1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (c) 2018-2020 Linaro Limited
4  */
5 
6 #include <common.h>
7 #include <cpu_func.h>
8 #include <dm.h>
9 #include <dm/device_compat.h>
10 #include <log.h>
11 #include <malloc.h>
12 #include <tee.h>
13 #include <linux/arm-smccc.h>
14 #include <linux/err.h>
15 #include <linux/io.h>
16 
17 #include "optee_smc.h"
18 #include "optee_msg.h"
19 #include "optee_private.h"
20 
21 #define PAGELIST_ENTRIES_PER_PAGE \
22 	((OPTEE_MSG_NONCONTIG_PAGE_SIZE / sizeof(u64)) - 1)
23 
24 typedef void (optee_invoke_fn)(unsigned long, unsigned long, unsigned long,
25 			       unsigned long, unsigned long, unsigned long,
26 			       unsigned long, unsigned long,
27 			       struct arm_smccc_res *);
28 
29 struct optee_pdata {
30 	optee_invoke_fn *invoke_fn;
31 };
32 
33 struct rpc_param {
34 	u32	a0;
35 	u32	a1;
36 	u32	a2;
37 	u32	a3;
38 	u32	a4;
39 	u32	a5;
40 	u32	a6;
41 	u32	a7;
42 };
43 
44 /**
45  * reg_pair_to_ptr() - Make a pointer of 2 32-bit values
46  * @reg0:	High bits of the pointer
47  * @reg1:	Low bits of the pointer
48  *
49  * Returns the combined result, note that if a pointer is 32-bit wide @reg0
50  * will be discarded.
51  */
reg_pair_to_ptr(u32 reg0,u32 reg1)52 static void *reg_pair_to_ptr(u32 reg0, u32 reg1)
53 {
54 	return (void *)(ulong)(((u64)reg0 << 32) | reg1);
55 }
56 
57 /**
58  * reg_pair_from_64() - Split a 64-bit value into two 32-bit values
59  * @reg0:	High bits of @val
60  * @reg1:	Low bits of @val
61  * @val:	The value to split
62  */
reg_pair_from_64(u32 * reg0,u32 * reg1,u64 val)63 static void reg_pair_from_64(u32 *reg0, u32 *reg1, u64 val)
64 {
65 	*reg0 = val >> 32;
66 	*reg1 = val;
67 }
68 
69 /**
70  * optee_alloc_and_init_page_list() - Provide page list of memory buffer
71  * @buf:		Start of buffer
72  * @len:		Length of buffer
73  * @phys_buf_ptr	Physical pointer with coded offset to page list
74  *
75  * Secure world doesn't share mapping with Normal world (U-Boot in this case)
76  * so physical pointers are needed when sharing pointers.
77  *
78  * Returns a pointer page list on success or NULL on failure
79  */
optee_alloc_and_init_page_list(void * buf,ulong len,u64 * phys_buf_ptr)80 void *optee_alloc_and_init_page_list(void *buf, ulong len, u64 *phys_buf_ptr)
81 {
82 	const unsigned int page_size = OPTEE_MSG_NONCONTIG_PAGE_SIZE;
83 	const phys_addr_t page_mask = page_size - 1;
84 	u8 *buf_base;
85 	unsigned int page_offset;
86 	unsigned int num_pages;
87 	unsigned int list_size;
88 	unsigned int n;
89 	void *page_list;
90 	struct {
91 		u64 pages_list[PAGELIST_ENTRIES_PER_PAGE];
92 		u64 next_page_data;
93 	} *pages_data;
94 
95 	/*
96 	 * A Memory buffer is described in chunks of 4k. The list of
97 	 * physical addresses has to be represented by a physical pointer
98 	 * too and a single list has to start at a 4k page and fit into
99 	 * that page. In order to be able to describe large memory buffers
100 	 * these 4k pages carrying physical addresses are linked together
101 	 * in a list. See OPTEE_MSG_ATTR_NONCONTIG in
102 	 * drivers/tee/optee/optee_msg.h for more information.
