xref: /linux/drivers/platform/x86/amd/pmf/tee-if.c (revision 5b05bb3f6c5716fab6911e12d60dd1f43ad9806a)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * AMD Platform Management Framework Driver - TEE Interface
4  *
5  * Copyright (c) 2023, Advanced Micro Devices, Inc.
6  * All Rights Reserved.
7  *
8  * Author: Shyam Sundar S K <Shyam-sundar.S-k@amd.com>
9  */
10 
11 #include <linux/array_size.h>
12 #include <linux/debugfs.h>
13 #include <linux/dev_printk.h>
14 #include <linux/tee_drv.h>
15 #include <linux/uuid.h>
16 #include "pmf.h"
17 
18 #define MAX_TEE_PARAM	4
19 
20 /* Policy binary actions sampling frequency (in ms) */
21 static int pb_actions_ms = MSEC_PER_SEC;
22 /* Sideload policy binaries to debug policy failures */
23 static bool pb_side_load;
24 
25 #ifdef CONFIG_AMD_PMF_DEBUG
26 module_param(pb_actions_ms, int, 0644);
27 MODULE_PARM_DESC(pb_actions_ms, "Policy binary actions sampling frequency (default = 1000ms)");
28 module_param(pb_side_load, bool, 0444);
29 MODULE_PARM_DESC(pb_side_load, "Sideload policy binaries debug policy failures");
30 #endif
31 
amd_pmf_uevent_as_str(unsigned int state)32 static const char *amd_pmf_uevent_as_str(unsigned int state)
33 {
34 	switch (state) {
35 	case SYSTEM_STATE_S0i3:
36 		return "S0i3";
37 	case SYSTEM_STATE_S4:
38 		return "S4";
39 	case SYSTEM_STATE_SCREEN_LOCK:
40 		return "SCREEN_LOCK";
41 	default:
42 		return "Unknown Smart PC event";
43 	}
44 }
45 
amd_pmf_prepare_args(struct amd_pmf_dev * dev,int cmd,struct tee_ioctl_invoke_arg * arg,struct tee_param * param)46 static void amd_pmf_prepare_args(struct amd_pmf_dev *dev, int cmd,
47 				 struct tee_ioctl_invoke_arg *arg,
48 				 struct tee_param *param)
49 {
50 	memset(arg, 0, sizeof(*arg));
51 	memset(param, 0, MAX_TEE_PARAM * sizeof(*param));
52 
53 	arg->func = cmd;
54 	arg->session = dev->session_id;
55 	arg->num_params = MAX_TEE_PARAM;
56 
57 	/* Fill invoke cmd params */
58 	param[0].u.memref.size = sizeof(struct ta_pmf_shared_memory);
59 	param[0].attr = TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT;
60 	param[0].u.memref.shm = dev->fw_shm_pool;
61 	param[0].u.memref.shm_offs = 0;
62 }
63 
amd_pmf_update_uevents(struct amd_pmf_dev * dev,u16 event)64 static void amd_pmf_update_uevents(struct amd_pmf_dev *dev, u16 event)
65 {
66 	input_report_key(dev->pmf_idev, event, 1); /* key press */
67 	input_sync(dev->pmf_idev);
68 	input_report_key(dev->pmf_idev, event, 0); /* key release */
69 	input_sync(dev->pmf_idev);
70 }
71 
amd_pmf_get_bios_output_idx(u32 action_idx)72 static int amd_pmf_get_bios_output_idx(u32 action_idx)
73 {
74 	switch (action_idx) {
75 	case PMF_POLICY_BIOS_OUTPUT_1:
76 		return 0;
77 	case PMF_POLICY_BIOS_OUTPUT_2:
78 		return 1;
79 	case PMF_POLICY_BIOS_OUTPUT_3:
80 		return 2;
81 	case PMF_POLICY_BIOS_OUTPUT_4:
82 		return 3;
83 	case PMF_POLICY_BIOS_OUTPUT_5:
84 		return 4;
85 	case PMF_POLICY_BIOS_OUTPUT_6:
86 		return 5;
87 	case PMF_POLICY_BIOS_OUTPUT_7:
88 		return 6;
89 	case PMF_POLICY_BIOS_OUTPUT_8:
