xref: /freebsd/stand/efi/loader/bootinfo.c (revision 85e449cfcfdf3a3ea99bae7fed9f3cd436eb21ec)
1 /*-
2  * Copyright (c) 1998 Michael Smith <msmith@freebsd.org>
3  * Copyright (c) 2004, 2006 Marcel Moolenaar
4  * Copyright (c) 2014 The FreeBSD Foundation
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <stand.h>
30 #include <string.h>
31 #include <sys/param.h>
32 #include <sys/linker.h>
33 #include <sys/reboot.h>
34 #include <sys/boot.h>
35 #include <machine/cpufunc.h>
36 #include <machine/elf.h>
37 #include <machine/metadata.h>
38 #include <machine/psl.h>
39 
40 #ifdef EFI
41 #include <efi.h>
42 #include <efilib.h>
43 #else
44 #include "kboot.h"
45 #endif
46 
47 #include "bootstrap.h"
48 #include "modinfo.h"
49 
50 #if defined(__amd64__)
51 #include <machine/specialreg.h>
52 #endif
53 
54 #ifdef EFI
55 #include "loader_efi.h"
56 #include "gfx_fb.h"
57 #endif
58 
59 #if defined(LOADER_FDT_SUPPORT)
60 #include <fdt_platform.h>
61 #endif
62 
63 #ifdef LOADER_GELI_SUPPORT
64 #include "geliboot.h"
65 #endif
66 
67 static int
68 bi_getboothowto(char *kargs)
69 {
70 #if defined(EFI) && (defined(__i386__) || defined(__amd64__))
71 	const char *tmp;
72 	int speed, port;
73 	char buf[50];
74 #endif
75 	char *console;
76 	int howto;
77 
78 	howto = boot_parse_cmdline(kargs);
79 	howto |= boot_env_to_howto();
80 
81 	console = getenv("console");
82 	if (console != NULL) {
83 		if (strcmp(console, "comconsole") == 0)
84 			howto |= RB_SERIAL;
85 		if (strcmp(console, "nullconsole") == 0)
86 			howto |= RB_MUTE;
87 #ifdef EFI
88 #if defined(__i386__) || defined(__amd64__)
89 		if (strcmp(console, "efi") == 0 &&
90 		    getenv("efi_8250_uid") != NULL &&
91 		    getenv("hw.uart.console") == NULL) {
92 			/*
93 			 * If we found a 8250 com port and com speed, we need to
94 			 * tell the kernel where the serial port is, and how
95 			 * fast. Ideally, we'd get the port from ACPI, but that
96 			 * isn't running in the loader. Do the next best thing
97 			 * by allowing it to be set by a loader.conf variable,
98 			 * either a EFI specific one, or the compatible
99 			 * comconsole_port if not. PCI support is needed, but
100 			 * for that we'd ideally refactor the
101 			 * libi386/comconsole.c code to have identical behavior.
102 			 * We only try to set the port for cases where we saw
103 			 * the Serial(x) node when parsing, otherwise
104 			 * specialized hardware that has Uart nodes will have a
105 			 * bogus address set.
106 			 * But if someone specifically setup hw.uart.console,
107 			 * don't override that.
