blob: c760e073963ed59004f66ed65aade6355c852da9 [file] [log] [blame]
Matt Fleming291f3632011-12-12 21:27:52 +00001/* -----------------------------------------------------------------------
2 *
3 * Copyright 2011 Intel Corporation; author Matt Fleming
4 *
5 * This file is part of the Linux kernel, and is made available under
6 * the terms of the GNU General Public License version 2.
7 *
8 * ----------------------------------------------------------------------- */
9
10#include <linux/efi.h>
11#include <asm/efi.h>
12#include <asm/setup.h>
13#include <asm/desc.h>
14
15#include "eboot.h"
16
17static efi_system_table_t *sys_table;
18
Matt Fleming9fa7ded2012-02-20 13:20:59 +000019static void efi_printk(char *str)
20{
21 char *s8;
22
23 for (s8 = str; *s8; s8++) {
24 struct efi_simple_text_output_protocol *out;
25 efi_char16_t ch[2] = { 0 };
26
27 ch[0] = *s8;
28 out = (struct efi_simple_text_output_protocol *)sys_table->con_out;
29
30 if (*s8 == '\n') {
31 efi_char16_t nl[2] = { '\r', 0 };
32 efi_call_phys2(out->output_string, out, nl);
33 }
34
35 efi_call_phys2(out->output_string, out, ch);
36 }
37}
38
Matt Fleming291f3632011-12-12 21:27:52 +000039static efi_status_t __get_map(efi_memory_desc_t **map, unsigned long *map_size,
40 unsigned long *desc_size)
41{
42 efi_memory_desc_t *m = NULL;
43 efi_status_t status;
44 unsigned long key;
45 u32 desc_version;
46
47 *map_size = sizeof(*m) * 32;
48again:
49 /*
50 * Add an additional efi_memory_desc_t because we're doing an
51 * allocation which may be in a new descriptor region.
52 */
53 *map_size += sizeof(*m);
54 status = efi_call_phys3(sys_table->boottime->allocate_pool,
55 EFI_LOADER_DATA, *map_size, (void **)&m);
56 if (status != EFI_SUCCESS)
57 goto fail;
58
59 status = efi_call_phys5(sys_table->boottime->get_memory_map, map_size,
60 m, &key, desc_size, &desc_version);
61 if (status == EFI_BUFFER_TOO_SMALL) {
62 efi_call_phys1(sys_table->boottime->free_pool, m);
63 goto again;
64 }
65
66 if (status != EFI_SUCCESS)
67 efi_call_phys1(sys_table->boottime->free_pool, m);
68
69fail:
70 *map = m;
71 return status;
72}
73
74/*
75 * Allocate at the highest possible address that is not above 'max'.
76 */
77static efi_status_t high_alloc(unsigned long size, unsigned long align,
78 unsigned long *addr, unsigned long max)
79{
80 unsigned long map_size, desc_size;
81 efi_memory_desc_t *map;
82 efi_status_t status;
83 unsigned long nr_pages;
84 u64 max_addr = 0;
85 int i;
86
87 status = __get_map(&map, &map_size, &desc_size);
88 if (status != EFI_SUCCESS)
89 goto fail;
90
91 nr_pages = round_up(size, EFI_PAGE_SIZE) / EFI_PAGE_SIZE;
92again:
93 for (i = 0; i < map_size / desc_size; i++) {
94 efi_memory_desc_t *desc;
95 unsigned long m = (unsigned long)map;
96 u64 start, end;
97
98 desc = (efi_memory_desc_t *)(m + (i * desc_size));
99 if (desc->type != EFI_CONVENTIONAL_MEMORY)
100 continue;
101
102 if (desc->num_pages < nr_pages)
103 continue;
104
105 start = desc->phys_addr;
106 end = start + desc->num_pages * (1UL << EFI_PAGE_SHIFT);
107
108 if ((start + size) > end || (start + size) > max)
109 continue;
110
111 if (end - size > max)
112 end = max;
113
114 if (round_down(end - size, align) < start)
115 continue;
116
117 start = round_down(end - size, align);
118
119 /*
120 * Don't allocate at 0x0. It will confuse code that
121 * checks pointers against NULL.
122 */
123 if (start == 0x0)
124 continue;
125
126 if (start > max_addr)
127 max_addr = start;
128 }
129
130 if (!max_addr)
131 status = EFI_NOT_FOUND;
132 else {
133 status = efi_call_phys4(sys_table->boottime->allocate_pages,
134 EFI_ALLOCATE_ADDRESS, EFI_LOADER_DATA,
135 nr_pages, &max_addr);
136 if (status != EFI_SUCCESS) {
137 max = max_addr;
138 max_addr = 0;
139 goto again;
140 }
141
142 *addr = max_addr;
143 }
144
145free_pool:
146 efi_call_phys1(sys_table->boottime->free_pool, map);
147
148fail:
149 return status;
150}
151
152/*
153 * Allocate at the lowest possible address.
