT_INFO_SIZE_OFFSET1;
268 dstl = cert + RCAR_CERT_INFO_DST_OFFSET1;
269 break;
270 case 0:
271 size = cert + RCAR_CERT_INFO_SIZE_OFFSET;
272 dstl = cert + RCAR_CERT_INFO_DST_OFFSET;
273 break;
274 }
275 val = mmio_read_32(size);
276 if (val > (UINT32_MAX / 4)) {
277 ERROR("BL2: %s[%d] uint32 overflow!\n",
278 __func__, __LINE__);
279 *dst = 0;
280 *len = 0;
281 return;
282 }
283
284 *len = val * 4U;
285 dsth = dstl + 4U;
286 *dst = ((uintptr_t) mmio_read_32(dsth) << 32) +
287 ((uintptr_t) mmio_read_32(dstl));
288 return;
289 }
290
291 size = cert + RCAR_CERT_INFO_SIZE_OFFSET;
292 val = mmio_read_32(size);
293 if (val > (UINT32_MAX / 4)) {
294 ERROR("BL2: %s[%d] uint32 overflow!\n", __func__, __LINE__);
295 *dst = 0;
296 *len = 0;
297 return;
298 }
299 *len = val * 4U;
300 dstl = cert + RCAR_CERT_INFO_DST_OFFSET;
301 dsth = dstl + 4U;
302 *dst = ((uintptr_t) mmio_read_32(dsth) << 32) +
303 ((uintptr_t) mmio_read_32(dstl));
304 }
305
check_load_area(uintptr_t dst,uintptr_t len)306 static int32_t check_load_area(uintptr_t dst, uintptr_t len)
307 {
308 uint32_t legacy = dst + len <= UINT32_MAX - 1 ? 1 : 0;
309 uintptr_t dram_start, dram_end;
310 uintptr_t prot_start, prot_end;
311 int32_t result = IO_SUCCESS;
312 int n;
313
314 dram_start = legacy ? DRAM1_NS_BASE : DRAM_40BIT_BASE;
315
316 dram_end = legacy ? DRAM1_NS_BASE + DRAM1_NS_SIZE :
317 DRAM_40BIT_BASE + DRAM_40BIT_SIZE;
318
319 prot_start = legacy ? DRAM_PROTECTED_BASE : DRAM_40BIT_PROTECTED_BASE;
320
321 prot_end = prot_start + DRAM_PROTECTED_SIZE;
322
323 if (dst < dram_start || len > dram_end || dst > dram_end - len) {
324 ERROR("BL2: dst address is on the protected area.\n");
325 result = IO_FAIL;
326 goto done;
327 }
328
329 /* load image is within SDRAM protected area */
330 if (dst >= prot_start && dst < prot_end) {
331 ERROR("BL2: dst address is on the protected area.\n");
332 result = IO_FAIL;
333 goto done;
334 }
335
336 if (len > prot_start || (dst < prot_start && dst > prot_start - len)) {
337 ERROR("BL2: %s[%d] loaded data is on the protected area.\n",
338 __func__, __LINE__);
339 result = IO_FAIL;
340 goto done;
341 }
342
343 if (addr_loaded_cnt >= CHECK_IMAGE_AREA_CNT) {
344 ERROR("BL2: max loadable non secure images reached\n");
345 result = IO_FAIL;
346 goto done;
347 }
348
349 addr_loaded[addr_loaded_cnt].dest = dst;
350 addr_loaded[addr_loaded_cnt].length = len;
351 for (n = 0; n < addr_loaded_cnt; n++) {
352 /*
353 * Check if next image invades a previous loaded image
354 *
355 * IMAGE n: area from previous image: dest| IMAGE n |length
356 * IMAGE n+1: area from next image: dst | IMAGE n |len
357 *
358 * 1. check:
359 * | IMAGE n |
360 * | IMAGE n+1 |
361 * 2. check:
362 * | IMAGE n |
363 * | IMAGE n+1 |
364 * 3. check:
365 * | IMAGE n |
366 * | IMAGE n+1 |
367 */
368 if (((dst >= addr_loaded[n].dest) &&
369 (dst <= addr_loaded[n].dest + addr_loaded[n].length)) ||
370 ((dst + len >= addr_loaded[n].dest) &&
