Commit | Line | Data |
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c942fddf | 1 | // SPDX-License-Identifier: GPL-2.0-or-later |
1da177e4 | 2 | /* |
a8d4fc22 | 3 | * ec.c - ACPI Embedded Controller Driver (v3) |
1da177e4 | 4 | * |
a8d4fc22 LZ |
5 | * Copyright (C) 2001-2015 Intel Corporation |
6 | * Author: 2014, 2015 Lv Zheng <lv.zheng@intel.com> | |
4a3f6b5b LZ |
7 | * 2006, 2007 Alexey Starikovskiy <alexey.y.starikovskiy@intel.com> |
8 | * 2006 Denis Sadykov <denis.m.sadykov@intel.com> | |
9 | * 2004 Luming Yu <luming.yu@intel.com> | |
10 | * 2001, 2002 Andy Grover <andrew.grover@intel.com> | |
11 | * 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com> | |
12 | * Copyright (C) 2008 Alexey Starikovskiy <astarikovskiy@suse.de> | |
1da177e4 LT |
13 | */ |
14 | ||
7c6db4e0 | 15 | /* Uncomment next line to get verbose printout */ |
d772b3b3 | 16 | /* #define DEBUG */ |
b6aeab44 | 17 | #define pr_fmt(fmt) "ACPI: EC: " fmt |
d772b3b3 | 18 | |
1da177e4 LT |
19 | #include <linux/kernel.h> |
20 | #include <linux/module.h> | |
21 | #include <linux/init.h> | |
22 | #include <linux/types.h> | |
23 | #include <linux/delay.h> | |
451566f4 | 24 | #include <linux/interrupt.h> |
837012ed | 25 | #include <linux/list.h> |
7a0d59f6 | 26 | #include <linux/printk.h> |
7c6db4e0 | 27 | #include <linux/spinlock.h> |
5a0e3ad6 | 28 | #include <linux/slab.h> |
7a0d59f6 | 29 | #include <linux/string.h> |
10a08fd6 | 30 | #include <linux/suspend.h> |
8b48463f | 31 | #include <linux/acpi.h> |
eb27cae8 | 32 | #include <linux/dmi.h> |
8b48463f | 33 | #include <asm/io.h> |
1da177e4 | 34 | |
1195a098 TR |
35 | #include "internal.h" |
36 | ||
1da177e4 | 37 | #define ACPI_EC_CLASS "embedded_controller" |
1da177e4 | 38 | #define ACPI_EC_DEVICE_NAME "Embedded Controller" |
837012ed | 39 | |
703959d4 | 40 | /* EC status register */ |
1da177e4 LT |
41 | #define ACPI_EC_FLAG_OBF 0x01 /* Output buffer full */ |
42 | #define ACPI_EC_FLAG_IBF 0x02 /* Input buffer full */ | |
dd43de20 | 43 | #define ACPI_EC_FLAG_CMD 0x08 /* Input buffer contains a command */ |
451566f4 | 44 | #define ACPI_EC_FLAG_BURST 0x10 /* burst mode */ |
1da177e4 | 45 | #define ACPI_EC_FLAG_SCI 0x20 /* EC-SCI occurred */ |
4350933a | 46 | |
1d68d261 LZ |
47 | /* |
48 | * The SCI_EVT clearing timing is not defined by the ACPI specification. | |
49 | * This leads to lots of practical timing issues for the host EC driver. | |
50 | * The following variations are defined (from the target EC firmware's | |
51 | * perspective): | |
52 | * STATUS: After indicating SCI_EVT edge triggered IRQ to the host, the | |
53 | * target can clear SCI_EVT at any time so long as the host can see | |
54 | * the indication by reading the status register (EC_SC). So the | |
55 | * host should re-check SCI_EVT after the first time the SCI_EVT | |
56 | * indication is seen, which is the same time the query request | |
57 | * (QR_EC) is written to the command register (EC_CMD). SCI_EVT set | |
58 | * at any later time could indicate another event. Normally such | |
59 | * kind of EC firmware has implemented an event queue and will | |
60 | * return 0x00 to indicate "no outstanding event". | |
61 | * QUERY: After seeing the query request (QR_EC) written to the command | |
62 | * register (EC_CMD) by the host and having prepared the responding | |
63 | * event value in the data register (EC_DATA), the target can safely | |
64 | * clear SCI_EVT because the target can confirm that the current | |
65 | * event is being handled by the host. The host then should check | |
66 | * SCI_EVT right after reading the event response from the data | |
67 | * register (EC_DATA). | |
68 | * EVENT: After seeing the event response read from the data register | |
69 | * (EC_DATA) by the host, the target can clear SCI_EVT. As the | |
70 | * target requires time to notice the change in the data register | |
71 | * (EC_DATA), the host may be required to wait additional guarding | |
72 | * time before checking the SCI_EVT again. Such guarding may not be | |
73 | * necessary if the host is notified via another IRQ. | |
74 | */ | |
75 | #define ACPI_EC_EVT_TIMING_STATUS 0x00 | |
76 | #define ACPI_EC_EVT_TIMING_QUERY 0x01 | |
77 | #define ACPI_EC_EVT_TIMING_EVENT 0x02 | |
78 | ||
703959d4 | 79 | /* EC commands */ |
3261ff4d | 80 | enum ec_command { |
6ccedb10 AS |
81 | ACPI_EC_COMMAND_READ = 0x80, |
82 | ACPI_EC_COMMAND_WRITE = 0x81, | |
83 | ACPI_EC_BURST_ENABLE = 0x82, | |
84 | ACPI_EC_BURST_DISABLE = 0x83, | |
85 | ACPI_EC_COMMAND_QUERY = 0x84, | |
3261ff4d | 86 | }; |
837012ed | 87 | |
5c406412 | 88 | #define ACPI_EC_DELAY 500 /* Wait 500ms max. during EC ops */ |
703959d4 | 89 | #define ACPI_EC_UDELAY_GLK 1000 /* Wait 1ms max. to get global lock */ |
d8d031a6 | 90 | #define ACPI_EC_UDELAY_POLL 550 /* Wait 1ms for EC transaction polling */ |
ad332c8a KC |
91 | #define ACPI_EC_CLEAR_MAX 100 /* Maximum number of events to query |
92 | * when trying to clear the EC */ | |
e1191bd4 | 93 | #define ACPI_EC_MAX_QUERIES 16 /* Maximum number of parallel queries */ |
703959d4 | 94 | |
080e412c | 95 | enum { |
750f628b | 96 | EC_FLAGS_QUERY_ENABLED, /* Query is enabled */ |
4446abc9 | 97 | EC_FLAGS_EVENT_HANDLER_INSTALLED, /* Event handler installed */ |
0e1affe4 | 98 | EC_FLAGS_EC_HANDLER_INSTALLED, /* OpReg handler installed */ |
ab4620f5 | 99 | EC_FLAGS_EC_REG_CALLED, /* OpReg ACPI _REG method called */ |
4446abc9 | 100 | EC_FLAGS_QUERY_METHODS_INSTALLED, /* _Qxx handlers installed */ |
ad479e7f LZ |
101 | EC_FLAGS_STARTED, /* Driver is started */ |
102 | EC_FLAGS_STOPPED, /* Driver is stopped */ | |
4446abc9 | 103 | EC_FLAGS_EVENTS_MASKED, /* Events masked */ |
1da177e4 | 104 | }; |
6ffb221a | 105 | |
f92fca00 LZ |
106 | #define ACPI_EC_COMMAND_POLL 0x01 /* Available for command byte */ |
107 | #define ACPI_EC_COMMAND_COMPLETE 0x02 /* Completed last byte */ | |
108 | ||
7a18e96d TR |
109 | /* ec.c is compiled in acpi namespace so this shows up as acpi.ec_delay param */ |
110 | static unsigned int ec_delay __read_mostly = ACPI_EC_DELAY; | |
111 | module_param(ec_delay, uint, 0644); | |
112 | MODULE_PARM_DESC(ec_delay, "Timeout(ms) waited until an EC command completes"); | |
113 | ||
e1191bd4 LZ |
114 | static unsigned int ec_max_queries __read_mostly = ACPI_EC_MAX_QUERIES; |
115 | module_param(ec_max_queries, uint, 0644); | |
116 | MODULE_PARM_DESC(ec_max_queries, "Maximum parallel _Qxx evaluations"); | |
117 | ||
15de603b LZ |
118 | static bool ec_busy_polling __read_mostly; |
119 | module_param(ec_busy_polling, bool, 0644); | |
120 | MODULE_PARM_DESC(ec_busy_polling, "Use busy polling to advance EC transaction"); | |
121 | ||
122 | static unsigned int ec_polling_guard __read_mostly = ACPI_EC_UDELAY_POLL; | |
123 | module_param(ec_polling_guard, uint, 0644); | |
124 | MODULE_PARM_DESC(ec_polling_guard, "Guard time(us) between EC accesses in polling modes"); | |
125 | ||
3cb02aeb | 126 | static unsigned int ec_event_clearing __read_mostly = ACPI_EC_EVT_TIMING_QUERY; |
1d68d261 | 127 | |
a520d52e FT |
128 | /* |
129 | * If the number of false interrupts per one transaction exceeds | |
130 | * this threshold, will think there is a GPE storm happened and | |
131 | * will disable the GPE for normal transaction. | |
132 | */ | |
133 | static unsigned int ec_storm_threshold __read_mostly = 8; | |
134 | module_param(ec_storm_threshold, uint, 0644); | |
135 | MODULE_PARM_DESC(ec_storm_threshold, "Maxim false GPE numbers not considered as GPE storm"); | |
136 | ||
69cace6e | 137 | static bool ec_freeze_events __read_mostly; |
39a2a2aa LZ |
138 | module_param(ec_freeze_events, bool, 0644); |
139 | MODULE_PARM_DESC(ec_freeze_events, "Disabling event handling during suspend/resume"); | |
140 | ||
76380636 RW |
141 | static bool ec_no_wakeup __read_mostly; |
142 | module_param(ec_no_wakeup, bool, 0644); | |
143 | MODULE_PARM_DESC(ec_no_wakeup, "Do not wake up from suspend-to-idle"); | |
144 | ||
837012ed AS |
145 | struct acpi_ec_query_handler { |
146 | struct list_head node; | |
147 | acpi_ec_query_func func; | |
148 | acpi_handle handle; | |
149 | void *data; | |
150 | u8 query_bit; | |
01305d41 | 151 | struct kref kref; |
837012ed AS |
152 | }; |
153 | ||
8463200a | 154 | struct transaction { |
7c6db4e0 AS |
155 | const u8 *wdata; |
156 | u8 *rdata; | |
157 | unsigned short irq_count; | |
8463200a | 158 | u8 command; |
a2f93aea AS |
159 | u8 wi; |
160 | u8 ri; | |
7c6db4e0 AS |
161 | u8 wlen; |
162 | u8 rlen; | |
f92fca00 | 163 | u8 flags; |
7c6db4e0 AS |
164 | }; |
165 | ||
02b771b6 LZ |
166 | struct acpi_ec_query { |
167 | struct transaction transaction; | |
168 | struct work_struct work; | |
169 | struct acpi_ec_query_handler *handler; | |
4a9af6ca | 170 | struct acpi_ec *ec; |
02b771b6 LZ |
171 | }; |
172 | ||
eafe7509 | 173 | static int acpi_ec_submit_query(struct acpi_ec *ec); |
9aa60f3c | 174 | static void advance_transaction(struct acpi_ec *ec, bool interrupt); |
02b771b6 | 175 | static void acpi_ec_event_handler(struct work_struct *work); |
74443bbe | 176 | |
a9c30768 | 177 | struct acpi_ec *first_ec; |
1195a098 | 178 | EXPORT_SYMBOL(first_ec); |
a9c30768 RW |
179 | |
180 | static struct acpi_ec *boot_ec; | |
69cace6e | 181 | static bool boot_ec_is_ecdt; |
f0ac20c3 | 182 | static struct workqueue_struct *ec_wq; |
e1191bd4 | 183 | static struct workqueue_struct *ec_query_wq; |
703959d4 | 184 | |
59f0aa94 | 185 | static int EC_FLAGS_CORRECT_ECDT; /* Needs ECDT port address correction */ |
4370cbf3 | 186 | static int EC_FLAGS_TRUST_DSDT_GPE; /* Needs DSDT GPE as correction setting */ |
b6a3e147 | 187 | static int EC_FLAGS_CLEAR_ON_RESUME; /* Needs acpi_ec_clear() on boot/resume */ |
5423a0cb | 188 | |
3535a3c1 LZ |
189 | /* -------------------------------------------------------------------------- |
190 | * Logging/Debugging | |
191 | * -------------------------------------------------------------------------- */ | |
192 | ||
193 | /* | |
194 | * Splitters used by the developers to track the boundary of the EC | |
195 | * handling processes. | |
196 | */ | |
197 | #ifdef DEBUG | |
198 | #define EC_DBG_SEP " " | |
199 | #define EC_DBG_DRV "+++++" | |
200 | #define EC_DBG_STM "=====" | |
201 | #define EC_DBG_REQ "*****" | |
202 | #define EC_DBG_EVT "#####" | |
203 | #else | |
204 | #define EC_DBG_SEP "" | |
205 | #define EC_DBG_DRV | |
206 | #define EC_DBG_STM | |
207 | #define EC_DBG_REQ | |
208 | #define EC_DBG_EVT | |
209 | #endif | |
210 | ||
211 | #define ec_log_raw(fmt, ...) \ | |
212 | pr_info(fmt "\n", ##__VA_ARGS__) | |
213 | #define ec_dbg_raw(fmt, ...) \ | |
214 | pr_debug(fmt "\n", ##__VA_ARGS__) | |
215 | #define ec_log(filter, fmt, ...) \ | |
216 | ec_log_raw(filter EC_DBG_SEP fmt EC_DBG_SEP filter, ##__VA_ARGS__) | |
217 | #define ec_dbg(filter, fmt, ...) \ | |
218 | ec_dbg_raw(filter EC_DBG_SEP fmt EC_DBG_SEP filter, ##__VA_ARGS__) | |
219 | ||
220 | #define ec_log_drv(fmt, ...) \ | |
221 | ec_log(EC_DBG_DRV, fmt, ##__VA_ARGS__) | |
222 | #define ec_dbg_drv(fmt, ...) \ | |
223 | ec_dbg(EC_DBG_DRV, fmt, ##__VA_ARGS__) | |
224 | #define ec_dbg_stm(fmt, ...) \ | |
225 | ec_dbg(EC_DBG_STM, fmt, ##__VA_ARGS__) | |
226 | #define ec_dbg_req(fmt, ...) \ | |
227 | ec_dbg(EC_DBG_REQ, fmt, ##__VA_ARGS__) | |
228 | #define ec_dbg_evt(fmt, ...) \ | |
229 | ec_dbg(EC_DBG_EVT, fmt, ##__VA_ARGS__) | |
770970f0 LZ |
230 | #define ec_dbg_ref(ec, fmt, ...) \ |
231 | ec_dbg_raw("%lu: " fmt, ec->reference_count, ## __VA_ARGS__) | |
3535a3c1 | 232 | |
ad479e7f LZ |
233 | /* -------------------------------------------------------------------------- |
234 | * Device Flags | |
235 | * -------------------------------------------------------------------------- */ | |
236 | ||
237 | static bool acpi_ec_started(struct acpi_ec *ec) | |
238 | { | |
239 | return test_bit(EC_FLAGS_STARTED, &ec->flags) && | |
240 | !test_bit(EC_FLAGS_STOPPED, &ec->flags); | |
241 | } | |
242 | ||
750f628b LZ |
243 | static bool acpi_ec_event_enabled(struct acpi_ec *ec) |
244 | { | |
