xref: /optee_os/core/tee/tee_svc.c (revision 77327d7a47019cf9f66972403d0de1c32fe4cdee)
1 // SPDX-License-Identifier: BSD-2-Clause
2 /*
3  * Copyright (c) 2014, STMicroelectronics International N.V.
4  */
5 #include <util.h>
6 #include <kernel/tee_common_otp.h>
7 #include <kernel/tee_common.h>
8 #include <tee_api_types.h>
9 #include <kernel/tee_ta_manager.h>
10 #include <utee_types.h>
11 #include <tee/tee_svc.h>
12 #include <tee/tee_cryp_utl.h>
13 #include <mm/tee_mmu.h>
14 #include <mm/tee_mm.h>
15 #include <mm/core_memprot.h>
16 #include <kernel/tee_time.h>
17 
18 #include <user_ta_header.h>
19 #include <trace.h>
20 #include <kernel/trace_ta.h>
21 #include <kernel/chip_services.h>
22 #include <kernel/pseudo_ta.h>
23 #include <mm/mobj.h>
24 
25 vaddr_t tee_svc_uref_base;
26 
27 void syscall_log(const void *buf __maybe_unused, size_t len __maybe_unused)
28 {
29 #ifdef CFG_TEE_CORE_TA_TRACE
30 	char *kbuf;
31 
32 	if (len == 0)
33 		return;
34 
35 	kbuf = malloc(len + 1);
36 	if (kbuf == NULL)
37 		return;
38 
39 	if (tee_svc_copy_from_user(kbuf, buf, len) == TEE_SUCCESS) {
40 		kbuf[len] = '\0';
41 		trace_ext_puts(kbuf);
42 	}
43 
44 	free(kbuf);
45 #endif
46 }
47 
48 TEE_Result syscall_not_supported(void)
49 {
50 	return TEE_ERROR_NOT_SUPPORTED;
51 }
52 
53 /* Configuration properties */
54 /* API implementation version */
55 static const char api_vers[] = TO_STR(CFG_TEE_API_VERSION);
56 
57 /* Implementation description (implementation-dependent) */
58 static const char descr[] = TO_STR(CFG_TEE_IMPL_DESCR);
59 
60 /*
61  * TA persistent time protection level
62  * 100: Persistent time based on an REE-controlled real-time clock
63  * and on the TEE Trusted Storage for the storage of origins (default).
64  * 1000: Persistent time based on a TEE-controlled real-time clock
65  * and the TEE Trusted Storage.
66  * The real-time clock MUST be out of reach of software attacks
67  * from the REE.
68  */
69 static const uint32_t ta_time_prot_lvl = 100;
70 
71 /* Elliptic Curve Cryptographic support */
72 #ifdef CFG_CRYPTO_ECC
73 static const bool crypto_ecc_en = 1;
74 #else
75 static const bool crypto_ecc_en;
76 #endif
77 
78 /*
79  * Trusted storage anti rollback protection level
80  * 0 (or missing): No antirollback protection (default)
81  * 100: Antirollback enforced at REE level
82  * 1000: Antirollback TEE-controlled hardware
83  */
84 #ifdef CFG_RPMB_FS
85 static const uint32_t ts_antiroll_prot_lvl = 1000;
86 #else
87 static const uint32_t ts_antiroll_prot_lvl;
88 #endif
89 
90 /* Trusted OS implementation version */
91 static const char trustedos_impl_version[] = TO_STR(TEE_IMPL_VERSION);
92 
93 /* Trusted OS implementation version (binary value) */
94 static const uint32_t trustedos_impl_bin_version; /* 0 by default */
95 
96 /* Trusted OS implementation manufacturer name */
97 static const char trustedos_manufacturer[] = TO_STR(CFG_TEE_MANUFACTURER);
98 
99 /* Trusted firmware version */
100 static const char fw_impl_version[] = TO_STR(CFG_TEE_FW_IMPL_VERSION);
101 
102 /* Trusted firmware version (binary value) */
103 static const uint32_t fw_impl_bin_version; /* 0 by default */
104 
105 /* Trusted firmware manufacturer name */
106 static const char fw_manufacturer[] = TO_STR(CFG_TEE_FW_MANUFACTURER);
107 
108 static TEE_Result get_prop_tee_dev_id(struct tee_ta_session *sess __unused,
109 				      void *buf, size_t *blen)
110 {
111 	TEE_Result res;
112 	TEE_UUID uuid;
113 	const size_t nslen = 5;
114 	uint8_t data[5 + FVR_DIE_ID_NUM_REGS * sizeof(uint32_t)] = {
115 	    'O', 'P', 'T', 'E', 'E' };
116 
117 	if (*blen < sizeof(uuid)) {
118 		*blen = sizeof(uuid);
119 		return TEE_ERROR_SHORT_BUFFER;
120 	}
121 	*blen = sizeof(uuid);
122 
123 	if (tee_otp_get_die_id(data + nslen, sizeof(data) - nslen))
124 		return TEE_ERROR_BAD_STATE;
125 
126 	res = tee_hash_createdigest(TEE_ALG_SHA256, data, sizeof(data),
127 				    (uint8_t *)&uuid, sizeof(uuid));
128 	if (res != TEE_SUCCESS)
129 		return TEE_ERROR_BAD_STATE;
130 
131 	/*
132 	 * Changes the random value into and UUID as specifiec
133 	 * in RFC 4122. The magic values are from the example
134 	 * code in the RFC.
