xref: /rk3399_ARM-atf/plat/arm/common/arm_bl2_setup.c (revision 0da16fe32f41387f4ad32e96a939c67a3dc8e611)
1 /*
2  * Copyright (c) 2015-2024, 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 <arch_features.h>
13 #include <arch_helpers.h>
14 #include <common/bl_common.h>
15 #include <common/debug.h>
16 #include <common/desc_image_load.h>
17 #include <drivers/generic_delay_timer.h>
18 #include <drivers/partition/partition.h>
19 #include <lib/fconf/fconf.h>
20 #include <lib/fconf/fconf_dyn_cfg_getter.h>
21 #include <lib/gpt_rme/gpt_rme.h>
22 #if TRANSFER_LIST
23 #include <lib/transfer_list.h>
24 #endif
25 #ifdef SPD_opteed
26 #include <lib/optee_utils.h>
27 #endif
28 #include <lib/utils.h>
29 #include <plat/arm/common/plat_arm.h>
30 #include <plat/common/platform.h>
31 
32 /* Data structure which holds the extents of the trusted SRAM for BL2 */
33 static meminfo_t bl2_tzram_layout __aligned(CACHE_WRITEBACK_GRANULE);
34 
35 /* Base address of fw_config received from BL1 */
36 static uintptr_t config_base __unused;
37 
38 /*
39  * Check that BL2_BASE is above ARM_FW_CONFIG_LIMIT. This reserved page is
40  * for `meminfo_t` data structure and fw_configs passed from BL1.
41  */
42 #if TRANSFER_LIST
43 CASSERT(BL2_BASE >= PLAT_ARM_EL3_FW_HANDOFF_BASE + PLAT_ARM_FW_HANDOFF_SIZE,
44 	assert_bl2_base_overflows);
45 #elif !RESET_TO_BL2
46 CASSERT(BL2_BASE >= ARM_FW_CONFIG_LIMIT, assert_bl2_base_overflows);
47 #endif /* TRANSFER_LIST */
48 
49 /* Weak definitions may be overridden in specific ARM standard platform */
50 #pragma weak bl2_early_platform_setup2
51 #pragma weak bl2_platform_setup
52 #pragma weak bl2_plat_arch_setup
53 #pragma weak bl2_plat_sec_mem_layout
54 
55 #if ENABLE_RME
56 #define MAP_BL2_TOTAL		MAP_REGION_FLAT(			\
57 					bl2_tzram_layout.total_base,	\
58 					bl2_tzram_layout.total_size,	\
59 					MT_MEMORY | MT_RW | MT_ROOT)
60 #else
61 #define MAP_BL2_TOTAL		MAP_REGION_FLAT(			\
62 					bl2_tzram_layout.total_base,	\
63 					bl2_tzram_layout.total_size,	\
64 					MT_MEMORY | MT_RW | MT_SECURE)
65 #endif /* ENABLE_RME */
66 
67 #pragma weak arm_bl2_plat_handle_post_image_load
68 
69 struct transfer_list_header *secure_tl __unused;
70 
71 /*******************************************************************************
72  * BL1 has passed the extents of the trusted SRAM that should be visible to BL2
73  * in x0. This memory layout is sitting at the base of the free trusted SRAM.
74  * Copy it to a safe location before its reclaimed by later BL2 functionality.
75  ******************************************************************************/
76 void arm_bl2_early_platform_setup(uintptr_t fw_config,
77 				  struct meminfo *mem_layout)
78 {
79 	struct transfer_list_entry *te __unused;
80 	int __maybe_unused ret;
81 
82 	/* Initialize the console to provide early debug support */
83 	arm_console_boot_init();
84 
85 #if TRANSFER_LIST
86 	// TODO: modify the prototype of this function fw_config != bl2_tl
87 	secure_tl = (struct transfer_list_header *)fw_config;
88 
89 	te = transfer_list_find(secure_tl, TL_TAG_SRAM_LAYOUT64);
90 	assert(te != NULL);
91 
92 	bl2_tzram_layout = *(meminfo_t *)transfer_list_entry_data(te);
93 	transfer_list_rem(secure_tl, te);
94 #else
95 	config_base = fw_config;
96 
97 	/* Setup the BL2 memory layout */
98 	bl2_tzram_layout = *mem_layout;
99 #endif
100 
101 	/* Initialise the IO layer and register platform IO devices */
102 	plat_arm_io_setup();
103 
104 	/* Load partition table */
105 #if ARM_GPT_SUPPORT
106 	ret = gpt_partition_init();
107 	if (ret != 0) {
108 		ERROR("GPT partition initialisation failed!\n");
109 		panic();
110 	}
111 
112 #endif /* ARM_GPT_SUPPORT */
113 }
114 
115 void bl2_early_platform_setup2(u_register_t arg0, u_register_t arg1, u_register_t arg2, u_register_t arg3)
116 {
117 	arm_bl2_early_platform_setup((uintptr_t)arg0, (meminfo_t *)arg1);
118 
119 	generic_delay_timer_init();
120 }
121 
122 /*
123  * Perform  BL2 preload setup. Currently we initialise the dynamic
124  * configuration here.
