1 1.8 joe /* $NetBSD: exec_multiboot2.c,v 1.8 2025/06/28 18:52:04 joe Exp $ */ 2 1.1 manu 3 1.1 manu /* 4 1.1 manu * Copyright (c) 2019 The NetBSD Foundation, Inc. 5 1.1 manu * All rights reserved. 6 1.1 manu * 7 1.1 manu * Redistribution and use in source and binary forms, with or without 8 1.1 manu * modification, are permitted provided that the following conditions 9 1.1 manu * are met: 10 1.1 manu * 1. Redistributions of source code must retain the above copyright 11 1.1 manu * notice, this list of conditions and the following disclaimer. 12 1.1 manu * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 manu * notice, this list of conditions and the following disclaimer in the 14 1.1 manu * documentation and/or other materials provided with the distribution. 15 1.1 manu * 16 1.1 manu * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 17 1.1 manu * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 18 1.1 manu * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 19 1.1 manu * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 20 1.1 manu * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 21 1.1 manu * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 22 1.1 manu * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 23 1.1 manu * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 24 1.1 manu * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 25 1.1 manu * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 26 1.1 manu * POSSIBILITY OF SUCH DAMAGE. 27 1.1 manu */ 28 1.1 manu 29 1.1 manu #include <sys/param.h> 30 1.7 joe #include <sys/reboot.h> 31 1.7 joe #include <sys/types.h> 32 1.7 joe 33 1.1 manu #include <i386/multiboot2.h> 34 1.1 manu 35 1.1 manu #include <dev/acpi/acpica.h> 36 1.1 manu #include <x86/acpi_machdep.h> 37 1.5 jmcneill #include <dev/smbiosvar.h> 38 1.5 jmcneill #include <x86/smbios_machdep.h> 39 1.1 manu 40 1.7 joe #include <lib/libsa/stand.h> 41 1.7 joe #include <lib/libkern/libkern.h> 42 1.1 manu 43 1.1 manu 44 1.1 manu #include "loadfile.h" 45 1.1 manu #include "libi386.h" 46 1.1 manu #include "biosdisk.h" 47 1.1 manu #include "bootinfo.h" 48 1.1 manu #include "bootmod.h" 49 1.1 manu #include "vbe.h" 50 1.1 manu #ifdef EFIBOOT 51 1.1 manu #include "efiboot.h" 52 1.1 manu #endif 53 1.1 manu 54 1.1 manu #define CGA_BUF 0xb8000 /* From isa_machdep.h */ 55 1.1 manu 56 1.1 manu extern const char bootprog_name[], bootprog_rev[], bootprog_kernrev[]; 57 1.1 manu extern const uint8_t rasops_cmap[]; 58 1.1 manu extern struct btinfo_framebuffer btinfo_framebuffer; 59 1.1 manu extern struct btinfo_modulelist *btinfo_modulelist; 60 1.1 manu #ifdef EFIBOOT 61 1.1 manu extern struct btinfo_efimemmap *btinfo_efimemmap; 62 1.1 manu #else 63 1.1 manu extern struct btinfo_memmap *btinfo_memmap; 64 1.1 manu #endif 65 1.1 manu 66 1.1 manu 67 1.1 manu struct multiboot_package_priv { 68 1.1 manu struct multiboot_tag *mpp_mbi; 69 1.1 manu size_t mpp_mbi_len; 70 1.1 manu struct multiboot_header_tag_information_request*mpp_info_req; 71 1.1 manu struct multiboot_header_tag_address *mpp_address; 72 1.1 manu struct multiboot_header_tag_entry_address *mpp_entry; 73 1.1 manu struct multiboot_header_tag_console_flags *mpp_console; 74 1.1 manu struct multiboot_header_tag_framebuffer *mpp_framebuffer; 75 1.1 manu struct multiboot_header_tag *mpp_module_align; 76 1.1 manu struct multiboot_header_tag *mpp_efi_bs; 77 1.1 manu struct multiboot_header_tag_entry_address *mpp_entry_elf32; 78 1.1 manu struct multiboot_header_tag_entry_address *mpp_entry_elf64; 79 1.1 manu struct multiboot_header_tag_relocatable *mpp_relocatable; 80 1.1 manu }; 81 1.1 manu 82 1.1 manu #ifndef NO_MULTIBOOT2 83 1.1 manu 84 1.1 manu #ifdef MULTIBOOT2_DEBUG 85 1.1 manu static void 86 1.1 manu mbi_hexdump(char *addr, size_t len) 87 1.1 manu { 88 1.1 manu int i,j; 89 1.1 manu 90 1.1 manu for (i = 0; i < len; i += 16) { 91 1.1 manu printf(" %p ", addr + i); 92 1.1 manu for (j = 0; j < 16 && i + j < len; j++) { 93 1.1 manu char *cp = addr + i + j; 94 1.7 joe printf("%s%s%x", 95 1.1 manu (i+j) % 4 ? "" : " ", 96 1.1 manu (unsigned char)*cp < 0x10 ? "0" : "", 97 1.1 manu (unsigned char)*cp); 98 1.1 manu } 99 1.1 manu printf("\n"); 100 1.1 manu } 101 1.1 manu 102 1.1 manu return; 103 1.1 manu } 104 1.1 manu 105 1.1 manu static const char * 106 1.1 manu mbi_tag_name(uint32_t type) 107 1.1 manu { 108 1.1 manu const char *tag_name; 109 1.1 manu 110 1.1 manu switch (type) { 111 1.1 manu case MULTIBOOT_TAG_TYPE_END: 112 1.1 manu tag_name = "END"; break; 113 1.1 manu case MULTIBOOT_TAG_TYPE_CMDLINE: 114 1.1 manu tag_name = "CMDLINE"; break; 115 1.1 manu case MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME: 116 1.1 manu tag_name = "BOOT_LOADER_NAME"; break; 117 1.1 manu case MULTIBOOT_TAG_TYPE_MODULE: 118 1.1 manu tag_name = "MODULE"; break; 119 1.1 manu case MULTIBOOT_TAG_TYPE_BASIC_MEMINFO: 120 1.1 manu tag_name = "BASIC_MEMINFO"; break; 121 1.1 manu case MULTIBOOT_TAG_TYPE_BOOTDEV: 122 1.1 manu tag_name = "BOOTDEV"; break; 123 1.1 manu case MULTIBOOT_TAG_TYPE_MMAP: 124 1.1 manu tag_name = "MMAP"; break; 125 1.1 manu case MULTIBOOT_TAG_TYPE_VBE: 126 1.1 manu tag_name = "VBE"; break; 127 1.1 manu case MULTIBOOT_TAG_TYPE_FRAMEBUFFER: 128 1.1 manu tag_name = "FRAMEBUFFER"; break; 129 1.1 manu case MULTIBOOT_TAG_TYPE_ELF_SECTIONS: 130 1.1 manu tag_name = "ELF_SECTIONS"; break; 131 1.1 manu case MULTIBOOT_TAG_TYPE_APM: 132 1.1 manu tag_name = "APM"; break; 133 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32: 134 1.1 manu tag_name = "EFI32"; break; 135 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64: 136 1.1 manu tag_name = "EFI64"; break; 137 1.1 manu case MULTIBOOT_TAG_TYPE_SMBIOS: 138 1.1 manu tag_name = "SMBIOS"; break; 139 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_OLD: 140 1.1 manu tag_name = "ACPI_OLD"; break; 141 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_NEW: 142 1.1 manu tag_name = "ACPI_NEW"; break; 143 1.1 manu case MULTIBOOT_TAG_TYPE_NETWORK: 144 1.1 manu tag_name = "NETWORK"; break; 145 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_MMAP: 146 1.1 manu tag_name = "EFI_MMAP"; break; 147 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_BS: 148 1.1 manu tag_name = "EFI_BS"; break; 149 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32_IH: 150 1.1 manu tag_name = "EFI32_IH"; break; 151 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64_IH: 152 1.1 manu tag_name = "EFI64_IH"; break; 153 1.1 manu case MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR: 154 1.1 manu tag_name = "LOAD_BASE_ADDR"; break; 155 1.1 manu default: 156 1.1 manu tag_name = "unknown"; break; 157 1.1 manu } 158 1.1 manu 159 1.1 manu return tag_name; 160 1.1 manu } 161 1.1 manu 162 1.1 manu static void 163 1.1 manu multiboot2_info_dump(uint32_t magic, char *mbi) 164 1.1 manu { 165 1.1 manu struct multiboot_tag *mbt; 166 1.1 manu char *cp; 167 1.1 manu uint32_t total_size; 168 1.1 manu uint32_t actual_size; 169 1.1 manu uint32_t reserved; 170 1.1 manu int i = 0; 171 1.1 manu 172 1.1 manu printf("=== multiboot2 info dump start ===\n"); 173 1.1 manu 174 1.1 manu if (magic != MULTIBOOT2_BOOTLOADER_MAGIC) { 175 1.1 manu printf("Unexpected multiboot2 magic number: 0x%x\n", magic); 176 1.1 manu goto out; 177 1.1 manu } 178 1.1 manu 179 1.1 manu if (mbi != (char *)rounddown((vaddr_t)mbi, MULTIBOOT_TAG_ALIGN)) { 180 1.1 manu printf("mbi at %p is not properly aligned\n", mbi); 181 1.1 manu goto out; 182 1.1 manu } 183 1.1 manu 184 1.1 manu total_size = *(uint32_t *)mbi; 185 1.1 manu reserved = *(uint32_t *)mbi + 1; 186 