135 	 *
136 	 * TEE_UUID is defined slightly different from the RFC,
137 	 * but close enough for our purpose.
138 	 */
139 
140 	uuid.timeHiAndVersion &= 0x0fff;
141 	uuid.timeHiAndVersion |= 5 << 12;
142 
143 	/* uuid.clock_seq_hi_and_reserved in the RFC */
144 	uuid.clockSeqAndNode[0] &= 0x3f;
145 	uuid.clockSeqAndNode[0] |= 0x80;
146 
147 	return tee_svc_copy_to_user(buf, &uuid, sizeof(TEE_UUID));
148 }
149 
150 static TEE_Result get_prop_tee_sys_time_prot_level(
151 			struct tee_ta_session *sess __unused,
152 			void *buf, size_t *blen)
153 {
154 	uint32_t prot;
155 
156 	if (*blen < sizeof(prot)) {
157 		*blen = sizeof(prot);
158 		return TEE_ERROR_SHORT_BUFFER;
159 	}
160 	*blen = sizeof(prot);
161 	prot = tee_time_get_sys_time_protection_level();
162 	return tee_svc_copy_to_user(buf, &prot, sizeof(prot));
163 }
164 
165 static TEE_Result get_prop_client_id(struct tee_ta_session *sess __unused,
166 				     void *buf, size_t *blen)
167 {
168 	if (*blen < sizeof(TEE_Identity)) {
169 		*blen = sizeof(TEE_Identity);
170 		return TEE_ERROR_SHORT_BUFFER;
171 	}
172 	*blen = sizeof(TEE_Identity);
173 	return tee_svc_copy_to_user(buf, &sess->clnt_id, sizeof(TEE_Identity));
174 }
175 
176 static TEE_Result get_prop_ta_app_id(struct tee_ta_session *sess,
177 				     void *buf, size_t *blen)
178 {
179 	if (*blen < sizeof(TEE_UUID)) {
180 		*blen = sizeof(TEE_UUID);
181 		return TEE_ERROR_SHORT_BUFFER;
182 	}
183 	*blen = sizeof(TEE_UUID);
184 	return tee_svc_copy_to_user(buf, &sess->ctx->uuid, sizeof(TEE_UUID));
185 }
186 
187 /* Properties of the set TEE_PROPSET_CURRENT_CLIENT */
188 const struct tee_props tee_propset_client[] = {
189 	{
190 		.name = "gpd.client.identity",
191 		.prop_type = USER_TA_PROP_TYPE_IDENTITY,
192 		.get_prop_func = get_prop_client_id
193 	},
194 };
195 
196 /* Properties of the set TEE_PROPSET_CURRENT_TA */
197 const struct tee_props tee_propset_ta[] = {
198 	{
199 		.name = "gpd.ta.appID",
200 		.prop_type = USER_TA_PROP_TYPE_UUID,
201 		.get_prop_func = get_prop_ta_app_id
202 	},
203 
204 	/*
205 	 * Following properties are processed directly in libutee:
206 	 *	TA_PROP_STR_SINGLE_INSTANCE
207 	 *	TA_PROP_STR_MULTI_SESSION
208 	 *	TA_PROP_STR_KEEP_ALIVE
209 	 *	TA_PROP_STR_DATA_SIZE
210 	 *	TA_PROP_STR_STACK_SIZE
211 	 *	TA_PROP_STR_VERSION
212 	 *	TA_PROP_STR_DESCRIPTION
213 	 *	USER_TA_PROP_TYPE_STRING,
214 	 *	TA_DESCRIPTION
215 	 */
216 };
217 
218 /* Properties of the set TEE_PROPSET_TEE_IMPLEMENTATION */
219 const struct tee_props tee_propset_tee[] = {
220 	{
221 		.name = "gpd.tee.apiversion",
222 		.prop_type = USER_TA_PROP_TYPE_STRING,
223 		.data = api_vers,
224 		.len = sizeof(api_vers),
225 	},
226 	{
227 		.name = "gpd.tee.description",
228 		.prop_type = USER_TA_PROP_TYPE_STRING,
229 		.data = descr, .len = sizeof(descr)
230 	},
231 	{
232 		.name = "gpd.tee.deviceID",
233 		.prop_type = USER_TA_PROP_TYPE_UUID,
234 		.get_prop_func = get_prop_tee_dev_id
235 	},
236 	{
237 		.name = "gpd.tee.systemTime.protectionLevel",
238 		.prop_type = USER_TA_PROP_TYPE_U32,
239 		.get_prop_func = get_prop_tee_sys_time_prot_level
240 	},
241 	{
242 		.name = "gpd.tee.TAPersistentTime.protectionLevel",
243 		.prop_type = USER_TA_PROP_TYPE_U32,
244 		.data = &ta_time_prot_lvl,
245 		.len = sizeof(ta_time_prot_lvl)
246 	},
247 	{
248 		.name = "gpd.tee.cryptography.ecc",
249 		.prop_type = USER_TA_PROP_TYPE_BOOL,
250 		.data = &crypto_ecc_en,
251 		.len = sizeof(crypto_ecc_en)
252 	},
253 	{
254 		.name = "gpd.tee.trustedStorage.antiRollback.protectionLevel",
255 		.prop_type = USER_TA_PROP_TYPE_U32,
256 		.data = &ts_antiroll_prot_lvl,
257 		.len = sizeof(ts_antiroll_prot_lvl)
258 	},
259 	{
260 		.name = "gpd.tee.trustedos.implementation.version",
261 		.prop_type = USER_TA_PROP_TYPE_STRING,
262 		.data = trustedos_impl_version,
263 		.len = sizeof(trustedos_impl_version)
264 	},
265 	{
266 		.name = "gpd.tee.trustedos.implementation.binaryversion",
267 		.prop_type = USER_TA_PROP_TYPE_U32,
268 		.data = &trustedos_impl_bin_version,
