xref: /optee_os/core/arch/arm/tee/entry_fast.c (revision 8bbd9b374a51a1b8617796aae8a70c271543357f)
1 // SPDX-License-Identifier: BSD-2-Clause
2 /*
3  * Copyright (c) 2015, Linaro Limited
4  * Copyright (c) 2014, STMicroelectronics International N.V.
5  */
6 
7 #include <tee/entry_fast.h>
8 #include <optee_msg.h>
9 #include <sm/optee_smc.h>
10 #include <kernel/generic_boot.h>
11 #include <kernel/tee_l2cc_mutex.h>
12 #include <kernel/virtualization.h>
13 #include <kernel/misc.h>
14 #include <mm/core_mmu.h>
15 
16 #ifdef CFG_CORE_RESERVED_SHM
17 static void tee_entry_get_shm_config(struct thread_smc_args *args)
18 {
19 	args->a0 = OPTEE_SMC_RETURN_OK;
20 	args->a1 = default_nsec_shm_paddr;
21 	args->a2 = default_nsec_shm_size;
22 	/* Should this be TEESMC cache attributes instead? */
23 	args->a3 = core_mmu_is_shm_cached();
24 }
25 #endif
26 
27 static void tee_entry_fastcall_l2cc_mutex(struct thread_smc_args *args)
28 {
29 	TEE_Result ret;
30 #ifdef ARM32
31 	paddr_t pa = 0;
32 
33 	switch (args->a1) {
34 	case OPTEE_SMC_L2CC_MUTEX_GET_ADDR:
35 		ret = tee_get_l2cc_mutex(&pa);
36 		reg_pair_from_64(pa, &args->a2, &args->a3);
37 		break;
38 	case OPTEE_SMC_L2CC_MUTEX_SET_ADDR:
39 		pa = reg_pair_to_64(args->a2, args->a3);
40 		ret = tee_set_l2cc_mutex(&pa);
41 		break;
42 	case OPTEE_SMC_L2CC_MUTEX_ENABLE:
43 		ret = tee_enable_l2cc_mutex();
44 		break;
45 	case OPTEE_SMC_L2CC_MUTEX_DISABLE:
46 		ret = tee_disable_l2cc_mutex();
47 		break;
48 	default:
49 		args->a0 = OPTEE_SMC_RETURN_EBADCMD;
50 		return;
51 	}
52 #else
53 	ret = TEE_ERROR_NOT_SUPPORTED;
54 #endif
55 	if (ret == TEE_ERROR_NOT_SUPPORTED)
56 		args->a0 = OPTEE_SMC_RETURN_UNKNOWN_FUNCTION;
57 	else if (ret)
58 		args->a0 = OPTEE_SMC_RETURN_EBADADDR;
59 	else
60 		args->a0 = OPTEE_SMC_RETURN_OK;
61 }
62 
63 static void tee_entry_exchange_capabilities(struct thread_smc_args *args)
64 {
65 	bool dyn_shm_en = false;
66 
67 	/*
68 	 * Currently we ignore OPTEE_SMC_NSEC_CAP_UNIPROCESSOR.
69 	 *
70 	 * The memory mapping of shared memory is defined as normal
71 	 * shared memory for SMP systems and normal memory for UP
72 	 * systems. Currently we map all memory as shared in secure
73 	 * world.
74 	 *
75 	 * When translation tables are created with shared bit cleared for
76 	 * uniprocessor systems we'll need to check
77 	 * OPTEE_SMC_NSEC_CAP_UNIPROCESSOR.
