blob: ff574dad95ccaf2739d0edfe85c94acea1e15134 [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>
Matthew Garrettdd5fc852012-12-05 14:33:26 -070011#include <linux/pci.h>
Matt Fleming291f3632011-12-12 21:27:52 +000012#include <asm/efi.h>
13#include <asm/setup.h>
14#include <asm/desc.h>
15
Andrey Ryabinin393f2032015-02-13 14:39:56 -080016#include "../string.h"
Matt Fleming291f3632011-12-12 21:27:52 +000017#include "eboot.h"
18
19static efi_system_table_t *sys_table;
20
Matt Fleming84be8802014-09-23 10:37:43 +010021static struct efi_config *efi_early;
22
Ard Biesheuvel243b6752014-11-05 17:00:56 +010023__pure const struct efi_config *__efi_early(void)
24{
25 return efi_early;
26}
Matt Fleming204b0a12014-03-22 10:09:01 +000027
Matt Fleming54b52d82014-01-10 15:27:14 +000028#define BOOT_SERVICES(bits) \
29static void setup_boot_services##bits(struct efi_config *c) \
30{ \
31 efi_system_table_##bits##_t *table; \
32 efi_boot_services_##bits##_t *bt; \
33 \
34 table = (typeof(table))sys_table; \
35 \
36 c->text_output = table->con_out; \
37 \
38 bt = (typeof(bt))(unsigned long)(table->boottime); \
39 \
40 c->allocate_pool = bt->allocate_pool; \
41 c->allocate_pages = bt->allocate_pages; \
42 c->get_memory_map = bt->get_memory_map; \
43 c->free_pool = bt->free_pool; \
44 c->free_pages = bt->free_pages; \
45 c->locate_handle = bt->locate_handle; \
46 c->handle_protocol = bt->handle_protocol; \
47 c->exit_boot_services = bt->exit_boot_services; \
48}
49BOOT_SERVICES(32);
50BOOT_SERVICES(64);
51
Ard Biesheuvelbd669472014-07-02 14:54:42 +020052void efi_char16_printk(efi_system_table_t *, efi_char16_t *);
Matt Fleming54b52d82014-01-10 15:27:14 +000053
54static efi_status_t
Matt Flemingc116e8d2014-01-16 11:35:43 +000055__file_size32(void *__fh, efi_char16_t *filename_16,
56 void **handle, u64 *file_sz)
Matt Fleming54b52d82014-01-10 15:27:14 +000057{
Matt Flemingc116e8d2014-01-16 11:35:43 +000058 efi_file_handle_32_t *h, *fh = __fh;
Matt Fleming54b52d82014-01-10 15:27:14 +000059 efi_file_info_t *info;
60 efi_status_t status;
61 efi_guid_t info_guid = EFI_FILE_INFO_ID;
62 u32 info_sz;
63
64 status = efi_early->call((unsigned long)fh->open, fh, &h, filename_16,
65 EFI_FILE_MODE_READ, (u64)0);
66 if (status != EFI_SUCCESS) {
67 efi_printk(sys_table, "Failed to open file: ");
68 efi_char16_printk(sys_table, filename_16);
69 efi_printk(sys_table, "\n");
70 return status;
71 }
72
73 *handle = h;
74
75 info_sz = 0;
76 status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
77 &info_sz, NULL);
78 if (status != EFI_BUFFER_TOO_SMALL) {
79 efi_printk(sys_table, "Failed to get file info size\n");
80 return status;
81 }
82
83grow:
Matt Fleming204b0a12014-03-22 10:09:01 +000084 status = efi_call_early(allocate_pool, EFI_LOADER_DATA,
85 info_sz, (void **)&info);
Matt Fleming54b52d82014-01-10 15:27:14 +000086 if (status != EFI_SUCCESS) {
87 efi_printk(sys_table, "Failed to alloc mem for file info\n");
88 return status;
89 }
90
91 status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
92 &info_sz, info);
93 if (status == EFI_BUFFER_TOO_SMALL) {
Matt Fleming204b0a12014-03-22 10:09:01 +000094 efi_call_early(free_pool, info);
Matt Fleming54b52d82014-01-10 15:27:14 +000095 goto grow;
96 }
97
98 *file_sz = info->file_size;
Matt Fleming204b0a12014-03-22 10:09:01 +000099 efi_call_early(free_pool, info);
Matt Fleming54b52d82014-01-10 15:27:14 +0000100
101 if (status != EFI_SUCCESS)
102 efi_printk(sys_table, "Failed to get initrd info\n");
103
104 return status;
105}
106
Matt Flemingc116e8d2014-01-16 11:35:43 +0000107static efi_status_t
108__file_size64(void *__fh, efi_char16_t *filename_16,
109 void **handle, u64 *file_sz)
110{
111 efi_file_handle_64_t *h, *fh = __fh;
112 efi_file_info_t *info;
113 efi_status_t status;
114 efi_guid_t info_guid = EFI_FILE_INFO_ID;
Matt Fleming396f1a02014-04-10 13:30:13 +0100115 u64 info_sz;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000116
117 status = efi_early->call((unsigned long)fh->open, fh, &h, filename_16,
118 EFI_FILE_MODE_READ, (u64)0);
119 if (status != EFI_SUCCESS) {
120 efi_printk(sys_table, "Failed to open file: ");
121 efi_char16_printk(sys_table, filename_16);
122 efi_printk(sys_table, "\n");
123 return status;
124 }
125
126 *handle = h;
127
128 info_sz = 0;
129 status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
130 &info_sz, NULL);
131 if (status != EFI_BUFFER_TOO_SMALL) {
132 efi_printk(sys_table, "Failed to get file info size\n");
133 return status;
134 }
135
136grow:
Matt Fleming204b0a12014-03-22 10:09:01 +0000137 status = efi_call_early(allocate_pool, EFI_LOADER_DATA,
138 info_sz, (void **)&info);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000139 if (status != EFI_SUCCESS) {
140 efi_printk(sys_table, "Failed to alloc mem for file info\n");
141 return status;
142 }
143
144 status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
145 &info_sz, info);
146 if (status == EFI_BUFFER_TOO_SMALL) {
Matt Fleming204b0a12014-03-22 10:09:01 +0000147 efi_call_early(free_pool, info);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000148 goto grow;
149 }
150
151 *file_sz = info->file_size;
Matt Fleming204b0a12014-03-22 10:09:01 +0000152 efi_call_early(free_pool, info);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000153
154 if (status != EFI_SUCCESS)
155 efi_printk(sys_table, "Failed to get initrd info\n");
156
157 return status;
158}
Ard Biesheuvelbd669472014-07-02 14:54:42 +0200159efi_status_t
Matt Flemingc116e8d2014-01-16 11:35:43 +0000160efi_file_size(efi_system_table_t *sys_table, void *__fh,
161 efi_char16_t *filename_16, void **handle, u64 *file_sz)
162{
163 if (efi_early->is64)
164 return __file_size64(__fh, filename_16, handle, file_sz);
165
166 return __file_size32(__fh, filename_16, handle, file_sz);
167}
168
Ard Biesheuvelbd669472014-07-02 14:54:42 +0200169efi_status_t
Matt Fleming47514c92014-04-10 14:11:45 +0100170efi_file_read(void *handle, unsigned long *size, void *addr)
Matt Fleming54b52d82014-01-10 15:27:14 +0000171{
Matt Flemingc116e8d2014-01-16 11:35:43 +0000172 unsigned long func;
173
174 if (efi_early->is64) {
Matt Fleming47514c92014-04-10 14:11:45 +0100175 efi_file_handle_64_t *fh = handle;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000176
177 func = (unsigned long)fh->read;
178 return efi_early->call(func, handle, size, addr);
179 } else {
Matt Fleming47514c92014-04-10 14:11:45 +0100180 efi_file_handle_32_t *fh = handle;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000181
182 func = (unsigned long)fh->read;
183 return efi_early->call(func, handle, size, addr);
184 }
Matt Fleming54b52d82014-01-10 15:27:14 +0000185}
186
Ard Biesheuvelbd669472014-07-02 14:54:42 +0200187efi_status_t efi_file_close(void *handle)
Matt Fleming54b52d82014-01-10 15:27:14 +0000188{