269 		.len = sizeof(trustedos_impl_bin_version)
270 	},
271 	{
272 		.name = "gpd.tee.trustedos.manufacturer",
273 		.prop_type = USER_TA_PROP_TYPE_STRING,
274 		.data = trustedos_manufacturer,
275 		.len = sizeof(trustedos_manufacturer)
276 	},
277 	{
278 		.name = "gpd.tee.firmware.implementation.version",
279 		.prop_type = USER_TA_PROP_TYPE_STRING,
280 		.data = fw_impl_version,
281 		.len = sizeof(fw_impl_version)
282 	},
283 	{
284 		.name = "gpd.tee.firmware.implementation.binaryversion",
285 		.prop_type = USER_TA_PROP_TYPE_U32,
286 		.data = &fw_impl_bin_version,
287 		.len = sizeof(fw_impl_bin_version)
288 	},
289 	{
290 		.name = "gpd.tee.firmware.manufacturer",
291 		.prop_type = USER_TA_PROP_TYPE_STRING,
292 		.data = fw_manufacturer,
293 		.len = sizeof(fw_manufacturer)
294 	},
295 
296 	/*
297 	 * Following properties are processed directly in libutee:
298 	 *	gpd.tee.arith.maxBigIntSize
299 	 */
300 };
301 
302 __weak const struct tee_vendor_props vendor_props_client;
303 __weak const struct tee_vendor_props vendor_props_ta;
304 __weak const struct tee_vendor_props vendor_props_tee;
305 
306 static void get_prop_set(unsigned long prop_set,
307 			 const struct tee_props **props,
308 			 size_t *size,
309 			 const struct tee_props **vendor_props,
310 			 size_t *vendor_size)
311 {
312 	if ((TEE_PropSetHandle)prop_set == TEE_PROPSET_CURRENT_CLIENT) {
313 		*props = tee_propset_client;
314 		*size = ARRAY_SIZE(tee_propset_client);
315 		*vendor_props = vendor_props_client.props;
316 		*vendor_size = vendor_props_client.len;
317 	} else if ((TEE_PropSetHandle)prop_set == TEE_PROPSET_CURRENT_TA) {
318 		*props = tee_propset_ta;
319 		*size = ARRAY_SIZE(tee_propset_ta);
320 		*vendor_props = vendor_props_ta.props;
321 		*vendor_size = vendor_props_ta.len;
322 	} else if ((TEE_PropSetHandle)prop_set ==
323 		   TEE_PROPSET_TEE_IMPLEMENTATION) {
324 		*props = tee_propset_tee;
325 		*size = ARRAY_SIZE(tee_propset_tee);
326 		*vendor_props = vendor_props_tee.props;
327 		*vendor_size = vendor_props_tee.len;
328 	} else {
329 		*props = NULL;
330 		*size = 0;
331 		*vendor_props = NULL;
332 		*vendor_size = 0;
333 	}
334 }
335 
336 static const struct tee_props *get_prop_struct(unsigned long prop_set,
337 					       unsigned long index)
338 {
339 	const struct tee_props *props;
340 	const struct tee_props *vendor_props;
341 	size_t size;
342 	size_t vendor_size;
343 
344 	get_prop_set(prop_set, &props, &size, &vendor_props, &vendor_size);
345 
346 	if (index < size)
347 		return &(props[index]);
348 	index -= size;
349 
350 	if (index < vendor_size)
351 		return &(vendor_props[index]);
352 
353 	return NULL;
354 }
355 
356 /*
357  * prop_set is part of TEE_PROPSET_xxx
358  * index is the index in the Property Set to retrieve
359  * if name is not NULL, the name of "index" property is returned
360  * if buf is not NULL, the property is returned
361  */
362 TEE_Result syscall_get_property(unsigned long prop_set,
363 				unsigned long index,
364 				void *name, uint32_t *name_len,
365 				void *buf, uint32_t *blen,
366 				uint32_t *prop_type)
367 {
368 	struct tee_ta_session *sess;
369 	TEE_Result res;
370 	TEE_Result res2;
371 	const struct tee_props *prop;
372 	uint32_t klen;
373 	size_t klen_size;
374 	uint32_t elen;
375 
376 	prop = get_prop_struct(prop_set, index);
377 	if (!prop)
378 		return TEE_ERROR_ITEM_NOT_FOUND;
379 
380 	res = tee_ta_get_current_session(&sess);
381 	if (res != TEE_SUCCESS)
382 		return res;
383 
384 	/* Get the property type */
385 	if (prop_type) {
386 		res = tee_svc_copy_to_user(prop_type, &prop->prop_type,
387 					   sizeof(*prop_type));
388 		if (res != TEE_SUCCESS)
389 			return res;
390 	}
391 
392 	/* Get the property */
393 	if (buf && blen) {
394 		res = tee_svc_copy_from_user(&klen, blen, sizeof(klen));
395 		if (res != TEE_SUCCESS)
396 			return res;
397 
398 		if (prop->get_prop_func) {
399 			klen_size = klen;
400 			res = prop->get_prop_func(sess, buf, &klen_size);
401 			klen = klen_size;
402 			res2 = tee_svc_copy_to_user(blen, &klen, sizeof(*blen));