371 (dst + len <= addr_loaded[n].dest + addr_loaded[n].length)) ||
372 ((dst <= addr_loaded[n].dest) &&
373 (dst + len >= addr_loaded[n].dest + addr_loaded[n].length))) {
374 ERROR("BL2: next image overlap a previous image area.\n");
375 result = IO_FAIL;
376 goto done;
377 }
378 }
379 addr_loaded_cnt++;
380
381 done:
382 if (result == IO_FAIL) {
383 ERROR("BL2: Out of range : dst=0x%lx len=0x%lx\n", dst, len);
384 }
385
386 return result;
387 }
388
load_bl33x(void)389 static int32_t load_bl33x(void)
390 {
391 static int32_t loaded = IO_NOT_SUPPORTED;
392 uintptr_t dst, partition, handle;
393 uint32_t noload, cert, len, i;
394 uintptr_t offset;
395 int32_t rc;
396 size_t cnt;
397 const int32_t img[] = {
398 BL33_IMAGE_ID,
399 BL332_IMAGE_ID,
400 BL333_IMAGE_ID,
401 BL334_IMAGE_ID,
402 BL335_IMAGE_ID,
403 BL336_IMAGE_ID,
404 BL337_IMAGE_ID,
405 BL338_IMAGE_ID
406 };
407
408 if (loaded != IO_NOT_SUPPORTED) {
409 return loaded;
410 }
411
412 for (i = 1; i < rcar_image_number; i++) {
413 rc = file_to_offset(img[i], &offset, &cert, &noload,
414 &partition);
415 if (rc != IO_SUCCESS) {
416 WARN("%s: failed to get offset\n", __func__);
417 loaded = IO_FAIL;
418 return loaded;
419 }
420
421 rcar_read_certificate((uint64_t) cert, &len, &dst);
422 ((io_drv_spec_t *) rcar_spec)->partition = partition;
423
424 rc = io_open(rcar_handle, rcar_spec, &handle);
425 if (rc != IO_SUCCESS) {
426 WARN("%s: Failed to open FIP (%i)\n", __func__, rc);
427 loaded = IO_FAIL;
428 return loaded;
429 }
430
431 rc = io_seek(handle, IO_SEEK_SET, offset);
432 if (rc != IO_SUCCESS) {
433 WARN("%s: failed to seek\n", __func__);
434 loaded = IO_FAIL;
435 return loaded;
436 }
437
438 rc = check_load_area(dst, len);
439 if (rc != IO_SUCCESS) {
440 WARN("%s: check load area\n", __func__);
441 loaded = IO_FAIL;
442 return loaded;
443 }
444
445 rc = io_read(handle, dst, len, &cnt);
446 if (rc != IO_SUCCESS) {
447 WARN("%s: failed to read\n", __func__);
448 loaded = IO_FAIL;
449 return loaded;
450 }
451 #if TRUSTED_BOARD_BOOT
452 rc = auth_mod_verify_img(img[i], (void *)dst, len);
453 if (rc != 0) {
454 memset((void *)dst, 0x00, len);
455 loaded = IO_FAIL;
456 return loaded;
457 }
458 #endif
459 io_close(handle);
460 }
461
462 loaded = IO_SUCCESS;
463
464 return loaded;
465 }
466
rcar_dev_init(io_dev_info_t * dev_info,const uintptr_t name)467 static int32_t rcar_dev_init(io_dev_info_t *dev_info, const uintptr_t name)
468 {
469 static uint64_t header[64] __aligned(FLASH_TRANS_SIZE_UNIT) = {0UL};
470 uintptr_t handle;
471 ssize_t offset;
472 uint32_t i;
473 int32_t rc;
474 size_t cnt;
475
476 /* Obtain a reference to the image by querying the platform layer */
477 rc = plat_get_drv_source(name, &rcar_handle, &rcar_spec);
478 if (rc != IO_SUCCESS) {
479 WARN("Failed to obtain reference to img %ld (%i)\n", name, rc);
480 return IO_FAIL;
481 }
482
483 if (rcar_cert_load == RCAR_CERT_LOAD) {
484 return IO_SUCCESS;
485 }
486