245 | /* | |
246 | * There is an OSPM early stage logic. During the early stages | |
247 | * (boot/resume), OSPMs shouldn't enable the event handling, only | |
248 | * the EC transactions are allowed to be performed. | |
249 | */ | |
250 | if (!test_bit(EC_FLAGS_QUERY_ENABLED, &ec->flags)) | |
251 | return false; | |
252 | /* | |
39a2a2aa LZ |
253 | * However, disabling the event handling is experimental for late |
254 | * stage (suspend), and is controlled by the boot parameter of | |
255 | * "ec_freeze_events": | |
256 | * 1. true: The EC event handling is disabled before entering | |
257 | * the noirq stage. | |
258 | * 2. false: The EC event handling is automatically disabled as | |
259 | * soon as the EC driver is stopped. | |
750f628b | 260 | */ |
39a2a2aa LZ |
261 | if (ec_freeze_events) |
262 | return acpi_ec_started(ec); | |
263 | else | |
264 | return test_bit(EC_FLAGS_STARTED, &ec->flags); | |
750f628b LZ |
265 | } |
266 | ||
9887d22a LZ |
267 | static bool acpi_ec_flushed(struct acpi_ec *ec) |
268 | { | |
269 | return ec->reference_count == 1; | |
270 | } | |
271 | ||
1da177e4 | 272 | /* -------------------------------------------------------------------------- |
ca37bfdf | 273 | * EC Registers |
7a73e60e | 274 | * -------------------------------------------------------------------------- */ |
1da177e4 | 275 | |
6ffb221a | 276 | static inline u8 acpi_ec_read_status(struct acpi_ec *ec) |
1da177e4 | 277 | { |
3ebe08a7 | 278 | u8 x = inb(ec->command_addr); |
7a73e60e | 279 | |
3535a3c1 LZ |
280 | ec_dbg_raw("EC_SC(R) = 0x%2.2x " |
281 | "SCI_EVT=%d BURST=%d CMD=%d IBF=%d OBF=%d", | |
282 | x, | |
283 | !!(x & ACPI_EC_FLAG_SCI), | |
284 | !!(x & ACPI_EC_FLAG_BURST), | |
285 | !!(x & ACPI_EC_FLAG_CMD), | |
286 | !!(x & ACPI_EC_FLAG_IBF), | |
287 | !!(x & ACPI_EC_FLAG_OBF)); | |
3ebe08a7 | 288 | return x; |
451566f4 DT |
289 | } |
290 | ||
6ffb221a | 291 | static inline u8 acpi_ec_read_data(struct acpi_ec *ec) |
703959d4 | 292 | { |
3ebe08a7 | 293 | u8 x = inb(ec->data_addr); |
7a73e60e | 294 | |
d8d031a6 | 295 | ec->timestamp = jiffies; |
3535a3c1 | 296 | ec_dbg_raw("EC_DATA(R) = 0x%2.2x", x); |
7c6db4e0 | 297 | return x; |
7c6db5e5 DS |
298 | } |
299 | ||
6ffb221a | 300 | static inline void acpi_ec_write_cmd(struct acpi_ec *ec, u8 command) |
45bea155 | 301 | { |
3535a3c1 | 302 | ec_dbg_raw("EC_SC(W) = 0x%2.2x", command); |
6ffb221a | 303 | outb(command, ec->command_addr); |
d8d031a6 | 304 | ec->timestamp = jiffies; |
45bea155 LY |
305 | } |
306 | ||
6ffb221a | 307 | static inline void acpi_ec_write_data(struct acpi_ec *ec, u8 data) |
45bea155 | 308 | { |
3535a3c1 | 309 | ec_dbg_raw("EC_DATA(W) = 0x%2.2x", data); |
6ffb221a | 310 | outb(data, ec->data_addr); |
d8d031a6 | 311 | ec->timestamp = jiffies; |
703959d4 | 312 | } |
45bea155 | 313 | |
4625d752 | 314 | #if defined(DEBUG) || defined(CONFIG_DYNAMIC_DEBUG) |
e34c0e2b LZ |
315 | static const char *acpi_ec_cmd_string(u8 cmd) |
316 | { | |
317 | switch (cmd) { | |
318 | case 0x80: | |
319 | return "RD_EC"; | |
320 | case 0x81: | |
321 | return "WR_EC"; | |
322 | case 0x82: | |
323 | return "BE_EC"; | |
324 | case 0x83: | |
325 | return "BD_EC"; | |
326 | case 0x84: | |
327 | return "QR_EC"; | |
328 | } | |
329 | return "UNKNOWN"; | |
330 | } | |
331 | #else | |
332 | #define acpi_ec_cmd_string(cmd) "UNDEF" | |
333 | #endif | |
334 | ||
ca37bfdf LZ |
335 | /* -------------------------------------------------------------------------- |
336 | * GPE Registers | |
337 | * -------------------------------------------------------------------------- */ | |
338 | ||
d2a2e6cc | 339 | static inline bool acpi_ec_gpe_status_set(struct acpi_ec *ec) |
ca37bfdf LZ |
340 | { |
341 | acpi_event_status gpe_status = 0; | |
342 | ||
343 | (void)acpi_get_gpe_status(NULL, ec->gpe, &gpe_status); | |
d2a2e6cc | 344 | return !!(gpe_status & ACPI_EVENT_FLAG_STATUS_SET); |
ca37bfdf LZ |
345 | } |
346 | ||
347 | static inline void acpi_ec_enable_gpe(struct acpi_ec *ec, bool open) | |
348 | { | |
349 | if (open) | |
350 | acpi_enable_gpe(NULL, ec->gpe); | |
e1d4d90f LZ |
351 | else { |
352 | BUG_ON(ec->reference_count < 1); | |
ca37bfdf | 353 | acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_ENABLE); |
e1d4d90f | 354 | } |
d2a2e6cc | 355 | if (acpi_ec_gpe_status_set(ec)) { |
ca37bfdf LZ |
356 | /* |
357 | * On some platforms, EN=1 writes cannot trigger GPE. So | |
358 | * software need to manually trigger a pseudo GPE event on | |
359 | * EN=1 writes. | |
360 | */ | |
3535a3c1 | 361 | ec_dbg_raw("Polling quirk"); |
2e84ea5a | 362 | advance_transaction(ec, false); |
ca37bfdf LZ |
363 | } |
364 | } | |
365 | ||
366 | static inline void acpi_ec_disable_gpe(struct acpi_ec *ec, bool close) | |
367 | { | |
368 | if (close) | |
369 | acpi_disable_gpe(NULL, ec->gpe); | |
e1d4d90f LZ |
370 | else { |
371 | BUG_ON(ec->reference_count < 1); | |
ca37bfdf | 372 | acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_DISABLE); |
e1d4d90f | 373 | } |
ca37bfdf LZ |
374 | } |
375 | ||
ca37bfdf LZ |
376 | /* -------------------------------------------------------------------------- |
377 | * Transaction Management | |
378 | * -------------------------------------------------------------------------- */ | |
379 | ||
9887d22a LZ |
380 | static void acpi_ec_submit_request(struct acpi_ec *ec) |
381 | { | |
382 | ec->reference_count++; | |
4446abc9 | 383 | if (test_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags) && |
406857f7 | 384 | ec->gpe >= 0 && ec->reference_count == 1) |
9887d22a LZ |
385 | acpi_ec_enable_gpe(ec, true); |
386 | } | |
387 | ||
388 | static void acpi_ec_complete_request(struct acpi_ec *ec) | |
389 | { | |
390 | bool flushed = false; | |
391 | ||
392 | ec->reference_count--; | |
4446abc9 | 393 | if (test_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags) && |
406857f7 | 394 | ec->gpe >= 0 && ec->reference_count == 0) |
9887d22a LZ |
395 | acpi_ec_disable_gpe(ec, true); |
396 | flushed = acpi_ec_flushed(ec); | |
397 | if (flushed) | |
398 | wake_up(&ec->wait); | |
399 | } | |
400 | ||
4446abc9 | 401 | static void acpi_ec_mask_events(struct acpi_ec *ec) |
e1d4d90f | 402 | { |
4446abc9 | 403 | if (!test_bit(EC_FLAGS_EVENTS_MASKED, &ec->flags)) { |
406857f7 DD |
404 | if (ec->gpe >= 0) |
405 | acpi_ec_disable_gpe(ec, false); | |
406 | else | |
407 | disable_irq_nosync(ec->irq); | |
408 | ||
3535a3c1 | 409 | ec_dbg_drv("Polling enabled"); |
4446abc9 | 410 | set_bit(EC_FLAGS_EVENTS_MASKED, &ec->flags); |
e1d4d90f LZ |
411 | } |
412 | } | |
413 | ||
4446abc9 | 414 | static void acpi_ec_unmask_events(struct acpi_ec *ec) |
e1d4d90f | 415 | { |
4446abc9 DD |
416 | if (test_bit(EC_FLAGS_EVENTS_MASKED, &ec->flags)) { |
417 | clear_bit(EC_FLAGS_EVENTS_MASKED, &ec->flags); | |
406857f7 DD |
418 | if (ec->gpe >= 0) |
419 | acpi_ec_enable_gpe(ec, false); | |
420 | else | |
421 | enable_irq(ec->irq); | |
422 | ||
3535a3c1 | 423 | ec_dbg_drv("Polling disabled"); |
e1d4d90f LZ |
424 | } |
425 | } | |
426 | ||
9887d22a LZ |
427 | /* |
428 | * acpi_ec_submit_flushable_request() - Increase the reference count unless | |
429 | * the flush operation is not in | |
430 | * progress | |
431 | * @ec: the EC device | |
432 | * | |
433 | * This function must be used before taking a new action that should hold | |
434 | * the reference count. If this function returns false, then the action | |
435 | * must be discarded or it will prevent the flush operation from being | |
436 | * completed. | |
437 | */ | |
37d11391 | 438 | static bool acpi_ec_submit_flushable_request(struct acpi_ec *ec) |
9887d22a | 439 | { |
37d11391 RW |
440 | if (!acpi_ec_started(ec)) |
441 | return false; | |
9887d22a LZ |
442 | acpi_ec_submit_request(ec); |
443 | return true; | |
444 | } | |
445 | ||
9aa60f3c | 446 | static void acpi_ec_submit_event(struct acpi_ec *ec) |
74443bbe | 447 | { |
9aa60f3c RW |
448 | /* |
449 | * It is safe to mask the events here, because acpi_ec_close_event() | |
450 | * will run at least once after this. | |
451 | */ | |
4446abc9 | 452 | acpi_ec_mask_events(ec); |
1ab69f27 | 453 | if (!acpi_ec_event_enabled(ec)) |
9aa60f3c | 454 | return; |
ca8283dc | 455 | |
54b86141 RW |
456 | if (ec->event_state != EC_EVENT_READY) |
457 | return; | |
c33676aa | 458 | |
54b86141 RW |
459 | ec_dbg_evt("Command(%s) submitted/blocked", |
460 | acpi_ec_cmd_string(ACPI_EC_COMMAND_QUERY)); | |
c793570d | 461 | |
54b86141 RW |
462 | ec->event_state = EC_EVENT_IN_PROGRESS; |
463 | /* | |
464 | * If events_to_process is greater than 0 at this point, the while () | |
465 | * loop in acpi_ec_event_handler() is still running and incrementing | |
466 | * events_to_process will cause it to invoke acpi_ec_submit_query() once | |
467 | * more, so it is not necessary to queue up the event work to start the | |
468 | * same loop again. | |
469 | */ | |
470 | if (ec->events_to_process++ > 0) | |
471 | return; | |
472 | ||
473 | ec->events_in_progress++; | |
474 | queue_work(ec_wq, &ec->work); | |
74443bbe LZ |
475 | } |
476 | ||
c33676aa RW |
477 | static void acpi_ec_complete_event(struct acpi_ec *ec) |
478 | { | |
479 | if (ec->event_state == EC_EVENT_IN_PROGRESS) | |
480 | ec->event_state = EC_EVENT_COMPLETE; | |
481 | } | |
482 | ||
eafe7509 | 483 | static void acpi_ec_close_event(struct acpi_ec *ec) |
74443bbe | 484 | { |
c33676aa | 485 | if (ec->event_state != EC_EVENT_READY) |
9d8993be LZ |
486 | ec_dbg_evt("Command(%s) unblocked", |
487 | acpi_ec_cmd_string(ACPI_EC_COMMAND_QUERY)); | |
c33676aa RW |
488 | |
489 | ec->event_state = EC_EVENT_READY; | |
4446abc9 | 490 | acpi_ec_unmask_events(ec); |
74443bbe LZ |
491 | } |
492 | ||
750f628b LZ |
493 | static inline void __acpi_ec_enable_event(struct acpi_ec *ec) |
494 | { | |
495 | if (!test_and_set_bit(EC_FLAGS_QUERY_ENABLED, &ec->flags)) | |
496 | ec_log_drv("event unblocked"); | |
53c5eaab LZ |
497 | /* |
498 | * Unconditionally invoke this once after enabling the event | |
499 | * handling mechanism to detect the pending events. | |
500 | */ | |
2e84ea5a | 501 | advance_transaction(ec, false); |
750f628b LZ |
502 | } |
503 | ||
504 | static inline void __acpi_ec_disable_event(struct acpi_ec *ec) | |
505 | { | |
506 | if (test_and_clear_bit(EC_FLAGS_QUERY_ENABLED, &ec->flags)) | |
507 | ec_log_drv("event blocked"); | |
508 | } | |
509 | ||
b6a3e147 ZR |
510 | /* |
511 | * Process _Q events that might have accumulated in the EC. | |
512 | * Run with locked ec mutex. | |
513 | */ | |
514 | static void acpi_ec_clear(struct acpi_ec *ec) | |
515 | { | |
1f235044 | 516 | int i; |
b6a3e147 ZR |
517 | |
518 | for (i = 0; i < ACPI_EC_CLEAR_MAX; i++) { | |
eafe7509 | 519 | if (acpi_ec_submit_query(ec)) |
b6a3e147 ZR |
520 | break; |
521 | } | |
522 | if (unlikely(i == ACPI_EC_CLEAR_MAX)) | |
523 | pr_warn("Warning: Maximum of %d stale EC events cleared\n", i); | |
524 | else | |
525 | pr_info("%d stale EC events cleared\n", i); | |
526 | } | |
527 | ||
750f628b LZ |
528 | static void acpi_ec_enable_event(struct acpi_ec *ec) |
529 | { | |
e0359f15 RW |
530 | unsigned long flags; |
531 | ||
532 | spin_lock_irqsave(&ec->lock, flags); | |
750f628b LZ |
533 | if (acpi_ec_started(ec)) |
534 | __acpi_ec_enable_event(ec); | |
e0359f15 | 535 | spin_unlock_irqrestore(&ec->lock, flags); |
b6a3e147 ZR |
536 | |
537 | /* Drain additional events if hardware requires that */ | |
538 | if (EC_FLAGS_CLEAR_ON_RESUME) | |
539 | acpi_ec_clear(ec); | |
750f628b LZ |
540 | } |
541 | ||
eab05ec3 | 542 | #ifdef CONFIG_PM_SLEEP |
016b87ca | 543 | static void __acpi_ec_flush_work(void) |
39a2a2aa | 544 | { |
4a9af6ca | 545 | flush_workqueue(ec_wq); /* flush ec->work */ |
016b87ca | 546 | flush_workqueue(ec_query_wq); /* flush queries */ |
39a2a2aa LZ |
547 | } |
548 | ||
549 | static void acpi_ec_disable_event(struct acpi_ec *ec) | |
550 | { | |
e0359f15 RW |
551 | unsigned long flags; |
552 | ||
553 | spin_lock_irqsave(&ec->lock, flags); | |
39a2a2aa | 554 | __acpi_ec_disable_event(ec); |