403 		} else {
404 			if (klen < prop->len)
405 				res = TEE_ERROR_SHORT_BUFFER;
406 			else
407 				res = tee_svc_copy_to_user(buf, prop->data,
408 							   prop->len);
409 			res2 = tee_svc_copy_to_user(blen, &prop->len,
410 						    sizeof(*blen));
411 		}
412 		if (res2 != TEE_SUCCESS)
413 			return res2;
414 		if (res != TEE_SUCCESS)
415 			return res;
416 	}
417 
418 	/* Get the property name */
419 	if (name && name_len) {
420 		res = tee_svc_copy_from_user(&klen, name_len, sizeof(klen));
421 		if (res != TEE_SUCCESS)
422 			return res;
423 
424 		elen = strlen(prop->name) + 1;
425 
426 		if (klen < elen)
427 			res = TEE_ERROR_SHORT_BUFFER;
428 		else
429 			res = tee_svc_copy_to_user(name, prop->name, elen);
430 		res2 = tee_svc_copy_to_user(name_len, &elen, sizeof(*name_len));
431 		if (res2 != TEE_SUCCESS)
432 			return res2;
433 		if (res != TEE_SUCCESS)
434 			return res;
435 	}
436 
437 	return res;
438 }
439 
440 /*
441  * prop_set is part of TEE_PROPSET_xxx
442  */
443 TEE_Result syscall_get_property_name_to_index(unsigned long prop_set,
444 					      void *name,
445 					      unsigned long name_len,
446 					      uint32_t *index)
447 {
448 	TEE_Result res;
449 	struct tee_ta_session *sess;
450 	const struct tee_props *props;
451 	size_t size;
452 	const struct tee_props *vendor_props;
453 	size_t vendor_size;
454 	char *kname = 0;
455 	uint32_t i;
456 
457 	get_prop_set(prop_set, &props, &size, &vendor_props, &vendor_size);
458 	if (!props)
459 		return TEE_ERROR_ITEM_NOT_FOUND;
460 
461 	res = tee_ta_get_current_session(&sess);
462 	if (res != TEE_SUCCESS)
463 		goto out;
464 
465 	if (!name || !name_len) {
466 		res = TEE_ERROR_BAD_PARAMETERS;
467 		goto out;
468 	}
469 
470 	kname = malloc(name_len);
471 	if (!kname)
472 		return TEE_ERROR_OUT_OF_MEMORY;
473 	res = tee_svc_copy_from_user(kname, name, name_len);
474 	if (res != TEE_SUCCESS)
475 		goto out;
476 	kname[name_len - 1] = 0;
477 
478 	res = TEE_ERROR_ITEM_NOT_FOUND;
479 	for (i = 0; i < size; i++) {
480 		if (!strcmp(kname, props[i].name)) {
481 			res = tee_svc_copy_to_user(index, &i, sizeof(*index));
482 			goto out;
483 		}
484 	}
485 	for (i = size; i < size + vendor_size; i++) {
486 		if (!strcmp(kname, vendor_props[i - size].name)) {
487 			res = tee_svc_copy_to_user(index, &i, sizeof(*index));
488 			goto out;
489 		}
490 	}
491 
492 out:
493 	free(kname);
494 	return res;
495 }
496 
497 static TEE_Result utee_param_to_param(struct user_ta_ctx *utc,
498 				      struct tee_ta_param *p,
499 				      struct utee_params *up)
500 {
501 	size_t n;
502 	uint32_t types = up->types;
503 
504 	p->types = types;
505 	for (n = 0; n < TEE_NUM_PARAMS; n++) {
506 		uintptr_t a = up->vals[n * 2];
507 		size_t b = up->vals[n * 2 + 1];
508 		uint32_t flags = TEE_MEMORY_ACCESS_READ |
509 				 TEE_MEMORY_ACCESS_ANY_OWNER;
510 
511 		switch (TEE_PARAM_TYPE_GET(types, n)) {
512 		case TEE_PARAM_TYPE_MEMREF_OUTPUT:
513 		case TEE_PARAM_TYPE_MEMREF_INOUT:
514 			flags |= TEE_MEMORY_ACCESS_WRITE;
515 			/*FALLTHROUGH*/
516 		case TEE_PARAM_TYPE_MEMREF_INPUT:
517 			p->u[n].mem.mobj = &mobj_virt;
518 			p->u[n].mem.offs = a;
519 			p->u[n].mem.size = b;
520 			if (tee_mmu_check_access_rights(utc, flags, a, b))
521 				return TEE_ERROR_ACCESS_DENIED;
522 			break;
523 		case TEE_PARAM_TYPE_VALUE_INPUT:
524 		case TEE_PARAM_TYPE_VALUE_INOUT:
525 			p->u[n].val.a = a;
526 			p->u[n].val.b = b;
527 			break;
528 		default:
529 			memset(&p->u[n], 0, sizeof(p->u[n]));
530 			break;
531 		}
532 	}
533 
534 	return TEE_SUCCESS;
535 }
536 
537 static TEE_Result alloc_temp_sec_mem(size_t size, struct mobj **mobj,
538 				     uint8_t **va)
539 {
540 	/* Allocate section in secure DDR */
541 #ifdef CFG_PAGED_USER_TA
542 	*mobj = mobj_seccpy_shm_alloc(size);
543 #else
544 	*mobj = mobj_mm_alloc(mobj_sec_ddr, size, &tee_mm_sec_ddr);
545 #endif
546 	if (!*mobj)
547 		return TEE_ERROR_GENERIC;
548 
549 	*va = mobj_get_va(*mobj, 0);
550 	return TEE_SUCCESS;
551 }
552 
553 /*
554  * TA invokes some TA with parameter.
