1 /* 2 * (C) Copyright 2010 3 * Texas Instruments, <www.ti.com> 4 * 5 * Aneesh V <aneesh@ti.com> 6 * 7 * SPDX-License-Identifier: GPL-2.0+ 8 */ 9 #include <common.h> 10 #include <dm.h> 11 #include <spl.h> 12 #include <asm/u-boot.h> 13 #include <nand.h> 14 #include <fat.h> 15 #include <version.h> 16 #include <image.h> 17 #include <malloc.h> 18 #include <dm/root.h> 19 #include <linux/compiler.h> 20 21 DECLARE_GLOBAL_DATA_PTR; 22 23 #ifndef CONFIG_SYS_UBOOT_START 24 #define CONFIG_SYS_UBOOT_START CONFIG_SYS_TEXT_BASE 25 #endif 26 #ifndef CONFIG_SYS_MONITOR_LEN 27 /* Unknown U-Boot size, let's assume it will not be more than 200 KB */ 28 #define CONFIG_SYS_MONITOR_LEN (200 * 1024) 29 #endif 30 31 u32 *boot_params_ptr = NULL; 32 33 /* Define board data structure */ 34 static bd_t bdata __attribute__ ((section(".data"))); 35 36 /* 37 * Board-specific Platform code can reimplement show_boot_progress () if needed 38 */ 39 __weak void show_boot_progress(int val) {} 40 41 /* 42 * Default function to determine if u-boot or the OS should 43 * be started. This implementation always returns 1. 44 * 45 * Please implement your own board specific funcion to do this. 46 * 47 * RETURN 48 * 0 to not start u-boot 49 * positive if u-boot should start 50 */ 51 #ifdef CONFIG_SPL_OS_BOOT 52 __weak int spl_start_uboot(void) 53 { 54 puts("SPL: Please implement spl_start_uboot() for your board\n"); 55 puts("SPL: Direct Linux boot not active!\n"); 56 return 1; 57 } 58 59 /* 60 * Weak default function for arch specific zImage check. Return zero 61 * and fill start and end address if image is recognized. 62 */ 63 int __weak bootz_setup(ulong image, ulong *start, ulong *end) 64 { 65 return 1; 66 } 67 #endif 68 69 /* 70 * Weak default function for board specific cleanup/preparation before 71 * Linux boot. Some boards/platforms might not need it, so just provide 72 * an empty stub here. 73 */ 74 __weak void spl_board_prepare_for_linux(void) 75 { 76 /* Nothing to do! */ 77 } 78 79 __weak void spl_board_prepare_for_boot(void) 80 { 81 /* Nothing to do! */ 82 } 83 84 void spl_set_header_raw_uboot(struct spl_image_info *spl_image) 85 { 86 spl_image->size = CONFIG_SYS_MONITOR_LEN; 87 spl_image->entry_point = CONFIG_SYS_UBOOT_START; 88 spl_image->load_addr = CONFIG_SYS_TEXT_BASE; 89 spl_image->os = IH_OS_U_BOOT; 90 spl_image->name = "U-Boot"; 91 } 92 93 int spl_parse_image_header(struct spl_image_info *spl_image, 94 const struct image_header *header) 95 { 96 u32 header_size = sizeof(struct image_header); 97 98 if (image_get_magic(header) == IH_MAGIC) { 99 if (spl_image->flags & SPL_COPY_PAYLOAD_ONLY) { 100 /* 101 * On some system (e.g. powerpc), the load-address and 102 * entry-point is located at address 0. We can't load 103 * to 0-0x40. So skip header in this case. 104 */ 105 spl_image->load_addr = image_get_load(header); 106 spl_image->entry_point = image_get_ep(header); 107 spl_image->size = image_get_data_size(header); 108 } else { 109 spl_image->entry_point = image_get_load(header); 110 /* Load including the header */ 111 spl_image->load_addr = spl_image->entry_point - 112 header_size; 113 spl_image->size = image_get_data_size(header) + 114 header_size; 115 } 116 spl_image->os = image_get_os(header); 117 spl_image->name = image_get_name(header); 118 debug("spl: payload image: %.