1 // SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
2 /*
3  * Copyright (C) 2017 Intel Deutschland GmbH
4  * Copyright (C) 2019-2021 Intel Corporation
5  */
6 #include <linux/uuid.h>
7 #include "iwl-drv.h"
8 #include "iwl-debug.h"
9 #include "acpi.h"
10 #include "fw/runtime.h"
11 
12 const guid_t iwl_guid = GUID_INIT(0xF21202BF, 0x8F78, 0x4DC6,
13 				  0xA5, 0xB3, 0x1F, 0x73,
14 				  0x8E, 0x28, 0x5A, 0xDE);
15 IWL_EXPORT_SYMBOL(iwl_guid);
16 
17 const guid_t iwl_rfi_guid = GUID_INIT(0x7266172C, 0x220B, 0x4B29,
18 				      0x81, 0x4F, 0x75, 0xE4,
19 				      0xDD, 0x26, 0xB5, 0xFD);
20 IWL_EXPORT_SYMBOL(iwl_rfi_guid);
21 
22 static int iwl_acpi_get_handle(struct device *dev, acpi_string method,
23 			       acpi_handle *ret_handle)
24 {
25 	acpi_handle root_handle;
26 	acpi_status status;
27 
28 	root_handle = ACPI_HANDLE(dev);
29 	if (!root_handle) {
30 		IWL_DEBUG_DEV_RADIO(dev,
31 				    "ACPI: Could not retrieve root port handle\n");
32 		return -ENOENT;
33 	}
34 
35 	status = acpi_get_handle(root_handle, method, ret_handle);
36 	if (ACPI_FAILURE(status)) {
37 		IWL_DEBUG_DEV_RADIO(dev,
38 				    "ACPI: %s method not found\n", method);
39 		return -ENOENT;
40 	}
41 	return 0;
42 }
43 
44 void *iwl_acpi_get_object(struct device *dev, acpi_string method)
45 {
46 	struct acpi_buffer buf = {ACPI_ALLOCATE_BUFFER, NULL};
47 	acpi_handle handle;
48 	acpi_status status;
49 	int ret;
50 
51 	ret = iwl_acpi_get_handle(dev, method, &handle);
52 	if (ret)
53 		return ERR_PTR(-ENOENT);
54 
55 	/* Call the method with no arguments */
56 	status = acpi_evaluate_object(handle, NULL, NULL, &buf);
57 	if (ACPI_FAILURE(status)) {
58 		IWL_DEBUG_DEV_RADIO(dev,
59 				    "ACPI: %s method invocation failed (status: 0x%x)\n",
60 				    method, status);
61 		return ERR_PTR(-ENOENT);
62 	}
63 	return buf.pointer;
64 }
65 IWL_EXPORT_SYMBOL(iwl_acpi_get_object);
66 
67 /*
68  * Generic function for evaluating a method defined in the device specific
69  * method (DSM) interface. The returned acpi object must be freed by calling
70  * function.
71  */
72 static void *iwl_acpi_get_dsm_object(struct device *dev, int rev, int func,
73 				     union acpi_object *args,
74 				     const guid_t *guid)
75 {
76 	union acpi_object *obj;
77 
78 	obj = acpi_evaluate_dsm(ACPI_HANDLE(dev), guid, rev, func,
79 				args);
80 	if (!obj) {
81 		IWL_DEBUG_DEV_RADIO(dev,
82 				    "ACPI: DSM method invocation failed (rev: %d, func:%d)\n",
83 				    rev, func);
84 		return ERR_PTR(-ENOENT);
85 	}
86 	return obj;
87 }
88 
89 /*
90  * Generic function to evaluate a DSM with no arguments
91  * and an integer return value,
92  * (as an integer object or inside a buffer object),
93  * verify and assign the value in the "value" parameter.
94  * return 0 in success and the appropriate errno otherwise.