1.1 manu mbt = (struct multiboot_tag *)(uint32_t *)mbi + 2; 187 1.1 manu actual_size = (char *)mbt - mbi; 188 1.1 manu printf("mbi.total_size = %d\n", total_size); 189 1.1 manu printf("mbi.reserved = %d\n", reserved); 190 1.1 manu 191 1.1 manu for (cp = mbi + sizeof(total_size) + sizeof(reserved); 192 1.1 manu cp - mbi < total_size; 193 1.1 manu cp = cp + roundup(mbt->size, MULTIBOOT_TAG_ALIGN)) { 194 1.1 manu mbt = (struct multiboot_tag *)cp; 195 1.1 manu actual_size += roundup(mbt->size, MULTIBOOT_TAG_ALIGN); 196 1.1 manu 197 1.1 manu printf("mbi[%d].type = %d(%s), .size = %d ", 198 1.1 manu i++, mbt->type, mbi_tag_name(mbt->type), mbt->size); 199 1.1 manu 200 1.1 manu switch (mbt->type) { 201 1.1 manu case MULTIBOOT_TAG_TYPE_CMDLINE: 202 1.1 manu printf(".string = \"%s\"\n", 203 1.1 manu ((struct multiboot_tag_string *)mbt)->string); 204 1.1 manu break; 205 1.1 manu case MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME: 206 1.1 manu printf(".string = \"%s\"\n", 207 1.1 manu ((struct multiboot_tag_string *)mbt)->string); 208 1.1 manu break; 209 1.1 manu case MULTIBOOT_TAG_TYPE_MODULE: 210 1.1 manu printf(".mod_start = 0x%x, mod_end = 0x%x, " 211 1.1 manu "string = \"%s\"\n", 212 1.1 manu ((struct multiboot_tag_module *)mbt)->mod_start, 213 1.1 manu ((struct multiboot_tag_module *)mbt)->mod_end, 214 1.1 manu ((struct multiboot_tag_module *)mbt)->cmdline); 215 1.1 manu break; 216 1.1 manu case MULTIBOOT_TAG_TYPE_BASIC_MEMINFO: { 217 1.1 manu struct multiboot_tag_basic_meminfo *meminfo; 218 1.1 manu 219 1.1 manu meminfo = (struct multiboot_tag_basic_meminfo *)mbt; 220 1.1 manu printf(".mem_lower = %uKB, .mem_upper = %uKB\n", 221 1.1 manu meminfo->mem_lower, meminfo->mem_upper); 222 1.1 manu break; 223 1.1 manu } 224 1.1 manu case MULTIBOOT_TAG_TYPE_BOOTDEV: 225 1.1 manu printf (".biosdev = 0x%x, .slice = %d, .part = %d\n", 226 1.1 manu ((struct multiboot_tag_bootdev *)mbt)->biosdev, 227 1.1 manu ((struct multiboot_tag_bootdev *)mbt)->slice, 228 1.1 manu ((struct multiboot_tag_bootdev *)mbt)->part); 229 1.1 manu break; 230 1.1 manu case MULTIBOOT_TAG_TYPE_MMAP: { 231 1.1 manu struct multiboot_tag_mmap *memmap; 232 1.1 manu multiboot_memory_map_t *mmap; 233 1.1 manu uint32_t entry_size; 234 1.1 manu uint32_t entry_version; 235 1.1 manu int j = 0; 236 1.1 manu 237 1.1 manu memmap = (struct multiboot_tag_mmap *)mbt; 238 1.1 manu entry_size = memmap->entry_size; 239 1.1 manu entry_version = memmap->entry_version; 240 1.1 manu printf (".entry_size = %d, .entry_version = %d\n", 241 1.1 manu entry_size, entry_version); 242 1.7 joe 243 1.1 manu for (mmap = ((struct multiboot_tag_mmap *)mbt)->entries; 244 1.1 manu (char *)mmap - (char *)mbt < mbt->size; 245 1.1 manu mmap = (void *)((char *)mmap + entry_size)) 246 1.7 joe printf(" entry[%d].addr = 0x%"PRIx64",\t" 247 1.1 manu ".len = 0x%"PRIx64",\t.type = 0x%x\n", 248 1.1 manu j++, (uint64_t)mmap->addr, 249 1.1 manu (uint64_t)mmap->len, 250 1.1 manu mmap->type); 251 1.1 manu break; 252 1.1 manu } 253 1.1 manu case MULTIBOOT_TAG_TYPE_FRAMEBUFFER: { 254 1.1 manu struct multiboot_tag_framebuffer *fb = (void *)mbt; 255 1.1 manu 256 1.1 manu printf ("%dx%dx%d at 0x%"PRIx64"\n", 257 1.1 manu fb->common.framebuffer_width, 258 1.1 manu fb->common.framebuffer_height, 259 1.1 manu fb->common.framebuffer_bpp, 260 1.1 manu (uint64_t)fb->common.framebuffer_addr); 261 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 262 1.1 manu break; 263 1.1 manu } 264 1.1 manu case MULTIBOOT_TAG_TYPE_ELF_SECTIONS: 265 1.1 manu printf(".num = %d, .entsize = %d, .shndx = %d\n", 266 1.1 manu ((struct multiboot_tag_elf_sections *)mbt)->num, 267 1.1 manu ((struct multiboot_tag_elf_sections *)mbt)->entsize, 268 1.1 manu ((struct multiboot_tag_elf_sections *)mbt)->shndx); 269 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 270 1.1 manu break; 271 1.1 manu case MULTIBOOT_TAG_TYPE_APM: 272 1.1 manu printf(".version = %d, .cseg = 0x%x, .offset = 0x%x, " 273 1.1 manu ".cseg_16 = 0x%x, .dseg = 0x%x, .flags = 0x%x, " 274 1.1 manu ".cseg_len = %d, .cseg_16_len = %d, " 275 1.1 manu ".dseg_len = %d\n", 276 1.1 manu ((struct multiboot_tag_apm *)mbt)->version, 277 1.1 manu ((struct multiboot_tag_apm *)mbt)->cseg, 278 1.1 manu ((struct multiboot_tag_apm *)mbt)->offset, 279 1.1 manu ((struct multiboot_tag_apm *)mbt)->cseg_16, 280 1.1 manu ((struct multiboot_tag_apm *)mbt)->dseg, 281 1.1 manu ((struct multiboot_tag_apm *)mbt)->flags, 282 1.1 manu ((struct multiboot_tag_apm *)mbt)->cseg_len, 283 1.1 manu ((struct multiboot_tag_apm *)mbt)->cseg_16_len, 284 1.1 manu ((struct multiboot_tag_apm *)mbt)->dseg_len); 285 1.1 manu break; 286 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32: 287 1.1 manu printf(".pointer = 0x%x\n", 288 1.1 manu ((struct multiboot_tag_efi32 *)mbt)->pointer); 289 1.1 manu break; 290 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64: 291 1.1 manu printf(".pointer = 0x%"PRIx64"\n", (uint64_t) 292 1.1 manu ((struct multiboot_tag_efi64 *)mbt)->pointer); 293 1.1 manu break; 294 1.1 manu case MULTIBOOT_TAG_TYPE_SMBIOS: 295 1.1 manu printf(".major = %d, .minor = %d\n", 296 1.1 manu ((struct multiboot_tag_smbios *)mbt)->major, 297 1.1 manu ((struct multiboot_tag_smbios *)mbt)->minor); 298 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 299 1.1 manu break; 300 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_OLD: 301 1.1 manu printf("\n"); 302 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 303 1.1 manu break; 304 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_NEW: 305 1.1 manu printf("\n"); 306 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 307 1.1 manu break; 308 1.1 manu case MULTIBOOT_TAG_TYPE_NETWORK: 309 1.1 manu printf("\n"); 310 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 311 1.1 manu break; 312 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_MMAP: 313 1.1 manu printf("\n"); 314 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 315 1.1 manu break; 316 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_BS: 317 1.1 manu printf("\n"); 318 1.1 manu break; 319 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32_IH: 320 1.7 joe printf(".pointer = 0x%"PRIx32"\n", 321 1.1 manu ((struct multiboot_tag_efi32_ih *)mbt)->pointer); 322 1.1 manu break; 323 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64_IH: 324 1.1 manu printf(".pointer = 0x%"PRIx64"\n", (uint64_t) 325 1.1 manu ((struct multiboot_tag_efi64_ih *)mbt)->pointer); 326 1.1 manu break; 327 1.1 manu case MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR: { 328 1.1 manu struct multiboot_tag_load_base_addr *ld = (void *)mbt; 329 1.1 manu printf(".load_base_addr = 0x%x\n", ld->load_base_addr); 330 1.1 manu break; 331 1.1 manu } 332 1.1 manu case MULTIBOOT_TAG_TYPE_END: 333 1.1 manu break; 334 1.1 manu default: 335 1.1 manu printf("\n"); 336 1.1 manu mbi_hexdump((char *)mbt, mbt->size); 337 1.1 manu break; 338 1.1 manu } 339 1.1 manu } 340 1.1 manu 341 1.1 manu if (total_size != actual_size) 342 1.1 manu printf("Size mismatch: announded %d, actual %d\n", 343 1.1 manu total_size, actual_size); 344 1.1 manu 345 1.1 manu out: 346 1.1 manu printf("=== multiboot2 info dump start ===\n"); 347 1.1 manu return; 348 1.1 manu } 349 1.1 manu 350 1.1 manu #define MPP_OPT(flags) \ 351 1.1 manu (flags & MULTIBOOT_HEADER_TAG_OPTIONAL) ? " (opt)" : " (req)" 352 1.1 manu 353 1.1 manu static 354 1.1 manu void multiboot2_header_dump(struct multiboot_package *mbp) 355 1.1 manu { 356 1.1 manu struct multiboot_package_priv *mpp = mbp->mbp_priv; 357 1.1 manu 358 1.1 manu printf("=== multiboot2 