*s load addr: 0x%x size: %d\n", 119 (int)sizeof(spl_image->name), spl_image->name, 120 spl_image->load_addr, spl_image->size); 121 } else { 122 #ifdef CONFIG_SPL_PANIC_ON_RAW_IMAGE 123 /* 124 * CONFIG_SPL_PANIC_ON_RAW_IMAGE is defined when the 125 * code which loads images in SPL cannot guarantee that 126 * absolutely all read errors will be reported. 127 * An example is the LPC32XX MLC NAND driver, which 128 * will consider that a completely unreadable NAND block 129 * is bad, and thus should be skipped silently. 130 */ 131 panic("** no mkimage signature but raw image not supported"); 132 #endif 133 134 #ifdef CONFIG_SPL_OS_BOOT 135 ulong start, end; 136 137 if (!bootz_setup((ulong)header, &start, &end)) { 138 spl_image->name = "Linux"; 139 spl_image->os = IH_OS_LINUX; 140 spl_image->load_addr = CONFIG_SYS_LOAD_ADDR; 141 spl_image->entry_point = CONFIG_SYS_LOAD_ADDR; 142 spl_image->size = end - start; 143 debug("spl: payload zImage, load addr: 0x%x size: %d\n", 144 spl_image->load_addr, spl_image->size); 145 return 0; 146 } 147 #endif 148 149 #ifdef CONFIG_SPL_ABORT_ON_RAW_IMAGE 150 /* Signature not found, proceed to other boot methods. */ 151 return -EINVAL; 152 #else 153 /* Signature not found - assume u-boot.bin */ 154 debug("mkimage signature not found - ih_magic = %x\n", 155 header->ih_magic); 156 spl_set_header_raw_uboot(spl_image); 157 #endif 158 } 159 return 0; 160 } 161 162 __weak void __noreturn jump_to_image_no_args(struct spl_image_info *spl_image) 163 { 164 typedef void __noreturn (*image_entry_noargs_t)(void); 165 166 image_entry_noargs_t image_entry = 167 (image_entry_noargs_t)(unsigned long)spl_image->entry_point; 168 169 debug("image entry point: 0x%X\n", spl_image->entry_point); 170 image_entry(); 171 } 172 173 #ifndef CONFIG_SPL_LOAD_FIT_ADDRESS 174 # define CONFIG_SPL_LOAD_FIT_ADDRESS 0 175 #endif 176 177 #if defined(CONFIG_SPL_RAM_DEVICE) || defined(CONFIG_SPL_DFU_SUPPORT) 178 static ulong spl_ram_load_read(struct spl_load_info *load, ulong sector, 179 ulong count, void *buf) 180 { 181 debug("%s: sector %lx, count %lx, buf %lx\n", 182 __func__, sector, count, (ulong)buf); 183 memcpy(buf, (void *)(CONFIG_SPL_LOAD_FIT_ADDRESS + sector), count); 184 return count; 185 } 186 187 static int spl_ram_load_image(struct spl_image_info *spl_image, 188 struct spl_boot_device *bootdev) 189 { 190 struct image_header *header; 191 192 header = (struct image_header *)CONFIG_SPL_LOAD_FIT_ADDRESS; 193 194 #if defined(CONFIG_SPL_DFU_SUPPORT) 195 if (bootdev->boot_device == BOOT_DEVICE_DFU) 196 spl_dfu_cmd(0, "dfu_alt_info_ram", "ram", "0"); 197 #endif 198 199 if (IS_ENABLED(CONFIG_SPL_LOAD_FIT) && 200 image_get_magic(header) == FDT_MAGIC) { 201 struct spl_load_info load; 202 203 debug("Found FIT\n"); 204 load.bl_len = 1; 205 load.read = spl_ram_load_read; 206 spl_load_simple_fit(spl_image, &load, 0, header); 207 } else { 208 debug("Legacy image\n"); 209 /* 210 * Get the header. It will point to an address defined by 211 * handoff which will tell where the image located inside 212 * the flash. For now, it will temporary fixed to address 213 * pointed by U-Boot. 214 */ 215 header = (struct image_header *) 216 (CONFIG_SYS_TEXT_BASE - sizeof(struct image_header)); 217 218 spl_parse_image_header(spl_image, header); 219 } 220 221 return 0; 222 } 223 #if defined(CONFIG_SPL_RAM_DEVICE) 224 SPL_LOAD_IMAGE_METHOD("RAM", 0, BOOT_DEVICE_RAM, spl_ram_load_image); 225 #endif 226 #if defined(CONFIG_SPL_DFU_SUPPORT) 