e0359f15 | 555 | spin_unlock_irqrestore(&ec->lock, flags); |
016b87ca RW |
556 | |
557 | /* | |
558 | * When ec_freeze_events is true, we need to flush events in | |
559 | * the proper position before entering the noirq stage. | |
560 | */ | |
561 | __acpi_ec_flush_work(); | |
39a2a2aa | 562 | } |
880a6627 RW |
563 | |
564 | void acpi_ec_flush_work(void) | |
565 | { | |
f0ac20c3 RW |
566 | /* Without ec_wq there is nothing to flush. */ |
567 | if (!ec_wq) | |
016b87ca | 568 | return; |
880a6627 | 569 | |
016b87ca | 570 | __acpi_ec_flush_work(); |
880a6627 | 571 | } |
eab05ec3 | 572 | #endif /* CONFIG_PM_SLEEP */ |
39a2a2aa | 573 | |
1d68d261 LZ |
574 | static bool acpi_ec_guard_event(struct acpi_ec *ec) |
575 | { | |
e0359f15 | 576 | unsigned long flags; |
c33676aa | 577 | bool guarded; |
61197547 | 578 | |
e0359f15 | 579 | spin_lock_irqsave(&ec->lock, flags); |
61197547 LZ |
580 | /* |
581 | * If firmware SCI_EVT clearing timing is "event", we actually | |
582 | * don't know when the SCI_EVT will be cleared by firmware after | |
583 | * evaluating _Qxx, so we need to re-check SCI_EVT after waiting an | |
584 | * acceptable period. | |
585 | * | |
c33676aa RW |
586 | * The guarding period is applicable if the event state is not |
587 | * EC_EVENT_READY, but otherwise if the current transaction is of the | |
588 | * ACPI_EC_COMMAND_QUERY type, the guarding should have elapsed already | |
589 | * and it should not be applied to let the transaction transition into | |
590 | * the ACPI_EC_COMMAND_POLL state immediately. | |
61197547 | 591 | */ |
c33676aa RW |
592 | guarded = ec_event_clearing == ACPI_EC_EVT_TIMING_EVENT && |
593 | ec->event_state != EC_EVENT_READY && | |
594 | (!ec->curr || ec->curr->command != ACPI_EC_COMMAND_QUERY); | |
e0359f15 | 595 | spin_unlock_irqrestore(&ec->lock, flags); |
61197547 | 596 | return guarded; |
1d68d261 LZ |
597 | } |
598 | ||
d8d031a6 LZ |
599 | static int ec_transaction_polled(struct acpi_ec *ec) |
600 | { | |
e0359f15 | 601 | unsigned long flags; |
d8d031a6 LZ |
602 | int ret = 0; |
603 | ||
e0359f15 | 604 | spin_lock_irqsave(&ec->lock, flags); |
d8d031a6 LZ |
605 | if (ec->curr && (ec->curr->flags & ACPI_EC_COMMAND_POLL)) |
606 | ret = 1; | |
e0359f15 | 607 | spin_unlock_irqrestore(&ec->lock, flags); |
d8d031a6 LZ |
608 | return ret; |
609 | } | |
610 | ||
f92fca00 | 611 | static int ec_transaction_completed(struct acpi_ec *ec) |
6ffb221a | 612 | { |
e0359f15 | 613 | unsigned long flags; |
7c6db4e0 | 614 | int ret = 0; |
7a73e60e | 615 | |
e0359f15 | 616 | spin_lock_irqsave(&ec->lock, flags); |
c0d65341 | 617 | if (ec->curr && (ec->curr->flags & ACPI_EC_COMMAND_COMPLETE)) |
7c6db4e0 | 618 | ret = 1; |
e0359f15 | 619 | spin_unlock_irqrestore(&ec->lock, flags); |
7c6db4e0 | 620 | return ret; |
45bea155 | 621 | } |
451566f4 | 622 | |
f8b8eb71 LZ |
623 | static inline void ec_transaction_transition(struct acpi_ec *ec, unsigned long flag) |
624 | { | |
625 | ec->curr->flags |= flag; | |
c33676aa RW |
626 | |
627 | if (ec->curr->command != ACPI_EC_COMMAND_QUERY) | |
628 | return; | |
629 | ||
630 | switch (ec_event_clearing) { | |
631 | case ACPI_EC_EVT_TIMING_STATUS: | |
632 | if (flag == ACPI_EC_COMMAND_POLL) | |
eafe7509 | 633 | acpi_ec_close_event(ec); |
c33676aa RW |
634 | |
635 | return; | |
636 | ||
637 | case ACPI_EC_EVT_TIMING_QUERY: | |
638 | if (flag == ACPI_EC_COMMAND_COMPLETE) | |
eafe7509 | 639 | acpi_ec_close_event(ec); |
c33676aa RW |
640 | |
641 | return; | |
642 | ||
643 | case ACPI_EC_EVT_TIMING_EVENT: | |
644 | if (flag == ACPI_EC_COMMAND_COMPLETE) | |
645 | acpi_ec_complete_event(ec); | |
f8b8eb71 LZ |
646 | } |
647 | } | |
648 | ||
631734fc RW |
649 | static void acpi_ec_spurious_interrupt(struct acpi_ec *ec, struct transaction *t) |
650 | { | |
651 | if (t->irq_count < ec_storm_threshold) | |
652 | ++t->irq_count; | |
653 | ||
654 | /* Trigger if the threshold is 0 too. */ | |
655 | if (t->irq_count == ec_storm_threshold) | |
656 | acpi_ec_mask_events(ec); | |
657 | } | |
658 | ||
9aa60f3c | 659 | static void advance_transaction(struct acpi_ec *ec, bool interrupt) |
7c6db5e5 | 660 | { |
902675fa | 661 | struct transaction *t = ec->curr; |
c0d65341 | 662 | bool wakeup = false; |
902675fa | 663 | u8 status; |
b76b51ba | 664 | |
2e84ea5a | 665 | ec_dbg_stm("%s (%d)", interrupt ? "IRQ" : "TASK", smp_processor_id()); |
d269fb03 | 666 | |
66b42b78 | 667 | status = acpi_ec_read_status(ec); |
902675fa | 668 | |
1d68d261 LZ |
669 | /* |
670 | * Another IRQ or a guarded polling mode advancement is detected, | |
671 | * the next QR_EC submission is then allowed. | |
672 | */ | |
673 | if (!t || !(t->flags & ACPI_EC_COMMAND_POLL)) { | |
674 | if (ec_event_clearing == ACPI_EC_EVT_TIMING_EVENT && | |
c33676aa | 675 | ec->event_state == EC_EVENT_COMPLETE) |
eafe7509 | 676 | acpi_ec_close_event(ec); |
c33676aa | 677 | |
902675fa RW |
678 | if (!t) |
679 | goto out; | |
1d68d261 | 680 | } |
902675fa | 681 | |
f92fca00 LZ |
682 | if (t->flags & ACPI_EC_COMMAND_POLL) { |
683 | if (t->wlen > t->wi) { | |
2a39a30f | 684 | if (!(status & ACPI_EC_FLAG_IBF)) |
f92fca00 | 685 | acpi_ec_write_data(ec, t->wdata[t->wi++]); |
631734fc RW |
686 | else if (interrupt && !(status & ACPI_EC_FLAG_SCI)) |
687 | acpi_ec_spurious_interrupt(ec, t); | |
f92fca00 | 688 | } else if (t->rlen > t->ri) { |
2a39a30f | 689 | if (status & ACPI_EC_FLAG_OBF) { |
f92fca00 | 690 | t->rdata[t->ri++] = acpi_ec_read_data(ec); |
c0d65341 | 691 | if (t->rlen == t->ri) { |
f8b8eb71 | 692 | ec_transaction_transition(ec, ACPI_EC_COMMAND_COMPLETE); |
2a39a30f | 693 | wakeup = true; |
3afcf2ec | 694 | if (t->command == ACPI_EC_COMMAND_QUERY) |
9d8993be LZ |
695 | ec_dbg_evt("Command(%s) completed by hardware", |
696 | acpi_ec_cmd_string(ACPI_EC_COMMAND_QUERY)); | |
c0d65341 | 697 | } |
631734fc RW |
698 | } else if (interrupt && !(status & ACPI_EC_FLAG_SCI)) { |
699 | acpi_ec_spurious_interrupt(ec, t); | |
700 | } | |
2a39a30f | 701 | } else if (t->wlen == t->wi && !(status & ACPI_EC_FLAG_IBF)) { |
f8b8eb71 | 702 | ec_transaction_transition(ec, ACPI_EC_COMMAND_COMPLETE); |
c0d65341 LZ |
703 | wakeup = true; |
704 | } | |
b1e14999 RW |
705 | } else if (!(status & ACPI_EC_FLAG_IBF)) { |
706 | acpi_ec_write_cmd(ec, t->command); | |
707 | ec_transaction_transition(ec, ACPI_EC_COMMAND_POLL); | |
f92fca00 | 708 | } |
902675fa | 709 | |
0c78808f | 710 | out: |
74443bbe | 711 | if (status & ACPI_EC_FLAG_SCI) |
9aa60f3c | 712 | acpi_ec_submit_event(ec); |
2a39a30f | 713 | |
2e84ea5a | 714 | if (wakeup && interrupt) |
0c78808f | 715 | wake_up(&ec->wait); |
f92fca00 | 716 | } |
a3cd8d27 | 717 | |
f92fca00 LZ |
718 | static void start_transaction(struct acpi_ec *ec) |
719 | { | |
720 | ec->curr->irq_count = ec->curr->wi = ec->curr->ri = 0; | |
721 | ec->curr->flags = 0; | |
d8d031a6 LZ |
722 | } |
723 | ||
724 | static int ec_guard(struct acpi_ec *ec) | |
725 | { | |
c3a696b6 | 726 | unsigned long guard = usecs_to_jiffies(ec->polling_guard); |
d8d031a6 LZ |
727 | unsigned long timeout = ec->timestamp + guard; |
728 | ||
61197547 | 729 | /* Ensure guarding period before polling EC status */ |
d8d031a6 | 730 | do { |
c3a696b6 | 731 | if (ec->busy_polling) { |
d8d031a6 LZ |
732 | /* Perform busy polling */ |
733 | if (ec_transaction_completed(ec)) | |
734 | return 0; | |
735 | udelay(jiffies_to_usecs(guard)); | |
736 | } else { | |
737 | /* | |
738 | * Perform wait polling | |
61197547 LZ |
739 | * 1. Wait the transaction to be completed by the |
740 | * GPE handler after the transaction enters | |
741 | * ACPI_EC_COMMAND_POLL state. | |
742 | * 2. A special guarding logic is also required | |
743 | * for event clearing mode "event" before the | |
744 | * transaction enters ACPI_EC_COMMAND_POLL | |
745 | * state. | |
d8d031a6 | 746 | */ |
1d68d261 LZ |
747 | if (!ec_transaction_polled(ec) && |
748 | !acpi_ec_guard_event(ec)) | |
d8d031a6 LZ |
749 | break; |
750 | if (wait_event_timeout(ec->wait, | |
751 | ec_transaction_completed(ec), | |
752 | guard)) | |
753 | return 0; | |
754 | } | |
d8d031a6 LZ |
755 | } while (time_before(jiffies, timeout)); |
756 | return -ETIME; | |
845625cd | 757 | } |
03d1d99c | 758 | |
7c6db4e0 AS |
759 | static int ec_poll(struct acpi_ec *ec) |
760 | { | |
e0359f15 | 761 | unsigned long flags; |
28fe5c82 | 762 | int repeat = 5; /* number of command restarts */ |
7a73e60e | 763 | |
2a84cb98 AS |
764 | while (repeat--) { |
765 | unsigned long delay = jiffies + | |
7a18e96d | 766 | msecs_to_jiffies(ec_delay); |
2a84cb98 | 767 | do { |
d8d031a6 LZ |
768 | if (!ec_guard(ec)) |
769 | return 0; | |
e0359f15 | 770 | spin_lock_irqsave(&ec->lock, flags); |
2e84ea5a | 771 | advance_transaction(ec, false); |
e0359f15 | 772 | spin_unlock_irqrestore(&ec->lock, flags); |
2a84cb98 | 773 | } while (time_before(jiffies, delay)); |
16a26e85 | 774 | pr_debug("controller reset, restart transaction\n"); |
e0359f15 | 775 | spin_lock_irqsave(&ec->lock, flags); |
2a84cb98 | 776 | start_transaction(ec); |
e0359f15 | 777 | spin_unlock_irqrestore(&ec->lock, flags); |
af3fd140 | 778 | } |
b77d81b2 | 779 | return -ETIME; |
1da177e4 LT |
780 | } |
781 | ||
8463200a | 782 | static int acpi_ec_transaction_unlocked(struct acpi_ec *ec, |
2a84cb98 | 783 | struct transaction *t) |
45bea155 | 784 | { |
e0359f15 | 785 | unsigned long tmp; |
7c6db4e0 | 786 | int ret = 0; |
7a73e60e | 787 | |
dc171114 RW |
788 | if (t->rdata) |
789 | memset(t->rdata, 0, t->rlen); | |
790 | ||
7c6db4e0 | 791 | /* start transaction */ |
e0359f15 | 792 | spin_lock_irqsave(&ec->lock, tmp); |
9887d22a | 793 | /* Enable GPE for command processing (IBF=0/OBF=1) */ |
37d11391 | 794 | if (!acpi_ec_submit_flushable_request(ec)) { |
ad479e7f LZ |
795 | ret = -EINVAL; |
796 | goto unlock; | |
797 | } | |
770970f0 | 798 | ec_dbg_ref(ec, "Increase command"); |
7c6db4e0 | 799 | /* following two actions should be kept atomic */ |
8463200a | 800 | ec->curr = t; |
3535a3c1 | 801 | ec_dbg_req("Command(%s) started", acpi_ec_cmd_string(t->command)); |
a2f93aea | 802 | start_transaction(ec); |
e0359f15 | 803 | spin_unlock_irqrestore(&ec->lock, tmp); |
d8d031a6 | 804 | |
df9ff918 | 805 | ret = ec_poll(ec); |
d8d031a6 | 806 | |
e0359f15 | 807 | spin_lock_irqsave(&ec->lock, tmp); |
e1d4d90f | 808 | if (t->irq_count == ec_storm_threshold) |
4446abc9 | 809 | acpi_ec_unmask_events(ec); |
3535a3c1 | 810 | ec_dbg_req("Command(%s) stopped", acpi_ec_cmd_string(t->command)); |
8463200a | 811 | ec->curr = NULL; |
9887d22a LZ |
812 | /* Disable GPE for command processing (IBF=0/OBF=1) */ |
813 | acpi_ec_complete_request(ec); | |
770970f0 | 814 | ec_dbg_ref(ec, "Decrease command"); |
ad479e7f | 815 | unlock: |
e0359f15 | 816 | spin_unlock_irqrestore(&ec->lock, tmp); |
7c6db4e0 AS |
817 | return ret; |
818 | } | |
819 | ||
2a84cb98 | 820 | static int acpi_ec_transaction(struct acpi_ec *ec, struct transaction *t) |
1da177e4 | 821 | { |
d7a76e4c | 822 | int status; |
50526df6 | 823 | u32 glk; |
7a73e60e | 824 | |
8463200a | 825 | if (!ec || (!t) || (t->wlen && !t->wdata) || (t->rlen && !t->rdata)) |
d550d98d | 826 | return -EINVAL; |
d8d031a6 | 827 | |
f351d027 | 828 | mutex_lock(&ec->mutex); |
703959d4 | 829 | if (ec->global_lock) { |
1da177e4 | 830 | status = acpi_acquire_global_lock(ACPI_EC_UDELAY_GLK, &glk); |
c24e912b | 831 | if (ACPI_FAILURE(status)) { |
7c6db4e0 AS |
832 | status = -ENODEV; |
833 | goto unlock; | |
c24e912b | 834 | } |
1da177e4 | 835 | } |
a62e8f19 | 836 | |
2a84cb98 | 837 | status = acpi_ec_transaction_unlocked(ec, t); |
a62e8f19 | 838 | |
703959d4 | 839 | if (ec->global_lock) |
1da177e4 | 840 | acpi_release_global_lock(glk); |
7c6db4e0 | 841 | unlock: |
f351d027 | 842 | mutex_unlock(&ec->mutex); |
d550d98d | 843 | return status; |
1da177e4 LT |
844 | } |
845 | ||
8a383ef0 | 846 | static int acpi_ec_burst_enable(struct acpi_ec *ec) |
c45aac43 AS |
847 | { |
848 | u8 d; | |
8463200a AS |
849 | struct transaction t = {.command = ACPI_EC_BURST_ENABLE, |
850 | .wdata = NULL, .rdata = &d, | |