header dump start ===\n"); 359 1.1 manu if (mpp->mpp_info_req) { 360 1.7 joe struct multiboot_header_tag_information_request *info_req; 361 1.1 manu size_t nreq; 362 1.1 manu int i; 363 1.1 manu 364 1.1 manu info_req = mpp->mpp_info_req; 365 1.1 manu 366 1.1 manu nreq = (info_req->size - sizeof(*info_req)) 367 1.1 manu / sizeof(info_req->requests[0]); 368 1.1 manu 369 1.1 manu printf("Information tag request%s: ", 370 1.7 joe MPP_OPT(info_req->flags)); 371 1.1 manu for (i = 0; i < nreq; i++) 372 1.1 manu printf("%d(%s) ", 373 1.1 manu info_req->requests[i], 374 1.1 manu mbi_tag_name(info_req->requests[i])); 375 1.1 manu printf("\n"); 376 1.1 manu } 377 1.1 manu 378 1.1 manu if (mpp->mpp_address) 379 1.1 manu printf("Addresses%s: header = %"PRIx32", load = %"PRIx32", " 380 1.7 joe "end = %"PRIx32", bss = %"PRIx32"\n", 381 1.1 manu MPP_OPT(mpp->mpp_address->flags), 382 1.1 manu mpp->mpp_address->header_addr, 383 1.1 manu mpp->mpp_address->load_addr, 384 1.1 manu mpp->mpp_address->load_end_addr, 385 1.1 manu mpp->mpp_address->bss_end_addr); 386 1.1 manu 387 1.1 manu if (mpp->mpp_entry) 388 1.7 joe printf("Entry point%s: %"PRIx32"\n", 389 1.1 manu MPP_OPT(mpp->mpp_entry->flags), 390 1.1 manu mpp->mpp_entry->entry_addr); 391 1.1 manu 392 1.1 manu if (mpp->mpp_console) { 393 1.1 manu int flags = mpp->mpp_console->console_flags; 394 1.1 manu char *req_flag = ""; 395 1.1 manu char *ega_flag = ""; 396 1.1 manu 397 1.1 manu if (flags & MULTIBOOT_CONSOLE_FLAGS_EGA_TEXT_SUPPORTED) 398 1.1 manu ega_flag = " EGA"; 399 1.1 manu if (flags & MULTIBOOT_CONSOLE_FLAGS_CONSOLE_REQUIRED) 400 1.1 manu req_flag = " required"; 401 1.1 manu 402 1.1 manu printf("Console flags%s: %s %s\n", 403 1.7 joe MPP_OPT(mpp->mpp_console->flags), 404 1.1 manu ega_flag, req_flag); 405 1.1 manu } 406 1.1 manu 407 1.1 manu if (mpp->mpp_framebuffer) 408 1.1 manu printf("Framebuffer%s: width = %d, height = %d, depth = %d\n", 409 1.1 manu MPP_OPT(mpp->mpp_framebuffer->flags), 410 1.1 manu mpp->mpp_framebuffer->width, 411 1.1 manu mpp->mpp_framebuffer->height, 412 1.1 manu mpp->mpp_framebuffer->depth); 413 1.1 manu 414 1.1 manu if (mpp->mpp_module_align) 415 1.1 manu printf("Module alignmenet%s\n", 416 1.1 manu MPP_OPT(mpp->mpp_module_align->flags)); 417 1.7 joe 418 1.1 manu if (mpp->mpp_efi_bs) 419 1.1 manu printf("Do not call EFI Boot service exit%s\n", 420 1.1 manu MPP_OPT(mpp->mpp_efi_bs->flags)); 421 1.7 joe 422 1.1 manu if (mpp->mpp_entry_elf32) 423 1.7 joe printf("EFI32 entry point%s: %"PRIx32"\n", 424 1.1 manu MPP_OPT(mpp->mpp_entry_elf32->flags), 425 1.1 manu mpp->mpp_entry_elf32->entry_addr); 426 1.1 manu 427 1.1 manu if (mpp->mpp_entry_elf64) 428 1.7 joe printf("EFI64 entry point%s: %"PRIx32"\n", 429 1.1 manu MPP_OPT(mpp->mpp_entry_elf64->flags), 430 1.1 manu mpp->mpp_entry_elf64->entry_addr); 431 1.1 manu 432 1.1 manu if (mpp->mpp_relocatable) { 433 1.1 manu char *pref; 434 1.1 manu 435 1.1 manu switch (mpp->mpp_relocatable->preference) { 436 1.1 manu case MULTIBOOT_LOAD_PREFERENCE_NONE: pref = "none"; break; 437 1.1 manu case MULTIBOOT_LOAD_PREFERENCE_LOW: pref = "low"; break; 438 1.1 manu case MULTIBOOT_LOAD_PREFERENCE_HIGH: pref = "high"; break; 439 1.1 manu default: 440 1.1 manu pref = "(unknown)"; break; 441 1.1 manu } 442 1.1 manu printf("Relocatable%s: min_addr = %"PRIx32", " 443 1.1 manu "max_addr = %"PRIx32", align = %"PRIx32", pref %s\n", 444 1.1 manu MPP_OPT(mpp->mpp_relocatable->flags), 445 1.1 manu mpp->mpp_relocatable->min_addr, 446 1.1 manu mpp->mpp_relocatable->max_addr, 447 1.1 manu mpp->mpp_relocatable->align, pref); 448 1.1 manu } 449 1.1 manu 450 1.1 manu printf("=== multiboot2 header dump end ===\n"); 451 1.1 manu return; 452 1.1 manu } 453 1.1 manu #endif /* MULTIBOOT2_DEBUG */ 454 1.1 manu 455 1.1 manu static size_t 456 1.1 manu mbi_cmdline(struct multiboot_package *mbp, void *buf) 457 1.1 manu { 458 1.1 manu struct multiboot_tag_string *mbt = buf; 459 1.1 manu size_t cmdlen; 460 1.1 manu size_t len; 461 1.1 manu const char fmt[] = "%s %s"; 462 1.1 manu 463 1.1 manu /* +1 for trailing \0 */ 464 1.1 manu cmdlen = snprintf(NULL, SIZE_T_MAX, fmt, mbp->mbp_file, mbp->mbp_args) 465 1.1 manu + 1; 466 1.1 manu len = sizeof(*mbt) + cmdlen; 467 1.1 manu 468 1.1 manu if (mbt) { 469 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_CMDLINE; 470 1.1 manu mbt->size = len; 471 1.7 joe (void)snprintf(mbt->string, cmdlen, fmt, 472 1.1 manu mbp->mbp_file, mbp->mbp_args); 473 1.1 manu } 474 1.1 manu 475 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 476 1.1 manu } 477 1.1 manu 478 1.1 manu static size_t 479 1.1 manu mbi_boot_loader_name(struct multiboot_package *mbp, void *buf) 480 1.1 manu { 481 1.1 manu struct multiboot_tag_string *mbt = buf; 482 1.1 manu size_t len; 483 1.1 manu size_t strlen; 484 1.1 manu const char fmt[] = "%s, Revision %s (from NetBSD %s)"; 485 1.1 manu 486 1.1 manu 487 1.1 manu /* +1 for trailing \0 */ 488 1.1 manu strlen = snprintf(NULL, SIZE_T_MAX, fmt, 489 1.1 manu bootprog_name, bootprog_rev, bootprog_kernrev) 490 1.1 manu + 1; 491 1.1 manu len = sizeof(*mbt) + strlen; 492 1.1 manu 493 1.1 manu if (mbt) { 494 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME; 495 1.1 manu mbt->size = len; 496 1.7 joe (void)snprintf(mbt->string, strlen, fmt, bootprog_name, 497 1.1 manu bootprog_rev, bootprog_kernrev); 498 1.1 manu } 499 1.1 manu 500 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 501 1.1 manu } 502 1.1 manu 503 1.1 manu static size_t 504 1.1 manu mbi_modules(struct multiboot_package *mbp, void *buf) 505 1.1 manu { 506 1.1 manu struct multiboot_tag_module *mbt = buf; 507 1.1 manu struct bi_modulelist_entry *bim; 508 1.1 manu size_t len; 509 1.1 manu int i; 510 1.1 manu 511 1.1 manu if (btinfo_modulelist == NULL) 512 1.1 manu return 0; 513 1.1 manu 514 1.1 manu len = 0; 515 1.7 joe 516 1.1 manu bim = (struct bi_modulelist_entry *)(btinfo_modulelist + 1); 517 1.1 manu for (i = 0; i < btinfo_modulelist->num; i++) { 518 1.1 manu size_t pathlen = strlen(bim->path) + 1; 519 1.1 manu size_t mbt_len = sizeof(*mbt) + pathlen; 520 1.1 manu size_t mbt_len_align = roundup(mbt_len, MULTIBOOT_TAG_ALIGN); 521 1.1 manu len += mbt_len_align; 522 1.1 manu 523 1.1 manu if (mbt) { 524 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_MODULE; 525 1.1 manu mbt->size = mbt_len; 526 1.1 manu mbt->mod_start = bim->base; 527 1.1 manu mbt->mod_end = bim->base + bim->len; 528 1.1 manu strncpy(mbt->cmdline, bim->path, pathlen); 529 1.1 manu 530 1.1 manu mbt = (struct multiboot_tag_module *) 531 1.1 manu ((char *)mbt + mbt_len_align); 532 1.1 manu } 533 1.1 manu } 534 1.1 manu 535 1.1 manu return len; 536 1.1 manu } 537 1.1 manu 538 1.1 manu static size_t 539 1.1 manu mbi_basic_meminfo(struct multiboot_package *mbp, void *buf) 540 1.1 manu { 541 1.1 manu struct multiboot_tag_basic_meminfo *mbt = buf; 542 1.1 manu size_t len; 543 1.1 manu 544 1.1 manu len = sizeof(*mbt); 545 1.7 joe 546 1.1 manu if (mbt) { 547 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_BASIC_MEMINFO; 548 1.1 manu mbt->size = len; 549 1.1 manu mbt->mem_lower = mbp->mbp_basemem; 550 1.1 manu mbt->mem_upper = mbp->mbp_extmem; 551 1.1 manu } 552 1.1 manu 553 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 554 1.1 manu } 555 1.1 manu 556 1.1 manu static size_t 557 1.1 manu mbi_bootdev(struct multiboot_package *mbp, void *buf) 558 1.1 manu { 559 1.1 manu struct multiboot_tag_bootdev *mbt = buf; 560 1.1 manu size_t len; 561 1.1 manu 562 1.1 manu len = sizeof(*mbt); 563 1.7 joe 564 1.1 manu /* 565 1.1 manu * According to the specification: 566 1.1 manu * - sub_partition is used for BSD disklabel. 