90 		return 7;
91 	case PMF_POLICY_BIOS_OUTPUT_9:
92 		return 8;
93 	case PMF_POLICY_BIOS_OUTPUT_10:
94 		return 9;
95 	default:
96 		return -EINVAL;
97 	}
98 }
99 
amd_pmf_update_bios_output(struct amd_pmf_dev * pdev,struct ta_pmf_action * action)100 static void amd_pmf_update_bios_output(struct amd_pmf_dev *pdev, struct ta_pmf_action *action)
101 {
102 	int bios_idx;
103 	int ret;
104 
105 	bios_idx = amd_pmf_get_bios_output_idx(action->action_index);
106 	if (bios_idx < 0 || bios_idx >= ARRAY_SIZE(pdev->bios_output)) {
107 		dev_warn(pdev->dev, "BIOS output index %d out of bounds\n", bios_idx);
108 		return;
109 	}
110 
111 	ret = amd_pmf_smartpc_apply_bios_output(pdev, action->value, BIT(bios_idx), bios_idx);
112 	if (!ret)
113 		pdev->bios_output[bios_idx] = action->value;
114 }
115 
amd_pmf_apply_policies(struct amd_pmf_dev * dev,struct ta_pmf_enact_result * out)116 static void amd_pmf_apply_policies(struct amd_pmf_dev *dev, struct ta_pmf_enact_result *out)
117 {
118 	struct ta_pmf_action *action;
119 	u32 val;
120 	int idx;
121 
122 	for (idx = 0; idx < out->actions_count; idx++) {
123 		action = &out->actions_list[idx];
124 		val = action->value;
125 		switch (action->action_index) {
126 		case PMF_POLICY_SPL:
127 			if (dev->prev_data->spl != val) {
128 				amd_pmf_send_cmd(dev, SET_SPL, SET_CMD, val, NULL);
129 				dev_dbg(dev->dev, "update SPL: %u\n", val);
130 				dev->prev_data->spl = val;
131 			}
132 			break;
133 
134 		case PMF_POLICY_SPPT:
135 			if (dev->prev_data->sppt != val) {
136 				amd_pmf_send_cmd(dev, SET_SPPT, SET_CMD, val, NULL);
137 				dev_dbg(dev->dev, "update SPPT: %u\n", val);
138 				dev->prev_data->sppt = val;
139 			}
140 			break;
141 
142 		case PMF_POLICY_FPPT:
143 			if (dev->prev_data->fppt != val) {
144 				amd_pmf_send_cmd(dev, SET_FPPT, SET_CMD, val, NULL);
145 				dev_dbg(dev->dev, "update FPPT: %u\n", val);
146 				dev->prev_data->fppt = val;
147 			}
148 			break;
149 
150 		case PMF_POLICY_SPPT_APU_ONLY:
151 			if (dev->prev_data->sppt_apuonly != val) {
152 				amd_pmf_send_cmd(dev, SET_SPPT_APU_ONLY, SET_CMD, val, NULL);
153 				dev_dbg(dev->dev, "update SPPT_APU_ONLY: %u\n", val);
154 				dev->prev_data->sppt_apuonly = val;
155 			}
156 			break;
157 
158 		case PMF_POLICY_STT_MIN:
159 			if (dev->prev_data->stt_minlimit != val) {
160 				amd_pmf_send_cmd(dev, SET_STT_MIN_LIMIT, SET_CMD, val, NULL);
161 				dev_dbg(dev->dev, "update STT_MIN: %u\n", val);
162 				dev->prev_data->stt_minlimit = val;
163 			}
164 			break;
165 
166 		case PMF_POLICY_STT_SKINTEMP_APU:
167 			if (dev->prev_data->stt_skintemp_apu != val) {
168 				amd_pmf_send_cmd(dev, SET_STT_LIMIT_APU, SET_CMD,
169 						 fixp_q88_fromint(val), NULL);
170 				dev_dbg(dev->dev, "update STT_SKINTEMP_APU: %u\n", val);
171 				dev->prev_data->stt_skintemp_apu = val;
172 			}
173 			break;
174 
175 		case PMF_POLICY_STT_SKINTEMP_HS2:
176 			if (dev->prev_data->stt_skintemp_hs2 != val) {
177 				amd_pmf_send_cmd(dev, SET_STT_LIMIT_HS2, SET_CMD,