851 | .wlen = 0, .rlen = 1}; | |
852 | ||
dc171114 | 853 | return acpi_ec_transaction_unlocked(ec, &t); |
c45aac43 AS |
854 | } |
855 | ||
8a383ef0 | 856 | static int acpi_ec_burst_disable(struct acpi_ec *ec) |
c45aac43 | 857 | { |
8463200a AS |
858 | struct transaction t = {.command = ACPI_EC_BURST_DISABLE, |
859 | .wdata = NULL, .rdata = NULL, | |
860 | .wlen = 0, .rlen = 0}; | |
861 | ||
7c6db4e0 | 862 | return (acpi_ec_read_status(ec) & ACPI_EC_FLAG_BURST) ? |
dc171114 | 863 | acpi_ec_transaction_unlocked(ec, &t) : 0; |
c45aac43 AS |
864 | } |
865 | ||
7a73e60e | 866 | static int acpi_ec_read(struct acpi_ec *ec, u8 address, u8 *data) |
3576cf61 DS |
867 | { |
868 | int result; | |
869 | u8 d; | |
8463200a AS |
870 | struct transaction t = {.command = ACPI_EC_COMMAND_READ, |
871 | .wdata = &address, .rdata = &d, | |
872 | .wlen = 1, .rlen = 1}; | |
3576cf61 | 873 | |
2a84cb98 | 874 | result = acpi_ec_transaction(ec, &t); |
3576cf61 DS |
875 | *data = d; |
876 | return result; | |
877 | } | |
6ffb221a | 878 | |
dc171114 RW |
879 | static int acpi_ec_read_unlocked(struct acpi_ec *ec, u8 address, u8 *data) |
880 | { | |
881 | int result; | |
882 | u8 d; | |
883 | struct transaction t = {.command = ACPI_EC_COMMAND_READ, | |
884 | .wdata = &address, .rdata = &d, | |
885 | .wlen = 1, .rlen = 1}; | |
886 | ||
887 | result = acpi_ec_transaction_unlocked(ec, &t); | |
888 | *data = d; | |
889 | return result; | |
890 | } | |
891 | ||
3576cf61 DS |
892 | static int acpi_ec_write(struct acpi_ec *ec, u8 address, u8 data) |
893 | { | |
6ccedb10 | 894 | u8 wdata[2] = { address, data }; |
8463200a AS |
895 | struct transaction t = {.command = ACPI_EC_COMMAND_WRITE, |
896 | .wdata = wdata, .rdata = NULL, | |
897 | .wlen = 2, .rlen = 0}; | |
898 | ||
2a84cb98 | 899 | return acpi_ec_transaction(ec, &t); |
3576cf61 DS |
900 | } |
901 | ||
dc171114 RW |
902 | static int acpi_ec_write_unlocked(struct acpi_ec *ec, u8 address, u8 data) |
903 | { | |
904 | u8 wdata[2] = { address, data }; | |
905 | struct transaction t = {.command = ACPI_EC_COMMAND_WRITE, | |
906 | .wdata = wdata, .rdata = NULL, | |
907 | .wlen = 2, .rlen = 0}; | |
908 | ||
909 | return acpi_ec_transaction_unlocked(ec, &t); | |
910 | } | |
911 | ||
b76b51ba | 912 | int ec_read(u8 addr, u8 *val) |
1da177e4 | 913 | { |
1da177e4 | 914 | int err; |
6ffb221a | 915 | u8 temp_data; |
1da177e4 LT |
916 | |
917 | if (!first_ec) | |
918 | return -ENODEV; | |
919 | ||
d033879c | 920 | err = acpi_ec_read(first_ec, addr, &temp_data); |
1da177e4 LT |
921 | |
922 | if (!err) { | |
923 | *val = temp_data; | |
924 | return 0; | |
7a73e60e LZ |
925 | } |
926 | return err; | |
1da177e4 LT |
927 | } |
928 | EXPORT_SYMBOL(ec_read); | |
929 | ||
50526df6 | 930 | int ec_write(u8 addr, u8 val) |
1da177e4 | 931 | { |
1da177e4 LT |
932 | if (!first_ec) |
933 | return -ENODEV; | |
934 | ||
b3c0e38b | 935 | return acpi_ec_write(first_ec, addr, val); |
1da177e4 LT |
936 | } |
937 | EXPORT_SYMBOL(ec_write); | |
938 | ||
616362de | 939 | int ec_transaction(u8 command, |
7a73e60e LZ |
940 | const u8 *wdata, unsigned wdata_len, |
941 | u8 *rdata, unsigned rdata_len) | |
45bea155 | 942 | { |
8463200a AS |
943 | struct transaction t = {.command = command, |
944 | .wdata = wdata, .rdata = rdata, | |
945 | .wlen = wdata_len, .rlen = rdata_len}; | |
7a73e60e | 946 | |
d7a76e4c LP |
947 | if (!first_ec) |
948 | return -ENODEV; | |
45bea155 | 949 | |
2a84cb98 | 950 | return acpi_ec_transaction(first_ec, &t); |
45bea155 | 951 | } |
ab9e43c6 LP |
952 | EXPORT_SYMBOL(ec_transaction); |
953 | ||
3e2abc5a SF |
954 | /* Get the handle to the EC device */ |
955 | acpi_handle ec_get_handle(void) | |
956 | { | |
957 | if (!first_ec) | |
958 | return NULL; | |
959 | return first_ec->handle; | |
960 | } | |
3e2abc5a SF |
961 | EXPORT_SYMBOL(ec_get_handle); |
962 | ||
ad479e7f LZ |
963 | static void acpi_ec_start(struct acpi_ec *ec, bool resuming) |
964 | { | |
e0359f15 RW |
965 | unsigned long flags; |
966 | ||
967 | spin_lock_irqsave(&ec->lock, flags); | |
ad479e7f | 968 | if (!test_and_set_bit(EC_FLAGS_STARTED, &ec->flags)) { |
3535a3c1 | 969 | ec_dbg_drv("Starting EC"); |
9887d22a | 970 | /* Enable GPE for event processing (SCI_EVT=1) */ |
770970f0 | 971 | if (!resuming) { |
9887d22a | 972 | acpi_ec_submit_request(ec); |
770970f0 | 973 | ec_dbg_ref(ec, "Increase driver"); |
c2b46d67 | 974 | } |
3535a3c1 | 975 | ec_log_drv("EC started"); |
ad479e7f | 976 | } |
e0359f15 | 977 | spin_unlock_irqrestore(&ec->lock, flags); |
ad479e7f LZ |
978 | } |
979 | ||
9887d22a LZ |
980 | static bool acpi_ec_stopped(struct acpi_ec *ec) |
981 | { | |
e0359f15 | 982 | unsigned long flags; |
9887d22a LZ |
983 | bool flushed; |
984 | ||
e0359f15 | 985 | spin_lock_irqsave(&ec->lock, flags); |
9887d22a | 986 | flushed = acpi_ec_flushed(ec); |
e0359f15 | 987 | spin_unlock_irqrestore(&ec->lock, flags); |
9887d22a LZ |
988 | return flushed; |
989 | } | |
990 | ||
ad479e7f LZ |
991 | static void acpi_ec_stop(struct acpi_ec *ec, bool suspending) |
992 | { | |
e0359f15 RW |
993 | unsigned long flags; |
994 | ||
995 | spin_lock_irqsave(&ec->lock, flags); | |
ad479e7f | 996 | if (acpi_ec_started(ec)) { |
3535a3c1 | 997 | ec_dbg_drv("Stopping EC"); |
ad479e7f | 998 | set_bit(EC_FLAGS_STOPPED, &ec->flags); |
e0359f15 | 999 | spin_unlock_irqrestore(&ec->lock, flags); |
9887d22a | 1000 | wait_event(ec->wait, acpi_ec_stopped(ec)); |
e0359f15 | 1001 | spin_lock_irqsave(&ec->lock, flags); |
9887d22a | 1002 | /* Disable GPE for event processing (SCI_EVT=1) */ |
770970f0 | 1003 | if (!suspending) { |
9887d22a | 1004 | acpi_ec_complete_request(ec); |
770970f0 | 1005 | ec_dbg_ref(ec, "Decrease driver"); |
39a2a2aa | 1006 | } else if (!ec_freeze_events) |
750f628b | 1007 | __acpi_ec_disable_event(ec); |
ad479e7f LZ |
1008 | clear_bit(EC_FLAGS_STARTED, &ec->flags); |
1009 | clear_bit(EC_FLAGS_STOPPED, &ec->flags); | |
3535a3c1 | 1010 | ec_log_drv("EC stopped"); |
ad479e7f | 1011 | } |
e0359f15 | 1012 | spin_unlock_irqrestore(&ec->lock, flags); |
ad479e7f LZ |
1013 | } |
1014 | ||
c3a696b6 LZ |
1015 | static void acpi_ec_enter_noirq(struct acpi_ec *ec) |
1016 | { | |
e0359f15 RW |
1017 | unsigned long flags; |
1018 | ||
1019 | spin_lock_irqsave(&ec->lock, flags); | |
c3a696b6 LZ |
1020 | ec->busy_polling = true; |
1021 | ec->polling_guard = 0; | |
1022 | ec_log_drv("interrupt blocked"); | |
e0359f15 | 1023 | spin_unlock_irqrestore(&ec->lock, flags); |
c3a696b6 LZ |
1024 | } |
1025 | ||
1026 | static void acpi_ec_leave_noirq(struct acpi_ec *ec) | |
1027 | { | |
e0359f15 RW |
1028 | unsigned long flags; |
1029 | ||
1030 | spin_lock_irqsave(&ec->lock, flags); | |
c3a696b6 LZ |
1031 | ec->busy_polling = ec_busy_polling; |
1032 | ec->polling_guard = ec_polling_guard; | |
1033 | ec_log_drv("interrupt unblocked"); | |
e0359f15 | 1034 | spin_unlock_irqrestore(&ec->lock, flags); |
c3a696b6 LZ |
1035 | } |
1036 | ||
fe955682 | 1037 | void acpi_ec_block_transactions(void) |
f6bb13aa RW |
1038 | { |
1039 | struct acpi_ec *ec = first_ec; | |
1040 | ||
1041 | if (!ec) | |
1042 | return; | |
1043 | ||
f351d027 | 1044 | mutex_lock(&ec->mutex); |
f6bb13aa | 1045 | /* Prevent transactions from being carried out */ |
ad479e7f | 1046 | acpi_ec_stop(ec, true); |
f351d027 | 1047 | mutex_unlock(&ec->mutex); |
f6bb13aa RW |
1048 | } |
1049 | ||
fe955682 | 1050 | void acpi_ec_unblock_transactions(void) |
d5a64513 RW |
1051 | { |
1052 | /* | |
1053 | * Allow transactions to happen again (this function is called from | |
1054 | * atomic context during wakeup, so we don't need to acquire the mutex). | |
1055 | */ | |
1056 | if (first_ec) | |
ad479e7f | 1057 | acpi_ec_start(first_ec, true); |
d5a64513 RW |
1058 | } |
1059 | ||
1da177e4 LT |
1060 | /* -------------------------------------------------------------------------- |
1061 | Event Management | |
1062 | -------------------------------------------------------------------------- */ | |
0700c047 LZ |
1063 | static struct acpi_ec_query_handler * |
1064 | acpi_ec_get_query_handler_by_value(struct acpi_ec *ec, u8 value) | |
1065 | { | |
1066 | struct acpi_ec_query_handler *handler; | |
0700c047 LZ |
1067 | |
1068 | mutex_lock(&ec->mutex); | |
1069 | list_for_each_entry(handler, &ec->list, node) { | |
1070 | if (value == handler->query_bit) { | |
3df663a1 RW |
1071 | kref_get(&handler->kref); |
1072 | mutex_unlock(&ec->mutex); | |
1073 | return handler; | |
0700c047 LZ |
1074 | } |
1075 | } | |
1076 | mutex_unlock(&ec->mutex); | |
3df663a1 | 1077 | return NULL; |
0700c047 LZ |
1078 | } |
1079 | ||
01305d41 LZ |
1080 | static void acpi_ec_query_handler_release(struct kref *kref) |
1081 | { | |
1082 | struct acpi_ec_query_handler *handler = | |
1083 | container_of(kref, struct acpi_ec_query_handler, kref); | |
1084 | ||
1085 | kfree(handler); | |
1086 | } | |
1087 | ||
1088 | static void acpi_ec_put_query_handler(struct acpi_ec_query_handler *handler) | |
1089 | { | |
1090 | kref_put(&handler->kref, acpi_ec_query_handler_release); | |
1091 | } | |
1092 | ||
837012ed AS |
1093 | int acpi_ec_add_query_handler(struct acpi_ec *ec, u8 query_bit, |
1094 | acpi_handle handle, acpi_ec_query_func func, | |
1095 | void *data) | |
1096 | { | |
28f7b858 AW |
1097 | struct acpi_ec_query_handler *handler; |
1098 | ||
1099 | if (!handle && !func) | |
1100 | return -EINVAL; | |
7a73e60e | 1101 | |
28f7b858 | 1102 | handler = kzalloc(sizeof(*handler), GFP_KERNEL); |
837012ed AS |
1103 | if (!handler) |
1104 | return -ENOMEM; | |
1105 | ||
1106 | handler->query_bit = query_bit; | |
1107 | handler->handle = handle; | |
1108 | handler->func = func; | |
1109 | handler->data = data; | |
f351d027 | 1110 | mutex_lock(&ec->mutex); |
01305d41 | 1111 | kref_init(&handler->kref); |
30c08574 | 1112 | list_add(&handler->node, &ec->list); |
f351d027 | 1113 | mutex_unlock(&ec->mutex); |
28f7b858 | 1114 | |
837012ed AS |
1115 | return 0; |
1116 | } | |
837012ed AS |
1117 | EXPORT_SYMBOL_GPL(acpi_ec_add_query_handler); |
1118 | ||
0700c047 LZ |
1119 | static void acpi_ec_remove_query_handlers(struct acpi_ec *ec, |
1120 | bool remove_all, u8 query_bit) | |
837012ed | 1121 | { |
1544fdbc | 1122 | struct acpi_ec_query_handler *handler, *tmp; |
01305d41 | 1123 | LIST_HEAD(free_list); |
7a73e60e | 1124 | |
f351d027 | 1125 | mutex_lock(&ec->mutex); |
1544fdbc | 1126 | list_for_each_entry_safe(handler, tmp, &ec->list, node) { |
28f7b858 AW |
1127 | /* |
1128 | * When remove_all is false, only remove custom query handlers | |
1129 | * which have handler->func set. This is done to preserve query | |
1130 | * handlers discovered thru ACPI, as they should continue handling | |
1131 | * EC queries. | |
1132 | */ | |
1133 | if (remove_all || (handler->func && handler->query_bit == query_bit)) { | |
01305d41 LZ |
1134 | list_del_init(&handler->node); |
1135 | list_add(&handler->node, &free_list); | |
28f7b858 | 1136 | |
837012ed AS |
1137 | } |
1138 | } | |
f351d027 | 1139 | mutex_unlock(&ec->mutex); |
6b5eab54 | 1140 | list_for_each_entry_safe(handler, tmp, &free_list, node) |
01305d41 | 1141 | acpi_ec_put_query_handler(handler); |
837012ed | 1142 | } |
0700c047 LZ |
1143 | |
1144 | void acpi_ec_remove_query_handler(struct acpi_ec *ec, u8 query_bit) | |
1145 | { | |
1146 | acpi_ec_remove_query_handlers(ec, false, query_bit); | |
e5b492c6 | 1147 | flush_workqueue(ec_query_wq); |
0700c047 | 1148 | } |
837012ed | 1149 | EXPORT_SYMBOL_GPL(acpi_ec_remove_query_handler); |
1da177e4 | 1150 | |
02b771b6 LZ |
1151 | static void acpi_ec_event_processor(struct work_struct *work) |
1152 | { | |
1153 | struct acpi_ec_query *q = container_of(work, struct acpi_ec_query, work); | |
1154 | struct acpi_ec_query_handler *handler = q->handler; | |
4a9af6ca | 1155 | struct acpi_ec *ec = q->ec; |
7a73e60e | 1156 | |
3535a3c1 | 1157 | ec_dbg_evt("Query(0x%02x) started", handler->query_bit); |
4a9af6ca | 1158 | |
a62e8f19 AS |
1159 | if (handler->func) |
1160 | handler->func(handler->data); | |
1161 | else if (handler->handle) | |
