1 /* 2 * Copyright (c) 2014-2020, ARM Limited and Contributors. All rights reserved. 3 * 4 * SPDX-License-Identifier: BSD-3-Clause 5 */ 6 7 #include <assert.h> 8 #include <errno.h> 9 #include <stdint.h> 10 #include <string.h> 11 12 #include <platform_def.h> 13 14 #include <common/bl_common.h> 15 #include <common/debug.h> 16 #include <drivers/io/io_driver.h> 17 #include <drivers/io/io_fip.h> 18 #include <drivers/io/io_storage.h> 19 #include <lib/utils.h> 20 #include <plat/common/platform.h> 21 #include <tools_share/firmware_image_package.h> 22 #include <tools_share/uuid.h> 23 24 #ifndef MAX_FIP_DEVICES 25 #define MAX_FIP_DEVICES 1 26 #endif 27 28 /* Useful for printing UUIDs when debugging.*/ 29 #define PRINT_UUID2(x) \ 30 "%08x-%04hx-%04hx-%02hhx%02hhx-%02hhx%02hhx%02hhx%02hhx%02hhx%02hhx", \ 31 x.time_low, x.time_mid, x.time_hi_and_version, \ 32 x.clock_seq_hi_and_reserved, x.clock_seq_low, \ 33 x.node[0], x.node[1], x.node[2], x.node[3], \ 34 x.node[4], x.node[5] 35 36 typedef struct { 37 unsigned int file_pos; 38 fip_toc_entry_t entry; 39 } file_state_t; 40 41 /* 42 * Maintain dev_spec per FIP Device 43 * TODO - Add backend handles and file state 44 * per FIP device here once backends like io_memmap 45 * can support multiple open files 46 */ 47 typedef struct { 48 uintptr_t dev_spec; 49 uint16_t plat_toc_flag; 50 } fip_dev_state_t; 51 52 static const uuid_t uuid_null; 53 /* 54 * Only one file can be open across all FIP device 55 * as backends like io_memmap don't support 56 * multiple open files. The file state and 57 * backend handle should be maintained per FIP device 58 * if the same support is available in the backend 59 */ 60 static file_state_t current_file = {0}; 61 static uintptr_t backend_dev_handle; 62 static uintptr_t backend_image_spec; 63 64 static fip_dev_state_t state_pool[MAX_FIP_DEVICES]; 65 static io_dev_info_t dev_info_pool[MAX_FIP_DEVICES]; 66 67 /* Track number of allocated fip devices */ 68 static unsigned int fip_dev_count; 69 70 /* Firmware Image Package driver functions */ 71 static int fip_dev_open(const uintptr_t dev_spec, io_dev_info_t **dev_info); 72 static int fip_file_open(io_dev_info_t *dev_info, const uintptr_t spec, 73 io_entity_t *entity); 74 static int fip_file_len(io_entity_t *entity, size_t *length); 75 static int fip_file_read(io_entity_t *entity, uintptr_t buffer, size_t length, 76 size_t *length_read); 77 static int fip_file_close(io_entity_t *entity); 78 static int fip_dev_init(io_dev_info_t *dev_info, const uintptr_t init_params); 79 static int fip_dev_close(io_dev_info_t *dev_info); 80 81 82 /* Return 0 for equal uuids. */ 83 static inline int compare_uuids(const uuid_t *uuid1, const uuid_t *uuid2) 84 { 85 return memcmp(uuid1, uuid2, sizeof(uuid_t)); 86 } 87 88 89 static inline int is_valid_header(fip_toc_header_t *header) 90 { 91 if ((header->name == TOC_HEADER_NAME) && (header->serial_number != 0)) { 92 return 1; 93 } else { 94 return 0; 95 } 96 } 97 98 99 /* Identify the device type as a virtual driver */ 100 static io_type_t device_type_fip(void) 101 { 102 return IO_TYPE_FIRMWARE_IMAGE_PACKAGE; 103 } 104 105 106 static const io_dev_connector_t fip_dev_connector = { 107 .dev_open = fip_dev_open 108 }; 109 110 111 static const io_dev_funcs_t fip_dev_funcs = { 112 .type = device_type_fip, 