78 	 */
79 
80 	if (args->a1 & ~OPTEE_SMC_NSEC_CAP_UNIPROCESSOR) {
81 		/* Unknown capability. */
82 		args->a0 = OPTEE_SMC_RETURN_ENOTAVAIL;
83 		return;
84 	}
85 
86 	args->a0 = OPTEE_SMC_RETURN_OK;
87 	args->a1 = 0;
88 #ifdef CFG_CORE_RESERVED_SHM
89 	args->a1 |= OPTEE_SMC_SEC_CAP_HAVE_RESERVED_SHM;
90 #endif
91 #ifdef CFG_VIRTUALIZATION
92 	args->a1 |= OPTEE_SMC_SEC_CAP_VIRTUALIZATION;
93 #endif
94 
95 #if defined(CFG_CORE_DYN_SHM)
96 	dyn_shm_en = core_mmu_nsec_ddr_is_defined();
97 	if (dyn_shm_en)
98 		args->a1 |= OPTEE_SMC_SEC_CAP_DYNAMIC_SHM;
99 #endif
100 
101 	DMSG("Dynamic shared memory is %sabled", dyn_shm_en ? "en" : "dis");
102 }
103 
104 static void tee_entry_disable_shm_cache(struct thread_smc_args *args)
105 {
106 	uint64_t cookie;
107 
108 	if (!thread_disable_prealloc_rpc_cache(&cookie)) {
109 		args->a0 = OPTEE_SMC_RETURN_EBUSY;
110 		return;
111 	}
112 
113 	if (!cookie) {
114 		args->a0 = OPTEE_SMC_RETURN_ENOTAVAIL;
115 		return;
116 	}
117 
118 	args->a0 = OPTEE_SMC_RETURN_OK;
119 	args->a1 = cookie >> 32;
120 	args->a2 = cookie;
121 }
122 
123 static void tee_entry_enable_shm_cache(struct thread_smc_args *args)
124 {
125 	if (thread_enable_prealloc_rpc_cache())
126 		args->a0 = OPTEE_SMC_RETURN_OK;
127 	else
128 		args->a0 = OPTEE_SMC_RETURN_EBUSY;
129 }
130 
131 static void tee_entry_boot_secondary(struct thread_smc_args *args)
132 {
133 #if defined(CFG_BOOT_SECONDARY_REQUEST)
134 	if (!generic_boot_core_release(args->a1, (paddr_t)(args->a3)))
135 		args->a0 = OPTEE_SMC_RETURN_OK;
136 	else
137 		args->a0 = OPTEE_SMC_RETURN_EBADCMD;
138 #else
139 	args->a0 = OPTEE_SMC_RETURN_ENOTAVAIL;
140 #endif
141 }
142 
143 static void tee_entry_get_thread_count(struct thread_smc_args *args)
144 {
145 	args->a0 = OPTEE_SMC_RETURN_OK;
146 	args->a1 = CFG_NUM_THREADS;
147 }
148 
149 #if defined(CFG_VIRTUALIZATION)
150 static void tee_entry_vm_created(struct thread_smc_args *args)
151 {
152 	uint16_t guest_id = args->a1;
153 
154 	/* Only hypervisor can issue this request */
155 	if (args->a7 != HYP_CLNT_ID) {
156 		args->a0 = OPTEE_SMC_RETURN_ENOTAVAIL;
157 		return;
158 	}
159 
160 	args->a0 = virt_guest_created(guest_id);
161 }
162 
163 static void tee_entry_vm_destroyed(struct thread_smc_args *args)
164 {
165 	uint16_t guest_id = args->a1;
166 
167 	/* Only hypervisor can issue this request */
168 	if (args->a7 != HYP_CLNT_ID) {
169 		args->a0 = OPTEE_SMC_RETURN_ENOTAVAIL;
170 		return;
171 	}
172 
173 	args->a0 = virt_guest_destroyed(guest_id);
174 }
175 #endif
176 
177 void tee_entry_fast(struct thread_smc_args *args)
178 {
179 	switch (args->a0) {
180 
181 	/* Generic functions */
182 	case OPTEE_SMC_CALLS_COUNT:
183 		tee_entry_get_api_call_count(args);
184 		break;
185 	case OPTEE_SMC_CALLS_UID:
186 		tee_entry_get_api_uuid(args);
187 		break;
188 	case OPTEE_SMC_CALLS_REVISION:
189 		tee_entry_get_api_revision(args);
190 		break;
191 	case OPTEE_SMC_CALL_GET_OS_UUID:
192 		tee_entry_get_os_uuid(args);
193 		break;
194 	case OPTEE_SMC_CALL_GET_OS_REVISION:
195 		tee_entry_get_os_revision(args);
196 		break;
197 
198 	/* OP-TEE specific SMC functions */
199 #ifdef CFG_CORE_RESERVED_SHM
200 	case OPTEE_SMC_GET_SHM_CONFIG:
201 		tee_entry_get_shm_config(args);
202 		break;
203 #endif
204 	case OPTEE_SMC_L2CC_MUTEX:
205 		tee_entry_fastcall_l2cc_mutex(args);
206 		break;
207 	case OPTEE_SMC_EXCHANGE_CAPABILITIES:
208 		tee_entry_exchange_capabilities(args);
209 		break;
210 	case OPTEE_SMC_DISABLE_SHM_CACHE:
211 		tee_entry_disable_shm_cache(args);
212 		break;
213 	case OPTEE_SMC_ENABLE_SHM_CACHE:
214 		tee_entry_enable_shm_cache(args);
215 		break;
216 	case OPTEE_SMC_BOOT_SECONDARY:
217 		tee_entry_boot_secondary(args);
218 		break;
219 	case OPTEE_SMC_GET_THREAD_COUNT:
220 		tee_entry_get_thread_count(args);
221 		break;
222 
223 #if defined(CFG_VIRTUALIZATION)
224 	case OPTEE_SMC_VM_CREATED:
225 		tee_entry_vm_created(args);
226 		break;
227 	case OPTEE_SMC_VM_DESTROYED:
228 		tee_entry_vm_destroyed(args);
229 		break;
230 #endif
231 
232 	default:
233 		args->a0 = OPTEE_SMC_RETURN_UNKNOWN_FUNCTION;
234 		break;
235 	}
236 }
237 
238 size_t tee_entry_generic_get_api_call_count(void)
239 {
240 	/*
241 	 * All the different calls handled in this file. If the specific
242 	 * target has additional calls it will call this function and
243 	 * add the number of calls the target has added.
244 	 */
245 	size_t ret = 12;
246 
247 #if defined(CFG_VIRTUALIZATION)
248 	ret += 2;
249 #endif
250 
251 	return ret;
252 }
253 
254 void __weak tee_entry_get_api_call_count(struct thread_smc_args *args)
255 {
256 	args->a0 = tee_entry_generic_get_api_call_count();
257 }
258 
259 void __weak tee_entry_get_api_uuid(struct thread_smc_args *args)
260 {
261 	args->a0 = OPTEE_MSG_UID_0;
262 	args->a1 = OPTEE_MSG_UID_1;
263 	args->a2 = OPTEE_MSG_UID_2;
264 	args->a3 = OPTEE_MSG_UID_3;
265 }
266 
267 void __weak tee_entry_get_api_revision(struct thread_smc_args *args)
268 {
269 	args->a0 = OPTEE_MSG_REVISION_MAJOR;
270 	args->a1 = OPTEE_MSG_REVISION_MINOR;
271 }
272 
273 void __weak tee_entry_get_os_uuid(struct thread_smc_args *args)
274 {
275 	args->a0 = OPTEE_MSG_OS_OPTEE_UUID_0;
276 	args->a1 = OPTEE_MSG_OS_OPTEE_UUID_1;
277 	args->a2 = OPTEE_MSG_OS_OPTEE_UUID_2;
278 	args->a3 = OPTEE_MSG_OS_OPTEE_UUID_3;
279 }
280 
281 void __weak tee_entry_get_os_revision(struct thread_smc_args *args)
282 {
283 	args->a0 = CFG_OPTEE_REVISION_MAJOR;
284 	args->a1 = CFG_OPTEE_REVISION_MINOR;
285 	args->a2 = TEE_IMPL_GIT_SHA1;
286 }
287