1162 | acpi_evaluate_object(handler->handle, NULL, NULL, NULL); | |
4a9af6ca | 1163 | |
3535a3c1 | 1164 | ec_dbg_evt("Query(0x%02x) stopped", handler->query_bit); |
4a9af6ca | 1165 | |
e0359f15 | 1166 | spin_lock_irq(&ec->lock); |
4a9af6ca | 1167 | ec->queries_in_progress--; |
e0359f15 | 1168 | spin_unlock_irq(&ec->lock); |
4a9af6ca | 1169 | |
befd9b5b RW |
1170 | acpi_ec_put_query_handler(handler); |
1171 | kfree(q); | |
1172 | } | |
1173 | ||
1174 | static struct acpi_ec_query *acpi_ec_create_query(struct acpi_ec *ec, u8 *pval) | |
1175 | { | |
1176 | struct acpi_ec_query *q; | |
1177 | struct transaction *t; | |
1178 | ||
1179 | q = kzalloc(sizeof (struct acpi_ec_query), GFP_KERNEL); | |
1180 | if (!q) | |
1181 | return NULL; | |
1182 | ||
1183 | INIT_WORK(&q->work, acpi_ec_event_processor); | |
1184 | t = &q->transaction; | |
1185 | t->command = ACPI_EC_COMMAND_QUERY; | |
1186 | t->rdata = pval; | |
1187 | t->rlen = 1; | |
1188 | q->ec = ec; | |
1189 | return q; | |
a62e8f19 AS |
1190 | } |
1191 | ||
eafe7509 | 1192 | static int acpi_ec_submit_query(struct acpi_ec *ec) |
a62e8f19 | 1193 | { |
1f235044 | 1194 | struct acpi_ec_query *q; |
a62e8f19 | 1195 | u8 value = 0; |
c2cf5769 | 1196 | int result; |
02b771b6 | 1197 | |
4a9af6ca | 1198 | q = acpi_ec_create_query(ec, &value); |
02b771b6 LZ |
1199 | if (!q) |
1200 | return -ENOMEM; | |
3eba563e | 1201 | |
550b3aac LZ |
1202 | /* |
1203 | * Query the EC to find out which _Qxx method we need to evaluate. | |
1204 | * Note that successful completion of the query causes the ACPI_EC_SCI | |
1205 | * bit to be cleared (and thus clearing the interrupt source). | |
1206 | */ | |
02b771b6 | 1207 | result = acpi_ec_transaction(ec, &q->transaction); |
02b771b6 LZ |
1208 | if (result) |
1209 | goto err_exit; | |
3eba563e | 1210 | |
1f235044 RW |
1211 | if (!value) { |
1212 | result = -ENODATA; | |
1213 | goto err_exit; | |
1214 | } | |
1215 | ||
0700c047 LZ |
1216 | q->handler = acpi_ec_get_query_handler_by_value(ec, value); |
1217 | if (!q->handler) { | |
1218 | result = -ENODATA; | |
1219 | goto err_exit; | |
1220 | } | |
1221 | ||
1222 | /* | |
4a9af6ca | 1223 | * It is reported that _Qxx are evaluated in a parallel way on Windows: |
0700c047 LZ |
1224 | * https://bugzilla.kernel.org/show_bug.cgi?id=94411 |
1225 | * | |
4a9af6ca RW |
1226 | * Put this log entry before queue_work() to make it appear in the log |
1227 | * before any other messages emitted during workqueue handling. | |
0700c047 LZ |
1228 | */ |
1229 | ec_dbg_evt("Query(0x%02x) scheduled", value); | |
4a9af6ca | 1230 | |
e0359f15 | 1231 | spin_lock_irq(&ec->lock); |
4a9af6ca RW |
1232 | |
1233 | ec->queries_in_progress++; | |
1234 | queue_work(ec_query_wq, &q->work); | |
1235 | ||
e0359f15 | 1236 | spin_unlock_irq(&ec->lock); |
02b771b6 | 1237 | |
befd9b5b RW |
1238 | return 0; |
1239 | ||
02b771b6 | 1240 | err_exit: |
befd9b5b | 1241 | kfree(q); |
1f235044 | 1242 | |
c2cf5769 | 1243 | return result; |
a62e8f19 AS |
1244 | } |
1245 | ||
9d8993be | 1246 | static void acpi_ec_event_handler(struct work_struct *work) |
a62e8f19 | 1247 | { |
74443bbe | 1248 | struct acpi_ec *ec = container_of(work, struct acpi_ec, work); |
7a73e60e | 1249 | |
9d8993be LZ |
1250 | ec_dbg_evt("Event started"); |
1251 | ||
e0359f15 | 1252 | spin_lock_irq(&ec->lock); |
a105acd7 | 1253 | |
c793570d | 1254 | while (ec->events_to_process) { |
e0359f15 | 1255 | spin_unlock_irq(&ec->lock); |
1f235044 | 1256 | |
eafe7509 | 1257 | acpi_ec_submit_query(ec); |
1f235044 | 1258 | |
e0359f15 | 1259 | spin_lock_irq(&ec->lock); |
13a62d0e | 1260 | |
c793570d | 1261 | ec->events_to_process--; |
9d8993be | 1262 | } |
388fb77d RW |
1263 | |
1264 | /* | |
1265 | * Before exit, make sure that the it will be possible to queue up the | |
1266 | * event handling work again regardless of whether or not the query | |
1267 | * queued up above is processed successfully. | |
1268 | */ | |
13a62d0e RW |
1269 | if (ec_event_clearing == ACPI_EC_EVT_TIMING_EVENT) { |
1270 | bool guard_timeout; | |
1271 | ||
c33676aa | 1272 | acpi_ec_complete_event(ec); |
388fb77d | 1273 | |
13a62d0e | 1274 | ec_dbg_evt("Event stopped"); |
9d8993be | 1275 | |
e0359f15 | 1276 | spin_unlock_irq(&ec->lock); |
13a62d0e RW |
1277 | |
1278 | guard_timeout = !!ec_guard(ec); | |
1d68d261 | 1279 | |
e0359f15 | 1280 | spin_lock_irq(&ec->lock); |
98d36450 RW |
1281 | |
1282 | /* Take care of SCI_EVT unless someone else is doing that. */ | |
13a62d0e | 1283 | if (guard_timeout && !ec->curr) |
98d36450 | 1284 | advance_transaction(ec, false); |
13a62d0e RW |
1285 | } else { |
1286 | acpi_ec_close_event(ec); | |
98d36450 | 1287 | |
13a62d0e | 1288 | ec_dbg_evt("Event stopped"); |
98d36450 | 1289 | } |
4a9af6ca | 1290 | |
4a9af6ca | 1291 | ec->events_in_progress--; |
13a62d0e | 1292 | |
e0359f15 | 1293 | spin_unlock_irq(&ec->lock); |
45bea155 | 1294 | } |
1da177e4 | 1295 | |
b5539eb5 | 1296 | static void clear_gpe_and_advance_transaction(struct acpi_ec *ec, bool interrupt) |
1da177e4 | 1297 | { |
896e97bf CJ |
1298 | /* |
1299 | * Clear GPE_STS upfront to allow subsequent hardware GPE_STS 0->1 | |
1300 | * changes to always trigger a GPE interrupt. | |
1301 | * | |
1302 | * GPE STS is a W1C register, which means: | |
1303 | * | |
1304 | * 1. Software can clear it without worrying about clearing the other | |
1305 | * GPEs' STS bits when the hardware sets them in parallel. | |
1306 | * | |
1307 | * 2. As long as software can ensure only clearing it when it is set, | |
1308 | * hardware won't set it in parallel. | |
1309 | */ | |
1310 | if (ec->gpe >= 0 && acpi_ec_gpe_status_set(ec)) | |
1311 | acpi_clear_gpe(NULL, ec->gpe); | |
1312 | ||
2e84ea5a | 1313 | advance_transaction(ec, true); |
b5539eb5 RW |
1314 | } |
1315 | ||
1316 | static void acpi_ec_handle_interrupt(struct acpi_ec *ec) | |
1317 | { | |
e0359f15 RW |
1318 | unsigned long flags; |
1319 | ||
1320 | spin_lock_irqsave(&ec->lock, flags); | |
b5539eb5 RW |
1321 | |
1322 | clear_gpe_and_advance_transaction(ec, true); | |
1323 | ||
e0359f15 | 1324 | spin_unlock_irqrestore(&ec->lock, flags); |
406857f7 DD |
1325 | } |
1326 | ||
1327 | static u32 acpi_ec_gpe_handler(acpi_handle gpe_device, | |
1328 | u32 gpe_number, void *data) | |
1329 | { | |
1330 | acpi_ec_handle_interrupt(data); | |
ca37bfdf | 1331 | return ACPI_INTERRUPT_HANDLED; |
845625cd AS |
1332 | } |
1333 | ||
406857f7 DD |
1334 | static irqreturn_t acpi_ec_irq_handler(int irq, void *data) |
1335 | { | |
1336 | acpi_ec_handle_interrupt(data); | |
1337 | return IRQ_HANDLED; | |
1338 | } | |
1339 | ||
1da177e4 | 1340 | /* -------------------------------------------------------------------------- |
7a73e60e LZ |
1341 | * Address Space Management |
1342 | * -------------------------------------------------------------------------- */ | |
1da177e4 | 1343 | |
1da177e4 | 1344 | static acpi_status |
5b7734b4 | 1345 | acpi_ec_space_handler(u32 function, acpi_physical_address address, |
dadf28a1 | 1346 | u32 bits, u64 *value64, |
50526df6 | 1347 | void *handler_context, void *region_context) |
1da177e4 | 1348 | { |
3d02b90b | 1349 | struct acpi_ec *ec = handler_context; |
dadf28a1 AS |
1350 | int result = 0, i, bytes = bits / 8; |
1351 | u8 *value = (u8 *)value64; | |
dc171114 | 1352 | u32 glk; |
1da177e4 | 1353 | |
1da177e4 | 1354 | if ((address > 0xFF) || !value || !handler_context) |
d550d98d | 1355 | return AE_BAD_PARAMETER; |
1da177e4 | 1356 | |
5b7734b4 | 1357 | if (function != ACPI_READ && function != ACPI_WRITE) |
d550d98d | 1358 | return AE_BAD_PARAMETER; |
1da177e4 | 1359 | |
dc171114 RW |
1360 | mutex_lock(&ec->mutex); |
1361 | ||
1362 | if (ec->global_lock) { | |
1363 | acpi_status status; | |
1364 | ||
1365 | status = acpi_acquire_global_lock(ACPI_EC_UDELAY_GLK, &glk); | |
1366 | if (ACPI_FAILURE(status)) { | |
1367 | result = -ENODEV; | |
1368 | goto unlock; | |
1369 | } | |
1370 | } | |
1371 | ||
c3a696b6 | 1372 | if (ec->busy_polling || bits > 8) |
6a63b06f | 1373 | acpi_ec_burst_enable(ec); |
b3b233c7 | 1374 | |
f6f172dc | 1375 | for (i = 0; i < bytes; ++i, ++address, ++value) { |
dadf28a1 | 1376 | result = (function == ACPI_READ) ? |
dc171114 RW |
1377 | acpi_ec_read_unlocked(ec, address, value) : |
1378 | acpi_ec_write_unlocked(ec, address, *value); | |
f6f172dc AW |
1379 | if (result < 0) |
1380 | break; | |
1381 | } | |
1da177e4 | 1382 | |
c3a696b6 | 1383 | if (ec->busy_polling || bits > 8) |
6a63b06f | 1384 | acpi_ec_burst_disable(ec); |
b3b233c7 | 1385 | |
dc171114 RW |
1386 | if (ec->global_lock) |
1387 | acpi_release_global_lock(glk); | |
1388 | ||
1389 | unlock: | |
1390 | mutex_unlock(&ec->mutex); | |
1391 | ||
1da177e4 LT |
1392 | switch (result) { |
1393 | case -EINVAL: | |
d550d98d | 1394 | return AE_BAD_PARAMETER; |
1da177e4 | 1395 | case -ENODEV: |
d550d98d | 1396 | return AE_NOT_FOUND; |
1da177e4 | 1397 | case -ETIME: |
d550d98d | 1398 | return AE_TIME; |
c4bd7f1d | 1399 | case 0: |
d550d98d | 1400 | return AE_OK; |
c4bd7f1d AW |
1401 | default: |
1402 | return AE_ERROR; | |
1da177e4 | 1403 | } |
1da177e4 LT |
1404 | } |
1405 | ||
1da177e4 | 1406 | /* -------------------------------------------------------------------------- |
7a73e60e LZ |
1407 | * Driver Interface |
1408 | * -------------------------------------------------------------------------- */ | |
1409 | ||
c0900c35 AS |
1410 | static acpi_status |
1411 | ec_parse_io_ports(struct acpi_resource *resource, void *context); | |
1412 | ||
72c77b7e LZ |
1413 | static void acpi_ec_free(struct acpi_ec *ec) |
1414 | { | |
1415 | if (first_ec == ec) | |
1416 | first_ec = NULL; | |
1417 | if (boot_ec == ec) | |
1418 | boot_ec = NULL; | |
1419 | kfree(ec); | |
1420 | } | |
1421 | ||
1422 | static struct acpi_ec *acpi_ec_alloc(void) | |
c0900c35 AS |
1423 | { |
1424 | struct acpi_ec *ec = kzalloc(sizeof(struct acpi_ec), GFP_KERNEL); | |
7a73e60e | 1425 | |
c0900c35 AS |
1426 | if (!ec) |
1427 | return NULL; | |
f351d027 | 1428 | mutex_init(&ec->mutex); |
c0900c35 | 1429 | init_waitqueue_head(&ec->wait); |
837012ed | 1430 | INIT_LIST_HEAD(&ec->list); |
f351d027 | 1431 | spin_lock_init(&ec->lock); |
9d8993be | 1432 | INIT_WORK(&ec->work, acpi_ec_event_handler); |
d8d031a6 | 1433 | ec->timestamp = jiffies; |
c3a696b6 LZ |
1434 | ec->busy_polling = true; |
1435 | ec->polling_guard = 0; | |
406857f7 DD |
1436 | ec->gpe = -1; |
1437 | ec->irq = -1; | |
c0900c35 AS |
1438 | return ec; |
1439 | } | |
837012ed | 1440 | |
c019b193 AS |
1441 | static acpi_status |
1442 | acpi_ec_register_query_methods(acpi_handle handle, u32 level, | |
1443 | void *context, void **return_value) | |
1444 | { | |
0175d562 LM |
1445 | char node_name[5]; |
1446 | struct acpi_buffer buffer = { sizeof(node_name), node_name }; | |
c019b193 AS |
1447 | struct acpi_ec *ec = context; |
1448 | int value = 0; | |
0175d562 LM |
1449 | acpi_status status; |
1450 | ||
1451 | status = acpi_get_name(handle, ACPI_SINGLE_NAME, &buffer); | |
1452 | ||
7a73e60e | 1453 | if (ACPI_SUCCESS(status) && sscanf(node_name, "_Q%x", &value) == 1) |
c019b193 | 1454 | acpi_ec_add_query_handler(ec, value, handle, NULL, NULL); |
c019b193 AS |
1455 | return AE_OK; |
1456 | } | |
1457 | ||
cd8c93a4 AS |
1458 | static acpi_status |
1459 | ec_parse_device(acpi_handle handle, u32 Level, void *context, void **retval) | |
837012ed | 1460 | { |
cd8c93a4 | 1461 | acpi_status status; |
d21cf3c1 | 1462 | unsigned long long tmp = 0; |
cd8c93a4 | 1463 | struct acpi_ec *ec = context; |
a5032bfd AS |
1464 | |
1465 | /* clear addr values, ec_parse_io_ports depend on it */ | |
1466 | ec->command_addr = ec->data_addr = 0; | |
1467 | ||
cd8c93a4 AS |
1468 | status = acpi_walk_resources(handle, METHOD_NAME__CRS, |
1469 | ec_parse_io_ports, ec); | |
1470 | if (ACPI_FAILURE(status)) | |
1471 | return status; | |
ae56c9fd LZ |
1472 | if (ec->data_addr == 0 || ec->command_addr == 0) |
1473 | return AE_OK; | |
837012ed | 1474 | |
f7090e0e HG |
1475 | /* Get GPE bit assignment (EC events). */ |