178 						 fixp_q88_fromint(val), NULL);
179 				dev_dbg(dev->dev, "update STT_SKINTEMP_HS2: %u\n", val);
180 				dev->prev_data->stt_skintemp_hs2 = val;
181 			}
182 			break;
183 
184 		case PMF_POLICY_P3T:
185 			if (dev->prev_data->p3t_limit != val) {
186 				amd_pmf_send_cmd(dev, SET_P3T, SET_CMD, val, NULL);
187 				dev_dbg(dev->dev, "update P3T: %u\n", val);
188 				dev->prev_data->p3t_limit = val;
189 			}
190 			break;
191 
192 		case PMF_POLICY_PMF_PPT:
193 			if (dev->prev_data->pmf_ppt != val) {
194 				amd_pmf_send_cmd(dev, SET_PMF_PPT, SET_CMD, val, NULL);
195 				dev_dbg(dev->dev, "update PMF PPT: %u\n", val);
196 				dev->prev_data->pmf_ppt = val;
197 			}
198 			break;
199 
200 		case PMF_POLICY_PMF_PPT_APU_ONLY:
201 			if (dev->prev_data->pmf_ppt_apu_only != val) {
202 				amd_pmf_send_cmd(dev, SET_PMF_PPT_APU_ONLY, SET_CMD, val, NULL);
203 				dev_dbg(dev->dev, "update PMF PPT APU ONLY: %u\n", val);
204 				dev->prev_data->pmf_ppt_apu_only = val;
205 			}
206 			break;
207 
208 		case PMF_POLICY_SYSTEM_STATE:
209 			switch (val) {
210 			case 0:
211 				amd_pmf_update_uevents(dev, KEY_SLEEP);
212 				break;
213 			case 1:
214 				amd_pmf_update_uevents(dev, KEY_SUSPEND);
215 				break;
216 			case 2:
217 				amd_pmf_update_uevents(dev, KEY_SCREENLOCK);
218 				break;
219 			default:
220 				dev_err(dev->dev, "Invalid PMF policy system state: %d\n", val);
221 			}
222 
223 			dev_dbg(dev->dev, "update SYSTEM_STATE: %s\n",
224 				amd_pmf_uevent_as_str(val));
225 			break;
226 
227 		case PMF_POLICY_BIOS_OUTPUT_1:
228 		case PMF_POLICY_BIOS_OUTPUT_2:
229 		case PMF_POLICY_BIOS_OUTPUT_3:
230 		case PMF_POLICY_BIOS_OUTPUT_4:
231 		case PMF_POLICY_BIOS_OUTPUT_5:
232 		case PMF_POLICY_BIOS_OUTPUT_6:
233 		case PMF_POLICY_BIOS_OUTPUT_7:
234 		case PMF_POLICY_BIOS_OUTPUT_8:
235 		case PMF_POLICY_BIOS_OUTPUT_9:
236 		case PMF_POLICY_BIOS_OUTPUT_10:
237 			amd_pmf_update_bios_output(dev, action);
238 			break;
239 		}
240 	}
241 }
242 
amd_pmf_invoke_cmd_enact(struct amd_pmf_dev * dev)243 int amd_pmf_invoke_cmd_enact(struct amd_pmf_dev *dev)
244 {
245 	struct ta_pmf_shared_memory *ta_sm = NULL;
246 	struct ta_pmf_enact_result *out = NULL;
247 	struct ta_pmf_enact_table *in = NULL;
248 	struct tee_param param[MAX_TEE_PARAM];
249 	struct tee_ioctl_invoke_arg arg;
250 	int ret = 0;
251 
252 	if (!dev->tee_ctx)
253 		return -ENODEV;
254 
255 	memset(dev->shbuf, 0, dev->policy_sz);
256 	ta_sm = dev->shbuf;
257 	out = &ta_sm->pmf_output.policy_apply_table;
258 	in = &ta_sm->pmf_input.enact_table;
259 
260 	memset(ta_sm, 0, sizeof(*ta_sm));
261 	ta_sm->command_id = TA_PMF_COMMAND_POLICY_BUILDER_ENACT_POLICIES;
262 	ta_sm->if_version = PMF_TA_IF_VERSION_MAJOR;
263 
264 	amd_pmf_populate_ta_inputs(dev, in);
265 	amd_pmf_prepare_args(dev, TA_PMF_COMMAND_POLICY_BUILDER_ENACT_POLICIES, &arg, param);
266 
267 	ret = tee_client_invoke_func(dev->tee_ctx, &arg, param);
268 	if (ret < 0 || arg.ret != 0) {
269 		dev_err(dev->dev, "TEE enact cmd failed. err: %x, ret:%d\n", arg.ret, ret);