555  * If some parameters are memory references:
556  * - either the memref is inside TA private RAM: TA is not allowed to expose
557  *   its private RAM: use a temporary memory buffer and copy the data.
558  * - or the memref is not in the TA private RAM:
559  *   - if the memref was mapped to the TA, TA is allowed to expose it.
560  *   - if so, converts memref virtual address into a physical address.
561  */
562 static TEE_Result tee_svc_copy_param(struct tee_ta_session *sess,
563 				     struct tee_ta_session *called_sess,
564 				     struct utee_params *callee_params,
565 				     struct tee_ta_param *param,
566 				     void *tmp_buf_va[TEE_NUM_PARAMS],
567 				     struct mobj **mobj_tmp)
568 {
569 	size_t n;
570 	TEE_Result res;
571 	size_t req_mem = 0;
572 	size_t s;
573 	uint8_t *dst = 0;
574 	bool ta_private_memref[TEE_NUM_PARAMS];
575 	struct user_ta_ctx *utc = to_user_ta_ctx(sess->ctx);
576 	void *va;
577 	size_t dst_offs;
578 
579 	/* fill 'param' input struct with caller params description buffer */
580 	if (!callee_params) {
581 		memset(param, 0, sizeof(*param));
582 	} else {
583 		res = tee_mmu_check_access_rights(utc,
584 			TEE_MEMORY_ACCESS_READ | TEE_MEMORY_ACCESS_ANY_OWNER,
585 			(uaddr_t)callee_params, sizeof(struct utee_params));
586 		if (res != TEE_SUCCESS)
587 			return res;
588 		res = utee_param_to_param(utc, param, callee_params);
589 		if (res != TEE_SUCCESS)
590 			return res;
591 	}
592 
593 	if (called_sess && is_pseudo_ta_ctx(called_sess->ctx)) {
594 		/* pseudo TA borrows the mapping of the calling TA */
595 		return TEE_SUCCESS;
596 	}
597 
598 	/* All mobj in param are of type MOJB_TYPE_VIRT */
599 
600 	for (n = 0; n < TEE_NUM_PARAMS; n++) {
601 
602 		ta_private_memref[n] = false;
603 
604 		switch (TEE_PARAM_TYPE_GET(param->types, n)) {
605 		case TEE_PARAM_TYPE_MEMREF_INPUT:
606 		case TEE_PARAM_TYPE_MEMREF_OUTPUT:
607 		case TEE_PARAM_TYPE_MEMREF_INOUT:
608 			va = (void *)param->u[n].mem.offs;
609 			s = param->u[n].mem.size;
610 			if (!va) {
611 				if (s)
612 					return TEE_ERROR_BAD_PARAMETERS;
613 				break;
614 			}
615 			/* uTA cannot expose its private memory */
616 			if (tee_mmu_is_vbuf_inside_ta_private(utc, va, s)) {
617 
618 				s = ROUNDUP(s, sizeof(uint32_t));
619 				if (ADD_OVERFLOW(req_mem, s, &req_mem))
620 					return TEE_ERROR_BAD_PARAMETERS;
621 				ta_private_memref[n] = true;
622 				break;
623 			}
624 
625 			res = tee_mmu_vbuf_to_mobj_offs(utc, va, s,
626 							&param->u[n].mem.mobj,
627 							&param->u[n].mem.offs);
628 			if (res != TEE_SUCCESS)
629 				return res;
630 			break;
631 		default:
632 			break;
633 		}
634 	}
635 
636 	if (req_mem == 0)
637 		return TEE_SUCCESS;
638 
639 	res = alloc_temp_sec_mem(req_mem, mobj_tmp, &dst);
640 	if (res != TEE_SUCCESS)
641 		return res;
642 	dst_offs = 0;
643 
644 	for (n = 0; n < TEE_NUM_PARAMS; n++) {
645 
646 		if (!ta_private_memref[n])
647 			continue;
648 
649 		s = ROUNDUP(param->u[n].mem.size, sizeof(uint32_t));
650 
651 		switch (TEE_PARAM_TYPE_GET(param->types, n)) {
652 		case TEE_PARAM_TYPE_MEMREF_INPUT:
653 		case TEE_PARAM_TYPE_MEMREF_INOUT:
654 			va = (void *)param->u[n].mem.offs;
655 			if (va) {
656 				res = tee_svc_copy_from_user(dst, va,
657 						param->u[n].mem.size);
658 				if (res != TEE_SUCCESS)
659 					return res;
660 				param->u[n].mem.offs = dst_offs;
661 				param->u[n].mem.mobj = *mobj_tmp;
662 				tmp_buf_va[n] = dst;
663 				dst += s;
664 				dst_offs += s;
665 			}
666 			break;
667 
668 		case TEE_PARAM_TYPE_MEMREF_OUTPUT:
669 			va = (void *)param->u[n].mem.offs;
670 			if (va) {
671 				param->u[n].mem.offs = dst_offs;
672 				param->u[n].mem.mobj = *mobj_tmp;
673 				tmp_buf_va[n] = dst;
674 				dst += s;
675 				dst_offs += s;
676 			}
677 			break;
678 
679 		default:
680 			continue;
681 		}
682 	}
683 
684 	return TEE_SUCCESS;
685 }
686 
687 /*
688  * Back from execution of service: update parameters passed from TA:
689  * If some parameters were memory references:
690  * - either the memref was temporary: copy back data and update size
691  * - or it was the original TA memref: update only the size value.