1476 | /* TODO: Add support for _GPE returning a package */ | |
1477 | status = acpi_evaluate_integer(handle, "_GPE", NULL, &tmp); | |
1478 | if (ACPI_SUCCESS(status)) | |
1479 | ec->gpe = tmp; | |
1480 | /* | |
1481 | * Errors are non-fatal, allowing for ACPI Reduced Hardware | |
1482 | * platforms which use GpioInt instead of GPE. | |
1483 | */ | |
406857f7 | 1484 | |
837012ed | 1485 | /* Use the global lock for all EC transactions? */ |
d21cf3c1 | 1486 | tmp = 0; |
27663c58 MW |
1487 | acpi_evaluate_integer(handle, "_GLK", NULL, &tmp); |
1488 | ec->global_lock = tmp; | |
837012ed | 1489 | ec->handle = handle; |
cd8c93a4 | 1490 | return AE_CTRL_TERMINATE; |
837012ed AS |
1491 | } |
1492 | ||
03e9a0e0 | 1493 | static bool install_gpe_event_handler(struct acpi_ec *ec) |
406857f7 | 1494 | { |
03e9a0e0 | 1495 | acpi_status status; |
406857f7 | 1496 | |
03e9a0e0 RW |
1497 | status = acpi_install_gpe_raw_handler(NULL, ec->gpe, |
1498 | ACPI_GPE_EDGE_TRIGGERED, | |
1499 | &acpi_ec_gpe_handler, ec); | |
1500 | if (ACPI_FAILURE(status)) | |
1501 | return false; | |
406857f7 | 1502 | |
03e9a0e0 RW |
1503 | if (test_bit(EC_FLAGS_STARTED, &ec->flags) && ec->reference_count >= 1) |
1504 | acpi_ec_enable_gpe(ec, true); | |
406857f7 | 1505 | |
03e9a0e0 RW |
1506 | return true; |
1507 | } | |
406857f7 | 1508 | |
03e9a0e0 RW |
1509 | static bool install_gpio_irq_event_handler(struct acpi_ec *ec) |
1510 | { | |
655a6e7c RW |
1511 | return request_threaded_irq(ec->irq, NULL, acpi_ec_irq_handler, |
1512 | IRQF_SHARED | IRQF_ONESHOT, "ACPI EC", ec) >= 0; | |
406857f7 DD |
1513 | } |
1514 | ||
03e9a0e0 RW |
1515 | /** |
1516 | * ec_install_handlers - Install service callbacks and register query methods. | |
1517 | * @ec: Target EC. | |
1518 | * @device: ACPI device object corresponding to @ec. | |
ab4620f5 | 1519 | * @call_reg: If _REG should be called to notify OpRegion availability |
03e9a0e0 RW |
1520 | * |
1521 | * Install a handler for the EC address space type unless it has been installed | |
1522 | * already. If @device is not NULL, also look for EC query methods in the | |
1523 | * namespace and register them, and install an event (either GPE or GPIO IRQ) | |
1524 | * handler for the EC, if possible. | |
1525 | * | |
1526 | * Return: | |
1527 | * -ENODEV if the address space handler cannot be installed, which means | |
1528 | * "unable to handle transactions", | |
1529 | * -EPROBE_DEFER if GPIO IRQ acquisition needs to be deferred, | |
1530 | * or 0 (success) otherwise. | |
72c77b7e | 1531 | */ |
ab4620f5 HG |
1532 | static int ec_install_handlers(struct acpi_ec *ec, struct acpi_device *device, |
1533 | bool call_reg) | |
5efc5476 BH |
1534 | { |
1535 | acpi_status status; | |
7a73e60e | 1536 | |
ad479e7f | 1537 | acpi_ec_start(ec, false); |
0e1affe4 LZ |
1538 | |
1539 | if (!test_bit(EC_FLAGS_EC_HANDLER_INSTALLED, &ec->flags)) { | |
71bf41b8 RW |
1540 | acpi_handle scope_handle = ec == first_ec ? ACPI_ROOT_OBJECT : ec->handle; |
1541 | ||
c3a696b6 | 1542 | acpi_ec_enter_noirq(ec); |
60fa6ae6 | 1543 | status = acpi_install_address_space_handler_no_reg(scope_handle, |
ab4620f5 HG |
1544 | ACPI_ADR_SPACE_EC, |
1545 | &acpi_ec_space_handler, | |
1546 | NULL, ec); | |
0e1affe4 | 1547 | if (ACPI_FAILURE(status)) { |
7247f0c2 RW |
1548 | acpi_ec_stop(ec, false); |
1549 | return -ENODEV; | |
0e1affe4 LZ |
1550 | } |
1551 | set_bit(EC_FLAGS_EC_HANDLER_INSTALLED, &ec->flags); | |
1552 | } | |
1553 | ||
ab4620f5 | 1554 | if (call_reg && !test_bit(EC_FLAGS_EC_REG_CALLED, &ec->flags)) { |
71bf41b8 | 1555 | acpi_execute_reg_methods(ec->handle, ACPI_UINT32_MAX, ACPI_ADR_SPACE_EC); |
ab4620f5 | 1556 | set_bit(EC_FLAGS_EC_REG_CALLED, &ec->flags); |
0e1affe4 LZ |
1557 | } |
1558 | ||
a2b69177 | 1559 | if (!device) |
2a570840 LZ |
1560 | return 0; |
1561 | ||
03e9a0e0 RW |
1562 | if (ec->gpe < 0) { |
1563 | /* ACPI reduced hardware platforms use a GpioInt from _CRS. */ | |
1564 | int irq = acpi_dev_gpio_irq_get(device, 0); | |
1565 | /* | |
1566 | * Bail out right away for deferred probing or complete the | |
1567 | * initialization regardless of any other errors. | |
1568 | */ | |
1569 | if (irq == -EPROBE_DEFER) | |
1570 | return -EPROBE_DEFER; | |
1571 | else if (irq >= 0) | |
1572 | ec->irq = irq; | |
1573 | } | |
1574 | ||
4446abc9 | 1575 | if (!test_bit(EC_FLAGS_QUERY_METHODS_INSTALLED, &ec->flags)) { |
2a570840 LZ |
1576 | /* Find and register all query methods */ |
1577 | acpi_walk_namespace(ACPI_TYPE_METHOD, ec->handle, 1, | |
1578 | acpi_ec_register_query_methods, | |
1579 | NULL, ec, NULL); | |
4446abc9 | 1580 | set_bit(EC_FLAGS_QUERY_METHODS_INSTALLED, &ec->flags); |
2a570840 | 1581 | } |
4446abc9 | 1582 | if (!test_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags)) { |
03e9a0e0 RW |
1583 | bool ready = false; |
1584 | ||
1585 | if (ec->gpe >= 0) | |
1586 | ready = install_gpe_event_handler(ec); | |
1587 | else if (ec->irq >= 0) | |
1588 | ready = install_gpio_irq_event_handler(ec); | |
1589 | ||
1590 | if (ready) { | |
1591 | set_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags); | |
1592 | acpi_ec_leave_noirq(ec); | |
5efc5476 | 1593 | } |
03e9a0e0 RW |
1594 | /* |
1595 | * Failures to install an event handler are not fatal, because | |
1596 | * the EC can be polled for events. | |
1597 | */ | |
5efc5476 | 1598 | } |
53c5eaab LZ |
1599 | /* EC is fully operational, allow queries */ |
1600 | acpi_ec_enable_event(ec); | |
5efc5476 | 1601 | |
5efc5476 BH |
1602 | return 0; |
1603 | } | |
1604 | ||
4c611060 AS |
1605 | static void ec_remove_handlers(struct acpi_ec *ec) |
1606 | { | |
60fa6ae6 RW |
1607 | acpi_handle scope_handle = ec == first_ec ? ACPI_ROOT_OBJECT : ec->handle; |
1608 | ||
0e1affe4 | 1609 | if (test_bit(EC_FLAGS_EC_HANDLER_INSTALLED, &ec->flags)) { |
a5072078 | 1610 | if (ACPI_FAILURE(acpi_remove_address_space_handler( |
60fa6ae6 RW |
1611 | scope_handle, |
1612 | ACPI_ADR_SPACE_EC, | |
1613 | &acpi_ec_space_handler))) | |
0e1affe4 LZ |
1614 | pr_err("failed to remove space handler\n"); |
1615 | clear_bit(EC_FLAGS_EC_HANDLER_INSTALLED, &ec->flags); | |
1616 | } | |
1617 | ||
fa5b4a50 LZ |
1618 | /* |
1619 | * Stops handling the EC transactions after removing the operation | |
1620 | * region handler. This is required because _REG(DISCONNECT) | |
1621 | * invoked during the removal can result in new EC transactions. | |
1622 | * | |
1623 | * Flushes the EC requests and thus disables the GPE before | |
1624 | * removing the GPE handler. This is required by the current ACPICA | |
1625 | * GPE core. ACPICA GPE core will automatically disable a GPE when | |
1626 | * it is indicated but there is no way to handle it. So the drivers | |
1627 | * must disable the GPEs prior to removing the GPE handlers. | |
1628 | */ | |
1629 | acpi_ec_stop(ec, false); | |
1630 | ||
4446abc9 | 1631 | if (test_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags)) { |
406857f7 DD |
1632 | if (ec->gpe >= 0 && |
1633 | ACPI_FAILURE(acpi_remove_gpe_handler(NULL, ec->gpe, | |
1634 | &acpi_ec_gpe_handler))) | |
0e1affe4 | 1635 | pr_err("failed to remove gpe handler\n"); |
406857f7 DD |
1636 | |
1637 | if (ec->irq >= 0) | |
1638 | free_irq(ec->irq, ec); | |
1639 | ||
4446abc9 | 1640 | clear_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags); |
0e1affe4 | 1641 | } |
4446abc9 | 1642 | if (test_bit(EC_FLAGS_QUERY_METHODS_INSTALLED, &ec->flags)) { |
2a570840 | 1643 | acpi_ec_remove_query_handlers(ec, true, 0); |
4446abc9 | 1644 | clear_bit(EC_FLAGS_QUERY_METHODS_INSTALLED, &ec->flags); |
2a570840 | 1645 | } |
4c611060 AS |
1646 | } |
1647 | ||
ab4620f5 | 1648 | static int acpi_ec_setup(struct acpi_ec *ec, struct acpi_device *device, bool call_reg) |
1da177e4 | 1649 | { |
72c77b7e | 1650 | int ret; |
c0900c35 | 1651 | |
72c77b7e | 1652 | /* First EC capable of handling transactions */ |
c823c17a | 1653 | if (!first_ec) |
72c77b7e | 1654 | first_ec = ec; |
72c77b7e | 1655 | |
60fa6ae6 RW |
1656 | ret = ec_install_handlers(ec, device, call_reg); |
1657 | if (ret) { | |
1658 | if (ec == first_ec) | |
1659 | first_ec = NULL; | |
1660 | ||
1661 | return ret; | |
1662 | } | |
1663 | ||
c823c17a RW |
1664 | pr_info("EC_CMD/EC_SC=0x%lx, EC_DATA=0x%lx\n", ec->command_addr, |
1665 | ec->data_addr); | |
97cb159f | 1666 | |
c823c17a RW |
1667 | if (test_bit(EC_FLAGS_EVENT_HANDLER_INSTALLED, &ec->flags)) { |
1668 | if (ec->gpe >= 0) | |
1669 | pr_info("GPE=0x%x\n", ec->gpe); | |
1670 | else | |
1671 | pr_info("IRQ=%d\n", ec->irq); | |
a5032bfd | 1672 | } |
97cb159f | 1673 | |
72c77b7e | 1674 | return ret; |
97cb159f LZ |
1675 | } |
1676 | ||
fd6231e7 LZ |
1677 | static int acpi_ec_add(struct acpi_device *device) |
1678 | { | |
e3cfabcd | 1679 | struct acpi_ec *ec; |
116f2b34 | 1680 | int ret; |
fd6231e7 | 1681 | |
f098bb55 MQAM |
1682 | strscpy(acpi_device_name(device), ACPI_EC_DEVICE_NAME); |
1683 | strscpy(acpi_device_class(device), ACPI_EC_CLASS); | |
fd6231e7 | 1684 | |
d7e0481c RW |
1685 | if (boot_ec && (boot_ec->handle == device->handle || |
1686 | !strcmp(acpi_device_hid(device), ACPI_ECDT_HID))) { | |
e3cfabcd | 1687 | /* Fast path: this device corresponds to the boot EC. */ |
a64a62ce LZ |
1688 | ec = boot_ec; |
1689 | } else { | |
e3cfabcd RW |
1690 | acpi_status status; |
1691 | ||
a64a62ce LZ |
1692 | ec = acpi_ec_alloc(); |
1693 | if (!ec) | |
1694 | return -ENOMEM; | |
116f2b34 | 1695 | |
a64a62ce LZ |
1696 | status = ec_parse_device(device->handle, 0, ec, NULL); |
1697 | if (status != AE_CTRL_TERMINATE) { | |
46922d2a | 1698 | ret = -EINVAL; |
03e9a0e0 | 1699 | goto err; |
a64a62ce | 1700 | } |
4c611060 | 1701 | |
116f2b34 | 1702 | if (boot_ec && ec->command_addr == boot_ec->command_addr && |
81df5f91 | 1703 | ec->data_addr == boot_ec->data_addr) { |
a64a62ce | 1704 | /* |
81df5f91 HG |
1705 | * Trust PNP0C09 namespace location rather than ECDT ID. |
1706 | * But trust ECDT GPE rather than _GPE because of ASUS | |
1707 | * quirks. So do not change boot_ec->gpe to ec->gpe, | |
1708 | * except when the TRUST_DSDT_GPE quirk is set. | |
a64a62ce LZ |
1709 | */ |
1710 | boot_ec->handle = ec->handle; | |
81df5f91 HG |
1711 | |
1712 | if (EC_FLAGS_TRUST_DSDT_GPE) | |
1713 | boot_ec->gpe = ec->gpe; | |
1714 | ||
a64a62ce LZ |
1715 | acpi_handle_debug(ec->handle, "duplicated.\n"); |
1716 | acpi_ec_free(ec); | |
1717 | ec = boot_ec; | |
1718 | } | |
d2c62aef RW |
1719 | } |
1720 | ||
ab4620f5 | 1721 | ret = acpi_ec_setup(ec, device, true); |
46922d2a | 1722 | if (ret) |
03e9a0e0 | 1723 | goto err; |
46922d2a | 1724 | |
d2c62aef RW |
1725 | if (ec == boot_ec) |
1726 | acpi_handle_info(boot_ec->handle, | |
65a691f5 | 1727 | "Boot %s EC initialization complete\n", |
116f2b34 | 1728 | boot_ec_is_ecdt ? "ECDT" : "DSDT"); |
d2c62aef | 1729 | |
65a691f5 RW |
1730 | acpi_handle_info(ec->handle, |
1731 | "EC: Used to handle transactions and events\n"); | |
1732 | ||
db89b4f0 | 1733 | device->driver_data = ec; |
de4f1046 | 1734 | |
d6795fe3 AK |
1735 | ret = !!request_region(ec->data_addr, 1, "EC data"); |
1736 | WARN(!ret, "Could not request EC data io port 0x%lx", ec->data_addr); | |
1737 | ret = !!request_region(ec->command_addr, 1, "EC cmd"); | |
1738 | WARN(!ret, "Could not request EC cmd io port 0x%lx", ec->command_addr); | |
de4f1046 | 1739 | |
e3cfabcd | 1740 | /* Reprobe devices depending on the EC */ |
a9e10e58 | 1741 | acpi_dev_clear_dependencies(device); |
e3cfabcd | 1742 | |
97cb159f | 1743 | acpi_handle_debug(ec->handle, "enumerated.\n"); |
46922d2a LZ |
1744 | return 0; |
1745 | ||
03e9a0e0 | 1746 | err: |
97cb159f LZ |
1747 | if (ec != boot_ec) |
1748 | acpi_ec_free(ec); | |
03e9a0e0 | 1749 | |
5efc5476 | 1750 | return ret; |
1da177e4 LT |
1751 | } |
1752 | ||
6c0eb5ba | 1753 | static void acpi_ec_remove(struct acpi_device *device) |
1da177e4 | 1754 | { |
01f22462 | 1755 | struct acpi_ec *ec; |
1da177e4 | 1756 | |
1da177e4 | 1757 | if (!device) |
6c0eb5ba | 1758 | return; |
1da177e4 LT |
1759 | |
1760 | ec = acpi_driver_data(device); | |
de4f1046 TR |