103 	 */
104 
105 	page_offset = (ulong)buf & page_mask;
106 	num_pages = roundup(page_offset + len, page_size) / page_size;
107 	list_size = DIV_ROUND_UP(num_pages, PAGELIST_ENTRIES_PER_PAGE) *
108 		    page_size;
109 	page_list = memalign(page_size, list_size);
110 	if (!page_list)
111 		return NULL;
112 
113 	pages_data = page_list;
114 	buf_base = (u8 *)rounddown((ulong)buf, page_size);
115 	n = 0;
116 	while (num_pages) {
117 		pages_data->pages_list[n] = virt_to_phys(buf_base);
118 		n++;
119 		buf_base += page_size;
120 		num_pages--;
121 
122 		if (n == PAGELIST_ENTRIES_PER_PAGE) {
123 			pages_data->next_page_data =
124 				virt_to_phys(pages_data + 1);
125 			pages_data++;
126 			n = 0;
127 		}
128 	}
129 
130 	*phys_buf_ptr = virt_to_phys(page_list) | page_offset;
131 	return page_list;
132 }
133 
optee_get_version(struct udevice * dev,struct tee_version_data * vers)134 static void optee_get_version(struct udevice *dev,
135 			      struct tee_version_data *vers)
136 {
137 	struct tee_version_data v = {
138 		.gen_caps = TEE_GEN_CAP_GP | TEE_GEN_CAP_REG_MEM,
139 	};
140 
141 	*vers = v;
142 }
143 
get_msg_arg(struct udevice * dev,uint num_params,struct tee_shm ** shmp,struct optee_msg_arg ** msg_arg)144 static int get_msg_arg(struct udevice *dev, uint num_params,
145 		       struct tee_shm **shmp, struct optee_msg_arg **msg_arg)
146 {
147 	int rc;
148 	struct optee_msg_arg *ma;
149 
150 	rc = __tee_shm_add(dev, OPTEE_MSG_NONCONTIG_PAGE_SIZE, NULL,
151 			   OPTEE_MSG_GET_ARG_SIZE(num_params), TEE_SHM_ALLOC,
152 			   shmp);
153 	if (rc)
154 		return rc;
155 
156 	ma = (*shmp)->addr;
157 	memset(ma, 0, OPTEE_MSG_GET_ARG_SIZE(num_params));
158 	ma->num_params = num_params;
159 	*msg_arg = ma;
160 
161 	return 0;
162 }
163 
to_msg_param(struct optee_msg_param * msg_params,uint num_params,const struct tee_param * params)164 static int to_msg_param(struct optee_msg_param *msg_params, uint num_params,
165 			const struct tee_param *params)
166 {
167 	uint n;
168 
169 	for (n = 0; n < num_params; n++) {
170 		const struct tee_param *p = params + n;
171 		struct optee_msg_param *mp = msg_params + n;
172 
173 		switch (p->attr) {
174 		case TEE_PARAM_ATTR_TYPE_NONE:
175 			mp->attr = OPTEE_MSG_ATTR_TYPE_NONE;
176 			memset(&mp->u, 0, sizeof(mp->u));
177 			break;
178 		case TEE_PARAM_ATTR_TYPE_VALUE_INPUT:
179 		case TEE_PARAM_ATTR_TYPE_VALUE_OUTPUT:
180 		case TEE_PARAM_ATTR_TYPE_VALUE_INOUT:
181 			mp->attr = OPTEE_MSG_ATTR_TYPE_VALUE_INPUT + p->attr -
182 				   TEE_PARAM_ATTR_TYPE_VALUE_INPUT;
183 			mp->u.value.a = p->u.value.a;
184 			mp->u.value.b = p->u.value.b;
185 			mp->u.value.c = p->u.value.c;
186 			break;
187 		case TEE_PARAM_ATTR_TYPE_MEMREF_INPUT:
188 		case TEE_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
189 		case TEE_PARAM_ATTR_TYPE_MEMREF_INOUT:
190 			mp->attr = OPTEE_MSG_ATTR_TYPE_RMEM_INPUT + p->attr -
191 				   TEE_PARAM_ATTR_TYPE_MEMREF_INPUT;
192 			mp->u.rmem.shm_ref = (ulong)p->u.memref.shm;
193 			mp->u.rmem.size = p->u.memref.size;
