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efi_loader: Put fdt into convenient location
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1 /*
2  *  EFI application loader
3  *
4  *  Copyright (c) 2016 Alexander Graf
5  *
6  *  SPDX-License-Identifier:     GPL-2.0+
7  */
8
9 #include <common.h>
10 #include <command.h>
11 #include <efi_loader.h>
12 #include <errno.h>
13 #include <libfdt.h>
14 #include <libfdt_env.h>
15 #include <memalign.h>
16 #include <asm/global_data.h>
17
18 DECLARE_GLOBAL_DATA_PTR;
19
20 /*
21  * When booting using the "bootefi" command, we don't know which
22  * physical device the file came from. So we create a pseudo-device
23  * called "bootefi" with the device path /bootefi.
24  *
25  * In addition to the originating device we also declare the file path
26  * of "bootefi" based loads to be /bootefi.
27  */
28 static struct efi_device_path_file_path bootefi_image_path[] = {
29         {
30                 .dp.type = DEVICE_PATH_TYPE_MEDIA_DEVICE,
31                 .dp.sub_type = DEVICE_PATH_SUB_TYPE_FILE_PATH,
32                 .dp.length = sizeof(bootefi_image_path[0]),
33                 .str = { 'b','o','o','t','e','f','i' },
34         }, {
35                 .dp.type = DEVICE_PATH_TYPE_END,
36                 .dp.sub_type = DEVICE_PATH_SUB_TYPE_END,
37                 .dp.length = sizeof(bootefi_image_path[0]),
38         }
39 };
40
41 static struct efi_device_path_file_path bootefi_device_path[] = {
42         {
43                 .dp.type = DEVICE_PATH_TYPE_MEDIA_DEVICE,
44                 .dp.sub_type = DEVICE_PATH_SUB_TYPE_FILE_PATH,
45                 .dp.length = sizeof(bootefi_image_path[0]),
46                 .str = { 'b','o','o','t','e','f','i' },
47         }, {
48                 .dp.type = DEVICE_PATH_TYPE_END,
49                 .dp.sub_type = DEVICE_PATH_SUB_TYPE_END,
50                 .dp.length = sizeof(bootefi_image_path[0]),
51         }
52 };
53
54 static efi_status_t bootefi_open_dp(void *handle, efi_guid_t *protocol,
55                         void **protocol_interface, void *agent_handle,
56                         void *controller_handle, uint32_t attributes)
57 {
58         *protocol_interface = bootefi_device_path;
59         return EFI_SUCCESS;
60 }
61
62 /* The EFI loaded_image interface for the image executed via "bootefi" */
63 static struct efi_loaded_image loaded_image_info = {
64         .device_handle = bootefi_device_path,
65         .file_path = bootefi_image_path,
66 };
67
68 /* The EFI object struct for the image executed via "bootefi" */
69 static struct efi_object loaded_image_info_obj = {
70         .handle = &loaded_image_info,
71         .protocols = {
72                 {
73                         /*
74                          * When asking for the loaded_image interface, just
75                          * return handle which points to loaded_image_info
76                          */
77                         .guid = &efi_guid_loaded_image,
78                         .open = &efi_return_handle,
79                 },
80                 {
81                         /*
82                          * When asking for the device path interface, return
83                          * bootefi_device_path
84                          */
85                         .guid = &efi_guid_device_path,
86                         .open = &bootefi_open_dp,
87                 },
88         },
89 };
90
91 /* The EFI object struct for the device the "bootefi" image was loaded from */
92 static struct efi_object bootefi_device_obj = {
93         .handle = bootefi_device_path,
94         .protocols = {
95                 {
96                         /* When asking for the device path interface, return
97                          * bootefi_device_path */
98                         .guid = &efi_guid_device_path,
99                         .open = &bootefi_open_dp,
100                 }
101         },
102 };
103
104 static void *copy_fdt(void *fdt)
105 {
106         u64 fdt_size = fdt_totalsize(fdt);
107         unsigned long fdt_ram_start = -1L, fdt_pages;
108         u64 new_fdt_addr;
109         void *new_fdt;
110         int i;
111
112         for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
113                 u64 ram_start = gd->bd->bi_dram[i].start;
114                 u64 ram_size = gd->bd->bi_dram[i].size;
115
116                 if (!ram_size)
117                         continue;
118
119                 if (ram_start < fdt_ram_start)
120                         fdt_ram_start = ram_start;
121         }
122
123         /* Give us at least 4kb breathing room */
124         fdt_size = ALIGN(fdt_size + 4096, 4096);
125         fdt_pages = fdt_size >> EFI_PAGE_SHIFT;
126
127         /* Safe fdt location is at 128MB */
128         new_fdt_addr = fdt_ram_start + (128 * 1024 * 1024) + fdt_size;
129         if (efi_allocate_pages(1, EFI_BOOT_SERVICES_DATA, fdt_pages,
130                                &new_fdt_addr) != EFI_SUCCESS) {
131                 /* If we can't put it there, put it somewhere */
132                 new_fdt_addr = (ulong)memalign(4096, fdt_size);
133         }
134         new_fdt = (void*)(ulong)new_fdt_addr;
135         memcpy(new_fdt, fdt, fdt_totalsize(fdt));
136         fdt_set_totalsize(new_fdt, fdt_size);
137
138         return new_fdt;
139 }
140
141 /*
142  * Load an EFI payload into a newly allocated piece of memory, register all
143  * EFI objects it would want to access and jump to it.