113 .open = fip_file_open, 114 .seek = NULL, 115 .size = fip_file_len, 116 .read = fip_file_read, 117 .write = NULL, 118 .close = fip_file_close, 119 .dev_init = fip_dev_init, 120 .dev_close = fip_dev_close, 121 }; 122 123 /* Locate a file state in the pool, specified by address */ 124 static int find_first_fip_state(const uintptr_t dev_spec, 125 unsigned int *index_out) 126 { 127 int result = -ENOENT; 128 unsigned int index; 129 130 for (index = 0; index < (unsigned int)MAX_FIP_DEVICES; ++index) { 131 /* dev_spec is used as identifier since it's unique */ 132 if (state_pool[index].dev_spec == dev_spec) { 133 result = 0; 134 *index_out = index; 135 break; 136 } 137 } 138 return result; 139 } 140 141 142 /* Allocate a device info from the pool and return a pointer to it */ 143 static int allocate_dev_info(io_dev_info_t **dev_info) 144 { 145 int result = -ENOMEM; 146 147 assert(dev_info != NULL); 148 149 if (fip_dev_count < (unsigned int)MAX_FIP_DEVICES) { 150 unsigned int index = 0; 151 152 result = find_first_fip_state(0, &index); 153 assert(result == 0); 154 /* initialize dev_info */ 155 dev_info_pool[index].funcs = &fip_dev_funcs; 156 dev_info_pool[index].info = 157 (uintptr_t)&state_pool[index]; 158 *dev_info = &dev_info_pool[index]; 159 ++fip_dev_count; 160 } 161 162 return result; 163 } 164 165 /* Release a device info to the pool */ 166 static int free_dev_info(io_dev_info_t *dev_info) 167 { 168 int result; 169 unsigned int index = 0; 170 fip_dev_state_t *state; 171 172 assert(dev_info != NULL); 173 174 state = (fip_dev_state_t *)dev_info->info; 175 result = find_first_fip_state(state->dev_spec, &index); 176 if (result == 0) { 177 /* free if device info is valid */ 178 zeromem(state, sizeof(fip_dev_state_t)); 179 --fip_dev_count; 180 } 181 182 return result; 183 } 184 185 /* 186 * Multiple FIP devices can be opened depending on the value of 187 * MAX_FIP_DEVICES. Given that there is only one backend, only a 188 * single file can be open at a time by any FIP device. 189 */ 190 static int fip_dev_open(const uintptr_t dev_spec, 191 io_dev_info_t **dev_info) 192 { 193 int result; 194 io_dev_info_t *info; 195 fip_dev_state_t *state; 196 197 assert(dev_info != NULL); 198 #if MAX_FIP_DEVICES > 1 199 assert(dev_spec != (uintptr_t)NULL); 200 #endif 201 202 result = allocate_dev_info(&info); 203 if (result != 0) 204 return -ENOMEM; 205 206 state = (fip_dev_state_t *)info->info; 207 208 state->dev_spec = dev_spec; 209 210 *dev_info = info; 211 212 return 0; 213 } 214 215 216 /* Do some basic package checks. */ 217 static int fip_dev_init(io_dev_info_t *dev_info, const uintptr_t init_params) 218 { 219 int result; 220 unsigned int image_id = (unsigned int)init_params; 221 uintptr_t backend_handle; 222 fip_toc_header_t header; 223 size_t bytes_read; 224 fip_dev_state_t *state; 225 226 assert(dev_info != NULL); 227 228 state = (fip_dev_state_t *)dev_info->info; 229 230 /* Obtain a reference to the image by querying the platform layer */ 231 result = plat_get_image_source(image_id, &backend_dev_handle, 232 &backend_image_spec); 233 if (result != 0) { 234 WARN("Failed to obtain reference to image id=%u (%i)\n", 235 image_id, result); 236 result = -ENOENT; 237 goto fip_dev_init_exit; 238 } 239 240 /* Attempt to access the FIP image */ 241 result = io_open(backend_dev_handle, backend_image_spec, 242 &backend_handle); 243 if (result != 0) { 244 WARN("Failed to access image id=%u (%i)\n", image_id, result); 245 result = -ENOENT; 246 goto fip_dev_init_exit; 247 } 248 249 result = io_read(backend_handle, (uintptr_t)&header, sizeof(header), 250 &bytes_read); 251 if (result == 0) { 252 if (!is_valid_header(&header)) { 253 WARN("Firmware Image Package header check failed.