Matt Flemingc116e8d2014-01-16 11:35:43 +0000189 if (efi_early->is64) {
Matt Fleming47514c92014-04-10 14:11:45 +0100190 efi_file_handle_64_t *fh = handle;
Matt Fleming54b52d82014-01-10 15:27:14 +0000191
Matt Flemingc116e8d2014-01-16 11:35:43 +0000192 return efi_early->call((unsigned long)fh->close, handle);
193 } else {
Matt Fleming47514c92014-04-10 14:11:45 +0100194 efi_file_handle_32_t *fh = handle;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000195
196 return efi_early->call((unsigned long)fh->close, handle);
197 }
Matt Fleming54b52d82014-01-10 15:27:14 +0000198}
199
Matt Flemingc116e8d2014-01-16 11:35:43 +0000200static inline efi_status_t __open_volume32(void *__image, void **__fh)
Matt Fleming54b52d82014-01-10 15:27:14 +0000201{
202 efi_file_io_interface_t *io;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000203 efi_loaded_image_32_t *image = __image;
204 efi_file_handle_32_t *fh;
Matt Fleming54b52d82014-01-10 15:27:14 +0000205 efi_guid_t fs_proto = EFI_FILE_SYSTEM_GUID;
206 efi_status_t status;
207 void *handle = (void *)(unsigned long)image->device_handle;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000208 unsigned long func;
Matt Fleming54b52d82014-01-10 15:27:14 +0000209
Matt Fleming204b0a12014-03-22 10:09:01 +0000210 status = efi_call_early(handle_protocol, handle,
211 &fs_proto, (void **)&io);
Matt Fleming54b52d82014-01-10 15:27:14 +0000212 if (status != EFI_SUCCESS) {
213 efi_printk(sys_table, "Failed to handle fs_proto\n");
214 return status;
215 }
216
217 func = (unsigned long)io->open_volume;
218 status = efi_early->call(func, io, &fh);
219 if (status != EFI_SUCCESS)
220 efi_printk(sys_table, "Failed to open volume\n");
221
222 *__fh = fh;
223 return status;
224}
225
Matt Flemingc116e8d2014-01-16 11:35:43 +0000226static inline efi_status_t __open_volume64(void *__image, void **__fh)
Matt Fleming54b52d82014-01-10 15:27:14 +0000227{
Matt Flemingc116e8d2014-01-16 11:35:43 +0000228 efi_file_io_interface_t *io;
229 efi_loaded_image_64_t *image = __image;
230 efi_file_handle_64_t *fh;
231 efi_guid_t fs_proto = EFI_FILE_SYSTEM_GUID;
232 efi_status_t status;
233 void *handle = (void *)(unsigned long)image->device_handle;
234 unsigned long func;
235
Matt Fleming204b0a12014-03-22 10:09:01 +0000236 status = efi_call_early(handle_protocol, handle,
237 &fs_proto, (void **)&io);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000238 if (status != EFI_SUCCESS) {
239 efi_printk(sys_table, "Failed to handle fs_proto\n");
240 return status;
241 }
242
243 func = (unsigned long)io->open_volume;
244 status = efi_early->call(func, io, &fh);
245 if (status != EFI_SUCCESS)
246 efi_printk(sys_table, "Failed to open volume\n");
247
248 *__fh = fh;
249 return status;
250}
251
Ard Biesheuvelbd669472014-07-02 14:54:42 +0200252efi_status_t
Matt Flemingc116e8d2014-01-16 11:35:43 +0000253efi_open_volume(efi_system_table_t *sys_table, void *__image, void **__fh)
254{
255 if (efi_early->is64)
256 return __open_volume64(__image, __fh);
257
258 return __open_volume32(__image, __fh);
259}
260
Ard Biesheuvelbd669472014-07-02 14:54:42 +0200261void efi_char16_printk(efi_system_table_t *table, efi_char16_t *str)
Matt Flemingc116e8d2014-01-16 11:35:43 +0000262{
Matt Fleming54b52d82014-01-10 15:27:14 +0000263 unsigned long output_string;
264 size_t offset;
Matt Fleming54b52d82014-01-10 15:27:14 +0000265
Matt Flemingc116e8d2014-01-16 11:35:43 +0000266 if (efi_early->is64) {
267 struct efi_simple_text_output_protocol_64 *out;
268 u64 *func;
Matt Fleming54b52d82014-01-10 15:27:14 +0000269
Matt Flemingc116e8d2014-01-16 11:35:43 +0000270 offset = offsetof(typeof(*out), output_string);
271 output_string = efi_early->text_output + offset;
Matt Fleming115c6622014-09-24 11:56:10 +0100272 out = (typeof(out))(unsigned long)efi_early->text_output;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000273 func = (u64 *)output_string;
274
Matt Fleming115c6622014-09-24 11:56:10 +0100275 efi_early->call(*func, out, str);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000276 } else {
277 struct efi_simple_text_output_protocol_32 *out;
278 u32 *func;
279
280 offset = offsetof(typeof(*out), output_string);
281 output_string = efi_early->text_output + offset;
Matt Fleming115c6622014-09-24 11:56:10 +0100282 out = (typeof(out))(unsigned long)efi_early->text_output;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000283 func = (u32 *)output_string;
284
Matt Fleming115c6622014-09-24 11:56:10 +0100285 efi_early->call(*func, out, str);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000286 }
Matt Fleming54b52d82014-01-10 15:27:14 +0000287}
Lee, Chun-Yideb94102012-12-20 19:33:22 +0800288
Matt Fleming291f3632011-12-12 21:27:52 +0000289static void find_bits(unsigned long mask, u8 *pos, u8 *size)
290{
291 u8 first, len;
292
293 first = 0;
294 len = 0;
295
296 if (mask) {
297 while (!(mask & 0x1)) {
298 mask = mask >> 1;
299 first++;
300 }
301
302 while (mask & 0x1) {
303 mask = mask >> 1;
304 len++;
305 }
306 }
307
308 *pos = first;
309 *size = len;
310}
311
Matt Flemingc116e8d2014-01-16 11:35:43 +0000312static efi_status_t
313__setup_efi_pci32(efi_pci_io_protocol_32 *pci, struct pci_setup_rom **__rom)
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700314{
Matt Flemingc116e8d2014-01-16 11:35:43 +0000315 struct pci_setup_rom *rom = NULL;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700316 efi_status_t status;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000317 unsigned long size;
318 uint64_t attributes;
319
320 status = efi_early->call(pci->attributes, pci,
321 EfiPciIoAttributeOperationGet, 0, 0,
322 &attributes);
323 if (status != EFI_SUCCESS)
324 return status;
325
326 if (!pci->romimage || !pci->romsize)
327 return EFI_INVALID_PARAMETER;
328
329 size = pci->romsize + sizeof(*rom);
330
Matt Fleming204b0a12014-03-22 10:09:01 +0000331 status = efi_call_early(allocate_pool, EFI_LOADER_DATA, size, &rom);
Andre Müller77e21e82014-09-10 01:00:22 +0200332 if (status != EFI_SUCCESS) {
333 efi_printk(sys_table, "Failed to alloc mem for rom\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000334 return status;
Andre Müller77e21e82014-09-10 01:00:22 +0200335 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000336
337 memset(rom, 0, sizeof(*rom));
338
339 rom->data.type = SETUP_PCI;
340 rom->data.len = size - sizeof(struct setup_data);
341 rom->data.next = 0;
342 rom->pcilen = pci->romsize;
343 *__rom = rom;
344
345 status = efi_early->call(pci->pci.read, pci, EfiPciIoWidthUint16,
346 PCI_VENDOR_ID, 1, &(rom->vendor));
347
Andre Müller77e21e82014-09-10 01:00:22 +0200348 if (status != EFI_SUCCESS) {
349 efi_printk(sys_table, "Failed to read rom->vendor\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000350 goto free_struct;