95  */
96 static int iwl_acpi_get_dsm_integer(struct device *dev, int rev, int func,
97 				    const guid_t *guid, u64 *value,
98 				    size_t expected_size)
99 {
100 	union acpi_object *obj;
101 	int ret = 0;
102 
103 	obj = iwl_acpi_get_dsm_object(dev, rev, func, NULL, guid);
104 	if (IS_ERR(obj)) {
105 		IWL_DEBUG_DEV_RADIO(dev,
106 				    "Failed to get  DSM object. func= %d\n",
107 				    func);
108 		return -ENOENT;
109 	}
110 
111 	if (obj->type == ACPI_TYPE_INTEGER) {
112 		*value = obj->integer.value;
113 	} else if (obj->type == ACPI_TYPE_BUFFER) {
114 		__le64 le_value = 0;
115 
116 		if (WARN_ON_ONCE(expected_size > sizeof(le_value)))
117 			return -EINVAL;
118 
119 		/* if the buffer size doesn't match the expected size */
120 		if (obj->buffer.length != expected_size)
121 			IWL_DEBUG_DEV_RADIO(dev,
122 					    "ACPI: DSM invalid buffer size, padding or truncating (%d)\n",
123 					    obj->buffer.length);
124 
125 		 /* assuming LE from Intel BIOS spec */
126 		memcpy(&le_value, obj->buffer.pointer,
127 		       min_t(size_t, expected_size, (size_t)obj->buffer.length));
128 		*value = le64_to_cpu(le_value);
129 	} else {
130 		IWL_DEBUG_DEV_RADIO(dev,
131 				    "ACPI: DSM method did not return a valid object, type=%d\n",
132 				    obj->type);
133 		ret = -EINVAL;
134 		goto out;
135 	}
136 
137 	IWL_DEBUG_DEV_RADIO(dev,
138 			    "ACPI: DSM method evaluated: func=%d, ret=%d\n",
139 			    func, ret);
140 out:
141 	ACPI_FREE(obj);
142 	return ret;
143 }
144 
145 /*
146  * Evaluate a DSM with no arguments and a u8 return value,
147  */
148 int iwl_acpi_get_dsm_u8(struct device *dev, int rev, int func,
149 			const guid_t *guid, u8 *value)
150 {
151 	int ret;
152 	u64 val;
153 
154 	ret = iwl_acpi_get_dsm_integer(dev, rev, func,
155 				       guid, &val, sizeof(u8));
156 
157 	if (ret < 0)
158 		return ret;
159 
160 	/* cast val (u64) to be u8 */
161 	*value = (u8)val;
162 	return 0;
163 }
164 IWL_EXPORT_SYMBOL(iwl_acpi_get_dsm_u8);
165 
166 /*
167  * Evaluate a DSM with no arguments and a u32 return value,
168  */
169 int iwl_acpi_get_dsm_u32(struct device *dev, int rev, int func,
170 			 const guid_t *guid, u32 *value)
171 {
172 	int ret;
173 	u64 val;
174 
175 	ret = iwl_acpi_get_dsm_integer(dev, rev, func,
176 				       guid, &val, sizeof(u32));
177 
178 	if (ret < 0)
179 		return ret;
180 
181 	/* cast val (u64) to be u32 */
182 	*value = (u32)val;
183 	return 0;
184 }
185 IWL_EXPORT_SYMBOL(iwl_acpi_get_dsm_u32);
186 
187 union acpi_object *iwl_acpi_get_wifi_pkg(struct device *dev,
188 					 union acpi_object *data,
189 					 int data_size, int *tbl_rev)
190 {
191 	int i;
192 	union acpi_object *wifi_pkg;
193 
194 	/*
195 	 * We need at least one entry in the wifi package that
196 	 * describes the domain, and one more entry, otherwise there's
197 	 * no point in reading it.
198 	 */
199 	if (WARN_ON_ONCE(data_size < 2))
200 		return ERR_PTR(-EINVAL);
201 
202 	/*
203 	 * We need at least two packages, one for the revision and one
204 	 * for the data itself.  Also check that the revision is valid
205 	 * (i.e. it is an integer (each caller has to check by itself
206 	 * if the returned revision is supported)).
