xref: /rk3399_ARM-atf/plat/qemu/common/qemu_bl2_mem_params_desc.c (revision 06f3c7058c42a9f1a9f7df75ea2de71a000855e8)
1 /*
2  * Copyright (c) 2017-2024, Arm Limited and Contributors. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <platform_def.h>
8 
9 #include <common/desc_image_load.h>
10 #include <plat/common/platform.h>
11 
12 #define SP_PKG_ENTRY(id) \
13 	{ \
14 		.image_id = (id), \
15 		SET_STATIC_PARAM_HEAD(ep_info, PARAM_IMAGE_BINARY, VERSION_2, \
16 				      entry_point_info_t, \
17 				      SECURE | NON_EXECUTABLE), \
18 		SET_STATIC_PARAM_HEAD(image_info, PARAM_IMAGE_BINARY, \
19 				      VERSION_2, image_info_t, \
20 				      IMAGE_ATTRIB_SKIP_LOADING), \
21 		.next_handoff_image_id = INVALID_IMAGE_ID, \
22 	}
23 
24 /*******************************************************************************
25  * Following descriptor provides BL image/ep information that gets used
26  * by BL2 to load the images and also subset of this information is
27  * passed to next BL image. The image loading sequence is managed by
28  * populating the images in required loading order. The image execution
29  * sequence is managed by populating the `next_handoff_image_id` with
30  * the next executable image id.
31  ******************************************************************************/
32 static bl_mem_params_node_t bl2_mem_params_descs[] = {
33 #ifdef EL3_PAYLOAD_BASE
34 	/* Fill EL3 payload related information (BL31 is EL3 payload) */
35 	{ .image_id = BL31_IMAGE_ID,
36 
37 	  SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
38 				entry_point_info_t,
39 				SECURE | EXECUTABLE | EP_FIRST_EXE),
40 	  .ep_info.pc = EL3_PAYLOAD_BASE,
41 	  .ep_info.spsr = SPSR_64(MODE_EL3, MODE_SP_ELX,
42 				  DISABLE_ALL_EXCEPTIONS),
43 
44 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2, image_info_t,
45 				IMAGE_ATTRIB_PLAT_SETUP | IMAGE_ATTRIB_SKIP_LOADING),
46 
47 	  .next_handoff_image_id = INVALID_IMAGE_ID,
48 	},
49 #else /* EL3_PAYLOAD_BASE */
50 #ifdef __aarch64__
51 	/* Fill BL31 related information */
52 	{ .image_id = BL31_IMAGE_ID,
53 
54 	  SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
55 				entry_point_info_t,
56 				SECURE | EXECUTABLE | EP_FIRST_EXE),
57 	  .ep_info.pc = BL31_BASE,
58 	  .ep_info.spsr = SPSR_64(MODE_EL3, MODE_SP_ELX,
59 				  DISABLE_ALL_EXCEPTIONS),
60 # if DEBUG
61 	  .ep_info.args.arg1 = QEMU_BL31_PLAT_PARAM_VAL,
62 # endif
63 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2, image_info_t,
64 				IMAGE_ATTRIB_PLAT_SETUP),
65 	  .image_info.image_base = BL31_BASE,
66 	  .image_info.image_max_size = BL31_LIMIT - BL31_BASE,
67 
68 # ifdef QEMU_LOAD_BL32
69 	  .next_handoff_image_id = BL32_IMAGE_ID,
70 # elif ENABLE_RME
71 	  .next_handoff_image_id = RMM_IMAGE_ID,
72 # else
73 	  .next_handoff_image_id = BL33_IMAGE_ID,
74 # endif
75 	},
76 #endif /* __aarch64__ */
77 
78 #if ENABLE_RME
79 	/* Fill RMM related information */
80 	{ .image_id = RMM_IMAGE_ID,
81 	  SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP,
82 		VERSION_2, entry_point_info_t, EP_REALM | EXECUTABLE),
83 	  .ep_info.pc = RMM_BASE,
84 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP,
85 		VERSION_2, image_info_t, 0),
86 	  .image_info.image_base = RMM_BASE,
87 	  .image_info.image_max_size = RMM_LIMIT - RMM_BASE,
88 	  .next_handoff_image_id = BL33_IMAGE_ID,
89 	},
90 #endif /* ENABLE_RME */
91 
92 # ifdef QEMU_LOAD_BL32
93 
94 #ifdef __aarch64__
95 #define BL32_EP_ATTRIBS		(SECURE | EXECUTABLE)
96 #define BL32_IMG_ATTRIBS	0
97 #else
98 #define BL32_EP_ATTRIBS		(SECURE | EXECUTABLE | EP_FIRST_EXE)
99 #define BL32_IMG_ATTRIBS	IMAGE_ATTRIB_PLAT_SETUP
100 #endif
101 
102 	/* Fill BL32 related information */
103 	{ .image_id = BL32_IMAGE_ID,
104 
105 	  SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
106 				entry_point_info_t, BL32_EP_ATTRIBS),
107 	  .ep_info.pc = BL32_BASE,
108 
109 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2,
110 				image_info_t, BL32_IMG_ATTRIBS),
111 
112 	  .image_info.image_base = BL32_BASE,
113 	  .image_info.image_max_size = BL32_LIMIT - BL32_BASE,
114 
115 #if ENABLE_RME
116 	  .next_handoff_image_id = RMM_IMAGE_ID,
117 #else
118 	  .next_handoff_image_id = BL33_IMAGE_ID,
119 #endif
120 	},
121 
122 	/*
123 	 * Fill BL32 external 1 related information.