154 */
155static efi_status_t low_alloc(unsigned long size, unsigned long align,
156 unsigned long *addr)
157{
158 unsigned long map_size, desc_size;
159 efi_memory_desc_t *map;
160 efi_status_t status;
161 unsigned long nr_pages;
162 int i;
163
164 status = __get_map(&map, &map_size, &desc_size);
165 if (status != EFI_SUCCESS)
166 goto fail;
167
168 nr_pages = round_up(size, EFI_PAGE_SIZE) / EFI_PAGE_SIZE;
169 for (i = 0; i < map_size / desc_size; i++) {
170 efi_memory_desc_t *desc;
171 unsigned long m = (unsigned long)map;
172 u64 start, end;
173
174 desc = (efi_memory_desc_t *)(m + (i * desc_size));
175
176 if (desc->type != EFI_CONVENTIONAL_MEMORY)
177 continue;
178
179 if (desc->num_pages < nr_pages)
180 continue;
181
182 start = desc->phys_addr;
183 end = start + desc->num_pages * (1UL << EFI_PAGE_SHIFT);
184
185 /*
186 * Don't allocate at 0x0. It will confuse code that
187 * checks pointers against NULL. Skip the first 8
188 * bytes so we start at a nice even number.
189 */
190 if (start == 0x0)
191 start += 8;
192
193 start = round_up(start, align);
194 if ((start + size) > end)
195 continue;
196
197 status = efi_call_phys4(sys_table->boottime->allocate_pages,
198 EFI_ALLOCATE_ADDRESS, EFI_LOADER_DATA,
199 nr_pages, &start);
200 if (status == EFI_SUCCESS) {
201 *addr = start;
202 break;
203 }
204 }
205
206 if (i == map_size / desc_size)
207 status = EFI_NOT_FOUND;
208
209free_pool:
210 efi_call_phys1(sys_table->boottime->free_pool, map);
211fail:
212 return status;
213}
214
215static void low_free(unsigned long size, unsigned long addr)
216{
217 unsigned long nr_pages;
218
219 nr_pages = round_up(size, EFI_PAGE_SIZE) / EFI_PAGE_SIZE;
220 efi_call_phys2(sys_table->boottime->free_pages, addr, size);
221}
222
223static void find_bits(unsigned long mask, u8 *pos, u8 *size)
224{
225 u8 first, len;
226
227 first = 0;
228 len = 0;
229
230 if (mask) {
231 while (!(mask & 0x1)) {
232 mask = mask >> 1;
233 first++;
234 }
235
236 while (mask & 0x1) {
237 mask = mask >> 1;
238 len++;
239 }
240 }
241
242 *pos = first;
243 *size = len;
244}
245
246/*
247 * See if we have Graphics Output Protocol
248 */
249static efi_status_t setup_gop(struct screen_info *si, efi_guid_t *proto,
250 unsigned long size)
251{
252 struct efi_graphics_output_protocol *gop, *first_gop;
253 struct efi_pixel_bitmask pixel_info;
254 unsigned long nr_gops;
255 efi_status_t status;
256 void **gop_handle;
257 u16 width, height;
258 u32 fb_base, fb_size;
259 u32 pixels_per_scan_line;
260 int pixel_format;
261 int i;
262
263 status = efi_call_phys3(sys_table->boottime->allocate_pool,
264 EFI_LOADER_DATA, size, &gop_handle);
265 if (status != EFI_SUCCESS)
266 return status;
267
268 status = efi_call_phys5(sys_table->boottime->locate_handle,
269 EFI_LOCATE_BY_PROTOCOL, proto,
270 NULL, &size, gop_handle);
271 if (status != EFI_SUCCESS)
272 goto free_handle;
273
274 first_gop = NULL;
275
276 nr_gops = size / sizeof(void *);
277 for (i = 0; i < nr_gops; i++) {
278 struct efi_graphics_output_mode_info *info;
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400279 efi_guid_t conout_proto = EFI_CONSOLE_OUT_DEVICE_GUID;
280 bool conout_found = false;
281 void *dummy;
Matt Fleming291f3632011-12-12 21:27:52 +0000282 void *h = gop_handle[i];
283
284 status = efi_call_phys3(sys_table->boottime->handle_protocol,
285 h, proto, &gop);
286 if (status != EFI_SUCCESS)
287 continue;
288
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400289 status = efi_call_phys3(sys_table->boottime->handle_protocol,
290 h, &conout_proto, &dummy);
291
292 if (status == EFI_SUCCESS)
293 conout_found = true;
Matt Fleming291f3632011-12-12 21:27:52 +0000294
295 status = efi_call_phys4(gop->query_mode, gop,
296 gop->mode->mode, &size, &info);
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400297 if (status == EFI_SUCCESS && (!first_gop || conout_found)) {
Matt Fleming291f3632011-12-12 21:27:52 +0000298 /*
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400299 * Systems that use the UEFI Console Splitter may
300 * provide multiple GOP devices, not all of which are
301 * backed by real hardware. The workaround is to search
302 * for a GOP implementing the ConOut protocol, and if
303 * one isn't found, to just fall back to the first GOP.
Matt Fleming291f3632011-12-12 21:27:52 +0000304 */
305 width = info->horizontal_resolution;
306 height = info->vertical_resolution;
307 fb_base = gop->mode->frame_buffer_base;
308 fb_size = gop->mode->frame_buffer_size;
309 pixel_format = info->pixel_format;
310 pixel_info = info->pixel_information;
311 pixels_per_scan_line = info->pixels_per_scan_line;
312
313 /*
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400314 * Once we've found a GOP supporting ConOut,
Matt Fleming291f3632011-12-12 21:27:52 +0000315 * don't bother looking any further.