Andre Müller77e21e82014-09-10 01:00:22 +0200351 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000352
353 status = efi_early->call(pci->pci.read, pci, EfiPciIoWidthUint16,
354 PCI_DEVICE_ID, 1, &(rom->devid));
355
Andre Müller77e21e82014-09-10 01:00:22 +0200356 if (status != EFI_SUCCESS) {
357 efi_printk(sys_table, "Failed to read rom->devid\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000358 goto free_struct;
Andre Müller77e21e82014-09-10 01:00:22 +0200359 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000360
361 status = efi_early->call(pci->get_location, pci, &(rom->segment),
362 &(rom->bus), &(rom->device), &(rom->function));
363
364 if (status != EFI_SUCCESS)
365 goto free_struct;
366
367 memcpy(rom->romdata, pci->romimage, pci->romsize);
368 return status;
369
370free_struct:
Matt Fleming204b0a12014-03-22 10:09:01 +0000371 efi_call_early(free_pool, rom);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000372 return status;
373}
374
Matt Fleming56394ab2014-09-11 09:04:25 +0100375static void
Matt Flemingc116e8d2014-01-16 11:35:43 +0000376setup_efi_pci32(struct boot_params *params, void **pci_handle,
377 unsigned long size)
378{
379 efi_pci_io_protocol_32 *pci = NULL;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700380 efi_guid_t pci_proto = EFI_PCI_IO_PROTOCOL_GUID;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000381 u32 *handles = (u32 *)(unsigned long)pci_handle;
382 efi_status_t status;
383 unsigned long nr_pci;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700384 struct setup_data *data;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000385 int i;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700386
Jan Beulichbc754792013-01-18 12:35:14 +0000387 data = (struct setup_data *)(unsigned long)params->hdr.setup_data;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700388
389 while (data && data->next)
Jan Beulichbc754792013-01-18 12:35:14 +0000390 data = (struct setup_data *)(unsigned long)data->next;
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700391
Matt Flemingc116e8d2014-01-16 11:35:43 +0000392 nr_pci = size / sizeof(u32);
393 for (i = 0; i < nr_pci; i++) {
394 struct pci_setup_rom *rom = NULL;
395 u32 h = handles[i];
396
Matt Fleming204b0a12014-03-22 10:09:01 +0000397 status = efi_call_early(handle_protocol, h,
398 &pci_proto, (void **)&pci);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000399
400 if (status != EFI_SUCCESS)
401 continue;
402
403 if (!pci)
404 continue;
405
406 status = __setup_efi_pci32(pci, &rom);
407 if (status != EFI_SUCCESS)
408 continue;
409
410 if (data)
411 data->next = (unsigned long)rom;
412 else
413 params->hdr.setup_data = (unsigned long)rom;
414
415 data = (struct setup_data *)rom;
416
417 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000418}
419
420static efi_status_t
421__setup_efi_pci64(efi_pci_io_protocol_64 *pci, struct pci_setup_rom **__rom)
422{
423 struct pci_setup_rom *rom;
424 efi_status_t status;
425 unsigned long size;
426 uint64_t attributes;
427
428 status = efi_early->call(pci->attributes, pci,
429 EfiPciIoAttributeOperationGet, 0,
430 &attributes);
431 if (status != EFI_SUCCESS)
432 return status;
433
434 if (!pci->romimage || !pci->romsize)
435 return EFI_INVALID_PARAMETER;
436
437 size = pci->romsize + sizeof(*rom);
438
Matt Fleming204b0a12014-03-22 10:09:01 +0000439 status = efi_call_early(allocate_pool, EFI_LOADER_DATA, size, &rom);
Andre Müller77e21e82014-09-10 01:00:22 +0200440 if (status != EFI_SUCCESS) {
441 efi_printk(sys_table, "Failed to alloc mem for rom\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000442 return status;
Andre Müller77e21e82014-09-10 01:00:22 +0200443 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000444
445 rom->data.type = SETUP_PCI;
446 rom->data.len = size - sizeof(struct setup_data);
447 rom->data.next = 0;
448 rom->pcilen = pci->romsize;
449 *__rom = rom;
450
451 status = efi_early->call(pci->pci.read, pci, EfiPciIoWidthUint16,
452 PCI_VENDOR_ID, 1, &(rom->vendor));
453
Andre Müller77e21e82014-09-10 01:00:22 +0200454 if (status != EFI_SUCCESS) {
455 efi_printk(sys_table, "Failed to read rom->vendor\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000456 goto free_struct;
Andre Müller77e21e82014-09-10 01:00:22 +0200457 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000458
459 status = efi_early->call(pci->pci.read, pci, EfiPciIoWidthUint16,
460 PCI_DEVICE_ID, 1, &(rom->devid));
461
Andre Müller77e21e82014-09-10 01:00:22 +0200462 if (status != EFI_SUCCESS) {
463 efi_printk(sys_table, "Failed to read rom->devid\n");
Matt Flemingc116e8d2014-01-16 11:35:43 +0000464 goto free_struct;
Andre Müller77e21e82014-09-10 01:00:22 +0200465 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000466
467 status = efi_early->call(pci->get_location, pci, &(rom->segment),
468 &(rom->bus), &(rom->device), &(rom->function));
469
470 if (status != EFI_SUCCESS)
471 goto free_struct;
472
473 memcpy(rom->romdata, pci->romimage, pci->romsize);
474 return status;
475
476free_struct:
Matt Fleming204b0a12014-03-22 10:09:01 +0000477 efi_call_early(free_pool, rom);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000478 return status;
479
480}
481
Matt Fleming56394ab2014-09-11 09:04:25 +0100482static void
Matt Flemingc116e8d2014-01-16 11:35:43 +0000483setup_efi_pci64(struct boot_params *params, void **pci_handle,
484 unsigned long size)
485{
486 efi_pci_io_protocol_64 *pci = NULL;
487 efi_guid_t pci_proto = EFI_PCI_IO_PROTOCOL_GUID;
488 u64 *handles = (u64 *)(unsigned long)pci_handle;
489 efi_status_t status;
490 unsigned long nr_pci;
491 struct setup_data *data;
492 int i;
493
494 data = (struct setup_data *)(unsigned long)params->hdr.setup_data;
495
496 while (data && data->next)
497 data = (struct setup_data *)(unsigned long)data->next;
498
499 nr_pci = size / sizeof(u64);
500 for (i = 0; i < nr_pci; i++) {
501 struct pci_setup_rom *rom = NULL;
502 u64 h = handles[i];
503
Matt Fleming204b0a12014-03-22 10:09:01 +0000504 status = efi_call_early(handle_protocol, h,
505 &pci_proto, (void **)&pci);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000506
507 if (status != EFI_SUCCESS)
508 continue;
509
510 if (!pci)
511 continue;
512
513 status = __setup_efi_pci64(pci, &rom);
514 if (status != EFI_SUCCESS)
515 continue;
516
517 if (data)
518 data->next = (unsigned long)rom;
519 else
520 params->hdr.setup_data = (unsigned long)rom;
521
522 data = (struct setup_data *)rom;
523
524 }
Matt Flemingc116e8d2014-01-16 11:35:43 +0000525}
526
Matt Fleming56394ab2014-09-11 09:04:25 +0100527/*
528 * There's no way to return an informative status from this function,
529 * because any analysis (and printing of error messages) needs to be
530 * done directly at the EFI function call-site.