194 			mp->u.rmem.offs = p->u.memref.shm_offs;
195 			break;
196 		default:
197 			return -EINVAL;
198 		}
199 	}
200 	return 0;
201 }
202 
from_msg_param(struct tee_param * params,uint num_params,const struct optee_msg_param * msg_params)203 static int from_msg_param(struct tee_param *params, uint num_params,
204 			  const struct optee_msg_param *msg_params)
205 {
206 	uint n;
207 	struct tee_shm *shm;
208 
209 	for (n = 0; n < num_params; n++) {
210 		struct tee_param *p = params + n;
211 		const struct optee_msg_param *mp = msg_params + n;
212 		u32 attr = mp->attr & OPTEE_MSG_ATTR_TYPE_MASK;
213 
214 		switch (attr) {
215 		case OPTEE_MSG_ATTR_TYPE_NONE:
216 			p->attr = TEE_PARAM_ATTR_TYPE_NONE;
217 			memset(&p->u, 0, sizeof(p->u));
218 			break;
219 		case OPTEE_MSG_ATTR_TYPE_VALUE_INPUT:
220 		case OPTEE_MSG_ATTR_TYPE_VALUE_OUTPUT:
221 		case OPTEE_MSG_ATTR_TYPE_VALUE_INOUT:
222 			p->attr = TEE_PARAM_ATTR_TYPE_VALUE_INPUT + attr -
223 				  OPTEE_MSG_ATTR_TYPE_VALUE_INPUT;
224 			p->u.value.a = mp->u.value.a;
225 			p->u.value.b = mp->u.value.b;
226 			p->u.value.c = mp->u.value.c;
227 			break;
228 		case OPTEE_MSG_ATTR_TYPE_RMEM_INPUT:
229 		case OPTEE_MSG_ATTR_TYPE_RMEM_OUTPUT:
230 		case OPTEE_MSG_ATTR_TYPE_RMEM_INOUT:
231 			p->attr = TEE_PARAM_ATTR_TYPE_MEMREF_INPUT + attr -
232 				  OPTEE_MSG_ATTR_TYPE_RMEM_INPUT;
233 			p->u.memref.size = mp->u.rmem.size;
234 			shm = (struct tee_shm *)(ulong)mp->u.rmem.shm_ref;
235 
236 			if (!shm) {
237 				p->u.memref.shm_offs = 0;
238 				p->u.memref.shm = NULL;
239 				break;
240 			}
241 			p->u.memref.shm_offs = mp->u.rmem.offs;
242 			p->u.memref.shm = shm;
243 			break;
244 		default:
245 			return -EINVAL;
246 		}
247 	}
248 	return 0;
249 }
250 
handle_rpc(struct udevice * dev,struct rpc_param * param,void * page_list)251 static void handle_rpc(struct udevice *dev, struct rpc_param *param,
252 		       void *page_list)
253 {
254 	struct tee_shm *shm;
255 
256 	switch (OPTEE_SMC_RETURN_GET_RPC_FUNC(param->a0)) {
257 	case OPTEE_SMC_RPC_FUNC_ALLOC:
258 		if (!__tee_shm_add(dev, OPTEE_MSG_NONCONTIG_PAGE_SIZE, NULL,
259 				   param->a1, TEE_SHM_ALLOC | TEE_SHM_REGISTER,
260 				   &shm)) {
261 			reg_pair_from_64(&param->a1, &param->a2,
262 					 virt_to_phys(shm->addr));
263 			/* "cookie" */
264 			reg_pair_from_64(&param->a4, &param->a5, (ulong)shm);
265 		} else {
266 			param->a1 = 0;
267 			param->a2 = 0;
268 			param->a4 = 0;
269 			param->a5 = 0;
270 		}
271 		break;
272 	case OPTEE_SMC_RPC_FUNC_FREE:
273 		shm = reg_pair_to_ptr(param->a1, param->a2);
274 		tee_shm_free(shm);
275 		break;
276 	case OPTEE_SMC_RPC_FUNC_FOREIGN_INTR:
277 		break;
278 	case OPTEE_SMC_RPC_FUNC_CMD:
279 		shm = reg_pair_to_ptr(param->a1, param->a2);
280 		optee_suppl_cmd(dev, shm, page_list);
281 		break;
282 	default:
283 		break;
284 	}
285 
286 	param->a0 = OPTEE_SMC_CALL_RETURN_FROM_RPC;
287 }
288 
call_err_to_res(u32 call_err)289 static u32 call_err_to_res(u32 call_err)
290 {
291 	switch (call_err) {