692  */
693 static TEE_Result tee_svc_update_out_param(
694 		struct tee_ta_param *param,
695 		void *tmp_buf_va[TEE_NUM_PARAMS],
696 		struct utee_params *usr_param)
697 {
698 	size_t n;
699 	uint64_t *vals = usr_param->vals;
700 
701 	for (n = 0; n < TEE_NUM_PARAMS; n++) {
702 		switch (TEE_PARAM_TYPE_GET(param->types, n)) {
703 		case TEE_PARAM_TYPE_MEMREF_OUTPUT:
704 		case TEE_PARAM_TYPE_MEMREF_INOUT:
705 			/*
706 			 * Memory copy is only needed if there's a temporary
707 			 * buffer involved, tmp_buf_va[n] is only update if
708 			 * a temporary buffer is used. Otherwise only the
709 			 * size needs to be updated.
710 			 */
711 			if (tmp_buf_va[n] &&
712 			    param->u[n].mem.size <= vals[n * 2 + 1]) {
713 				void *src = tmp_buf_va[n];
714 				void *dst = (void *)(uintptr_t)vals[n * 2];
715 				TEE_Result res;
716 
717 				res = tee_svc_copy_to_user(dst, src,
718 						 param->u[n].mem.size);
719 				if (res != TEE_SUCCESS)
720 					return res;
721 
722 			}
723 			usr_param->vals[n * 2 + 1] = param->u[n].mem.size;
724 			break;
725 
726 		case TEE_PARAM_TYPE_VALUE_OUTPUT:
727 		case TEE_PARAM_TYPE_VALUE_INOUT:
728 			vals[n * 2] = param->u[n].val.a;
729 			vals[n * 2 + 1] = param->u[n].val.b;
730 			break;
731 
732 		default:
733 			continue;
734 		}
735 	}
736 
737 	return TEE_SUCCESS;
738 }
739 
740 /* Called when a TA calls an OpenSession on another TA */
741 TEE_Result syscall_open_ta_session(const TEE_UUID *dest,
742 			unsigned long cancel_req_to,
743 			struct utee_params *usr_param, uint32_t *ta_sess,
744 			uint32_t *ret_orig)
745 {
746 	TEE_Result res;
747 	uint32_t ret_o = TEE_ORIGIN_TEE;
748 	struct tee_ta_session *s = NULL;
749 	struct tee_ta_session *sess;
750 	struct mobj *mobj_param = NULL;
751 	TEE_UUID *uuid = malloc(sizeof(TEE_UUID));
752 	struct tee_ta_param *param = malloc(sizeof(struct tee_ta_param));
753 	TEE_Identity *clnt_id = malloc(sizeof(TEE_Identity));
754 	void *tmp_buf_va[TEE_NUM_PARAMS] = { NULL };
755 	struct user_ta_ctx *utc;
756 
757 	if (uuid == NULL || param == NULL || clnt_id == NULL) {
758 		res = TEE_ERROR_OUT_OF_MEMORY;
759 		goto out_free_only;
760 	}
761 
762 	memset(param, 0, sizeof(struct tee_ta_param));
763 
764 	res = tee_ta_get_current_session(&sess);
765 	if (res != TEE_SUCCESS)
766 		goto out_free_only;
767 	utc = to_user_ta_ctx(sess->ctx);
768 
769 	res = tee_svc_copy_from_user(uuid, dest, sizeof(TEE_UUID));
770 	if (res != TEE_SUCCESS)
771 		goto function_exit;
772 
773 	clnt_id->login = TEE_LOGIN_TRUSTED_APP;
774 	memcpy(&clnt_id->uuid, &sess->ctx->uuid, sizeof(TEE_UUID));
775 
776 	res = tee_svc_copy_param(sess, NULL, usr_param, param, tmp_buf_va,
777 				 &mobj_param);
778 	if (res != TEE_SUCCESS)
779 		goto function_exit;
780 
781 	res = tee_ta_open_session(&ret_o, &s, &utc->open_sessions, uuid,
782 				  clnt_id, cancel_req_to, param);
783 	tee_mmu_set_ctx(&utc->ctx);
784 	if (res != TEE_SUCCESS)
785 		goto function_exit;
786 
787 	res = tee_svc_update_out_param(param, tmp_buf_va, usr_param);
788 
789 function_exit:
790 	mobj_free(mobj_param);
791 	if (res == TEE_SUCCESS)
792 		tee_svc_copy_to_user(ta_sess, &s->id, sizeof(s->id));
793 	tee_svc_copy_to_user(ret_orig, &ret_o, sizeof(ret_o));
794 
795 out_free_only:
796 	free(param);
797 	free(uuid);
798 	free(clnt_id);
799 	return res;
800 }
801 
802 TEE_Result syscall_close_ta_session(unsigned long ta_sess)
803 {
804 	TEE_Result res;
805 	struct tee_ta_session *sess;
806 	TEE_Identity clnt_id;
807 	struct tee_ta_session *s = NULL;
808 	struct user_ta_ctx *utc;
809 
810 	res = tee_ta_get_current_session(&sess);
811 	if (res != TEE_SUCCESS)
812 		return res;