207 	 */
208 	if (data->type != ACPI_TYPE_PACKAGE ||
209 	    data->package.count < 2 ||
210 	    data->package.elements[0].type != ACPI_TYPE_INTEGER) {
211 		IWL_DEBUG_DEV_RADIO(dev, "Invalid packages structure\n");
212 		return ERR_PTR(-EINVAL);
213 	}
214 
215 	*tbl_rev = data->package.elements[0].integer.value;
216 
217 	/* loop through all the packages to find the one for WiFi */
218 	for (i = 1; i < data->package.count; i++) {
219 		union acpi_object *domain;
220 
221 		wifi_pkg = &data->package.elements[i];
222 
223 		/* skip entries that are not a package with the right size */
224 		if (wifi_pkg->type != ACPI_TYPE_PACKAGE ||
225 		    wifi_pkg->package.count != data_size)
226 			continue;
227 
228 		domain = &wifi_pkg->package.elements[0];
229 		if (domain->type == ACPI_TYPE_INTEGER &&
230 		    domain->integer.value == ACPI_WIFI_DOMAIN)
231 			goto found;
232 	}
233 
234 	return ERR_PTR(-ENOENT);
235 
236 found:
237 	return wifi_pkg;
238 }
239 IWL_EXPORT_SYMBOL(iwl_acpi_get_wifi_pkg);
240 
241 int iwl_acpi_get_tas(struct iwl_fw_runtime *fwrt,
242 		     __le32 *block_list_array,
243 		     int *block_list_size)
244 {
245 	union acpi_object *wifi_pkg, *data;
246 	int ret, tbl_rev, i;
247 	bool enabled;
248 
249 	data = iwl_acpi_get_object(fwrt->dev, ACPI_WTAS_METHOD);
250 	if (IS_ERR(data))
251 		return PTR_ERR(data);
252 
253 	wifi_pkg = iwl_acpi_get_wifi_pkg(fwrt->dev, data,
254 					 ACPI_WTAS_WIFI_DATA_SIZE,
255 					 &tbl_rev);
256 	if (IS_ERR(wifi_pkg)) {
257 		ret = PTR_ERR(wifi_pkg);
258 		goto out_free;
259 	}
260 
261 	if (wifi_pkg->package.elements[0].type != ACPI_TYPE_INTEGER ||
262 	    tbl_rev != 0) {
263 		ret = -EINVAL;
264 		goto out_free;
265 	}
266 
267 	enabled = !!wifi_pkg->package.elements[0].integer.value;
268 
269 	if (!enabled) {
270 		*block_list_size = -1;
271 		IWL_DEBUG_RADIO(fwrt, "TAS not enabled\n");
272 		ret = 0;
273 		goto out_free;
274 	}
275 
276 	if (wifi_pkg->package.elements[1].type != ACPI_TYPE_INTEGER ||
277 	    wifi_pkg->package.elements[1].integer.value >
278 	    APCI_WTAS_BLACK_LIST_MAX) {
279 		IWL_DEBUG_RADIO(fwrt, "TAS invalid array size %llu\n",
280 				wifi_pkg->package.elements[1].integer.value);
281 		ret = -EINVAL;
282 		goto out_free;
283 	}
284 	*block_list_size = wifi_pkg->package.elements[1].integer.value;
285 
286 	IWL_DEBUG_RADIO(fwrt, "TAS array size %d\n", *block_list_size);
287 	if (*block_list_size > APCI_WTAS_BLACK_LIST_MAX) {
288 		IWL_DEBUG_RADIO(fwrt, "TAS invalid array size value %u\n",
289 				*block_list_size);
290 		ret = -EINVAL;
291 		goto out_free;
292 	}
293 
294 	for (i = 0; i < *block_list_size; i++) {
295 		u32 country;
296 
297 		if (wifi_pkg->package.elements[2 + i].type !=
298 		    ACPI_TYPE_INTEGER) {
299 			IWL_DEBUG_RADIO(fwrt,
300 					"TAS invalid array elem %d\n", 2 + i);
301 			ret = -EINVAL;
302 			goto out_free;
303 		}
304 
305 		country = wifi_pkg->package.elements[2 + i].integer.value;
306 		block_list_array[i] = cpu_to_le32(country);
307 		IWL_DEBUG_RADIO(fwrt, "TAS block list country %d\n", country);
308 	}
309 
310 	ret = 0;
311 out_free:
312 	kfree(data);
313 	return ret;
314 }
315 IWL_EXPORT_SYMBOL(iwl_acpi_get_tas);
316 
317 int iwl_acpi_get_mcc(struct device *dev, char *mcc)
318 {
319 	union acpi_object *wifi_pkg, *data;
320 	u32 mcc_val;
321 	int ret, tbl_rev;
322 
323 	data = iwl_acpi_get_object(dev, ACPI_WRDD_METHOD);
324 	if (IS_ERR(data))
325 		return PTR_ERR(data);
326 
327 	wifi_pkg = iwl_acpi_get_wifi_pkg(dev, data, ACPI_WRDD_WIFI_DATA_SIZE,
328 					 &tbl_rev);