531 *
532 * For example, EFI_INVALID_PARAMETER could indicate a bug or maybe we
533 * just didn't find any PCI devices, but there's no way to tell outside
534 * the context of the call.
535 */
536static void setup_efi_pci(struct boot_params *params)
Matt Flemingc116e8d2014-01-16 11:35:43 +0000537{
538 efi_status_t status;
539 void **pci_handle = NULL;
540 efi_guid_t pci_proto = EFI_PCI_IO_PROTOCOL_GUID;
541 unsigned long size = 0;
542
Matt Fleming204b0a12014-03-22 10:09:01 +0000543 status = efi_call_early(locate_handle,
544 EFI_LOCATE_BY_PROTOCOL,
545 &pci_proto, NULL, &size, pci_handle);
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700546
547 if (status == EFI_BUFFER_TOO_SMALL) {
Matt Fleming204b0a12014-03-22 10:09:01 +0000548 status = efi_call_early(allocate_pool,
549 EFI_LOADER_DATA,
550 size, (void **)&pci_handle);
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700551
Andre Müller77e21e82014-09-10 01:00:22 +0200552 if (status != EFI_SUCCESS) {
553 efi_printk(sys_table, "Failed to alloc mem for pci_handle\n");
Matt Fleming56394ab2014-09-11 09:04:25 +0100554 return;
Andre Müller77e21e82014-09-10 01:00:22 +0200555 }
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700556
Matt Fleming204b0a12014-03-22 10:09:01 +0000557 status = efi_call_early(locate_handle,
558 EFI_LOCATE_BY_PROTOCOL, &pci_proto,
559 NULL, &size, pci_handle);
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700560 }
561
562 if (status != EFI_SUCCESS)
563 goto free_handle;
564
Matt Flemingc116e8d2014-01-16 11:35:43 +0000565 if (efi_early->is64)
Matt Fleming56394ab2014-09-11 09:04:25 +0100566 setup_efi_pci64(params, pci_handle, size);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000567 else
Matt Fleming56394ab2014-09-11 09:04:25 +0100568 setup_efi_pci32(params, pci_handle, size);
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700569
570free_handle:
Matt Fleming204b0a12014-03-22 10:09:01 +0000571 efi_call_early(free_pool, pci_handle);
Matthew Garrettdd5fc852012-12-05 14:33:26 -0700572}
573
Matt Flemingc116e8d2014-01-16 11:35:43 +0000574static efi_status_t
575setup_uga32(void **uga_handle, unsigned long size, u32 *width, u32 *height)
Matt Fleming291f3632011-12-12 21:27:52 +0000576{
Matt Flemingc116e8d2014-01-16 11:35:43 +0000577 struct efi_uga_draw_protocol *uga = NULL, *first_uga;
578 efi_guid_t uga_proto = EFI_UGA_PROTOCOL_GUID;
Matt Fleming291f3632011-12-12 21:27:52 +0000579 unsigned long nr_ugas;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000580 u32 *handles = (u32 *)uga_handle;;
Matt Fleming291f3632011-12-12 21:27:52 +0000581 efi_status_t status;
Matt Fleming291f3632011-12-12 21:27:52 +0000582 int i;
583
Matt Fleming291f3632011-12-12 21:27:52 +0000584 first_uga = NULL;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000585 nr_ugas = size / sizeof(u32);
Matt Fleming291f3632011-12-12 21:27:52 +0000586 for (i = 0; i < nr_ugas; i++) {
587 efi_guid_t pciio_proto = EFI_PCI_IO_PROTOCOL_GUID;
Matt Fleming291f3632011-12-12 21:27:52 +0000588 u32 w, h, depth, refresh;
589 void *pciio;
Matt Flemingc116e8d2014-01-16 11:35:43 +0000590 u32 handle = handles[i];
Matt Fleming291f3632011-12-12 21:27:52 +0000591
Matt Fleming204b0a12014-03-22 10:09:01 +0000592 status = efi_call_early(handle_protocol, handle,
593 &uga_proto, (void **)&uga);
Matt Fleming291f3632011-12-12 21:27:52 +0000594 if (status != EFI_SUCCESS)
595 continue;
596
Matt Fleming204b0a12014-03-22 10:09:01 +0000597 efi_call_early(handle_protocol, handle, &pciio_proto, &pciio);
Matt Fleming291f3632011-12-12 21:27:52 +0000598
Matt Fleming54b52d82014-01-10 15:27:14 +0000599 status = efi_early->call((unsigned long)uga->get_mode, uga,
600 &w, &h, &depth, &refresh);
Matt Fleming291f3632011-12-12 21:27:52 +0000601 if (status == EFI_SUCCESS && (!first_uga || pciio)) {
Matt Flemingc116e8d2014-01-16 11:35:43 +0000602 *width = w;
603 *height = h;
Matt Fleming291f3632011-12-12 21:27:52 +0000604
605 /*
606 * Once we've found a UGA supporting PCIIO,
607 * don't bother looking any further.
608 */
609 if (pciio)
610 break;
611
612 first_uga = uga;
613 }
614 }
615
Matt Flemingc116e8d2014-01-16 11:35:43 +0000616 return status;
617}
618
619static efi_status_t
620setup_uga64(void **uga_handle, unsigned long size, u32 *width, u32 *height)
621{
622 struct efi_uga_draw_protocol *uga = NULL, *first_uga;
623 efi_guid_t uga_proto = EFI_UGA_PROTOCOL_GUID;
624 unsigned long nr_ugas;
625 u64 *handles = (u64 *)uga_handle;;
626 efi_status_t status;
627 int i;
628
629 first_uga = NULL;
630 nr_ugas = size / sizeof(u64);
631 for (i = 0; i < nr_ugas; i++) {
632 efi_guid_t pciio_proto = EFI_PCI_IO_PROTOCOL_GUID;
633 u32 w, h, depth, refresh;
634 void *pciio;
635 u64 handle = handles[i];
636
Matt Fleming204b0a12014-03-22 10:09:01 +0000637 status = efi_call_early(handle_protocol, handle,
638 &uga_proto, (void **)&uga);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000639 if (status != EFI_SUCCESS)
640 continue;
641
Matt Fleming204b0a12014-03-22 10:09:01 +0000642 efi_call_early(handle_protocol, handle, &pciio_proto, &pciio);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000643
644 status = efi_early->call((unsigned long)uga->get_mode, uga,
645 &w, &h, &depth, &refresh);
646 if (status == EFI_SUCCESS && (!first_uga || pciio)) {
647 *width = w;
648 *height = h;
649
650 /*
651 * Once we've found a UGA supporting PCIIO,
652 * don't bother looking any further.