316 */
Matthew Garrett38cb5ef2012-07-26 18:00:27 -0400317 if (conout_found)
Matt Fleming291f3632011-12-12 21:27:52 +0000318 break;
319
320 first_gop = gop;
321 }
322 }
323
324 /* Did we find any GOPs? */
325 if (!first_gop)
326 goto free_handle;
327
328 /* EFI framebuffer */
329 si->orig_video_isVGA = VIDEO_TYPE_EFI;
330
331 si->lfb_width = width;
332 si->lfb_height = height;
333 si->lfb_base = fb_base;
Matt Fleming291f3632011-12-12 21:27:52 +0000334 si->pages = 1;
335
336 if (pixel_format == PIXEL_RGB_RESERVED_8BIT_PER_COLOR) {
337 si->lfb_depth = 32;
338 si->lfb_linelength = pixels_per_scan_line * 4;
339 si->red_size = 8;
340 si->red_pos = 0;
341 si->green_size = 8;
342 si->green_pos = 8;
343 si->blue_size = 8;
344 si->blue_pos = 16;
345 si->rsvd_size = 8;
346 si->rsvd_pos = 24;
347 } else if (pixel_format == PIXEL_BGR_RESERVED_8BIT_PER_COLOR) {
348 si->lfb_depth = 32;
349 si->lfb_linelength = pixels_per_scan_line * 4;
350 si->red_size = 8;
351 si->red_pos = 16;
352 si->green_size = 8;
353 si->green_pos = 8;
354 si->blue_size = 8;
355 si->blue_pos = 0;
356 si->rsvd_size = 8;
357 si->rsvd_pos = 24;
358 } else if (pixel_format == PIXEL_BIT_MASK) {
359 find_bits(pixel_info.red_mask, &si->red_pos, &si->red_size);
360 find_bits(pixel_info.green_mask, &si->green_pos,
361 &si->green_size);
362 find_bits(pixel_info.blue_mask, &si->blue_pos, &si->blue_size);
363 find_bits(pixel_info.reserved_mask, &si->rsvd_pos,
364 &si->rsvd_size);
365 si->lfb_depth = si->red_size + si->green_size +
366 si->blue_size + si->rsvd_size;
367 si->lfb_linelength = (pixels_per_scan_line * si->lfb_depth) / 8;
368 } else {
369 si->lfb_depth = 4;
370 si->lfb_linelength = si->lfb_width / 2;
371 si->red_size = 0;
372 si->red_pos = 0;
373 si->green_size = 0;
374 si->green_pos = 0;
375 si->blue_size = 0;
376 si->blue_pos = 0;
377 si->rsvd_size = 0;
378 si->rsvd_pos = 0;
379 }
380
Matthew Garrette9b10952012-07-27 17:20:49 -0400381 si->lfb_size = si->lfb_linelength * si->lfb_height;
382
Matthew Garrettf462ed92012-07-27 12:58:53 -0400383 si->capabilities |= VIDEO_CAPABILITY_SKIP_QUIRKS;
384
Matt Fleming291f3632011-12-12 21:27:52 +0000385free_handle:
386 efi_call_phys1(sys_table->boottime->free_pool, gop_handle);
387 return status;
388}
389
390/*
391 * See if we have Universal Graphics Adapter (UGA) protocol
392 */
393static efi_status_t setup_uga(struct screen_info *si, efi_guid_t *uga_proto,
394 unsigned long size)
395{
396 struct efi_uga_draw_protocol *uga, *first_uga;
397 unsigned long nr_ugas;
398 efi_status_t status;
399 u32 width, height;
400 void **uga_handle = NULL;
401 int i;
402
403 status = efi_call_phys3(sys_table->boottime->allocate_pool,
404 EFI_LOADER_DATA, size, &uga_handle);
405 if (status != EFI_SUCCESS)
406 return status;
407
408 status = efi_call_phys5(sys_table->boottime->locate_handle,
409 EFI_LOCATE_BY_PROTOCOL, uga_proto,
410 NULL, &size, uga_handle);
411 if (status != EFI_SUCCESS)
412 goto free_handle;
413
414 first_uga = NULL;
415
416 nr_ugas = size / sizeof(void *);
417 for (i = 0; i < nr_ugas; i++) {
418 efi_guid_t pciio_proto = EFI_PCI_IO_PROTOCOL_GUID;
419 void *handle = uga_handle[i];
420 u32 w, h, depth, refresh;
421 void *pciio;
422
423 status = efi_call_phys3(sys_table->boottime->handle_protocol,
424 handle, uga_proto, &uga);
425 if (status != EFI_SUCCESS)
426 continue;
427
428 efi_call_phys3(sys_table->boottime->handle_protocol,
429 handle, &pciio_proto, &pciio);
430
431 status = efi_call_phys5(uga->get_mode, uga, &w, &h,
432 &depth, &refresh);
433 if (status == EFI_SUCCESS && (!first_uga || pciio)) {
434 width = w;
435 height = h;
436
437 /*
438 * Once we've found a UGA supporting PCIIO,
439 * don't bother looking any further.