292 	case OPTEE_SMC_RETURN_OK:
293 		return TEE_SUCCESS;
294 	default:
295 		return TEE_ERROR_BAD_PARAMETERS;
296 	}
297 }
298 
flush_shm_dcache(struct udevice * dev,struct optee_msg_arg * arg)299 static void flush_shm_dcache(struct udevice *dev, struct optee_msg_arg *arg)
300 {
301 	size_t sz = OPTEE_MSG_GET_ARG_SIZE(arg->num_params);
302 
303 	flush_dcache_range(rounddown((ulong)arg, CONFIG_SYS_CACHELINE_SIZE),
304 			   roundup((ulong)arg + sz, CONFIG_SYS_CACHELINE_SIZE));
305 
306 	tee_flush_all_shm_dcache(dev);
307 }
308 
do_call_with_arg(struct udevice * dev,struct optee_msg_arg * arg)309 static u32 do_call_with_arg(struct udevice *dev, struct optee_msg_arg *arg)
310 {
311 	struct optee_pdata *pdata = dev_get_plat(dev);
312 	struct rpc_param param = { .a0 = OPTEE_SMC_CALL_WITH_ARG };
313 	void *page_list = NULL;
314 
315 	reg_pair_from_64(&param.a1, &param.a2, virt_to_phys(arg));
316 	while (true) {
317 		struct arm_smccc_res res;
318 
319 		/* If cache are off from U-Boot, sync the cache shared with OP-TEE */
320 		if (!dcache_status())
321 			flush_shm_dcache(dev, arg);
322 
323 		pdata->invoke_fn(param.a0, param.a1, param.a2, param.a3,
324 				 param.a4, param.a5, param.a6, param.a7, &res);
325 
326 		/* If cache are off from U-Boot, sync the cache shared with OP-TEE */
327 		if (!dcache_status())
328 			flush_shm_dcache(dev, arg);
329 
330 		free(page_list);
331 		page_list = NULL;
332 
333 		if (OPTEE_SMC_RETURN_IS_RPC(res.a0)) {
334 			param.a0 = res.a0;
335 			param.a1 = res.a1;
336 			param.a2 = res.a2;
337 			param.a3 = res.a3;
338 			handle_rpc(dev, &param, &page_list);
339 		} else {
340 			/*
341 			 * In case we've accessed RPMB to serve an RPC
342 			 * request we need to restore the previously
343 			 * selected partition as the caller may expect it
344 			 * to remain unchanged.
345 			 */
346 			optee_suppl_rpmb_release(dev);
347 			return call_err_to_res(res.a0);
348 		}
349 	}
350 }
351 
optee_close_session(struct udevice * dev,u32 session)352 static int optee_close_session(struct udevice *dev, u32 session)
353 {
354 	int rc;
355 	struct tee_shm *shm;
356 	struct optee_msg_arg *msg_arg;
357 
358 	rc = get_msg_arg(dev, 0, &shm, &msg_arg);
359 	if (rc)
360 		return rc;
361 
362 	msg_arg->cmd = OPTEE_MSG_CMD_CLOSE_SESSION;
363 	msg_arg->session = session;
364 	do_call_with_arg(dev, msg_arg);
365 
366 	tee_shm_free(shm);
367 
368 	return 0;
369 }
370 
optee_open_session(struct udevice * dev,struct tee_open_session_arg * arg,uint num_params,struct tee_param * params)371 static int optee_open_session(struct udevice *dev,
372 			      struct tee_open_session_arg *arg,
373 			      uint num_params, struct tee_param *params)
374 {
375 	int rc;
376 	struct tee_shm *shm;
377 	struct optee_msg_arg *msg_arg;
378 
379 	rc = get_msg_arg(dev, num_params + 2, &shm, &msg_arg);
380 	if (rc)
381 		return rc;
382 
383 	msg_arg->cmd = OPTEE_MSG_CMD_OPEN_SESSION;
384 	/*
385 	 * Initialize and add the meta parameters needed when opening a
386 	 * session.