108 			 */
109 			speed = -1;
110 			port = -1;
111 			tmp = getenv("efi_com_speed");
112 			if (tmp != NULL)
113 				speed = strtol(tmp, NULL, 0);
114 			tmp = getenv("efi_com_port");
115 			if (tmp != NULL)
116 				port = strtol(tmp, NULL, 0);
117 			if (port <= 0) {
118 				tmp = getenv("comconsole_port");
119 				if (tmp != NULL)
120 					port = strtol(tmp, NULL, 0);
121 				else {
122 					if (port == 0)
123 						port = 0x3f8;
124 				}
125 			}
126 			if (speed != -1 && port != -1) {
127 				snprintf(buf, sizeof(buf), "io:%d,br:%d", port,
128 				    speed);
129 				env_setenv("hw.uart.console", EV_VOLATILE, buf,
130 				    NULL, NULL);
131 			}
132 		}
133 #endif
134 #endif
135 	}
136 
137 	return (howto);
138 }
139 
140 #ifdef EFI
141 static EFI_STATUS
142 efi_do_vmap(EFI_MEMORY_DESCRIPTOR *mm, UINTN sz, UINTN mmsz, UINT32 mmver)
143 {
144 	EFI_MEMORY_DESCRIPTOR *desc, *viter, *vmap;
145 	EFI_STATUS ret;
146 	int curr, ndesc, nset;
147 
148 	nset = 0;
149 	desc = mm;
150 	ndesc = sz / mmsz;
151 	vmap = malloc(sz);
152 	if (vmap == NULL)
153 		/* This isn't really an EFI error case, but pretend it is */
154 		return (EFI_OUT_OF_RESOURCES);
155 	viter = vmap;
156 	for (curr = 0; curr < ndesc;
157 	    curr++, desc = NextMemoryDescriptor(desc, mmsz)) {
158 		if ((desc->Attribute & EFI_MEMORY_RUNTIME) != 0) {
159 			++nset;
160 			desc->VirtualStart = desc->PhysicalStart;
161 			*viter = *desc;
162 			viter = NextMemoryDescriptor(viter, mmsz);
163 		}
164 	}
165 	ret = RS->SetVirtualAddressMap(nset * mmsz, mmsz, mmver, vmap);
166 	free(vmap);
167 	return (ret);
168 }
169 
170 static int
171 bi_load_efi_data(struct preloaded_file *kfp, bool exit_bs)
172 {
173 	EFI_MEMORY_DESCRIPTOR *mm;
174 	EFI_PHYSICAL_ADDRESS addr = 0;
175 	EFI_STATUS status;
176 	const char *efi_novmap;
177 	size_t efisz;
178 	UINTN efi_mapkey;
179 	UINTN dsz, pages, retry, sz;
180 	UINT32 mmver;
181 	struct efi_map_header *efihdr;
182 	bool do_vmap;
183 
184 #ifdef MODINFOMD_EFI_FB
185 	struct efi_fb efifb;
186 
187 	efifb.fb_addr = gfx_state.tg_fb.fb_addr;
188 	efifb.fb_size = gfx_state.tg_fb.fb_size;
189 	efifb.fb_height = gfx_state.tg_fb.fb_height;
190 	efifb.fb_width = gfx_state.tg_fb.fb_width;
191 	efifb.fb_stride = gfx_state.tg_fb.fb_stride;
192 	efifb.fb_mask_red = gfx_state.tg_fb.fb_mask_red;
193 	efifb.fb_mask_green = gfx_state.tg_fb.fb_mask_green;
194 	efifb.fb_mask_blue = gfx_state.tg_fb.fb_mask_blue;
195 	efifb.fb_mask_reserved = gfx_state.tg_fb.fb_mask_reserved;
196 
197 	if (efifb.fb_addr != 0) {
198 		printf("EFI framebuffer information:\n");
199 		printf("addr, size     0x%jx, 0x%jx\n",
200 		    efifb.fb_addr, efifb.fb_size);
201 		printf("dimensions     %d x %d\n",
202 		    efifb.fb_width, efifb.fb_height);
203 		printf("stride         %d\n", efifb.fb_stride);
204 		printf("masks          0x%08x, 0x%08x, 0x%08x, 0x%08x\n",
205 		    efifb.fb_mask_red, efifb.fb_mask_green, efifb.fb_mask_blue,
206 		    efifb.fb_mask_reserved);
207 
208 		file_addmetadata(kfp, MODINFOMD_EFI_FB, sizeof(efifb), &efifb);
209 	}
210 #endif
211 
212 #if defined(__amd64__) || defined(__i386__)
213 	/*
214 	 * Staging can't move after this point, so report the final value before
215 	 * we try to exit boot services below. The metadata added is added to
216 	 * the malloced arena that we setup when we started and doesn't interact
217 	 * with boot services.