440 */
441 if (pciio)
442 break;
443
444 first_uga = uga;
445 }
446 }
447
448 if (!first_uga)
449 goto free_handle;
450
451 /* EFI framebuffer */
452 si->orig_video_isVGA = VIDEO_TYPE_EFI;
453
454 si->lfb_depth = 32;
455 si->lfb_width = width;
456 si->lfb_height = height;
457
458 si->red_size = 8;
459 si->red_pos = 16;
460 si->green_size = 8;
461 si->green_pos = 8;
462 si->blue_size = 8;
463 si->blue_pos = 0;
464 si->rsvd_size = 8;
465 si->rsvd_pos = 24;
466
467
468free_handle:
469 efi_call_phys1(sys_table->boottime->free_pool, uga_handle);
470 return status;
471}
472
473void setup_graphics(struct boot_params *boot_params)
474{
475 efi_guid_t graphics_proto = EFI_GRAPHICS_OUTPUT_PROTOCOL_GUID;
476 struct screen_info *si;
477 efi_guid_t uga_proto = EFI_UGA_PROTOCOL_GUID;
478 efi_status_t status;
479 unsigned long size;
480 void **gop_handle = NULL;
481 void **uga_handle = NULL;
482
483 si = &boot_params->screen_info;
484 memset(si, 0, sizeof(*si));
485
486 size = 0;
487 status = efi_call_phys5(sys_table->boottime->locate_handle,
488 EFI_LOCATE_BY_PROTOCOL, &graphics_proto,
489 NULL, &size, gop_handle);
490 if (status == EFI_BUFFER_TOO_SMALL)
491 status = setup_gop(si, &graphics_proto, size);
492
493 if (status != EFI_SUCCESS) {
494 size = 0;
495 status = efi_call_phys5(sys_table->boottime->locate_handle,
496 EFI_LOCATE_BY_PROTOCOL, &uga_proto,
497 NULL, &size, uga_handle);
498 if (status == EFI_BUFFER_TOO_SMALL)
499 setup_uga(si, &uga_proto, size);
500 }
501}
502
503struct initrd {
504 efi_file_handle_t *handle;
505 u64 size;
506};
507
508/*
509 * Check the cmdline for a LILO-style initrd= arguments.
510 *
511 * We only support loading an initrd from the same filesystem as the
512 * kernel image.
513 */
514static efi_status_t handle_ramdisks(efi_loaded_image_t *image,
515 struct setup_header *hdr)
516{
517 struct initrd *initrds;
518 unsigned long initrd_addr;
519 efi_guid_t fs_proto = EFI_FILE_SYSTEM_GUID;
520 u64 initrd_total;
521 efi_file_io_interface_t *io;
522 efi_file_handle_t *fh;
523 efi_status_t status;
524 int nr_initrds;
525 char *str;
526 int i, j, k;
527
528 initrd_addr = 0;
529 initrd_total = 0;
530
531 str = (char *)(unsigned long)hdr->cmd_line_ptr;
532
533 j = 0; /* See close_handles */
534
535 if (!str || !*str)
536 return EFI_SUCCESS;
537
538 for (nr_initrds = 0; *str; nr_initrds++) {
539 str = strstr(str, "initrd=");
540 if (!str)
541 break;
542
543 str += 7;
544
545 /* Skip any leading slashes */
546 while (*str == '/' || *str == '\\')
547 str++;
548
549 while (*str && *str != ' ' && *str != '\n')
550 str++;
551 }
552
553 if (!nr_initrds)
554 return EFI_SUCCESS;
555
556 status = efi_call_phys3(sys_table->boottime->allocate_pool,
557 EFI_LOADER_DATA,
558 nr_initrds * sizeof(*initrds),
559 &initrds);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000560 if (status != EFI_SUCCESS) {
561 efi_printk("Failed to alloc mem for initrds\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000562 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000563 }
Matt Fleming291f3632011-12-12 21:27:52 +0000564
565 str = (char *)(unsigned long)hdr->cmd_line_ptr;
566 for (i = 0; i < nr_initrds; i++) {
567 struct initrd *initrd;
568 efi_file_handle_t *h;
569 efi_file_info_t *info;
Dan Carpenterc7b73832012-03-05 21:06:14 +0300570 efi_char16_t filename_16[256];
Matt Fleming291f3632011-12-12 21:27:52 +0000571 unsigned long info_sz;
572 efi_guid_t info_guid = EFI_FILE_INFO_ID;
573 efi_char16_t *p;
574 u64 file_sz;
575
576 str = strstr(str, "initrd=");
577 if (!str)
578 break;
579
580 str += 7;
581
582 initrd = &initrds[i];
Dan Carpenterc7b73832012-03-05 21:06:14 +0300583 p = filename_16;
Matt Fleming291f3632011-12-12 21:27:52 +0000584
585 /* Skip any leading slashes */
586 while (*str == '/' || *str == '\\')
587 str++;
588
589 while (*str && *str != ' ' && *str != '\n') {
Dan Carpenterc7b73832012-03-05 21:06:14 +0300590 if ((u8 *)p >= (u8 *)filename_16 + sizeof(filename_16))
Matt Fleming291f3632011-12-12 21:27:52 +0000591 break;
592
593 *p++ = *str++;
594 }
595
596 *p = '\0';
597
598 /* Only open the volume once. */
599 if (!i) {
600 efi_boot_services_t *boottime;
601
602 boottime = sys_table->boottime;
603
604 status = efi_call_phys3(boottime->handle_protocol,
605 image->device_handle, &fs_proto, &io);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000606 if (status != EFI_SUCCESS) {
607 efi_printk("Failed to handle fs_proto\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000608 goto free_initrds;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000609 }
Matt Fleming291f3632011-12-12 21:27:52 +0000610
611 status = efi_call_phys2(io->open_volume, io, &fh);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000612 if (status != EFI_SUCCESS) {
613 efi_printk("Failed to open volume\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000614 goto free_initrds;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000615 }