329 	if (IS_ERR(wifi_pkg)) {
330 		ret = PTR_ERR(wifi_pkg);
331 		goto out_free;
332 	}
333 
334 	if (wifi_pkg->package.elements[1].type != ACPI_TYPE_INTEGER ||
335 	    tbl_rev != 0) {
336 		ret = -EINVAL;
337 		goto out_free;
338 	}
339 
340 	mcc_val = wifi_pkg->package.elements[1].integer.value;
341 
342 	mcc[0] = (mcc_val >> 8) & 0xff;
343 	mcc[1] = mcc_val & 0xff;
344 	mcc[2] = '\0';
345 
346 	ret = 0;
347 out_free:
348 	kfree(data);
349 	return ret;
350 }
351 IWL_EXPORT_SYMBOL(iwl_acpi_get_mcc);
352 
353 u64 iwl_acpi_get_pwr_limit(struct device *dev)
354 {
355 	union acpi_object *data, *wifi_pkg;
356 	u64 dflt_pwr_limit;
357 	int tbl_rev;
358 
359 	data = iwl_acpi_get_object(dev, ACPI_SPLC_METHOD);
360 	if (IS_ERR(data)) {
361 		dflt_pwr_limit = 0;
362 		goto out;
363 	}
364 
365 	wifi_pkg = iwl_acpi_get_wifi_pkg(dev, data,
366 					 ACPI_SPLC_WIFI_DATA_SIZE, &tbl_rev);
367 	if (IS_ERR(wifi_pkg) || tbl_rev != 0 ||
368 	    wifi_pkg->package.elements[1].integer.value != ACPI_TYPE_INTEGER) {
369 		dflt_pwr_limit = 0;
370 		goto out_free;
371 	}
372 
373 	dflt_pwr_limit = wifi_pkg->package.elements[1].integer.value;
374 out_free:
375 	kfree(data);
376 out:
377 	return dflt_pwr_limit;
378 }
379 IWL_EXPORT_SYMBOL(iwl_acpi_get_pwr_limit);
380 
381 int iwl_acpi_get_eckv(struct device *dev, u32 *extl_clk)
382 {
383 	union acpi_object *wifi_pkg, *data;
384 	int ret, tbl_rev;
385 
386 	data = iwl_acpi_get_object(dev, ACPI_ECKV_METHOD);
387 	if (IS_ERR(data))
388 		return PTR_ERR(data);
389 
390 	wifi_pkg = iwl_acpi_get_wifi_pkg(dev, data, ACPI_ECKV_WIFI_DATA_SIZE,
391 					 &tbl_rev);
392 	if (IS_ERR(wifi_pkg)) {
393 		ret = PTR_ERR(wifi_pkg);
394 		goto out_free;
395 	}
396 
397 	if (wifi_pkg->package.elements[1].type != ACPI_TYPE_INTEGER ||
398 	    tbl_rev != 0) {
399 		ret = -EINVAL;
400 		goto out_free;
401 	}
402 
403 	*extl_clk = wifi_pkg->package.elements[1].integer.value;
404 
405 	ret = 0;
406 
407 out_free:
408 	kfree(data);
409 	return ret;
410 }
411 IWL_EXPORT_SYMBOL(iwl_acpi_get_eckv);
412 
413 static int iwl_sar_set_profile(union acpi_object *table,
414 			       struct iwl_sar_profile *profile,
415 			       bool enabled)
416 {
417 	int i;
418 
419 	profile->enabled = enabled;
420 
421 	for (i = 0; i < ACPI_SAR_TABLE_SIZE; i++) {
422 		if (table[i].type != ACPI_TYPE_INTEGER ||
423 		    table[i].integer.value > U8_MAX)
424 			return -EINVAL;
425 
426 		profile->table[i] = table[i].integer.value;
427 	}
428 
429 	return 0;
430 }
431 
432 static int iwl_sar_fill_table(struct iwl_fw_runtime *fwrt,
433 			      __le16 *per_chain, u32 n_subbands,
434 			      int prof_a, int prof_b)
435 {
436 	int profs[ACPI_SAR_NUM_CHAIN_LIMITS] = { prof_a, prof_b };
437 	int i, j, idx;
438 
439 	for (i = 0; i < ACPI_SAR_NUM_CHAIN_LIMITS; i++) {
440 		struct iwl_sar_profile *prof;
441 
442 		/* don't allow SAR to be disabled (profile 0 means disable) */
443 		if (profs[i] == 0)
444 			return -EPERM;
445 
446 		/* we are off by one, so allow up to ACPI_SAR_PROFILE_NUM */
447 		if (profs[i] > ACPI_SAR_PROFILE_NUM)
448 			return -EINVAL;
449 
450 		/* profiles go from 1 to 4, so decrement to access the array */
451 		prof = &fwrt->sar_profiles[profs[i] - 1];
452 
453 		/* if the profile is disabled, do nothing */
454 		if (!prof->enabled) {
455 			IWL_DEBUG_RADIO(fwrt, "SAR profile %d is disabled.\n",
456 					profs[i]);
457 			/*
458 			 * if one of the profiles is disabled, we
459 			 * ignore all of them and return 1 to
460 			 * differentiate disabled from other failures.