125  */
126 void bl2_plat_preload_setup(void)
127 {
128 #if TRANSFER_LIST
129 /* Assume the secure TL hasn't been initialised if BL2 is running at EL3. */
130 #if RESET_TO_BL2
131 	secure_tl = transfer_list_ensure((void *)PLAT_ARM_EL3_FW_HANDOFF_BASE,
132 					 PLAT_ARM_FW_HANDOFF_SIZE);
133 
134 	if (secure_tl == NULL) {
135 		ERROR("Secure transfer list initialisation failed!\n");
136 		panic();
137 	}
138 #endif
139 	arm_transfer_list_dyn_cfg_init(secure_tl);
140 #else
141 #if ARM_FW_CONFIG_LOAD_ENABLE
142 	arm_bl2_el3_plat_config_load();
143 #endif /* ARM_FW_CONFIG_LOAD_ENABLE */
144 	arm_bl2_dyn_cfg_init();
145 #endif
146 
147 #if ARM_GPT_SUPPORT && !PSA_FWU_SUPPORT
148 	/* Always use the FIP from bank 0 */
149 	arm_set_fip_addr(0U);
150 #endif /* ARM_GPT_SUPPORT && !PSA_FWU_SUPPORT */
151 }
152 
153 /*
154  * Perform ARM standard platform setup.
155  */
156 void arm_bl2_platform_setup(void)
157 {
158 #if !ENABLE_RME
159 	/* Initialize the secure environment */
160 	plat_arm_security_setup();
161 #endif
162 
163 #if defined(PLAT_ARM_MEM_PROT_ADDR)
164 	arm_nor_psci_do_static_mem_protect();
165 #endif
166 }
167 
168 void bl2_platform_setup(void)
169 {
170 	arm_bl2_platform_setup();
171 }
172 
173 /*******************************************************************************
174  * Perform the very early platform specific architectural setup here.
175  * When RME is enabled the secure environment is initialised before
176  * initialising and enabling Granule Protection.
177  * This function initialises the MMU in a quick and dirty way.
178  ******************************************************************************/
179 void arm_bl2_plat_arch_setup(void)
180 {
181 #if USE_COHERENT_MEM
182 	/* Ensure ARM platforms don't use coherent memory in BL2. */
183 	assert((BL_COHERENT_RAM_END - BL_COHERENT_RAM_BASE) == 0U);
184 #endif
185 
186 	const mmap_region_t bl_regions[] = {
187 		MAP_BL2_TOTAL,
188 		ARM_MAP_BL_RO,
189 #if USE_ROMLIB
190 		ARM_MAP_ROMLIB_CODE,
191 		ARM_MAP_ROMLIB_DATA,
192 #endif
193 #if !TRANSFER_LIST
194 		ARM_MAP_BL_CONFIG_REGION,
195 #endif /* TRANSFER_LIST */
196 #if ENABLE_RME
197 		ARM_MAP_L0_GPT_REGION,
198 #endif
199 		{ 0 }
200 	};
201 
202 #if ENABLE_RME
203 	/* Initialise the secure environment */
204 	plat_arm_security_setup();
205 #endif
206 	setup_page_tables(bl_regions, plat_arm_get_mmap());
207 
208 #ifdef __aarch64__
209 #if ENABLE_RME
210 	/* BL2 runs in EL3 when RME enabled. */
211 	assert(is_feat_rme_present());
212 	enable_mmu_el3(0);
213 
214 	/* Initialise and enable granule protection after MMU. */
215 	arm_gpt_setup();
216 #else
217 	enable_mmu_el1(0);
218 #endif
219 #else
220 	enable_mmu_svc_mon(0);
221 #endif
222 
223 	arm_setup_romlib();
224 }
225 
226 void bl2_plat_arch_setup(void)
227 {
228 	const struct dyn_cfg_dtb_info_t *tb_fw_config_info __unused;
229 	struct transfer_list_entry *te __unused;
230 	arm_bl2_plat_arch_setup();
231 
232 #if TRANSFER_LIST
233 #if CRYPTO_SUPPORT
234 	te = arm_transfer_list_set_heap_info(secure_tl);
235 	transfer_list_rem(secure_tl, te);
236 #endif /* CRYPTO_SUPPORT */
237 #else
238 	/* Fill the properties struct with the info from the config dtb */