Matt Fleming291f3632011-12-12 21:27:52 +0000616 }
617
Dan Carpenterc7b73832012-03-05 21:06:14 +0300618 status = efi_call_phys5(fh->open, fh, &h, filename_16,
Matt Fleming291f3632011-12-12 21:27:52 +0000619 EFI_FILE_MODE_READ, (u64)0);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000620 if (status != EFI_SUCCESS) {
621 efi_printk("Failed to open initrd file\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000622 goto close_handles;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000623 }
Matt Fleming291f3632011-12-12 21:27:52 +0000624
625 initrd->handle = h;
626
627 info_sz = 0;
628 status = efi_call_phys4(h->get_info, h, &info_guid,
629 &info_sz, NULL);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000630 if (status != EFI_BUFFER_TOO_SMALL) {
631 efi_printk("Failed to get initrd info size\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000632 goto close_handles;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000633 }
Matt Fleming291f3632011-12-12 21:27:52 +0000634
635grow:
636 status = efi_call_phys3(sys_table->boottime->allocate_pool,
637 EFI_LOADER_DATA, info_sz, &info);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000638 if (status != EFI_SUCCESS) {
639 efi_printk("Failed to alloc mem for initrd info\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000640 goto close_handles;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000641 }
Matt Fleming291f3632011-12-12 21:27:52 +0000642
643 status = efi_call_phys4(h->get_info, h, &info_guid,
644 &info_sz, info);
645 if (status == EFI_BUFFER_TOO_SMALL) {
646 efi_call_phys1(sys_table->boottime->free_pool, info);
647 goto grow;
648 }
649
650 file_sz = info->file_size;
651 efi_call_phys1(sys_table->boottime->free_pool, info);
652
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000653 if (status != EFI_SUCCESS) {
654 efi_printk("Failed to get initrd info\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000655 goto close_handles;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000656 }
Matt Fleming291f3632011-12-12 21:27:52 +0000657
658 initrd->size = file_sz;
659 initrd_total += file_sz;
660 }
661
662 if (initrd_total) {
663 unsigned long addr;
664
665 /*
666 * Multiple initrd's need to be at consecutive
667 * addresses in memory, so allocate enough memory for
668 * all the initrd's.
669 */
670 status = high_alloc(initrd_total, 0x1000,
671 &initrd_addr, hdr->initrd_addr_max);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000672 if (status != EFI_SUCCESS) {
673 efi_printk("Failed to alloc highmem for initrds\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000674 goto close_handles;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000675 }
Matt Fleming291f3632011-12-12 21:27:52 +0000676
677 /* We've run out of free low memory. */
678 if (initrd_addr > hdr->initrd_addr_max) {
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000679 efi_printk("We've run out of free low memory\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000680 status = EFI_INVALID_PARAMETER;
681 goto free_initrd_total;
682 }
683
684 addr = initrd_addr;
685 for (j = 0; j < nr_initrds; j++) {
686 u64 size;
687
688 size = initrds[j].size;
Maarten Lankhorst2d2da60f2011-12-16 13:30:58 +0100689 while (size) {
690 u64 chunksize;
691 if (size > EFI_READ_CHUNK_SIZE)
692 chunksize = EFI_READ_CHUNK_SIZE;
693 else
694 chunksize = size;
695 status = efi_call_phys3(fh->read,
696 initrds[j].handle,
697 &chunksize, addr);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000698 if (status != EFI_SUCCESS) {
699 efi_printk("Failed to read initrd\n");
Maarten Lankhorst2d2da60f2011-12-16 13:30:58 +0100700 goto free_initrd_total;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000701 }
Maarten Lankhorst2d2da60f2011-12-16 13:30:58 +0100702 addr += chunksize;
703 size -= chunksize;
704 }
Matt Fleming291f3632011-12-12 21:27:52 +0000705
706 efi_call_phys1(fh->close, initrds[j].handle);
Matt Fleming291f3632011-12-12 21:27:52 +0000707 }
708
709 }
710
711 efi_call_phys1(sys_table->boottime->free_pool, initrds);
712
713 hdr->ramdisk_image = initrd_addr;
714 hdr->ramdisk_size = initrd_total;
715
716 return status;
717
718free_initrd_total:
719 low_free(initrd_total, initrd_addr);
720
721close_handles:
Matt Fleming30dc0d02012-03-15 19:13:25 +0000722 for (k = j; k < i; k++)
Matt Fleming291f3632011-12-12 21:27:52 +0000723 efi_call_phys1(fh->close, initrds[k].handle);
724free_initrds:
725 efi_call_phys1(sys_table->boottime->free_pool, initrds);
726fail:
727 hdr->ramdisk_image = 0;
728 hdr->ramdisk_size = 0;
729
730 return status;
731}
732
733/*
734 * Because the x86 boot code expects to be passed a boot_params we
735 * need to create one ourselves (usually the bootloader would create
736 * one for us).
