1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Functions shared by the app and stub
4  *
5  * Copyright (c) 2015 Google, Inc
6  *
7  * EFI information obtained here:
8  * http://wiki.phoenix.com/wiki/index.php/EFI_BOOT_SERVICES
9  *
10  * Common EFI functions
11  */
12 
13 #include <common.h>
14 #include <debug_uart.h>
15 #include <errno.h>
16 #include <malloc.h>
17 #include <linux/err.h>
18 #include <linux/types.h>
19 #include <efi.h>
20 #include <efi_api.h>
21 
22 static struct efi_priv *global_priv;
23 
efi_get_priv(void)24 struct efi_priv *efi_get_priv(void)
25 {
26 	return global_priv;
27 }
28 
efi_set_priv(struct efi_priv * priv)29 void efi_set_priv(struct efi_priv *priv)
30 {
31 	global_priv = priv;
32 }
33 
efi_get_sys_table(void)34 struct efi_system_table *efi_get_sys_table(void)
35 {
36 	return global_priv->sys_table;
37 }
38 
efi_get_boot(void)39 struct efi_boot_services *efi_get_boot(void)
40 {
41 	return global_priv->boot;
42 }
43 
efi_get_ram_base(void)44 unsigned long efi_get_ram_base(void)
45 {
46 	return global_priv->ram_base;
47 }
48 
49 /*
50  * Global declaration of gd.
51  *
52  * As we write to it before relocation we have to make sure it is not put into
53  * a .bss section which may overlap a .rela section. Initialization forces it
54  * into a .data section which cannot overlap any .rela section.
55  */
56 struct global_data *global_data_ptr = (struct global_data *)~0;
57 
58 /*
59  * Unfortunately we cannot access any code outside what is built especially
60  * for the stub. lib/string.c is already being built for the U-Boot payload
61  * so it uses the wrong compiler flags. Add our own memset() here.
62  */
efi_memset(void * ptr,int ch,int size)63 static void efi_memset(void *ptr, int ch, int size)
64 {
65 	char *dest = ptr;
66 
67 	while (size-- > 0)
68 		*dest++ = ch;
69 }
70 
71 /*
72  * Since the EFI stub cannot access most of the U-Boot code, add our own
73  * simple console output functions here. The EFI app will not use these since
74  * it can use the normal console.
75  */
efi_putc(struct efi_priv * priv,const char ch)76 void efi_putc(struct efi_priv *priv, const char ch)
77 {
78 	struct efi_simple_text_output_protocol *con = priv->sys_table->con_out;
79 	uint16_t ucode[2];
80 
81 	ucode[0] = ch;
82 	ucode[1] = '\0';
83 	con->output_string(con, ucode);
84 }
85 
efi_puts(struct efi_priv * priv,const char * str)86 void efi_puts(struct efi_priv *priv, const char *str)
87 {
88 	while (*str)
89 		efi_putc(priv, *str++);
90 }
91 
efi_init(struct efi_priv * priv,const char * banner,efi_handle_t image,struct efi_system_table * sys_table)92 int efi_init(struct efi_priv *priv, const char *banner, efi_handle_t image,
93 	     struct efi_system_table *sys_table)
94 {
95 	efi_guid_t loaded_image_guid = EFI_LOADED_IMAGE_PROTOCOL_GUID;
96 	struct efi_boot_services *boot = sys_table->boottime;
97 	struct efi_loaded_image *loaded_image;
98 	int ret;
99 
100 	efi_memset(priv, '\0', sizeof(*priv));
101 	priv->sys_table = sys_table;
102 	priv->boot = sys_table->boottime;
103 	priv->parent_image = image;
104 	priv->run = sys_table->runtime;
105 
106 	efi_puts(priv, "U-Boot EFI ");
107 	efi_puts(priv, banner);
108 	efi_putc(priv, ' ');
109 
110 	ret = boot->open_protocol(priv->parent_image, &loaded_image_guid,
111 				  (void **)&loaded_image, priv->parent_image,
112 				  NULL, EFI_OPEN_PROTOCOL_GET_PROTOCOL);
113 	if (ret) {
114 		efi_puts(priv, "Failed to get loaded image protocol\n");
115 		return ret;
116 	}
117 	priv->image_data_type = loaded_image->image_data_type;
118 
119 	return 0;
120 }
121 
efi_malloc(struct efi_priv * priv,int size,efi_status_t * retp)122 void *efi_malloc(struct efi_priv *priv, int size, efi_status_t *retp)
123 {
124 	struct efi_boot_services *boot = priv->boot;
125 	void *buf = NULL;
126 
127 	*retp = boot->allocate_pool(priv->image_data_type, size, &buf);
128 
129 	return buf;
130 }
131 
efi_free(struct efi_priv * priv,void * ptr)132 void efi_free(struct efi_priv *priv, void *ptr)
133 {
134 	struct efi_boot_services *boot = priv->boot;
135 
136 	boot->free_pool(ptr);
137 }
138 
efi_store_memory_map(struct efi_priv * priv)139 int efi_store_memory_map(struct efi_priv *priv)
140 {
141 	struct efi_boot_services *boot = priv->sys_table->boottime;
142 	efi_uintn_t size, desc_size;
143 	efi_status_t ret;
144 
145 	/* Get the memory map so we can switch off EFI */
146 	size = 0;
147 	ret = boot->get_memory_map(&size, NULL, &priv->memmap_key,
148 				   &priv->memmap_desc_size,
149 				   &priv->memmap_version);
150 	if (ret != EFI_BUFFER_TOO_SMALL) {
151 		/*
152 		 * Note this function avoids using printf() since it is not
153 		 * available in the stub
154 		 */
155 		printhex2(EFI_BITS_PER_LONG);
156 		putc(' ');
157 		printhex2(ret);
158 		puts(" No memory map\n");
159 		return ret;
160 	}
161 	/*
162 	 * Since doing a malloc() may change the memory map and also we want to
163 	 * be able to read the memory map in efi_call_exit_boot_services()
164 	 * below, after more changes have happened
165 	 */
166 	priv->memmap_alloc = size + 1024;
167 	priv->memmap_size = priv->memmap_alloc;
168 	priv->memmap_desc = efi_malloc(priv, size, &ret);
169 	if (!priv->memmap_desc) {
170 		printhex2(ret);
171 		puts(" No memory for memory descriptor\n");
172 		return ret;
173 	}
174 
175 	ret = boot->get_memory_map(&priv->memmap_size, priv->memmap_desc,
176 				   &priv->memmap_key, &desc_size,
177 				   &priv->memmap_version);
178 	if (ret) {
179 		printhex2(ret);
180 		puts(" Can't get memory map\n");
181 		return ret;
182 	}
183 
184 	return 0;
185 }
186 
efi_call_exit_boot_services(void)187 int efi_call_exit_boot_services(void)
188 {
189 	struct efi_priv *priv = efi_get_priv();
190 	const struct efi_boot_services *boot = priv->boot;
191 	efi_uintn_t size;
192 	u32 version;
193 	efi_status_t ret;
194 
195 	size = priv->memmap_alloc;
196 	ret = boot->get_memory_map(&size, priv->memmap_desc,
197 				   &priv->memmap_key,
198 				   &priv->memmap_desc_size, &version);
199 	if (ret) {
200 		printhex2(ret);
201 		puts(" Can't get memory map\n");
202 		return ret;
203 	}
204 	ret = boot->exit_boot_services(priv->parent_image, priv->memmap_key);
205 	if (ret)
206 		return ret;
207 
208 	return 0;
209 }
210