653 */
654 if (pciio)
655 break;
656
657 first_uga = uga;
658 }
659 }
660
661 return status;
662}
663
664/*
665 * See if we have Universal Graphics Adapter (UGA) protocol
666 */
667static efi_status_t setup_uga(struct screen_info *si, efi_guid_t *uga_proto,
668 unsigned long size)
669{
670 efi_status_t status;
671 u32 width, height;
672 void **uga_handle = NULL;
673
Matt Fleming204b0a12014-03-22 10:09:01 +0000674 status = efi_call_early(allocate_pool, EFI_LOADER_DATA,
675 size, (void **)&uga_handle);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000676 if (status != EFI_SUCCESS)
677 return status;
678
Matt Fleming204b0a12014-03-22 10:09:01 +0000679 status = efi_call_early(locate_handle,
680 EFI_LOCATE_BY_PROTOCOL,
681 uga_proto, NULL, &size, uga_handle);
Matt Flemingc116e8d2014-01-16 11:35:43 +0000682 if (status != EFI_SUCCESS)
683 goto free_handle;
684
685 height = 0;
686 width = 0;
687
688 if (efi_early->is64)
689 status = setup_uga64(uga_handle, size, &width, &height);
690 else
691 status = setup_uga32(uga_handle, size, &width, &height);
692
693 if (!width && !height)
Matt Fleming291f3632011-12-12 21:27:52 +0000694 goto free_handle;
695
696 /* EFI framebuffer */
697 si->orig_video_isVGA = VIDEO_TYPE_EFI;
698
699 si->lfb_depth = 32;
700 si->lfb_width = width;
701 si->lfb_height = height;
702
703 si->red_size = 8;
704 si->red_pos = 16;
705 si->green_size = 8;
706 si->green_pos = 8;
707 si->blue_size = 8;
708 si->blue_pos = 0;
709 si->rsvd_size = 8;
710 si->rsvd_pos = 24;
711
Matt Fleming291f3632011-12-12 21:27:52 +0000712free_handle:
Matt Fleming204b0a12014-03-22 10:09:01 +0000713 efi_call_early(free_pool, uga_handle);
Matt Fleming291f3632011-12-12 21:27:52 +0000714 return status;
715}
716
717void setup_graphics(struct boot_params *boot_params)
718{
719 efi_guid_t graphics_proto = EFI_GRAPHICS_OUTPUT_PROTOCOL_GUID;
720 struct screen_info *si;
721 efi_guid_t uga_proto = EFI_UGA_PROTOCOL_GUID;
722 efi_status_t status;
723 unsigned long size;
724 void **gop_handle = NULL;
725 void **uga_handle = NULL;
726
727 si = &boot_params->screen_info;
728 memset(si, 0, sizeof(*si));
729
730 size = 0;
Matt Fleming204b0a12014-03-22 10:09:01 +0000731 status = efi_call_early(locate_handle,
732 EFI_LOCATE_BY_PROTOCOL,
733 &graphics_proto, NULL, &size, gop_handle);
Matt Fleming291f3632011-12-12 21:27:52 +0000734 if (status == EFI_BUFFER_TOO_SMALL)
Ard Biesheuvel2c23b732016-04-25 21:06:48 +0100735 status = efi_setup_gop(NULL, si, &graphics_proto, size);
Matt Fleming291f3632011-12-12 21:27:52 +0000736
737 if (status != EFI_SUCCESS) {
738 size = 0;
Matt Fleming204b0a12014-03-22 10:09:01 +0000739 status = efi_call_early(locate_handle,
740 EFI_LOCATE_BY_PROTOCOL,
741 &uga_proto, NULL, &size, uga_handle);
Matt Fleming291f3632011-12-12 21:27:52 +0000742 if (status == EFI_BUFFER_TOO_SMALL)
743 setup_uga(si, &uga_proto, size);
744 }
745}
746
Matt Fleming291f3632011-12-12 21:27:52 +0000747/*
748 * Because the x86 boot code expects to be passed a boot_params we
749 * need to create one ourselves (usually the bootloader would create
750 * one for us).
Matt Fleming7e8213c2014-04-08 13:14:00 +0100751 *
752 * The caller is responsible for filling out ->code32_start in the
753 * returned boot_params.
Matt Fleming291f3632011-12-12 21:27:52 +0000754 */
Matt Fleming54b52d82014-01-10 15:27:14 +0000755struct boot_params *make_boot_params(struct efi_config *c)
Matt Fleming291f3632011-12-12 21:27:52 +0000756{
Matt Fleming9ca8f722012-07-19 10:23:48 +0100757 struct boot_params *boot_params;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100758 struct apm_bios_info *bi;
759 struct setup_header *hdr;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100760 efi_loaded_image_t *image;
Matt Fleming54b52d82014-01-10 15:27:14 +0000761 void *options, *handle;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100762 efi_guid_t proto = LOADED_IMAGE_PROTOCOL_GUID;
Matt Fleming291f3632011-12-12 21:27:52 +0000763 int options_size = 0;
764 efi_status_t status;
Roy Franz5fef3872013-09-22 15:45:33 -0700765 char *cmdline_ptr;
Matt Fleming291f3632011-12-12 21:27:52 +0000766 u16 *s2;
767 u8 *s1;
768 int i;
Roy Franz46f45822013-09-22 15:45:39 -0700769 unsigned long ramdisk_addr;
770 unsigned long ramdisk_size;
Matt Fleming291f3632011-12-12 21:27:52 +0000771
Matt Fleming54b52d82014-01-10 15:27:14 +0000772 efi_early = c;
773 sys_table = (efi_system_table_t *)(unsigned long)efi_early->table;
774 handle = (void *)(unsigned long)efi_early->image_handle;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100775
776 /* Check if we were booted by the EFI firmware */
777 if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
778 return NULL;
779
Matt Fleming54b52d82014-01-10 15:27:14 +0000780 if (efi_early->is64)
781 setup_boot_services64(efi_early);
782 else
783 setup_boot_services32(efi_early);
784
Matt Fleming204b0a12014-03-22 10:09:01 +0000785 status = efi_call_early(handle_protocol, handle,
786 &proto, (void *)&image);
Matt Fleming9ca8f722012-07-19 10:23:48 +0100787 if (status != EFI_SUCCESS) {
Roy Franz876dc362013-09-22 15:45:28 -0700788 efi_printk(sys_table, "Failed to get handle for LOADED_IMAGE_PROTOCOL\n");
Matt Fleming9ca8f722012-07-19 10:23:48 +0100789 return NULL;
790 }
791
Roy Franz40e45302013-09-22 15:45:29 -0700792 status = efi_low_alloc(sys_table, 0x4000, 1,
793 (unsigned long *)&boot_params);
Matt Fleming9ca8f722012-07-19 10:23:48 +0100794 if (status != EFI_SUCCESS) {
Roy Franz876dc362013-09-22 15:45:28 -0700795 efi_printk(sys_table, "Failed to alloc lowmem for boot params\n");
Matt Fleming9ca8f722012-07-19 10:23:48 +0100796 return NULL;
797 }
798
799 memset(boot_params, 0x0, 0x4000);
800
801 hdr = &boot_params->hdr;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100802 bi = &boot_params->apm_bios_info;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100803
804 /* Copy the second sector to boot_params */
805 memcpy(&hdr->jump, image->image_base + 512, 512);
806
807 /*
808 * Fill out some of the header fields ourselves because the
809 * EFI firmware loader doesn't load the first sector.