813 	utc = to_user_ta_ctx(sess->ctx);
814 	s = tee_ta_find_session(ta_sess, &utc->open_sessions);
815 
816 	clnt_id.login = TEE_LOGIN_TRUSTED_APP;
817 	memcpy(&clnt_id.uuid, &sess->ctx->uuid, sizeof(TEE_UUID));
818 
819 	return tee_ta_close_session(s, &utc->open_sessions, &clnt_id);
820 }
821 
822 TEE_Result syscall_invoke_ta_command(unsigned long ta_sess,
823 			unsigned long cancel_req_to, unsigned long cmd_id,
824 			struct utee_params *usr_param, uint32_t *ret_orig)
825 {
826 	TEE_Result res;
827 	TEE_Result res2;
828 	uint32_t ret_o = TEE_ORIGIN_TEE;
829 	struct tee_ta_param param = { 0 };
830 	TEE_Identity clnt_id;
831 	struct tee_ta_session *sess;
832 	struct tee_ta_session *called_sess;
833 	struct mobj *mobj_param = NULL;
834 	void *tmp_buf_va[TEE_NUM_PARAMS] = { NULL };
835 	struct user_ta_ctx *utc;
836 
837 	res = tee_ta_get_current_session(&sess);
838 	if (res != TEE_SUCCESS)
839 		return res;
840 	utc = to_user_ta_ctx(sess->ctx);
841 
842 	called_sess = tee_ta_get_session((uint32_t)ta_sess, true,
843 				&utc->open_sessions);
844 	if (!called_sess)
845 		return TEE_ERROR_BAD_PARAMETERS;
846 
847 	clnt_id.login = TEE_LOGIN_TRUSTED_APP;
848 	memcpy(&clnt_id.uuid, &sess->ctx->uuid, sizeof(TEE_UUID));
849 
850 	res = tee_svc_copy_param(sess, called_sess, usr_param, &param,
851 				 tmp_buf_va, &mobj_param);
852 	if (res != TEE_SUCCESS)
853 		goto function_exit;
854 
855 	res = tee_ta_invoke_command(&ret_o, called_sess, &clnt_id,
856 				    cancel_req_to, cmd_id, &param);
857 
858 	res2 = tee_svc_update_out_param(&param, tmp_buf_va, usr_param);
859 	if (res2 != TEE_SUCCESS) {
860 		/*
861 		 * Spec for TEE_InvokeTACommand() says:
862 		 * "If the return origin is different from
863 		 * TEE_ORIGIN_TRUSTED_APP, then the function has failed
864 		 * before it could reach the destination Trusted
865 		 * Application."
866 		 *
867 		 * But if we can't update params to the caller we have no
868 		 * choice we need to return some error to indicate that
869 		 * parameters aren't updated as expected.
870 		 */
871 		ret_o = TEE_ORIGIN_TEE;
872 		res = res2;
873 	}
874 
875 function_exit:
876 	tee_ta_put_session(called_sess);
877 	mobj_free(mobj_param);
878 	if (ret_orig)
879 		tee_svc_copy_to_user(ret_orig, &ret_o, sizeof(ret_o));
880 	return res;
881 }
882 
883 TEE_Result syscall_check_access_rights(unsigned long flags, const void *buf,
884 				       size_t len)
885 {
886 	TEE_Result res;
887 	struct tee_ta_session *s;
888 
889 	res = tee_ta_get_current_session(&s);
890 	if (res != TEE_SUCCESS)
891 		return res;
892 
893 	return tee_mmu_check_access_rights(to_user_ta_ctx(s->ctx), flags,
894 					   (uaddr_t)buf, len);
895 }
896 
897 TEE_Result tee_svc_copy_from_user(void *kaddr, const void *uaddr, size_t len)
898 {
899 	TEE_Result res;
900 	struct tee_ta_session *s;
901 
902 	res = tee_ta_get_current_session(&s);
903 	if (res != TEE_SUCCESS)
904 		return res;
905 
906 	res = tee_mmu_check_access_rights(to_user_ta_ctx(s->ctx),
907 					TEE_MEMORY_ACCESS_READ |
908 					TEE_MEMORY_ACCESS_ANY_OWNER,
909 					(uaddr_t)uaddr, len);
910 	if (res != TEE_SUCCESS)
911 		return res;
912 
913 	memcpy(kaddr, uaddr, len);
914 	return TEE_SUCCESS;
915 }
916 
917 TEE_Result tee_svc_copy_to_user(void *uaddr, const void *kaddr, size_t len)
918 {
919 	TEE_Result res;
920 	struct tee_ta_session *s;
921 
922 	res = tee_ta_get_current_session(&s);
923 	if (res != TEE_SUCCESS)
924 		return res;
925 
926 	res = tee_mmu_check_access_rights(to_user_ta_ctx(s->ctx),
927 					TEE_MEMORY_ACCESS_WRITE |
928 					TEE_MEMORY_ACCESS_ANY_OWNER,
929 					(uaddr_t)uaddr, len);
930 	if (res != TEE_SUCCESS)