144  */
145 static unsigned long do_bootefi_exec(void *efi)
146 {
147         ulong (*entry)(void *image_handle, struct efi_system_table *st);
148         ulong fdt_pages, fdt_size, fdt_start, fdt_end;
149         bootm_headers_t img = { 0 };
150         void *fdt = working_fdt;
151
152         /*
153          * gd lives in a fixed register which may get clobbered while we execute
154          * the payload. So save it here and restore it on every callback entry
155          */
156         efi_save_gd();
157
158         /* Update system table to point to our currently loaded FDT */
159
160         /* Fall back to included fdt if none was manually loaded */
161         if (!fdt && gd->fdt_blob)
162                 fdt = (void *)gd->fdt_blob;
163
164         if (fdt) {
165                 /* Prepare fdt for payload */
166                 fdt = copy_fdt(fdt);
167
168                 if (image_setup_libfdt(&img, fdt, 0, NULL)) {
169                         printf("ERROR: Failed to process device tree\n");
170                         return -EINVAL;
171                 }
172
173                 /* Link to it in the efi tables */
174                 systab.tables[0].guid = EFI_FDT_GUID;
175                 systab.tables[0].table = fdt;
176                 systab.nr_tables = 1;
177
178                 /* And reserve the space in the memory map */
179                 fdt_start = ((ulong)fdt) & ~EFI_PAGE_MASK;
180                 fdt_end = ((ulong)fdt) + fdt_totalsize(fdt);
181                 fdt_size = (fdt_end - fdt_start) + EFI_PAGE_MASK;
182                 fdt_pages = fdt_size >> EFI_PAGE_SHIFT;
183                 /* Give a bootloader the chance to modify the device tree */
184                 fdt_pages += 2;
185                 efi_add_memory_map(fdt_start, fdt_pages,
186                                    EFI_BOOT_SERVICES_DATA, true);
187         } else {
188                 printf("WARNING: No device tree loaded, expect boot to fail\n");
189                 systab.nr_tables = 0;
190         }
191
192         /* Load the EFI payload */
193         entry = efi_load_pe(efi, &loaded_image_info);
194         if (!entry)
195                 return -ENOENT;
196
197         /* Initialize and populate EFI object list */
198         INIT_LIST_HEAD(&efi_obj_list);
199         list_add_tail(&loaded_image_info_obj.link, &efi_obj_list);
200         list_add_tail(&bootefi_device_obj.link, &efi_obj_list);
201 #ifdef CONFIG_PARTITIONS
202         efi_disk_register();
203 #endif
204 #ifdef CONFIG_LCD
205         efi_gop_register();
206 #endif
207
208         /* Call our payload! */
209 #ifdef DEBUG_EFI
210         printf("%s:%d Jumping to 0x%lx\n", __func__, __LINE__, (long)entry);
211 #endif
212         return entry(&loaded_image_info, &systab);
213 }
214
215
216 /* Interpreter command to boot an arbitrary EFI image from memory */
217 static int do_bootefi(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
218 {
219         char *saddr;
220         unsigned long addr;
221         int r = 0;
222
223         if (argc < 2)
224                 return 1;
225         saddr = argv[1];
226
227         addr = simple_strtoul(saddr, NULL, 16);
228
229         printf("## Starting EFI application at 0x%08lx ...\n", addr);
230         r = do_bootefi_exec((void *)addr);
231         printf("## Application terminated, r = %d\n", r);
232
233         if (r != 0)
234                 r = 1;
235
236         return r;
237 }
238
239 #ifdef CONFIG_SYS_LONGHELP
240 static char bootefi_help_text[] =
241         "<image address>\n"
242         "  - boot EFI payload stored at address <image address>\n"
243         "\n"
244         "Since most EFI payloads want to have a device tree provided, please\n"
245         "make sure you load a device tree using the fdt addr command before\n"
246         "executing bootefi.\n";
247 #endif
248
249 U_BOOT_CMD(
250         bootefi, 2, 0, do_bootefi,
251         "Boots an EFI payload from memory\n",
252         bootefi_help_text
253 );
254
255 void efi_set_bootdev(const char *dev, const char *devnr, const char *path)
256 {
257         __maybe_unused struct blk_desc *desc;
258         char devname[32] = { 0 }; /* dp->str is u16[32] long */
259         char *colon;
260
261         /* Assemble the condensed device name we use in efi_disk.c */
262         snprintf(devname, sizeof(devname), "%s%s", dev, devnr);
263         colon = strchr(devname, ':');
264
265 #ifdef CONFIG_ISO_PARTITION
266         /* For ISOs we create partition block devices */
267         desc = blk_get_dev(dev, simple_strtol(devnr, NULL, 10));
268         if (desc && (desc->type != DEV_TYPE_UNKNOWN) &&
269             (desc->part_type == PART_TYPE_ISO)) {
270                 if (!colon)
271                         snprintf(devname, sizeof(devname), "%s%s:1", dev,
272                                  devnr);
273                 colon = NULL;
274         }
275 #endif
276
277         if (colon)
278                 *colon = '\0';
279
280         /* Patch bootefi_device_path to the target device */
281         memset(bootefi_device_path[0].str, 0, sizeof(bootefi_device_path[0].str));
282         ascii2unicode(bootefi_device_path[0].str, devname);
283
284         /* Patch bootefi_image_path to the target file path */
285         memset(bootefi_image_path[0].str, 0, sizeof(bootefi_image_path[0].str));
286         snprintf(devname, sizeof(devname), "%s", path);
287         ascii2unicode(bootefi_image_path[0].str, devname);
288 }