218 	 */
219 	printf("staging %#jx\n", (uintmax_t)staging);
220 #endif
221 
222 	do_vmap = true;
223 	efi_novmap = getenv("efi_disable_vmap");
224 	if (efi_novmap != NULL)
225 		do_vmap = strcasecmp(efi_novmap, "YES") != 0;
226 
227 	efisz = (sizeof(struct efi_map_header) + 0xf) & ~0xf;
228 
229 	/*
230 	 * Assign size of EFI_MEMORY_DESCRIPTOR to keep compatible with
231 	 * u-boot which doesn't fill this value when buffer for memory
232 	 * descriptors is too small (eg. 0 to obtain memory map size)
233 	 */
234 	dsz = sizeof(EFI_MEMORY_DESCRIPTOR);
235 
236 	/*
237 	 * Allocate enough pages to hold the bootinfo block and the
238 	 * memory map EFI will return to us. The memory map has an
239 	 * unknown size, so we have to determine that first. Note that
240 	 * the AllocatePages call can itself modify the memory map, so
241 	 * we have to take that into account as well. The changes to
242 	 * the memory map are caused by splitting a range of free
243 	 * memory into two, so that one is marked as being loader
244 	 * data.
245 	 */
246 
247 	sz = 0;
248 	mm = NULL;
249 
250 	/*
251 	 * Matthew Garrett has observed at least one system changing the
252 	 * memory map when calling ExitBootServices, causing it to return an
253 	 * error, probably because callbacks are allocating memory.
254 	 * So we need to retry calling it at least once.
255 	 */
256 	for (retry = 2; retry > 0; retry--) {
257 		for (;;) {
258 			status = BS->GetMemoryMap(&sz, mm, &efi_mapkey, &dsz, &mmver);
259 			if (!EFI_ERROR(status))
260 				break;
261 
262 			if (status != EFI_BUFFER_TOO_SMALL) {
263 				printf("%s: GetMemoryMap error %lu\n", __func__,
264 	                           DECODE_ERROR(status));
265 				return (EINVAL);
266 			}
267 
268 			if (addr != 0)
269 				BS->FreePages(addr, pages);
270 
271 			/* Add 10 descriptors to the size to allow for
272 			 * fragmentation caused by calling AllocatePages */
273 			sz += (10 * dsz);
274 			pages = EFI_SIZE_TO_PAGES(sz + efisz);
275 			status = BS->AllocatePages(AllocateAnyPages, EfiLoaderData,
276 					pages, &addr);
277 			if (EFI_ERROR(status)) {
278 				printf("%s: AllocatePages error %lu\n", __func__,
279 				    DECODE_ERROR(status));
280 				return (ENOMEM);
281 			}
282 
283 			/*
284 			 * Read the memory map and stash it after bootinfo. Align the
285 			 * memory map on a 16-byte boundary (the bootinfo block is page
286 			 * aligned).
287 			 */
288 			efihdr = (struct efi_map_header *)(uintptr_t)addr;
289 			mm = (void *)((uint8_t *)efihdr + efisz);
290 			sz = (EFI_PAGE_SIZE * pages) - efisz;
291 		}
292 
293 		if (!exit_bs)
294 			break;
295 		status = efi_exit_boot_services(efi_mapkey);
296 		if (!EFI_ERROR(status))
297 			break;
298 	}
299 
300 	if (retry == 0) {
301 		BS->FreePages(addr, pages);
302 		printf("ExitBootServices error %lu\n", DECODE_ERROR(status));
303 		return (EINVAL);
304 	}
305 
306 	/*
307 	 * This may be disabled by setting efi_disable_vmap in
308 	 * loader.conf(5). By default we will setup the virtual
309 	 * map entries.
