Merge tag 'lzo-update-signature-20130226' of git://github.com/markus-oberhumer/linux
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / acpi / acpica / tbfadt.c
CommitLineData
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1/******************************************************************************
2 *
3 * Module Name: tbfadt - FADT table utilities
4 *
5 *****************************************************************************/
6
7/*
25f044e6 8 * Copyright (C) 2000 - 2013, Intel Corp.
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9 * All rights reserved.
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions, and the following disclaimer,
16 * without modification.
17 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
18 * substantially similar to the "NO WARRANTY" disclaimer below
19 * ("Disclaimer") and any redistribution must be conditioned upon
20 * including a substantially similar Disclaimer requirement for further
21 * binary redistribution.
22 * 3. Neither the names of the above-listed copyright holders nor the names
23 * of any contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * Alternatively, this software may be distributed under the terms of the
27 * GNU General Public License ("GPL") version 2 as published by the Free
28 * Software Foundation.
29 *
30 * NO WARRANTY
31 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
32 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
33 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
34 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
35 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
37 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
38 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
39 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
40 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
41 * POSSIBILITY OF SUCH DAMAGES.
42 */
43
44#include <acpi/acpi.h>
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45#include "accommon.h"
46#include "actables.h"
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47
48#define _COMPONENT ACPI_TABLES
49ACPI_MODULE_NAME("tbfadt")
50
51/* Local prototypes */
66be71ff 52static void
ea5d8ebc 53acpi_tb_init_generic_address(struct acpi_generic_address *generic_address,
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54 u8 space_id,
55 u8 byte_width, u64 address, char *register_name);
95befdb3 56
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57static void acpi_tb_convert_fadt(void);
58
59static void acpi_tb_validate_fadt(void);
60
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61static void acpi_tb_setup_fadt_registers(void);
62
ea5d8ebc 63/* Table for conversion of FADT to common internal format and FADT validation */
95befdb3 64
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65typedef struct acpi_fadt_info {
66 char *name;
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67 u16 address64;
68 u16 address32;
69 u16 length;
4b67a0e4 70 u8 default_length;
ea5d8ebc 71 u8 type;
95befdb3 72
ea5d8ebc 73} acpi_fadt_info;
95befdb3 74
ecafe6fa 75#define ACPI_FADT_OPTIONAL 0
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76#define ACPI_FADT_REQUIRED 1
77#define ACPI_FADT_SEPARATE_LENGTH 2
78
79static struct acpi_fadt_info fadt_info_table[] = {
4b67a0e4 80 {"Pm1aEventBlock",
81 ACPI_FADT_OFFSET(xpm1a_event_block),
95befdb3 82 ACPI_FADT_OFFSET(pm1a_event_block),
4b67a0e4 83 ACPI_FADT_OFFSET(pm1_event_length),
84 ACPI_PM1_REGISTER_WIDTH * 2, /* Enable + Status register */
85 ACPI_FADT_REQUIRED},
ea5d8ebc 86
4b67a0e4 87 {"Pm1bEventBlock",
88 ACPI_FADT_OFFSET(xpm1b_event_block),
95befdb3 89 ACPI_FADT_OFFSET(pm1b_event_block),
4b67a0e4 90 ACPI_FADT_OFFSET(pm1_event_length),
91 ACPI_PM1_REGISTER_WIDTH * 2, /* Enable + Status register */
ecafe6fa 92 ACPI_FADT_OPTIONAL},
ea5d8ebc 93
4b67a0e4 94 {"Pm1aControlBlock",
95 ACPI_FADT_OFFSET(xpm1a_control_block),
95befdb3 96 ACPI_FADT_OFFSET(pm1a_control_block),
4b67a0e4 97 ACPI_FADT_OFFSET(pm1_control_length),
98 ACPI_PM1_REGISTER_WIDTH,