1761 | release_region(ec->data_addr, 1); |
1762 | release_region(ec->command_addr, 1); | |
db89b4f0 | 1763 | device->driver_data = NULL; |
97cb159f LZ |
1764 | if (ec != boot_ec) { |
1765 | ec_remove_handlers(ec); | |
1766 | acpi_ec_free(ec); | |
1767 | } | |
1da177e4 LT |
1768 | } |
1769 | ||
71bf41b8 RW |
1770 | void acpi_ec_register_opregions(struct acpi_device *adev) |
1771 | { | |
1772 | if (first_ec && first_ec->handle != adev->handle) | |
1773 | acpi_execute_reg_methods(adev->handle, 1, ACPI_ADR_SPACE_EC); | |
1774 | } | |
1775 | ||
1da177e4 | 1776 | static acpi_status |
c0900c35 | 1777 | ec_parse_io_ports(struct acpi_resource *resource, void *context) |
1da177e4 | 1778 | { |
3d02b90b | 1779 | struct acpi_ec *ec = context; |
1da177e4 | 1780 | |
01f22462 | 1781 | if (resource->type != ACPI_RESOURCE_TYPE_IO) |
1da177e4 | 1782 | return AE_OK; |
1da177e4 LT |
1783 | |
1784 | /* | |
1785 | * The first address region returned is the data port, and | |
1786 | * the second address region returned is the status/command | |
1787 | * port. | |
1788 | */ | |
de4f1046 | 1789 | if (ec->data_addr == 0) |
6ffb221a | 1790 | ec->data_addr = resource->data.io.minimum; |
de4f1046 | 1791 | else if (ec->command_addr == 0) |
6ffb221a | 1792 | ec->command_addr = resource->data.io.minimum; |
01f22462 | 1793 | else |
1da177e4 | 1794 | return AE_CTRL_TERMINATE; |
1da177e4 | 1795 | |
1da177e4 LT |
1796 | return AE_OK; |
1797 | } | |
1798 | ||
dcf15cbd LZ |
1799 | static const struct acpi_device_id ec_device_ids[] = { |
1800 | {"PNP0C09", 0}, | |
a64a62ce | 1801 | {ACPI_ECDT_HID, 0}, |
dcf15cbd LZ |
1802 | {"", 0}, |
1803 | }; | |
1804 | ||
c712bb58 LZ |
1805 | /* |
1806 | * This function is not Windows-compatible as Windows never enumerates the | |
1807 | * namespace EC before the main ACPI device enumeration process. It is | |
1808 | * retained for historical reason and will be deprecated in the future. | |
1809 | */ | |
fdb3c177 | 1810 | void __init acpi_ec_dsdt_probe(void) |
c04209a7 | 1811 | { |
fd6231e7 | 1812 | struct acpi_ec *ec; |
fdb3c177 | 1813 | acpi_status status; |
fd6231e7 | 1814 | int ret; |
dcf15cbd | 1815 | |
c712bb58 LZ |
1816 | /* |
1817 | * If a platform has ECDT, there is no need to proceed as the | |
1818 | * following probe is not a part of the ACPI device enumeration, | |
1819 | * executing _STA is not safe, and thus this probe may risk of | |
1820 | * picking up an invalid EC device. | |
1821 | */ | |
1822 | if (boot_ec) | |
fdb3c177 | 1823 | return; |
c712bb58 | 1824 | |
fd6231e7 LZ |
1825 | ec = acpi_ec_alloc(); |
1826 | if (!ec) | |
fdb3c177 RW |
1827 | return; |
1828 | ||
dcf15cbd | 1829 | /* |
2a570840 LZ |
1830 | * At this point, the namespace is initialized, so start to find |
1831 | * the namespace objects. | |
dcf15cbd | 1832 | */ |
fdb3c177 | 1833 | status = acpi_get_devices(ec_device_ids[0].id, ec_parse_device, ec, NULL); |
fd6231e7 | 1834 | if (ACPI_FAILURE(status) || !ec->handle) { |
fdb3c177 RW |
1835 | acpi_ec_free(ec); |
1836 | return; | |
c04209a7 | 1837 | } |
fdb3c177 | 1838 | |
2a570840 LZ |
1839 | /* |
1840 | * When the DSDT EC is available, always re-configure boot EC to | |
1841 | * have _REG evaluated. _REG can only be evaluated after the | |
1842 | * namespace initialization. | |
1843 | * At this point, the GPE is not fully initialized, so do not to | |
1844 | * handle the events. | |
1845 | */ | |
ab4620f5 | 1846 | ret = acpi_ec_setup(ec, NULL, true); |
c746b6b6 | 1847 | if (ret) { |
72c77b7e | 1848 | acpi_ec_free(ec); |
c746b6b6 RW |
1849 | return; |
1850 | } | |
1851 | ||
1852 | boot_ec = ec; | |
1853 | ||
1854 | acpi_handle_info(ec->handle, | |
1855 | "Boot DSDT EC used to handle transactions\n"); | |
c04209a7 AS |
1856 | } |
1857 | ||
2a570840 | 1858 | /* |
98ada3c5 RW |
1859 | * acpi_ec_ecdt_start - Finalize the boot ECDT EC initialization. |
1860 | * | |
1861 | * First, look for an ACPI handle for the boot ECDT EC if acpi_ec_add() has not | |
1862 | * found a matching object in the namespace. | |
1863 | * | |
1864 | * Next, in case the DSDT EC is not functioning, it is still necessary to | |
1865 | * provide a functional ECDT EC to handle events, so add an extra device object | |
1866 | * to represent it (see https://bugzilla.kernel.org/show_bug.cgi?id=115021). | |
1867 | * | |
1868 | * This is useful on platforms with valid ECDT and invalid DSDT EC settings, | |
1869 | * like ASUS X550ZE (see https://bugzilla.kernel.org/show_bug.cgi?id=196847). | |
2a570840 | 1870 | */ |
98ada3c5 | 1871 | static void __init acpi_ec_ecdt_start(void) |
2a570840 | 1872 | { |
98ada3c5 | 1873 | struct acpi_table_ecdt *ecdt_ptr; |
2a570840 | 1874 | acpi_handle handle; |
98ada3c5 | 1875 | acpi_status status; |
2a570840 | 1876 | |
98ada3c5 RW |
1877 | /* Bail out if a matching EC has been found in the namespace. */ |
1878 | if (!boot_ec || boot_ec->handle != ACPI_ROOT_OBJECT) | |
1879 | return; | |
2a570840 | 1880 | |
98ada3c5 RW |
1881 | /* Look up the object pointed to from the ECDT in the namespace. */ |
1882 | status = acpi_get_table(ACPI_SIG_ECDT, 1, | |
1883 | (struct acpi_table_header **)&ecdt_ptr); | |
1884 | if (ACPI_FAILURE(status)) | |
1885 | return; | |
a64a62ce | 1886 | |
98ada3c5 | 1887 | status = acpi_get_handle(NULL, ecdt_ptr->id, &handle); |
f900bf49 HG |
1888 | if (ACPI_SUCCESS(status)) { |
1889 | boot_ec->handle = handle; | |
2a570840 | 1890 | |
f900bf49 HG |
1891 | /* Add a special ACPI device object to represent the boot EC. */ |
1892 | acpi_bus_register_early_device(ACPI_BUS_TYPE_ECDT_EC); | |
1893 | } | |
98ada3c5 | 1894 | |
f900bf49 | 1895 | acpi_put_table((struct acpi_table_header *)ecdt_ptr); |
79149001 LZ |
1896 | } |
1897 | ||
b6a3e147 ZR |
1898 | /* |
1899 | * On some hardware it is necessary to clear events accumulated by the EC during | |
1900 | * sleep. These ECs stop reporting GPEs until they are manually polled, if too | |
1901 | * many events are accumulated. (e.g. Samsung Series 5/9 notebooks) | |
1902 | * | |
1903 | * https://bugzilla.kernel.org/show_bug.cgi?id=44161 | |
1904 | * | |
1905 | * Ideally, the EC should also be instructed NOT to accumulate events during | |
1906 | * sleep (which Windows seems to do somehow), but the interface to control this | |
1907 | * behaviour is not known at this time. | |
1908 | * | |
1909 | * Models known to be affected are Samsung 530Uxx/535Uxx/540Uxx/550Pxx/900Xxx, | |
1910 | * however it is very likely that other Samsung models are affected. | |
1911 | * | |
1912 | * On systems which don't accumulate _Q events during sleep, this extra check | |
1913 | * should be harmless. | |
1914 | */ | |
1915 | static int ec_clear_on_resume(const struct dmi_system_id *id) | |
1916 | { | |
1917 | pr_debug("Detected system needing EC poll on resume.\n"); | |
1918 | EC_FLAGS_CLEAR_ON_RESUME = 1; | |
1919 | ec_event_clearing = ACPI_EC_EVT_TIMING_STATUS; | |
1920 | return 0; | |
1921 | } | |
1922 | ||
bc539567 LZ |
1923 | /* |
1924 | * Some ECDTs contain wrong register addresses. | |
1925 | * MSI MS-171F | |
1926 | * https://bugzilla.kernel.org/show_bug.cgi?id=12461 | |
1927 | */ | |
59f0aa94 LZ |
1928 | static int ec_correct_ecdt(const struct dmi_system_id *id) |
1929 | { | |
1930 | pr_debug("Detected system needing ECDT address correction.\n"); | |
1931 | EC_FLAGS_CORRECT_ECDT = 1; | |
1932 | return 0; | |
1933 | } | |
1934 | ||
4370cbf3 ZR |
1935 | /* |
1936 | * Some ECDTs contain wrong GPE setting, but they share the same port addresses | |
1937 | * with DSDT EC, don't duplicate the DSDT EC with ECDT EC in this case. | |
1938 | * https://bugzilla.kernel.org/show_bug.cgi?id=209989 | |
1939 | */ | |
1940 | static int ec_honor_dsdt_gpe(const struct dmi_system_id *id) | |
1941 | { | |
1942 | pr_debug("Detected system needing DSDT GPE setting.\n"); | |
1943 | EC_FLAGS_TRUST_DSDT_GPE = 1; | |
1944 | return 0; | |
1945 | } | |
1946 | ||
6faadbbb | 1947 | static const struct dmi_system_id ec_dmi_table[] __initconst = { |
0adf3c74 | 1948 | { |
3e6573c5 HG |
1949 | /* |
1950 | * MSI MS-171F | |
1951 | * https://bugzilla.kernel.org/show_bug.cgi?id=12461 | |
1952 | */ | |
1953 | .callback = ec_correct_ecdt, | |
1954 | .matches = { | |
1955 | DMI_MATCH(DMI_SYS_VENDOR, "Micro-Star"), | |
1956 | DMI_MATCH(DMI_PRODUCT_NAME, "MS-171F"), | |
1957 | }, | |
1958 | }, | |
440f53da | 1959 | { |
3e6573c5 HG |
1960 | /* |
1961 | * HP Pavilion Gaming Laptop 15-cx0xxx | |
1962 | * https://bugzilla.kernel.org/show_bug.cgi?id=209989 | |
1963 | */ | |
1964 | .callback = ec_honor_dsdt_gpe, | |
1965 | .matches = { | |
1966 | DMI_MATCH(DMI_SYS_VENDOR, "HP"), | |
1967 | DMI_MATCH(DMI_PRODUCT_NAME, "HP Pavilion Gaming Laptop 15-cx0xxx"), | |
1968 | }, | |
1969 | }, | |
b423f240 MK |
1970 | { |
1971 | /* | |
1972 | * HP Pavilion Gaming Laptop 15-cx0041ur | |
1973 | */ | |
1974 | .callback = ec_honor_dsdt_gpe, | |
1975 | .matches = { | |
1976 | DMI_MATCH(DMI_SYS_VENDOR, "HP"), | |
1977 | DMI_MATCH(DMI_PRODUCT_NAME, "HP 15-cx0041ur"), | |
1978 | }, | |
1979 | }, | |
cd4aece4 HG |
1980 | { |
1981 | /* | |
1982 | * HP Pavilion Gaming Laptop 15-dk1xxx | |
1983 | * https://github.com/systemd/systemd/issues/28942 | |
1984 | */ | |
1985 | .callback = ec_honor_dsdt_gpe, | |
1986 | .matches = { | |
1987 | DMI_MATCH(DMI_SYS_VENDOR, "HP"), | |
1988 | DMI_MATCH(DMI_PRODUCT_NAME, "HP Pavilion Gaming Laptop 15-dk1xxx"), | |
1989 | }, | |
1990 | }, | |
891ddc03 JD |
1991 | { |
1992 | /* | |
1993 | * HP 250 G7 Notebook PC | |
1994 | */ | |
1995 | .callback = ec_honor_dsdt_gpe, | |
1996 | .matches = { | |
1997 | DMI_MATCH(DMI_SYS_VENDOR, "HP"), | |
1998 | DMI_MATCH(DMI_PRODUCT_NAME, "HP 250 G7 Notebook PC"), | |
1999 | }, | |
2000 | }, | |
4370cbf3 | 2001 | { |
3e6573c5 HG |
2002 | /* |
2003 | * Samsung hardware | |
2004 | * https://bugzilla.kernel.org/show_bug.cgi?id=44161 | |
2005 | */ | |
2006 | .callback = ec_clear_on_resume, | |
2007 | .matches = { | |
2008 | DMI_MATCH(DMI_SYS_VENDOR, "SAMSUNG ELECTRONICS CO., LTD."), | |
2009 | }, | |
2010 | }, | |
2011 | {} | |
0adf3c74 AS |
2012 | }; |
2013 | ||
fdb3c177 | 2014 | void __init acpi_ec_ecdt_probe(void) |
c0900c35 | 2015 | { |
50526df6 | 2016 | struct acpi_table_ecdt *ecdt_ptr; |
fd6231e7 | 2017 | struct acpi_ec *ec; |
fdb3c177 RW |
2018 | acpi_status status; |
2019 | int ret; | |
45bea155 | 2020 | |
fdb3c177 | 2021 | /* Generate a boot ec context. */ |
0adf3c74 | 2022 | dmi_check_system(ec_dmi_table); |
15a58ed1 AS |
2023 | status = acpi_get_table(ACPI_SIG_ECDT, 1, |
2024 | (struct acpi_table_header **)&ecdt_ptr); | |
fdb3c177 RW |
2025 | if (ACPI_FAILURE(status)) |
2026 | return; | |
0adf3c74 | 2027 | |
59f0aa94 LZ |
2028 | if (!ecdt_ptr->control.address || !ecdt_ptr->data.address) { |
2029 | /* | |
2030 | * Asus X50GL: | |
2031 | * https://bugzilla.kernel.org/show_bug.cgi?id=11880 | |
2032 | */ | |
f900bf49 | 2033 | goto out; |
ed4b197d | 2034 | } |
478fa03b | 2035 | |
7a0d59f6 AW |
2036 | if (!strstarts(ecdt_ptr->id, "\\")) { |
2037 | /* | |
2038 | * The ECDT table on some MSI notebooks contains invalid data, together | |
2039 | * with an empty ID string (""). | |
2040 | * | |
2041 | * Section 5.2.15 of the ACPI specification requires the ID string to be | |
2042 | * a "fully qualified reference to the (...) embedded controller device", | |
2043 | * so this string always has to start with a backslash. | |
2044 | * | |
2045 | * By verifying this we can avoid such faulty ECDT tables in a safe way. | |
2046 | */ | |
2047 | pr_err(FW_BUG "Ignoring ECDT due to invalid ID string \"%s\"\n", ecdt_ptr->id); | |
2048 | goto out; | |
2049 | } | |
2050 | ||
fdb3c177 RW |
2051 | ec = acpi_ec_alloc(); |
2052 | if (!ec) | |
f900bf49 | 2053 | goto out; |
fdb3c177 | 2054 | |
59f0aa94 | 2055 | if (EC_FLAGS_CORRECT_ECDT) { |
fd6231e7 LZ |
2056 | ec->command_addr = ecdt_ptr->data.address; |
2057 | ec->data_addr = ecdt_ptr->control.address; | |
c6cb0e87 | 2058 | } else { |
fd6231e7 LZ |
2059 | ec->command_addr = ecdt_ptr->control.address; |
2060 | ec->data_addr = ecdt_ptr->data.address; | |
