1 /*
2 * Copyright (c) 2013-2021, 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 <arch.h>
11 #include <arch_features.h>
12 #include <arch_helpers.h>
13 #include <bl31/bl31.h>
14 #include <bl31/ehf.h>
15 #include <common/bl_common.h>
16 #include <common/debug.h>
17 #include <common/runtime_svc.h>
18 #include <drivers/console.h>
19 #include <lib/el3_runtime/context_mgmt.h>
20 #include <lib/pmf/pmf.h>
21 #include <lib/runtime_instr.h>
22 #include <plat/common/platform.h>
23 #include <services/std_svc.h>
24
25 #if ENABLE_RUNTIME_INSTRUMENTATION
26 PMF_REGISTER_SERVICE_SMC(rt_instr_svc, PMF_RT_INSTR_SVC_ID,
27 RT_INSTR_TOTAL_IDS, PMF_STORE_ENABLE)
28 #endif
29
30 /*******************************************************************************
31 * This function pointer is used to initialise the BL32 image. It's initialized
32 * by SPD calling bl31_register_bl32_init after setting up all things necessary
33 * for SP execution. In cases where both SPD and SP are absent, or when SPD
34 * finds it impossible to execute SP, this pointer is left as NULL
35 ******************************************************************************/
36 static int32_t (*bl32_init)(void);
37
38 /*****************************************************************************
39 * Function used to initialise RMM if RME is enabled
40 *****************************************************************************/
41 #if ENABLE_RME
42 static int32_t (*rmm_init)(void);
43 #endif
44
45 /*******************************************************************************
46 * Variable to indicate whether next image to execute after BL31 is BL33
47 * (non-secure & default) or BL32 (secure).
48 ******************************************************************************/
49 static uint32_t next_image_type = NON_SECURE;
50
51 #ifdef SUPPORT_UNKNOWN_MPID
52 /*
53 * Flag to know whether an unsupported MPID has been detected. To avoid having it
54 * landing on the .bss section, it is initialized to a non-zero value, this way
55 * we avoid potential WAW hazards during system bring up.
56 * */
57 volatile uint32_t unsupported_mpid_flag = 1;
58 #endif
59
60 /*
61 * Implement the ARM Standard Service function to get arguments for a
62 * particular service.
63 */
get_arm_std_svc_args(unsigned int svc_mask)64 uintptr_t get_arm_std_svc_args(unsigned int svc_mask)
65 {
66 /* Setup the arguments for PSCI Library */
67 DEFINE_STATIC_PSCI_LIB_ARGS_V1(psci_args, bl31_warm_entrypoint);
68
69 /* PSCI is the only ARM Standard Service implemented */
70 assert(svc_mask == PSCI_FID_MASK);
71
72 return (uintptr_t)&psci_args;
73 }
74
75 /*******************************************************************************
76 * Simple function to initialise all BL31 helper libraries.
77 ******************************************************************************/
bl31_lib_init(void)78 void __init bl31_lib_init(void)
79 {
80 cm_init();
81 }
82
83 /*******************************************************************************
84 * Setup function for BL31.
85 ******************************************************************************/
bl31_setup(u_register_t arg0,u_register_t arg1,u_register_t arg2,u_register_t arg3)86 void bl31_setup(u_register_t arg0, u_register_t arg1, u_register_t arg2,
87 u_register_t arg3)
88 {
89 /* Perform early platform-specific setup */
90 bl31_early_platform_setup2(arg0, arg1, arg2, arg3);
91
92 /* Perform late platform-specific setup */
93 bl31_plat_arch_setup();
94
95 #if ENABLE_FEAT_HCX
96 /*
97 * Assert that FEAT_HCX is supported on this system, without this check
98 * an exception would occur during context save/restore if enabled but
99 * not supported.
100 */
101 assert(is_feat_hcx_present());
102 #endif /* ENABLE_FEAT_HCX */
103
104 #if CTX_INCLUDE_PAUTH_REGS
105 /*
106 * Assert that the ARMv8.3-PAuth registers are present or an access
107 * fault will be triggered when they are being saved or restored.
108 */
109 assert(is_armv8_3_pauth_present());
110 #endif /* CTX_INCLUDE_PAUTH_REGS */
111 }
112
113 /*******************************************************************************
114 * BL31 is responsible for setting up the runtime services for the primary cpu
115 * before passing control to the bootloader or an Operating System. This
116 * function calls runtime_svc_init() which initializes all registered runtime
117 * services. The run time services would setup enough context for the core to
118 * switch to the next exception level. When this function returns, the core will
119 * switch to the programmed exception level via an ERET.
120 ******************************************************************************/
bl31_main(void)121 void bl31_main(void)
122 {
123 NOTICE("BL31: %s\n", version_string);
124 NOTICE("BL31: %s\n", build_message);
125
126 #ifdef SUPPORT_UNKNOWN_MPID
127 if (unsupported_mpid_flag == 0) {
128 NOTICE("Unsupported MPID detected!\n");
129 }
130 #endif
131
132 /* Perform platform setup in BL31 */
133 bl31_platform_setup();
134
135 /* Initialise helper libraries */
136 bl31_lib_init();
137
138 #if EL3_EXCEPTION_HANDLING
139 INFO("BL31: Initialising Exception Handling Framework\n");
140 ehf_init();
141 #endif
142
143 /* Initialize the runtime services e.g. psci. */
144 INFO("BL31: Initializing runtime services\n");
145 runtime_svc_init();
146
147 /*
148 * All the cold boot actions on the primary cpu are done. We now need to
149 * decide which is the next image and how to execute it.