99 ACPI_FADT_REQUIRED},
ea5d8ebc 100
4b67a0e4 101 {"Pm1bControlBlock",
102 ACPI_FADT_OFFSET(xpm1b_control_block),
95befdb3 103 ACPI_FADT_OFFSET(pm1b_control_block),
4b67a0e4 104 ACPI_FADT_OFFSET(pm1_control_length),
105 ACPI_PM1_REGISTER_WIDTH,
ecafe6fa 106 ACPI_FADT_OPTIONAL},
ea5d8ebc 107
4b67a0e4 108 {"Pm2ControlBlock",
109 ACPI_FADT_OFFSET(xpm2_control_block),
95befdb3 110 ACPI_FADT_OFFSET(pm2_control_block),
4b67a0e4 111 ACPI_FADT_OFFSET(pm2_control_length),
112 ACPI_PM2_REGISTER_WIDTH,
113 ACPI_FADT_SEPARATE_LENGTH},
ea5d8ebc 114
4b67a0e4 115 {"PmTimerBlock",
116 ACPI_FADT_OFFSET(xpm_timer_block),
ea5d8ebc 117 ACPI_FADT_OFFSET(pm_timer_block),
4b67a0e4 118 ACPI_FADT_OFFSET(pm_timer_length),
119 ACPI_PM_TIMER_WIDTH,
120 ACPI_FADT_REQUIRED},
ea5d8ebc 121
4b67a0e4 122 {"Gpe0Block",
123 ACPI_FADT_OFFSET(xgpe0_block),
ea5d8ebc 124 ACPI_FADT_OFFSET(gpe0_block),
4b67a0e4 125 ACPI_FADT_OFFSET(gpe0_block_length),
126 0,
127 ACPI_FADT_SEPARATE_LENGTH},
ea5d8ebc 128
4b67a0e4 129 {"Gpe1Block",
130 ACPI_FADT_OFFSET(xgpe1_block),
ea5d8ebc 131 ACPI_FADT_OFFSET(gpe1_block),
4b67a0e4 132 ACPI_FADT_OFFSET(gpe1_block_length),
133 0,
134 ACPI_FADT_SEPARATE_LENGTH}
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135};
136
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137#define ACPI_FADT_INFO_ENTRIES \
138 (sizeof (fadt_info_table) / sizeof (struct acpi_fadt_info))
95befdb3 139
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140/* Table used to split Event Blocks into separate status/enable registers */
141
142typedef struct acpi_fadt_pm_info {
143 struct acpi_generic_address *target;
ecafe6fa 144 u16 source;
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145 u8 register_num;
146
147} acpi_fadt_pm_info;
148
149static struct acpi_fadt_pm_info fadt_pm_info_table[] = {
150 {&acpi_gbl_xpm1a_status,
151 ACPI_FADT_OFFSET(xpm1a_event_block),
152 0},
153
154 {&acpi_gbl_xpm1a_enable,
155 ACPI_FADT_OFFSET(xpm1a_event_block),
156 1},
157
158 {&acpi_gbl_xpm1b_status,
159 ACPI_FADT_OFFSET(xpm1b_event_block),
160 0},
161
162 {&acpi_gbl_xpm1b_enable,
163 ACPI_FADT_OFFSET(xpm1b_event_block),
164 1}
165};
166
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167#define ACPI_FADT_PM_INFO_ENTRIES \
168 (sizeof (fadt_pm_info_table) / sizeof (struct acpi_fadt_pm_info))
531c633d 169
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170/*******************************************************************************
171 *
172 * FUNCTION: acpi_tb_init_generic_address
173 *
ea5d8ebc 174 * PARAMETERS: generic_address - GAS struct to be initialized
75c8044f 175 * space_id - ACPI Space ID for this register
fcea94ba 176 * byte_width - Width of this register
ba494bee 177 * address - Address of the register
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178 *
179 * RETURN: None
180 *
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181 * DESCRIPTION: Initialize a Generic Address Structure (GAS)
182 * See the ACPI specification for a full description and
183 * definition of this structure.
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184 *
185 ******************************************************************************/
186
66be71ff 187static void
ea5d8ebc 188acpi_tb_init_generic_address(struct acpi_generic_address *generic_address,
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189 u8 space_id,
190 u8 byte_width, u64 address, char *register_name)
95befdb3 191{
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192 u8 bit_width;
193
194 /* Bit width field in the GAS is only one byte long, 255 max */
195
196 bit_width = (u8)(byte_width * 8);
197
198 if (byte_width > 31) { /* (31*8)=248 */
199 ACPI_ERROR((AE_INFO,
200 "%s - 32-bit FADT register is too long (%u bytes, %u bits) "
201 "to convert to GAS struct - 255 bits max, truncating",
202 register_name, byte_width, (byte_width * 8)));
203
204 bit_width = 255;
205 }
95befdb3 206
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207 /*
208 * The 64-bit Address field is non-aligned in the byte packed
209 * GAS struct.