737 */
Matt Fleming9ca8f722012-07-19 10:23:48 +0100738struct boot_params *make_boot_params(void *handle, efi_system_table_t *_table)
Matt Fleming291f3632011-12-12 21:27:52 +0000739{
Matt Fleming9ca8f722012-07-19 10:23:48 +0100740 struct boot_params *boot_params;
741 struct sys_desc_table *sdt;
742 struct apm_bios_info *bi;
743 struct setup_header *hdr;
744 struct efi_info *efi;
745 efi_loaded_image_t *image;
746 void *options;
747 u32 load_options_size;
748 efi_guid_t proto = LOADED_IMAGE_PROTOCOL_GUID;
Matt Fleming291f3632011-12-12 21:27:52 +0000749 int options_size = 0;
750 efi_status_t status;
Matt Fleming291f3632011-12-12 21:27:52 +0000751 unsigned long cmdline;
Matt Fleming291f3632011-12-12 21:27:52 +0000752 u16 *s2;
753 u8 *s1;
754 int i;
755
Matt Fleming9ca8f722012-07-19 10:23:48 +0100756 sys_table = _table;
757
758 /* Check if we were booted by the EFI firmware */
759 if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
760 return NULL;
761
762 status = efi_call_phys3(sys_table->boottime->handle_protocol,
763 handle, &proto, (void *)&image);
764 if (status != EFI_SUCCESS) {
765 efi_printk("Failed to get handle for LOADED_IMAGE_PROTOCOL\n");
766 return NULL;
767 }
768
769 status = low_alloc(0x4000, 1, (unsigned long *)&boot_params);
770 if (status != EFI_SUCCESS) {
771 efi_printk("Failed to alloc lowmem for boot params\n");
772 return NULL;
773 }
774
775 memset(boot_params, 0x0, 0x4000);
776
777 hdr = &boot_params->hdr;
778 efi = &boot_params->efi_info;
779 bi = &boot_params->apm_bios_info;
780 sdt = &boot_params->sys_desc_table;
781
782 /* Copy the second sector to boot_params */
783 memcpy(&hdr->jump, image->image_base + 512, 512);
784
785 /*
786 * Fill out some of the header fields ourselves because the
787 * EFI firmware loader doesn't load the first sector.
788 */
789 hdr->root_flags = 1;
790 hdr->vid_mode = 0xffff;
791 hdr->boot_flag = 0xAA55;
792
793 hdr->code32_start = (__u64)(unsigned long)image->image_base;
794
Matt Fleming291f3632011-12-12 21:27:52 +0000795 hdr->type_of_loader = 0x21;
796
797 /* Convert unicode cmdline to ascii */
Matt Fleming9ca8f722012-07-19 10:23:48 +0100798 options = image->load_options;
799 load_options_size = image->load_options_size / 2; /* ASCII */
Matt Fleming291f3632011-12-12 21:27:52 +0000800 cmdline = 0;
801 s2 = (u16 *)options;
802
803 if (s2) {
804 while (*s2 && *s2 != '\n' && options_size < load_options_size) {
805 s2++;
806 options_size++;
807 }
808
809 if (options_size) {
810 if (options_size > hdr->cmdline_size)
811 options_size = hdr->cmdline_size;
812
813 options_size++; /* NUL termination */
814
815 status = low_alloc(options_size, 1, &cmdline);
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000816 if (status != EFI_SUCCESS) {
817 efi_printk("Failed to alloc mem for cmdline\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000818 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000819 }
Matt Fleming291f3632011-12-12 21:27:52 +0000820
821 s1 = (u8 *)(unsigned long)cmdline;
822 s2 = (u16 *)options;
823
824 for (i = 0; i < options_size - 1; i++)
825 *s1++ = *s2++;
826
827 *s1 = '\0';
828 }
829 }
830
831 hdr->cmd_line_ptr = cmdline;
832
833 hdr->ramdisk_image = 0;
834 hdr->ramdisk_size = 0;
835
Matt Fleming291f3632011-12-12 21:27:52 +0000836 /* Clear APM BIOS info */
837 memset(bi, 0, sizeof(*bi));
838
839 memset(sdt, 0, sizeof(*sdt));
840
Matt Fleming9ca8f722012-07-19 10:23:48 +0100841 status = handle_ramdisks(image, hdr);
842 if (status != EFI_SUCCESS)
843 goto fail2;
844
845 return boot_params;
846fail2:
847 if (options_size)
848 low_free(options_size, hdr->cmd_line_ptr);
849fail:
850 low_free(0x4000, (unsigned long)boot_params);
851 return NULL;
852}
853
854static efi_status_t exit_boot(struct boot_params *boot_params,
855 void *handle)
856{
857 struct efi_info *efi = &boot_params->efi_info;
858 struct e820entry *e820_map = &boot_params->e820_map[0];
859 struct e820entry *prev = NULL;
860 unsigned long size, key, desc_size, _size;
861 efi_memory_desc_t *mem_map;
862 efi_status_t status;
863 __u32 desc_version;
864 u8 nr_entries;
865 int i;
Matt Fleming291f3632011-12-12 21:27:52 +0000866
867 size = sizeof(*mem_map) * 32;
868
869again:
870 size += sizeof(*mem_map);
871 _size = size;
872 status = low_alloc(size, 1, (unsigned long *)&mem_map);
873 if (status != EFI_SUCCESS)
Matt Fleming9ca8f722012-07-19 10:23:48 +0100874 return status;
Matt Fleming291f3632011-12-12 21:27:52 +0000875
876 status = efi_call_phys5(sys_table->boottime->get_memory_map, &size,
877 mem_map, &key, &desc_size, &desc_version);
878 if (status == EFI_BUFFER_TOO_SMALL) {
879 low_free(_size, (unsigned long)mem_map);
880 goto again;
881 }
882
883 if (status != EFI_SUCCESS)
884 goto free_mem_map;
885
Matt Fleming9ca8f722012-07-19 10:23:48 +0100886 memcpy(&efi->efi_loader_signature, EFI_LOADER_SIGNATURE, sizeof(__u32));
Matt Fleming291f3632011-12-12 21:27:52 +0000887 efi->efi_systab = (unsigned long)sys_table;
888 efi->efi_memdesc_size = desc_size;
889 efi->efi_memdesc_version = desc_version;
890 efi->efi_memmap = (unsigned long)mem_map;
891 efi->efi_memmap_size = size;
892
893#ifdef CONFIG_X86_64
894 efi->efi_systab_hi = (unsigned long)sys_table >> 32;
895 efi->efi_memmap_hi = (unsigned long)mem_map >> 32;
896#endif
897
898 /* Might as well exit boot services now */
899 status = efi_call_phys2(sys_table->boottime->exit_boot_services,
900 handle, key);
901 if (status != EFI_SUCCESS)
902 goto free_mem_map;
903
904 /* Historic? */
905 boot_params->alt_mem_k = 32 * 1024;
906
907 /*
908 * Convert the EFI memory map to E820.