810 */
811 hdr->root_flags = 1;
812 hdr->vid_mode = 0xffff;
813 hdr->boot_flag = 0xAA55;
814
Matt Fleming291f3632011-12-12 21:27:52 +0000815 hdr->type_of_loader = 0x21;
816
817 /* Convert unicode cmdline to ascii */
H. Peter Anvinc625d1c2013-09-20 09:55:39 -0500818 cmdline_ptr = efi_convert_cmdline(sys_table, image, &options_size);
Roy Franz5fef3872013-09-22 15:45:33 -0700819 if (!cmdline_ptr)
820 goto fail;
821 hdr->cmd_line_ptr = (unsigned long)cmdline_ptr;
Roy Franz98b228f2015-04-15 16:32:24 -0700822 /* Fill in upper bits of command line address, NOP on 32 bit */
823 boot_params->ext_cmd_line_ptr = (u64)(unsigned long)cmdline_ptr >> 32;
Matt Fleming291f3632011-12-12 21:27:52 +0000824
825 hdr->ramdisk_image = 0;
826 hdr->ramdisk_size = 0;
827
Matt Fleming291f3632011-12-12 21:27:52 +0000828 /* Clear APM BIOS info */
829 memset(bi, 0, sizeof(*bi));
830
Matt Fleming5a17dae2014-08-05 11:52:11 +0100831 status = efi_parse_options(cmdline_ptr);
832 if (status != EFI_SUCCESS)
833 goto fail2;
834
Roy Franz46f45822013-09-22 15:45:39 -0700835 status = handle_cmdline_files(sys_table, image,
836 (char *)(unsigned long)hdr->cmd_line_ptr,
Yinghai Lu47226ad2014-09-03 21:50:07 -0700837 "initrd=", hdr->initrd_addr_max,
Roy Franz46f45822013-09-22 15:45:39 -0700838 &ramdisk_addr, &ramdisk_size);
Yinghai Lu47226ad2014-09-03 21:50:07 -0700839
840 if (status != EFI_SUCCESS &&
841 hdr->xloadflags & XLF_CAN_BE_LOADED_ABOVE_4G) {
842 efi_printk(sys_table, "Trying to load files to higher address\n");
843 status = handle_cmdline_files(sys_table, image,
844 (char *)(unsigned long)hdr->cmd_line_ptr,
845 "initrd=", -1UL,
846 &ramdisk_addr, &ramdisk_size);
847 }
848
Matt Fleming9ca8f722012-07-19 10:23:48 +0100849 if (status != EFI_SUCCESS)
850 goto fail2;
Yinghai Lu4bf71112014-06-14 12:23:41 -0700851 hdr->ramdisk_image = ramdisk_addr & 0xffffffff;
852 hdr->ramdisk_size = ramdisk_size & 0xffffffff;
853 boot_params->ext_ramdisk_image = (u64)ramdisk_addr >> 32;
854 boot_params->ext_ramdisk_size = (u64)ramdisk_size >> 32;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100855
856 return boot_params;
857fail2:
Roy Franz0e1cadb2013-09-22 15:45:38 -0700858 efi_free(sys_table, options_size, hdr->cmd_line_ptr);
Matt Fleming9ca8f722012-07-19 10:23:48 +0100859fail:
Roy Franz40e45302013-09-22 15:45:29 -0700860 efi_free(sys_table, 0x4000, (unsigned long)boot_params);
Matt Fleming9ca8f722012-07-19 10:23:48 +0100861 return NULL;
862}
863
Linn Crosettod2078d52013-09-22 19:59:08 -0600864static void add_e820ext(struct boot_params *params,
865 struct setup_data *e820ext, u32 nr_entries)
Matt Fleming9ca8f722012-07-19 10:23:48 +0100866{
Linn Crosettod2078d52013-09-22 19:59:08 -0600867 struct setup_data *data;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100868 efi_status_t status;
Linn Crosettod2078d52013-09-22 19:59:08 -0600869 unsigned long size;
870
871 e820ext->type = SETUP_E820_EXT;
872 e820ext->len = nr_entries * sizeof(struct e820entry);
873 e820ext->next = 0;
874
875 data = (struct setup_data *)(unsigned long)params->hdr.setup_data;
876
877 while (data && data->next)
878 data = (struct setup_data *)(unsigned long)data->next;
879
880 if (data)
881 data->next = (unsigned long)e820ext;
882 else
883 params->hdr.setup_data = (unsigned long)e820ext;
884}
885
886static efi_status_t setup_e820(struct boot_params *params,
887 struct setup_data *e820ext, u32 e820ext_size)
888{
889 struct e820entry *e820_map = &params->e820_map[0];
890 struct efi_info *efi = &params->efi_info;
891 struct e820entry *prev = NULL;
892 u32 nr_entries;
893 u32 nr_desc;
Matt Fleming9ca8f722012-07-19 10:23:48 +0100894 int i;
Matt Fleming291f3632011-12-12 21:27:52 +0000895
Matt Fleming291f3632011-12-12 21:27:52 +0000896 nr_entries = 0;
Linn Crosettod2078d52013-09-22 19:59:08 -0600897 nr_desc = efi->efi_memmap_size / efi->efi_memdesc_size;
898
899 for (i = 0; i < nr_desc; i++) {
Matt Fleming291f3632011-12-12 21:27:52 +0000900 efi_memory_desc_t *d;
901 unsigned int e820_type = 0;
Linn Crosettod2078d52013-09-22 19:59:08 -0600902 unsigned long m = efi->efi_memmap;
Matt Fleming291f3632011-12-12 21:27:52 +0000903
Dmitry Skorodumov7cc03e42015-07-28 18:38:32 +0400904#ifdef CONFIG_X86_64
905 m |= (u64)efi->efi_memmap_hi << 32;
906#endif
907
Linn Crosettod2078d52013-09-22 19:59:08 -0600908 d = (efi_memory_desc_t *)(m + (i * efi->efi_memdesc_size));
Matt Fleming291f3632011-12-12 21:27:52 +0000909 switch (d->type) {
910 case EFI_RESERVED_TYPE:
911 case EFI_RUNTIME_SERVICES_CODE:
912 case EFI_RUNTIME_SERVICES_DATA:
913 case EFI_MEMORY_MAPPED_IO:
914 case EFI_MEMORY_MAPPED_IO_PORT_SPACE:
915 case EFI_PAL_CODE:
916 e820_type = E820_RESERVED;
917 break;
918
919 case EFI_UNUSABLE_MEMORY:
920 e820_type = E820_UNUSABLE;
921 break;
922
923 case EFI_ACPI_RECLAIM_MEMORY:
924 e820_type = E820_ACPI;
925 break;
926
927 case EFI_LOADER_CODE:
928 case EFI_LOADER_DATA:
929 case EFI_BOOT_SERVICES_CODE:
930 case EFI_BOOT_SERVICES_DATA:
931 case EFI_CONVENTIONAL_MEMORY:
932 e820_type = E820_RAM;
933 break;
934
935 case EFI_ACPI_MEMORY_NVS:
936 e820_type = E820_NVS;
937 break;
938
Dan Williamsad5fb872015-04-03 12:05:28 -0400939 case EFI_PERSISTENT_MEMORY:
940 e820_type = E820_PMEM;
941 break;
942
Matt Fleming291f3632011-12-12 21:27:52 +0000943 default:
944 continue;
945 }
946
947 /* Merge adjacent mappings */
948 if (prev && prev->type == e820_type &&
