xref: /rk3399_ARM-atf/plat/arm/common/arm_dyn_cfg.c (revision 40d553cfde38d4f68449c62967cd1ce0d6478750)
1 /*
2  * Copyright (c) 2018, ARM Limited and Contributors. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <assert.h>
8 #include <string.h>
9 
10 #include <platform_def.h>
11 
12 #include <common/debug.h>
13 #include <common/desc_image_load.h>
14 #include <common/tbbr/tbbr_img_def.h>
15 #if TRUSTED_BOARD_BOOT
16 #include <drivers/auth/mbedtls/mbedtls_config.h>
17 #endif
18 #include <plat/arm/common/arm_dyn_cfg_helpers.h>
19 #include <plat/arm/common/plat_arm.h>
20 #include <plat/common/platform.h>
21 
22 /* Variable to store the address to TB_FW_CONFIG passed from BL1 */
23 static void *tb_fw_cfg_dtb;
24 static size_t tb_fw_cfg_dtb_size;
25 
26 
27 #if TRUSTED_BOARD_BOOT
28 
29 static void *mbedtls_heap_addr;
30 static size_t mbedtls_heap_size;
31 
32 /*
33  * This function is the implementation of the shared Mbed TLS heap between
34  * BL1 and BL2 for Arm platforms. The shared heap address is passed from BL1
35  * to BL2 with a pointer. This pointer resides inside the TB_FW_CONFIG file
36  * which is a DTB.
37  *
38  * This function is placed inside an #if directive for the below reasons:
39  *   - To allocate space for the Mbed TLS heap --only if-- Trusted Board Boot
40  *     is enabled.
41  *   - This implementation requires the DTB to be present so that BL1 has a
42  *     mechanism to pass the pointer to BL2.
43  */
44 int arm_get_mbedtls_heap(void **heap_addr, size_t *heap_size)
45 {
46 	assert(heap_addr != NULL);
47 	assert(heap_size != NULL);
48 
49 #if defined(IMAGE_BL1) || BL2_AT_EL3
50 
51 	/* If in BL1 or BL2_AT_EL3 define a heap */
52 	static unsigned char heap[TF_MBEDTLS_HEAP_SIZE];
53 
54 	*heap_addr = heap;
55 	*heap_size = sizeof(heap);
56 	mbedtls_heap_addr = heap;
57 	mbedtls_heap_size = sizeof(heap);
58 
59 #elif defined(IMAGE_BL2)
60 
61 	int err;
62 
63 	/* If in BL2, retrieve the already allocated heap's info from DTB */
64 	if (tb_fw_cfg_dtb != NULL) {
65 		err = arm_get_dtb_mbedtls_heap_info(tb_fw_cfg_dtb, heap_addr,
66 			heap_size);
67 		if (err < 0) {
68 			ERROR("BL2: unable to retrieve shared Mbed TLS heap information from DTB\n");
69 			panic();
70 		}
71 	} else {
72 		ERROR("BL2: DTB missing, cannot get Mbed TLS heap\n");
73 		panic();
74 	}
75 #endif
76 
77 	return 0;
78 }
79 
80 /*
81  * Puts the shared Mbed TLS heap information to the DTB.
82  * Executed only from BL1.
83  */
84 void arm_bl1_set_mbedtls_heap(void)
85 {
86 	int err;
87 
88 	/*
89 	 * If tb_fw_cfg_dtb==NULL then DTB is not present for the current
90 	 * platform. As such, we don't attempt to write to the DTB at all.
91 	 *
92 	 * If mbedtls_heap_addr==NULL, then it means we are using the default
93 	 * heap implementation. As such, BL2 will have its own heap for sure
94 	 * and hence there is no need to pass any information to the DTB.
95 	 *
96 	 * In the latter case, if we still wanted to write in the DTB the heap
97 	 * information, we would need to call plat_get_mbedtls_heap to retrieve
98 	 * the default heap's address and size.