567 1.1 manu * - Extendded MBR partitions are counted from 4 and increasing, 568 1.1 manu * with no subpartition. 569 1.1 manu */ 570 1.1 manu if (mbt) { 571 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_BOOTDEV; 572 1.1 manu mbt->size = len; 573 1.1 manu mbt->biosdev = bi_disk.biosdev; 574 1.1 manu mbt->slice = bi_disk.partition; 575 1.1 manu mbt->part = 0xFFFFFFFF; /* aka sub_partition, for disklabel */ 576 1.1 manu } 577 1.1 manu 578 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 579 1.1 manu return 0; 580 1.1 manu } 581 1.1 manu 582 1.1 manu static size_t 583 1.1 manu mbi_mmap(struct multiboot_package *mbp, void *buf) 584 1.1 manu { 585 1.1 manu size_t len = 0; 586 1.1 manu struct multiboot_tag_mmap *mbt = buf; 587 1.1 manu struct bi_memmap_entry *memmap; 588 1.1 manu size_t num; 589 1.1 manu 590 1.1 manu #ifndef EFIBOOT 591 1.1 manu bi_getmemmap(); 592 1.1 manu 593 1.1 manu if (btinfo_memmap == NULL) 594 1.1 manu goto out; 595 1.1 manu 596 1.1 manu memmap = btinfo_memmap->entry; 597 1.1 manu num = btinfo_memmap->num; 598 1.1 manu #else 599 1.1 manu if (efi_memory_get_memmap(&memmap, &num) != 0) 600 1.1 manu goto out; 601 1.1 manu #endif 602 1.1 manu 603 1.1 manu len = sizeof(*mbt) + num * sizeof(mbt->entries[0]); 604 1.7 joe 605 1.1 manu if (mbt) { 606 1.1 manu int i; 607 1.1 manu struct multiboot_mmap_entry *mbte; 608 1.1 manu 609 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_MMAP; 610 1.1 manu mbt->size = len; 611 1.1 manu mbt->entry_size = sizeof(mbt->entries[0]); 612 1.1 manu mbt->entry_version = 0; 613 1.1 manu 614 1.1 manu mbte = (struct multiboot_mmap_entry *)(mbt + 1); 615 1.1 manu for (i = 0; i < num; i++) { 616 1.1 manu mbte[i].addr = memmap[i].addr; 617 1.1 manu mbte[i].len = memmap[i].size; 618 1.1 manu switch(memmap[i].type) { 619 1.1 manu case BIM_Memory: 620 1.1 manu mbte[i].type = MULTIBOOT_MEMORY_AVAILABLE; 621 1.1 manu break; 622 1.1 manu case BIM_Reserved: 623 1.1 manu mbte[i].type = MULTIBOOT_MEMORY_RESERVED; 624 1.1 manu break; 625 1.1 manu case BIM_ACPI: 626 1.7 joe mbte[i].type = 627 1.1 manu MULTIBOOT_MEMORY_ACPI_RECLAIMABLE; 628 1.1 manu break; 629 1.1 manu case BIM_NVS: 630 1.1 manu mbte[i].type = MULTIBOOT_MEMORY_NVS; 631 1.1 manu break; 632 1.1 manu case BIM_Unusable: 633 1.1 manu mbte[i].type = MULTIBOOT_MEMORY_BADRAM; 634 1.1 manu break; 635 1.1 manu default: 636 1.1 manu mbte[i].type = MULTIBOOT_MEMORY_RESERVED; 637 1.1 manu break; 638 1.1 manu } 639 1.1 manu mbte[i].zero = 0; 640 1.1 manu } 641 1.1 manu } 642 1.1 manu #ifdef EFIBOOT 643 1.1 manu dealloc(memmap, num * sizeof(memmap)); 644 1.1 manu #endif 645 1.1 manu out: 646 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 647 1.1 manu } 648 1.1 manu 649 1.1 manu static size_t 650 1.1 manu mbi_vbe(struct multiboot_package *mbp, void *buf) 651 1.1 manu { 652 1.1 manu size_t len = 0; 653 1.1 manu 654 1.1 manu #ifndef EFIBOOT 655 1.1 manu struct multiboot_tag_vbe *mbt = buf; 656 1.1 manu 657 1.1 manu len = sizeof(*mbt); 658 1.7 joe 659 1.1 manu if (mbt) { 660 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_VBE; 661 1.1 manu mbt->size = len; 662 1.1 manu mbt->vbe_mode = btinfo_framebuffer.vbemode; 663 1.1 manu mbt->vbe_interface_seg = 0; 664 1.1 manu mbt->vbe_interface_off = 0; 665 1.1 manu mbt->vbe_interface_len = 0; 666 1.1 manu biosvbe_info((struct vbeinfoblock *)&mbt->vbe_control_info); 667 1.1 manu biosvbe_get_mode_info(mbt->vbe_mode, 668 1.1 manu (struct modeinfoblock *)&mbt->vbe_mode_info); 669 1.1 manu } 670 1.1 manu #endif 671 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 672 1.1 manu } 673 1.1 manu 674 1.1 manu static size_t 675 1.1 manu mbi_framebuffer(struct multiboot_package *mbp, void *buf) 676 1.1 manu { 677 1.1 manu size_t len = 0; 678 1.1 manu struct multiboot_tag_framebuffer *mbt = buf; 679 1.1 manu struct btinfo_framebuffer *fb = &btinfo_framebuffer; 680 1.1 manu 681 1.1 manu #ifndef EFIBOOT 682 1.1 manu struct modeinfoblock mi; 683 1.1 manu 684 1.1 manu if (fb->physaddr != 0) { 685 1.1 manu int ret; 686 1.1 manu 687 1.1 manu ret = biosvbe_get_mode_info(fb->vbemode, &mi); 688 1.1 manu if (ret != 0x004f) 689 1.1 manu return 0; 690 1.1 manu } 691 1.1 manu #endif 692 1.1 manu 693 1.1 manu len = sizeof(*mbt); 694 1.7 joe 695 1.1 manu if (mbt) { 696 1.1 manu mbt->common.type = MULTIBOOT_TAG_TYPE_FRAMEBUFFER; 697 1.1 manu mbt->common.size = len; 698 1.1 manu mbt->common.reserved = 0; 699 1.1 manu 700 1.1 manu /* 701 1.1 manu * No framebuffer, default to 80x25 console 702 1.7 joe */ 703 1.1 manu if (fb->physaddr == 0) { 704 1.1 manu int width = 80; 705 1.1 manu int height = 25; 706 1.1 manu int charlen = 2; 707 1.1 manu mbt->common.framebuffer_addr = CGA_BUF; 708 1.1 manu mbt->common.framebuffer_width = width; 709 1.1 manu mbt->common.framebuffer_height = height; 710 1.1 manu mbt->common.framebuffer_bpp = charlen * 8; 711 1.1 manu mbt->common.framebuffer_pitch = width * charlen; 712 1.7 joe mbt->common.framebuffer_type = 713 1.1 manu MULTIBOOT_FRAMEBUFFER_TYPE_EGA_TEXT; 714 1.1 manu } else { 715 1.1 manu mbt->common.framebuffer_addr = fb->physaddr; 716 1.1 manu mbt->common.framebuffer_pitch = fb->stride; 717 1.1 manu mbt->common.framebuffer_width = fb->width; 718 1.1 manu mbt->common.framebuffer_height = fb->height; 719 1.1 manu mbt->common.framebuffer_bpp = fb->depth; 720 1.1 manu mbt->common.framebuffer_type = 721 1.1 manu MULTIBOOT_FRAMEBUFFER_TYPE_RGB; 722 1.1 manu #ifndef EFIBOOT 723 1.1 manu if (mi.MemoryModel == 0x04) 724 1.1 manu mbt->common.framebuffer_type = 725 1.1 manu MULTIBOOT_FRAMEBUFFER_TYPE_INDEXED; 726 1.1 manu #endif 727 1.1 manu } 728 1.7 joe 729 1.1 manu switch (mbt->common.framebuffer_type) { 730 1.1 manu #ifndef EFIBOOT 731 1.7 joe case MULTIBOOT_FRAMEBUFFER_TYPE_INDEXED: 732 1.1 manu mbt->framebuffer_palette_num_colors = 256; 733 1.1 manu 734 1.1 manu for (int i = 0; i < 256; i++) { 735 1.1 manu mbt->framebuffer_palette[i].red = 736 1.1 manu rasops_cmap[3 * i]; 737 1.1 manu mbt->framebuffer_palette[i].green = 738 1.1 manu rasops_cmap[(3 * i) + 1]; 739 1.1 manu mbt->framebuffer_palette[i].blue = 740 1.1 manu rasops_cmap[(3 * i) + 2]; 741 1.7 joe } 742 1.1 manu break; 743 1.1 manu #endif 744 1.1 manu case MULTIBOOT_FRAMEBUFFER_TYPE_RGB: 745 1.1 manu mbt->framebuffer_red_field_position = fb->rpos; 746 1.1 manu mbt->framebuffer_red_mask_size = fb->rnum; 747 1.1 manu mbt->framebuffer_green_field_position = fb->gpos; 748 1.1 manu mbt->framebuffer_green_mask_size = fb->gnum; 749 1.1 manu mbt->framebuffer_blue_field_position = fb->bpos; 750 1.1 manu mbt->framebuffer_blue_mask_size = fb->bnum; 751 1.1 manu break; 752 1.1 manu default: 753 1.1 manu break; 754 1.1 manu } 755 1.1 manu } 756 1.1 manu 757 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 758 1.1 manu } 759 1.1 manu 760 1.1 manu static size_t 761 1.1 manu mbi_acpi_old(struct multiboot_package *mbp, void *buf) 762 1.1 manu { 763 1.1 manu size_t len = 0; 764 1.1 manu struct multiboot_tag_old_acpi *mbt = buf; 765 1.1 manu ACPI_PHYSICAL_ADDRESS rsdp_phys = -1; 766 1.1 manu ACPI_RSDP_COMMON rsdp; 767 1.1 manu #ifdef EFIBOOT 768 1.1 manu const EFI_GUID acpi_table_guid = ACPI_TABLE_GUID; 769 1.1 manu int i; 770 1.1 manu 771 1.1 manu if (ST == NULL) 772 1.1 manu goto out; 773 1.1 manu 774 1.1 manu for (i = 0; i < ST->NumberOfTableEntries; i++) { 775 1.1 manu if (memcmp(&ST->ConfigurationTable[i].VendorGuid, 776 1.1 manu &acpi_table_guid, sizeof(acpi_table_guid)) == 0) { 777 1.1 manu rsdp_phys = (ACPI_PHYSICAL_ADDRESS) 778 1.7 joe ST->ConfigurationTable[i].VendorTable; 779 1.1 