909 */
910 nr_entries = 0;
911 for (i = 0; i < size / desc_size; i++) {
912 efi_memory_desc_t *d;
913 unsigned int e820_type = 0;
914 unsigned long m = (unsigned long)mem_map;
915
916 d = (efi_memory_desc_t *)(m + (i * desc_size));
917 switch (d->type) {
918 case EFI_RESERVED_TYPE:
919 case EFI_RUNTIME_SERVICES_CODE:
920 case EFI_RUNTIME_SERVICES_DATA:
921 case EFI_MEMORY_MAPPED_IO:
922 case EFI_MEMORY_MAPPED_IO_PORT_SPACE:
923 case EFI_PAL_CODE:
924 e820_type = E820_RESERVED;
925 break;
926
927 case EFI_UNUSABLE_MEMORY:
928 e820_type = E820_UNUSABLE;
929 break;
930
931 case EFI_ACPI_RECLAIM_MEMORY:
932 e820_type = E820_ACPI;
933 break;
934
935 case EFI_LOADER_CODE:
936 case EFI_LOADER_DATA:
937 case EFI_BOOT_SERVICES_CODE:
938 case EFI_BOOT_SERVICES_DATA:
939 case EFI_CONVENTIONAL_MEMORY:
940 e820_type = E820_RAM;
941 break;
942
943 case EFI_ACPI_MEMORY_NVS:
944 e820_type = E820_NVS;
945 break;
946
947 default:
948 continue;
949 }
950
951 /* Merge adjacent mappings */
952 if (prev && prev->type == e820_type &&
953 (prev->addr + prev->size) == d->phys_addr)
954 prev->size += d->num_pages << 12;
955 else {
956 e820_map->addr = d->phys_addr;
957 e820_map->size = d->num_pages << 12;
958 e820_map->type = e820_type;
959 prev = e820_map++;
960 nr_entries++;
961 }
962 }
963
964 boot_params->e820_entries = nr_entries;
965
966 return EFI_SUCCESS;
967
968free_mem_map:
969 low_free(_size, (unsigned long)mem_map);
Matt Fleming291f3632011-12-12 21:27:52 +0000970 return status;
971}
972
Matt Fleming9ca8f722012-07-19 10:23:48 +0100973static efi_status_t relocate_kernel(struct setup_header *hdr)
Matt Fleming291f3632011-12-12 21:27:52 +0000974{
Matt Fleming291f3632011-12-12 21:27:52 +0000975 unsigned long start, nr_pages;
Matt Fleming291f3632011-12-12 21:27:52 +0000976 efi_status_t status;
Matt Fleminge31be362012-03-23 09:35:05 -0700977
Matt Fleming291f3632011-12-12 21:27:52 +0000978 /*
979 * The EFI firmware loader could have placed the kernel image
980 * anywhere in memory, but the kernel has various restrictions
981 * on the max physical address it can run at. Attempt to move
982 * the kernel to boot_params.pref_address, or as low as
983 * possible.
984 */
985 start = hdr->pref_address;
986 nr_pages = round_up(hdr->init_size, EFI_PAGE_SIZE) / EFI_PAGE_SIZE;
987
988 status = efi_call_phys4(sys_table->boottime->allocate_pages,
989 EFI_ALLOCATE_ADDRESS, EFI_LOADER_DATA,
990 nr_pages, &start);
991 if (status != EFI_SUCCESS) {
992 status = low_alloc(hdr->init_size, hdr->kernel_alignment,
993 &start);
Matt Fleming9ca8f722012-07-19 10:23:48 +0100994 if (status != EFI_SUCCESS)
Matt Fleming9fa7ded2012-02-20 13:20:59 +0000995 efi_printk("Failed to alloc mem for kernel\n");
Matt Fleming291f3632011-12-12 21:27:52 +0000996 }
997
Matt Fleming9ca8f722012-07-19 10:23:48 +0100998 if (status == EFI_SUCCESS)
999 memcpy((void *)start, (void *)(unsigned long)hdr->code32_start,
1000 hdr->init_size);
Matt Fleming291f3632011-12-12 21:27:52 +00001001
Matt Fleming9ca8f722012-07-19 10:23:48 +01001002 hdr->pref_address = hdr->code32_start;
1003 hdr->code32_start = (__u32)start;
1004
1005 return status;
1006}
1007
1008/*
1009 * On success we return a pointer to a boot_params structure, and NULL
1010 * on failure.