210 */
211 ACPI_MOVE_64_TO_64(&generic_address->address, &address);
212
213 /* All other fields are byte-wide */
214
06f55419 215 generic_address->space_id = space_id;
66be71ff 216 generic_address->bit_width = bit_width;
ea5d8ebc 217 generic_address->bit_offset = 0;
06f55419 218 generic_address->access_width = 0; /* Access width ANY */
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219}
220
221/*******************************************************************************
222 *
223 * FUNCTION: acpi_tb_parse_fadt
224 *
225 * PARAMETERS: table_index - Index for the FADT
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226 *
227 * RETURN: None
228 *
229 * DESCRIPTION: Initialize the FADT, DSDT and FACS tables
230 * (FADT contains the addresses of the DSDT and FACS)
231 *
232 ******************************************************************************/
233
97cbb7d1 234void acpi_tb_parse_fadt(u32 table_index)
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235{
236 u32 length;
237 struct acpi_table_header *table;
238
239 /*
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240 * The FADT has multiple versions with different lengths,
241 * and it contains pointers to both the DSDT and FACS tables.
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242 *
243 * Get a local copy of the FADT and convert it to a common format
244 * Map entire FADT, assumed to be smaller than one page.
245 */
246 length = acpi_gbl_root_table_list.tables[table_index].length;
247
248 table =
249 acpi_os_map_memory(acpi_gbl_root_table_list.tables[table_index].
250 address, length);
251 if (!table) {
252 return;
253 }
254
255 /*
256 * Validate the FADT checksum before we copy the table. Ignore
257 * checksum error as we want to try to get the DSDT and FACS.
258 */
259 (void)acpi_tb_verify_checksum(table, length);
260
531c633d 261 /* Create a local copy of the FADT in common ACPI 2.0+ format */
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262
263 acpi_tb_create_local_fadt(table, length);
264
265 /* All done with the real FADT, unmap it */
266
267 acpi_os_unmap_memory(table, length);
268
269 /* Obtain the DSDT and FACS tables via their addresses within the FADT */
270
271 acpi_tb_install_table((acpi_physical_address) acpi_gbl_FADT.Xdsdt,
97cbb7d1 272 ACPI_SIG_DSDT, ACPI_TABLE_INDEX_DSDT);
71392844 273
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274 /* If Hardware Reduced flag is set, there is no FACS */
275
276 if (!acpi_gbl_reduced_hardware) {
277 acpi_tb_install_table((acpi_physical_address) acpi_gbl_FADT.
278 Xfacs, ACPI_SIG_FACS,
279 ACPI_TABLE_INDEX_FACS);
280 }
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281}
282
283/*******************************************************************************
284 *
285 * FUNCTION: acpi_tb_create_local_fadt
286 *
ba494bee
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287 * PARAMETERS: table - Pointer to BIOS FADT
288 * length - Length of the table
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289 *
290 * RETURN: None
291 *
292 * DESCRIPTION: Get a local copy of the FADT and convert it to a common format.
293 * Performs validation on some important FADT fields.
294 *
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295 * NOTE: We create a local copy of the FADT regardless of the version.
296 *
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297 ******************************************************************************/
298
299void acpi_tb_create_local_fadt(struct acpi_table_header *table, u32 length)
300{
ea5d8ebc 301 /*
55f8f3cc 302 * Check if the FADT is larger than the largest table that we expect
2355e10f 303 * (the ACPI 5.0 version). If so, truncate the table, and issue
55f8f3cc 304 * a warning.