310 	 */
311 	if (do_vmap)
312 		efi_do_vmap(mm, sz, dsz, mmver);
313 
314 	/*
315 	 * Add the memory map to the metadata. addmetadata copies the data into
316 	 * the malloc arena, so we can safely free the memory map pages after.
317 	 * Or could if boot services was still running.
318 	 */
319 	efihdr->memory_size = sz;
320 	efihdr->descriptor_size = dsz;
321 	efihdr->descriptor_version = mmver;
322 	file_addmetadata(kfp, MODINFOMD_EFI_MAP, efisz + sz,
323 	    efihdr);
324 	/* BS->FreePages(addr, pages); */
325 
326 	return (0);
327 }
328 #endif
329 
330 /*
331  * Load the information expected by an amd64 kernel.
332  *
333  * - The 'boothowto' argument is constructed.
334  * - The 'bootdev' argument is constructed.
335  * - The 'bootinfo' struct is constructed, and copied into the kernel space.
336  * - The kernel environment is copied into kernel space.
337  * - Module metadata are formatted and placed in kernel space.
338  */
339 int
340 bi_load(char *args, vm_offset_t *modulep, vm_offset_t *kernendp, bool exit_bs)
341 {
342 	struct preloaded_file *xp, *kfp;
343 	struct devdesc *rootdev;
344 	struct file_metadata *md;
345 	vm_offset_t addr;
346 	uint64_t kernend;
347 #ifdef MODINFOMD_MODULEP
348 	uint64_t module;
349 #endif
350 	uint64_t envp;
351 	vm_offset_t size;
352 	char *rootdevname;
353 	int howto;
354 #ifdef __i386__
355 	/*
356 	 * The 32-bit UEFI loader is used to
357 	 * boot the 64-bit kernel on machines
358 	 * that support it.
359 	 */
360 	bool is64 = true;
361 #else
362 	bool is64 = sizeof(long) == 8;
363 #endif
364 #if defined(LOADER_FDT_SUPPORT)
365 	vm_offset_t dtbp;
366 	int dtb_size;
367 #endif
368 #if defined(__arm__)
369 	vm_offset_t vaddr;
370 	size_t i;
371 	/*
372 	 * These metadata addreses must be converted for kernel after
373 	 * relocation.
374 	 */
375 	uint32_t		mdt[] = {
376 	    MODINFOMD_SSYM, MODINFOMD_ESYM, MODINFOMD_KERNEND,
377 	    MODINFOMD_ENVP, MODINFOMD_FONT,
378 #if defined(LOADER_FDT_SUPPORT)
379 	    MODINFOMD_DTBP
380 #endif
381 	};
382 #endif
383 	howto = bi_getboothowto(args);
384 
385 	/*
386 	 * Allow the environment variable 'rootdev' to override the supplied
387 	 * device. This should perhaps go to MI code and/or have $rootdev
388 	 * tested/set by MI code before launching the kernel.