Linn Crosettod2078d52013-09-22 19:59:08 -0600949 (prev->addr + prev->size) == d->phys_addr) {
Matt Fleming291f3632011-12-12 21:27:52 +0000950 prev->size += d->num_pages << 12;
Linn Crosettod2078d52013-09-22 19:59:08 -0600951 continue;
Matt Fleming291f3632011-12-12 21:27:52 +0000952 }
Linn Crosettod2078d52013-09-22 19:59:08 -0600953
954 if (nr_entries == ARRAY_SIZE(params->e820_map)) {
955 u32 need = (nr_desc - i) * sizeof(struct e820entry) +
956 sizeof(struct setup_data);
957
958 if (!e820ext || e820ext_size < need)
959 return EFI_BUFFER_TOO_SMALL;
960
961 /* boot_params map full, switch to e820 extended */
962 e820_map = (struct e820entry *)e820ext->data;
963 }
964
965 e820_map->addr = d->phys_addr;
966 e820_map->size = d->num_pages << PAGE_SHIFT;
967 e820_map->type = e820_type;
968 prev = e820_map++;
969 nr_entries++;
Matt Fleming291f3632011-12-12 21:27:52 +0000970 }
971
Linn Crosettod2078d52013-09-22 19:59:08 -0600972 if (nr_entries > ARRAY_SIZE(params->e820_map)) {
973 u32 nr_e820ext = nr_entries - ARRAY_SIZE(params->e820_map);
974
975 add_e820ext(params, e820ext, nr_e820ext);
976 nr_entries -= nr_e820ext;
977 }
978
979 params->e820_entries = (u8)nr_entries;
980
981 return EFI_SUCCESS;
982}
983
984static efi_status_t alloc_e820ext(u32 nr_desc, struct setup_data **e820ext,
985 u32 *e820ext_size)
986{
987 efi_status_t status;
988 unsigned long size;
989
990 size = sizeof(struct setup_data) +
991 sizeof(struct e820entry) * nr_desc;
992
993 if (*e820ext) {
Matt Fleming204b0a12014-03-22 10:09:01 +0000994 efi_call_early(free_pool, *e820ext);
Linn Crosettod2078d52013-09-22 19:59:08 -0600995 *e820ext = NULL;
996 *e820ext_size = 0;
997 }
998
Matt Fleming204b0a12014-03-22 10:09:01 +0000999 status = efi_call_early(allocate_pool, EFI_LOADER_DATA,
1000 size, (void **)e820ext);
Linn Crosettod2078d52013-09-22 19:59:08 -06001001 if (status == EFI_SUCCESS)
1002 *e820ext_size = size;
1003
1004 return status;
1005}
1006
1007static efi_status_t exit_boot(struct boot_params *boot_params,
Matt Flemingb8ff87a2014-01-10 15:54:31 +00001008 void *handle, bool is64)
Linn Crosettod2078d52013-09-22 19:59:08 -06001009{
1010 struct efi_info *efi = &boot_params->efi_info;
1011 unsigned long map_sz, key, desc_size;
1012 efi_memory_desc_t *mem_map;
1013 struct setup_data *e820ext;
Matt Flemingb8ff87a2014-01-10 15:54:31 +00001014 const char *signature;
Linn Crosettod2078d52013-09-22 19:59:08 -06001015 __u32 e820ext_size;
1016 __u32 nr_desc, prev_nr_desc;
1017 efi_status_t status;
1018 __u32 desc_version;
1019 bool called_exit = false;
1020 u8 nr_entries;
1021 int i;
1022
1023 nr_desc = 0;
1024 e820ext = NULL;
1025 e820ext_size = 0;
1026
1027get_map:
1028 status = efi_get_memory_map(sys_table, &mem_map, &map_sz, &desc_size,
1029 &desc_version, &key);
1030
1031 if (status != EFI_SUCCESS)
1032 return status;
1033
1034 prev_nr_desc = nr_desc;
1035 nr_desc = map_sz / desc_size;
1036 if (nr_desc > prev_nr_desc &&
1037 nr_desc > ARRAY_SIZE(boot_params->e820_map)) {
1038 u32 nr_e820ext = nr_desc - ARRAY_SIZE(boot_params->e820_map);
1039
1040 status = alloc_e820ext(nr_e820ext, &e820ext, &e820ext_size);
1041 if (status != EFI_SUCCESS)
1042 goto free_mem_map;
1043
Matt Fleming204b0a12014-03-22 10:09:01 +00001044 efi_call_early(free_pool, mem_map);
Linn Crosettod2078d52013-09-22 19:59:08 -06001045 goto get_map; /* Allocated memory, get map again */
1046 }
1047
Matt Flemingb8ff87a2014-01-10 15:54:31 +00001048 signature = is64 ? EFI64_LOADER_SIGNATURE : EFI32_LOADER_SIGNATURE;
1049 memcpy(&efi->efi_loader_signature, signature, sizeof(__u32));
1050
Linn Crosettod2078d52013-09-22 19:59:08 -06001051 efi->efi_systab = (unsigned long)sys_table;
1052 efi->efi_memdesc_size = desc_size;
1053 efi->efi_memdesc_version = desc_version;
1054 efi->efi_memmap = (unsigned long)mem_map;
1055 efi->efi_memmap_size = map_sz;
1056
1057#ifdef CONFIG_X86_64
1058 efi->efi_systab_hi = (unsigned long)sys_table >> 32;
1059 efi->efi_memmap_hi = (unsigned long)mem_map >> 32;
1060#endif
1061
1062 /* Might as well exit boot services now */
Matt Fleming204b0a12014-03-22 10:09:01 +00001063 status = efi_call_early(exit_boot_services, handle, key);
Linn Crosettod2078d52013-09-22 19:59:08 -06001064 if (status != EFI_SUCCESS) {
1065 /*
1066 * ExitBootServices() will fail if any of the event
1067 * handlers change the memory map. In which case, we
1068 * must be prepared to retry, but only once so that
1069 * we're guaranteed to exit on repeated failures instead
1070 * of spinning forever.
1071 */
1072 if (called_exit)
1073 goto free_mem_map;
1074
1075 called_exit = true;
Matt Fleming204b0a12014-03-22 10:09:01 +00001076 efi_call_early(free_pool, mem_map);
Linn Crosettod2078d52013-09-22 19:59:08 -06001077 goto get_map;
1078 }
1079
1080 /* Historic? */
1081 boot_params->alt_mem_k = 32 * 1024;
1082
1083 status = setup_e820(boot_params, e820ext, e820ext_size);
1084 if (status != EFI_SUCCESS)
1085 return status;
Matt Fleming291f3632011-12-12 21:27:52 +00001086
1087 return EFI_SUCCESS;
1088
1089free_mem_map:
Matt Fleming204b0a12014-03-22 10:09:01 +00001090 efi_call_early(free_pool, mem_map);
Matt Fleming291f3632011-12-12 21:27:52 +00001091 return status;
1092}
1093
Matt Fleming9ca8f722012-07-19 10:23:48 +01001094/*
1095 * On success we return a pointer to a boot_params structure, and NULL
1096 * on failure.