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305 */
306 if (length > sizeof(struct acpi_table_fadt)) {
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307 ACPI_BIOS_WARNING((AE_INFO,
308 "FADT (revision %u) is longer than ACPI 5.0 version, "
309 "truncating length %u to %u",
310 table->revision, length,
311 (u32)sizeof(struct acpi_table_fadt)));
ea5d8ebc 312 }
95befdb3 313
55f8f3cc 314 /* Clear the entire local FADT */
95befdb3 315
ea5d8ebc 316 ACPI_MEMSET(&acpi_gbl_FADT, 0, sizeof(struct acpi_table_fadt));
71392844 317
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318 /* Copy the original FADT, up to sizeof (struct acpi_table_fadt) */
319
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320 ACPI_MEMCPY(&acpi_gbl_FADT, table,
321 ACPI_MIN(length, sizeof(struct acpi_table_fadt)));
95befdb3 322
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323 /* Take a copy of the Hardware Reduced flag */
324
325 acpi_gbl_reduced_hardware = FALSE;
326 if (acpi_gbl_FADT.flags & ACPI_FADT_HW_REDUCED) {
327 acpi_gbl_reduced_hardware = TRUE;
328 }
329
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330 /* Convert the local copy of the FADT to the common internal format */
331
95befdb3 332 acpi_tb_convert_fadt();
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333
334 /* Validate FADT values now, before we make any changes */
335
336 acpi_tb_validate_fadt();
337
338 /* Initialize the global ACPI register structures */
339
340 acpi_tb_setup_fadt_registers();
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341}
342
343/*******************************************************************************
344 *
345 * FUNCTION: acpi_tb_convert_fadt
346 *
347 * PARAMETERS: None, uses acpi_gbl_FADT
348 *
349 * RETURN: None
350 *
351 * DESCRIPTION: Converts all versions of the FADT to a common internal format.
31fbc073 352 * Expand 32-bit addresses to 64-bit as necessary.
95befdb3 353 *
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354 * NOTE: acpi_gbl_FADT must be of size (struct acpi_table_fadt),
355 * and must contain a copy of the actual FADT.
95befdb3 356 *
31fbc073 357 * Notes on 64-bit register addresses:
95befdb3 358 *
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359 * After this FADT conversion, later ACPICA code will only use the 64-bit "X"
360 * fields of the FADT for all ACPI register addresses.
95befdb3 361 *
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362 * The 64-bit "X" fields are optional extensions to the original 32-bit FADT
363 * V1.0 fields. Even if they are present in the FADT, they are optional and
364 * are unused if the BIOS sets them to zero. Therefore, we must copy/expand
365 * 32-bit V1.0 fields if the corresponding X field is zero.
95befdb3 366 *
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367 * For ACPI 1.0 FADTs, all 32-bit address fields are expanded to the
368 * corresponding "X" fields in the internal FADT.
369 *
370 * For ACPI 2.0+ FADTs, all valid (non-zero) 32-bit address fields are expanded
371 * to the corresponding 64-bit X fields. For compatibility with other ACPI
372 * implementations, we ignore the 64-bit field if the 32-bit field is valid,
373 * regardless of whether the host OS is 32-bit or 64-bit.
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374 *
375 ******************************************************************************/
376
71392844 377static void acpi_tb_convert_fadt(void)
95befdb3 378{
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379 struct acpi_generic_address *address64;
380 u32 address32;
67a119f9 381 u32 i;
95befdb3 382
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383 /*
384 * Expand the 32-bit FACS and DSDT addresses to 64-bit as necessary.
385 * Later code will always use the X 64-bit field. Also, check for an
386 * address mismatch between the 32-bit and 64-bit address fields
387 * (FIRMWARE_CTRL/X_FIRMWARE_CTRL, DSDT/X_DSDT) which would indicate
388 * the presence of two FACS or two DSDT tables.
389 */
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390 if (!acpi_gbl_FADT.Xfacs) {
391 acpi_gbl_FADT.Xfacs = (u64) acpi_gbl_FADT.facs;
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392 } else if (acpi_gbl_FADT.facs &&
393 (acpi_gbl_FADT.Xfacs != (u64) acpi_gbl_FADT.facs)) {
394 ACPI_WARNING((AE_INFO,
395 "32/64 FACS address mismatch in FADT - two FACS tables!"));
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396 }
397
398 if (!acpi_gbl_FADT.Xdsdt) {
399 acpi_gbl_FADT.Xdsdt = (u64) acpi_gbl_FADT.dsdt;
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400 } else if (acpi_gbl_FADT.dsdt &&
401 (acpi_gbl_FADT.Xdsdt != (u64) acpi_gbl_FADT.dsdt)) {
402 ACPI_WARNING((AE_INFO,
403 "32/64 DSDT address mismatch in FADT - two DSDT tables!"));
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404 }
405
406 /*
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407 * For ACPI 1.0 FADTs (revision 1 or 2), ensure that reserved fields which
408 * should be zero are indeed zero. This will workaround BIOSs that
409 * inadvertently place values in these fields.