150 * If the SPD runtime service is present, it would want to pass control
151 * to BL32 first in S-EL1. In that case, SPD would have registered a
152 * function to initialize bl32 where it takes responsibility of entering
153 * S-EL1 and returning control back to bl31_main. Similarly, if RME is
154 * enabled and a function is registered to initialize RMM, control is
155 * transferred to RMM in R-EL2. After RMM initialization, control is
156 * returned back to bl31_main. Once this is done we can prepare entry
157 * into BL33 as normal.
158 */
159
160 /*
161 * If SPD had registered an init hook, invoke it.
162 */
163 if (bl32_init != NULL) {
164 INFO("BL31: Initializing BL32\n");
165
166 int32_t rc = (*bl32_init)();
167
168 if (rc == 0) {
169 WARN("BL31: BL32 initialization failed\n");
170 }
171 }
172
173 /*
174 * If RME is enabled and init hook is registered, initialize RMM
175 * in R-EL2.
176 */
177 #if ENABLE_RME
178 if (rmm_init != NULL) {
179 INFO("BL31: Initializing RMM\n");
180
181 int32_t rc = (*rmm_init)();
182
183 if (rc == 0) {
184 WARN("BL31: RMM initialization failed\n");
185 }
186 }
187 #endif
188
189 /*
190 * We are ready to enter the next EL. Prepare entry into the image
191 * corresponding to the desired security state after the next ERET.
192 */
193 bl31_prepare_next_image_entry();
194
195 console_flush();
196
197 /*
198 * Perform any platform specific runtime setup prior to cold boot exit
199 * from BL31
200 */
201 bl31_plat_runtime_setup();
202 }
203
204 /*******************************************************************************
205 * Accessor functions to help runtime services decide which image should be
206 * executed after BL31. This is BL33 or the non-secure bootloader image by
207 * default but the Secure payload dispatcher could override this by requesting
208 * an entry into BL32 (Secure payload) first. If it does so then it should use
209 * the same API to program an entry into BL33 once BL32 initialisation is
210 * complete.
211 ******************************************************************************/
bl31_set_next_image_type(uint32_t security_state)212 void bl31_set_next_image_type(uint32_t security_state)
213 {
214 assert(sec_state_is_valid(security_state));
215 next_image_type = security_state;
216 }
217
bl31_get_next_image_type(void)218 uint32_t bl31_get_next_image_type(void)
219 {
220 return next_image_type;
221 }
222
223 /*******************************************************************************
224 * This function programs EL3 registers and performs other setup to enable entry
225 * into the next image after BL31 at the next ERET.
226 ******************************************************************************/
bl31_prepare_next_image_entry(void)227 void __init bl31_prepare_next_image_entry(void)
228 {
229 entry_point_info_t *next_image_info;
230 uint32_t image_type;
231
232 #if CTX_INCLUDE_AARCH32_REGS
233 /*
234 * Ensure that the build flag to save AArch32 system registers in CPU
235 * context is not set for AArch64-only platforms.
236 */
237 if (el_implemented(1) == EL_IMPL_A64ONLY) {
238 ERROR("EL1 supports AArch64-only. Please set build flag "
239 "CTX_INCLUDE_AARCH32_REGS = 0\n");
240 panic();
241 }
242 #endif
243
244 /* Determine which image to execute next */
245 image_type = bl31_get_next_image_type();
246
247 /* Program EL3 registers to enable entry into the next EL */
248 next_image_info = bl31_plat_get_next_image_ep_info(image_type);
249 assert(next_image_info != NULL);
250 assert(image_type == GET_SECURITY_STATE(next_image_info->h.attr));
251
252 INFO("BL31: Preparing for EL3 exit to %s world\n",
253 (image_type == SECURE) ? "secure" : "normal");
254 print_entry_point_info(next_image_info);
255 cm_init_my_context(next_image_info);
256 cm_prepare_el3_exit(image_type);
257 }
258
259 /*******************************************************************************
260 * This function initializes the pointer to BL32 init function. This is expected
261 * to be called by the SPD after it finishes all its initialization
262 ******************************************************************************/
bl31_register_bl32_init(int32_t (* func)(void))263 void bl31_register_bl32_init(int32_t (*func)(void))
264 {
265 bl32_init = func;
266 }
267
268 #if ENABLE_RME
269 /*******************************************************************************
270 * This function initializes the pointer to RMM init function. This is expected
271 * to be called by the RMMD after it finishes all its initialization
272 ******************************************************************************/
bl31_register_rmm_init(int32_t (* func)(void))273 void bl31_register_rmm_init(int32_t (*func)(void))
274 {
275 rmm_init = func;
276 }
277 #endif
278