c6cb0e87 | 2061 | } |
406857f7 DD |
2062 | |
2063 | /* | |
2064 | * Ignore the GPE value on Reduced Hardware platforms. | |
2065 | * Some products have this set to an erroneous value. | |
2066 | */ | |
2067 | if (!acpi_gbl_reduced_hardware) | |
2068 | ec->gpe = ecdt_ptr->gpe; | |
2069 | ||
1568426c | 2070 | ec->handle = ACPI_ROOT_OBJECT; |
2a570840 LZ |
2071 | |
2072 | /* | |
2073 | * At this point, the namespace is not initialized, so do not find | |
2074 | * the namespace objects, or handle the events. | |
2075 | */ | |
ab4620f5 | 2076 | ret = acpi_ec_setup(ec, NULL, false); |
1568426c | 2077 | if (ret) { |
72c77b7e | 2078 | acpi_ec_free(ec); |
f900bf49 | 2079 | goto out; |
1568426c RW |
2080 | } |
2081 | ||
2082 | boot_ec = ec; | |
2083 | boot_ec_is_ecdt = true; | |
2084 | ||
2085 | pr_info("Boot ECDT EC used to handle transactions\n"); | |
f900bf49 HG |
2086 | |
2087 | out: | |
2088 | acpi_put_table((struct acpi_table_header *)ecdt_ptr); | |
1da177e4 LT |
2089 | } |
2090 | ||
df45db61 | 2091 | #ifdef CONFIG_PM_SLEEP |
39a2a2aa LZ |
2092 | static int acpi_ec_suspend(struct device *dev) |
2093 | { | |
2094 | struct acpi_ec *ec = | |
2095 | acpi_driver_data(to_acpi_device(dev)); | |
2096 | ||
6e86633a | 2097 | if (!pm_suspend_no_platform() && ec_freeze_events) |
39a2a2aa LZ |
2098 | acpi_ec_disable_event(ec); |
2099 | return 0; | |
2100 | } | |
2101 | ||
76380636 RW |
2102 | static int acpi_ec_suspend_noirq(struct device *dev) |
2103 | { | |
2104 | struct acpi_ec *ec = acpi_driver_data(to_acpi_device(dev)); | |
2105 | ||
2106 | /* | |
2107 | * The SCI handler doesn't run at this point, so the GPE can be | |
2108 | * masked at the low level without side effects. | |
2109 | */ | |
2110 | if (ec_no_wakeup && test_bit(EC_FLAGS_STARTED, &ec->flags) && | |
406857f7 | 2111 | ec->gpe >= 0 && ec->reference_count >= 1) |
76380636 RW |
2112 | acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_DISABLE); |
2113 | ||
fcd0a042 | 2114 | acpi_ec_enter_noirq(ec); |
3cd091a7 | 2115 | |
76380636 RW |
2116 | return 0; |
2117 | } | |
2118 | ||
2119 | static int acpi_ec_resume_noirq(struct device *dev) | |
2120 | { | |
2121 | struct acpi_ec *ec = acpi_driver_data(to_acpi_device(dev)); | |
2122 | ||
fcd0a042 | 2123 | acpi_ec_leave_noirq(ec); |
3cd091a7 | 2124 | |
76380636 | 2125 | if (ec_no_wakeup && test_bit(EC_FLAGS_STARTED, &ec->flags) && |
406857f7 | 2126 | ec->gpe >= 0 && ec->reference_count >= 1) |
76380636 RW |
2127 | acpi_set_gpe(NULL, ec->gpe, ACPI_GPE_ENABLE); |
2128 | ||
2129 | return 0; | |
2130 | } | |
2131 | ||
c2b46d67 LZ |
2132 | static int acpi_ec_resume(struct device *dev) |
2133 | { | |
2134 | struct acpi_ec *ec = | |
2135 | acpi_driver_data(to_acpi_device(dev)); | |
2136 | ||
2137 | acpi_ec_enable_event(ec); | |
2138 | return 0; | |
2139 | } | |
d7589404 RW |
2140 | |
2141 | void acpi_ec_mark_gpe_for_wake(void) | |
2142 | { | |
2143 | if (first_ec && !ec_no_wakeup) | |
2144 | acpi_mark_gpe_for_wake(NULL, first_ec->gpe); | |
2145 | } | |
2146 | EXPORT_SYMBOL_GPL(acpi_ec_mark_gpe_for_wake); | |
2147 | ||
2148 | void acpi_ec_set_gpe_wake_mask(u8 action) | |
2149 | { | |
2150 | if (pm_suspend_no_platform() && first_ec && !ec_no_wakeup) | |
2151 | acpi_set_gpe_wake_mask(NULL, first_ec->gpe, action); | |
2152 | } | |
d7589404 | 2153 | |
9aa60f3c RW |
2154 | static bool acpi_ec_work_in_progress(struct acpi_ec *ec) |
2155 | { | |
2156 | return ec->events_in_progress + ec->queries_in_progress > 0; | |
2157 | } | |
2158 | ||
d7589404 RW |
2159 | bool acpi_ec_dispatch_gpe(void) |
2160 | { | |
ca8283dc | 2161 | bool work_in_progress = false; |
d7589404 RW |
2162 | |
2163 | if (!first_ec) | |
7b301750 RW |
2164 | return acpi_any_gpe_status_set(U32_MAX); |
2165 | ||
2166 | /* | |
2167 | * Report wakeup if the status bit is set for any enabled GPE other | |
2168 | * than the EC one. | |
2169 | */ | |
2170 | if (acpi_any_gpe_status_set(first_ec->gpe)) | |
2171 | return true; | |
2172 | ||
dc0075ba RW |
2173 | /* |
2174 | * Cancel the SCI wakeup and process all pending events in case there | |
2175 | * are any wakeup ones in there. | |
2176 | * | |
2177 | * Note that if any non-EC GPEs are active at this point, the SCI will | |
2178 | * retrigger after the rearming in acpi_s2idle_wake(), so no events | |
2179 | * should be missed by canceling the wakeup here. | |
2180 | */ | |
2181 | pm_system_cancel_wakeup(); | |
2182 | ||
7b301750 RW |
2183 | /* |
2184 | * Dispatch the EC GPE in-band, but do not report wakeup in any case | |
2185 | * to allow the caller to process events properly after that. | |
2186 | */ | |
e0359f15 | 2187 | spin_lock_irq(&first_ec->lock); |
ca8283dc | 2188 | |
977dc308 RW |
2189 | if (acpi_ec_gpe_status_set(first_ec)) { |
2190 | pm_pr_dbg("ACPI EC GPE status set\n"); | |
2191 | ||
b5539eb5 | 2192 | clear_gpe_and_advance_transaction(first_ec, false); |
9aa60f3c | 2193 | work_in_progress = acpi_ec_work_in_progress(first_ec); |
977dc308 | 2194 | } |
ca8283dc | 2195 | |
e0359f15 | 2196 | spin_unlock_irq(&first_ec->lock); |
ca8283dc RW |
2197 | |
2198 | if (!work_in_progress) | |
2199 | return false; | |
2200 | ||
2201 | pm_pr_dbg("ACPI EC GPE dispatched\n"); | |
7b301750 | 2202 | |
4a9af6ca RW |
2203 | /* Drain EC work. */ |
2204 | do { | |
2205 | acpi_ec_flush_work(); | |
2206 | ||
2207 | pm_pr_dbg("ACPI EC work flushed\n"); | |
2208 | ||
e0359f15 | 2209 | spin_lock_irq(&first_ec->lock); |
4a9af6ca | 2210 | |
9aa60f3c | 2211 | work_in_progress = acpi_ec_work_in_progress(first_ec); |
4a9af6ca | 2212 | |
e0359f15 | 2213 | spin_unlock_irq(&first_ec->lock); |
4a9af6ca | 2214 | } while (work_in_progress && !pm_wakeup_pending()); |
607b9df6 | 2215 | |
29113f2f | 2216 | return false; |
d7589404 RW |
2217 | } |
2218 | #endif /* CONFIG_PM_SLEEP */ | |
df45db61 LZ |
2219 | |
2220 | static const struct dev_pm_ops acpi_ec_pm = { | |
76380636 | 2221 | SET_NOIRQ_SYSTEM_SLEEP_PM_OPS(acpi_ec_suspend_noirq, acpi_ec_resume_noirq) |
39a2a2aa | 2222 | SET_SYSTEM_SLEEP_PM_OPS(acpi_ec_suspend, acpi_ec_resume) |
df45db61 LZ |
2223 | }; |
2224 | ||
e4dca7b7 KC |
2225 | static int param_set_event_clearing(const char *val, |
2226 | const struct kernel_param *kp) | |
1d68d261 LZ |
2227 | { |
2228 | int result = 0; | |
2229 | ||
2230 | if (!strncmp(val, "status", sizeof("status") - 1)) { | |
2231 | ec_event_clearing = ACPI_EC_EVT_TIMING_STATUS; | |
2232 | pr_info("Assuming SCI_EVT clearing on EC_SC accesses\n"); | |
2233 | } else if (!strncmp(val, "query", sizeof("query") - 1)) { | |
2234 | ec_event_clearing = ACPI_EC_EVT_TIMING_QUERY; | |
2235 | pr_info("Assuming SCI_EVT clearing on QR_EC writes\n"); | |
2236 | } else if (!strncmp(val, "event", sizeof("event") - 1)) { | |
2237 | ec_event_clearing = ACPI_EC_EVT_TIMING_EVENT; | |
2238 | pr_info("Assuming SCI_EVT clearing on event reads\n"); | |
2239 | } else | |
2240 | result = -EINVAL; | |
2241 | return result; | |
2242 | } | |
2243 | ||
e4dca7b7 KC |
2244 | static int param_get_event_clearing(char *buffer, |
2245 | const struct kernel_param *kp) | |
1d68d261 LZ |
2246 | { |
2247 | switch (ec_event_clearing) { | |
2248 | case ACPI_EC_EVT_TIMING_STATUS: | |
fc293b7a | 2249 | return sprintf(buffer, "status\n"); |
1d68d261 | 2250 | case ACPI_EC_EVT_TIMING_QUERY: |
fc293b7a | 2251 | return sprintf(buffer, "query\n"); |
1d68d261 | 2252 | case ACPI_EC_EVT_TIMING_EVENT: |
fc293b7a | 2253 | return sprintf(buffer, "event\n"); |
1d68d261 | 2254 | default: |
fc293b7a | 2255 | return sprintf(buffer, "invalid\n"); |
1d68d261 LZ |
2256 | } |
2257 | return 0; | |
2258 | } | |
2259 | ||
2260 | module_param_call(ec_event_clearing, param_set_event_clearing, param_get_event_clearing, | |
2261 | NULL, 0644); | |
2262 | MODULE_PARM_DESC(ec_event_clearing, "Assumed SCI_EVT clearing timing"); | |
2263 | ||
223883b7 AS |
2264 | static struct acpi_driver acpi_ec_driver = { |
2265 | .name = "ec", | |
2266 | .class = ACPI_EC_CLASS, | |
2267 | .ids = ec_device_ids, | |
2268 | .ops = { | |
2269 | .add = acpi_ec_add, | |
2270 | .remove = acpi_ec_remove, | |
223883b7 | 2271 | }, |
df45db61 | 2272 | .drv.pm = &acpi_ec_pm, |
223883b7 AS |
2273 | }; |
2274 | ||
f0ac20c3 | 2275 | static void acpi_ec_destroy_workqueues(void) |
e1191bd4 | 2276 | { |
f0ac20c3 RW |
2277 | if (ec_wq) { |
2278 | destroy_workqueue(ec_wq); | |
2279 | ec_wq = NULL; | |
e1191bd4 | 2280 | } |
e1191bd4 LZ |
2281 | if (ec_query_wq) { |
2282 | destroy_workqueue(ec_query_wq); | |
2283 | ec_query_wq = NULL; | |
2284 | } | |
2285 | } | |
2286 | ||
f0ac20c3 RW |
2287 | static int acpi_ec_init_workqueues(void) |
2288 | { | |
2289 | if (!ec_wq) | |
2290 | ec_wq = alloc_ordered_workqueue("kec", 0); | |
2291 | ||
2292 | if (!ec_query_wq) | |
2293 | ec_query_wq = alloc_workqueue("kec_query", 0, ec_max_queries); | |
2294 | ||
2295 | if (!ec_wq || !ec_query_wq) { | |
2296 | acpi_ec_destroy_workqueues(); | |
2297 | return -ENODEV; | |
2298 | } | |
2299 | return 0; | |
2300 | } | |
2301 | ||
8195a655 MW |
2302 | static const struct dmi_system_id acpi_ec_no_wakeup[] = { |
2303 | { | |
8195a655 MW |
2304 | .matches = { |
2305 | DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"), | |
2c4d6baf | 2306 | DMI_MATCH(DMI_PRODUCT_FAMILY, "Thinkpad X1 Carbon 6th"), |
8195a655 MW |
2307 | }, |
2308 | }, | |
b047c62e | 2309 | { |
b047c62e AM |
2310 | .matches = { |
2311 | DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"), | |
2312 | DMI_MATCH(DMI_PRODUCT_FAMILY, "ThinkPad X1 Yoga 3rd"), | |
2313 | }, | |
2314 | }, | |
eb794e3c | 2315 | { |
eb794e3c BZ |
2316 | .matches = { |
2317 | DMI_MATCH(DMI_SYS_VENDOR, "HP"), | |
2318 | DMI_MATCH(DMI_PRODUCT_FAMILY, "103C_5336AN HP ZHAN 66 Pro"), | |
2319 | }, | |
2320 | }, | |
b9886853 ML |
2321 | /* |
2322 | * Lenovo Legion Go S; touchscreen blocks HW sleep when woken up from EC | |
2323 | * https://gitlab.freedesktop.org/drm/amd/-/issues/3929 | |
2324 | */ | |
2325 | { | |
2326 | .matches = { | |
2327 | DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), | |
2328 | DMI_MATCH(DMI_PRODUCT_NAME, "83L3"), | |
2329 | } | |
2330 | }, | |
2331 | { | |
2332 | .matches = { | |
2333 | DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), | |
2334 | DMI_MATCH(DMI_PRODUCT_NAME, "83N6"), | |
2335 | } | |
2336 | }, | |
2337 | { | |
2338 | .matches = { | |
2339 | DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), | |
2340 | DMI_MATCH(DMI_PRODUCT_NAME, "83Q2"), | |
2341 | } | |
2342 | }, | |
2343 | { | |
2344 | .matches = { | |
2345 | DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), | |
2346 | DMI_MATCH(DMI_PRODUCT_NAME, "83Q3"), | |
2347 | } | |
2348 | }, | |
9cd51eef WS |
2349 | { |
2350 | // TUXEDO InfinityBook Pro AMD Gen9 | |
2351 | .matches = { | |
2352 | DMI_MATCH(DMI_BOARD_NAME, "GXxHRXx"), | |
2353 | }, | |
2354 | }, | |
8195a655 MW |
2355 | { }, |
2356 | }; | |
2357 | ||
98ada3c5 | 2358 | void __init acpi_ec_init(void) |
1da177e4 | 2359 | { |
e1191bd4 | 2360 | int result; |
1da177e4 | 2361 | |
f0ac20c3 | 2362 | result = acpi_ec_init_workqueues(); |
e1191bd4 | 2363 | if (result) |
98ada3c5 | 2364 | return; |
1da177e4 | 2365 | |
8195a655 MW |
2366 | /* |
2367 | * Disable EC wakeup on following systems to prevent periodic | |
2368 | * wakeup from EC GPE. | |
2369 | */ | |
2370 | if (dmi_check_system(acpi_ec_no_wakeup)) { | |
2371 | ec_no_wakeup = true; | |
2372 | pr_debug("Disabling EC wakeup on suspend-to-idle\n"); | |
2373 | } | |
2374 | ||
98ada3c5 RW |
2375 | /* Driver must be registered after acpi_ec_init_workqueues(). */ |
2376 | acpi_bus_register_driver(&acpi_ec_driver); | |
2377 | ||
2378 | acpi_ec_ecdt_start(); | |
1da177e4 LT |
2379 | } |
2380 | ||
1da177e4 LT |
2381 | /* EC driver currently not unloadable */ |
2382 | #if 0 | |
50526df6 | 2383 | static void __exit acpi_ec_exit(void) |
1da177e4 | 2384 | { |
1da177e4 LT |
2385 | |
2386 | acpi_bus_unregister_driver(&acpi_ec_driver); | |
f0ac20c3 | 2387 | acpi_ec_destroy_workqueues(); |
1da177e4 | 2388 | } |
7843932a | 2389 | #endif /* 0 */ |