124 	 * A typical use for extra1 image is with OP-TEE where it is the
125 	 * pager image.
126 	 */
127 	{ .image_id = BL32_EXTRA1_IMAGE_ID,
128 
129 	   SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
130 				 entry_point_info_t, SECURE | NON_EXECUTABLE),
131 
132 	   SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2,
133 				 image_info_t, IMAGE_ATTRIB_SKIP_LOADING),
134 	   .image_info.image_base = BL32_BASE,
135 	   .image_info.image_max_size = BL32_LIMIT - BL32_BASE,
136 
137 	   .next_handoff_image_id = INVALID_IMAGE_ID,
138 	},
139 
140 	/*
141 	 * Fill BL32 external 2 related information.
142 	 * A typical use for extra2 image is with OP-TEE where it is the
143 	 * paged image.
144 	 */
145 	{ .image_id = BL32_EXTRA2_IMAGE_ID,
146 
147 	   SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
148 				 entry_point_info_t, SECURE | NON_EXECUTABLE),
149 
150 	   SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2,
151 				 image_info_t, IMAGE_ATTRIB_SKIP_LOADING),
152 #if defined(SPD_opteed) || defined(AARCH32_SP_OPTEE) || defined(SPMC_OPTEE)
153 	   .image_info.image_base = QEMU_OPTEE_PAGEABLE_LOAD_BASE,
154 	   .image_info.image_max_size = QEMU_OPTEE_PAGEABLE_LOAD_SIZE,
155 #endif
156 	   .next_handoff_image_id = INVALID_IMAGE_ID,
157 	},
158 
159 #if defined(SPD_spmd)
160 	/* Fill TOS_FW_CONFIG related information */
161 	{
162 	    .image_id = TOS_FW_CONFIG_ID,
163 	    SET_STATIC_PARAM_HEAD(ep_info, PARAM_IMAGE_BINARY,
164 		    VERSION_2, entry_point_info_t, SECURE | NON_EXECUTABLE),
165 	    SET_STATIC_PARAM_HEAD(image_info, PARAM_IMAGE_BINARY,
166 		    VERSION_2, image_info_t, 0),
167 	    .image_info.image_base = TOS_FW_CONFIG_BASE,
168 	    .image_info.image_max_size = TOS_FW_CONFIG_LIMIT -
169 					 TOS_FW_CONFIG_BASE,
170 	    .next_handoff_image_id = INVALID_IMAGE_ID,
171 	},
172 
173 #if SPMD_SPM_AT_SEL2
174 	/* Fill TB_FW_CONFIG related information */
175 	{
176 	    .image_id = TB_FW_CONFIG_ID,
177 	    SET_STATIC_PARAM_HEAD(ep_info, PARAM_IMAGE_BINARY,
178 		    VERSION_2, entry_point_info_t, SECURE | NON_EXECUTABLE),
179 	    SET_STATIC_PARAM_HEAD(image_info, PARAM_IMAGE_BINARY,
180 		    VERSION_2, image_info_t, 0),
181 	    .image_info.image_base = TB_FW_CONFIG_BASE,
182 	    .image_info.image_max_size = TB_FW_CONFIG_LIMIT - TB_FW_CONFIG_BASE,
183 	    .next_handoff_image_id = INVALID_IMAGE_ID,
184 	},
185 
186 	/*
187 	 * Empty entries for SP packages to be filled in according to
188 	 * TB_FW_CONFIG.
189 	 */
190 	SP_PKG_ENTRY(SP_PKG1_ID),
191 	SP_PKG_ENTRY(SP_PKG2_ID),
192 	SP_PKG_ENTRY(SP_PKG3_ID),
193 	SP_PKG_ENTRY(SP_PKG4_ID),
194 	SP_PKG_ENTRY(SP_PKG5_ID),
195 	SP_PKG_ENTRY(SP_PKG6_ID),
196 	SP_PKG_ENTRY(SP_PKG7_ID),
197 	SP_PKG_ENTRY(SP_PKG8_ID),
198 #endif
199 #endif
200 # endif /* QEMU_LOAD_BL32 */
201 
202 	/* Fill BL33 related information */
203 	{ .image_id = BL33_IMAGE_ID,
204 	  SET_STATIC_PARAM_HEAD(ep_info, PARAM_EP, VERSION_2,
205 				entry_point_info_t, NON_SECURE | EXECUTABLE),
206 # ifdef PRELOADED_BL33_BASE
207 	  .ep_info.pc = PRELOADED_BL33_BASE,
208 
209 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2, image_info_t,
210 				IMAGE_ATTRIB_SKIP_LOADING),
211 # else /* PRELOADED_BL33_BASE */
212 	  .ep_info.pc = NS_IMAGE_OFFSET,
213 
214 	  SET_STATIC_PARAM_HEAD(image_info, PARAM_EP, VERSION_2, image_info_t,
215 				0),
216 	  .image_info.image_base = NS_IMAGE_OFFSET,
217 	  .image_info.image_max_size = NS_IMAGE_MAX_SIZE,
218 # endif /* !PRELOADED_BL33_BASE */
219 
220 	  .next_handoff_image_id = INVALID_IMAGE_ID,
221 	}
222 #endif /* !EL3_PAYLOAD_BASE */
223 };
224 
225 REGISTER_BL_IMAGE_DESCS(bl2_mem_params_descs)
226