410 *
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411 * The ACPI 1.0 reserved fields that will be zeroed are the bytes located
412 * at offset 45, 55, 95, and the word located at offset 109, 110.
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413 *
414 * Note: The FADT revision value is unreliable. Only the length can be
415 * trusted.
55f8f3cc 416 */
64b3db22 417 if (acpi_gbl_FADT.header.length <= ACPI_FADT_V2_SIZE) {
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418 acpi_gbl_FADT.preferred_profile = 0;
419 acpi_gbl_FADT.pstate_control = 0;
420 acpi_gbl_FADT.cst_control = 0;
421 acpi_gbl_FADT.boot_flags = 0;
422 }
423
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424 /* Update the local FADT table header length */
425
426 acpi_gbl_FADT.header.length = sizeof(struct acpi_table_fadt);
427
55f8f3cc 428 /*
4b67a0e4 429 * Expand the ACPI 1.0 32-bit addresses to the ACPI 2.0 64-bit "X"
430 * generic address structures as necessary. Later code will always use
431 * the 64-bit address structures.
31fbc073
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432 *
433 * March 2009:
434 * We now always use the 32-bit address if it is valid (non-null). This
435 * is not in accordance with the ACPI specification which states that
436 * the 64-bit address supersedes the 32-bit version, but we do this for
437 * compatibility with other ACPI implementations. Most notably, in the
438 * case where both the 32 and 64 versions are non-null, we use the 32-bit
439 * version. This is the only address that is guaranteed to have been
440 * tested by the BIOS manufacturer.
95befdb3 441 */
ea5d8ebc 442 for (i = 0; i < ACPI_FADT_INFO_ENTRIES; i++) {
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443 address32 = *ACPI_ADD_PTR(u32,
444 &acpi_gbl_FADT,
445 fadt_info_table[i].address32);
95befdb3 446
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447 address64 = ACPI_ADD_PTR(struct acpi_generic_address,
448 &acpi_gbl_FADT,
449 fadt_info_table[i].address64);
95befdb3 450
31fbc073
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451 /*
452 * If both 32- and 64-bit addresses are valid (non-zero),
453 * they must match.
454 */
455 if (address64->address && address32 &&
3b3ea775
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456 (address64->address != (u64)address32)) {
457 ACPI_BIOS_ERROR((AE_INFO,
458 "32/64X address mismatch in FADT/%s: "
459 "0x%8.8X/0x%8.8X%8.8X, using 32",
460 fadt_info_table[i].name, address32,
461 ACPI_FORMAT_UINT64(address64->
462 address)));
31fbc073 463 }
06f55419 464
31fbc073 465 /* Always use 32-bit address if it is valid (non-null) */
06f55419 466
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467 if (address32) {
468 /*
469 * Copy the 32-bit address to the 64-bit GAS structure. The
470 * Space ID is always I/O for 32-bit legacy address fields
471 */
472 acpi_tb_init_generic_address(address64,
06f55419 473 ACPI_ADR_SPACE_SYSTEM_IO,
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474 *ACPI_ADD_PTR(u8,
475 &acpi_gbl_FADT,
ea5d8ebc 476 fadt_info_table
95befdb3 477 [i].length),
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478 (u64) address32,
479 fadt_info_table[i].name);
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480 }
481 }
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482}
483
ec41f193 484/*******************************************************************************
95befdb3
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485 *
486 * FUNCTION: acpi_tb_validate_fadt
487 *
ba494bee 488 * PARAMETERS: table - Pointer to the FADT to be validated
95befdb3 489 *
e56b638b 490 * RETURN: None
95befdb3 491 *
ea5d8ebc
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492 * DESCRIPTION: Validate various important fields within the FADT. If a problem
493 * is found, issue a message, but no status is returned.
494 * Used by both the table manager and the disassembler.