461 			 */
462 			return 1;
463 		}
464 
465 		IWL_DEBUG_INFO(fwrt,
466 			       "SAR EWRD: chain %d profile index %d\n",
467 			       i, profs[i]);
468 		IWL_DEBUG_RADIO(fwrt, "  Chain[%d]:\n", i);
469 		for (j = 0; j < n_subbands; j++) {
470 			idx = i * ACPI_SAR_NUM_SUB_BANDS + j;
471 			per_chain[i * n_subbands + j] =
472 				cpu_to_le16(prof->table[idx]);
473 			IWL_DEBUG_RADIO(fwrt, "    Band[%d] = %d * .125dBm\n",
474 					j, prof->table[idx]);
475 		}
476 	}
477 
478 	return 0;
479 }
480 
481 int iwl_sar_select_profile(struct iwl_fw_runtime *fwrt,
482 			   __le16 *per_chain, u32 n_tables, u32 n_subbands,
483 			   int prof_a, int prof_b)
484 {
485 	int i, ret = 0;
486 
487 	for (i = 0; i < n_tables; i++) {
488 		ret = iwl_sar_fill_table(fwrt,
489 			 &per_chain[i * n_subbands * ACPI_SAR_NUM_CHAIN_LIMITS],
490 			 n_subbands, prof_a, prof_b);
491 		if (ret)
492 			break;
493 	}
494 
495 	return ret;
496 }
497 IWL_EXPORT_SYMBOL(iwl_sar_select_profile);
498 
499 int iwl_sar_get_wrds_table(struct iwl_fw_runtime *fwrt)
500 {
501 	union acpi_object *wifi_pkg, *table, *data;
502 	bool enabled;
503 	int ret, tbl_rev;
504 
505 	data = iwl_acpi_get_object(fwrt->dev, ACPI_WRDS_METHOD);
506 	if (IS_ERR(data))
507 		return PTR_ERR(data);
508 
509 	wifi_pkg = iwl_acpi_get_wifi_pkg(fwrt->dev, data,
510 					 ACPI_WRDS_WIFI_DATA_SIZE, &tbl_rev);
511 	if (IS_ERR(wifi_pkg)) {
512 		ret = PTR_ERR(wifi_pkg);
513 		goto out_free;
514 	}
515 
516 	if (tbl_rev != 0) {
517 		ret = -EINVAL;
518 		goto out_free;
519 	}
520 
521 	if (wifi_pkg->package.elements[1].type != ACPI_TYPE_INTEGER) {
522 		ret = -EINVAL;
523 		goto out_free;
524 	}
525 
526 	enabled = !!(wifi_pkg->package.elements[1].integer.value);
527 
528 	/* position of the actual table */
529 	table = &wifi_pkg->package.elements[2];
530 
531 	/* The profile from WRDS is officially profile 1, but goes
532 	 * into sar_profiles[0] (because we don't have a profile 0).