\n"); 254 result = -ENOENT; 255 } else { 256 VERBOSE("FIP header looks OK.\n"); 257 /* 258 * Store 16-bit Platform ToC flags field which occupies 259 * bits [32-47] in fip header. 260 */ 261 state->plat_toc_flag = (header.flags >> 32) & 0xffff; 262 } 263 } 264 265 io_close(backend_handle); 266 267 fip_dev_init_exit: 268 return result; 269 } 270 271 /* Close a connection to the FIP device */ 272 static int fip_dev_close(io_dev_info_t *dev_info) 273 { 274 /* TODO: Consider tracking open files and cleaning them up here */ 275 276 /* Clear the backend. */ 277 backend_dev_handle = (uintptr_t)NULL; 278 backend_image_spec = (uintptr_t)NULL; 279 280 return free_dev_info(dev_info); 281 } 282 283 284 /* Open a file for access from package. */ 285 static int fip_file_open(io_dev_info_t *dev_info, const uintptr_t spec, 286 io_entity_t *entity) 287 { 288 int result; 289 uintptr_t backend_handle; 290 const io_uuid_spec_t *uuid_spec = (io_uuid_spec_t *)spec; 291 size_t bytes_read; 292 int found_file = 0; 293 294 assert(uuid_spec != NULL); 295 assert(entity != NULL); 296 297 /* Can only have one file open at a time for the moment. We need to 298 * track state like file cursor position. We know the header lives at 299 * offset zero, so this entry should never be zero for an active file. 300 * When the system supports dynamic memory allocation we can allow more 301 * than one open file at a time if needed. 302 */ 303 if (current_file.entry.offset_address != 0) { 304 WARN("fip_file_open : Only one open file at a time.\n"); 305 return -ENOMEM; 306 } 307 308 /* Attempt to access the FIP image */ 309 result = io_open(backend_dev_handle, backend_image_spec, 310 &backend_handle); 311 if (result != 0) { 312 WARN("Failed to open Firmware Image Package (%i)\n", result); 313 result = -ENOENT; 314 goto fip_file_open_exit; 315 } 316 317 /* Seek past the FIP header into the Table of Contents */ 318 result = io_seek(backend_handle, IO_SEEK_SET, 319 (signed long long)sizeof(fip_toc_header_t)); 320 if (result != 0) { 321 WARN("fip_file_open: failed to seek\n"); 322 result = -ENOENT; 323 goto fip_file_open_close; 324 } 325 326 found_file = 0; 327 do { 328 result = io_read(backend_handle, 329 (uintptr_t)¤t_file.entry, 330 sizeof(current_file.entry), 331 &bytes_read); 332 if (result == 0) { 333 if (compare_uuids(¤t_file.entry.uuid, 334 &uuid_spec->uuid) == 0) { 335 found_file = 1; 336 break; 337 } 338 } else { 339 WARN("Failed to read FIP (%i)\n", result); 340 goto fip_file_open_close; 341 } 342 } while (compare_uuids(¤t_file.entry.uuid, &uuid_null) != 0); 343 344 if (found_file == 1) { 345 /* All fine. Update entity info with file state and return. Set 346 * the file position to 0. The 'current_file.entry' holds the 347 * base and size of the file. 348 */ 349 current_file.file_pos = 0; 350 entity->info = (uintptr_t)¤t_file; 351 } else { 352 /* Did not find the file in the FIP. */ 353 current_file.entry.offset_address = 0; 354 result = -ENOENT; 355 } 356 357 fip_file_open_close: 358 io_close(backend_handle); 359 360 fip_file_open_exit: 361 return result; 362 } 363 364 365 /* Return the size of a file in package */ 366 static int fip_file_len(io_entity_t *entity, size_t *length) 367 { 368 assert(entity != NULL); 369 assert(length != NULL); 370 371 *length = ((file_state_t *)entity->info)->entry.size; 372 373 return 0; 374 } 375 376 377 /* Read data from a file in package */ 378 static int fip_file_read(io_entity_t *entity, uintptr_t buffer, size_t length, 379 size_t *length_read) 380 { 381 int result; 382 file_state_t *fp; 383 size_t file_offset; 384 size_t bytes_read; 385 uintptr_t backend_handle; 386 387 assert(entity != NULL); 388 assert(length_read != NULL); 389 assert(entity->info != (uintptr_t)NULL); 390 391 /* Open the backend, attempt to access the blob image */ 392 result = io_open(backend_dev_handle, backend_image_spec, 393 &backend_handle); 394 if (result != 0) { 395 WARN("Failed to open FIP (%i)\n", result); 396 result = -ENOENT; 397 goto fip_file_read_exit; 398 } 399 400 fp = (file_state_t *)entity->info; 401 402 /* Seek to the position in the FIP where the payload lives */ 403 file_offset = fp->entry.offset_address + fp->file_pos; 404 result = io_seek(backend_handle, IO_SEEK_SET, 405 (signed long long)file_offset); 406 if (result != 0) { 407 WARN("fip_file_read: failed to seek\n"); 408 result = -ENOENT; 409 goto fip_file_read_close; 410 } 411 412 result = io_read(backend_handle, buffer, length, &bytes_read); 413 if (result != 0) { 414 /* We cannot read our data. Fail. */ 415 WARN("Failed to read payload (%i)\n", result); 416 result = -ENOENT; 417 goto fip_file_read_close; 418 } else { 419 /* Set caller length and new file position. */ 420 *length_read = bytes_read; 421 fp->file_pos += bytes_read; 422 } 423 424 /* Close the backend. */ 425 fip_file_read_close: 426 io_close(backend_handle); 427 428 fip_file_read_exit: 429 return result; 430 } 431 432 433 /* Close a file in package */ 434 static int fip_file_close(io_entity_t *entity) 435 { 436 /* Clear our current file pointer. 437 * If we had malloc() we would free() here. 438 */ 439 if (current_file.entry.offset_address != 0) { 440 zeromem(¤t_file, sizeof(current_file)); 441 } 442 443 /* Clear the Entity info. */ 444 entity->info = 0; 445 446 return 0; 447 } 448 449 /* Exported functions */ 450 451 /* Register the Firmware Image Package driver with the IO abstraction */ 452 int register_io_dev_fip(const io_dev_connector_t **dev_con) 453 { 454 int result; 455 assert(dev_con != NULL); 456 457 /* 458 * Since dev_info isn't really used in io_register_device, always 459 * use the same device info at here instead. 460 */ 461 result = io_register_device(&dev_info_pool[0]); 462 if (result == 0) 463 *dev_con = &fip_dev_connector; 464 465 return result; 466 } 467 468 /* Function to retrieve plat_toc_flags, previously saved in FIP dev */ 469 int fip_dev_get_plat_toc_flag(io_dev_info_t *dev_info, uint16_t *plat_toc_flag) 470 { 471 fip_dev_state_t *state; 472 473 assert(dev_info != NULL); 474 475 state = (fip_dev_state_t *)dev_info->info; 476 477 *plat_toc_flag = state->plat_toc_flag; 478 479 return 0; 480 } 481