487 rc = io_open(rcar_handle, rcar_spec, &handle);
488 if (rc != IO_SUCCESS) {
489 WARN("Failed to access img %ld (%i)\n", name, rc);
490 return IO_FAIL;
491 }
492
493 /*
494 * get start address list
495 * [0] address num
496 * [1] BL33-1 image address
497 * [2] BL33-2 image address
498 * [3] BL33-3 image address
499 * [4] BL33-4 image address
500 * [5] BL33-5 image address
501 * [6] BL33-6 image address
502 * [7] BL33-7 image address
503 * [8] BL33-8 image address
504 */
505 offset = name == EMMC_DEV_ID ? RCAR_EMMC_CERT_HEADER :
506 RCAR_FLASH_CERT_HEADER;
507
508 #if (RCAR_RPC_HYPERFLASH_ABLOADER == 1)
509 rcar_image_offset = 0;
510 if ((name == FLASH_DEV_ID) &&
511 (mmio_read_32(MFISBTSTSR) & MFISBTSTSR_BOOT_PARTITION)) {
512 rcar_image_offset = 0x800000;
513 }
514 #endif
515
516 rc = io_seek(handle, IO_SEEK_SET, offset);
517 if (rc != IO_SUCCESS) {
518 WARN("Firmware Image Package header failed to seek\n");
519 goto error;
520 }
521
522 rc = io_read(handle, (uintptr_t) &header, sizeof(header), &cnt);
523 if (rc != IO_SUCCESS) {
524 WARN("Firmware Image Package header failed to read\n");
525 goto error;
526 }
527
528 #if RCAR_BL2_DCACHE == 1
529 inv_dcache_range((uint64_t) header, sizeof(header));
530 #endif
531
532 rcar_image_number = header[0];
533 if (rcar_image_number == 0 || rcar_image_number > RCAR_MAX_BL3X_IMAGE) {
534 WARN("Firmware Image Package header check failed.\n");
535 rc = IO_FAIL;
536 goto error;
537 }
538
539 for (i = 0; i < rcar_image_number + 2; i++) {
540 rcar_image_header[i] = header[i * 2 + 1];
541 rcar_image_header_prttn[i] = header[i * 2 + 2];
542 }
543
544 rc = io_seek(handle, IO_SEEK_SET, offset + RCAR_SECTOR6_CERT_OFFSET);
545 if (rc != IO_SUCCESS) {
546 WARN("Firmware Image Package header failed to seek cert\n");
547 goto error;
548 }
549
550 rc = io_read(handle, RCAR_SDRAM_certESS,
551 RCAR_CERT_SIZE * (2 + rcar_image_number), &cnt);
552 if (rc != IO_SUCCESS) {
553 WARN("cert file read error.\n");
554 goto error;
555 }
556
557 #if RCAR_BL2_DCACHE == 1
558 inv_dcache_range(RCAR_SDRAM_certESS,
559 RCAR_CERT_SIZE * (2 + rcar_image_number));
560 #endif
561
562 rcar_cert_load = RCAR_CERT_LOAD;
563 error:
564
565 if (rc != IO_SUCCESS) {
566 rc = IO_FAIL;
567 }
568
569 io_close(handle);
570
571 return rc;
572
573 }
574
rcar_file_open(io_dev_info_t * info,const uintptr_t file_spec,io_entity_t * entity)575 static int32_t rcar_file_open(io_dev_info_t *info, const uintptr_t file_spec,
576 io_entity_t *entity)
577 {
578 const io_drv_spec_t *spec = (io_drv_spec_t *) file_spec;
579 uintptr_t partition, offset, dst;
580 uint32_t noload, cert, len;
581 int32_t rc;
582
583 /*
584 * Only one file open at a time. We need to track state (ie, file
585 * cursor position). Since the header lives at offset zero, this entry
586 * should never be zero in an active file.
587 * Once the system supports dynamic memory allocation we will allow more
588 * than one open file at a time.