495 *
496 * Possible additional checks:
497 * (acpi_gbl_FADT.pm1_event_length >= 4)
498 * (acpi_gbl_FADT.pm1_control_length >= 2)
499 * (acpi_gbl_FADT.pm_timer_length >= 4)
500 * Gpe block lengths must be multiple of 2
95befdb3
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501 *
502 ******************************************************************************/
503
71392844 504static void acpi_tb_validate_fadt(void)
95befdb3 505{
06f55419 506 char *name;
ea5d8ebc
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507 struct acpi_generic_address *address64;
508 u8 length;
67a119f9 509 u32 i;
95befdb3 510
06f55419
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511 /*
512 * Check for FACS and DSDT address mismatches. An address mismatch between
513 * the 32-bit and 64-bit address fields (FIRMWARE_CTRL/X_FIRMWARE_CTRL and
514 * DSDT/X_DSDT) would indicate the presence of two FACS or two DSDT tables.
515 */
516 if (acpi_gbl_FADT.facs &&
3b3ea775
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517 (acpi_gbl_FADT.Xfacs != (u64)acpi_gbl_FADT.facs)) {
518 ACPI_BIOS_WARNING((AE_INFO,
519 "32/64X FACS address mismatch in FADT - "
520 "0x%8.8X/0x%8.8X%8.8X, using 32",
521 acpi_gbl_FADT.facs,
522 ACPI_FORMAT_UINT64(acpi_gbl_FADT.Xfacs)));
523
524 acpi_gbl_FADT.Xfacs = (u64)acpi_gbl_FADT.facs;
06f55419 525 }
ea5d8ebc 526
06f55419 527 if (acpi_gbl_FADT.dsdt &&
3b3ea775
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528 (acpi_gbl_FADT.Xdsdt != (u64)acpi_gbl_FADT.dsdt)) {
529 ACPI_BIOS_WARNING((AE_INFO,
530 "32/64X DSDT address mismatch in FADT - "
531 "0x%8.8X/0x%8.8X%8.8X, using 32",
532 acpi_gbl_FADT.dsdt,
533 ACPI_FORMAT_UINT64(acpi_gbl_FADT.Xdsdt)));
534
535 acpi_gbl_FADT.Xdsdt = (u64)acpi_gbl_FADT.dsdt;
06f55419 536 }
ea5d8ebc 537
22e5b40a
BM
538 /* If Hardware Reduced flag is set, we are all done */
539
540 if (acpi_gbl_reduced_hardware) {
541 return;
542 }
543
06f55419 544 /* Examine all of the 64-bit extended address fields (X fields) */
ea5d8ebc 545
06f55419
BM
546 for (i = 0; i < ACPI_FADT_INFO_ENTRIES; i++) {
547 /*
e4c1ebfc
BM
548 * Generate pointer to the 64-bit address, get the register
549 * length (width) and the register name
06f55419
BM
550 */
551 address64 = ACPI_ADD_PTR(struct acpi_generic_address,
552 &acpi_gbl_FADT,
4b67a0e4 553 fadt_info_table[i].address64);
71392844
BM
554 length =
555 *ACPI_ADD_PTR(u8, &acpi_gbl_FADT,
556 fadt_info_table[i].length);
06f55419
BM
557 name = fadt_info_table[i].name;
558
559 /*
560 * For each extended field, check for length mismatch between the
4b67a0e4 561 * legacy length field and the corresponding 64-bit X length field.
06f55419 562 */
aab61b67
BM
563 if (address64->address &&
564 (address64->bit_width != ACPI_MUL_8(length))) {
3b3ea775
BM
565 ACPI_BIOS_WARNING((AE_INFO,
566 "32/64X length mismatch in FADT/%s: %u/%u",
567 name, ACPI_MUL_8(length),
568 address64->bit_width));
06f55419 569 }
ea5d8ebc
BM
570
571 if (fadt_info_table[i].type & ACPI_FADT_REQUIRED) {
572 /*
573 * Field is required (Pm1a_event, Pm1a_control, pm_timer).
574 * Both the address and length must be non-zero.