270 		return ret;
271 	}
272 
273 	if (ta_sm->pmf_result == TA_PMF_TYPE_SUCCESS && out->actions_count) {
274 		amd_pmf_dump_ta_inputs(dev, in);
275 		dev_dbg(dev->dev, "action count:%u result:%x\n", out->actions_count,
276 			ta_sm->pmf_result);
277 		amd_pmf_apply_policies(dev, out);
278 	}
279 
280 	return 0;
281 }
282 
amd_pmf_invoke_cmd_init(struct amd_pmf_dev * dev)283 static int amd_pmf_invoke_cmd_init(struct amd_pmf_dev *dev)
284 {
285 	struct ta_pmf_shared_memory *ta_sm = NULL;
286 	struct tee_param param[MAX_TEE_PARAM];
287 	struct ta_pmf_init_table *in = NULL;
288 	struct tee_ioctl_invoke_arg arg;
289 	int ret = 0;
290 
291 	if (!dev->tee_ctx) {
292 		dev_err(dev->dev, "Failed to get TEE context\n");
293 		return -ENODEV;
294 	}
295 
296 	dev_dbg(dev->dev, "Policy Binary size: %llu bytes\n", (unsigned long long)dev->policy_sz);
297 	memset(dev->shbuf, 0, dev->policy_sz);
298 	ta_sm = dev->shbuf;
299 	in = &ta_sm->pmf_input.init_table;
300 
301 	ta_sm->command_id = TA_PMF_COMMAND_POLICY_BUILDER_INITIALIZE;
302 	ta_sm->if_version = PMF_TA_IF_VERSION_MAJOR;
303 
304 	in->metadata_macrocheck = false;
305 	in->sku_check = false;
306 	in->validate = true;
307 	in->frequency = pb_actions_ms;
308 	in->policies_table.table_size = dev->policy_sz;
309 
310 	memcpy(in->policies_table.table, dev->policy_buf, dev->policy_sz);
311 	amd_pmf_prepare_args(dev, TA_PMF_COMMAND_POLICY_BUILDER_INITIALIZE, &arg, param);
312 
313 	ret = tee_client_invoke_func(dev->tee_ctx, &arg, param);
314 	if (ret < 0 || arg.ret != 0) {
315 		dev_err(dev->dev, "Failed to invoke TEE init cmd. err: %x, ret:%d\n", arg.ret, ret);
316 		return ret;
317 	}
318 
319 	return ta_sm->pmf_result;
320 }
321 
amd_pmf_invoke_cmd(struct work_struct * work)322 static void amd_pmf_invoke_cmd(struct work_struct *work)
323 {
324 	struct amd_pmf_dev *dev = container_of(work, struct amd_pmf_dev, pb_work.work);
325 
326 	amd_pmf_invoke_cmd_enact(dev);
327 	schedule_delayed_work(&dev->pb_work, msecs_to_jiffies(pb_actions_ms));
328 }
329 
amd_pmf_start_policy_engine(struct amd_pmf_dev * dev)330 int amd_pmf_start_policy_engine(struct amd_pmf_dev *dev)
331 {
332 	struct cookie_header *header;
333 	int res;
334 
335 	if (dev->policy_sz < POLICY_COOKIE_OFFSET + sizeof(*header))
336 		return -EINVAL;
337 
338 	header = (struct cookie_header *)(dev->policy_buf + POLICY_COOKIE_OFFSET);
339 
340 	if (header->sign != POLICY_SIGN_COOKIE || !header->length) {
341 		dev_dbg(dev->dev, "cookie doesn't match\n");
342 		return -EINVAL;
343 	}
344 
345 	if (dev->policy_sz < header->length + 512)
346 		return -EINVAL;
347 
348 	/* Update the actual length */
349 	dev->policy_sz = header->length + 512;
350 	res = amd_pmf_invoke_cmd_init(dev);
351 	if (res == TA_PMF_TYPE_SUCCESS) {
352 		/* Now its safe to announce that smart pc is enabled */
353 		dev->smart_pc_enabled = true;
354 		/*
355 		 * Start collecting the data from TA FW after a small delay
356 		 * or else, we might end up getting stale values.