589 */
590 if (current_file.offset != 0U) {
591 WARN("%s: Only one open file at a time.\n", __func__);
592 return IO_RESOURCES_EXHAUSTED;
593 }
594
595 rc = file_to_offset(spec->offset, &offset, &cert, &noload, &partition);
596 if (rc != IO_SUCCESS) {
597 WARN("Failed to open file name %ld (%i)\n", spec->offset, rc);
598 return IO_FAIL;
599 }
600
601 if (noload != 0U) {
602 current_file.offset = 1;
603 current_file.dst = 0;
604 current_file.size = 1;
605 current_file.position = 0;
606 current_file.no_load = noload;
607 current_file.partition = 0;
608 entity->info = (uintptr_t) ¤t_file;
609
610 return IO_SUCCESS;
611 }
612
613 rcar_read_certificate((uint64_t) cert, &len, &dst);
614
615 current_file.partition = partition;
616 current_file.no_load = noload;
617 current_file.offset = offset;
618 current_file.position = 0;
619 current_file.size = len;
620 current_file.dst = dst;
621 entity->info = (uintptr_t) ¤t_file;
622
623 return IO_SUCCESS;
624 }
625
rcar_file_len(io_entity_t * entity,size_t * length)626 static int32_t rcar_file_len(io_entity_t *entity, size_t *length)
627 {
628 *length = ((file_state_t *) entity->info)->size;
629
630 NOTICE("%s: len: 0x%08lx\n", __func__, *length);
631
632 return IO_SUCCESS;
633 }
634
rcar_file_read(io_entity_t * entity,uintptr_t buffer,size_t length,size_t * cnt)635 static int32_t rcar_file_read(io_entity_t *entity, uintptr_t buffer,
636 size_t length, size_t *cnt)
637 {
638 file_state_t *fp = (file_state_t *) entity->info;
639 ssize_t offset = fp->offset + fp->position;
640 uintptr_t handle;
641 int32_t rc;
642
643 #ifdef SPD_NONE
644 static uint32_t load_bl33x_counter = 1;
645 #else
646 static uint32_t load_bl33x_counter;
647 #endif
648 if (current_file.no_load != 0U) {
649 *cnt = length;
650 return IO_SUCCESS;
651 }
652
653 ((io_drv_spec_t *) rcar_spec)->partition = fp->partition;
654
655 rc = io_open(rcar_handle, rcar_spec, &handle);
656 if (rc != IO_SUCCESS) {
657 WARN("Failed to open FIP (%i)\n", rc);
658 return IO_FAIL;
659 }
660
661 rc = io_seek(handle, IO_SEEK_SET, offset);
662 if (rc != IO_SUCCESS) {
663 WARN("%s: failed to seek\n", __func__);
664 goto error;
665 }
666
667 if (load_bl33x_counter == RCAR_COUNT_LOAD_BL33) {
668 rc = check_load_area(buffer, length);
669 if (rc != IO_SUCCESS) {
670 WARN("%s: load area err\n", __func__);
671 goto error;
672 }
673 }
674
675 rc = io_read(handle, buffer, length, cnt);
676 if (rc != IO_SUCCESS) {
677 WARN("Failed to read payload (%i)\n", rc);
678 goto error;
679 }
680
681 fp->position += *cnt;
682 io_close(handle);
683
684 load_bl33x_counter += 1;
685 if (load_bl33x_counter == RCAR_COUNT_LOAD_BL33X) {
686 return load_bl33x();
687 }
688
689 return IO_SUCCESS;
690 error:
691 io_close(handle);
692 return IO_FAIL;
693 }
694
rcar_file_close(io_entity_t * entity)695 static int32_t rcar_file_close(io_entity_t *entity)
696 {
697 if (current_file.offset != 0U) {
698 memset(¤t_file, 0, sizeof(current_file));
699 }
700
701 entity->info = 0U;
702
703 return IO_SUCCESS;
704 }
705
706 static const io_dev_funcs_t rcar_dev_funcs = {
707 .type = &device_type_rcar,
708 .open = &rcar_file_open,
709 .seek = NULL,
710 .size = &rcar_file_len,
711 .read = &rcar_file_read,
712 .write = NULL,
713 .close = &rcar_file_close,
714 .dev_init = &rcar_dev_init,
715 .dev_close = &rcar_dev_close,
716 };
717
718 static const io_dev_info_t rcar_dev_info = {
719 .funcs = &rcar_dev_funcs,
720 .info = (uintptr_t) 0
721 };
722
723 static const io_dev_connector_t rcar_dev_connector = {
724 .dev_open = &rcar_dev_open
725 };
726
rcar_dev_open(const uintptr_t dev_spec,io_dev_info_t ** dev_info)727 static int32_t rcar_dev_open(const uintptr_t dev_spec __attribute__ ((unused)),
728 io_dev_info_t **dev_info)
729 {
730 *dev_info = (io_dev_info_t *) &rcar_dev_info;
731
732 return IO_SUCCESS;
733 }
734
rcar_dev_close(io_dev_info_t * dev_info)735 static int32_t rcar_dev_close(io_dev_info_t *dev_info)
736 {
737 rcar_handle = 0;
738 rcar_spec = 0;
739
740 return IO_SUCCESS;
741 }
742
rcar_register_io_dev(const io_dev_connector_t ** dev_con)743 int32_t rcar_register_io_dev(const io_dev_connector_t **dev_con)
744 {
745 int32_t result;
746
747 result = io_register_device(&rcar_dev_info);
748 if (result == IO_SUCCESS) {
749 *dev_con = &rcar_dev_connector;
750 }
751
752 return result;
753 }
754