manu break; 780 1.1 manu } 781 1.1 manu } 782 1.1 manu #else 783 1.1 manu #ifdef notyet 784 1.1 manu rsdp_phys = acpi_md_OsGetRootPointer(); 785 1.1 manu pvbcopy((void *)(vaddr_t)rsdp_phys, &rsdp, sizeof(rsdp)); 786 1.1 manu 787 1.1 manu /* Check ACPI 1.0 */ 788 1.1 manu if (rsdp.Revision != 0) 789 1.1 manu rsdp_phys = -1; 790 1.1 manu #endif 791 1.1 manu #endif 792 1.1 manu 793 1.1 manu if (rsdp_phys == -1) 794 1.1 manu goto out; 795 1.1 manu 796 1.1 manu len = sizeof(*mbt) + sizeof(rsdp); 797 1.1 manu if (mbt) { 798 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_ACPI_OLD; 799 1.1 manu mbt->size = len; 800 1.1 manu pvbcopy((void *)(vaddr_t)rsdp_phys, mbt->rsdp, sizeof(rsdp)); 801 1.1 manu } 802 1.1 manu out: 803 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 804 1.1 manu } 805 1.1 manu 806 1.1 manu static size_t 807 1.1 manu mbi_acpi_new(struct multiboot_package *mbp, void *buf) 808 1.1 manu { 809 1.1 manu size_t len = 0; 810 1.1 manu struct multiboot_tag_new_acpi *mbt = buf; 811 1.1 manu ACPI_PHYSICAL_ADDRESS rsdp_phys = -1; 812 1.1 manu ACPI_TABLE_RSDP rsdp; 813 1.1 manu #ifdef EFIBOOT 814 1.1 manu const EFI_GUID acpi_20_table_guid = ACPI_20_TABLE_GUID; 815 1.1 manu int i; 816 1.1 manu 817 1.1 manu if (ST == NULL) 818 1.1 manu goto out; 819 1.1 manu 820 1.1 manu for (i = 0; i < ST->NumberOfTableEntries; i++) { 821 1.1 manu if (memcmp(&ST->ConfigurationTable[i].VendorGuid, 822 1.1 manu &acpi_20_table_guid, sizeof(acpi_20_table_guid)) == 0) { 823 1.1 manu rsdp_phys = (ACPI_PHYSICAL_ADDRESS) 824 1.7 joe ST->ConfigurationTable[i].VendorTable; 825 1.1 manu break; 826 1.1 manu } 827 1.1 manu } 828 1.1 manu #else 829 1.1 manu #ifdef notyet 830 1.1 manu rsdp_phys = acpi_md_OsGetRootPointer(); 831 1.1 manu pvbcopy((void *)(vaddr_t)rsdp_phys, &rsdp, sizeof(rsdp)); 832 1.1 manu 833 1.1 manu /* Check ACPI 2.0 */ 834 1.1 manu if (rsdp.Revision != 2) 835 1.1 manu rsdp_phys = -1; 836 1.1 manu #endif 837 1.1 manu #endif 838 1.1 manu if (rsdp_phys == -1) 839 1.1 manu goto out; 840 1.1 manu 841 1.1 manu len = sizeof(*mbt) + sizeof(rsdp); 842 1.1 manu if (mbt) { 843 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_ACPI_NEW; 844 1.1 manu mbt->size = len; 845 1.1 manu pvbcopy((void *)(vaddr_t)rsdp_phys, mbt->rsdp, sizeof(rsdp)); 846 1.1 manu } 847 1.1 manu out: 848 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 849 1.1 manu } 850 1.1 manu 851 1.1 manu static size_t 852 1.1 manu mbi_apm(struct multiboot_package *mbp, void *buf) 853 1.1 manu { 854 1.1 manu size_t len = 0; 855 1.1 manu #ifdef notyet 856 1.1 manu struct multiboot_tag_apm *mbt = buf; 857 1.1 manu 858 1.1 manu len = sizeof(*mbt): 859 1.1 manu 860 1.1 manu if (mbt) { 861 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_A; 862 1.1 manu mbt->size = len; 863 1.1 manu mbt->version = 0; 864 1.1 manu mbt->cseg = 0; 865 1.1 manu mbt->offset = 0; 866 1.1 manu mbt->cseg_16 = 0; 867 1.7 joe mbt->dseg = 0; 868 1.1 manu mbt->flags = 0; 869 1.1 manu mbt->cseg_len = 0; 870 1.1 manu mbt->cseg_16_len = 0; 871 1.1 manu mbt->dseg_len = 0; 872 1.1 manu } 873 1.1 manu out: 874 1.1 manu #endif 875 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 876 1.1 manu } 877 1.1 manu 878 1.1 manu static size_t 879 1.1 manu mbi_smbios(struct multiboot_package *mbp, void *buf) 880 1.1 manu { 881 1.1 manu size_t len = 0; 882 1.1 manu struct multiboot_tag_smbios *mbt = buf; 883 1.1 manu void *smbios_phys; 884 1.1 manu struct smb3hdr *smbios3_phys = NULL; 885 1.1 manu struct smb3hdr smbios3; 886 1.1 manu struct smbhdr *smbios21_phys = NULL; 887 1.1 manu struct smbhdr smbios21; 888 1.1 manu size_t smbios_len; 889 1.1 manu int major; 890 1.1 manu int minor; 891 1.1 manu #ifdef EFIBOOT 892 1.1 manu const EFI_GUID smbios3_guid = SMBIOS3_TABLE_GUID; 893 1.1 manu const EFI_GUID smbios21_guid = SMBIOS_TABLE_GUID; 894 1.1 manu int i; 895 1.1 manu 896 1.1 manu if (ST == NULL) 897 1.1 manu goto out; 898 1.1 manu 899 1.1 manu for (i = 0; i < ST->NumberOfTableEntries; i++) { 900 1.1 manu if (memcmp(&ST->ConfigurationTable[i].VendorGuid, 901 1.1 manu &smbios3_guid, sizeof(smbios3_guid)) == 0) 902 1.7 joe smbios3_phys = ST->ConfigurationTable[i].VendorTable; 903 1.1 manu 904 1.1 manu if (memcmp(&ST->ConfigurationTable[i].VendorGuid, 905 1.1 manu &smbios21_guid, sizeof(smbios21_guid)) == 0) 906 1.7 joe smbios21_phys = ST->ConfigurationTable[i].VendorTable; 907 1.1 manu } 908 1.1 manu #else 909 1.1 manu char *cp; 910 1.1 manu char line[16]; 911 1.1 manu const char *smbios21_anchor = "_SM_"; 912 1.1 manu const char *smbios3_anchor = "_SM3_"; 913 1.1 manu 914 1.1 manu for (cp = (char *)SMBIOS_START; 915 1.1 manu cp < (char *)SMBIOS_END; 916 1.1 manu cp += sizeof(buf)) { 917 1.1 manu pvbcopy(cp, line, sizeof(line)); 918 1.1 manu if (memcmp(line, smbios3_anchor, strlen(smbios3_anchor)) == 0) 919 1.1 manu smbios3_phys = (struct smb3hdr *)cp; 920 1.1 manu if (memcmp(line, smbios21_anchor, strlen(smbios21_anchor)) == 0) 921 1.1 manu smbios21_phys = (struct smbhdr *)cp; 922 1.1 manu } 923 1.1 manu #endif 924 1.1 manu if (smbios3_phys != NULL) { 925 1.1 manu pvbcopy(smbios3_phys, &smbios3, sizeof(smbios3)); 926 1.1 manu smbios_len = smbios3.len; 927 1.1 manu major = smbios3.majrev; 928 1.1 manu minor = smbios3.minrev; 929 1.1 manu smbios_phys = smbios3_phys; 930 1.1 manu } else if (smbios21_phys != NULL) { 931 1.1 manu pvbcopy(smbios21_phys, &smbios21, sizeof(smbios21)); 932 1.1 manu smbios_len = smbios21.len; 933 1.1 manu major = smbios21.majrev; 934 1.1 manu minor = smbios21.minrev; 935 1.1 manu smbios_phys = smbios21_phys; 936 1.1 manu } else { 937 1.1 manu goto out; 938 1.1 manu } 939 1.1 manu 940 1.1 manu len = sizeof(*mbt) + smbios_len; 941 1.1 manu if (mbt) { 942 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_SMBIOS; 943 1.1 manu mbt->size = len; 944 1.1 manu mbt->major = major; 945 1.1 manu mbt->minor = minor; 946 1.1 manu pvbcopy(smbios_phys, mbt->tables, smbios_len); 947 1.1 manu } 948 1.1 manu out: 949 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 950 1.1 manu } 951 1.1 manu 952 1.1 manu static size_t 953 1.1 manu mbi_network(struct multiboot_package *mbp, void *buf) 954 1.1 manu { 955 1.1 manu size_t len = 0; 956 1.1 manu #ifdef notyet 957 1.1 manu struct multiboot_tag_network *mbt = buf; 958 1.1 manu 959 1.1 manu if (saved_dhcpack == NULL || saved_dhcpack_len == 0) 960 1.1 manu goto out; 961 1.1 manu 962 1.1 manu len = sizeof(*mbt) + saved_dhcpack_len; 963 1.1 manu 964 1.1 manu if (mbt) { 965 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_NETWORK; 966 1.1 manu mbt->size = len; 967 1.1 manu memcpy(mbt->dhcpack, saved_dhcpack, saved_dhcpack_len); 968 1.1 manu } 969 1.1 manu out: 970 1.1 manu #endif 971 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 972 1.1 manu } 973 1.1 manu 974 1.1 manu static size_t 975 1.1 manu mbi_elf_sections(struct multiboot_package *mbp, void *buf) 976 1.1 manu { 977 1.1 manu size_t len = 0; 978 1.1 manu struct multiboot_tag_elf_sections *mbt = buf; 979 1.6 rin union { 980 1.6 rin Elf32_Ehdr e32; 981 1.6 rin Elf64_Ehdr e64; 982 1.6 rin } ehdr; 983 1.3 manu int class; 984 1.1 manu Elf32_Ehdr *ehdr32 = NULL; 985 1.1 manu Elf64_Ehdr *ehdr64 = NULL; 986 1.3 manu uint64_t shnum, shentsize, shstrndx, shoff; 987 1.1 manu size_t shdr_len; 988 1.1 manu 989 1.1 manu if (mbp->mbp_marks[MARK_SYM] == 0) 990 1.1 manu goto out; 991 1.1 manu 992 1.1 manu pvbcopy((void *)mbp->mbp_marks[MARK_SYM], &ehdr, sizeof(ehdr)); 993 1.1 manu 994 1.1 manu /* 995 1.1 manu * Check this is a ELF header 996 1.1 manu */ 997 1.6 rin if (memcmp(&ehdr.e32.e_ident, ELFMAG, SELFMAG) != 