357 		 */
358 		schedule_delayed_work(&dev->pb_work, msecs_to_jiffies(pb_actions_ms * 3));
359 	} else {
360 		dev_dbg(dev->dev, "ta invoke cmd init failed err: %x\n", res);
361 		dev->smart_pc_enabled = false;
362 		return res;
363 	}
364 
365 	return 0;
366 }
367 
amd_pmf_pb_valid(struct amd_pmf_dev * dev)368 static inline bool amd_pmf_pb_valid(struct amd_pmf_dev *dev)
369 {
370 	return memchr_inv(dev->policy_buf, 0xff, dev->policy_sz);
371 }
372 
373 #ifdef CONFIG_AMD_PMF_DEBUG
amd_pmf_hex_dump_pb(struct amd_pmf_dev * dev)374 static void amd_pmf_hex_dump_pb(struct amd_pmf_dev *dev)
375 {
376 	print_hex_dump_debug("(pb):  ", DUMP_PREFIX_OFFSET, 16, 1, dev->policy_buf,
377 			     dev->policy_sz, false);
378 }
379 
amd_pmf_get_pb_data(struct file * filp,const char __user * buf,size_t length,loff_t * pos)380 static ssize_t amd_pmf_get_pb_data(struct file *filp, const char __user *buf,
381 				   size_t length, loff_t *pos)
382 {
383 	struct amd_pmf_dev *dev = filp->private_data;
384 	unsigned char *new_policy_buf;
385 	int ret;
386 
387 	/* Policy binary size cannot exceed POLICY_BUF_MAX_SZ */
388 	if (length > POLICY_BUF_MAX_SZ || length == 0)
389 		return -EINVAL;
390 
391 	/* re-alloc to the new buffer length of the policy binary */
392 	new_policy_buf = devm_kzalloc(dev->dev, length, GFP_KERNEL);
393 	if (!new_policy_buf)
394 		return -ENOMEM;
395 
396 	if (copy_from_user(new_policy_buf, buf, length)) {
397 		devm_kfree(dev->dev, new_policy_buf);
398 		return -EFAULT;
399 	}
400 
401 	devm_kfree(dev->dev, dev->policy_buf);
402 	dev->policy_buf = new_policy_buf;
403 	dev->policy_sz = length;
404 
405 	if (!amd_pmf_pb_valid(dev))
406 		return -EINVAL;
407 
408 	amd_pmf_hex_dump_pb(dev);
409 	ret = amd_pmf_start_policy_engine(dev);
410 	if (ret < 0)
411 		return ret;
412 
413 	return length;
414 }
415 
416 static const struct file_operations pb_fops = {
417 	.write = amd_pmf_get_pb_data,
418 	.open = simple_open,
419 };
420 
amd_pmf_open_pb(struct amd_pmf_dev * dev,struct dentry * debugfs_root)421 static void amd_pmf_open_pb(struct amd_pmf_dev *dev, struct dentry *debugfs_root)
422 {
423 	dev->esbin = debugfs_create_dir("pb", debugfs_root);
424 	debugfs_create_file("update_policy", 0644, dev->esbin, dev, &pb_fops);
425 }
426 
amd_pmf_remove_pb(struct amd_pmf_dev * dev)427 static void amd_pmf_remove_pb(struct amd_pmf_dev *dev)
428 {
429 	debugfs_remove_recursive(dev->esbin);
430 }
431 #else
amd_pmf_open_pb(struct amd_pmf_dev * dev,struct dentry * debugfs_root)432 static void amd_pmf_open_pb(struct amd_pmf_dev *dev, struct dentry *debugfs_root) {}
amd_pmf_remove_pb(struct amd_pmf_dev * dev)433 static void amd_pmf_remove_pb(struct amd_pmf_dev *dev) {}
amd_pmf_hex_dump_pb(struct amd_pmf_dev * dev)434 static void amd_pmf_hex_dump_pb(struct amd_pmf_dev *dev) {}
435 #endif
436 
amd_pmf_amdtee_ta_match(struct tee_ioctl_version_data * ver,const void * data)437 static int amd_pmf_amdtee_ta_match(struct tee_ioctl_version_data *ver, const void *data)
438 {
439 	return ver->impl_id == TEE_IMPL_ID_AMDTEE;
440 }
441 
amd_pmf_ta_open_session(struct tee_context * ctx,u32 * id,const uuid_t * uuid)442 static int amd_pmf_ta_open_session(struct tee_context *ctx, u32 *id, const uuid_t *uuid)
443 {
444 	struct tee_ioctl_open_session_arg sess_arg = {};
445 	int rc;
446 