389 	 */
390 	rootdevname = getenv("rootdev");
391 	archsw.arch_getdev((void**)(&rootdev), rootdevname, NULL);
392 	if (rootdev == NULL) {
393 		printf("Can't determine root device.\n");
394 		return(EINVAL);
395 	}
396 
397 	/* Try reading the /etc/fstab file to select the root device */
398 	getrootmount(devformat(rootdev));
399 
400 	addr = 0;
401 	for (xp = file_findfile(NULL, NULL); xp != NULL; xp = xp->f_next) {
402 		if (addr < xp->f_addr + xp->f_size)
403 			addr = xp->f_addr + xp->f_size;
404 	}
405 
406 	/* Pad to a page boundary. */
407 	addr = md_align(addr);
408 
409 #ifdef EFI
410 	addr = build_font_module(addr);
411 
412 	/* Pad to a page boundary. */
413 	addr = md_align(addr);
414 
415 	addr = build_splash_module(addr, SPLASH_STARTUP);
416 
417 	/* Pad to a page boundary. */
418 	addr = md_align(addr);
419 
420 	addr = build_splash_module(addr, SPLASH_SHUTDOWN);
421 
422 	/* Pad to a page boundary. */
423 	addr = md_align(addr);
424 #endif
425 
426 	/* Copy our environment. */
427 	envp = addr;
428 	addr = md_copyenv(addr);
429 
430 	/* Pad to a page boundary. */
431 	addr = md_align(addr);
432 
433 #if defined(LOADER_FDT_SUPPORT)
434 	/* Handle device tree blob */
435 	dtbp = addr;
436 	dtb_size = fdt_copy(addr);
437 
438 	/* Pad to a page boundary */
439 	if (dtb_size)
440 		addr += md_align(dtb_size);
441 #endif
442 
443 	kfp = file_findfile(NULL, md_kerntype);
444 	if (kfp == NULL)
445 		panic("can't find kernel file");
446 	kernend = 0;	/* fill it in later */
447 
448 	/* Figure out the size and location of the metadata. */
449 	*modulep = addr;
450 
451 	file_addmetadata(kfp, MODINFOMD_HOWTO, sizeof(howto), &howto);
452 	file_addmetadata(kfp, MODINFOMD_ENVP, sizeof(envp), &envp);
453 #if defined(LOADER_FDT_SUPPORT)
454 	if (dtb_size)
455 		file_addmetadata(kfp, MODINFOMD_DTBP, sizeof(dtbp), &dtbp);
456 	else if (getenv("acpi.revision") == NULL) {
457 		printf("WARNING! Trying to fire up the kernel, but no "
458 		    "device tree blob found!\n");
459 	}
460 #endif
461 	file_addmetadata(kfp, MODINFOMD_KERNEND, sizeof(kernend), &kernend);
462 #ifdef MODINFOMD_MODULEP
463 	module = *modulep;
464 	file_addmetadata(kfp, MODINFOMD_MODULEP, sizeof(module), &module);
465 #endif
466 #ifdef EFI
467 #ifndef __i386__
468 	file_addmetadata(kfp, MODINFOMD_FW_HANDLE, sizeof(ST), &ST);
469 #endif
470 #if defined(__amd64__) || defined(__i386__)
471 	file_addmetadata(kfp, MODINFOMD_EFI_ARCH, sizeof(MACHINE_ARCH),
472 	    MACHINE_ARCH);
473 #endif
474 #endif
475 #ifdef LOADER_GELI_SUPPORT
476 	geli_export_key_metadata(kfp);
477 #endif
478 #ifdef EFI
479 	bi_load_efi_data(kfp, exit_bs);
480 #else
481 	bi_loadsmap(kfp);
482 #endif
483 
484 	size = md_copymodules(0, is64);	/* Find the size of the modules */
485 	kernend = md_align(addr + size);
486 	*kernendp = kernend;
487 
488 	/* patch MODINFOMD_KERNEND */
489 	md = file_findmetadata(kfp, MODINFOMD_KERNEND);
490 	bcopy(&kernend, md->md_data, sizeof kernend);
491 
492 #if defined(__arm__)
493 	*modulep -= __elfN(relocation_offset);
494 
495 	/* Do relocation fixup on metadata of each module. */
496 	for (xp = file_findfile(NULL, NULL); xp != NULL; xp = xp->f_next) {
497 		for (i = 0; i < nitems(mdt); i++) {
498 			md = file_findmetadata(xp, mdt[i]);
499 			if (md) {
500 				bcopy(md->md_data, &vaddr, sizeof vaddr);
501 				vaddr -= __elfN(relocation_offset);
502 				bcopy(&vaddr, md->md_data, sizeof vaddr);
503 			}
504 		}
505 	}
506 #endif
507 
508 	/* Copy module list and metadata. */
509 	(void)md_copymodules(addr, is64);
510 
511 	return (0);
512 }
513