0) 998 1.1 manu goto out; 999 1.1 manu 1000 1.6 rin class = ehdr.e32.e_ident[EI_CLASS]; 1001 1.3 manu 1002 1.3 manu switch (class) { 1003 1.1 manu case ELFCLASS32: 1004 1.6 rin ehdr32 = &ehdr.e32; 1005 1.1 manu shnum = ehdr32->e_shnum; 1006 1.1 manu shentsize = ehdr32->e_shentsize; 1007 1.1 manu shstrndx = ehdr32->e_shstrndx; 1008 1.1 manu shoff = ehdr32->e_shoff; 1009 1.1 manu break; 1010 1.1 manu case ELFCLASS64: 1011 1.6 rin ehdr64 = &ehdr.e64; 1012 1.1 manu shnum = ehdr64->e_shnum; 1013 1.1 manu shentsize = ehdr64->e_shentsize; 1014 1.1 manu shstrndx = ehdr64->e_shstrndx; 1015 1.1 manu shoff = ehdr64->e_shoff; 1016 1.1 manu break; 1017 1.1 manu default: 1018 1.1 manu goto out; 1019 1.1 manu } 1020 1.1 manu 1021 1.1 manu shdr_len = shnum * shentsize; 1022 1.1 manu if (shdr_len == 0) 1023 1.1 manu goto out; 1024 1.1 manu 1025 1.1 manu len = sizeof(*mbt) + shdr_len; 1026 1.1 manu if (mbt) { 1027 1.3 manu char *shdr = (char *)mbp->mbp_marks[MARK_SYM] + shoff; 1028 1.1 manu 1029 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_ELF_SECTIONS; 1030 1.1 manu mbt->size = len; 1031 1.1 manu mbt->num = shnum; 1032 1.1 manu mbt->entsize = shentsize; 1033 1.1 manu mbt->shndx = shstrndx; 1034 1.7 joe 1035 1.3 manu pvbcopy((void *)shdr, mbt + 1, shdr_len); 1036 1.1 manu 1037 1.3 manu /* 1038 1.3 manu * Adjust sh_addr for symtab and strtab 1039 1.3 manu * section that have been loaded. 1040 1.3 manu */ 1041 1.3 manu ksyms_addr_set(&ehdr, mbt + 1, 1042 1.3 manu (void *)mbp->mbp_marks[MARK_SYM]); 1043 1.3 manu } 1044 1.1 manu 1045 1.1 manu out: 1046 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1047 1.1 manu } 1048 1.1 manu 1049 1.1 manu static size_t 1050 1.1 manu mbi_end(struct multiboot_package *mbp, void *buf) 1051 1.1 manu { 1052 1.1 manu struct multiboot_tag *mbt = buf; 1053 1.1 manu size_t len = sizeof(*mbt); 1054 1.1 manu 1055 1.1 manu if (mbt) { 1056 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_END; 1057 1.1 manu mbt->size = len; 1058 1.1 manu } 1059 1.1 manu 1060 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1061 1.1 manu } 1062 1.1 manu 1063 1.1 manu static size_t 1064 1.1 manu mbi_load_base_addr(struct multiboot_package *mbp, void *buf) 1065 1.1 manu { 1066 1.1 manu size_t len = 0; 1067 1.1 manu struct multiboot_tag_load_base_addr *mbt = buf; 1068 1.1 manu 1069 1.1 manu len = sizeof(*mbt); 1070 1.1 manu 1071 1.1 manu if (mbt) { 1072 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR; 1073 1.1 manu mbt->size = len; 1074 1.1 manu mbt->load_base_addr = mbp->mbp_marks[MARK_START]; 1075 1.1 manu } 1076 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1077 1.1 manu } 1078 1.1 manu 1079 1.1 manu #ifdef EFIBOOT 1080 1.1 manu /* Set if EFI ExitBootServices was not called */ 1081 1.1 manu static size_t 1082 1.1 manu mbi_efi_bs(struct multiboot_package *mbp, void *buf) 1083 1.1 manu { 1084 1.1 manu size_t len = 0; 1085 1.1 manu struct multiboot_tag *mbt = buf; 1086 1.1 manu 1087 1.1 manu if (mbp->mbp_priv->mpp_efi_bs == NULL) 1088 1.1 manu goto out; 1089 1.1 manu 1090 1.1 manu len = sizeof(*mbt); 1091 1.1 manu 1092 1.1 manu if (mbt) { 1093 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI_BS; 1094 1.1 manu mbt->size = len; 1095 1.1 manu } 1096 1.1 manu 1097 1.1 manu out: 1098 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1099 1.1 manu } 1100 1.1 manu 1101 1.1 manu 1102 1.1 manu static size_t 1103 1.1 manu mbi_efi_mmap(struct multiboot_package *mbp, void *buf) 1104 1.1 manu { 1105 1.1 manu size_t len = 0; 1106 1.1 manu struct multiboot_tag_efi_mmap *mbt = buf; 1107 1.1 manu size_t memmap_len; 1108 1.1 manu 1109 1.1 manu if (btinfo_efimemmap == NULL) 1110 1.1 manu goto out; 1111 1.1 manu 1112 1.1 manu memmap_len = btinfo_efimemmap->num * btinfo_efimemmap->size; 1113 1.1 manu len = sizeof(*mbt) + memmap_len; 1114 1.1 manu 1115 1.1 manu if (mbt) { 1116 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI_MMAP; 1117 1.1 manu mbt->size = len; 1118 1.1 manu mbt->descr_size = btinfo_efimemmap->size; 1119 1.1 manu mbt->descr_vers = btinfo_efimemmap->version; 1120 1.1 manu memcpy(mbt + 1, btinfo_efimemmap->memmap, memmap_len); 1121 1.1 manu } 1122 1.1 manu 1123 1.1 manu out: 1124 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1125 1.1 manu } 1126 1.1 manu 1127 1.1 manu 1128 1.1 manu 1129 1.1 manu #ifndef __LP64__ 1130 1.1 manu static size_t 1131 1.1 manu mbi_efi32_ih(struct multiboot_package *mbp, void *buf) 1132 1.1 manu { 1133 1.1 manu size_t len = 0; 1134 1.1 manu struct multiboot_tag_efi32_ih *mbt = buf; 1135 1.1 manu 1136 1.1 manu len = sizeof(*mbt); 1137 1.1 manu 1138 1.1 manu if (mbt) { 1139 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI32_IH; 1140 1.1 manu mbt->size = len; 1141 1.1 manu mbt->pointer = (multiboot_uint32_t)IH; 1142 1.1 manu } 1143 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1144 1.1 manu } 1145 1.1 manu 1146 1.1 manu static size_t 1147 1.1 manu mbi_efi32(struct multiboot_package *mbp, void *buf) 1148 1.1 manu { 1149 1.1 manu size_t len = 0; 1150 1.1 manu struct multiboot_tag_efi32 *mbt = buf; 1151 1.1 manu 1152 1.1 manu len = sizeof(*mbt); 1153 1.1 manu 1154 1.1 manu if (mbt) { 1155 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI32; 1156 1.1 manu mbt->size = len; 1157 1.1 manu mbt->pointer = (multiboot_uint32_t)ST; 1158 1.1 manu } 1159 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1160 1.1 manu } 1161 1.1 manu #endif 1162 1.1 manu 1163 1.1 manu #ifdef __LP64__ 1164 1.1 manu static size_t 1165 1.1 manu mbi_efi64_ih(struct multiboot_package *mbp, void *buf) 1166 1.1 manu { 1167 1.1 manu size_t len = 0; 1168 1.1 manu struct multiboot_tag_efi64_ih *mbt = buf; 1169 1.1 manu 1170 1.1 manu len = sizeof(*mbt); 1171 1.1 manu 1172 1.1 manu if (mbt) { 1173 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI64_IH; 1174 1.1 manu mbt->size = len; 1175 1.1 manu mbt->pointer = (multiboot_uint64_t)IH; 1176 1.1 manu } 1177 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1178 1.1 manu } 1179 1.1 manu 1180 1.1 manu static size_t 1181 1.1 manu mbi_efi64(struct multiboot_package *mbp, void *buf) 1182 1.1 manu { 1183 1.1 manu size_t len = 0; 1184 1.1 manu struct multiboot_tag_efi64 *mbt = buf; 1185 1.1 manu 1186 1.1 manu len = sizeof(*mbt); 1187 1.1 manu 1188 1.1 manu if (mbt) { 1189 1.1 manu mbt->type = MULTIBOOT_TAG_TYPE_EFI64; 1190 1.1 manu mbt->size = len; 1191 1.1 manu mbt->pointer = (multiboot_uint64_t)ST; 1192 1.1 manu } 1193 1.1 manu return roundup(len, MULTIBOOT_TAG_ALIGN); 1194 1.1 manu } 1195 1.1 manu #endif /* __LP64__ */ 1196 1.1 manu #endif /* EFIBOOT */ 1197 1.1 manu 1198 1.1 manu static bool 1199 1.1 manu is_tag_required(struct multiboot_package *mbp, uint16_t tag) 1200 1.1 manu { 1201 1.7 joe bool ret = false; 1202 1.1 manu int i; 1203 1.1 manu struct multiboot_header_tag_information_request *info_req; 1204 1.1 manu size_t nreq; 1205 1.1 manu 1206 1.1 manu info_req = mbp->mbp_priv->mpp_info_req; 1207 1.1 manu 1208 1.1 manu if (info_req == NULL) 1209 1.1 manu goto out; 1210 1.1 manu 1211 1.1 manu if (info_req->flags & MULTIBOOT_HEADER_TAG_OPTIONAL) 1212 1.1 manu goto out; 1213 1.1 manu 1214 1.1 manu nreq = (info_req->size - sizeof(*info_req)) 1215 1.1 manu / sizeof(info_req->requests[0]); 1216 1.1 manu 1217 1.1 manu for (i = 0; i < nreq; i++) { 1218 1.1 manu if (info_req->requests[i] == tag) { 1219 1.1 manu ret = true; 1220 1.1 manu break; 1221 1.1 manu } 1222 1.1 manu } 1223 1.7 joe 1224 1.1 manu out: 1225 1.1 manu return ret; 1226 1.1 manu } 1227 1.1 manu 1228 1.7 joe static int 1229 1.7 joe mbi_dispatch(struct multiboot_package *mbp, uint16_t type, 1230 1.1 manu char *bp, size_t *total_len) 1231 1.1 manu { 1232 1.1 manu int ret = 0; 1233 1.1 manu size_t len = 0; 1234 1.1 manu 1235 1.1 manu switch (type) { 1236 1.1 manu case MULTIBOOT_TAG_TYPE_END: 1237 1.1 manu len = mbi_end(mbp, bp); 1238 1.1 manu break; 1239 1.1 manu case MULTIBOOT_TAG_TYPE_CMDLINE: 1240 1.1 manu len = mbi_cmdline(mbp, bp); 1241 1.1 manu break; 1242 1.1 manu case MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME: 1243 1.1 manu len = mbi_boot_loader_name(mbp, bp); 1244 1.1 manu break; 1245 1.1 manu case MULTIBOOT_TAG_TYPE_MODULE: 1246 1.1 manu len = mbi_modules(mbp, bp); 1247 1.1 manu break; 1248 1.1 manu case MULTIBOOT_TAG_TYPE_BASIC_MEMINFO: 1249 1.1 manu len = mbi_basic_meminfo(mbp, bp); 1250 1.1 manu break; 1251 1.1 manu case MULTIBOOT_TAG_TYPE_BOOTDEV: 1252 1.1 manu len = mbi_bootdev(mbp, bp); 1253 1.1 manu break; 1254 1.1 manu case MULTIBOOT_TAG_TYPE_MMAP: 1255 1.1 manu len = mbi_mmap(mbp, bp); 1256 1.1 manu break; 1257 1.1 manu case MULTIBOOT_TAG_TYPE_VBE: 1258 1.1 manu len = mbi_vbe(mbp, bp); 1259 1.1 manu break; 1260 1.1 manu case MULTIBOOT_TAG_TYPE_FRAMEBUFFER: 1261 1.1 manu len = mbi_framebuffer(mbp, bp); 1262 1.1 manu break; 1263 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_OLD: 1264 1.1 manu len = mbi_acpi_old(mbp, bp); 1265 1.1 manu break; 1266 1.1 manu case MULTIBOOT_TAG_TYPE_ACPI_NEW: 1267 1.1 manu len = mbi_acpi_new(mbp, bp); 1268 1.1 manu break; 1269 1.1 manu case MULTIBOOT_TAG_TYPE_ELF_SECTIONS: 1270 1.1 manu len = mbi_elf_sections(mbp, bp); 1271 1.1 manu break; 1272 1.1 manu case MULTIBOOT_TAG_TYPE_APM: 1273 1.1 manu len = mbi_apm(mbp, bp); 1274 1.1 manu break; 1275 1.1 manu case MULTIBOOT_TAG_TYPE_SMBIOS: 1276 1.1 manu len = mbi_smbios(mbp, bp); 1277 1.1 manu break; 1278 1.7 joe case MULTIBOOT_TAG_TYPE_NETWORK: 1279 1.1 manu len = mbi_network(mbp, bp); 1280 1.1 manu break; 1281 1.1 manu #ifdef EFIBOOT 1282 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_MMAP: 1283 1.1 manu len = mbi_efi_mmap(mbp, bp); 1284 1.1 manu break; 1285 1.1 manu case MULTIBOOT_TAG_TYPE_EFI_BS: 1286 1.1 manu len = mbi_efi_bs(mbp, bp); 1287 1.1 manu break; 1288 1.1 manu #ifndef __LP64__ 1289 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32_IH: 1290 1.1 manu len = mbi_efi32_ih(mbp, bp); 1291 1.1 manu break; 1292 1.1 manu case MULTIBOOT_TAG_TYPE_EFI32: 1293 1.1 manu len = mbi_efi32(mbp, bp); 1294 1.1 manu break; 1295 1.1 manu #else /* __LP64__ */ 1296 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64_IH: 1297 1.1 manu len = mbi_efi64_ih(mbp, bp); 1298 1.1 manu break; 1299 1.1 manu case MULTIBOOT_TAG_TYPE_EFI64: 1300 1.1 manu len = mbi_efi64(mbp, bp); 1301 1.1 manu break; 1302 1.1 manu #endif /* __LP64__ */ 1303 1.1 manu #endif /* EFIBOOT */ 1304 1.1 manu case MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR: 1305 1.1 manu len = mbi_load_base_addr(mbp, bp); 1306 1.1 manu break; 1307 1.1 manu default: 1308 1.1 manu len = 0; 1309 1.1 manu break; 1310 1.1 manu } 1311 1.1 manu 1312 1.1 manu if (len == 0 && is_tag_required(mbp, type)) 1313 1.1 manu ret = -1; 1314 1.1 manu 1315 1.1 manu *total_len += len; 1316 1.1 manu return ret; 1317 1.1 manu } 1318 1.1 manu 1319 1.1 manu static int 1320 1.1 manu exec_multiboot2(struct multiboot_package *mbp) 1321 1.1 manu { 1322 1.1 manu size_t len, alen; 1323 1.1 manu char *mbi = NULL; 1324 1.1 manu struct multiboot_package_priv *mpp = mbp->mbp_priv; 1325 1.1 manu uint16_t tags[] = { 1326 1.1 manu MULTIBOOT_TAG_TYPE_CMDLINE, 1327 1.1 manu MULTIBOOT_TAG_TYPE_BOOT_LOADER_NAME, 1328 1.1 manu MULTIBOOT_TAG_TYPE_MODULE, 1329 1.1 manu MULTIBOOT_TAG_TYPE_BASIC_MEMINFO, 1330 1.1 manu MULTIBOOT_TAG_TYPE_BOOTDEV, 1331 1.1 manu MULTIBOOT_TAG_TYPE_VBE, 1332 1.1 manu MULTIBOOT_TAG_TYPE_FRAMEBUFFER, 1333 1.1 manu MULTIBOOT_TAG_TYPE_ELF_SECTIONS, 1334 1.1 manu MULTIBOOT_TAG_TYPE_APM, 1335 1.1 manu MULTIBOOT_TAG_TYPE_SMBIOS, 1336 1.1 manu MULTIBOOT_TAG_TYPE_ACPI_OLD, 1337 1.1 manu MULTIBOOT_TAG_TYPE_ACPI_NEW, 1338 1.1 manu MULTIBOOT_TAG_TYPE_NETWORK, 1339 1.1 manu MULTIBOOT_TAG_TYPE_LOAD_BASE_ADDR, 1340 1.1 manu #ifdef EFIBOOT 1341 1.1 manu MULTIBOOT_TAG_TYPE_EFI_BS, 1342 1.1 manu #ifndef __LP64__ 1343 1.1 manu MULTIBOOT_TAG_TYPE_EFI32, 1344 1.1 manu MULTIBOOT_TAG_TYPE_EFI32_IH, 1345 1.1 manu #else 1346 1.1 manu MULTIBOOT_TAG_TYPE_EFI64, 1347 1.1 manu MULTIBOOT_TAG_TYPE_EFI64_IH, 1348 1.1 manu #endif /* __LP64__ */ 1349 1.1 manu /* 1350 1.1 manu * EFI_MMAP and MMAP at the end so that they 1351 1.1 manu * catch page allocation made for other tags. 1352 1.1 manu */ 1353 1.1 manu MULTIBOOT_TAG_TYPE_EFI_MMAP, 1354 1.1 manu #endif /* EFIGOOT */ 1355 1.1 manu MULTIBOOT_TAG_TYPE_MMAP, 1356 1.1 manu MULTIBOOT_TAG_TYPE_END, /* Must be last */ 1357 1.1 manu }; 1358 1.1 manu physaddr_t entry; 1359 1.1 manu int i; 1360 1.1 manu 1361 1.1 manu BI_ALLOC(BTINFO_MAX); 1362 1.1 manu 1363 1.1 manu /* set new video mode if text mode was not requested */ 1364 1.1 manu if (mpp->mpp_framebuffer == NULL || 1365 1.1 manu mpp->mpp_framebuffer->depth != 0) 1366 1.7 joe vbe_commit(); 1367 1.1 manu 1368 1.1 manu len = 2 * sizeof(multiboot_uint32_t); 1369 1.1 manu for (i = 0; i < sizeof(tags) / sizeof(*tags); i++) { 1370 1.1 manu if (mbi_dispatch(mbp, tags[i], NULL, &len) != 0) 1371 1.1 manu goto fail; 1372 1.1 manu } 1373 1.1 manu 1374 1.1 manu mpp->mpp_mbi_len = len + MULTIBOOT_TAG_ALIGN; 1375 1.1 manu mpp->mpp_mbi = alloc(mpp->mpp_mbi_len); 1376 1.1 manu mbi = (char *)roundup((vaddr_t)mpp->mpp_mbi, MULTIBOOT_TAG_ALIGN); 1377 1.1 manu 1378 1.1 manu alen = 2 * sizeof(multiboot_uint32_t); 1379 1.1 manu for (i = 0; i < sizeof(tags) / sizeof(*tags); i++) { 1380 1.1 manu if (mbi_dispatch(mbp, tags[i], mbi + alen, &alen) != 0) 1381 1.1 manu goto fail; 1382 1.1 manu 1383 1.1 manu /* 1384 1.1 manu * It may shrink because of failure when filling 1385 1.1 manu * structures, but it should not grow. 1386 1.1 manu */ 1387 1.1 manu if (alen > len) 1388 1.1 manu panic("multiboot2 info size mismatch"); 1389 1.1 manu } 1390 1.1 manu 1391 1.1 manu 1392 1.1 manu ((multiboot_uint32_t *)mbi)[0] = alen; /* total size */ 1393 1.1 manu ((multiboot_uint32_t *)mbi)[1] = 0; /* reserved */ 1394 1.1 manu 1395 1.1 manu #if 0 1396 1.1 manu for (i = 0; i < len; i += 16) { 1397 1.1 manu printf("%p ", mbi + i); 1398 1.1 manu for (int j = 0; j < 16; j++) 1399 1.7 joe printf("%s%s%x", 1400 1.1 manu (i+j) % 4 ? "" : " ", 1401 1.1 manu (unsigned char)mbi[i+j] < 0x10 ? "0" : "", 1402 1.1 manu (unsigned char)(mbi[i+j])); 1403 1.1 manu printf("\n"); 1404 1.1 manu } 1405 1.1 manu #endif 1406 1.1 manu 1407 1.1 manu printf("Start @ 0x%lx [%ld=0x%lx-0x%lx]...