447 	export_uuid(sess_arg.uuid, uuid);
448 	sess_arg.clnt_login = TEE_IOCTL_LOGIN_PUBLIC;
449 	sess_arg.num_params = 0;
450 
451 	rc = tee_client_open_session(ctx, &sess_arg, NULL);
452 	if (rc < 0 || sess_arg.ret != 0) {
453 		pr_err("Failed to open TEE session err:%#x, rc:%d\n", sess_arg.ret, rc);
454 		return rc ?: -EINVAL;
455 	}
456 
457 	*id = sess_arg.session;
458 
459 	return 0;
460 }
461 
amd_pmf_register_input_device(struct amd_pmf_dev * dev)462 static int amd_pmf_register_input_device(struct amd_pmf_dev *dev)
463 {
464 	int err;
465 
466 	dev->pmf_idev = devm_input_allocate_device(dev->dev);
467 	if (!dev->pmf_idev)
468 		return -ENOMEM;
469 
470 	dev->pmf_idev->name = "PMF-TA output events";
471 	dev->pmf_idev->phys = "amd-pmf/input0";
472 
473 	input_set_capability(dev->pmf_idev, EV_KEY, KEY_SLEEP);
474 	input_set_capability(dev->pmf_idev, EV_KEY, KEY_SCREENLOCK);
475 	input_set_capability(dev->pmf_idev, EV_KEY, KEY_SUSPEND);
476 
477 	err = input_register_device(dev->pmf_idev);
478 	if (err) {
479 		dev_err(dev->dev, "Failed to register input device: %d\n", err);
480 		return err;
481 	}
482 
483 	return 0;
484 }
485 
amd_pmf_tee_init(struct amd_pmf_dev * dev,const uuid_t * uuid)486 int amd_pmf_tee_init(struct amd_pmf_dev *dev, const uuid_t *uuid)
487 {
488 	u32 size;
489 	int ret;
490 
491 	dev->tee_ctx = tee_client_open_context(NULL, amd_pmf_amdtee_ta_match, NULL, NULL);
492 	if (IS_ERR(dev->tee_ctx)) {
493 		dev_err(dev->dev, "Failed to open TEE context\n");
494 		ret = PTR_ERR(dev->tee_ctx);
495 		dev->tee_ctx = NULL;
496 		return ret;
497 	}
498 
499 	ret = amd_pmf_ta_open_session(dev->tee_ctx, &dev->session_id, uuid);
500 	if (ret) {
501 		dev_err(dev->dev, "Failed to open TA session (%d)\n", ret);
502 		ret = -EINVAL;
503 		goto out_ctx;
504 	}
505 
506 	size = sizeof(struct ta_pmf_shared_memory) + dev->policy_sz;
507 	dev->fw_shm_pool = tee_shm_alloc_kernel_buf(dev->tee_ctx, size);
508 	if (IS_ERR(dev->fw_shm_pool)) {
509 		dev_err(dev->dev, "Failed to alloc TEE shared memory\n");
510 		ret = PTR_ERR(dev->fw_shm_pool);
511 		goto out_sess;
512 	}
513 
514 	dev->shbuf = tee_shm_get_va(dev->fw_shm_pool, 0);
515 	if (IS_ERR(dev->shbuf)) {
516 		dev_err(dev->dev, "Failed to get TEE virtual address\n");
517 		ret = PTR_ERR(dev->shbuf);
518 		goto out_shm;
519 	}
520 	dev_dbg(dev->dev, "TEE init done\n");
521 
522 	return 0;
523 
524 out_shm:
525 	tee_shm_free(dev->fw_shm_pool);
526 out_sess:
527 	tee_client_close_session(dev->tee_ctx, dev->session_id);
528 out_ctx:
529 	tee_client_close_context(dev->tee_ctx);
530 
531 	return ret;
532 }
533 
amd_pmf_tee_deinit(struct amd_pmf_dev * dev)534 void amd_pmf_tee_deinit(struct amd_pmf_dev *dev)
535 {
536 	if (!dev->tee_ctx)
537 		return;
538 	tee_shm_free(dev->fw_shm_pool);
539 	tee_client_close_session(dev->tee_ctx, dev->session_id);
540 	tee_client_close_context(dev->tee_ctx);
541 	dev->tee_ctx = NULL;
542 }
543 
amd_pmf_init_smart_pc(struct amd_pmf_dev * dev)544 int amd_pmf_init_smart_pc(struct amd_pmf_dev *dev)
545 {
546 	bool status;
547 	int ret, i;
548 
549 	ret = apmf_check_smart_pc(dev);
550 	if (ret) {
551 		/*
552 		 * Lets not return from here if Smart PC bit is not advertised in
553 		 * the BIOS. This way, there will be some amount of power savings
554 		 * to the user with static slider (if enabled).