931 		return res;
932 
933 	memcpy(uaddr, kaddr, len);
934 	return TEE_SUCCESS;
935 }
936 
937 TEE_Result tee_svc_copy_kaddr_to_uref(uint32_t *uref, void *kaddr)
938 {
939 	uint32_t ref = tee_svc_kaddr_to_uref(kaddr);
940 
941 	return tee_svc_copy_to_user(uref, &ref, sizeof(ref));
942 }
943 
944 TEE_Result syscall_get_cancellation_flag(uint32_t *cancel)
945 {
946 	TEE_Result res;
947 	struct tee_ta_session *s = NULL;
948 	uint32_t c;
949 
950 	res = tee_ta_get_current_session(&s);
951 	if (res != TEE_SUCCESS)
952 		return res;
953 
954 	c = tee_ta_session_is_cancelled(s, NULL);
955 
956 	return tee_svc_copy_to_user(cancel, &c, sizeof(c));
957 }
958 
959 TEE_Result syscall_unmask_cancellation(uint32_t *old_mask)
960 {
961 	TEE_Result res;
962 	struct tee_ta_session *s = NULL;
963 	uint32_t m;
964 
965 	res = tee_ta_get_current_session(&s);
966 	if (res != TEE_SUCCESS)
967 		return res;
968 
969 	m = s->cancel_mask;
970 	s->cancel_mask = false;
971 	return tee_svc_copy_to_user(old_mask, &m, sizeof(m));
972 }
973 
974 TEE_Result syscall_mask_cancellation(uint32_t *old_mask)
975 {
976 	TEE_Result res;
977 	struct tee_ta_session *s = NULL;
978 	uint32_t m;
979 
980 	res = tee_ta_get_current_session(&s);
981 	if (res != TEE_SUCCESS)
982 		return res;
983 
984 	m = s->cancel_mask;
985 	s->cancel_mask = true;
986 	return tee_svc_copy_to_user(old_mask, &m, sizeof(m));
987 }
988 
989 TEE_Result syscall_wait(unsigned long timeout)
990 {
991 	TEE_Result res = TEE_SUCCESS;
992 	uint32_t mytime = 0;
993 	struct tee_ta_session *s;
994 	TEE_Time base_time;
995 	TEE_Time current_time;
996 
997 	res = tee_ta_get_current_session(&s);
998 	if (res != TEE_SUCCESS)
999 		return res;
1000 
1001 	res = tee_time_get_sys_time(&base_time);
1002 	if (res != TEE_SUCCESS)
1003 		return res;
1004 
1005 	while (true) {
1006 		res = tee_time_get_sys_time(&current_time);
1007 		if (res != TEE_SUCCESS)
1008 			return res;
1009 
1010 		if (tee_ta_session_is_cancelled(s, &current_time))
1011 			return TEE_ERROR_CANCEL;
1012 
1013 		mytime = (current_time.seconds - base_time.seconds) * 1000 +
1014 		    (int)current_time.millis - (int)base_time.millis;
1015 		if (mytime >= timeout)
1016 			return TEE_SUCCESS;
1017 
1018 		tee_time_wait(timeout - mytime);
1019 	}
1020 
1021 	return res;
1022 }
1023 
1024 TEE_Result syscall_get_time(unsigned long cat, TEE_Time *mytime)
1025 {
1026 	TEE_Result res, res2;
1027 	struct tee_ta_session *s = NULL;
1028 	TEE_Time t;
1029 
1030 	res = tee_ta_get_current_session(&s);
1031 	if (res != TEE_SUCCESS)
1032 		return res;
1033 
1034 	switch (cat) {
1035 	case UTEE_TIME_CAT_SYSTEM:
1036 		res = tee_time_get_sys_time(&t);
1037 		break;
1038 	case UTEE_TIME_CAT_TA_PERSISTENT:
1039 		res = tee_time_get_ta_time((const void *)&s->ctx->uuid, &t);
1040 		break;
1041 	case UTEE_TIME_CAT_REE:
1042 		res = tee_time_get_ree_time(&t);
1043 		break;
1044 	default:
1045 		res = TEE_ERROR_BAD_PARAMETERS;
1046 		break;
1047 	}
1048 
1049 	if (res == TEE_SUCCESS || res == TEE_ERROR_OVERFLOW) {
1050 		res2 = tee_svc_copy_to_user(mytime, &t, sizeof(t));
1051 		if (res2 != TEE_SUCCESS)
1052 			res = res2;
1053 	}
1054 
1055 	return res;
1056 }
1057 
1058 TEE_Result syscall_set_ta_time(const TEE_Time *mytime)
1059 {
1060 	TEE_Result res;
1061 	struct tee_ta_session *s = NULL;
1062 	TEE_Time t;
1063 
1064 	res = tee_ta_get_current_session(&s);
1065 	if (res != TEE_SUCCESS)
1066 		return res;
1067 
1068 	res = tee_svc_copy_from_user(&t, mytime, sizeof(t));
1069 	if (res != TEE_SUCCESS)
1070 		return res;
1071 
1072 	return tee_time_set_ta_time((const void *)&s->ctx->uuid, &t);
1073 }
1074