99 	 */
100 	if ((tb_fw_cfg_dtb != NULL) && (mbedtls_heap_addr != NULL)) {
101 		err = arm_set_dtb_mbedtls_heap_info(tb_fw_cfg_dtb,
102 			mbedtls_heap_addr, mbedtls_heap_size);
103 		if (err < 0) {
104 			ERROR("BL1: unable to write shared Mbed TLS heap information to DTB\n");
105 			panic();
106 		}
107 		/*
108 		 * Ensure that the info written to the DTB is visible to other
109 		 * images. It's critical because BL2 won't be able to proceed
110 		 * without the heap info.
111 		 */
112 		flush_dcache_range((uintptr_t)tb_fw_cfg_dtb,
113 			tb_fw_cfg_dtb_size);
114 	}
115 }
116 
117 #endif /* TRUSTED_BOARD_BOOT */
118 
119 /*
120  * Helper function to load TB_FW_CONFIG and populate the load information to
121  * arg0 of BL2 entrypoint info.
122  */
123 void arm_load_tb_fw_config(void)
124 {
125 	int err;
126 	uintptr_t config_base = 0UL;
127 	image_desc_t *desc;
128 
129 	image_desc_t arm_tb_fw_info = {
130 		.image_id = TB_FW_CONFIG_ID,
131 		SET_STATIC_PARAM_HEAD(image_info, PARAM_IMAGE_BINARY,
132 				VERSION_2, image_info_t, 0),
133 		.image_info.image_base = ARM_TB_FW_CONFIG_BASE,
134 		.image_info.image_max_size =
135 			ARM_TB_FW_CONFIG_LIMIT - ARM_TB_FW_CONFIG_BASE
136 	};
137 
138 	VERBOSE("BL1: Loading TB_FW_CONFIG\n");
139 	err = load_auth_image(TB_FW_CONFIG_ID, &arm_tb_fw_info.image_info);
140 	if (err != 0) {
141 		/* Return if TB_FW_CONFIG is not loaded */
142 		VERBOSE("Failed to load TB_FW_CONFIG\n");
143 		return;
144 	}
145 
146 	/* At this point we know that a DTB is indeed available */
147 	config_base = arm_tb_fw_info.image_info.image_base;
148 	tb_fw_cfg_dtb = (void *)config_base;
149 	tb_fw_cfg_dtb_size = (size_t)arm_tb_fw_info.image_info.image_max_size;
150 
151 	/* The BL2 ep_info arg0 is modified to point to TB_FW_CONFIG */
152 	desc = bl1_plat_get_image_desc(BL2_IMAGE_ID);
153 	assert(desc != NULL);
154 	desc->ep_info.args.arg0 = config_base;
155 
156 	INFO("BL1: TB_FW_CONFIG loaded at address = 0x%lx\n", config_base);
157 
158 #if TRUSTED_BOARD_BOOT && defined(DYN_DISABLE_AUTH)
159 	int tb_fw_node;
160 	uint32_t disable_auth = 0;
161 
162 	err = arm_dyn_tb_fw_cfg_init((void *)config_base, &tb_fw_node);
163 	if (err < 0) {
164 		ERROR("Invalid TB_FW_CONFIG loaded\n");
165 		panic();
166 	}
167 
168 	err = arm_dyn_get_disable_auth((void *)config_base, tb_fw_node, &disable_auth);
169 	if (err < 0)
170 		return;
171 
172 	if (disable_auth == 1)
173 		dyn_disable_auth();
174 #endif
175 }
176 
177 /*
178  * BL2 utility function to set the address of TB_FW_CONFIG passed from BL1.
179  */
180 void arm_bl2_set_tb_cfg_addr(void *dtb)
181 {
182 	assert(dtb != NULL);
183 	tb_fw_cfg_dtb = dtb;
184 }
185 
186 /*
187  * BL2 utility function to initialize dynamic configuration specified by
188  * TB_FW_CONFIG. Populate the bl_mem_params_node_t of other FW_CONFIGs if
189  * specified in TB_FW_CONFIG.