555 		 */
556 		dev_info(dev->dev, "PMF Smart PC not advertised in BIOS!:%d\n", ret);
557 		return -ENODEV;
558 	}
559 
560 	INIT_DELAYED_WORK(&dev->pb_work, amd_pmf_invoke_cmd);
561 
562 	ret = amd_pmf_set_dram_addr(dev, true);
563 	if (ret)
564 		return ret;
565 
566 	dev->policy_base = devm_ioremap_resource(dev->dev, dev->res);
567 	if (IS_ERR(dev->policy_base))
568 		return PTR_ERR(dev->policy_base);
569 
570 	dev->policy_buf = devm_kzalloc(dev->dev, dev->policy_sz, GFP_KERNEL);
571 	if (!dev->policy_buf)
572 		return -ENOMEM;
573 
574 	memcpy_fromio(dev->policy_buf, dev->policy_base, dev->policy_sz);
575 
576 	if (!amd_pmf_pb_valid(dev)) {
577 		dev_info(dev->dev, "No Smart PC policy present\n");
578 		return -EINVAL;
579 	}
580 
581 	amd_pmf_hex_dump_pb(dev);
582 
583 	dev->prev_data = devm_kzalloc(dev->dev, sizeof(*dev->prev_data), GFP_KERNEL);
584 	if (!dev->prev_data)
585 		return -ENOMEM;
586 
587 	for (i = 0; i < ARRAY_SIZE(amd_pmf_ta_uuid); i++) {
588 		ret = amd_pmf_tee_init(dev, &amd_pmf_ta_uuid[i]);
589 		if (ret)
590 			return ret;
591 
592 		ret = amd_pmf_start_policy_engine(dev);
593 		dev_dbg(dev->dev, "start policy engine ret: %d\n", ret);
594 		status = ret == TA_PMF_TYPE_SUCCESS;
595 		if (status) {
596 			dev->cb_flag = true;
597 			dev->cbi_buf.head = 0;
598 			dev->cbi_buf.tail = 0;
599 			break;
600 		}
601 		amd_pmf_tee_deinit(dev);
602 	}
603 
604 	if (!status && !pb_side_load) {
605 		ret = -EINVAL;
606 		goto err;
607 	}
608 
609 	if (pb_side_load)
610 		amd_pmf_open_pb(dev, dev->dbgfs_dir);
611 
612 	ret = amd_pmf_register_input_device(dev);
613 	if (ret)
614 		goto err;
615 
616 	return 0;
617 
618 err:
619 	amd_pmf_deinit_smart_pc(dev);
620 
621 	return ret;
622 }
623 
amd_pmf_deinit_smart_pc(struct amd_pmf_dev * dev)624 void amd_pmf_deinit_smart_pc(struct amd_pmf_dev *dev)
625 {
626 	if (dev->pmf_idev)
627 		input_unregister_device(dev->pmf_idev);
628 
629 	if (pb_side_load && dev->esbin)
630 		amd_pmf_remove_pb(dev);
631 
632 	cancel_delayed_work_sync(&dev->pb_work);
633 	amd_pmf_tee_deinit(dev);
634 }
635