xref: /linux/drivers/firmware/efi/memmap.c (revision 724b03ee96b8d45310d89c9c3b0aa5ee0dbb72f7)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Common EFI memory map functions.
4  */
5 
6 #define pr_fmt(fmt) "efi: " fmt
7 
8 #include <linux/init.h>
9 #include <linux/kernel.h>
10 #include <linux/efi.h>
11 #include <linux/io.h>
12 #include <linux/memblock.h>
13 #include <linux/slab.h>
14 
15 #include <asm/early_ioremap.h>
16 #include <asm/efi.h>
17 
18 /**
19  * __efi_memmap_init - Common code for mapping the EFI memory map
20  * @data: EFI memory map data
21  *
22  * This function takes care of figuring out which function to use to
23  * map the EFI memory map in efi.memmap based on how far into the boot
24  * we are.
25  *
26  * During bootup EFI_MEMMAP_LATE in data->flags should be clear since we
27  * only have access to the early_memremap*() functions as the vmalloc
28  * space isn't setup.  Once the kernel is fully booted we can fallback
29  * to the more robust memremap*() API.
30  *
31  * Returns: zero on success, a negative error code on failure.
32  */
__efi_memmap_init(struct efi_memory_map_data * data)33 int __init __efi_memmap_init(struct efi_memory_map_data *data)
34 {
35 	struct efi_memory_map map;
36 	phys_addr_t phys_map;
37 
38 	phys_map = data->phys_map;
39 
40 	if (data->flags & EFI_MEMMAP_LATE)
41 		map.map = memremap(phys_map, data->size, MEMREMAP_WB);
42 	else
43 		map.map = early_memremap(phys_map, data->size);
44 
45 	if (!map.map) {
46 		pr_err("Could not map the memory map! phys_map=%pa, size=0x%lx\n",
47 			&phys_map, data->size);
48 		return -ENOMEM;
49 	}
50 
51 	map.phys_map = data->phys_map;
52 	map.nr_map = data->size / data->desc_size;
53 	map.map_end = map.map + data->size;
54 
55 	map.desc_version = data->desc_version;
56 	map.desc_size = data->desc_size;
57 	map.flags = data->flags;
58 
59 	set_bit(EFI_MEMMAP, &efi.flags);
60 
61 	efi.memmap = map;
62 
63 	return 0;
64 }
65 
66 /**
67  * efi_memmap_init_early - Map the EFI memory map data structure
68  * @data: EFI memory map data
69  *
70  * Use early_memremap() to map the passed in EFI memory map and assign
71  * it to efi.memmap.
72  *
73  * Returns: zero on success, a negative error code on failure.
74  */
efi_memmap_init_early(struct efi_memory_map_data * data)75 int __init efi_memmap_init_early(struct efi_memory_map_data *data)
76 {
77 	/* Cannot go backwards */
78 	WARN_ON(efi.memmap.flags & EFI_MEMMAP_LATE);
79 
80 	data->flags = 0;
81 	return __efi_memmap_init(data);
82 }
83 
efi_memmap_unmap(void)84 void __init efi_memmap_unmap(void)
85 {
86 	if (!efi_enabled(EFI_MEMMAP))
87 		return;
88 
89 	if (!(efi.memmap.flags & EFI_MEMMAP_LATE)) {
90 		unsigned long size;
91 
92 		size = efi.memmap.desc_size * efi.memmap.nr_map;
93 		early_memunmap(efi.memmap.map, size);
94 	} else {
95 		memunmap(efi.memmap.map);
96 	}
97 
98 	efi.memmap.map = NULL;
99 	clear_bit(EFI_MEMMAP, &efi.flags);
100 }
101 
102 /**
103  * efi_memmap_init_late - Map efi.memmap with memremap()
104  * @addr: Physical address of the new EFI memory map
105  * @size: Size in bytes of the new EFI memory map
106  *
107  * Setup a mapping of the EFI memory map using ioremap_cache(). This
108  * function should only be called once the vmalloc space has been
109  * setup and is therefore not suitable for calling during early EFI
110  * initialise, e.g. in efi_init(). Additionally, it expects
111  * efi_memmap_init_early() to have already been called.
112  *
113  * The reason there are two EFI memmap initialisation
114  * (efi_memmap_init_early() and this late version) is because the
115  * early EFI memmap should be explicitly unmapped once EFI
116  * initialisation is complete as the fixmap space used to map the EFI
117  * memmap (via early_memremap()) is a scarce resource.
118  *
119  * This late mapping is intended to persist for the duration of
120  * runtime so that things like efi_mem_desc_lookup() and
121  * efi_mem_attributes() always work.
122  *
123  * Returns: zero on success, a negative error code on failure.
124  */
efi_memmap_init_late(phys_addr_t addr,unsigned long size)125 int __init efi_memmap_init_late(phys_addr_t addr, unsigned long size)
126 {
127 	struct efi_memory_map_data data = {
128 		.phys_map = addr,
129 		.size = size,
130 		.flags = EFI_MEMMAP_LATE,
131 	};
132 
133 	/* Did we forget to unmap the early EFI memmap? */
134 	WARN_ON(efi.memmap.map);
135 
136 	/* Were we already called? */
137 	WARN_ON(efi.memmap.flags & EFI_MEMMAP_LATE);
138 
139 	/*
140 	 * It makes no sense to allow callers to register different
141 	 * values for the following fields. Copy them out of the
142 	 * existing early EFI memmap.
143 	 */
144 	data.desc_version = efi.memmap.desc_version;
145 	data.desc_size = efi.memmap.desc_size;
146 
147 	return __efi_memmap_init(&data);
148 }
149