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Sandrine Bailleux3120ea22017-07-10 13:37:48 +01001/*
2 * Copyright (c) 2017, ARM Limited and Contributors. All rights reserved.
3 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
7/*
8 * This header file contains internal definitions that are not supposed to be
9 * used outside of this library code.
10 */
11
12#ifndef __XLAT_TABLES_V2_HELPERS_H__
13#define __XLAT_TABLES_V2_HELPERS_H__
14
15#ifndef __XLAT_TABLES_V2_H__
16#error "Do not include this header file directly. Include xlat_tables_v2.h instead."
17#endif
18
19#ifndef __ASSEMBLY__
20
21#include <cassert.h>
22#include <platform_def.h>
23#include <stddef.h>
24#include <xlat_tables_arch.h>
25#include <xlat_tables_defs.h>
26
27/* Forward declaration */
28struct mmap_region;
29
Sandrine Bailleux8f23fa82017-09-28 21:58:12 +010030/*
31 * Helper macro to define an mmap_region_t. This macro allows to specify all
32 * the fields of the structure but its parameter list is not guaranteed to
33 * remain stable as we add members to mmap_region_t.
34 */
35#define _MAP_REGION_FULL_SPEC(_pa, _va, _sz, _attr, _gr) \
36 { \
37 .base_pa = (_pa), \
38 .base_va = (_va), \
39 .size = (_sz), \
40 .attr = (_attr), \
41 .granularity = (_gr), \
42 }
43
Sandrine Bailleux3120ea22017-07-10 13:37:48 +010044/* Struct that holds all information about the translation tables. */
45struct xlat_ctx {
46 /*
47 * Max allowed Virtual and Physical Addresses.
48 */
49 unsigned long long pa_max_address;
50 uintptr_t va_max_address;
51
52 /*
53 * Array of all memory regions stored in order of ascending end address
54 * and ascending size to simplify the code that allows overlapping
55 * regions. The list is terminated by the first entry with size == 0.
56 * The max size of the list is stored in `mmap_num`. `mmap` points to an
57 * array of mmap_num + 1 elements, so that there is space for the final
58 * null entry.
59 */
60 struct mmap_region *mmap;
61 unsigned int mmap_num;
62
63 /*
64 * Array of finer-grain translation tables.
65 * For example, if the initial lookup level is 1 then this array would
66 * contain both level-2 and level-3 entries.
67 */
68 uint64_t (*tables)[XLAT_TABLE_ENTRIES];
69 unsigned int tables_num;
70 /*
71 * Keep track of how many regions are mapped in each table. The base
72 * table can't be unmapped so it isn't needed to keep track of it.
73 */
74#if PLAT_XLAT_TABLES_DYNAMIC
75 int *tables_mapped_regions;
76#endif /* PLAT_XLAT_TABLES_DYNAMIC */
77
78 unsigned int next_table;
79
80 /*
81 * Base translation table. It doesn't need to have the same amount of
82 * entries as the ones used for other levels.
83 */
84 uint64_t *base_table;
85 unsigned int base_table_entries;
86
87 /*
88 * Max Physical and Virtual addresses currently in use by the
89 * translation tables. These might get updated as we map/unmap memory
90 * regions but they will never go beyond pa/va_max_address.
91 */
92 unsigned long long max_pa;
93 uintptr_t max_va;
94
95 /* Level of the base translation table. */
96 unsigned int base_level;
97
98 /* Set to 1 when the translation tables are initialized. */
99 unsigned int initialized;
100
101 /*
102 * Bit mask that has to be ORed to the rest of a translation table
103 * descriptor in order to prohibit execution of code at the exception
104 * level of this translation context.
105 */
106 uint64_t execute_never_mask;
107};
108
109#if PLAT_XLAT_TABLES_DYNAMIC
110#define _ALLOC_DYNMAP_STRUCT(_ctx_name, _xlat_tables_count) \
111 static int _ctx_name##_mapped_regions[_xlat_tables_count];
112
113#define _REGISTER_DYNMAP_STRUCT(_ctx_name) \
114 .tables_mapped_regions = _ctx_name##_mapped_regions,
115#else
116#define _ALLOC_DYNMAP_STRUCT(_ctx_name, _xlat_tables_count) \
117 /* do nothing */
118
119#define _REGISTER_DYNMAP_STRUCT(_ctx_name) \
120 /* do nothing */
121#endif /* PLAT_XLAT_TABLES_DYNAMIC */
122
123
124#define _REGISTER_XLAT_CONTEXT(_ctx_name, _mmap_count, _xlat_tables_count, \
125 _virt_addr_space_size, _phy_addr_space_size) \
126 CASSERT(CHECK_VIRT_ADDR_SPACE_SIZE(_virt_addr_space_size), \
127 assert_invalid_virtual_addr_space_size_for_##_ctx_name); \
128 \
129 CASSERT(CHECK_PHY_ADDR_SPACE_SIZE(_phy_addr_space_size), \
130 assert_invalid_physical_addr_space_sizefor_##_ctx_name); \
131 \
132 static mmap_region_t _ctx_name##_mmap[_mmap_count + 1]; \
133 \
134 static uint64_t _ctx_name##_xlat_tables[_xlat_tables_count] \
135 [XLAT_TABLE_ENTRIES] \
136 __aligned(XLAT_TABLE_SIZE) __section("xlat_table"); \
137 \
138 static uint64_t _ctx_name##_base_xlat_table \
139 [GET_NUM_BASE_LEVEL_ENTRIES(_virt_addr_space_size)] \
140 __aligned(GET_NUM_BASE_LEVEL_ENTRIES(_virt_addr_space_size) \
141 * sizeof(uint64_t)); \
142 \
143 _ALLOC_DYNMAP_STRUCT(_ctx_name, _xlat_tables_count) \
144 \
145 static xlat_ctx_t _ctx_name##_xlat_ctx = { \
146 .va_max_address = (_virt_addr_space_size) - 1, \
147 .pa_max_address = (_phy_addr_space_size) - 1, \
148 .mmap = _ctx_name##_mmap, \
149 .mmap_num = _mmap_count, \
150 .base_level = GET_XLAT_TABLE_LEVEL_BASE(_virt_addr_space_size), \
151 .base_table = _ctx_name##_base_xlat_table, \
152 .base_table_entries = \
153 GET_NUM_BASE_LEVEL_ENTRIES(_virt_addr_space_size), \
154 .tables = _ctx_name##_xlat_tables, \
155 .tables_num = _xlat_tables_count, \
156 _REGISTER_DYNMAP_STRUCT(_ctx_name) \
157 .max_pa = 0, \
158 .max_va = 0, \
159 .next_table = 0, \
160 .initialized = 0, \
161 }
162
163#endif /*__ASSEMBLY__*/
164
165#endif /* __XLAT_TABLES_V2_HELPERS_H__ */