1011 */
1012struct boot_params *efi_main(void *handle, efi_system_table_t *_table,
1013 struct boot_params *boot_params)
1014{
1015 struct desc_ptr *gdt, *idt;
1016 efi_loaded_image_t *image;
1017 struct setup_header *hdr = &boot_params->hdr;
1018 efi_status_t status;
1019 struct desc_struct *desc;
1020
1021 sys_table = _table;
1022
1023 /* Check if we were booted by the EFI firmware */
1024 if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
1025 goto fail;
1026
1027 setup_graphics(boot_params);
Matt Fleming291f3632011-12-12 21:27:52 +00001028
1029 status = efi_call_phys3(sys_table->boottime->allocate_pool,
1030 EFI_LOADER_DATA, sizeof(*gdt),
1031 (void **)&gdt);
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001032 if (status != EFI_SUCCESS) {
1033 efi_printk("Failed to alloc mem for gdt structure\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001034 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001035 }
Matt Fleming291f3632011-12-12 21:27:52 +00001036
1037 gdt->size = 0x800;
1038 status = low_alloc(gdt->size, 8, (unsigned long *)&gdt->address);
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001039 if (status != EFI_SUCCESS) {
1040 efi_printk("Failed to alloc mem for gdt\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001041 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001042 }
Matt Fleming291f3632011-12-12 21:27:52 +00001043
1044 status = efi_call_phys3(sys_table->boottime->allocate_pool,
1045 EFI_LOADER_DATA, sizeof(*idt),
1046 (void **)&idt);
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001047 if (status != EFI_SUCCESS) {
1048 efi_printk("Failed to alloc mem for idt structure\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001049 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001050 }
Matt Fleming291f3632011-12-12 21:27:52 +00001051
1052 idt->size = 0;
1053 idt->address = 0;
1054
Matt Fleming9ca8f722012-07-19 10:23:48 +01001055 /*
1056 * If the kernel isn't already loaded at the preferred load
1057 * address, relocate it.
1058 */
1059 if (hdr->pref_address != hdr->code32_start) {
1060 status = relocate_kernel(hdr);
1061
1062 if (status != EFI_SUCCESS)
1063 goto fail;
1064 }
1065
1066 status = exit_boot(boot_params, handle);
Matt Fleming291f3632011-12-12 21:27:52 +00001067 if (status != EFI_SUCCESS)
1068 goto fail;
1069
1070 memset((char *)gdt->address, 0x0, gdt->size);
1071 desc = (struct desc_struct *)gdt->address;
1072
1073 /* The first GDT is a dummy and the second is unused. */
1074 desc += 2;
1075
1076 desc->limit0 = 0xffff;
1077 desc->base0 = 0x0000;
1078 desc->base1 = 0x0000;
1079 desc->type = SEG_TYPE_CODE | SEG_TYPE_EXEC_READ;
1080 desc->s = DESC_TYPE_CODE_DATA;
1081 desc->dpl = 0;
1082 desc->p = 1;
1083 desc->limit = 0xf;
1084 desc->avl = 0;
1085 desc->l = 0;
1086 desc->d = SEG_OP_SIZE_32BIT;
1087 desc->g = SEG_GRANULARITY_4KB;
1088 desc->base2 = 0x00;
1089
1090 desc++;
1091 desc->limit0 = 0xffff;
1092 desc->base0 = 0x0000;
1093 desc->base1 = 0x0000;
1094 desc->type = SEG_TYPE_DATA | SEG_TYPE_READ_WRITE;
1095 desc->s = DESC_TYPE_CODE_DATA;
1096 desc->dpl = 0;
1097 desc->p = 1;
1098 desc->limit = 0xf;
1099 desc->avl = 0;
1100 desc->l = 0;
1101 desc->d = SEG_OP_SIZE_32BIT;
1102 desc->g = SEG_GRANULARITY_4KB;
1103 desc->base2 = 0x00;
1104
1105#ifdef CONFIG_X86_64
1106 /* Task segment value */
1107 desc++;
1108 desc->limit0 = 0x0000;
1109 desc->base0 = 0x0000;
1110 desc->base1 = 0x0000;
1111 desc->type = SEG_TYPE_TSS;
1112 desc->s = 0;
1113 desc->dpl = 0;
1114 desc->p = 1;
1115 desc->limit = 0x0;
1116 desc->avl = 0;
1117 desc->l = 0;
1118 desc->d = 0;
1119 desc->g = SEG_GRANULARITY_4KB;
1120 desc->base2 = 0x00;
1121#endif /* CONFIG_X86_64 */
1122
1123 asm volatile ("lidt %0" : : "m" (*idt));
1124 asm volatile ("lgdt %0" : : "m" (*gdt));
1125
1126 asm volatile("cli");
1127
1128 return boot_params;
1129fail:
1130 return NULL;
1131}