533 	 */
534 	ret = iwl_sar_set_profile(table, &fwrt->sar_profiles[0], enabled);
535 out_free:
536 	kfree(data);
537 	return ret;
538 }
539 IWL_EXPORT_SYMBOL(iwl_sar_get_wrds_table);
540 
541 int iwl_sar_get_ewrd_table(struct iwl_fw_runtime *fwrt)
542 {
543 	union acpi_object *wifi_pkg, *data;
544 	bool enabled;
545 	int i, n_profiles, tbl_rev, pos;
546 	int ret = 0;
547 
548 	data = iwl_acpi_get_object(fwrt->dev, ACPI_EWRD_METHOD);
549 	if (IS_ERR(data))
550 		return PTR_ERR(data);
551 
552 	wifi_pkg = iwl_acpi_get_wifi_pkg(fwrt->dev, data,
553 					 ACPI_EWRD_WIFI_DATA_SIZE, &tbl_rev);
554 	if (IS_ERR(wifi_pkg)) {
555 		ret = PTR_ERR(wifi_pkg);
556 		goto out_free;
557 	}
558 
559 	if (tbl_rev != 0) {
560 		ret = -EINVAL;
561 		goto out_free;
562 	}
563 
564 	if (wifi_pkg->package.elements[1].type != ACPI_TYPE_INTEGER ||
565 	    wifi_pkg->package.elements[2].type != ACPI_TYPE_INTEGER) {
566 		ret = -EINVAL;
567 		goto out_free;
568 	}
569 
570 	enabled = !!(wifi_pkg->package.elements[1].integer.value);
571 	n_profiles = wifi_pkg->package.elements[2].integer.value;
572 
573 	/*
574 	 * Check the validity of n_profiles.  The EWRD profiles start
575 	 * from index 1, so the maximum value allowed here is
576 	 * ACPI_SAR_PROFILES_NUM - 1.
577 	 */
578 	if (n_profiles <= 0 || n_profiles >= ACPI_SAR_PROFILE_NUM) {
579 		ret = -EINVAL;
580 		goto out_free;
581 	}
582 
583 	/* the tables start at element 3 */
584 	pos = 3;
585 
586 	for (i = 0; i < n_profiles; i++) {
587 		/* The EWRD profiles officially go from 2 to 4, but we
588 		 * save them in sar_profiles[1-3] (because we don't
589 		 * have profile 0).  So in the array we start from 1.
590 		 */
591 		ret = iwl_sar_set_profile(&wifi_pkg->package.elements[pos],
592 					  &fwrt->sar_profiles[i + 1],
593 					  enabled);
594 		if (ret < 0)
595 			break;
596 
597 		/* go to the next table */
598 		pos += ACPI_SAR_TABLE_SIZE;
599 	}
600 
601 out_free:
602 	kfree(data);
603 	return ret;
604 }
605 IWL_EXPORT_SYMBOL(iwl_sar_get_ewrd_table);
606 
607 int iwl_sar_get_wgds_table(struct iwl_fw_runtime *fwrt)
608 {
609 	union acpi_object *wifi_pkg, *data;
610 	int i, j, ret, tbl_rev;
611 	int idx = 1;
612 
613 	data = iwl_acpi_get_object(fwrt->dev, ACPI_WGDS_METHOD);
614 	if (IS_ERR(data))
615 		return PTR_ERR(data);
616 
617 	wifi_pkg = iwl_acpi_get_wifi_pkg(fwrt->dev, data,
618 					 ACPI_WGDS_WIFI_DATA_SIZE, &tbl_rev);
619 
620 	if (IS_ERR(wifi_pkg)) {
621 		ret = PTR_ERR(wifi_pkg);
622 		goto out_free;
623 	}
624 
625 	if (tbl_rev > 1) {
626 		ret = -EINVAL;
627 		goto out_free;
628 	}
629 
630 	fwrt->geo_rev = tbl_rev;
631 	for (i = 0; i < ACPI_NUM_GEO_PROFILES; i++) {
632 		for (j = 0; j < ACPI_GEO_TABLE_SIZE; j++) {
633 			union acpi_object *entry;
634 
635 			entry = &wifi_pkg->package.elements[idx++];
636 			if (entry->type != ACPI_TYPE_INTEGER ||
637 			    entry->integer.value > U8_MAX) {
638 				ret = -EINVAL;
639 				goto out_free;
640 			}
641 
642 			fwrt->geo_profiles[i].values[j] = entry->integer.value;
643 		}
644 	}
645 	ret = 0;
646 out_free:
647 	kfree(data);
648 	return ret;
649 }
650 IWL_EXPORT_SYMBOL(iwl_sar_get_wgds_table);
651 
652 bool iwl_sar_geo_support(struct iwl_fw_runtime *fwrt)
653 {
654 	/*
655 	 * The GEO_TX_POWER_LIMIT command is not supported on earlier
656 	 * firmware versions.  Unfortunately, we don't have a TLV API
657 	 * flag to rely on, so rely on the major version which is in
658 	 * the first byte of ucode_ver.  This was implemented
659 	 * initially on version 38 and then backported to 17.  It was
660 	 * also backported to 29, but only for 7265D devices.  The
661 	 * intention was to have it in 36 as well, but not all 8000
662 	 * family got this feature enabled.  The 8000 family is the
663 	 * only one using version 36, so skip this version entirely.