227 SPL_LOAD_IMAGE_METHOD("USB DFU", 0, BOOT_DEVICE_DFU, spl_ram_load_image); 228 #endif 229 #endif 230 231 int spl_init(void) 232 { 233 int ret; 234 235 debug("spl_init()\n"); 236 #if defined(CONFIG_SYS_MALLOC_F_LEN) 237 #ifdef CONFIG_MALLOC_F_ADDR 238 gd->malloc_base = CONFIG_MALLOC_F_ADDR; 239 #endif 240 gd->malloc_limit = CONFIG_SYS_MALLOC_F_LEN; 241 gd->malloc_ptr = 0; 242 #endif 243 if (CONFIG_IS_ENABLED(OF_CONTROL) && !CONFIG_IS_ENABLED(OF_PLATDATA)) { 244 ret = fdtdec_setup(); 245 if (ret) { 246 debug("fdtdec_setup() returned error %d\n", ret); 247 return ret; 248 } 249 } 250 if (IS_ENABLED(CONFIG_SPL_DM)) { 251 /* With CONFIG_OF_PLATDATA, bring in all devices */ 252 ret = dm_init_and_scan(!CONFIG_IS_ENABLED(OF_PLATDATA)); 253 if (ret) { 254 debug("dm_init_and_scan() returned error %d\n", ret); 255 return ret; 256 } 257 } 258 gd->flags |= GD_FLG_SPL_INIT; 259 260 return 0; 261 } 262 263 #ifndef BOOT_DEVICE_NONE 264 #define BOOT_DEVICE_NONE 0xdeadbeef 265 #endif 266 267 __weak void board_boot_order(u32 *spl_boot_list) 268 { 269 spl_boot_list[0] = spl_boot_device(); 270 } 271 272 static struct spl_image_loader *spl_ll_find_loader(uint boot_device) 273 { 274 struct spl_image_loader *drv = 275 ll_entry_start(struct spl_image_loader, spl_image_loader); 276 const int n_ents = 277 ll_entry_count(struct spl_image_loader, spl_image_loader); 278 struct spl_image_loader *entry; 279 280 for (entry = drv; entry != drv + n_ents; entry++) { 281 if (boot_device == entry->boot_device) 282 return entry; 283 } 284 285 /* Not found */ 286 return NULL; 287 } 288 289 static int spl_load_image(struct spl_image_info *spl_image, 290 struct spl_image_loader *loader) 291 { 292 struct spl_boot_device bootdev; 293 294 bootdev.boot_device = loader->boot_device; 295 bootdev.boot_device_name = NULL; 296 297 return loader->load_image(spl_image, &bootdev); 298 } 299 300 /** 301 * boot_from_devices() - Try loading an booting U-Boot from a list of devices 302 * 303 * @spl_image: Place to put the image details if successful 304 * @spl_boot_list: List of boot devices to try 305 * @count: Number of elements in spl_boot_list 306 * @return 0 if OK, -ve on error 307 */ 308 static int boot_from_devices(struct spl_image_info *spl_image, 309 u32 spl_boot_list[], int count) 310 { 311 int i; 312 313 for (i = 0; i < count && spl_boot_list[i] != BOOT_DEVICE_NONE; i++) { 314 struct spl_image_loader *loader; 315 316 loader = spl_ll_find_loader(spl_boot_list[i]); 317 #if defined(CONFIG_SPL_SERIAL_SUPPORT) && defined(CONFIG_SPL_LIBCOMMON_SUPPORT) 318 if (loader) 319 printf("Trying to boot from %s", loader->name); 320 else 321 puts("SPL: Unsupported Boot Device!\n"); 322 #endif 323 if (loader && !spl_load_image(spl_image, loader)) 324 return 0; 325 } 326 327 return -ENODEV; 328 } 329 330 void board_init_r(gd_t *dummy1, ulong dummy2) 331 { 332 u32 spl_boot_list[] = { 333 BOOT_DEVICE_NONE, 334 BOOT_DEVICE_NONE, 335 BOOT_DEVICE_NONE, 336 BOOT_DEVICE_NONE, 337 BOOT_DEVICE_NONE, 338 }; 339 struct spl_image_info spl_image; 340 341 debug(">>spl:board_init_r()\n"); 342 343 #if defined(CONFIG_SYS_SPL_MALLOC_START) 344 mem_malloc_init(CONFIG_SYS_SPL_MALLOC_START, 345 CONFIG_SYS_SPL_MALLOC_SIZE); 346 gd->flags |= GD_FLG_FULL_MALLOC_INIT; 347 #endif 348 if (!