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1 /** @file
2 *
3 * Copyright (c) 2011, ARM Limited. All rights reserved.
4 *
5 * This program and the accompanying materials
6 * are licensed and made available under the terms and conditions of the BSD License
7 * which accompanies this distribution. The full text of the license may be found at
8 * http://opensource.org/licenses/bsd-license.php
9 *
10 * THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
12 *
13 **/
14
15 #ifndef _ARMPLATFORMLIB_H_
16 #define _ARMPLATFORMLIB_H_
17
18 //
19 // The package level header files this module uses
20 //
21 #include <PiPei.h>
22 //
23 // The protocols, PPI and GUID defintions for this module
24 //
25 #include <Ppi/MasterBootMode.h>
26 #include <Ppi/BootInRecoveryMode.h>
27 #include <Guid/MemoryTypeInformation.h>
28
29 #include <Library/ArmLib.h>
30
31 /**
32 This structure is used by ArmVExpressGetEfiMemoryMap to describes a region of the EFI memory map
33
34 Every EFI regions of the system memory described by their physical start address and their size
35 can have different attributes. Some regions can be tested and other untested.
36
37 **/
38 typedef struct {
39 EFI_RESOURCE_ATTRIBUTE_TYPE ResourceAttribute;
40 EFI_PHYSICAL_ADDRESS PhysicalStart;
41 UINT64 NumberOfBytes;
42 } ARM_SYSTEM_MEMORY_REGION_DESCRIPTOR;
43
44 /**
45 Called at the early stage of the Boot phase to know if the memory has already been initialized
46
47 Running the code from the reset vector does not mean we start from cold boot. In some case, we
48 can go through this code with the memory already initialized.
49 Because this function is called at the early stage, the implementation must not use the stack.
50 Its implementation must probably done in assembly to ensure this requirement.
51
52 @return Return the condition value into the 'Z' flag
53
54 **/
55 VOID ArmPlatformIsMemoryInitialized(VOID);
56
57 /**
58 Initialize the memory where the initial stacks will reside
59
60 This memory can contain the initial stacks (Secure and Secure Monitor stacks).
61 In some platform, this region is already initialized and the implementation of this function can
62 do nothing. This memory can also represent the Secure RAM.
63 This function is called before the satck has been set up. Its implementation must ensure the stack
64 pointer is not used (probably required to use assembly language)
65
66 **/
67 VOID
68 ArmPlatformInitializeBootMemory (
69 VOID
70 );
71
72 /**
73 Return the current Boot Mode
74
75 This function returns the boot reason on the platform
76
77 @return Return the current Boot Mode of the platform
78
79 **/
80 EFI_BOOT_MODE
81 ArmPlatformGetBootMode (
82 VOID
83 );
84
85 /**
86 Initialize controllers that must setup at the early stage
87
88 Some peripherals must be initialized in Secure World.
89 For example, some L2x0 requires to be initialized in Secure World
90
91 **/
92 VOID
93 ArmPlatformSecInitialize (
94 VOID
95 );
96
97 /**
98 Call before jumping to Normal World
99
100 This function allows the firmware platform to do extra actions before
101 jumping to the Normal World
102
103 **/
104 VOID
105 ArmPlatformSecExtraAction (
106 IN UINTN MpId,
107 OUT UINTN* JumpAddress
108 );
109
110 /**
111 Initialize controllers that must setup in the normal world
112
113 This function is called by the ArmPlatformPkg/PrePi or ArmPlatformPkg/PlatformPei
114 in the PEI phase.
115
116 **/
117 VOID
118 ArmPlatformNormalInitialize (
119 VOID
120 );
121
122 /**
123 Initialize the system (or sometimes called permanent) memory
124
125 This memory is generally represented by the DRAM.
126
127 **/
128 VOID
129 ArmPlatformInitializeSystemMemory (
130 VOID
131 );
132
133 /**
134 Remap the memory at 0x0
135
136 Some platform requires or gives the ability to remap the memory at the address 0x0.
137 This function can do nothing if this feature is not relevant to your platform.
138
139 **/
140 VOID
141 ArmPlatformBootRemapping (
142 VOID
143 );
144
145 /**
146 Return if Trustzone is supported by your platform
147
148 A non-zero value must be returned if you want to support a Secure World on your platform.
149 ArmPlatformTrustzoneInit() will later set up the secure regions.
150 This function can return 0 even if Trustzone is supported by your processor. In this case,
151 the platform will continue to run in Secure World.
152
153 @return A non-zero value if Trustzone supported.
154
155 **/
156 UINTN
157 ArmPlatformTrustzoneSupported (
158 VOID
159 );
160
161 /**
162 Initialize the Secure peripherals and memory regions
163
164 If Trustzone is supported by your platform then this function makes the required initialization
165 of the secure peripherals and memory regions.
166
167 **/
168 VOID
169 ArmPlatformTrustzoneInit (
170 VOID
171 );
172
173 /**
174 Return the Virtual Memory Map of your platform
175
176 This Virtual Memory Map is used by MemoryInitPei Module to initialize the MMU on your platform.
177
178 @param[out] VirtualMemoryMap Array of ARM_MEMORY_REGION_DESCRIPTOR describing a Physical-to-
179 Virtual Memory mapping. This array must be ended by a zero-filled
180 entry
181
182 **/
183 VOID
184 ArmPlatformGetVirtualMemoryMap (
185 OUT ARM_MEMORY_REGION_DESCRIPTOR** VirtualMemoryMap
186 );
187
188 /**
189 Return the EFI Memory Map of your platform
190
191 This EFI Memory Map of the System Memory is used by MemoryInitPei module to create the Resource
192 Descriptor HOBs used by DXE core.
193
194 @param[out] EfiMemoryMap Array of ARM_SYSTEM_MEMORY_REGION_DESCRIPTOR describing an
195 EFI Memory region. This array must be ended by a zero-filled entry
196
197 **/
198 EFI_STATUS
199 ArmPlatformGetAdditionalSystemMemory (
200 OUT ARM_SYSTEM_MEMORY_REGION_DESCRIPTOR** EfiMemoryMap
201 );
202
203 #endif