664 	 */
665 	return IWL_UCODE_SERIAL(fwrt->fw->ucode_ver) >= 38 ||
666 	       IWL_UCODE_SERIAL(fwrt->fw->ucode_ver) == 17 ||
667 	       (IWL_UCODE_SERIAL(fwrt->fw->ucode_ver) == 29 &&
668 		((fwrt->trans->hw_rev & CSR_HW_REV_TYPE_MSK) ==
669 		 CSR_HW_REV_TYPE_7265D));
670 }
671 IWL_EXPORT_SYMBOL(iwl_sar_geo_support);
672 
673 int iwl_sar_geo_init(struct iwl_fw_runtime *fwrt,
674 		     struct iwl_per_chain_offset *table, u32 n_bands)
675 {
676 	int ret, i, j;
677 
678 	if (!iwl_sar_geo_support(fwrt))
679 		return -EOPNOTSUPP;
680 
681 	ret = iwl_sar_get_wgds_table(fwrt);
682 	if (ret < 0) {
683 		IWL_DEBUG_RADIO(fwrt,
684 				"Geo SAR BIOS table invalid or unavailable. (%d)\n",
685 				ret);
686 		/* we don't fail if the table is not available */
687 		return -ENOENT;
688 	}
689 
690 	for (i = 0; i < ACPI_NUM_GEO_PROFILES; i++) {
691 		for (j = 0; j < n_bands; j++) {
692 			struct iwl_per_chain_offset *chain =
693 				&table[i * n_bands + j];
694 			u8 *value;
695 
696 			if (j * ACPI_GEO_PER_CHAIN_SIZE >=
697 			    ARRAY_SIZE(fwrt->geo_profiles[0].values))
698 				/*
699 				 * Currently we only store lb an hb values, and
700 				 * don't have any special ones for uhb. So leave
701 				 * those empty for the time being
702 				 */
703 				break;
704 
705 			value = &fwrt->geo_profiles[i].values[j *
706 				ACPI_GEO_PER_CHAIN_SIZE];
707 			chain->max_tx_power = cpu_to_le16(value[0]);
708 			chain->chain_a = value[1];
709 			chain->chain_b = value[2];
710 			IWL_DEBUG_RADIO(fwrt,
711 					"SAR geographic profile[%d] Band[%d]: chain A = %d chain B = %d max_tx_power = %d\n",
712 					i, j, value[1], value[2], value[0]);
713 		}
714 	}
715 
716 	return 0;
717 }
718 IWL_EXPORT_SYMBOL(iwl_sar_geo_init);
719 
720 __le32 iwl_acpi_get_lari_config_bitmap(struct iwl_fw_runtime *fwrt)
721 {
722 	int ret;
723 	u8 value;
724 	__le32 config_bitmap = 0;
725 
726 	/*
727 	 ** Evaluate func 'DSM_FUNC_ENABLE_INDONESIA_5G2'
728 	 */
729 	ret = iwl_acpi_get_dsm_u8(fwrt->dev, 0,
730 				  DSM_FUNC_ENABLE_INDONESIA_5G2,
731 				  &iwl_guid, &value);
732 
733 	if (!ret && value == DSM_VALUE_INDONESIA_ENABLE)
734 		config_bitmap |=
735 			cpu_to_le32(LARI_CONFIG_ENABLE_5G2_IN_INDONESIA_MSK);
736 
737 	/*
738 	 ** Evaluate func 'DSM_FUNC_DISABLE_SRD'
739 	 */
740 	ret = iwl_acpi_get_dsm_u8(fwrt->dev, 0,
741 				  DSM_FUNC_DISABLE_SRD,
742 				  &iwl_guid, &value);
743 	if (!ret) {
744 		if (value == DSM_VALUE_SRD_PASSIVE)
745 			config_bitmap |=
746 				cpu_to_le32(LARI_CONFIG_CHANGE_ETSI_TO_PASSIVE_MSK);
747 		else if (value == DSM_VALUE_SRD_DISABLE)
748 			config_bitmap |=
749 				cpu_to_le32(LARI_CONFIG_CHANGE_ETSI_TO_DISABLED_MSK);
750 	}
751 
752 	return config_bitmap;
753 }
754 IWL_EXPORT_SYMBOL(iwl_acpi_get_lari_config_bitmap);
755