190  */
191 void arm_bl2_dyn_cfg_init(void)
192 {
193 	int err = 0, tb_fw_node;
194 	unsigned int i;
195 	bl_mem_params_node_t *cfg_mem_params = NULL;
196 	uint64_t image_base;
197 	uint32_t image_size;
198 	const unsigned int config_ids[] = {
199 			HW_CONFIG_ID,
200 			SOC_FW_CONFIG_ID,
201 			NT_FW_CONFIG_ID,
202 #ifdef SPD_tspd
203 			/* Currently tos_fw_config is only present for TSP */
204 			TOS_FW_CONFIG_ID
205 #endif
206 	};
207 
208 	if (tb_fw_cfg_dtb == NULL) {
209 		VERBOSE("No TB_FW_CONFIG specified\n");
210 		return;
211 	}
212 
213 	err = arm_dyn_tb_fw_cfg_init(tb_fw_cfg_dtb, &tb_fw_node);
214 	if (err < 0) {
215 		ERROR("Invalid TB_FW_CONFIG passed from BL1\n");
216 		panic();
217 	}
218 
219 	/* Iterate through all the fw config IDs */
220 	for (i = 0; i < ARRAY_SIZE(config_ids); i++) {
221 		/* Get the config load address and size from TB_FW_CONFIG */
222 		cfg_mem_params = get_bl_mem_params_node(config_ids[i]);
223 		if (cfg_mem_params == NULL) {
224 			VERBOSE("Couldn't find HW_CONFIG in bl_mem_params_node\n");
225 			continue;
226 		}
227 
228 		err = arm_dyn_get_config_load_info(tb_fw_cfg_dtb, tb_fw_node,
229 				config_ids[i], &image_base, &image_size);
230 		if (err < 0) {
231 			VERBOSE("Couldn't find config_id %d load info in TB_FW_CONFIG\n",
232 					config_ids[i]);
233 			continue;
234 		}
235 
236 		/*
237 		 * Do some runtime checks on the load addresses of soc_fw_config,
238 		 * tos_fw_config, nt_fw_config. This is not a comprehensive check
239 		 * of all invalid addresses but to prevent trivial porting errors.
240 		 */
241 		if (config_ids[i] != HW_CONFIG_ID) {
242 
243 			if (check_uptr_overflow(image_base, image_size))
244 				continue;
245 
246 #ifdef	BL31_BASE
247 			/* Ensure the configs don't overlap with BL31 */
248 			if ((image_base > BL31_BASE) || ((image_base + image_size) > BL31_BASE))
249 				continue;
250 #endif
251 			/* Ensure the configs are loaded in a valid address */
252 			if (image_base < ARM_BL_RAM_BASE)
253 				continue;
254 #ifdef BL32_BASE
255 			/*
256 			 * If BL32 is present, ensure that the configs don't
257 			 * overlap with it.
258 			 */
259 			if (image_base >= BL32_BASE && image_base <= BL32_LIMIT)
260 				continue;
261 #endif
262 		}
263 
264 
265 		cfg_mem_params->image_info.image_base = (uintptr_t)image_base;
266 		cfg_mem_params->image_info.image_max_size = image_size;
267 
268 		/* Remove the IMAGE_ATTRIB_SKIP_LOADING attribute from HW_CONFIG node */
269 		cfg_mem_params->image_info.h.attr &= ~IMAGE_ATTRIB_SKIP_LOADING;
270 	}
271 
272 #if TRUSTED_BOARD_BOOT && defined(DYN_DISABLE_AUTH)
273 	uint32_t disable_auth = 0;
274 
275 	err = arm_dyn_get_disable_auth(tb_fw_cfg_dtb, tb_fw_node,
276 					&disable_auth);
277 	if (err < 0)
278 		return;
279 
280 	if (disable_auth == 1)
281 		dyn_disable_auth();
282 #endif
283 }
284