(gd->flags & GD_FLG_SPL_INIT)) { 349 if (spl_init()) 350 hang(); 351 } 352 #ifndef CONFIG_PPC 353 /* 354 * timer_init() does not exist on PPC systems. The timer is initialized 355 * and enabled (decrementer) in interrupt_init() here. 356 */ 357 timer_init(); 358 #endif 359 360 #ifdef CONFIG_SPL_BOARD_INIT 361 spl_board_init(); 362 #endif 363 364 memset(&spl_image, '\0', sizeof(spl_image)); 365 board_boot_order(spl_boot_list); 366 367 if (boot_from_devices(&spl_image, spl_boot_list, 368 ARRAY_SIZE(spl_boot_list))) { 369 puts("SPL: failed to boot from all boot devices\n"); 370 hang(); 371 } 372 373 switch (spl_image.os) { 374 case IH_OS_U_BOOT: 375 debug("Jumping to U-Boot\n"); 376 break; 377 #ifdef CONFIG_SPL_OS_BOOT 378 case IH_OS_LINUX: 379 debug("Jumping to Linux\n"); 380 spl_board_prepare_for_linux(); 381 jump_to_image_linux(&spl_image, 382 (void *)CONFIG_SYS_SPL_ARGS_ADDR); 383 #endif 384 default: 385 debug("Unsupported OS image.. Jumping nevertheless..\n"); 386 } 387 #if defined(CONFIG_SYS_MALLOC_F_LEN) && !defined(CONFIG_SYS_SPL_MALLOC_SIZE) 388 debug("SPL malloc() used %#lx bytes (%ld KB)\n", gd->malloc_ptr, 389 gd->malloc_ptr / 1024); 390 #endif 391 392 debug("loaded - jumping to U-Boot..."); 393 spl_board_prepare_for_boot(); 394 jump_to_image_no_args(&spl_image); 395 } 396 397 /* 398 * This requires UART clocks to be enabled. In order for this to work the 399 * caller must ensure that the gd pointer is valid. 400 */ 401 void preloader_console_init(void) 402 { 403 gd->bd = &bdata; 404 gd->baudrate = CONFIG_BAUDRATE; 405 406 serial_init(); /* serial communications setup */ 407 408 gd->have_console = 1; 409 410 puts("\nU-Boot SPL " PLAIN_VERSION " (" U_BOOT_DATE " - " \ 411 U_BOOT_TIME ")\n"); 412 #ifdef CONFIG_SPL_DISPLAY_PRINT 413 spl_display_print(); 414 #endif 415 } 416 417 /** 418 * spl_relocate_stack_gd() - Relocate stack ready for board_init_r() execution 419 * 420 * Sometimes board_init_f() runs with a stack in SRAM but we want to use SDRAM 421 * for the main board_init_r() execution. This is typically because we need 422 * more stack space for things like the MMC sub-system. 423 * 424 * This function calculates the stack position, copies the global_data into 425 * place, sets the new gd (except for ARM, for which setting GD within a C 426 * function may not always work) and returns the new stack position. The 427 * caller is responsible for setting up the sp register and, in the case 428 * of ARM, setting up gd. 429 * 430 * All of this is done using the same layout and alignments as done in 431 * board_init_f_init_reserve() / board_init_f_alloc_reserve(). 432 * 433 * @return new stack location, or 0 to use the same stack 434 */ 435 ulong spl_relocate_stack_gd(void) 436 { 437 #ifdef CONFIG_SPL_STACK_R 438 gd_t *new_gd; 439 ulong ptr = CONFIG_SPL_STACK_R_ADDR; 440 441 #ifdef CONFIG_SPL_SYS_MALLOC_SIMPLE 442 if (CONFIG_SPL_STACK_R_MALLOC_SIMPLE_LEN) { 443 ptr -= CONFIG_SPL_STACK_R_MALLOC_SIMPLE_LEN; 444 gd->malloc_base = ptr; 445 gd->malloc_limit = CONFIG_SPL_STACK_R_MALLOC_SIMPLE_LEN; 446 gd->malloc_ptr = 0; 447 } 448 #endif 449 /* Get stack position: use 8-byte alignment for ABI compliance */ 450 ptr = CONFIG_SPL_STACK_R_ADDR - roundup(sizeof(gd_t),16); 451 new_gd = (gd_t *)ptr; 452 memcpy(new_gd, (void *)gd, sizeof(gd_t)); 453 #if CONFIG_IS_ENABLED(DM) 454 dm_fixup_for_gd_move(new_gd); 455 #endif 456 #if !defined(CONFIG_ARM) 457 gd = new_gd; 458 #endif 459 return ptr; 460 #else 461 return 0; 462 #endif 463 } 464