1097 */
Matt Fleming54b52d82014-01-10 15:27:14 +00001098struct boot_params *efi_main(struct efi_config *c,
Matt Fleming9ca8f722012-07-19 10:23:48 +01001099 struct boot_params *boot_params)
1100{
Matt Fleming54b52d82014-01-10 15:27:14 +00001101 struct desc_ptr *gdt = NULL;
Matt Fleming9ca8f722012-07-19 10:23:48 +01001102 efi_loaded_image_t *image;
1103 struct setup_header *hdr = &boot_params->hdr;
1104 efi_status_t status;
1105 struct desc_struct *desc;
Matt Fleming54b52d82014-01-10 15:27:14 +00001106 void *handle;
1107 efi_system_table_t *_table;
1108 bool is64;
1109
1110 efi_early = c;
1111
1112 _table = (efi_system_table_t *)(unsigned long)efi_early->table;
1113 handle = (void *)(unsigned long)efi_early->image_handle;
1114 is64 = efi_early->is64;
Matt Fleming9ca8f722012-07-19 10:23:48 +01001115
1116 sys_table = _table;
1117
1118 /* Check if we were booted by the EFI firmware */
1119 if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
1120 goto fail;
1121
Matt Fleming54b52d82014-01-10 15:27:14 +00001122 if (is64)
1123 setup_boot_services64(efi_early);
1124 else
1125 setup_boot_services32(efi_early);
1126
Matt Fleming9ca8f722012-07-19 10:23:48 +01001127 setup_graphics(boot_params);
Matt Fleming291f3632011-12-12 21:27:52 +00001128
Matt Fleming56394ab2014-09-11 09:04:25 +01001129 setup_efi_pci(boot_params);
Matthew Garrettdd5fc852012-12-05 14:33:26 -07001130
Matt Fleming204b0a12014-03-22 10:09:01 +00001131 status = efi_call_early(allocate_pool, EFI_LOADER_DATA,
1132 sizeof(*gdt), (void **)&gdt);
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001133 if (status != EFI_SUCCESS) {
Roy Franz876dc362013-09-22 15:45:28 -07001134 efi_printk(sys_table, "Failed to alloc mem for gdt structure\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001135 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001136 }
Matt Fleming291f3632011-12-12 21:27:52 +00001137
1138 gdt->size = 0x800;
Roy Franz40e45302013-09-22 15:45:29 -07001139 status = efi_low_alloc(sys_table, gdt->size, 8,
Roy Franz876dc362013-09-22 15:45:28 -07001140 (unsigned long *)&gdt->address);
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001141 if (status != EFI_SUCCESS) {
Roy Franz876dc362013-09-22 15:45:28 -07001142 efi_printk(sys_table, "Failed to alloc mem for gdt\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001143 goto fail;
Matt Fleming9fa7ded2012-02-20 13:20:59 +00001144 }
Matt Fleming291f3632011-12-12 21:27:52 +00001145
Matt Fleming9ca8f722012-07-19 10:23:48 +01001146 /*
1147 * If the kernel isn't already loaded at the preferred load
1148 * address, relocate it.
1149 */
1150 if (hdr->pref_address != hdr->code32_start) {
Roy Franz4a9f3a72013-09-22 15:45:32 -07001151 unsigned long bzimage_addr = hdr->code32_start;
1152 status = efi_relocate_kernel(sys_table, &bzimage_addr,
1153 hdr->init_size, hdr->init_size,
1154 hdr->pref_address,
1155 hdr->kernel_alignment);
Ulf Winkelvosfb86b242014-07-10 02:12:41 +02001156 if (status != EFI_SUCCESS) {
1157 efi_printk(sys_table, "efi_relocate_kernel() failed!\n");
Matt Fleming9ca8f722012-07-19 10:23:48 +01001158 goto fail;
Ulf Winkelvosfb86b242014-07-10 02:12:41 +02001159 }
Roy Franz4a9f3a72013-09-22 15:45:32 -07001160
1161 hdr->pref_address = hdr->code32_start;
1162 hdr->code32_start = bzimage_addr;
Matt Fleming9ca8f722012-07-19 10:23:48 +01001163 }
1164
Matt Flemingb8ff87a2014-01-10 15:54:31 +00001165 status = exit_boot(boot_params, handle, is64);
Ulf Winkelvosfb86b242014-07-10 02:12:41 +02001166 if (status != EFI_SUCCESS) {
1167 efi_printk(sys_table, "exit_boot() failed!\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001168 goto fail;
Ulf Winkelvosfb86b242014-07-10 02:12:41 +02001169 }
Matt Fleming291f3632011-12-12 21:27:52 +00001170
1171 memset((char *)gdt->address, 0x0, gdt->size);
1172 desc = (struct desc_struct *)gdt->address;
1173
1174 /* The first GDT is a dummy and the second is unused. */
1175 desc += 2;
1176
1177 desc->limit0 = 0xffff;
1178 desc->base0 = 0x0000;
1179 desc->base1 = 0x0000;
1180 desc->type = SEG_TYPE_CODE | SEG_TYPE_EXEC_READ;
1181 desc->s = DESC_TYPE_CODE_DATA;
1182 desc->dpl = 0;
1183 desc->p = 1;
1184 desc->limit = 0xf;
1185 desc->avl = 0;
1186 desc->l = 0;
1187 desc->d = SEG_OP_SIZE_32BIT;
1188 desc->g = SEG_GRANULARITY_4KB;
1189 desc->base2 = 0x00;
1190
1191 desc++;
1192 desc->limit0 = 0xffff;
1193 desc->base0 = 0x0000;
1194 desc->base1 = 0x0000;
1195 desc->type = SEG_TYPE_DATA | SEG_TYPE_READ_WRITE;
1196 desc->s = DESC_TYPE_CODE_DATA;
1197 desc->dpl = 0;
1198 desc->p = 1;
1199 desc->limit = 0xf;
1200 desc->avl = 0;
1201 desc->l = 0;
1202 desc->d = SEG_OP_SIZE_32BIT;
1203 desc->g = SEG_GRANULARITY_4KB;
1204 desc->base2 = 0x00;
1205
1206#ifdef CONFIG_X86_64
1207 /* Task segment value */
1208 desc++;
1209 desc->limit0 = 0x0000;
1210 desc->base0 = 0x0000;
1211 desc->base1 = 0x0000;
1212 desc->type = SEG_TYPE_TSS;
1213 desc->s = 0;
1214 desc->dpl = 0;
1215 desc->p = 1;
1216 desc->limit = 0x0;
1217 desc->avl = 0;
1218 desc->l = 0;
1219 desc->d = 0;
1220 desc->g = SEG_GRANULARITY_4KB;
1221 desc->base2 = 0x00;
1222#endif /* CONFIG_X86_64 */
1223
Matt Fleming291f3632011-12-12 21:27:52 +00001224 asm volatile("cli");
Bart Kuivenhoven0ce6cda2013-09-23 11:45:28 +02001225 asm volatile ("lgdt %0" : : "m" (*gdt));
Matt Fleming291f3632011-12-12 21:27:52 +00001226
1227 return boot_params;
1228fail:
Ulf Winkelvosfb86b242014-07-10 02:12:41 +02001229 efi_printk(sys_table, "efi_main() failed!\n");
Matt Fleming291f3632011-12-12 21:27:52 +00001230 return NULL;
1231}