387 	 */
388 	msg_arg->params[0].attr = OPTEE_MSG_ATTR_TYPE_VALUE_INPUT |
389 				  OPTEE_MSG_ATTR_META;
390 	msg_arg->params[1].attr = OPTEE_MSG_ATTR_TYPE_VALUE_INPUT |
391 				  OPTEE_MSG_ATTR_META;
392 	memcpy(&msg_arg->params[0].u.value, arg->uuid, sizeof(arg->uuid));
393 	memcpy(&msg_arg->params[1].u.value, arg->uuid, sizeof(arg->clnt_uuid));
394 	msg_arg->params[1].u.value.c = arg->clnt_login;
395 
396 	rc = to_msg_param(msg_arg->params + 2, num_params, params);
397 	if (rc)
398 		goto out;
399 
400 	arg->ret = do_call_with_arg(dev, msg_arg);
401 	if (arg->ret) {
402 		arg->ret_origin = TEE_ORIGIN_COMMS;
403 		goto out;
404 	}
405 
406 	if (from_msg_param(params, num_params, msg_arg->params + 2)) {
407 		arg->ret = TEE_ERROR_COMMUNICATION;
408 		arg->ret_origin = TEE_ORIGIN_COMMS;
409 		/* Close session again to avoid leakage */
410 		optee_close_session(dev, msg_arg->session);
411 		goto out;
412 	}
413 
414 	arg->session = msg_arg->session;
415 	arg->ret = msg_arg->ret;
416 	arg->ret_origin = msg_arg->ret_origin;
417 out:
418 	tee_shm_free(shm);
419 
420 	return rc;
421 }
422 
optee_invoke_func(struct udevice * dev,struct tee_invoke_arg * arg,uint num_params,struct tee_param * params)423 static int optee_invoke_func(struct udevice *dev, struct tee_invoke_arg *arg,
424 			     uint num_params, struct tee_param *params)
425 {
426 	struct tee_shm *shm;
427 	struct optee_msg_arg *msg_arg;
428 	int rc;
429 
430 	rc = get_msg_arg(dev, num_params, &shm, &msg_arg);
431 	if (rc)
432 		return rc;
433 	msg_arg->cmd = OPTEE_MSG_CMD_INVOKE_COMMAND;
434 	msg_arg->func = arg->func;
435 	msg_arg->session = arg->session;
436 
437 	rc = to_msg_param(msg_arg->params, num_params, params);
438 	if (rc)
439 		goto out;
440 
441 	arg->ret = do_call_with_arg(dev, msg_arg);
442 	if (arg->ret) {
443 		arg->ret_origin = TEE_ORIGIN_COMMS;
444 		goto out;
445 	}
446 
447 	if (from_msg_param(params, num_params, msg_arg->params)) {
448 		arg->ret = TEE_ERROR_COMMUNICATION;
449 		arg->ret_origin = TEE_ORIGIN_COMMS;
450 		goto out;
451 	}
452 
453 	arg->ret = msg_arg->ret;
454 	arg->ret_origin = msg_arg->ret_origin;
455 out:
456 	tee_shm_free(shm);
457 	return rc;
458 }
459 
optee_shm_register(struct udevice * dev,struct tee_shm * shm)460 static int optee_shm_register(struct udevice *dev, struct tee_shm *shm)
461 {
462 	struct tee_shm *shm_arg;
463 	struct optee_msg_arg *msg_arg;
464 	void *pl;
465 	u64 ph_ptr;
466 	int rc;
467 
468 	rc = get_msg_arg(dev, 1, &shm_arg, &msg_arg);
469 	if (rc)
470 		return rc;
471 
472 	pl = optee_alloc_and_init_page_list(shm->addr, shm->size, &ph_ptr);
473 	if (!pl) {
474 		rc = -ENOMEM;
475 		goto out;
476 	}
477 
478 	msg_arg->cmd = OPTEE_MSG_CMD_REGISTER_SHM;
479 	msg_arg->params->attr = OPTEE_MSG_ATTR_TYPE_TMEM_OUTPUT |
480 				OPTEE_MSG_ATTR_NONCONTIG;
481 	msg_arg->params->u.tmem.buf_ptr = ph_ptr;
482 	msg_arg->params->u.tmem.shm_ref = (ulong)shm;
483 	msg_arg->params->u.tmem.size = shm->size;
484 
485 	if (do_call_with_arg(dev, msg_arg) || msg_arg->ret)
486 		rc = -EINVAL;
487 
488 	free(pl);
489 out:
490 	tee_shm_free(shm_arg);
491 
492 	return rc;
493 }
494 