575 */
576 if (!address64->address || !length) {
3b3ea775
BM
577 ACPI_BIOS_ERROR((AE_INFO,
578 "Required FADT field %s has zero address and/or length: "
579 "0x%8.8X%8.8X/0x%X",
580 name,
581 ACPI_FORMAT_UINT64(address64->
582 address),
583 length));
ea5d8ebc
BM
584 }
585 } else if (fadt_info_table[i].type & ACPI_FADT_SEPARATE_LENGTH) {
586 /*
ba494bee 587 * Field is optional (Pm2_control, GPE0, GPE1) AND has its own
ec41f193
BM
588 * length field. If present, both the address and length must
589 * be valid.
ea5d8ebc 590 */
ec41f193
BM
591 if ((address64->address && !length) ||
592 (!address64->address && length)) {
3b3ea775
BM
593 ACPI_BIOS_WARNING((AE_INFO,
594 "Optional FADT field %s has zero address or length: "
595 "0x%8.8X%8.8X/0x%X",
596 name,
597 ACPI_FORMAT_UINT64
598 (address64->address),
599 length));
ea5d8ebc
BM
600 }
601 }
95befdb3
BM
602 }
603}
531c633d 604
ec41f193 605/*******************************************************************************
531c633d
BM
606 *
607 * FUNCTION: acpi_tb_setup_fadt_registers
608 *
609 * PARAMETERS: None, uses acpi_gbl_FADT.
610 *
611 * RETURN: None
612 *
613 * DESCRIPTION: Initialize global ACPI PM1 register definitions. Optionally,
614 * force FADT register definitions to their default lengths.
615 *
616 ******************************************************************************/
617
618static void acpi_tb_setup_fadt_registers(void)
619{
620 struct acpi_generic_address *target64;
621 struct acpi_generic_address *source64;
622 u8 pm1_register_byte_width;
623 u32 i;
624
625 /*
626 * Optionally check all register lengths against the default values and
627 * update them if they are incorrect.
628 */
629 if (acpi_gbl_use_default_register_widths) {
630 for (i = 0; i < ACPI_FADT_INFO_ENTRIES; i++) {
631 target64 =
632 ACPI_ADD_PTR(struct acpi_generic_address,
633 &acpi_gbl_FADT,
634 fadt_info_table[i].address64);
635
636 /*
637 * If a valid register (Address != 0) and the (default_length > 0)
638 * (Not a GPE register), then check the width against the default.
639 */
640 if ((target64->address) &&
641 (fadt_info_table[i].default_length > 0) &&
642 (fadt_info_table[i].default_length !=
643 target64->bit_width)) {
3b3ea775
BM
644 ACPI_BIOS_WARNING((AE_INFO,
645 "Invalid length for FADT/%s: %u, using default %u",
646 fadt_info_table[i].name,
647 target64->bit_width,
648 fadt_info_table[i].
649 default_length));
531c633d
BM
650
651 /* Incorrect size, set width to the default */
652
653 target64->bit_width =
654 fadt_info_table[i].default_length;
655 }
656 }
657 }
658
659 /*
660 * Get the length of the individual PM1 registers (enable and status).
661 * Each register is defined to be (event block length / 2). Extra divide
662 * by 8 converts bits to bytes.
663 */
ec41f193
BM
664 pm1_register_byte_width = (u8)
665 ACPI_DIV_16(acpi_gbl_FADT.xpm1a_event_block.bit_width);
531c633d
BM
666
667 /*
668 * Calculate separate GAS structs for the PM1x (A/B) Status and Enable
669 * registers. These addresses do not appear (directly) in the FADT, so it
670 * is useful to pre-calculate them from the PM1 Event Block definitions.
671 *
672 * The PM event blocks are split into two register blocks, first is the
673 * PM Status Register block, followed immediately by the PM Enable
674 * Register block. Each is of length (pm1_event_length/2)
675 *
676 * Note: The PM1A event block is required by the ACPI specification.
677 * However, the PM1B event block is optional and is rarely, if ever,
678 * used.
679 */
680
681 for (i = 0; i < ACPI_FADT_PM_INFO_ENTRIES; i++) {
682 source64 =
683 ACPI_ADD_PTR(struct acpi_generic_address, &acpi_gbl_FADT,
684 fadt_pm_info_table[i].source);
685
5e053e77
LM
686 if (source64->address) {
687 acpi_tb_init_generic_address(fadt_pm_info_table[i].
688 target, source64->space_id,
689 pm1_register_byte_width,
690 source64->address +
691 (fadt_pm_info_table[i].
692 register_num *
66be71ff
BM
693 pm1_register_byte_width),
694 "PmRegisters");
5e053e77 695 }
531c633d
BM
696 }
697}