\n", 1408 1.1 manu mbp->mbp_marks[MARK_ENTRY], 1409 1.1 manu mbp->mbp_marks[MARK_NSYM], 1410 1.1 manu mbp->mbp_marks[MARK_SYM], 1411 1.1 manu mbp->mbp_marks[MARK_END]); 1412 1.7 joe 1413 1.1 manu #ifdef MULTIBOOT2_DEBUG 1414 1.1 manu multiboot2_info_dump(MULTIBOOT2_BOOTLOADER_MAGIC, mbi); 1415 1.1 manu #endif /* MULTIBOOT2_DEBUG */ 1416 1.1 manu 1417 1.1 manu entry = mbp->mbp_marks[MARK_ENTRY]; 1418 1.1 manu 1419 1.1 manu if (mpp->mpp_entry) 1420 1.1 manu entry = mpp->mpp_entry->entry_addr; 1421 1.1 manu #ifdef EFIBOOT 1422 1.1 manu #ifdef __LP64__ 1423 1.1 manu if (mpp->mpp_entry_elf64) 1424 1.1 manu entry = mpp->mpp_entry_elf64->entry_addr 1425 1.1 manu + efi_loadaddr; 1426 1.1 manu #else 1427 1.1 manu if (mpp->mpp_entry_elf32) 1428 1.1 manu entry = mpp->mpp_entry_elf32->entry_addr 1429 1.1 manu + efi_loadaddr; 1430 1.1 manu #endif /* __LP64__ */ 1431 1.1 manu if (mpp->mpp_efi_bs == NULL) 1432 1.1 manu efi_cleanup(); 1433 1.1 manu #endif /* EFIBOOT */ 1434 1.1 manu 1435 1.1 manu /* Does not return */ 1436 1.1 manu multiboot(entry, vtophys(mbi), 1437 1.1 manu x86_trunc_page(mbp->mbp_basemem * 1024), 1438 1.1 manu MULTIBOOT2_BOOTLOADER_MAGIC); 1439 1.1 manu fail: 1440 1.1 manu return -1; 1441 1.1 manu } 1442 1.1 manu 1443 1.1 manu static void 1444 1.1 manu cleanup_multiboot2(struct multiboot_package *mbp) 1445 1.1 manu { 1446 1.1 manu if (mbp->mbp_header) 1447 1.1 manu dealloc(mbp->mbp_header, mbp->mbp_header->header_length); 1448 1.1 manu if (mbp->mbp_priv && mbp->mbp_priv->mpp_mbi) 1449 1.1 manu dealloc(mbp->mbp_priv->mpp_mbi, mbp->mbp_priv->mpp_mbi_len); 1450 1.1 manu if (mbp->mbp_priv) 1451 1.1 manu dealloc(mbp->mbp_priv, sizeof(*mbp->mbp_priv)); 1452 1.1 manu 1453 1.1 manu dealloc(mbp, sizeof(*mbp)); 1454 1.1 manu 1455 1.1 manu return; 1456 1.1 manu } 1457 1.1 manu 1458 1.1 manu static bool 1459 1.1 manu is_header_required(struct multiboot_header_tag *mbt) 1460 1.1 manu { 1461 1.1 manu bool ret = false; 1462 1.1 manu 1463 1.1 manu if (mbt == NULL) 1464 1.1 manu goto out; 1465 1.1 manu 1466 1.1 manu if (mbt->flags & MULTIBOOT_HEADER_TAG_OPTIONAL) 1467 1.1 manu goto out; 1468 1.1 manu 1469 1.1 manu ret = true; 1470 1.1 manu out: 1471 1.1 manu return ret; 1472 1.1 manu } 1473 1.1 manu 1474 1.1 manu #define NEXT_HEADER(mbt) ((struct multiboot_header_tag *) \ 1475 1.1 manu ((char *)mbt + roundup(mbt->size, MULTIBOOT_HEADER_ALIGN))) 1476 1.1 manu 1477 1.1 manu struct multiboot_package * 1478 1.1 manu probe_multiboot2(const char *path) 1479 1.1 manu { 1480 1.1 manu int fd = -1; 1481 1.1 manu size_t i; 1482 1.1 manu char buf[MULTIBOOT_SEARCH + sizeof(struct multiboot_header)]; 1483 1.1 manu ssize_t readen; 1484 1.1 manu struct multiboot_package *mbp = NULL; 1485 1.1 manu struct multiboot_header *mbh; 1486 1.1 manu struct multiboot_header_tag *mbt; 1487 1.1 manu size_t mbh_len = 0; 1488 1.1 manu 1489 1.1 manu if ((fd = open(path, 0)) == -1) 1490 1.1 manu goto out; 1491 1.7 joe 1492 1.1 manu readen = read(fd, buf, sizeof(buf)); 1493 1.1 manu if (readen < sizeof(struct multiboot_header)) 1494 1.1 manu goto out; 1495 1.1 manu 1496 1.1 manu for (i = 0; i < readen; i += MULTIBOOT_HEADER_ALIGN) { 1497 1.1 manu mbh = (struct multiboot_header *)(buf + i); 1498 1.7 joe 1499 1.1 manu if (mbh->magic != MULTIBOOT2_HEADER_MAGIC) 1500 1.1 manu continue; 1501 1.1 manu 1502 1.1 manu if (mbh->architecture != MULTIBOOT_ARCHITECTURE_I386) 1503 1.1 manu continue; 1504 1.7 joe 1505 1.7 joe if (mbh->magic + mbh->architecture + 1506 1.1 manu mbh->header_length + mbh->checksum) 1507 1.1 manu continue; 1508 1.1 manu mbh_len = mbh->header_length; 1509 1.1 manu 1510 1.1 manu mbp = alloc(sizeof(*mbp)); 1511 1.1 manu mbp->mbp_version = 2; 1512 1.1 manu mbp->mbp_file = path; 1513 1.1 manu mbp->mbp_header = alloc(mbh_len); 1514 1.1 manu mbp->mbp_priv = alloc(sizeof(*mbp->mbp_priv)); 1515 1.1 manu memset(mbp->mbp_priv, 0, sizeof (*mbp->mbp_priv)); 1516 1.1 manu mbp->mbp_probe = *probe_multiboot2; 1517 1.1 manu mbp->mbp_exec = *exec_multiboot2; 1518 1.1 manu mbp->mbp_cleanup = *cleanup_multiboot2; 1519 1.1 manu 1520 1.1 manu break; 1521 1.1 manu } 1522 1.1 manu 1523 1.1 manu if (mbp == NULL) 1524 1.1 manu goto out; 1525 1.1 manu 1526 1.1 manu if (lseek(fd, i, SEEK_SET) != i) { 1527 1.1 manu printf("lseek failed"); 1528 1.1 manu mbp->mbp_cleanup(mbp); 1529 1.1 manu mbp = NULL; 1530 1.1 manu goto out; 1531 1.1 manu } 1532 1.1 manu 1533 1.1 manu mbh = mbp->mbp_header; 1534 1.1 manu if (read(fd, mbh, mbh_len) != mbh_len) { 1535 1.1 manu printf("read failed"); 1536 1.1 manu mbp->mbp_cleanup(mbp); 1537 1.1 manu mbp = NULL; 1538 1.1 manu goto out; 1539 1.1 manu } 1540 1.1 manu 1541 1.1 manu for (mbt = (struct multiboot_header_tag *)(mbh + 1); 1542 1.1 manu (char *)mbt - (char *)mbh < mbh_len; 1543 1.1 manu mbt = NEXT_HEADER(mbt)) { 1544 1.1 manu 1545 1.1 manu switch(mbt->type) { 1546 1.1 manu case MULTIBOOT_HEADER_TAG_INFORMATION_REQUEST: 1547 1.1 manu mbp->mbp_priv->mpp_info_req = (void *)mbt; 1548 1.1 manu break; 1549 1.1 manu case MULTIBOOT_HEADER_TAG_ADDRESS: 1550 1.1 manu mbp->mbp_priv->mpp_address = (void *)mbt; 1551 1.1 manu break; 1552 1.1 manu case MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS: 1553 1.1 manu mbp->mbp_priv->mpp_entry = (void *)mbt; 1554 1.1 manu break; 1555 1.1 manu case MULTIBOOT_HEADER_TAG_CONSOLE_FLAGS: 1556 1.1 manu mbp->mbp_priv->mpp_console = (void *)mbt; 1557 1.8 joe break; 1558 1.1 manu case MULTIBOOT_HEADER_TAG_FRAMEBUFFER: 1559 1.1 manu mbp->mbp_priv->mpp_framebuffer = (void *)mbt; 1560 1.1 manu break; 1561 1.1 manu case MULTIBOOT_HEADER_TAG_MODULE_ALIGN: 1562 1.1 manu mbp->mbp_priv->mpp_module_align = (void *)mbt; 1563 1.1 manu break; 1564 1.1 manu #ifdef EFIBOOT 1565 1.1 manu case MULTIBOOT_HEADER_TAG_EFI_BS: 1566 1.1 manu mbp->mbp_priv->mpp_efi_bs = (void *)mbt; 1567 1.1 manu break; 1568 1.1 manu case MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI32: 1569 1.1 manu mbp->mbp_priv->mpp_entry_elf32 = (void *)mbt; 1570 1.1 manu break; 1571 1.1 manu case MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI64: 1572 1.1 manu mbp->mbp_priv->mpp_entry_elf64 = (void *)mbt; 1573 1.1 manu break; 1574 1.1 manu #endif 1575 1.1 manu case MULTIBOOT_HEADER_TAG_RELOCATABLE: 1576 1.1 manu mbp->mbp_priv->mpp_relocatable = (void *)mbt; 1577 1.1 manu break; 1578 1.1 manu case MULTIBOOT_HEADER_TAG_END: /* FALLTHROUGH */ 1579 1.1 manu default: 1580 1.1 manu break; 1581 1.1 manu } 1582 1.1 manu } 1583 1.1 manu 1584 1.1 manu #ifdef MULTIBOOT2_DEBUG 1585 1.1 manu multiboot2_header_dump(mbp); 1586 1.1 manu #endif /* MULTIBOOT2_DEBUG */ 1587 1.1 manu 1588 1.1 manu /* 1589 1.1 manu * multiboot header fully supported 1590 1.1 manu * MULTIBOOT_HEADER_TAG_INFORMATION_REQUEST 1591 1.1 manu * MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS 1592 1.1 manu * MULTIBOOT_HEADER_TAG_MODULE_ALIGN (we always load as page aligned) 1593 1.1 manu * MULTIBOOT_HEADER_TAG_EFI_BS 1594 1.1 manu * MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI32 1595 1.1 manu * MULTIBOOT_HEADER_TAG_ENTRY_ADDRESS_EFI64 1596 1.1 manu * MULTIBOOT_HEADER_TAG_CONSOLE_FLAGS (we always have a console) 1597 1.1 manu * 1598 1.1 manu * Not supported: 1599 1.1 manu * MULTIBOOT_HEADER_TAG_ADDRESS 1600 1.1 manu * MULTIBOOT_HEADER_TAG_FRAMEBUFFER (but spec says it is onty a hint) 1601 1.1 manu * MULTIBOOT_HEADER_TAG_RELOCATABLE 1602 1.1 manu */ 1603 1.1 manu 1604 1.1 manu if (is_header_required((void *)mbp->mbp_priv->mpp_address)) { 1605 1.1 manu printf("Unsupported multiboot address header\n"); 1606 1.1 manu mbp->mbp_cleanup(mbp); 1607 1.1 manu mbp = NULL; 1608 1.1 manu goto out; 1609 1.1 manu } 1610 1.1 manu 1611 1.1 manu #ifdef EFIBOOT 1612 1.1 manu /* 1613 1.1 manu * We do not fully support the relocatable header, but 1614 1.1 manu * at least we honour the alignment request. Xen requires 1615 1.1 manu * that to boot. 1616 1.1 manu */ 1617 1.7 joe struct multiboot_header_tag_relocatable *reloc = 1618 1.1 manu mbp->mbp_priv->mpp_relocatable; 1619 1.1 manu if (reloc) 1620 1.1 manu efi_loadaddr = roundup(efi_loadaddr, reloc->align); 1621 1.1 manu #endif 1622 1.1 manu 1623 1.1 manu if (is_header_required((void *)mbp->mbp_priv->mpp_relocatable)) { 1624 1.1 manu printf("Unsupported multiboot relocatable header\n"); 1625 1.1 manu mbp->mbp_cleanup(mbp); 1626 1.1 manu mbp = NULL; 1627 1.1 manu goto out; 1628 1.1 manu } 1629 1.1 manu 1630 1.1 manu out: 1631 1.1 manu 1632 1.1 manu if (fd != -1) 1633 1.1 manu close(fd); 1634 1.1 manu 1635 1.1 manu return mbp; 1636 1.1 manu } 1637 1.1 manu 1638 1.1 manu #endif /* NO_MULTIBOOT2 */ 1639