239 	fconf_populate("FW_CONFIG", config_base);
240 
241 	/* TB_FW_CONFIG was also loaded by BL1 */
242 	tb_fw_config_info = FCONF_GET_PROPERTY(dyn_cfg, dtb, TB_FW_CONFIG_ID);
243 	assert(tb_fw_config_info != NULL);
244 
245 	fconf_populate("TB_FW", tb_fw_config_info->config_addr);
246 #endif /* TRANSFER_LIST */
247 }
248 
249 int arm_bl2_handle_post_image_load(unsigned int image_id)
250 {
251 	int err = 0;
252 	bl_mem_params_node_t *bl_mem_params = get_bl_mem_params_node(image_id);
253 #ifdef SPD_opteed
254 	bl_mem_params_node_t *pager_mem_params = NULL;
255 	bl_mem_params_node_t *paged_mem_params = NULL;
256 #endif
257 	assert(bl_mem_params != NULL);
258 
259 	switch (image_id) {
260 #ifdef __aarch64__
261 	case BL32_IMAGE_ID:
262 #ifdef SPD_opteed
263 		pager_mem_params = get_bl_mem_params_node(BL32_EXTRA1_IMAGE_ID);
264 		assert(pager_mem_params);
265 
266 		paged_mem_params = get_bl_mem_params_node(BL32_EXTRA2_IMAGE_ID);
267 		assert(paged_mem_params);
268 
269 		err = parse_optee_header(&bl_mem_params->ep_info,
270 				&pager_mem_params->image_info,
271 				&paged_mem_params->image_info);
272 		if (err != 0) {
273 			WARN("OPTEE header parse error.\n");
274 		}
275 #endif
276 		bl_mem_params->ep_info.spsr = arm_get_spsr_for_bl32_entry();
277 		break;
278 #endif
279 
280 	case BL33_IMAGE_ID:
281 		/* BL33 expects to receive the primary CPU MPID (through r0) */
282 		bl_mem_params->ep_info.args.arg0 = 0xffff & read_mpidr();
283 		bl_mem_params->ep_info.spsr = arm_get_spsr_for_bl33_entry();
284 		break;
285 
286 #ifdef SCP_BL2_BASE
287 	case SCP_BL2_IMAGE_ID:
288 		/* The subsequent handling of SCP_BL2 is platform specific */
289 		err = plat_arm_bl2_handle_scp_bl2(&bl_mem_params->image_info);
290 		if (err) {
291 			WARN("Failure in platform-specific handling of SCP_BL2 image.\n");
292 		}
293 		break;
294 #endif
295 	default:
296 		/* Do nothing in default case */
297 		break;
298 	}
299 
300 	return err;
301 }
302 
303 /*******************************************************************************
304  * This function can be used by the platforms to update/use image
305  * information for given `image_id`.
306  ******************************************************************************/
307 int arm_bl2_plat_handle_post_image_load(unsigned int image_id)
308 {
309 #if defined(SPD_spmd) && BL2_ENABLE_SP_LOAD
310 	/* For Secure Partitions we don't need post processing */
311 	if ((image_id >= (MAX_NUMBER_IDS - MAX_SP_IDS)) &&
312 		(image_id < MAX_NUMBER_IDS)) {
313 		return 0;
314 	}
315 #endif
316 
317 #if TRANSFER_LIST
318 	if (image_id == HW_CONFIG_ID) {
319 		/* Refresh the now stale checksum following loading of HW_CONFIG into the TL. */
320 		transfer_list_update_checksum(secure_tl);
321 	}
322 #endif /* TRANSFER_LIST */
323 
324 	return arm_bl2_handle_post_image_load(image_id);
325 }
326 
327 void arm_bl2_setup_next_ep_info(bl_mem_params_node_t *next_param_node)
328 {
329 	entry_point_info_t *ep __unused;
330 	ep = transfer_list_set_handoff_args(secure_tl,
331 					    &next_param_node->ep_info);
332 	assert(ep != NULL);
333 
334 	arm_transfer_list_populate_ep_info(next_param_node, secure_tl);
335 }
336