optee_shm_unregister(struct udevice * dev,struct tee_shm * shm)495 static int optee_shm_unregister(struct udevice *dev, struct tee_shm *shm)
496 {
497 	struct tee_shm *shm_arg;
498 	struct optee_msg_arg *msg_arg;
499 	int rc;
500 
501 	rc = get_msg_arg(dev, 1, &shm_arg, &msg_arg);
502 	if (rc)
503 		return rc;
504 
505 	msg_arg->cmd = OPTEE_MSG_CMD_UNREGISTER_SHM;
506 	msg_arg->params[0].attr = OPTEE_MSG_ATTR_TYPE_RMEM_INPUT;
507 	msg_arg->params[0].u.rmem.shm_ref = (ulong)shm;
508 
509 	if (do_call_with_arg(dev, msg_arg) || msg_arg->ret)
510 		rc = -EINVAL;
511 	tee_shm_free(shm_arg);
512 
513 	return rc;
514 }
515 
516 static const struct tee_driver_ops optee_ops = {
517 	.get_version = optee_get_version,
518 	.open_session = optee_open_session,
519 	.close_session = optee_close_session,
520 	.invoke_func = optee_invoke_func,
521 	.shm_register = optee_shm_register,
522 	.shm_unregister = optee_shm_unregister,
523 };
524 
is_optee_api(optee_invoke_fn * invoke_fn)525 static bool is_optee_api(optee_invoke_fn *invoke_fn)
526 {
527 	struct arm_smccc_res res;
528 
529 	invoke_fn(OPTEE_SMC_CALLS_UID, 0, 0, 0, 0, 0, 0, 0, &res);
530 
531 	return res.a0 == OPTEE_MSG_UID_0 && res.a1 == OPTEE_MSG_UID_1 &&
532 	       res.a2 == OPTEE_MSG_UID_2 && res.a3 == OPTEE_MSG_UID_3;
533 }
534 
print_os_revision(struct udevice * dev,optee_invoke_fn * invoke_fn)535 static void print_os_revision(struct udevice *dev, optee_invoke_fn *invoke_fn)
536 {
537 	union {
538 		struct arm_smccc_res smccc;
539 		struct optee_smc_call_get_os_revision_result result;
540 	} res = {
541 		.result = {
542 		.build_id = 0
543 		}
544 	};
545 
546 	invoke_fn(OPTEE_SMC_CALL_GET_OS_REVISION, 0, 0, 0, 0, 0, 0, 0,
547 		  &res.smccc);
548 
549 	if (res.result.build_id)
550 		dev_info(dev, "OP-TEE: revision %lu.%lu (%08lx)\n",
551 			 res.result.major, res.result.minor,
552 			 res.result.build_id);
553 	else
554 		dev_info(dev, "OP-TEE: revision %lu.%lu\n",
555 			 res.result.major, res.result.minor);
556 }
557 
api_revision_is_compatible(optee_invoke_fn * invoke_fn)558 static bool api_revision_is_compatible(optee_invoke_fn *invoke_fn)
559 {
560 	union {
561 		struct arm_smccc_res smccc;
562 		struct optee_smc_calls_revision_result result;
563 	} res;
564 
565 	invoke_fn(OPTEE_SMC_CALLS_REVISION, 0, 0, 0, 0, 0, 0, 0, &res.smccc);
566 
567 	return res.result.major == OPTEE_MSG_REVISION_MAJOR &&
568 	       (int)res.result.minor >= OPTEE_MSG_REVISION_MINOR;
569 }
570 
exchange_capabilities(optee_invoke_fn * invoke_fn,u32 * sec_caps)571 static bool exchange_capabilities(optee_invoke_fn *invoke_fn, u32 *sec_caps)
572 {
573 	union {
574 		struct arm_smccc_res smccc;
575 		struct optee_smc_exchange_capabilities_result result;
576 	} res;
577 
578 	invoke_fn(OPTEE_SMC_EXCHANGE_CAPABILITIES,
579 		  OPTEE_SMC_NSEC_CAP_UNIPROCESSOR, 0, 0, 0, 0, 0, 0,
580 		  &res.smccc);
581 
582 	if (res.result.status != OPTEE_SMC_RETURN_OK)
583 		return false;
584 
585 	*sec_caps = res.result.capabilities;
586 
587 	return true;
588 }
589 
590 /* Simple wrapper functions to be able to use a function pointer */
optee_smccc_smc(unsigned long a0,unsigned long a1,unsigned long a2,unsigned long a3,unsigned long a4,unsigned long a5,unsigned long a6,unsigned long a7,struct arm_smccc_res * res)591 static void optee_smccc_smc(unsigned long a0, unsigned long a1,
592 			    unsigned long a2, unsigned long a3,
593 			    unsigned long a4, unsigned long a5,
594 			    unsigned long a6, unsigned long a7,
595 			    struct arm_smccc_res *res)
596 {
597 	arm_smccc_smc(a0, a1, a2, a3, a4, a5, a6, a7, res);
598 }
599 
optee_smccc_hvc(unsigned long a0,unsigned long a1,unsigned long a2,unsigned long a3,unsigned long a4,unsigned long a5,unsigned long a6,unsigned long a7,struct arm_smccc_res * res)600 static void optee_smccc_hvc(unsigned long a0, unsigned long a1,
601 			    unsigned long a2, unsigned long a3,
602 			    unsigned long a4, unsigned long a5,
603 			    unsigned long a6, unsigned long a7,
604 			    struct arm_smccc_res *res)
605 {
606 	arm_smccc_hvc(a0, a1, a2, a3, a4, a5, a6, a7, res);
607 }
608 
get_invoke_func(struct udevice * dev)609 static optee_invoke_fn *get_invoke_func(struct udevice *dev)
610 {
611 	const char *method;
612 
613 	debug("optee: looking for conduit method in DT.\n");
614 	method = ofnode_get_property(dev_ofnode(dev), "method", NULL);
615 	if (!method) {
616 		debug("optee: missing \"method\" property\n");
617 		return ERR_PTR(-ENXIO);
618 	}
619 
620 	if (!strcmp("hvc", method))
621 		return optee_smccc_hvc;
622 	else if (!strcmp("smc", method))
623 		return optee_smccc_smc;
624 
625 	debug("optee: invalid \"method\" property: %s\n", method);
626 	return ERR_PTR(-EINVAL);
627 }
628 
optee_of_to_plat(struct udevice * dev)629 static int optee_of_to_plat(struct udevice *dev)
630 {
631 	struct optee_pdata *pdata = dev_get_plat(dev);
632 
633 	pdata->invoke_fn = get_invoke_func(dev);
634 	if (IS_ERR(pdata->invoke_fn))
635 		return PTR_ERR(pdata->invoke_fn);
636 
637 	return 0;
638 }
639 
optee_probe(struct udevice * dev)640 static int optee_probe(struct udevice *dev)
641 {
642 	struct optee_pdata *pdata = dev_get_plat(dev);
643 	u32 sec_caps;
644 
645 	if (!is_optee_api(pdata->invoke_fn)) {
646 		dev_err(dev, "OP-TEE api uid mismatch\n");
647 		return -ENOENT;
648 	}
649 
650 	print_os_revision(dev, pdata->invoke_fn);
651 
652 	if (!api_revision_is_compatible(pdata->invoke_fn)) {
653 		dev_err(dev, "OP-TEE api revision mismatch\n");
654 		return -ENOENT;
655 	}
656 
657 	/*
658 	 * OP-TEE can use both shared memory via predefined pool or as
659 	 * dynamic shared memory provided by normal world. To keep things
660 	 * simple we're only using dynamic shared memory in this driver.
661 	 */
662 	if (!exchange_capabilities(pdata->invoke_fn, &sec_caps) ||
663 	    !(sec_caps & OPTEE_SMC_SEC_CAP_DYNAMIC_SHM)) {
664 		dev_err(dev, "OP-TEE capabilities mismatch\n");
665 		return -ENOENT;
666 	}
667 
668 	return 0;
669 }
670 
671 static const struct udevice_id optee_match[] = {
672 	{ .compatible = "linaro,optee-tz" },
673 	{},
674 };
675 
676 U_BOOT_DRIVER(optee) = {
677 	.name = "optee",
678 	.id = UCLASS_TEE,
679 	.of_match = optee_match,
680 	.of_to_plat = optee_of_to_plat,
681 	.probe = optee_probe,
682 	.ops = &optee_ops,
683 	.plat_auto	= sizeof(struct optee_pdata),
684 	.priv_auto	= sizeof(struct optee_private),
685 };
686